About Us


Rheniumet Super Carbide Ltd

Started in 2009_, the global supplier of cemented carbide series products, a modern enterprise integrating the development, mold manufacturing, production and sales of precision tools.

Rheniumet Precision specializes in providing high-performance, long-life, high-precision tooling materials and wear-resistant key components for machining processes such as cutting, cutting, polishing, and stamping for heat-resistant stainless steel, special steel, high-temperature alloys, titanium alloys, refractory metals, special alloys, ceramics, graphite, and other difficult-to-machine materials.

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Rhenium due to Seiko
2009 Year

The company was founded

100 +

All kinds of professional and technical personnel

100 Million

Total investment of over billion yuan

20000

Production and processing base construction area of 20000 ㎡

Products


Rhenium and Rhenim alloys

Rhenium because to provide users with eight series of more than 50 varieties of rhenium products, long-term supply of nearly 10 countries in the world, nearly 20 key customers of high-quality rhenium products.

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Rare and Precious metal

Rheniumet has developed and cultivated in the field of thin materials for more than decades, understands the future development and application trend of science and technology, and mainly creates high-end characteristic thin materials products.

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Cemented carbide wear-resistant series

Rheniumet is committed to research and development and production of various types of cemented carbidewear-resistant workpiece, so that it is more suitable for machinery manufacturing, petrochemical and other industries in the harsh conditions.

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Cemented carbide hardfacing recovery

Rheniumet to undertake a variety of hard surface repair and processing of carbide wear-resistant parts, such as TC bearings, mud pulser, centralizer, tree accessories, cone drill, grinding machine accessories.

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Tungsten heavy alloy

Tungsten heavy alloy is tungsten as a matrix, in which a small amount of Ni, Co, Mo and other elements are added, is a typical two-phase alloy, and is also known as "high-density alloy".

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Cemented carbide cutting tools

Through years of research, Ms. Qin Hanmei, the founder, discovered that the addition of rhenium element to hard alloys for cutting has led to a significant breakthrough in tool performance, characterized by three major features: high temperature resistance, high strength, and high hardness.

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Cemented carbide die material

"Rheniumet Precision" mold materials are produced by adding rare metals to hard alloy materials. Compared to traditional hard alloy molds, these molds offer higher production efficiency, better workpiece quality, and longer mold life. These molds can be classified into four categories based on their usage: stamping molds, cold heading and cold punching molds, non-magnetic alloy molds used for the production of magnetic materials, and hot working molds.

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Cemented carbide non-calibrated parts

The company utilizes advanced machining techniques and processes semi-finished products to produce a wide range of custom-shaped and purpose-specific products such as plates, molds, long bars, rods, and other special-shaped products. These products can cater to the diverse needs of various industries for different shapes and purposes. Custom orders for tungsten steel and powder metallurgy preformed parts are also welcomed.

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High performance cutting tool material

"Rheniumet Precision" by adding other rare and precious metals in cemented carbide, enhance the wear resistance and high temperature resistance of the alloy. Such super cemented carbide materials can be made into wire, sheet, etc., and applied to high-speed, high-precision, difficult to cut materials cutting tools.

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PM high speed steel/special steel

The company manufactures a variety of products including oil-impregnated bearings, powder metallurgy parts, oil-impregnated bearing standard components, oil-impregnated bronze bushings, powder metallurgy structural components, powder metallurgy gears, and other powder metallurgy products. In addition to commonly used domestic and international mechanical standard components, we also offer customized production of special specifications, high precision, and high-quality products based on user requirements or provided drawings and samples.

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Other ceramic materials and products

The company is dedicated to the research and development of powder metallurgy metal ceramic products. By adding rare metals and refining the hard phase particles of metal ceramics, we aim to enhance the material's density, flexural strength, hardness, and fracture toughness. These products find wide applications in aerospace, general machinery, precision electronics, petrochemicals, automotive manufacturing, mold processing, and various other fields. We specialize in precision machining of non-standard parts based on provided drawings or samples.

