Dabbaghi Hediyeh, Pourshams Mohammad, Nematollahi Mohammadreza, Poorganji Behrang, Kirka Michael M, Smith Scott, Chinnasamy Chins, Elahinia Mohammad
Department of Mechanical, Manufacturing, and Industrial Engineering, University of Toledo, Toledo, OH 43606, USA.
Oak Ridge National Laboratory, Manufacturing Science Division, Energy Science and Technology Directorate, Oak Ridge, TN 37830, USA.
Materials (Basel). 2024 Aug 22;17(16):4150. doi: 10.3390/ma17164150.
Research into the processability of NiTiHf high-temperature shape memory alloys (HTSMAs) via laser powder bed fusion (LPBF) is limited; nevertheless, these alloys show promise for applications in extreme environments. This study aims to address this limitation by investigating the printability of four NiTiHf alloys with varying Hf content (1, 2, 15, and 20 at. %) to assess their suitability for LPBF applications. Solidification cracking is one of the main limiting factors in LPBF processes, which occurs during the final stage of solidification. To investigate the effect of alloy composition on printability, this study focuses on this defect via a combination of computational modeling and experimental validation. To this end, solidification cracking susceptibility is calculated as Kou's index and Scheil-Gulliver model, implemented in Thermo-Calc/2022a software. An innovative powder-free experimental method through laser remelting was conducted on bare NiTiHf ingots to validate the parameter impacts of the LPBF process. The result is the processability window with no cracking likelihood under diverse LPBF conditions, including laser power and scan speed. This comprehensive investigation enhances our understanding of the processability challenges and opportunities for NiTiHf HTSMAs in advanced engineering applications.
关于通过激光粉末床熔融(LPBF)工艺加工镍钛铪高温形状记忆合金(HTSMA)的研究有限;然而,这些合金在极端环境应用中显示出潜力。本研究旨在通过研究四种铪含量不同(1、2、15和20原子%)的镍钛铪合金的可打印性来解决这一局限性,以评估它们在LPBF应用中的适用性。凝固裂纹是LPBF工艺中的主要限制因素之一,它发生在凝固的最后阶段。为了研究合金成分对可打印性的影响,本研究通过计算建模和实验验证相结合的方式聚焦于这一缺陷。为此,在Thermo-Calc/2022a软件中,根据Kou指数和Scheil-Gulliver模型计算凝固裂纹敏感性。通过对裸露的镍钛铪铸锭进行激光重熔的创新无粉实验方法,验证LPBF工艺的参数影响。结果是在包括激光功率和扫描速度在内的不同LPBF条件下无裂纹可能性的加工窗口。这项全面的研究增进了我们对镍钛铪HTSMA在先进工程应用中加工性挑战和机遇的理解。