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首页> 外文期刊>Indian journal of engineering and materials sciences >Investigation into the densification of AISI304 parts fabricated by hybrid powder metallurgy techniques
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Investigation into the densification of AISI304 parts fabricated by hybrid powder metallurgy techniques

机译:混合粉末冶金技术对AISI304零件致密化的研究

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摘要

Complex and high-performance parts of metal and ceramics can be fabricated by selective laser sintering/isostatic pressing (SLS/IP), in which cold isostatic pressing (CIPing) is introduced into SLS followed by high sintering (HSing) and hot isostatic pressing (HIPing). In this paper, the mechanisms of action of CIPing pressure and HSing temperature on relative densities of AISI304 parts fabricated by SLS/IP are respectively investigated. Based on the liquid sintering theory, the effects of trace FeB on their relative densities, metallurgical structures and mechanical performances are likewise analyzed. Results show that there is a minimal threshold of CIPing pressure for AISI304 parts in the process of SLS/IP, which is about 400 MPa. Their relative densities approximates certain value with an increase of HSing temperature from 1250°C to 1350°C, which are improved while their mechanical performances worsen with an increase of FeB content from 0.5% to 5.0%, and their metallurgical structures consist of eutectic (α-Fe, Fe_2B) and (Ni,Ni_3B) besides austenite (Fe,Cr,Ni,C). Although their strengths are better when FeB content is 0.5wt%, their elongation percentages are lower, which is only about 8%.
机译:金属和陶瓷的复杂高性能零件可以通过选择性激光烧结/等静压(SLS / IP)进行制造,其中将冷等静压(CIPing)引入SLS中,然后进行高烧结(HSing)和热等静压( HIPing)。本文分别研究了CIPing压力和HSing温度对SLS / IP制造的AISI304零件的相对密度的作用机理。基于液相烧结理论,同样分析了痕量FeB对其相对密度,冶金结构和力学性能的影响。结果表明,在SLS / IP过程中,AISI304零件的CIP压力最小阈值约为400 MPa。随着HSing温度从1250°C升高到1350°C,它们的相对密度接近一定值;当FeB含量从0.5%增加到5.0%时,它们的机械性能有所改善,而其机械性能却变差,并且它们的冶金结构由共晶(除了奥氏体(Fe,Cr,Ni,C)外,还有α-Fe,Fe_2B)和(Ni,Ni_3B)。当FeB含量为0.5wt%时,尽管它们的强度更好,但它们的伸长率却较低,仅为8%左右。

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