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Joint Ribbon Cutting at Fagor, Danobat Showrooms


Earlier this year, Iscar, the cutting tool manufacturer (U.S. headquarters in Arlington, Texas), brought together its North American dealers and many customers for a seminar called "Iscar Upgrade." At this event, the company announced its product development plans for 2005-2006. As top company executives led presentations detailing these developments, they expressed VNMG Insert a number of general insights about cutting tool philosophy. A sample of these observations is presented here for anyone with an open mind about cutting tools.

Typically, cutting tools account for only 3 percent of total production costs in metalworking. Therefore, reducing cutting tool costs in itself doesn’t bring much to the bottom line. However, upgrading cutting tools is likely to yield a significant overall cost savings, even though cutting tool costs may be higher. Focus on cost per part, not the cost of cutting tools, as a key target.

Everyone in your IT department knows that a successful computer system is a combination of the right hardware and software. Keeping both hardware and software up to date is critical. Think of cutting tools in the same way. Cutter bodies and toolholders are the hardware, and indexable inserts are the software. When looking at an upgrade in insert technology, be sure to consider upgrades in toolholders and cutter bodies, and vice versa.

Cutter bodies can be coated to get some of the most important benefits that high-tech coatings bring to carbide inserts. Hard coatings on cutter bodies resist wear from contact with hot chips moving at high speeds. Chips flow more readily through flutes because the coating gives the surface lubricity.

Few developments in machine design have had the impact that multitasking machines have had on productivity. But those added spindles, tool turrets and rotational axes mean tight clearances and a limited number of tool stations. To cope with these conditions, it is possible to have one toolholder with several multipurpose inserts that can do facing, ID turning, OD turning, drilling, counter drilling and internal threading without a tool change. Creative application of specially designed cutting tools contributes significantly to the flexible nature of multitasking machine tools.

To keep cutting tool inventory at a more manageable level, consider modular tooling shanks that accept a variety of interchangeable solid carbide heads. Because the heads can be replaced or exchanged while the tool is clamped in the machine, setup time can be reduced. A set of long shanks that allow a cutting tool to reach to the bottom of a deep pocket or mold cavity is especially economical compared to the assortment of solid carbide tools needed to cover the same range. Another plus is that a steel shank can absorb an impact that might otherwise damage a carbide shank when, for example, a turning tool and the lathe spindle are not perfectly on center.

Cutting tool manufacturers are working hard to develop products that reduce the power consumed by machine tools. Besides the energy savings (which are more significant than ever), cutting tools that require less power from the machine tool tend to last longer, cause less wear and tear on spindles and ways, and minimize vibration. A good example is that cutting tools requiring less thrust are allowing longer boring bars to be used without losing accuracy.

If power consumption doesn’t come up in the discussion of any new cutting tool, be sure to ask about it. A 10 percent reduction in cutting forces is likely to result in a 50 percent improvement in tool life.

When tightening the clamping screws after indexing an insert, don’t guess about the torque applied. Undertightening may allow the insert to chatter or prevent the process from holding tolerances. Overtightening may break the insert or the key. A torque wrench that automatically lights up to signal that proper tightening levels have been reached is a simple way to eliminate this uncertainty.

Programming for CNC operations is about more than getting the right speeds and feeds. Tool paths also must match the capability of the cutting tool. Not all CAM software allows the programmer to program the moves that optimize the performance of advanced cutting tools. Be sure your programming software is not holding you back.

Right now, advances in cutting tools appear to be ahead of the software developers.

In real estate, the three most important factors determining the value of a house or commercial property are location, location and location. In successful cutting tool applications, it’s vibration, vibration and vibration. Minimizing or eliminating vibration is usually a matter of controlling cutting forces so that they are directed to the most stable, most rigid element of the machining system. Examine every proposed change in tooling with an eye to how vibration is managed. That’s the key to prolonging tool life, protecting the spindle and improving surface finish.

Be sure you are getting the full value of the original concept of carbide inserts with indexable edges. Look for styles that offer the most in multiple edges. Be sure the edges are truly usable. For example, some holders, such as certain indexable milling bodies, do not protect every edge; therefore, one or more of the insert edges is lost.

Being able to combine several processes into one makes it possible to increase efficiency and reduce costs. The time required for the separate machining cycles, as well as the time required for tool changes, can be reduced or eliminated. In addition, tooling costs can be reduced by reducing the number of tools required for a job.

Effective use Shoulder Milling Inserts of coolant is often a "make or break" part of a machining application, especially in hole making. For coolant-fed drills, getting the coolant to the cutting edges is only half the battle. Getting the chips out of the hole effectively is the other half. This means that coolant flow and chip flow have to be considered equally.

