A support structure is required to successfully create structural parts in the powder bed fusion process for additive manufacturing. In this study, we present the topology optimization of a support structure that improves the heat dissipation in the building process. First, we construct a numerical method that obtains the temperature field in the building process, represented by the transient heat conduction phenomenon with the volume heat flux. Next, we formulate an optimization problem for maximizing heat dissipation and develop an optimization algorithm that incorporates a level-set-based topology optimization. A sensitivity of the objective function is derived using the adjoint variable method. Finally, several numerical examples are provided to demonstrate the effectiveness and validity of the proposed method.
翻译:需要有一个支持结构来成功地为添加剂制造粉末床聚变过程创建结构部件。 在本研究中,我们展示了一个支持结构的表层优化,以改善建筑过程中的热散散。首先,我们构建了一个数字方法,在建筑过程中获得温度场,以瞬时热导现象和体积热通量为代表。接着,我们提出一个优化问题,以尽量扩大热散散,并开发一个优化算法,以纳入基于水平设定的地形优化。利用联合可变法得出客观功能的敏感性。最后,提供了几个数字例子,以证明拟议方法的有效性和有效性。