Cemented Carbide Tapered Ball Tooth

Tungsten Carbide

Cemented Carbide Tapered Ball Tooth

Cemented Carbide Tapered Ball Tooth

Cemented carbide tapered ball tooth is a key cutting component of geological and mining equipment (such as DTH drills, roller cone drills). It adopts a tapered structure design, and the ball head has excellent impact toughness and wear resistance. It can effectively crush hard rocks and ores, and is suitable for drilling, blasting and other operations. It has the advantages of high crushing efficiency, strong impact resistance and being not easy to damage.

Wear-Resistant Bushing

Wear-Resistant Bushing

The wear-resistant bushing is a versatile wear-resistant protective component made of high-quality cemented carbide material. It is widely used in machinery manufacturing, automation equipment, hydraulic systems and other fields to reduce friction and wear between moving parts and protect base parts. It has the characteristics of compact structure, easy installation, good wear resistance and long service life, and can be customized in size and material according to different working conditions.

Cemented Carbide Insert

Cemented Carbide Insert

Cemented carbide insert is a common core tool component in metal cutting processing. It is made of different grades of cemented carbide and has the characteristics of high hardness, high wear resistance and high temperature resistance. Suitable for various cutting processes such as turning, milling, drilling and planing, it can process various workpieces such as steel, cast iron, non-ferrous metals and composite materials. Different shapes, sizes and cutting edge forms can be customized according to processing requirements.

Cemented Carbide Mushroom-Shaped Ball Tooth

Cemented Carbide Mushroom-Shaped Ball Tooth

Cemented carbide mushroom-shaped ball tooth is named for its mushroom-like shape. It is an efficient crushing tool component made of cemented carbide material. The head is round and thick, with excellent impact resistance and wear resistance. It is mainly used in crushers, impact drills, roadheaders and other equipment. Suitable for crushing hard materials such as rocks, ores and concrete, it has high crushing efficiency and long service life.

Cemented Carbide Flat-Top Tooth

Cemented Carbide Flat-Top Tooth

Cemented carbide flat-top tooth is a cemented carbide toothed component with a flat top. It has high strength, high wear resistance and good load distribution capacity. It is mainly used in extrusion, crushing, forming and other processes, and is widely applied in mining machinery, construction machinery, powder metallurgy equipment and other fields. It can effectively bear high pressure and impact load, and is suitable for processing materials with high hardness.

Cemented Carbide Ball Tooth

Cemented Carbide Ball Tooth

Cemented carbide ball tooth is a multi-functional cemented carbide cutting/crushing component with a spherical head. It has excellent impact toughness, wear resistance and cutting performance. Widely used in mining, tunnel excavation, building crushing and other fields, it is installed on drilling rigs, crushers, excavators and other equipment. It can efficiently crush hard materials such as rocks, ores and concrete, and is a key wearing part in the geology, mining and construction industries.

Nickel-Based Wrought Superalloys

Nickel-Based Wrought Superalloys

Nickel-based wrought superalloys are a class of high-performance materials designed for exceptional mechanical strength, creep resistance, and structural stability at elevated temperatures, typically above 540°C (1000°F). The term “wrought” signifies that these alloys are shaped into their final form through thermomechanical processes such as forging, rolling, or extrusion, which results in a fine, directional grain structure that provides superior tensile and fatigue properties compared to their cast counterparts. They are the backbone of high-temperature rotating components in aerospace and power generation, where failure is not an option.

Nickel-Based Corrosion-Resistant Alloys

Nickel-Based Corrosion-Resistant Alloys

Nickel-based corrosion-resistant alloys are a class of advanced metallic materials engineered primarily to withstand extreme corrosive environments. Their foundation is a nickel (Ni) matrix, which is inherently resistant to many corrosives, alloyed with other key elements—primarily chromium (Cr), molybdenum (Mo), and sometimes copper (Cu) and nitrogen (N)—to create a versatile and powerful family of materials for the most aggressive chemical and industrial applications. They are the go-to solution when stainless steels are no longer sufficient.

Stellite Alloy

Stellite Alloy

Stellite alloy is a high-temperature alloy material with excellent high-temperature resistance, corrosion resistance, and wear resistance. It is widely used in aerospace, aero-engines, petrochemicals, medical devices, and other fields. The following is a detailed description of the product classification, classification rules, application fields, and advantages of Stellite alloys

Iron-based Wrought High-temperature Alloys

Iron-based Wrought High-temperature Alloys

Iron-based wrought high-temperature alloys are a class of metallic materials with iron (Fe) as the principal element, engineered to maintain good mechanical strength and resistance to degradation (like oxidation) at elevated temperatures, typically in the range of 540°C to 760°C (1000°F to 1400°F). The “wrought” designation indicates they are shaped by thermomechanical processes such as hot rolling, forging, or extrusion, which refine their microstructure to provide a favorable combination of strength, ductility, and fabricability. They serve as a cost-effective and highly versatile solution for a wide array of high-temperature applications, bridging the performance gap between stainless steels and more expensive nickel or cobalt-based superalloys.

Cobalt-Based Superalloy

Cobalt-Based Superalloy

Cobalt-based superalloys are a class of high-performance metallic materials designed to maintain exceptional mechanical strength, surface stability, and corrosion resistance at extremely high temperatures, often exceeding those where nickel-based superalloys begin to weaken. They are a cornerstone material for critical components in the most demanding environments, particularly in aerospace, industrial gas turbines, and medical implants. Their superior performance stems from a strengthened cobalt-chromium matrix and a high volume of hard, refractory carbide particles.

TC Bearing Product Series

TC Bearing Product Series

Solving the problem of long service life for core components, improving efficiency and profitability! Service areas: Screw motors, rotary steerable systems, downhole drilling tools, etc.

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