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Microstructure and Mechanical Properties of an Al-Si Alloy Consolidated by Spark Plasma Sintering

机译:通过火花等离子体烧结固结的Al-Si合金的微观结构和力学性能

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The Spark Plasma Sintering (SPS) is a promising sintering technology to produce dense bulk pre-compacts from micro- or nano-structured aluminium alloys at lower temperatures and shorter sintering times. The densification behaviour and sintering response of an atomized Al-Si alloy sintered by SPS was investigated. A high density of bulk material with porosity less than 1% can be prepared by SPS with a temperature of 450°C, holding for 2-10min and a pressure of 170 MPa. In addition, the homogeneity of the microstructure across the diameter of the sintered samples are investigated and correlated with in-situ measurements of the temperature distribution within the samples. Residual porosity is mainly localised at the margin close to the wall of the die, corresponding to the lowest measured temperatures. The influence of the process parameters on the structure and tensile properties of subsequently hot extruded material was studied and compared to material based on hot pressed pre-compacts. The mechanical tensile properties of the SPSed compacts are significantly lower compared to that of the extruded material due to some residual porosity and the weakness of the joint between the initial atomized alloy powder particles. The extruded P/M material offers superior mechanical strength to the comparable compositions of known die cast piston alloys.
机译:火花等离子体烧结(SPS)是一种有前途的烧结技术,可以在较低温度下产生从微型或纳米结构铝合金的密集体积预压缩块和较短的烧结时间。研究了SPS烧结的雾化Al-Si合金的致密化行为和烧结响应。孔隙率小于1%的散装材料的高密度可以通过450℃的温度制备,保持2-10分钟,压力为170MPa。另外,研究了烧结样品直径的微观结构的均匀性并与样品内的温度分布的原位测量相关。残余孔隙率主要是在靠近模具壁的边缘定位,对应于最低测量的温度。研究了工艺参数对随后的热挤出材料的结构和拉伸性能的影响,并与基于热压预压缩的材料进行比较。与挤出材料的机械拉伸性能显着低于挤出材料,由于一些残留的孔隙率和初始雾化合金粉末颗粒之间的关节的弱度。挤出的P / M材料为已知压铸活塞合金的可比较组合物提供卓越的机械强度。

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