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Wintech Products Online

Showing 11 out of 11 products

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₹4,247   ₹4,851
You save ₹604!
12.45% OFF
Wintech Solid Carbide Square EndMill Extended Neck 0.5 mm SPM200-SN2-0.5-10-V are versatile cutting tools that can be used for various applications, such as drilling holes and milling operations. These end mills are designed to remove excess material from a workpiece and are commonly used in machining processes. One notable feature of Wintech Carbide End Mills is their PVD (Physical Vapor Deposition) coating. This coating provides several benefits, including easier chip removal. During the cutting process, chips are generated as the tool removes material from the workpiece. The PVD coating helps in effectively evacuating these chips, preventing chip clogging and enhancing the overall machining performance. Another important aspect of these end mills is their construction material. They are manufactured from high-performance, micro-grain carbide. Micro-grain carbide is a type of carbide material with fine grain size, which offers enhanced strength, hardness, and wear resistance. This makes Wintech Carbide End Mills suitable for machining tough alloys, super alloys, titanium, and exotic metals, which are known for their hardness and difficulty in machining. The high strength of these end mills enables them to withstand the demanding cutting conditions associated with machining these challenging materials. They can effectively handle high cutting forces and maintain their cutting edges, resulting in improved tool life and productivity. Overall, Wintech Carbide End Mills, with their PVD coating and high-performance carbide construction, offers reliable and efficient cutting solutions for a wide range of applications, especially when working with tough alloys, super alloys, titanium, and exotic metals.
₹2,595   ₹3,027
You save ₹432!
14.27% OFF
Wintech Solid Carbide Square EndMill Extended Neck 0.5 mm SPM200-SN2-0.5-2-V are versatile cutting tools that can be used for various applications, such as drilling holes and milling operations. These end mills are designed to remove excess material from a workpiece and are commonly used in machining processes. One notable feature of Wintech Carbide End Mills is their PVD (Physical Vapor Deposition) coating. This coating provides several benefits, including easier chip removal. During the cutting process, chips are generated as the tool removes material from the workpiece. The PVD coating helps in effectively evacuating these chips, preventing chip clogging and enhancing the overall machining performance. Another important aspect of these end mills is their construction material. They are manufactured from high-performance, micro-grain carbide. Micro-grain carbide is a type of carbide material with fine grain size, which offers enhanced strength, hardness, and wear resistance. This makes Wintech Carbide End Mills suitable for machining tough alloys, super alloys, titanium, and exotic metals, which are known for their hardness and difficulty in machining. The high strength of these end mills enables them to withstand the demanding cutting conditions associated with machining these challenging materials. They can effectively handle high cutting forces and maintain their cutting edges, resulting in improved tool life and productivity. Overall, Wintech Carbide End Mills, with their PVD coating and high-performance carbide construction, offers reliable and efficient cutting solutions for a wide range of applications, especially when working with tough alloys, super alloys, titanium, and exotic metals.
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₹553   ₹610
You save ₹57!
9.35% OFF
Wintech Carbide End Mills 1.5 mm EP50-S4-01505 are versatile cutting tools that can be used for various applications, such as drilling holes and milling operations. These end mills are designed to remove excess material from a workpiece and are commonly used in machining processes. One notable feature of Wintech Carbide End Mills is their PVD (Physical Vapor Deposition) coating. This coating provides several benefits, including easier chip removal. During the cutting process, chips are generated as the tool removes material from the workpiece. The PVD coating helps in effectively evacuating these chips, preventing chip clogging and enhancing the overall machining performance. Another important aspect of these end mills is their construction material. They are manufactured from high-performance, micro-grain carbide. Micro-grain carbide is a type of carbide material with fine grain size, which offers enhanced strength, hardness, and wear resistance. This makes Wintech Carbide End Mills suitable for machining tough alloys, super alloys, titanium, and exotic metals, which are known for their hardness and difficulty in machining. The high strength of these end mills enables them to withstand the demanding cutting conditions associated with machining these challenging materials. They can effectively handle high cutting forces and maintain their cutting edges, resulting in improved tool life and productivity. Overall, Wintech Carbide End Mills, with their PVD coating and high-performance carbide construction, offers reliable and efficient cutting solutions for a wide range of applications, especially when working with tough alloys, super alloys, titanium, and exotic metals.
₹459   ₹536
You save ₹77!
14.32% OFF
Wintech DNMG150404R-TS-P31TM Cermit Inserts are cutting tools used in machining applications such as turning, milling, drilling, and boring. These inserts are made from a combination of tungsten carbide and a binder metal, typically cobalt. The result is a hard and wear-resistant material that can withstand High temperatures and High-speed machining Cermit inserts, specifically, are designed for use in lathe operations, where the insert is mounted onto a cutting tool holder and rotated against the workpiece to remove material. These inserts are available in a variety of shapes, sizes, and geometries to accommodate different types of machining operations and materials One advantage of Cermit inserts is their long tool life, which reduces the need for frequent tool changes and downtime. They also provide excellent surface finishes and dimensional accuracy, making them popular in the automotive, aerospace, and medical industries Cermit Inserts are used in the metal turning process. They are used in applications where High-quality finishes and long tool life are required. The inserts have a sharp cutting edge that can be sharpened repeatedly without losing its cutting performance It also has a High wear resistance to reduce friction between the tool and workpiece, resulting in reduced heat generation during machining. These characteristics make it suitable for use in a variety of industries such as automotive, aerospace, medical and industrial manufacturing
₹353   ₹404
You save ₹51!
12.53% OFF
Wintech TNMG160404L-SV-P91TF Cermit Inserts are cutting tools used in machining applications such as turning, milling, drilling, and boring. These inserts are made from a combination of tungsten carbide and a binder metal, typically cobalt. The result is a hard and wear-resistant material that can withstand High temperatures and High-speed machining Cermit inserts, specifically, are designed for use in lathe operations, where the insert is mounted onto a cutting tool holder and rotated against the workpiece to remove material. These inserts are available in a variety of shapes, sizes, and geometries to accommodate different types of machining operations and materials One advantage of Cermit inserts is their long tool life, which reduces the need for frequent tool changes and downtime. They also provide excellent surface finishes and dimensional accuracy, making them popular in the automotive, aerospace, and medical industries Cermit Inserts are used in the metal turning process. They are used in applications where High-quality finishes and long tool life are required. The inserts have a sharp cutting edge that can be sharpened repeatedly without losing its cutting performance It also has a High wear resistance to reduce friction between the tool and workpiece, resulting in reduced heat generation during machining. These characteristics make it suitable for use in a variety of industries such as automotive, aerospace, medical and industrial manufacturing
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