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Hard alloy preparation processing system

A processing system and hard alloy technology, which is applied in the field of hard alloy processing systems, can solve problems such as uneven properties of hard alloy and affecting the overall use

Pending Publication Date: 2021-04-09
王锋
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Cemented carbide is an alloy material made of hard compounds of refractory metals and bonding metals through powder metallurgy. Cemented carbide has high hardness, wear resistance, good strength and toughness, heat resistance, corrosion resistance, etc. A series of excellent properties, especially its high hardness and wear resistance, remain basically unchanged even at a temperature of 500 ° C, and still have a high hardness at 1000 ° C. Cemented carbide is widely used as a tool material, such as Turning cutters, milling cutters, planers, drills, boring cutters, etc., are used for cutting cast iron, non-ferrous metals, plastics, chemical fibers, graphite, glass, stone and ordinary steel, and can also be used for cutting heat-resistant steel, stainless steel, high manganese steel, For difficult-to-machine materials such as tool steel, the most important step in the processing process is to mix the alloy raw materials. Often, the properties of the cemented carbide are uneven due to the fact that the larger alloy particles cannot be better integrated with the smaller particles, which affects the overall use.

Method used

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Experimental program
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specific Embodiment approach 1

[0030] Combine below Figure 1-9 Describe this embodiment, a cemented carbide processing system, including a processing support assembly 1, a discharge control mechanism 2, a discharge assembly 3, a metal crushing assembly 4, a closing mechanism 5, a large particle separation mechanism 6, and a discharge carrying box 7. The discharge control mechanism 2 is fixedly connected to the processing support assembly 1, the discharge assembly 3 is fixedly connected to the discharge control mechanism 2, the discharge carrying box 7 is fixedly connected to the processing support assembly 1, and the discharge load The box 7 is slidably connected to the upper end of the discharge assembly 3, the closing mechanism 5 is fixedly connected to the upper end of the discharge carrying box 7, the closure mechanism 5 is slidably connected to the metal crushing assembly 4, and the large particle separation mechanism 6 is fixedly connected to the discharge carrying box 7 on;

[0031] The processing ...

specific Embodiment approach 2

[0033] Combine below Figure 1-9 To illustrate this embodiment, the processing support assembly 1 includes a support base plate 1-1, a fine material placement tray 1-2, an upper support plate 1-3 and a connecting column 1-4, and a plurality of connecting columns 1-4 are fixedly connected On the support base plate 1-1, the fine material placement tray 1-2 is fixedly connected to the upper end of the support base plate 1-1, and the upper support plate 1-3 is fixedly connected to a plurality of connecting columns 1-4.

specific Embodiment approach 3

[0035] Combine below Figure 1-9To illustrate this embodiment, the discharge control mechanism 2 includes an adjustment fixed plate 2-1, a drive assembly 2-2, a rack 2-3, a control panel 2-4, and a telescopic rod 2-5. Two drive assemblies 2 -2 are fixedly connected to the adjustment fixed plate 2-1, and the two racks 2-3 are both slidably connected to the adjustment fixed plate 2-1, and the two racks 2-3 are respectively meshed with the drive assembly 2-2 for transmission, The two control boards 2-4 are respectively fixedly connected to the two racks 2-3, and the two control boards 2-4 are fixedly connected through two telescopic rods 2-5, and the adjustment fixed board 2-1 is fixedly connected to the support the upper end of the bottom plate 1-1;

[0036] When unloading, start the two drive components 2-2 to move the two racks 2-3, and the two control panels 2-4 are close to each other, and the adjustment table 3-4, the adjustment slant block 3-5, under the control The mate...

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Abstract

The invention relates to the technical field of alloy preparation, in particular to a hard alloy preparation processing system. The hard alloy preparation processing system comprises a processing supporting assembly, a discharging control mechanism, a discharging assembly, a metal smashing assembly, a closing mechanism, a large particle separation mechanism and a discharging bearing box, the hard alloy preparation processing system has the advantage that large particle metal blocks and small particles in alloy raw materials can be separated, the discharging control mechanism is fixedly connected to the processing supporting assembly, the discharging assembly is fixedly connected to the discharging control mechanism, the discharging bearing box is fixedly connected to the processing supporting assembly, the discharging bearing box is connected to the upper end of the discharging assembly in a sliding mode, the closing mechanism is fixedly connected to the upper end of the discharging bearing box, the closing mechanism is slidably connected to the metal smashing assembly, and the large particle separation mechanism is fixedly connected to the discharging bearing box.

Description

technical field [0001] The invention relates to the technical field of alloy preparation, in particular to a cemented carbide processing system. Background technique [0002] Cemented carbide is an alloy material made of hard compounds of refractory metals and bonding metals through powder metallurgy. Cemented carbide has high hardness, wear resistance, good strength and toughness, heat resistance, corrosion resistance, etc. A series of excellent properties, especially its high hardness and wear resistance, remain basically unchanged even at a temperature of 500 ° C, and still have a high hardness at 1000 ° C. Cemented carbide is widely used as a tool material, such as Turning cutters, milling cutters, planers, drills, boring cutters, etc., are used for cutting cast iron, non-ferrous metals, plastics, chemical fibers, graphite, glass, stone and ordinary steel, and can also be used for cutting heat-resistant steel, stainless steel, high manganese steel, For difficult-to-mach...

Claims

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Application Information

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IPC IPC(8): B22F9/04
CPCB22F9/04B22F2009/045
Inventor 王锋
Owner 王锋