Coolant delivered through the insert itself is another strategy to examine. It should even be considered for in places that might seem unlikely, such as parting tools.

Earlier this year, Iscar, the cutting tool manufacturer (U.S. headquarters in Arlington, Texas), brought together its North American dealers and many customers for a seminar called "Iscar Upgrade." At this event, the company announced its product development plans for 2005-2006. As top company executives led presentations detailing these developments, they expressed VNMG Insert a number of general insights about cutting tool philosophy. A sample of these observations is presented here for anyone with an open mind about cutting tools.

Typically, cutting tools account for only 3 percent of total production costs in metalworking. Therefore, reducing cutting tool costs in itself doesn’t bring much to the bottom line. However, upgrading cutting tools is likely to yield a significant overall cost savings, even though cutting tool costs may be higher. Focus on cost per part, not the cost of cutting tools, as a key target.

Everyone in your IT department knows that a successful computer system is a combination of the right hardware and software. Keeping both hardware and software up to date is critical. Think of cutting tools in the same way. Cutter bodies and toolholders are the hardware, and indexable inserts are the software. When looking at an upgrade in insert technology, be sure to consider upgrades in toolholders and cutter bodies, and vice versa.

Cutter bodies can be coated to get some of the most important benefits that high-tech coatings bring to carbide inserts. Hard coatings on cutter bodies resist wear from contact with hot chips moving at high speeds. Chips flow more readily through flutes because the coating gives the surface lubricity.

Few developments in machine design have had the impact that multitasking machines have had on productivity. But those added spindles, tool turrets and rotational axes mean tight clearances and a limited number of tool stations. To cope with these conditions, it is possible to have one toolholder with several multipurpose inserts that can do facing, ID turning, OD turning, drilling, counter drilling and internal threading without a tool change. Creative application of specially designed cutting tools contributes significantly to the flexible nature of multitasking machine tools.

To keep cutting tool inventory at a more manageable level, consider modular tooling shanks that accept a variety of interchangeable solid carbide heads. Because the heads can be replaced or exchanged while the tool is clamped in the machine, setup time can be reduced. A set of long shanks that allow a cutting tool to reach to the bottom of a deep pocket or mold cavity is especially economical compared to the assortment of solid carbide tools needed to cover the same range. Another plus is that a steel shank can absorb an impact that might otherwise damage a carbide shank when, for example, a turning tool and the lathe spindle are not perfectly on center.

Cutting tool manufacturers are working hard to develop products that reduce the power consumed by machine tools. Besides the energy savings (which are more significant than ever), cutting tools that require less power from the machine tool tend to last longer, cause less wear and tear on spindles and ways, and minimize vibration. A good example is that cutting tools requiring less thrust are allowing longer boring bars to be used without losing accuracy.

If power consumption doesn’t come up in the discussion of any new cutting tool, be sure to ask about it. A 10 percent reduction in cutting forces is likely to result in a 50 percent improvement in tool life.

When tightening the clamping screws after indexing an insert, don’t guess about the torque applied. Undertightening may allow the insert to chatter or prevent the process from holding tolerances. Overtightening may break the insert or the key. A torque wrench that automatically lights up to signal that proper tightening levels have been reached is a simple way to eliminate this uncertainty.

Programming for CNC operations is about more than getting the right speeds and feeds. Tool paths also must match the capability of the cutting tool. Not all CAM software allows the programmer to program the moves that optimize the performance of advanced cutting tools. Be sure your programming software is not holding you back.

Right now, advances in cutting tools appear to be ahead of the software developers.

In real estate, the three most important factors determining the value of a house or commercial property are location, location and location. In successful cutting tool applications, it’s vibration, vibration and vibration. Minimizing or eliminating vibration is usually a matter of controlling cutting forces so that they are directed to the most stable, most rigid element of the machining system. Examine every proposed change in tooling with an eye to how vibration is managed. That’s the key to prolonging tool life, protecting the spindle and improving surface finish.

Be sure you are getting the full value of the original concept of carbide inserts with indexable edges. Look for styles that offer the most in multiple edges. Be sure the edges are truly usable. For example, some holders, such as certain indexable milling bodies, do not protect every edge; therefore, one or more of the insert edges is lost.

Being able to combine several processes into one makes it possible to increase efficiency and reduce costs. The time required for the separate machining cycles, as well as the time required for tool changes, can be reduced or eliminated. In addition, tooling costs can be reduced by reducing the number of tools required for a job.

