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Magnesium alloy with wear-resisting and damping performance and manufacturing method thereof

A shock-absorbing performance and magnesium alloy technology, which is applied in the field of functional metal alloy materials, can solve the problems of low wear resistance and improved shock-absorbing effect of ordinary magnesium alloys, and achieve improved wear-resistant and shock-absorbing effects, low cost, and high production efficiency. The effect of simple process

Inactive Publication Date: 2016-02-24
顾建
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the preparation method of this material is strictly controlled, and the improvement of shock absorption is limited. At the same time, the wear resistance of ordinary magnesium alloy is not high.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] Choose this alloy material chemical composition weight percentage content aluminum to be 6%, strontium to be 2.5%, tin to be 2%, iron to be 1.5%, titanium to be 0.01%, copper to be 0.5%, carbon to be 0.03%, dysprosium and lanthanum to be 1.5%, yttrium is 1.2%, and the rest is magnesium and a small amount of unavoidable impurities. The production method is the same in this embodiment and the following embodiments.

Embodiment 2

[0018] Choose this alloy material chemical composition weight percentage content aluminum to be 8%, strontium to be 3%, tin to be 3%, iron to be 1.6%, titanium to be 0.03%, copper to be 0.8%, carbon to be 0.05%, dysprosium and lanthanum to be 1.6%, yttrium is 1.5%, and the rest is magnesium and a small amount of unavoidable impurities.

Embodiment 3

[0020] Choose this alloy material chemical composition weight percent content aluminum to be 7%, strontium to be 2.8%, tin to be 2.5%, iron to be 1.8%, titanium to be 0.015%, copper to be 0.55%, carbon to be 0.09%, dysprosium and lanthanum to be 1.8%, yttrium is 1.4%, and the rest is magnesium and a small amount of unavoidable impurities.

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PUM

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Abstract

The invention relates to magnesium alloy with wear-resisting and damping performance and a manufacturing method thereof. Magnesium alloy serves as a matrix, and compound complexes are evenly distributed on the magnesium alloy matrix. The alloy material comprises, by weight percentage, 6.5%-7.5% of aluminum, 2.5%-3% of strontium, 2%-3% of tin, 1.5%-2.0% of iron, 0.01%-0.03% of titanium, 0.5%-0.8% of Cu, 0.03%-0.09% of carbon, 1.5%-2.0% of dysprosium, 1.5%-2.0% of lanthanum, 1.2%-1.5% of yttrium, the balance magnesium and inevitable impurities.

Description

technical field [0001] The invention belongs to the field of functional metal alloy materials, in particular to a magnesium alloy with wear-resistant and shock-absorbing properties and a preparation method thereof. Background technique [0002] At present, in the field of metal materials, magnesium alloys have been widely valued as wear-resistant and shock-absorbing materials. The existing technology proposes to add zinc, yttrium, and zirconium to magnesium to manufacture magnesium-based alloys, but this technology requires yttrium, zirconium Magnesium-30% yttrium and magnesium-30% zirconium master alloys are added respectively, and the magnesium alloy with high shock absorption is prepared through preheating, smelting and forming. However, the element control of this material is strictly controlled, and the improvement of the shock absorption effect is limited. At the same time, the wear resistance of ordinary magnesium alloy is not high. Contents of the invention [000...

Claims

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Application Information

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IPC IPC(8): C22C23/02C22C1/02
CPCC22C23/02C22C1/02
Inventor 顾建
Owner 顾建
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