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Effect of Substrate Plate Heating on the Microstructure and Properties of Selective Laser Melted Al-20Si-5Fe-3Cu-1Mg Alloy

机译:基底板加热对选择性激光熔融Al-20Si-5Fe-3Cu-1mg合金的微观结构和性能的影响

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摘要

The Al-20Si-5Fe-3Cu-1Mg alloy was fabricated using selective laser melting (SLM). The microstructure and properties of the as-prepared SLM, post-treated SLM, and SLM with substrate plate heating are studied. The as-prepared SLM sample shows a non-uniform microstructure with four different phases: fcc-αAl, eutectic Al-Si, Al2MgSi, and δ-Al4FeSi2. With thermal treatment, the phases become coarser and the δ-Al4FeSi2 phase transforms partially to β-Al5FeSi. The sample produced with SLM substrate plate heating shows a relatively uniform microstructure without a distinct difference between hatch overlaps and track cores. Room temperature compression test results show that an as-prepared SLM sample reaches a maximum strength (862 MPa) compared to the heat-treated (524 MPa) and substrate plate heated samples (474 MPa) due to the presence of fine microstructure and the internal stresses. The reduction in strength of the sample produced with substrate plate heating is due to the coarsening of the microstructure, but the plastic deformation shows an improvement (20%). The present observations suggest that substrate plate heating can be effectively employed not only to minimize the internal stresses (by impacting the cooling rate of the process) but can also be used to modulate the mechanical properties in a controlled fashion.
机译:使用选择性激光熔化(SLM)制造Al-20Si-5Fe-3Cu-1Mg合金。研究了由制备的SLM,处理后的SLM和具有基板加热的SLM的微观结构和性质。制备的SLM样品显示出具有四种不同阶段的非均匀微观结构:FCC-αAL,共晶Al-Si,Al 2Mgsi和δ-Al4Fesi2。通过热处理,各相变得粗糙,δ-Al4Fesi2相偏移至β-Al5Fesi。用SLM基板板加热产生的样品显示出相对均匀的微观结构,而没有在舱口重叠和轨道芯之间的不同差异。室温压缩试验结果表明,由于存在精细的微观结构和内部,类似于耐热处理(524MPa)和基底板加热样品(474MPa),所准备的SLM样品达到最大强度(862MPa)。压力。使用基板板加热产生的样品的强度的降低是由于微观结构的粗化,但塑性变形显示出改善(20%)。本发明观察表明,可以有效地使用基板板加热,不仅可以最小化内部应力(通过影响过程的冷却速率),而且还可用于以受控方式调节机械性能。

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