MX2000-1 Graphite Embedded Alloy Bearing
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The MX2000 series is a composite self-lubricating friction pair material composed of porous special oil-containing wear-resistant material and metal steel backing; the special wear-resistant layer material is made of special alloy powder and solid lubricant mainly composed of graphite through high-temperature sintering, and has excellent wear resistance.
Advantages
1.Through oil film protection, it has a wear-resistant effect.
2.The porous structure stores oil to achieve self-lubricating effect.
3.The low hardness of the sintered layer makes it easy to absorb hard particles in the earthwork pile environment, making it difficult for the guide plate and the dual structural parts to be roughened.
4.Oil film protection can also reduce noise.
5.Due to the distribution form of dispersed solid lubricants, it can resist the eccentric wear caused by vibration compared with other self-lubricating materials.
6.The material can be freely processed and cut without being restricted by the arrangement of solid lubricants.
7.Because it is a composite material sintered in a vacuum environment, it avoids heavy metal pollution caused by smelting, and at the same time reduces the use of environmentally harmful components, which is more environmentally friendly.
8.Through the optimized ratio of ferrous metals and non-ferrous metals, the uncontrollable price risk caused by the sharp fluctuations of traditional self-lubricating copper materials is reduced.
Fields of use
Automobile stamping die standard parts wear plate | Injection molding machine tail plate and second plate slide | Metallurgical machinery rolling mill lining |
Radial tire mold wear-reducing plate | Engineering machinery joint cylinder sleeve | Rotary drilling rig and sliding frame slider |
Zhejiang Mingxu Machinery Manufacturing Co., Ltd. formerly known as Jiashan Mingxu Precision Machinery Factory, was founded in 2011. The company is located in the hinterland of the Yangtze River Delta Integrated Development Demonstration Zone, with location and convenient transportation. With more than ten years of manufacturing and R&D experience, the company has been deeply involved in the development and production of solid lubricating bearings, skateboards, slideways, and sliders. The product manufacturing adopts modern automation equipment, strictly implements the ISO2000 quality management system standard, and the main processes are processed by high-precision CNC machines. OEM Steel&Copper Composite Wear Plate Manufacturers and Custom Steel&Copper Composite Wear Plate Factory in China. The company's main products cover a series of products such as JDB solid inlaid self-lubricating bearings, steel-copper sintered bearings, SF-1 self-lubricating bearings, SF-2 boundary self-lubricating bearings, and FB090 copper bearings. Widely used in automobile industry, construction machinery, metallurgical equipment, mining machinery, injection molding, mold, textile, printing and many other machinery manufacturing fields; provide Custom Steel&Copper Composite Wear Plate. Till now, the company's products have spread all over China and exported to many foreign countries, and are deeply recognized and loved by domestic and foreign customers.
Mingxu Machinery adheres to the service tenet of "quality-oriented high-quality service", and strive to provide customers with professional products and services. The company will continue to introduce talents, improve the management mechanism, integrity, development, innovation, and strive to build a world-class brand.
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READ MORECopper-steel composite materials have a wide range of application prospects
Copper-steel composite materials are a very promising material. Through different process technologies, copper and steel are combined to form a material with dual properties.
The material has excellent corrosion resistance and can resist the erosion of strong acids, strong alkalis and corrosive gases, ensuring the working efficiency of the material in harsh environments. Copper-steel composite materials have excellent electrical and thermal conductivity, which can effectively save energy, improve production efficiency and extend the service life of equipment. The material also has good mechanical properties and can withstand high compressive, shear and bending strength, making it widely used in various mechanical equipment manufacturing fields. Good weldability and mechanical bonding are the key to the wide application of copper-steel composite materials. By selecting appropriate welding methods and welding equipment, copper-steel composite materials can be easily welded, and the welds have good mechanical properties and strength, so that the application of composite materials can be perfectly realized.
At present, copper-steel composite materials have been used in many important fields, providing more advanced and efficient material solutions for these fields. In the field of shipbuilding, copper-steel composite materials can manufacture stronger and more corrosion-resistant ships. In the automotive industry, copper-steel composite materials can manufacture stronger and safer car bodies. In the electrical industry, copper-steel composites can be used to manufacture more efficient and durable electrical components. In the military field, copper-steel composites can be used to manufacture stronger and more durable military equipment. In addition, copper-steel composites can also be used in the production and manufacturing of some other fields:
In the aviation field, copper-steel composites can be used to manufacture some key parts and fuselages. With the rapid development of science and technology and the introduction of some new concepts, aircraft designs are gradually tending to be larger, wider and lighter, and stronger materials are needed at the same time. Copper-steel composites have the advantages of both materials and have broad application prospects in this field. For example, in the field of aviation engines, copper-steel composites can be used to strengthen the structural strength of components such as blades and accelerators, optimize aerodynamic performance, and improve performance and efficiency.
In the field of petrochemicals, copper-steel composites are also widely used. The petrochemical industry is one of the fastest growing industries in the world, with increasing investment scale and increasing technical requirements. Copper-steel composites can be used in this field to manufacture efficient, corrosion-resistant, heat-resistant, high-pressure and explosion-proof equipment. For example, the manufacture of refining towers, high-pressure oil pipes, etc.
In the field of mechanical manufacturing, copper-steel composite materials can be used to manufacture structural parts and transmission parts of different components. In some large-scale mechanical fields such as mining excavation equipment, copper-steel composite materials can be used to make highly damaged parts, such as blocks, to enhance service life and reliability and improve production efficiency.
In the medical field, copper-steel composite materials can be used to manufacture medical instruments and medical equipment, such as surgical instruments, medical offline machines, etc. Copper-steel composite materials have the advantages of both materials, with good electrical conductivity, thermal conductivity and corrosion resistance. These characteristics make copper-steel composite materials widely used in the medical industry.
Copper-steel composite materials are widely used in engineering and industrial fields due to their excellent mechanical properties and wear resistance. Copper-steel composite wear plates not only combine the good conductivity and corrosion resistance of copper but also possess the high strength and toughness of steel. This composite material can effectively extend the service life of equipment and reduce maintenance costs in industries such as mining, metallurgy, and machinery manufacturing. With ongoing technological advancements, the application range of copper-steel composite wear plates continues to expand, making them an indispensable material in modern manufacturing.