The application range of temperature isostatic press is wide, and Sichuan Lineng Company will make an overall introduction from: powder metallurgy, ceramics, composite materials, wood processing and other fields.
2025-03-04 14:21:36Sichuan Lineng Ultra-High Voltage Equipment Co., Ltd43
powder metallurgy field
Metal powder molding: Used to press metal powder into a body with a certain shape and density, such as manufacturing high-performance mechanical parts, tools, etc. Compared with traditional molding methods, the metal blank formed by thermostatic pressing has higher density and more uniform structure, which can effectively improve the strength, toughness and other mechanical properties of metal products.
Refractory metal processing: For refractory metal powders such as tungsten and molybdenum, thermostatic presses can shape them at the appropriate temperature and pressure, providing good blanks for subsequent sintering and processing, helping to prepare complex shaped components of refractory metals.
ceramic industry
High-performance ceramic preparation:It can be used to produce various high-performance ceramic products, such as electronic ceramics, structural ceramics, etc. It can make the ceramic powder more uniformly dense under temperature and pressure conditions, reduce the porosity inside the ceramics, improve the density, hardness, strength and wear resistance of ceramics, and make ceramic products more suitable for harsh environments such as high temperature, high pressure, and wear resistance1。
Ceramic knife manufacturing:In the production of ceramic tools, the thermostatic press can press the ceramic powder into a tool body, giving the tool better cutting performance and service life.
Composite materials
Fiber-reinforced composite molding:For fiber-reinforced resin matrix composites, the thermostatic press can make the resin better infiltrate the fiber at a certain temperature and pressure, promote the combination of fiber and resin, improve the interfacial bonding strength of the composite, improve the overall performance of the composite material, and is often used in the manufacture of structural components in aerospace, automobile and other fields.
Preparation of particle-reinforced composites: When preparing particle-reinforced metal-based or ceramic matrix composites, the thermostatic press can evenly distribute the particles in the matrix and improve the comprehensive properties of the composites, such as strength, hardness, and wear resistance.
Wood processing industry1
Wood bending and forming: Thermal isostatic pressing treatment of wood can soften the wood at a certain temperature, and bending and forming can be achieved by applying uniform pressure, which is used to manufacture wooden components with complex shapes such as furniture and decoration materials, and can reduce the cracking and deformation of wood during the bending process.
Wood modification treatment: The use of thermostatic press can modify the wood, such as at a certain temperature and pressure, so that the wood can fully react with some chemical reagents to improve the water resistance, corrosion resistance and dimensional stability of the wood.
Other areas
New material research and development: In the research and development process of new materials, thermostatic presses can be used to explore new material formulations and molding processes, providing experimental means for the development of new materials with special properties, such as the preparation of materials with special properties such as high conductivity and high magnetism.
Geological sample simulation: In geological research, the formation and change process of rocks under certain temperature and pressure conditions can be simulated, helping researchers understand geological structure and rock properties.
What factors affect the efficiency of a thermostatic press?
What is the approximate market price of a thermostatic press?
Sichuan Lineng Ultra-High Voltage Equipment Co., Ltd The application scenarios of thermostatic presses and other industries will be introduced in detail:
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