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overcome Programme


Titanium alloy processing solutions

Titanium alloy processing solutions

Lithium ion battery copper foil, aluminum foil cutting solutions

Lithium ion battery copper foil, aluminum foil cutting solutions

Aerospace Solutions

Aerospace Solutions

Electronic semiconductor solutions

Electronic semiconductor solutions

Refractory metal processing solutions

Refractory metal processing solutions

Superalloy processing solutions

Superalloy processing solutions

Stainless steel processing solutions

Stainless steel processing solutions

Titanium alloy processing solutions

Titanium alloy materials have many advantages and disadvantages. Its disadvantages include high hardness, low plasticity, low thermal conductivity, large elastic deformation, and low elastic modulus. Titanium alloys are mainly used to manufacture compressor components of aircraft engines, followed by structural components of rockets, missiles, and high-speed aircraft. Additionally, they are used in the medical field for human bone implants, among other applications. Due to their high precision requirements and difficulty in processing, there are high demands on machining tools.
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Lithium ion battery copper foil, aluminum foil cutting solutions

The parts in the lithium battery industry are highly precise, thus demanding high-quality blades. Tungsten steel copper foil and aluminum foil slitting blades generally consist of bottom slitter and upper slitting blades in the rewinder.
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Aerospace Solutions

Titanium alloys are primarily used in the aerospace industry for manufacturing aircraft engines and fuselages. Generally, for aircraft with Mach numbers less than 2, a portion of titanium and its alloys are used in the engines, while the fuselage is typically made of aluminum alloy. For aircraft with Mach numbers equal to 2, the amount of titanium used in the engine increases, and parts of the fuselage also require titanium for making important load-bearing components. Specifically for titanium alloy structural components, "Rheniumet Precision" has developed a complete set of specialized milling and drilling series products.
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Electronic semiconductor solutions

Semiconductor components are complex structures composed of thousands of parts, and the performance, quality, and precision of these parts collectively determine the reliability and stability of the equipment. These parts have extremely high precision requirements and often use difficult-to-machine materials such as tungsten, molybdenum, tantalum, and niobium. They require cutting tools with higher strength and better wear resistance.
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Refractory metal processing solutions

Common refractory metals such as tungsten have high melting points (3410°C), high density, and excellent corrosion resistance. They are often used in metallurgy, electronics, chemical engineering, and the nuclear industry to produce high-temperature resistant components such as electrodes, cladding materials for high-temperature reactors, balance devices, and medical X-ray tube tungsten targets. Tungsten can be made into ingots or sintered products. Tungsten ingots can be rolled into bars or profiles after peeling, or cold-drawn into wire. Sintered tungsten products are often made into high-density alloys.
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Superalloy processing solutions

High-temperature alloys are engineering materials used under conditions of around 1000°C and are widely used in aerospace, aviation, and various heat treatment equipment. Due to the presence of many high-melting-point alloy elements such as Fe, Ti, Cr, Ni, V, W, Mo, etc., in high-temperature alloys, these alloy elements, along with other alloying elements, form high-purity, dense austenitic alloys. Some elements also form compounds with non-metallic elements such as C, B, N, etc., which have high hardness, low density, and high melting point, making their machinability very poor. Its relative machinability is only 5-20% of that of 45# steel.
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Stainless steel processing solutions

Stainless steel components are widely used in industries such as food processing, chemical engineering, brewing, catering, and healthcare. Due to its high toughness, thermal strength, low thermal conductivity, significant plastic deformation during cutting, severe work hardening, high cutting heat, and poor heat dissipation, stainless steel materials often lead to high cutting temperatures at the tool tip, severe chip adhesion to the cutting edge, and the formation of built-up edges, which not only exacerbate tool wear but also affect the surface roughness of the workpiece. Additionally, because the chips are not easy to curl or break, they can also damage the already machined surface, affecting the quality of the workpiece. To improve machining efficiency and workpiece quality, it is crucial to correctly select tool materials, tool geometry parameters, and cutting parameters.
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