Kim Min Soo, Kim Ohseop, Song Youngwon, Ko Chanyoung, Kim Jonggun, Habibnejad-Korayem Mahdi, Kim Jeong Ho
Department of Aerospace Engineering, Inha University, Incheon 22212, Republic of Korea.
Institute for Aerospace Industry-Academia Collaboration (IAIAC), Incheon 22212, Republic of Korea.
Materials (Basel). 2024 Dec 24;18(1):6. doi: 10.3390/ma18010006.
This study aims to assess the feasibility of expanding the powder size distribution (PSD) of Ti-6Al-4V grade 5 powder for LPBF to achieve cost reduction. Parameter optimization to minimize the degradation of mechanical properties due to the expanded particle size distribution was conducted. Mechanical tests for specimens built using optimized parameters revealed minor reductions in strength: 3.9% in tensile yield strength, 1.1% in compressive strength, 5.5% in shear strength, and 4.5% in bearing yield strength-all of which complied with MMPDS standards. Statistical analysis, using the Anderson-Darling test, demonstrated stable mechanical performance and minimal variation between the original and expanded PSDs. These results highlight the potential of an expanded PSD to achieve cost reductions while maintaining compliance with industry standards, offering a practical solution for LPBF applications in cost-sensitive and high-performance industries.
本研究旨在评估扩大用于激光粉末床熔融(LPBF)的Ti-6Al-4V 5级粉末的粉末尺寸分布(PSD)以降低成本的可行性。进行了参数优化,以尽量减少由于颗粒尺寸分布扩大而导致的机械性能下降。对使用优化参数制造的试样进行的力学测试表明,强度略有降低:拉伸屈服强度降低3.9%,抗压强度降低1.1%,剪切强度降低5.5%,承压屈服强度降低4.5%——所有这些均符合MMPDS标准。使用安德森-达林检验进行的统计分析表明,机械性能稳定,原始PSD和扩大后的PSD之间的差异最小。这些结果突出了扩大PSD在保持符合行业标准的同时实现成本降低的潜力,为成本敏感型和高性能行业的LPBF应用提供了切实可行的解决方案。