Effective use Shoulder Milling Inserts of coolant is often a "make or break" part of a machining application, especially in hole making. For coolant-fed drills, getting the coolant to the cutting edges is only half the battle. Getting the chips out of the hole effectively is the other half. This means that coolant flow and chip flow have to be considered equally.

Coolant delivered through the insert itself is another strategy to examine. It should even be considered for in places that might seem unlikely, such as parting tools.


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Why use carbide cutting tools?




PCD inserts are the first choice in aluminum and magnesium applications, as well as carbon fiber parts, as their extreme hardness provides unmatched life in these non-ferrous materials. Since it is a synthetic diamond (almost pure carbon), it cannot be used to machine ferrous materials like steels and cast irons, because at temperatures over 700° Fahrenheit, carbon atoms react with the part material to form iron carbide and cause the diamond structures to collapse. PCD is especially required when aluminum has more than five percent content, to resist the abrasiveness that leads to wear.

CBN inserts uses boron as the primary element. While boron has a similar crystal structure to carbon, it lacks the affinity to iron. It is the second hardest known material and can tolerate cutting temperatures over 1,800° Fahrenheit. CBN is suitable for steel or iron machining and is the first choice when working with hardened steels, usually more than at least RC50 and should be CNMG Turning Insert used for finishing only. Any interrupted cutting requires the highest stability tool, otherwise it won’t work.

How can Apple carbide tools help when it comes to PCD and CBN inserts?

We are a PCD/CBN inserts manufacturer, we have a lot of knowledge here in-house and are always willing to help metalworkers. Feel free to contact us for more about CBN/PCD inserts.

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PCD inserts are the first choice in aluminum and magnesium applications, as well as carbon fiber parts, as their extreme hardness provides unmatched life in these non-ferrous materials. Since it is a synthetic diamond (almost pure carbon), it cannot be used to machine ferrous materials like steels and cast irons, because at temperatures over 700° Fahrenheit, carbon atoms react with the part material to form iron carbide and cause the diamond structures to collapse. PCD is especially required when aluminum has more than five percent content, to resist the abrasiveness that leads to wear.

CBN inserts uses boron as the primary element. While boron has a similar crystal structure to carbon, it lacks the affinity to iron. It is the second hardest known material and can tolerate cutting temperatures over 1,800° Fahrenheit. CBN is suitable for steel or iron machining and is the first choice when working with hardened steels, usually more than at least RC50 and should be CNMG Turning Insert used for finishing only. Any interrupted cutting requires the highest stability tool, otherwise it won’t work.

How can Apple carbide tools help when it comes to PCD and CBN inserts?

We are a PCD/CBN inserts manufacturer, we have a lot of knowledge here in-house and are always willing to help metalworkers. Feel free to contact us for more about CBN/PCD inserts.

Related search keywords:

CBN inserts, PCD inserts, cbn inserts price, cbn inserts manufacturers, cbn inserts for stainless steel, cbn inserts hardness, cbn inserts speeds and feeds, cbn inserts china, cbn carbide inserts, cbn inserts with chipbreaker, cbn inserts for cast iron, cbn inserts, cbn insert, cbn inserts for hard turning, cbn inserts for turning, cbn grooving inserts, cbn lathe inserts, cbn inserts machining, ERMN Insert cbn inserts materials, pcd and cbn inserts manufacturers, cbn pcd inserts, cbn round inserts, solid cbn inserts, cbn tool inserts, cbn turning inserts, pcbn inserts


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Unleash Precision and Efficiency with Carbide Drilling Inserts


There have 2 types of coating in Carbide insert ,PVD and CVD coating .
PVD coating carbide insert mainly used for machining stainless steel and High-temperature alloy,CVD coating carbide insert mainly used for machining all kinds of steel and cast iron . if you know the difference of this 2 coatings ? here ,let me EPNW Milling Insert share more details about it .
PVD and CVD are coating techniques. PVD stands for physical vapour deposition , CVD stands for chemical vapour deposition. The key difference between PVD and CVD is that the coating material in PVD is in solid form , in CVD it is in gaseous form. another important difference we can say that in PVD technique atoms are moving and depositing on the substrate while in CVD technique the gaseous molecules will react with the substrate.
Besides, the deposition temperatures between PVD and CVD also different , for PVD, it deposits at a relatively low temperature (around 250°C~450°C) whereas, for CVD, it deposits at relatively high temperatures in the range of 450°C to 1050°C.
We,Zhuzhou Apple carbide tools co.,ltd is a professional manufacture for carbide cutting tools ,carbide insert is our hot selling products ,Any interesting ,welcome to contact us for more details ,thanks!



