首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >HIGH CYCLE FATIGUE BEHAVIOR OF RECYCLED ADDITIVE MANUFACTURED ELECTRON BEAM MELTED TITANIUM TI6AL4V
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HIGH CYCLE FATIGUE BEHAVIOR OF RECYCLED ADDITIVE MANUFACTURED ELECTRON BEAM MELTED TITANIUM TI6AL4V

机译:再循环添加剂制造电子束的高周疲劳行为熔化钛Ti6Al4V

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Metal Additive Manufacturing (AM) has become a popular method for producing complex and unique geometries, especially gaining traction in the aerospace and medical industries. With the increase in adoption of AM and the high cost of powder, it is critical to understand the effects of powder recycling on part performance to move towards material qualification and certification of affordable printed components. Due to the limitations of the Electron Beam Melting (EBM) process, current as-printed components are susceptible to failure at limits far below wrought metals and further understanding of the material properties and fatigue life is required. In this study, a high strength Titanium alloy, Ti-6AI-4V, is recycled over time and used to print fatigue specimens using the EBM process. Uniaxial High Cycle Fatigue tests have been performed on as-printed and polished cylindrical specimens and the locations of crack initiation and propagation have been determined through the use of a scanning electron microscope. This investigation has shown that the rough surface exterior is far more detrimental to performance life than the powder degradation occurring due to powder reuse. In addition, the effects of the rough surface exterior as a stress concentration is evaluated using the Arola-Ramulu. The following is a preliminary study of the effects powder recycling and surface treatments on EBM Ti-6AI4V fatigue life.
机译:金属添加剂制造(AM)已成为生产复杂和独特的几何形状的流行方法,特别是航空航天和医疗行业的牵引力。随着AM采用的增加和粉末的高成本,了解粉末回收对部件性能的影响至关重要,以走向实质性印刷组分的材料鉴定和认证。由于电子束熔化(EBM)工艺的局限性,电流的印刷部件易于在远低于锻造金属的限度下破坏,并且需要进一步了解材料性能和疲劳寿命。在该研究中,高强度钛合金,Ti-6ai-4V随着时间的推移再循环并使用EBM工艺打印疲劳试样。已经对单轴高循环疲劳试验进行了印刷和抛光的圆柱形试样,并且通过使用扫描电子显微镜确定了裂纹引发和传播的位置。该研究表明,粗糙的表面外部对性能寿命比由于粉末再利用导致的粉末降解更有害。另外,使用Arola-Ramulu评估作为应力浓度的粗糙表面外部的效果。以下是对EBM Ti-6ai4V疲劳寿命对粉末回收和表面处理的初步研究。

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