电子束熔化法制备Ti6Al4V晶格结构在弯曲载荷作用下的损伤分析

Costanzo Bellini, Rosario Borrelli, Vittorio Di Cocco, Stefania Franchitti, Francesco Iacoviello, Luca Sorrentino
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引用次数: 10

摘要

高水平的刚度、强度和轻量化可以通过晶格结构来实现。可以采用许多不同的技术来建造它们;其中,增材制造具有较高的灵活性和生产复杂形状零件的能力。本文对采用电子束熔化(EBM)工艺制作的点阵芯钛夹芯板的断口表面进行了详细的分析。试件进行三点弯曲试验;然后用扫描电镜(SEM)观察断口形貌。断口处出现韧窝,表明材料具有延性;此外,显微照片显示支柱的核心和表面之间的形态不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Damage analysis of Ti6Al4V lattice structures manufactured by electron beam melting process subjected to bending load

High levels of stiffness, strength, and lightweight can be achieved through lattice structures. Many different technologies can be adopted for their construction; among them, additive manufacturing presents high flexibility and the capacity to produce complex shape parts. In this paper, a detailed analysis of the fracture surface was carried out on titanium sandwich panels, having a lattice core and produced through electron beam melting (EBM) process. The specimens were subjected to the three-point bending test; then, the fracture surfaces were observed by means of a scanning electron microscope (SEM). The occurrence of dimples was found on the fracture surface, demonstrating the ductile behavior of the material; moreover, the micrographies showed a different morphology between the core of the struts and the surface.

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