Related search keywords:
Coating, tungsten carbide, tungsten carbide ring, tungsten carbide burr, tungsten carbide rod, tungsten Carbide Drilling Inserts carbide nozzle, tungsten carbide tools, tungsten carbide wear parts, tungsten carbide blade, tungsten carbide alloy, tungsten carbide balls,tungsten carbide bars, tungsten carbide coating, tungsten carbide cutting tools, tungsten carbide cutting, tungsten carbide cutters, tungsten carbide cost, tungsten carbide cvd, tungsten carbide drill bits, tungsten carbide drawing dies, tungsten carbide dies, tungsten carbide draw plates

There have 2 types of coating in Carbide insert ,PVD and CVD coating .
PVD coating carbide insert mainly used for machining stainless steel and High-temperature alloy,CVD coating carbide insert mainly used for machining all kinds of steel and cast iron . if you know the difference of this 2 coatings ? here ,let me EPNW Milling Insert share more details about it .
PVD and CVD are coating techniques. PVD stands for physical vapour deposition , CVD stands for chemical vapour deposition. The key difference between PVD and CVD is that the coating material in PVD is in solid form , in CVD it is in gaseous form. another important difference we can say that in PVD technique atoms are moving and depositing on the substrate while in CVD technique the gaseous molecules will react with the substrate.
Besides, the deposition temperatures between PVD and CVD also different , for PVD, it deposits at a relatively low temperature (around 250°C~450°C) whereas, for CVD, it deposits at relatively high temperatures in the range of 450°C to 1050°C.
We,Zhuzhou Apple carbide tools co.,ltd is a professional manufacture for carbide cutting tools ,carbide insert is our hot selling products ,Any interesting ,welcome to contact us for more details ,thanks!



Related search keywords:
Coating, tungsten carbide, tungsten carbide ring, tungsten carbide burr, tungsten carbide rod, tungsten Carbide Drilling Inserts carbide nozzle, tungsten carbide tools, tungsten carbide wear parts, tungsten carbide blade, tungsten carbide alloy, tungsten carbide balls,tungsten carbide bars, tungsten carbide coating, tungsten carbide cutting tools, tungsten carbide cutting, tungsten carbide cutters, tungsten carbide cost, tungsten carbide cvd, tungsten carbide drill bits, tungsten carbide drawing dies, tungsten carbide dies, tungsten carbide draw plates


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What is the biggest difference between PCD and CBN inserts?_2


Using CBN (Cubic Boron Nitride) inserts in machining offers many advantages, but there are also common challenges and limitations associated with their use. Here are TNGG Insert some of the key challenges and potential ways to address them:

High Initial Cost: CBN inserts are typically more expensive than carbide inserts. To address this, consider the overall cost savings over the tool's extended lifespan due to improved performance and reduced downtime.

Brittleness: CBN is a hard and brittle material, making the inserts prone to chipping or breaking, especially during interrupted cuts. To address this, use proper toolpath strategies and avoid sudden changes in cutting forces.

High Cutting Temperatures: Machining at high speeds can generate significant heat, potentially leading to insert wear or thermal cracking. Using effective coolant and adjusting cutting parameters can help manage temperature.

Surface Finish: Achieving a high-quality Milling Inserts surface finish can be challenging with CBN inserts, especially in certain applications. Consider optimizing cutting parameters and using proper tool geometry to improve surface finish.

Tool Chatter: Tool chatter or vibration can reduce the quality of the machined part and the tool's lifespan. To address this, use stable setups, choose appropriate tool geometries, and adjust cutting parameters to minimize vibrations.

Machine Rigidity: Using CBN inserts effectively often requires high-precision, rigid machining equipment. Ensure that your machines are properly maintained and calibrated to minimize deflection and vibration.

Wear Detection: Detecting wear on CBN inserts can be challenging due to their hardness. Regular inspection and monitoring of tool wear are essential to prevent sudden tool failure.

Addressing these challenges requires a combination of proper tool selection, cutting parameter optimization, and operator skills. Consulting with tooling experts and conducting testing and experimentation in your specific machining environment can help you overcome these limitations and maximize the benefits of CBN inserts. Welcome to contact us for more information.

Related search keywords:

CBN inserts, cbn inserts for hard turning, cbn pcd inserts, cbn round insert, solid cbn inserts, cbn lathe inserts, cbn milling inserts, cbn cutting inserts, cbn cutter inserts, cbn turning inserts, cbn threading inserts, cbn tool inserts, PCD inserts

Using CBN (Cubic Boron Nitride) inserts in machining offers many advantages, but there are also common challenges and limitations associated with their use. Here are TNGG Insert some of the key challenges and potential ways to address them:

High Initial Cost: CBN inserts are typically more expensive than carbide inserts. To address this, consider the overall cost savings over the tool's extended lifespan due to improved performance and reduced downtime.

