Corrosion-resistant high strength and toughness magnesium alloy tubular product and preparation process

A tough magnesium alloy and preparation process technology, applied in the field of corrosion-resistant high-strength and tough magnesium alloy pipes and preparation processes, can solve the problems of difficult plastic processing, poor deformation ability, etc., and achieve good corrosion resistance, uniform corrosion, and good corrosion resistance. Effect

Active Publication Date: 2019-08-13
ZHUHAI INST OF ADVANCED TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It solves the problem of poor deformation ability of magnesium alloy pipes at room temperature and difficult plastic processing when used to prepare stents in the prior art. While achieving the ideal support effect of the alloy, it can also be degraded uniformly in the body and has better Corrosion resistance, and the corrosion is relatively uniform, the corrosion rate is 0.18 ~ 0.42mm / year

Method used

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  • Corrosion-resistant high strength and toughness magnesium alloy tubular product and preparation process
  • Corrosion-resistant high strength and toughness magnesium alloy tubular product and preparation process

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0067] This example provides a corrosion-resistant high-strength magnesium alloy pipe, including the following components in mass percentage:

[0068] Nd 1.0%, Zn 0.1%, Ca 0.1%, Zr 0.1%, the balance is Mg, the total amount of impurity elements in the corrosion-resistant high-toughness magnesium alloy pipe <0.05%.

Embodiment 2

[0070] This example provides a corrosion-resistant high-strength magnesium alloy pipe, including the following components in mass percentage:

[0071] Nd 6.0%, Zn 5.0%, Ca 5.0%, Zr 4.0%, the balance is Mg, the total amount of impurity elements in the corrosion-resistant high-strength magnesium alloy pipe <0.05%.

Embodiment 3

[0073] This example provides a corrosion-resistant high-strength magnesium alloy pipe, including the following components in mass percentage:

[0074] Nd 3.0%, Zn 2.5%, Ca 2.5%, Zr 2.0%, the balance is Mg, the total amount of impurity elements in the corrosion-resistant high-toughness magnesium alloy pipe <0.05%.

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Abstract

The embodiment of the invention provides a corrosion-resistant high strength and toughness magnesium alloy tubular product and a preparation process. The alloy tubular product is prepared from the following elements in percent by mass: 1.0-6.0% of Nd, 0.1-5.0% of Zn, 0.1-5.0% of Ca, 0.1-4.0% of Zr and the balance Mg. The preparation process comprises the following steps: successively preparing a magnesium alloy cast ingot, a magnesium alloy blank, a magnesium round bar and a magnesium hollow round ingot through a series of steps: vacuum semicontinuous casting, solid solution homogenizing, barextrusion processing, hollow round ingot processing and the like; and finally, extruding the hollow round ingot to obtain the corrosion-resistant high strength and toughness magnesium alloy tubular product. The corrosion-resistant high strength and toughness magnesium alloy tubular product solves the problem of hard plastic processing for preparing a bracket as the magnesium alloy tubular productis relatively poor in deformability at room temperature in the prior art, can be degraded uniformly in vivo while achieving an ideal supporting effect of the alloy, and meanwhile, has better corrosionresistance and is relatively uniform to corrode, wherein the corrosion rate is 0.18-0.42 mm / year.

Description

Technical field [0001] The invention belongs to the technical field of material preparation, and specifically relates to a corrosion-resistant high-strength magnesium alloy pipe and a preparation process. Background technique [0002] According to statistics from the World Health Organization, by 2030, the number of people at risk of life from cardiovascular disease will reach 24 million, which shows that cardiovascular disease has now become the world's leading cause of death. With the rapid development of medical technology in recent years, vascular stent implantation surgery has become the most effective clinical treatment method. The implanted vascular stent is the technical core of the entire treatment process. The performance of the stent directly affects the effect of clinical treatment, and the alloy tubing used to prepare the stent is a key factor in determining the quality of the vascular stent. [0003] The vascular stents currently used clinically are mainly made of in...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C23/00C22C1/03C22F1/06B21C23/08B21C25/02B21C37/06
CPCB21C23/085B21C25/02B21C37/06C22C1/03C22C23/00C22F1/06
Inventor 马国睿吴锋
Owner ZHUHAI INST OF ADVANCED TECH
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