Corrosion behaviour of closed cell magnesium foam with rare earth elements by powder metallurgy process

材料科学 腐蚀 粉末冶金 金属泡沫 冶金 氢化钛 颗粒 发泡剂 复合材料 热交换器 多孔性 烧结 物理 热力学
作者
Sivashankari Palaniswamy,A. Krishnamoorthy,S. Prakash
出处
期刊:Nucleation and Atmospheric Aerosols [American Institute of Physics]
卷期号:2311: 040010-040010 被引量:2
标识
DOI:10.1063/5.0034354
摘要

A cellular structure made up of solid metal is significantly termed as Metal Foam. It consists of gas-filled pores in large volumes. These gas-filled pores are sometimes closely packed termed to be closed-cell foam and sometimes it is a network with interconnected termed to be open cell foam. The closed-cell foam is mainly contributed to weight saving and impact-absorbing structural application in automotive vehicles. The open-cell foam is contributed to vibration and sound absorption and catalysis to withstand high temperature for heat exchanger. The attractive method for fabricating metallic foam production is Powder metallurgy because it allows for the processing of a wide range of integral sandwich structures. This work explains the fabrication of Magnesium reinforced with Aluminum, copper, and zinc with yttrium metal foam with titanium hydride as foaming agents and calcium stearate as a binding agent. The pellets are prepared by the powder metallurgy method at the dimension of 20mm diameter and 16mm thickness. The sintered samples are tested for the characteristics of corrosion by using a salt spray test. The sample of the first series which has the composition of Mg-70% Al-30% gave the best result in corrosion resistance results in mpy unit but in mm/yr. samples 1.3 and 2.1 which has the composition of Mg-70% Al-30% and Mg-50% Al-25% Cu-25% respectively gave the best corrosion resistance results in mm/yr.

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