Brittleness: CBN is a hard and brittle material, making the inserts prone to chipping or breaking, especially during interrupted cuts. To address this, use proper toolpath strategies and avoid sudden changes in cutting forces.

High Cutting Temperatures: Machining at high speeds can generate significant heat, potentially leading to insert wear or thermal cracking. Using effective coolant and adjusting cutting parameters can help manage temperature.

Surface Finish: Achieving a high-quality Milling Inserts surface finish can be challenging with CBN inserts, especially in certain applications. Consider optimizing cutting parameters and using proper tool geometry to improve surface finish.

Tool Chatter: Tool chatter or vibration can reduce the quality of the machined part and the tool's lifespan. To address this, use stable setups, choose appropriate tool geometries, and adjust cutting parameters to minimize vibrations.

Machine Rigidity: Using CBN inserts effectively often requires high-precision, rigid machining equipment. Ensure that your machines are properly maintained and calibrated to minimize deflection and vibration.

Wear Detection: Detecting wear on CBN inserts can be challenging due to their hardness. Regular inspection and monitoring of tool wear are essential to prevent sudden tool failure.

Addressing these challenges requires a combination of proper tool selection, cutting parameter optimization, and operator skills. Consulting with tooling experts and conducting testing and experimentation in your specific machining environment can help you overcome these limitations and maximize the benefits of CBN inserts. Welcome to contact us for more information.

Related search keywords:

CBN inserts, cbn inserts for hard turning, cbn pcd inserts, cbn round insert, solid cbn inserts, cbn lathe inserts, cbn milling inserts, cbn cutting inserts, cbn cutter inserts, cbn turning inserts, cbn threading inserts, cbn tool inserts, PCD inserts


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Metalloobrabotka 2023 in Russia


Carbide tool holder spare parts can come in a variety of forms, depending on the specific type of holder and the part that needs to be replaced. Some common carbide tool holder spare parts include:

Inserts: The cutting insert is the replaceable part of the carbide tool holder that actually does the cutting. These inserts are made from carbide, a hard and durable material that can withstand high temperatures LOGU Insert and wear. Inserts come in a variety of shapes and sizes, depending on the specific cutting application.

Screws and clamps: The screws and clamps on a carbide tool holder are used to secure the cutting insert in place. Over time, these parts may become damaged or worn and need to be replaced.

Tool bodies: The tool body is the main part of the carbide tool holder that holds the cutting insert in place. In some cases, the tool body may need to be replaced if it becomes damaged or worn.

Shanks: The shank is the part of the carbide tool holder that fits into the machine tool's spindle. If the shank becomes damaged or worn, it may need to be replaced.

When looking for carbide tool holder spare parts, it is important to SEMT Insert purchase parts that are compatible with your specific carbide tool holder. You should also ensure that the parts are made from high-quality materials to ensure durability and performance.

Related search keywords:

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Carbide tool holder spare parts can come in a variety of forms, depending on the specific type of holder and the part that needs to be replaced. Some common carbide tool holder spare parts include:

Inserts: The cutting insert is the replaceable part of the carbide tool holder that actually does the cutting. These inserts are made from carbide, a hard and durable material that can withstand high temperatures LOGU Insert and wear. Inserts come in a variety of shapes and sizes, depending on the specific cutting application.

Screws and clamps: The screws and clamps on a carbide tool holder are used to secure the cutting insert in place. Over time, these parts may become damaged or worn and need to be replaced.

Tool bodies: The tool body is the main part of the carbide tool holder that holds the cutting insert in place. In some cases, the tool body may need to be replaced if it becomes damaged or worn.

Shanks: The shank is the part of the carbide tool holder that fits into the machine tool's spindle. If the shank becomes damaged or worn, it may need to be replaced.

When looking for carbide tool holder spare parts, it is important to SEMT Insert purchase parts that are compatible with your specific carbide tool holder. You should also ensure that the parts are made from high-quality materials to ensure durability and performance.

Related search keywords:

carbide tool holder spare parts, tungsten carbide tools, carbide parts, carbide cutter, tool holders, tungsten carbide tools machining, tungsten carbide lathe tools, tungsten carbide wood turning tools, tungsten carbide ceramic tools, tungsten carbide wood lathe tools, grinding tungsten carbide tools, coated tungsten carbide tools, tungsten carbide burr, tungsten carbide bur cutting tools, tungsten carbide cutting tools manufacturer, tungsten carbide cutting tools, tungsten carbide tools cnc, tungsten carbide


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The advantages of Carbide dies


If you want best quality threads machined on a CNC lathe, do the following:

  • Use a “full profile” carbide threading insert. A full profile insert (Eg, 16ER 1.5 ISO) can be used to machine threads of only one pitch. But they accurately machine the root radius, in accordance with the pitch. they also eliminate burrs.

