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PREDICTION OF THERMAL CONDITIONS OF DED WITH FEA METAL ADDITIVE SIMULATION

机译:用FEA金属添加剂模拟预测DED的热条件

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This paper presents the integration of wire-arc additive manufacturing (WAAM) using Gas Metal Arc Welding (GMAW) into a machine tool to create a retrofit hybrid computer numeric control (CNC) machine tool. GMAW, along with other direct energy deposition systems, has the capacity to deposit material faster than the excess thermal energy can dissipate. This results in the need to allow the part to cool between consecutive layers, which is the most time-consuming part of the additive process. Finite element analysis (FEA) was used in conjunction with monitored build plate surface temperatures during deposition samples to improve adequate dwell time prediction and to develop a cooling system. A deposition was completed where no dwell time was used and the build plate along with the machine table temperatures were monitored. A second deposition was completed where only one bead was deposited and the traverse speed was increased. The GMAW welder was mounted on a 3-axis CNC machine where two square deposition samples were completed. A FEA model was designed and verified using the monitored samples. The model will be used to determine improved depositions speeds and whether forced cooling would allow for an increased deposition rate without structural failure. It was determined the FEA software can be used to accurately model and predict the thermal response of WAAM AM components.
机译:本文介绍了用气体金属电弧焊接(GMAW)进入机床的线弧添加剂制造(WAAM),以创建改造混合电脑数控制(CNC)机床。 GMAW以及其他直接能量沉积系统的能力与过量的热能可以耗散的速度更快地耗散。这导致需要允许部分在连续层之间冷却,这是添加剂过程中最耗时的部分。有限元分析(FEA)结合在沉积样品期间与监测的构建板表面温度结合使用,以改善足够的停留时间预测并开发冷却系统。完成沉积,如果没有使用停留时间,并且监测构建板与机器台温度一起进行监测。完成第二沉积,其中仅沉积一个珠子并且横向速度增加。 GMAW焊机安装在3轴CNC机上,完成两个方形沉积样品。使用受监控的样品设计和验证FEA模型。该模型将用于确定改进的沉积速度,以及强制冷却是否允许增加的沉积速率而没有结构故障。确定了FEA软件可用于精确模拟并预测WAAM AM组件的热响应。

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