A Systematic Study of the Material Performance of Hot Isostatically Pressed Type 316L Stainless Steel Powder for the Civil Nuclear Sector

W. Kyffin, D. Gandy, Barry Burdett
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引用次数: 1

Abstract

Hot Isostatic Pressing (HIP) of type 316L stainless steel powder has been an established manufacturing practice for more than twenty-five years in the oil and gas sector and more recently in the naval defence sector. To demonstrate the capability of the powder metallurgy HIP (PM/HIP) for nuclear power applications a systematic study of 316L commercial powder production, encapsulation/consolidation providers and selected HIP parameters was undertaken by the Nuclear AMRC in collaboration with the Electric Power Research Institute (EPRI). In the study, the 316L powder specification limited the oxygen content of the powder to under 130 parts per million (ppm), which reflects the improvements that commercial powder suppliers have been making over the past decade to ensure greater powder cleanliness. The test programme assessed powder supply, HIP service provider and HIP sustain time. Excellent test results were achieved across the full range of variables studied with all billets meeting the specification requirements of ASTM A988 and additional requirements imposed based on nuclear manufacturing standards. Significantly, the study demonstrated the robustness of the PM/HIP supply chain, as material produced via differing HIP service providers resulted in very consistent material properties across the destructive test programme. Furthermore, no significant difference in material properties were noted for material HIP’ed between 2–8 hours hold time, suggesting that the HIP process window is large. Both these results are significant from an end-user standpoint as they highlight the uniformity of the process through the full manufacturing cycle from powder procurement to destructive testing. Despite all material passing specification requirements, some property variation was noted for differing powder suppliers. Considering the systematic approach, this was attributed to powder composition, with both low oxygen and high nitrogen contents contributing to improvements in Charpy impact strength and tensile strength respectively.
民用核用热等静压316L型不锈钢粉材料性能的系统研究
316L型不锈钢粉末的热等静压(HIP)已经在石油和天然气部门以及最近在海军国防部门建立了超过25年的制造实践。为了证明粉末冶金HIP (PM/HIP)在核电应用中的能力,核能AMRC与电力研究所(EPRI)合作,对316L商业粉末生产、封装/固化供应商和选定的HIP参数进行了系统研究。在这项研究中,316L粉末规格将粉末的氧含量限制在百万分之130 (ppm)以下,这反映了商业粉末供应商在过去十年中为确保更高的粉末清洁度而进行的改进。测试程序评估了粉末供应、HIP服务提供商和HIP维持时间。所有钢坯均符合ASTM A988的规格要求和基于核制造标准的附加要求,在研究的所有变量范围内均取得了出色的测试结果。值得注意的是,该研究证明了PM/HIP供应链的稳健性,因为通过不同的HIP服务提供商生产的材料在整个破坏性测试程序中具有非常一致的材料特性。此外,保温时间在2-8小时之间,材料性能没有显著差异,表明保温时间窗较大。从最终用户的角度来看,这两个结果都很重要,因为它们突出了从粉末采购到破坏性测试整个制造周期过程的均匀性。尽管所有的材料都符合规格要求,但不同的粉末供应商的一些性能差异被注意到。考虑到系统的方法,这是由于粉末成分,低氧和高氮含量分别有助于提高夏比冲击强度和拉伸强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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