  • In mass production, use proper Anvil in theThreading tool holderhaving inclination equal to the lead angle of the thread 16IR Insert you require.

  • Use left handed tools for machining left handed threads.

  • Related search keywords:

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    If you want best quality threads machined on a CNC lathe, do the following:

  • Use a “full profile” carbide threading insert. A full profile insert (Eg, 16ER 1.5 ISO) can be used to machine threads of only one pitch. But they accurately machine the root radius, in accordance with the pitch. they also eliminate burrs.

  • In mass production, use proper Anvil in theThreading tool holderhaving inclination equal to the lead angle of the thread 16IR Insert you require.

  • Use left handed tools for machining left handed threads.

  • Related search keywords:

    carbide threading inserts, carbide threading inserts manufacturers,carbide threading RPEW Insert inserts manufacturers in china, carbide insert,carbide inserts for threading,threading with carbide inserts,carbide strips,zhuzhou Estool tools co. ltd,carbide inserts scrap price,carbide inserts for stainless steel,carbide insert aluminum,carbide insert rake angle,carbide insert blanks, carbide insert cutters


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    When You Goes to Choose Tungsten Rings for Men


    Cemented carbide  is made by the chemical vapor deposition (CVD) method,which coats TiC or TiN, HfN, Al2O3, and other wear-resistant on the surface of the carbide alloy inserts,so that the carbide alloy coating is formed. This is an important progress of modern cemented carbide  researches. The Sidek Krupp and the Swedish Sandvik company had developed TiC coated carbide inserts and put it into the market for the first time in 1969. After 1970, the United States, Japan and other countries were beginning to produce this  kind of blade. For more than thirty years, the coating technology has made great progress. Coated carbide blade has been developed from the first generation, the second generation to the third generation, fourth generation Carbide Stainless Steel Inserts products.

                       SNMG Stainless Steel Inserts
    The advantages of cemented carbide coating:
    1) coated cemented carbide  can  use the high cutting speed, thereby improving the processing efficiency;

    2) since the smaller coefficient of friction between the coating material and the  processing material ,compared with uncoated blades, the cutting force of the coating blade has a certain decrease;

    3) when the processing of the coating blade, the quality of processed surface  is excellent;

    4) due to the good overall performance, coated blades have good versatilities. One coating grades of the blade can be widely used.

     

     

    Tungsten Manufacturer & Supplier: Chinatungsten tungsten carbide inserts Online - https://www.estoolcarbide.com
    Tel.: 86 592 5129696; Fax: 86 592 5129797
    Email: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, 3G Version: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, WML Version: https://www.estoolcarbide.com

     

    Cemented carbide  is made by the chemical vapor deposition (CVD) method,which coats TiC or TiN, HfN, Al2O3, and other wear-resistant on the surface of the carbide alloy inserts,so that the carbide alloy coating is formed. This is an important progress of modern cemented carbide  researches. The Sidek Krupp and the Swedish Sandvik company had developed TiC coated carbide inserts and put it into the market for the first time in 1969. After 1970, the United States, Japan and other countries were beginning to produce this  kind of blade. For more than thirty years, the coating technology has made great progress. Coated carbide blade has been developed from the first generation, the second generation to the third generation, fourth generation Carbide Stainless Steel Inserts products.

                       SNMG Stainless Steel Inserts
    The advantages of cemented carbide coating:
    1) coated cemented carbide  can  use the high cutting speed, thereby improving the processing efficiency;

    2) since the smaller coefficient of friction between the coating material and the  processing material ,compared with uncoated blades, the cutting force of the coating blade has a certain decrease;

    3) when the processing of the coating blade, the quality of processed surface  is excellent;

    4) due to the good overall performance, coated blades have good versatilities. One coating grades of the blade can be widely used.

     

     

    Tungsten Manufacturer & Supplier: Chinatungsten tungsten carbide inserts Online - https://www.estoolcarbide.com
    Tel.: 86 592 5129696; Fax: 86 592 5129797
    Email: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, 3G Version: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, WML Version: https://www.estoolcarbide.com

     


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    Tungsten Alloy's Application


    Lovers rings are lovers common jewelry, many lovers happily wear couple from rings, not hand. But long-term wearing rings lovers will inevitably be lovers of rings fade, this can be a little nasty bad lovers.

