首页> 外文会议>International Congress on Applications of Lasers Electro-Optics >POTENTIAL AND CHALLENGES OF ADDITIVE MANUFACTURING FOR TOPOLOGY OPTIMIZED SPACECRAFT STRUCTURES: Paper ID: LAM 102
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POTENTIAL AND CHALLENGES OF ADDITIVE MANUFACTURING FOR TOPOLOGY OPTIMIZED SPACECRAFT STRUCTURES: Paper ID: LAM 102

机译:拓扑结构制造的潜在和挑战优化的航天器结构:纸张ID:LAM 102

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This study focused on the potential of topology optimization (TO) for metallic tertiary structures of spacecrafts produced by the Additive Manufacturing (AM) technique Laser Powder Bed Fusion (LPBF). Firstly, a screening of existing conventionally manufactured products was carried out to evaluate the benefits of a redesign concerning product performance and the associated economic impact. As a result of the study, the most suitable demonstrator was selected. This reference structure was redesigned by TO taking into consideration the AM process constraints. Another major aim of this work was to evaluate the possibilities and challenges of AM (accuracies, surface quality, process parameters, post-machining, mechanical properties) in addition to the redesign process. A comprehensive approach was implemented including detailed analysis of the powder, mechanical properties, in-process parameters and nondestructive inspection (NDI). All measured values were used for a back loop to the design process, thereby, providing a final robust redesign. Finally, the fine-tuned demonstrator was built up in an iterative process. The parts were tested under representative conditions for the application to verify the performance. The demonstrator qualification test campaign contained thermal cycling, vibration testing, static load testing and NDI. Thus, an improvement in TRL up to "near flight qualified" was reached.
机译:这项研究的重点拓扑优化(TO)由添加剂制造(AM)技术,激光粉末床聚变(LPBF)生产的航天器的金属三级结构的潜力。首先,进行了现有的常规制造产品的筛选,以评估重新设计的有益于产品性能和相关的经济影响。由于该研究的结果,选择了最合适的演示。该参考结构被重新设计,以考虑到AM过程约束。这项工作的另一个主要目的是评估AM(准确性,表面质量,工艺参数,后加工,机械性能)的可能性和挑战,除了重新设计过程之外。实施了综合方法,包括对粉末,机械性能,工艺中参数和非破坏性检查(NDI)的详细分析。所有测量值都用于对设计过程的后循环,从而提供最终的鲁棒重新设计。最后,微调示威者在一个迭代过程中建立起来。在申请的代表条件下测试零件以验证性能。示威者资格测试活动含有热循环,振动测试,静电负载测试和NDI。因此,达到了“近飞行合格”的TRL的改善。

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