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tungsten carbide flats

tungsten carbide flats
We Mikron Engineers are involved in offering utmost quality of Tungsten Carbide Flats. Powder metallurgy techniques are mostly used to create tungsten carbide flat bars from wolfram carbide and cobalt powder. Powder milling, ball milling, pressing, and sintering are the main steps in the production of tungsten carbide bar stock. The amount of WC and Co in tungsten carbide square bars varies depending on their intended usage. We are Leading Manufacturers, Suppliers, Provider, Exporters, In Mumbai, In Navi Mumbai, In Thane, In India.

Stainless steel's corrosion, oxidation, wear, bonding, and acid-base resistance are all present in carbide plate, which is a very effective and environmentally friendly material. It also guarantees good strength, toughness, bending and stretching, and impact resistance.Cast iron cutting tools for woodworking are made of tungsten carbide strip. It is applicable to a variety of industries, including those that operate with wood, stainless steel, high manganese steel, cast iron, non-ferrous metals, and aluminium section bars, among others.

Tungsten carbide plates are made by Mikron Engineers to various specifications as requested by customers. There are two types of surface conditions: sintered blank and polished, each of which fits a certain product use.

Features

  • Brazing is simple and has a wide range of applications
  • High hardness, excellent red hardness, and exceptional wear resistance and toughness
  • There are both standard sizes and bespoke sizes available
  • high accuracy for the visual dimension and stable performance for internal quality
  • much more effective than HSS.

Application

  • High hardness, suited for rough machining of ceramic, nonferrous metal, dry wood, solid wood, iron, and other alloys.
  • High tensile strength; simple brazing without heat preservation; suitable for solid wood, rosewood, pinewood, and other wood with many stutters.

Utilization of tungsten carbide strip in products: -

  • 1. To making punching dies
  • 2. To create tools that are durable.
  • 3. To create components that are resistant to high temperatures, wear, and shielding
  • 4. To create components for the chemical sector that resist corrosion.
  • 5. To be utilised in medical equipment as corrosion- and radiation-resistant materials.

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