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Customization of Automotive Structural Components using Additive Manufacturing and Topology Optimization

机译:使用添加剂制造和拓扑优化自定义汽车结构部件

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This paper presents a framework for the design of automotive components using topology optimization and additive manufacturing (AM). The long production times, post processing, and surface quality of AM processes deters companies from deploying it as a true manufacturing solution, often relegating it to the prototyping stage. Many improvements will be necessary to overcome these deficiencies, however the newest developments in design for additive manufacturing show promise. The use of topology optimization with an overhang and build time constraint can help maximize the advantages of AM, while reducing the issues of wasteful support material and lengthy print times. A case study is presented that explores a practical example of a high-performance vehicle upright and its design using topology optimization.
机译:本文介绍了使用拓扑优化和添加剂制造(AM)设计汽车组件的框架。 AM处理的长生产时间,后期处理和表面质量促使公司将其作为一个真正的制造解决方案部署,通常将其降为原型阶段。需要许多改进来克服这些缺陷,但是添加剂制造业的设计最新的发展。使用突出和构建时间约束使用拓扑优化可以帮助最大化AM的优点,同时减少浪费支持材料的问题和冗长的打印时间。提出了一种案例研究,探讨了使用拓扑优化的高性能车辆直立的实际示例及其设计。

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