Ren Xin, Peng Hui, Li Jingli, Liu Hailin, Huang Liming, Yi Xin
Department of Mechanics and Engineering Science, College of Engineering, Peking University, Beijing 100871, China.
Research Institute for Frontier Science, Beihang University, Beijing 100191, China.
Materials (Basel). 2022 Feb 3;15(3):1172. doi: 10.3390/ma15031172.
Effects of processing parameters on the metallurgical defects, microstructure, texture, and mechanical properties of pure tungsten samples fabricated by selective electron beam melting are investigated. SEBM-fabricated bulk tungsten samples with features of lack of fusion, sufficient fusion, and over-melting are examined. For samples upon sufficient fusion, an ultimate compressive strength of 1.76 GPa is achieved at the volumetric energy density of 900 J/mm-1000 J/mm. The excellent compressive strength is higher and the associated volumetric energy density is significantly lower than corresponding reported values in the literature. The average relative density of SEBM-fabricated samples is 98.93%. No microcracks, but only pores with diameters of few tens of micrometers, are found in SEBM-ed tungsten samples of sufficient fusion. Properties of samples by SEBM and selective laser melting (SLM) have also been compared. It is found that SLM-fabricated samples exhibit inevitable microcracks, and have a significantly lower ultimate compressive strength and a slightly lower relative density of 98.51% in comparison with SEBM-ed samples.
研究了加工参数对通过选择性电子束熔炼制备的纯钨样品的冶金缺陷、微观结构、织构和力学性能的影响。对具有未熔合、充分熔合和过熔合特征的选择性电子束熔炼块状钨样品进行了研究。对于充分熔合的样品,在体积能量密度为900 J/mm³ - 1000 J/mm³时,实现了1.76 GPa的极限抗压强度。该优异的抗压强度更高,且相关的体积能量密度明显低于文献中报道的相应值。选择性电子束熔炼制备的样品的平均相对密度为98.93%。在充分熔合的选择性电子束熔炼钨样品中,未发现微裂纹,仅发现直径为几十微米的孔隙。还比较了选择性电子束熔炼和选择性激光熔化(SLM)制备的样品的性能。发现选择性激光熔化制备的样品存在不可避免的微裂纹,与选择性电子束熔炼制备的样品相比,其极限抗压强度明显更低,相对密度略低,为98.51%。