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What Are the Uses of Tungsten Carbide Rods?

The uses of tungsten carbide rods designed and produced by CTIA GROUP include manufacturing cutting tools, molds, and wear-resistant parts, which are used in the automotive industry, electronics industry, medical field, and other areas.

CTIA GROUP and its parent company, CHINATUNGSTEN ONLINE, have been dedicated to the tungsten-molybdenum products industry for nearly 30 years. They specialize in providing flexible, customized global services for tungsten-molybdenum products, designing, manufacturing, and precisely processing various standard specifications, grades, and dimensional precision according to customer requirements, suitable for a wide range of applications. For more information on tungsten carbide, please visit the website: http://www.tungsten-carbide.com.cn/index.html. If you require tungsten carbide, please contact CTIA GROUP: sales@chinatungsten.com, 0592-5129595.

CTIA GROUP’S tungsten Carbide Rod

I. Tungsten Carbide Rods for Cutting Tools

In terms of drilling tools, tungsten carbide rods are used to manufacture various types of drills, including ordinary twist drills, step drills, center drills, deep-hole drills, and micro-drills. Rods with one or two straight cooling holes are suitable for manufacturing internal cooling drills for deep-hole machining conditions; rods with spiral cooling holes are suitable for high-performance cutting scenarios, such as high-efficiency machining of automotive engine parts. The tungsten carbide gun drill series can be applied to deep-hole machining scenarios for large equipment or special equipment.

In terms of milling tools, end mills are the tool type with the largest consumption of tungsten carbide rods, including flat-bottom end mills, ball-nose end mills, roughing end mills, and high helix angle end mills. This product is suitable for processes such as CNC milling, slot milling, and curved surface machining. In addition, tungsten carbide rods are also used to manufacture precision tools such as reamers, taps, and engraving cutters.

In terms of automotive engine parts processing, solid end mills, drills, reamers, taps, and other tools made from tungsten carbide rods are used for roughing and finishing operations of components such as cylinder blocks, cylinder heads, crankshafts, camshafts, pistons, and valve guides. In terms of transmission system parts processing, tungsten carbide tools are used for milling and drilling operations on gears, synchronizers, and shaft parts.

II. Tungsten Carbide Rods for Molds

In the cold heading forming process, tungsten carbide rods are used to manufacture cold heading punches, core rods, sizing dies, and heading dies. These molds are used for the cold heading production of fasteners such as screws, nuts, and rivets, as well as components for the automotive and electronics industries.

In the field of stamping dies, tungsten carbide rods are machined into stamping pins, punch rods, and progressive die punches, used for precision stamping operations of products such as motors, electronic connectors, and lead frames. In the field of wire drawing dies, tungsten carbide rods serve as standard blanks for wire drawing die cores, used for the drawing and forming of metal wires such as steel wire and copper wire.

CTIA GROUP’S tungsten Carbide Rod

III. Tungsten Carbide Rods for Wear-Resistant Parts

Tungsten carbide rods are used to manufacture wear-resistant parts that serve in relatively high-wear or high-load environments. In terms of mechanical seals and fluid control, tungsten carbide rods are machined into components such as mechanical seal rings, valve seats, plungers, and nozzles. In terms of guide and transmission components, tungsten carbide rods are used to manufacture mechanical parts such as wear-resistant shafts, bearing bushes, guide posts, and ejector pins.

In the field of measuring tools, tungsten carbide rods are used to manufacture precision measuring instruments such as plug gauges, ring gauges, snap gauges, measuring rods, and gauge blocks. This type of application primarily utilizes the high dimensional stability of tungsten carbide material, which helps ensure measurement accuracy.

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