Malý Martin, Höller Christian, Skalon Mateusz, Meier Benjamin, Koutný Daniel, Pichler Rudolf, Sommitsch Christof, Paloušek David
Brno University of Technology, Faculty of Mechanical Engineering, Institute of Machine and Industrial Design, Technická 2896/2, 616 69 Brno, Czech Republic.
Graz University of Technology, Institute of Production Engineering, Inffeldgasse 25F, 8010 Graz, Austria.
Materials (Basel). 2019 Mar 20;12(6):930. doi: 10.3390/ma12060930.
The aim of this study is to observe the effect of process parameters on residual stresses and relative density of Ti6Al4V samples produced by Selective Laser Melting. The investigated parameters were hatch laser power, hatch laser velocity, border laser velocity, high-temperature preheating and time delay. Residual stresses were evaluated by the bridge curvature method and relative density by the optical method. The effect of the observed process parameters was estimated by the design of experiment and surface response methods. It was found that for an effective residual stress reduction, the high preheating temperature was the most significant parameter. High preheating temperature also increased the relative density but caused changes in the chemical composition of Ti6Al4V unmelted powder. Chemical analysis proved that after one build job with high preheating temperature, oxygen and hydrogen content exceeded the ASTM B348 limits for Grade 5 titanium.
本研究的目的是观察工艺参数对选择性激光熔化制备的Ti6Al4V样品残余应力和相对密度的影响。研究的参数有扫描激光功率、扫描激光速度、轮廓激光速度、高温预热和时间延迟。残余应力采用桥曲率法评估,相对密度采用光学法评估。通过实验设计和表面响应方法评估所观察到的工艺参数的影响。结果发现,对于有效降低残余应力而言,高预热温度是最显著的参数。高预热温度也提高了相对密度,但导致了Ti6Al4V未熔粉末化学成分的变化。化学分析证明,在一次采用高预热温度的构建作业后,氧和氢含量超过了ASTM B348标准中5级钛的限值。