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Investigation of Mechanical Properties for Open Cellular Structure CoCrMo Alloy Fabricated by Selective Laser Melting Process

机译:选择性激光熔融法制备开孔结构CoCrMo合金的力学性能研究

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摘要

Orthodontic implants have been a major focus through mechanical and biological performance in advance to fabricate shape of complex anatomical. Designing the part with a complex mechanism is one of the challenging process and addition to achieve the balance and desired mechanical performance brought to the right manufacture technique to fabricate. Metal additive manufacturing (MAM) is brought forward to the newest fabrication technology in this field. In this study, selective laser melting (SLM) process was utilized on a medical grade cobalt-chrome molybdenum (CoCrMo) alloy. The work has focused on mechanical properties of the CoCrMo open cellular structures samples with 60 %, 70 %, and 80 % designed volume porosity that could potentially emulate the properties of human bone. It was observed that hardness values decreased as the soaking time increases except for bottom face. For compression test, 60 % designed volume porosity demonstrated highest ultimate compressive strength compared to 70 % and 80 %.
机译:正畸植入物已经通过机械和生物学性能预先成为制造复杂解剖学形状的主要焦点。设计具有复杂机构的零件是具有挑战性的过程之一,并且要实现平衡和所需的机械性能,这是正确的制造技术所能制造的。金属增材制造(MAM)被带入该领域的最新制造技术。在这项研究中,选择性激光熔化(SLM)工艺用于医疗级钴铬钼(CoCrMo)合金。这项工作的重点是具有60%,70%和80%设计体积孔隙率的CoCrMo开孔结构样品的机械性能,这些孔隙率可能会模拟人骨的性能。观察到,除了底面以外,硬度值随着浸泡时间的增加而降低。对于压缩测试,与70%和80%相比,60%设计体积孔隙率显示出最高的最终压缩强度。

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