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A METHOD FOR INTEGRATING ADDITIVE AND SUBTRACTIVE OPERATIONS FOR METAL PARTS - DIRECT ADDITIVE SUBTRACTIVE HYBRID MANUFACTURING (DASH)

机译:一种集成金属部件添加剂和减法操作的方法 - 直接添加剂减法混合制造(划线)

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This work addresses a critical issue affecting the adoption of metal additive manufacturing (AM) methodologies; creating a system that can produce a mechanical product to final geometric specification. To date, almost all functional metal AM parts have required secondary processing that in many cases can more than double the cost of the final part. A Direct Additive and Subtractive Hybrid (DASH) manufacturing system using both additive and then subtractive processing has been developed so that mechanical parts can be "digitally manufactured" to meet the final required geometric accuracy. The approach includes the development of a software system to link additive and subtractive manufacturing, using extensions to the AMF format, to maintain product design features along with their tolerance specifications. It also introduces the idea of sacrificial fixtures that are automatically designed into the parts to allow subsequent fixturing in the CNC mill. Once in the milling machine, a part localization system identifies the part and its location, along with capturing the geometry of any remaining AM support material left on the part. Finally, all CNC code is automatically generated and the finishing process can be executed in a lights-out operation. This work provides a drastic reduction in post processing time and cost. It further enables expansion of metal AM and uniquely addresses the challenge of out-of-envelope hybrid manufactured parts.
机译:这项工作解决了影响金属添加剂制造(AM)方法的主要问题;创建一个能够为最终几何规范产生机械产品的系统。迄今为止,几乎所有功能金属AM部件都需要二次处理,在许多情况下,最终部分的成本可能超过加倍。已经开发了一种直接添加剂和减法混合(DASH)制造系统,然后已经开发了并减去了减法处理,使得机械部件可以“数字制造”以满足最终所需的几何精度。该方法包括开发一个软件系统,以将扩展到AMF格式的扩展链接添加到附加和减料制造,以保持产品设计特征以及其公差规范。它还介绍了自动设计成零件的牺牲装置的想法,以允许随后在CNC磨机中固定。一旦进入铣床,零件定位系统就识别了部分及其位置,以及捕获剩余的剩余AM支持材料的几何形状。最后,自动生成所有CNC代码,并且可以在熄灯操作中执行完成过程。这项工作在后处理时间和成本中提供了急剧减少。它进一步实现了金属AM的扩展,并唯一地解决了包络外杂交制造部件的挑战。

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