DESKAR 16 ER 2.0 ISO LF6118 Indexable Tungsten Carbide Threading Lathe Inserts are a must-have for any professional or DIY enthusiast who needs to work on threaded lathe holders. Designed by the renowned brand, DESKAR, these threading lathe ins...
DESKAR
16 ER 2.0 ISO LF6118 Indexable Tungsten Carbide Threading Lathe Inserts are a must-have for any professional or DIY enthusiast who needs to work on threaded lathe holders. Designed by the renowned brand, DESKAR, these threading lathe inserts feature superior quality and are made with high-grade tungsten carbide material, which makes them durable and long-lasting.
The DESKAR 16 ER 2.0 ISO LF6118 threading lathe inserts are designed to offer high accuracy and precision when cutting and shaping threads. With its indexable design, the inserts are easy to install and use, allowing you to work faster and more efficiently. These DESKAR inserts can be easily interchanged with other inserts, making them versatile and ideal for a range of threading applications.
The DESKAR 16 ER 2.0 ISO LF6118 Inserts have a cutting edge length of 16mm, which makes them suitable for working on large-diameter threads. With its fine thread pitch of 2.0mm, these inserts offer a precise and consistent threading finish.
The Tungsten Carbide material used to manufacture these inserts is known for its low wear-rate and high durability, which means that these inserts will remain sharp for longer periods, reducing the need for frequent replacements. This quality material also ensures that your threading work is of top-notch quality, resulting in a smooth and accurate finish. Additionally, the inserts have an excellent resistance to heat and wear, which means you can work on high-volume threading work without worrying about damaging them.
The DESKAR 16 ER 2.0 ISO LF6118 threading lathe inserts are suitable for use on various materials, including stainless steel, aluminum, and other types of hard metals. With its multi-coated design, these inserts offer enhanced durability, improved chip flow, and heat resistance, making them ideal for high-speed threading work.
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