    Tungsten gold couple rings is now particularly popular a couple to rings, is also the latest benefits ring. Although palladium lovers to rings is pledge of love, many couples will always wear don’t Cemented Carbide Inserts take down, actually this kind of idea is not correct. Long wear ring is not take down will cause the flow of blood stagnation, and is not a simple method to wear. Small make up suggest the lovers do CuChongHuo, swimming, housework when don’t wear palladium lovers to rings, take down a separate place in the jewellery box. Especially to cook in the kitchen or don’t wear palladium lovers to rings, oil stain easily infected with in a ring, cause ring gloss dark.

    If the friend found his ring has become dark, can choose their cleaning tungsten gold couple rings. First of all to buy some professional rub silver cloth and jewelry cleaner on home standby, periodic cleaning their palladium rings lovers. Also can use the family detergent and warm water mixed homemade cleaner, tungsten gold couple for rings 10 – twenty minutes, Carbide Turning Inserts remove and rinse, then dry it. You can also will own tungsten gold couple regularly to rings professional jewelry custom website, let professionals to help you clean.

     

    Tungsten Jewellery Manufacturer & Supplier: Chinatungsten Online - https://www.estoolcarbide.com
    Tel.: 86 592 5129696; Fax: 86 592 5129797
    Email: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, 3G Version: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, WML Version: https://www.estoolcarbide.com

    Lovers rings are lovers common jewelry, many lovers happily wear couple from rings, not hand. But long-term wearing rings lovers will inevitably be lovers of rings fade, this can be a little nasty bad lovers.

    Tungsten gold couple rings is now particularly popular a couple to rings, is also the latest benefits ring. Although palladium lovers to rings is pledge of love, many couples will always wear don’t Cemented Carbide Inserts take down, actually this kind of idea is not correct. Long wear ring is not take down will cause the flow of blood stagnation, and is not a simple method to wear. Small make up suggest the lovers do CuChongHuo, swimming, housework when don’t wear palladium lovers to rings, take down a separate place in the jewellery box. Especially to cook in the kitchen or don’t wear palladium lovers to rings, oil stain easily infected with in a ring, cause ring gloss dark.

    If the friend found his ring has become dark, can choose their cleaning tungsten gold couple rings. First of all to buy some professional rub silver cloth and jewelry cleaner on home standby, periodic cleaning their palladium rings lovers. Also can use the family detergent and warm water mixed homemade cleaner, tungsten gold couple for rings 10 – twenty minutes, Carbide Turning Inserts remove and rinse, then dry it. You can also will own tungsten gold couple regularly to rings professional jewelry custom website, let professionals to help you clean.

     

    Tungsten Jewellery Manufacturer & Supplier: Chinatungsten Online - https://www.estoolcarbide.com
    Tel.: 86 592 5129696; Fax: 86 592 5129797
    Email: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, 3G Version: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, WML Version: https://www.estoolcarbide.com


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    Tungsten Carbide History


    Tungsten carbide rings are made from tungsten and carbide powders, resulting in an indestructible, scratch-proof metal. The metal is used to create rings, wedding bands and bracelets. Tungsten is a rare metal that, is almost 10 times harder than 18-karat gold, five times harder than tool steel and four times tungsten carbide inserts harder than titanium. Tungsten carbide rings require little care, although cleaning is required to remove dirt, exposure to chemicals, soap residue and fingerprints.

    Instructions

    1
    Combine 1 cup of warm water with ? tbsp. liquid dish soap in a bowl or cup. Submerge the tungsten carbide ring in the water for five minutes.

    2
    Lift the ring above the bowl or cup. Rub a toothbrush or cloth over the ring to gently clean any remaining grime or buildup from the ring.

    3
    Rinse the ring in cool water to remove any remaining soap residue.

    4
    Rub the ring with a soft or microfiber cloth to dry it and prevent water spots.

    Tips & Warnings
    Tungsten carbide metal is extremely strong and can be cleaned with cool, warm or hot water. However, it is recommended you clean a tungsten carbide Carbide Steel Inserts ring with warm water, only because the warm water helps dissolve the liquid dish soap.

    Avoid using any jewelry cleaners, cleaning solutions and cleaning products when cleaning Tungsten carbide rings. Chemicals, such as ammonia, bleach and chlorine react poorly with the composition of tungsten, which can damage the ring. Prior to working with any of these chemicals, remove the ring or wear protective rubber gloves. Should your ring come in contact with any of these chemicals, rinse it immediately.

