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The effect of thermal processing parameters on the mechanical properties of aluminium alloy foam

机译:热处理参数对铝合金泡沫力学性能的影响

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摘要

Purpose: The purpose of this study was to investigate the influence of three thermal processing parameter called stress relieving on mechanical properties of the aluminium alloy foam.Design/methodology/approach: The samples were undergone by stress relieving method using vacuum furnace. Hardness measurement was carried out using microhardness Vickers at 150 mN load and 15 s loading time. Compressive strength, plateau stress and energy absorption were calculated using a universal testing machine.Findings: It was found that the highest value of hardness of 192.78 Hv was obtained when the stress relieving process is set with the following parameters: heating (500°C); holding time (120 min) and stabilization temperature (450°C). Since higher heating temperature and longer holding time produce sample with larger grain size and has an adverse effect on the hardness value It was revealed that the mechanical properties of aluminium alloy foam were enhanced when the heating temperature was decreased, holding temperature was diminished and the stabilization temperature was increased. Overall, the presented results showed that the thermal processing parameters such as heating temperature, holding time and stabilization temperature have a significant influence on improving the mechanical properties of aluminium alloy foam.Research limitations/implications: The properties of closed-cell aluminium alloy foam are highly sensitive and depend on the post heat treatment process. The processing parameters should be controlled in order to manipulate the properties of closed-cell aluminium alloy foam.Originality/value: To investigate the influences of these processing parameters on the physical and mechanical properties of the closed-cell aluminium alloy foam.
机译:目的:本研究的目的是探讨三种热处理参数的影响,称为应力缓解铝合金泡沫的力学性能。用真空炉的应力缓解方法经历了样品。使用Microhardsne Vickers在150mN载荷和15秒的加载时间进行硬度测量。使用通用试验机计算压缩强度,平台应力和能量吸收。发现,当用以下参数设定应力缓解过程时,获得了192.78HV硬度的最高值:加热(500°C) ;保持时间(120分钟)和稳定温度(450℃)。由于较高的加热温度和更长的保持时间产生具有较大粒度的样品并且对硬度值具有不利影响,因此揭示了当加热温度降低时铝合金泡沫的机械性能,保持温度降低并稳定温度升高。总的来说,所提出的结果表明,加热温度,保持时间和稳定温度等热处理参数对提高铝合金泡沫的力学性能具有显着影响。研究限制/影响:闭孔铝合金泡沫的性能高度敏感,取决于后热处理过程。应控制加工参数以操纵闭孔铝合金泡沫的性质。更多的基团/值:研究这些加工参数对闭孔铝合金泡沫的物理和力学性能的影响。

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