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不锈钢丝网与粉末复合材料制成的新型多孔板的制备及拉伸性能

Preparation and Tensile Properties of Novel Porous Plates Made by Stainless Steel Wire Mesh and Powder Composites.

作者信息

Lin Shengcun, Zhou Zhaoyao

机构信息

National Engineering Research Center of Near-Net-Shape Forming for Metallic Materials, School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510640, China.

School of Automotive Engineering, Liuzhou Vocational & Technical College, Liuzhou 545005, China.

出版信息

Materials (Basel). 2021 Feb 1;14(3):677. doi: 10.3390/ma14030677.

Abstract

Porous metal materials have important mechanical properties, and there are various manufacturing methods to produce them. In this paper, a porous, thin strip was fabricated by the composite rolling of stainless steel wire mesh and stainless steel powder. Then, a porous plate of stainless steel wire mesh and powder composite (SWMPC) was prepared by folding, pressing, and vacuum sintering the thin strip, and its structural characteristics and permeability were studied. The effects of the gap of the roller, gap of the powder box, number of layers by folding, and sintering parameters on the porosity and mechanical properties were also studied. The results indicated that the permeability increased with the increasing of porosity. Sintering parameters had a great influence on the mechanical properties. The larger the roll gap, the higher the porosity and the weaker the mechanical properties. As the gap of the powder box increased, the porosity decreased and the mechanical properties improved. The number of layers had no effect on the porosity. The first three stages of tensile curves of 10 and 15 layers were deformation stages and generally coincided, the time was short at the fracture stage. However, the mechanical properties got a raise when layers was 15.

摘要

多孔金属材料具有重要的力学性能,并且有多种制造方法来生产它们。在本文中,通过不锈钢丝网和不锈钢粉末的复合轧制制备了一种多孔薄带。然后,通过对薄带进行折叠、压制和真空烧结制备了不锈钢丝网与粉末复合材料(SWMPC)多孔板,并研究了其结构特征和渗透性。还研究了轧辊间隙、粉末盒间隙、折叠层数和烧结参数对孔隙率和力学性能的影响。结果表明,渗透率随孔隙率的增加而增加。烧结参数对力学性能有很大影响。轧辊间隙越大,孔隙率越高,力学性能越弱。随着粉末盒间隙的增加,孔隙率降低,力学性能提高。层数对孔隙率没有影响。10层和15层拉伸曲线的前三个阶段为变形阶段,且总体重合,断裂阶段时间较短。然而,当层数为15时,力学性能有所提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f13/7867185/f691d741a864/materials-14-00677-g001.jpg

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