Additive Manufacturing of Cobalt‐Based Dental Alloys: Analysis of Microstructure and Physicomechanical Properties

材料科学 极限抗拉强度 微观结构 选择性激光熔化 合金 压痕硬度 冶金 拉伸试验 复合材料
作者
Leonhard Hitzler,Frank Alifui‐Segbaya,Philipp Williams,Burkhard Heine,Michael Heitzmann,Wayne Hall,Markus Merkel,Andreas Öchsner
出处
期刊:Advances in Materials Science and Engineering [Hindawi Publishing Corporation]
卷期号:2018 (1) 被引量:69
标识
DOI:10.1155/2018/8213023
摘要

The limitations of investment casting of cobalt‐based alloys are claimed to be less problematic with significant improvements in metal additive manufacturing by selective laser melting (SLM). Despite these advantages, the metallic devices are likely to display mechanical anisotropy in relation to build orientations, which could consequently affect their performance “in vivo.” In addition, there is inconclusive evidence concerning the requisite composition and postprocessing steps (e.g., heat treatment to relieve stress) that must be completed prior to using the devices. In the current paper, we evaluate the microstructure of ternary cobalt‐chromium‐molybdenum (Co‐Cr‐Mo) and cobalt‐chromium‐tungsten (Co‐Cr‐W) alloys built with direct metal printing and LaserCUSING SLM systems, respectively, at 0°, 30°, 60°, and 90° inclinations (Φ) in as‐built (AB) and heat‐treated (HT) conditions. The study also examines the tensile properties (Young’s modulus, E ; yield strength, R P0.2 ; elongation at failure, A t ; and ultimate tensile strength, R m ), relative density (RD), and microhardness (HV5) and macrohardness (HV20) as relevant physicomechanical properties of the alloys. Data obtained indicate improved tensile properties and HV values after a short and cost‐effective heat‐treatment cycle of Co‐Cr‐Mo alloys; however, the process did not homogenize the microstructure of the alloy. Annealing heat treatment of Co‐Cr‐W led to significant isotropic characteristics with increased E and A t (except for Φ = 90°) in contrast to decreased R P0.2 , R m , and HV values, compared to the AB form. Similarly, the interlaced weld‐bead structures in AB Co‐Cr‐W were removed during heat treatment, which led to a complete recrystallization of the microstructure. Both alloys exhibited defect‐free microstructures with RD exceeding 99.5%.
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