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首页> 外文期刊>Journal of Materials Engineering and Performance >Relative Performance of Additively Manufactured and Cast Aluminum Alloys
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Relative Performance of Additively Manufactured and Cast Aluminum Alloys

机译:含有塑料和铸铝合金的相对性能

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摘要

Laser power bed fusion (LPBF) enables the possibility to improve the performance of critical automotive components by leveraging new design and manufacturing potentials. While the LPBF approach taps into numerous design freedom advantages, the finely focused energy input source, layer-wise thermal cycling, and rapid cooling rates also impact the properties of a given material, thereby affecting performance characteristics of the end-product. The microstructure and mechanical properties of LPBF components must hence be thoroughly compared with the traditional processing technique used for a given application to evaluate its feasibility. In the context of this work, AlSi10Mg processed via LPBF is compared to a high-pressure die-cast aluminum alloy to compare the performance toward technology adoption in manufacturing automotive transmissions. It was found that, with proper process control, LPBF parts can achieve better or comparable density of 99.84-99.95% (cast: 99.15-99.97% cast), similar surface topography, comparable hardness of 54.3-69.3 HRB (cast: 72.8-81.5 HRB), comparable specific wear rates of 3.92*10(-4) to 6.04*10(-4) mm(3)N(-1)m(-1) (cast: 2.50*10(-4) to 2.55*10(-4) mm(3)N(-1)m(-1)), and an overall better corrosion resistance compared to the cast pump housing. The findings show that, with an appropriate selection of process parameters, it is feasible to pursue and possibly enhance the performance of AlSi10Mg for fluid power applications using LPBF.
机译:激光功率床聚变(LPBF)可以利用新的设计和制造潜力,提高关键汽车部件的性能。虽然LPBF方法利用了许多设计自由度优势,但集中的能量输入源、分层热循环和快速冷却速率也会影响给定材料的性能,从而影响最终产品的性能特征。因此,必须将LPBF部件的微观结构和机械性能与用于特定应用的传统加工技术进行彻底比较,以评估其可行性。在这项工作的背景下,将通过LPBF处理的AlSi10Mg与高压压铸铝合金进行比较,以比较汽车变速器制造技术采用方面的性能。研究发现,在适当的工艺控制下,LPBF零件可以达到更好或可比的密度99.84-99.95%(铸件:99.15-99.97%铸件),相似的表面形貌,可比的硬度54.3-69.3 HRB(铸件:72.8-81.5 HRB),可比的磨损率3.92*10(-4)到6.04*10(-4)mm(3)N(-1)m(-1)(铸件:2.50*10(-4)到2.55*10(-4)mm(3)N(-1)m(-1)),与铸造泵壳相比,整体抗腐蚀性更好。研究结果表明,在适当选择工艺参数的情况下,利用LPBF追求并可能提高AlSi10Mg在流体动力应用中的性能是可行的。

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