Preparation of fine-grain aluminum alloy by spinning method and its corrosion resistance test

Author:

Yu Yang

Abstract

Abstract Due to the lack of shear resistance, the implanted materials in the aluminum alloy will lead to obvious wear. The emergence of fine-grained aluminum alloy materials can perfectly solve the above problems. Therefore, in this paper, the fine-grain aluminum alloy material is prepared by the spinning method, and the corrosion resistance test is carried out. The experimental results show that there is no significant difference in weight loss and surface morphology between aluminum alloy and fine-grain aluminum alloy immersed in normal saline and D-Hand’s solution for 30 days. The experimental results show that the fine-grained aluminum alloy has the basic conditions for in vivo implantation, which lays a foundation for the development of a new generation of in vivo implantation materials.

Publisher

IOP Publishing

Reference10 articles.

1. Study on preparation methods of ultrafine-grained metal materials;Yu;J. Light Industry Science and Technology,2018

2. Parameter Amendment and Simulation on Spinning Force Thamasett Algorithm for Steel Cylinder Shape Parts;Yu;J. Ordnance Material Science and Engineering,2012

3. Influence of process parameters on the forming results of large-sized cylindrical parts during counter-roller spinning;Fan;Journal of Advanced Mechanical Design, Systems and Manufacturing,2022

4. Feasibility Study on Superfine-grained Cylindrical Parts Prepared by Powerful Rotary Compression;Baojian;J. Functional materials,2012

5. Study on Strong Spinning Preparation Method and Mechanism of Ultrafine Crystallization of Industrial Pure Titanium;Yang;Journal of Engineered Fibers and Fabrics,2019

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