     

    Tungsten Carbide Manufacturer & Supplier: Chinatungsten Online - https://www.estoolcarbide.com
    Tel.: 86 592 5129696; Fax: 86 592 5129797
    Email: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, 3G Version: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, WML Version: https://www.estoolcarbide.com

    Tungsten carbide rings are made from tungsten and carbide powders, resulting in an indestructible, scratch-proof metal. The metal is used to create rings, wedding bands and bracelets. Tungsten is a rare metal that, is almost 10 times harder than 18-karat gold, five times harder than tool steel and four times tungsten carbide inserts harder than titanium. Tungsten carbide rings require little care, although cleaning is required to remove dirt, exposure to chemicals, soap residue and fingerprints.

    Instructions

    1
    Combine 1 cup of warm water with ? tbsp. liquid dish soap in a bowl or cup. Submerge the tungsten carbide ring in the water for five minutes.

    2
    Lift the ring above the bowl or cup. Rub a toothbrush or cloth over the ring to gently clean any remaining grime or buildup from the ring.

    3
    Rinse the ring in cool water to remove any remaining soap residue.

    4
    Rub the ring with a soft or microfiber cloth to dry it and prevent water spots.

    Tips & Warnings
    Tungsten carbide metal is extremely strong and can be cleaned with cool, warm or hot water. However, it is recommended you clean a tungsten carbide Carbide Steel Inserts ring with warm water, only because the warm water helps dissolve the liquid dish soap.

    Avoid using any jewelry cleaners, cleaning solutions and cleaning products when cleaning Tungsten carbide rings. Chemicals, such as ammonia, bleach and chlorine react poorly with the composition of tungsten, which can damage the ring. Prior to working with any of these chemicals, remove the ring or wear protective rubber gloves. Should your ring come in contact with any of these chemicals, rinse it immediately.

     

    Tungsten Carbide Manufacturer & Supplier: Chinatungsten Online - https://www.estoolcarbide.com
    Tel.: 86 592 5129696; Fax: 86 592 5129797
    Email: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, 3G Version: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, WML Version: https://www.estoolcarbide.com


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    How to Calculate Tungsten Ring Size


    Electrical contacts are subjected to extreme mechanical and thermal stresses during operation. For fractions of a second, temperatures rise to several thousand degrees as a result of the arcing. Only Deep Hole Drilling Inserts Tungsten copper materials will stand these high temperature & aberration.

    Tungsten copper materials have good resistance to arc erosion, mechanical wear, contact welding and good conductivity. They are usually selected for oil, gas, air or vacuum, devices. The contact surfaces will oxidize when switched in air. These press-sinter-infiltrate materials should only be considered for arcing surfaces in air when used as arcing tips, arc plates and arc runners. When switching with moderate contact arcing, the Tungsten Copper with a high copper content may give the lowest erosion. As arcing severity increases, the Tungsten copper with the Carbide Drilling Inserts higher refractory content withstand arc erosion better. Tungsten coppers are also used as arcing edges of selector switchblades in transformer tap changers.


    Tungsten Manufacturer & Supplier: Chinatungsten Online - https://www.estoolcarbide.com
    Tel.: 86 592 5129696; Fax: 86 592 5129797
    Email: https://www.estoolcarbide.com
    Tungsten Picture Center: https://www.estoolcarbide.com
    Tungsten Video Center: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, 3G Version: https://www.estoolcarbide.com
     

    Electrical contacts are subjected to extreme mechanical and thermal stresses during operation. For fractions of a second, temperatures rise to several thousand degrees as a result of the arcing. Only Deep Hole Drilling Inserts Tungsten copper materials will stand these high temperature & aberration.

    Tungsten copper materials have good resistance to arc erosion, mechanical wear, contact welding and good conductivity. They are usually selected for oil, gas, air or vacuum, devices. The contact surfaces will oxidize when switched in air. These press-sinter-infiltrate materials should only be considered for arcing surfaces in air when used as arcing tips, arc plates and arc runners. When switching with moderate contact arcing, the Tungsten Copper with a high copper content may give the lowest erosion. As arcing severity increases, the Tungsten copper with the Carbide Drilling Inserts higher refractory content withstand arc erosion better. Tungsten coppers are also used as arcing edges of selector switchblades in transformer tap changers.


    Tungsten Manufacturer & Supplier: Chinatungsten Online - https://www.estoolcarbide.com
    Tel.: 86 592 5129696; Fax: 86 592 5129797
    Email: https://www.estoolcarbide.com
    Tungsten Picture Center: https://www.estoolcarbide.com
    Tungsten Video Center: https://www.estoolcarbide.com
    Tungsten News & Tungsten Prices, 3G Version: https://www.estoolcarbide.com
     


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