Song Changhui, Zou Zhuang, Yan Zhongwei, Liu Feng, Yang Yongqiang, Yan Ming, Han Changjun
School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510641, China.
Institute of Reactor Waste and Radiochemistry Research, China Nuclear Power Technology Research Institute Co., Ltd., Shenzhen 518028, China.
Micromachines (Basel). 2023 Feb 27;14(3):556. doi: 10.3390/mi14030556.
A nuclear Zr-4 alloy with a near full density was fabricated via laser powder bed fusion (LPBF). The influences of process parameters on the printability, surface roughness, and mechanical properties of the LPBF-printed Zr-4 alloy were investigated. The results showed that the relative density of the Zr-4 alloy samples was greater than 99.3% with the laser power range of 120-160 W and the scanning speed range of 600-1000 mm/s. Under a moderate laser power in the range of 120-140 W, the printed Zr-4 alloy possessed excellent surface molding quality with a surface roughness less than 10 µm. The microstructure of the printed Zr-4 alloy was an acicular α phase with an average grain size of about 1 µm. The Zr-4 alloy printed with a laser power of 130 W and a scanning speed of 400 mm/s exhibited the highest compression strength of 1980 MPa and the highest compression strain of 28%. The findings demonstrate the potential in the fabrication of complex Zr-4 alloy parts by LPBF for industrial applications.
通过激光粉末床熔融(LPBF)制备了一种接近全密度的核级Zr-4合金。研究了工艺参数对LPBF打印Zr-4合金的可打印性、表面粗糙度和力学性能的影响。结果表明,在激光功率为120-160W、扫描速度为600-1000mm/s的范围内,Zr-4合金样品的相对密度大于99.3%。在120-140W的中等激光功率下,打印的Zr-4合金具有优异的表面成型质量,表面粗糙度小于10μm。打印的Zr-4合金的微观结构为针状α相,平均晶粒尺寸约为1μm。激光功率为130W、扫描速度为400mm/s打印的Zr-4合金表现出最高抗压强度1980MPa和最高压缩应变28%。这些发现证明了通过LPBF制造复杂Zr-4合金零件用于工业应用的潜力。