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Preparation method of free-falling double-nozzle mixed powder gas atomization water-cooled fast-setting metal-based titanium carbide magnetic abrasive

A magnetic abrasive, titanium carbide technology, applied in metal processing equipment, chemical instruments and methods, other chemical processes, etc., can solve the problems of metal liquid and high-pressure gas back-spray danger, erosion wear, grinding efficiency reduction and other problems, to avoid The effect of metal liquid backflow and upward spraying, improving bonding strength and avoiding erosion and wear

Active Publication Date: 2018-07-31
SHANDONG UNIV OF TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The current problem of the reaction casting method is that the content of ceramic hard abrasive in the magnetic abrasive is low and the particle size of the hard abrasive is difficult to control
Although this method solves the problem of poor compatibility between the iron-based phase and the abrasive phase, the magnetic abrasive prepared by this method is subjected to the high temperature of the plasma flame, and the sharp cutting edge of the abrasive grain phase is passivated, resulting in a significant reduction in grinding efficiency. , its grinding ability is even inferior to that of magnetic abrasives prepared by other simple methods
[0011] At present, the main problems of magnetic grinding and finishing are the low service life of magnetic abrasives, poor metal cutting ability, difficult preparation and high cost.
[0012] (1) Jet nozzle problem: due to the use of a single nozzle, the jet velocity of the gas-solid two-phase flow is high, resulting in rapid erosion and wear of the jet nozzle, and it fails in a very short time, and the preparation function of the magnetic abrasive is lost; at the same time, it is also due to the A single nozzle is used, and the hard abrasive and high-pressure gas are used as the atomizing medium. If the jet velocity of the gas-solid two-phase flow is low, the atomization effect will be poor and the magnetic abrasive particles will be coarse. However, if the jet velocity of the gas-solid two-phase flow is high, although the magnetic Although the particle size of the abrasive is reduced, the hard abrasive will splash out again after entering the molten metal, resulting in a sharp decrease in the hard abrasive contained in the metal matrix of the magnetic abrasive, and the grinding performance of the magnetic abrasive is significantly reduced
[0013] (2) Erosion and wear of the molten metal guide tube: the tightly coupled atomization method is adopted. Before the molten metal flow is atomized, the gas-solid two-phase flow is first sprayed onto the lower end of the molten metal guide tube, causing The lower end of the molten metal diversion pipe has serious erosion and wear in a short period of time, which leads to the risk of back spraying of molten metal and high-pressure gas along the molten metal diversion pipe
[0014] (3) Condensation rate control of liquid magnetic abrasive droplets: Since the problem of accurate control of condensation rate of molten magnetic abrasive droplets has not been solved, the prepared magnetic abrasives have been unstable in depth distribution of hard abrasives in the metal matrix. Affect the grinding ability of magnetic abrasives, and the scrap rate is high
[0015] (4) The content control of hard abrasives in magnetic abrasives: due to the difficulty of accurately controlling the flow rate of hard abrasives in gas-solid two-phase flow in the pneumatic powder mixing device, the content of hard abrasives in magnetic abrasives is unstable and the magnetic abrasives Unstable performance
[0016] (5) The problem of erosion and wear of the molten metal guide tube: using the tightly coupled atomization method, before atomizing the molten metal flow, the gas-solid two-phase flow is first sprayed onto the lower end of the molten metal guide tube, causing The lower end of the molten metal diversion pipe has serious erosion and wear in a short period of time, which leads to the risk of back spraying of molten metal and high-pressure gas along the molten metal diversion pipe

Method used

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  • Preparation method of free-falling double-nozzle mixed powder gas atomization water-cooled fast-setting metal-based titanium carbide magnetic abrasive

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Effect test

Embodiment 1

[0042] The preparation of metal-based titanium carbide magnetic abrasive comprises the following steps:

[0043] 1) Fill the titanium carbide abrasive tank (26) with a set amount of titanium carbide abrasive and tighten the titanium carbide abrasive tank cover (25);

[0044] 2) The metal-based material is iron:silicon:aluminum:copper=83%:9%:6%:2% by weight, put into an electric furnace and heated to a molten state and reach the specified superheat;

[0045] 3) Open the cold water valve (6) and adjust the water level of the cooling water (37) in the atomizing water cooling chamber (36) to a specified height;

[0046] 4) Turn on the blower (12) and suck the gas in the atomized water-cooling chamber (36);

[0047] 5) Open the air valve 1 (16) connected between the high-pressure nitrogen cylinder 1 (13) and the high-pressure air flow nozzle (34) and adjust to the specified air flow pressure, and fill the atomizing water cooling chamber (36) with nitrogen, so that the The metal g...

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Abstract

A method for preparing a free-falling double-nozzle mixed powder gas atomization water-cooled fast-setting metal-based titanium carbide magnetic abrasive, characterized in that: the hard abrasive of the magnetic abrasive uses titanium carbide powder, and the metal-based material is iron, silicon, aluminum, copper four alloy composed of two elements; the nozzle adopts upper and lower double-layer free-fall nozzles, the upper free-fall nozzle is a low-pressure powder-mixing jet nozzle, and the lower-layer free-fall nozzle is a high-pressure airflow nozzle; the cooling method is water cooling, by adjusting the cooling water in the atomization water cooling chamber The height of the water level can control the cooling rate of the metal droplets containing titanium carbide abrasives, so that the titanium carbide abrasives can be formed in the superficial layer of the magnetic abrasive metal matrix. Accurate flow. The metal-based titanium carbide magnetic abrasive material prepared by the invention has firm combination of titanium carbide and metal matrix, high magnetic grinding performance, program control of production process, stable product performance, and is suitable for large-scale production.

Description

technical field [0001] The invention provides a method for preparing a free-fall double-nozzle mixed powder gas atomization water-cooled fast-setting metal-based titanium carbide magnetic abrasive, which belongs to the technical field of composite material preparation. Background technique [0002] From the perspective of material science, magnetic abrasive is a composite material, that is, an iron-based reinforced composite material, which is mainly composed of a ferromagnetic phase and an abrasive grain phase. The ferromagnetic phase requires good magnetic permeability and electrical conductivity, and the commonly used materials are pure iron powder or iron-based alloy powder. Abrasive phase is a kind of granular substance with high hardness, strength and stability, which has the functions of grinding, grinding and polishing. The commonly used materials are corundum, titanium carbide, silicon nitride, silicon carbide, etc. The chemical composition, ratio and structure of ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B22F9/08B22F1/02C09K3/14
CPCC09K3/1436B22F9/082B22F2009/088B22F2009/0872B22F1/16
Inventor 张桂香赵玉刚
Owner SHANDONG UNIV OF TECH