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Near net shape manufacturing of metal : a review of approaches and their evolutions

机译:金属的近净形制造:方法及其演变的回顾

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摘要

In the last thirty years the concept of manufacturability has been applied to many different processes in numerous industries. This has resulted in the emergence of several different "Design for Manufacturing" methodologies which have in common the aim of reducing productions costs through the application of general manufacturing rules. Near net shape technologies have expanded these concepts, targeting mainly primary shaping process, such as casting or forging. The desired outcomes of manufacturability analysis for near-net-shape (NNS) processes are cost and lead/time reduction through minimization of process steps (in particular cutting and finishing operations) and raw material saving. Product quality improvement, variability reduction and component design functionality enhancement are also achievable through NNS optimization. Process parameters, product design and material selection are the changing variables in a manufacturing chain that interact in complex, non-linear ways. Consequently modeling and simulation play important roles in the investigation of alternative approaches. However defining the manufacturing capability of different processes is also a “moving target” because the various NNS technologies are constantly improving and evolving so there is challenge in accurately reflecting their requirements and capabilities. In the last decade, for example, CAD, CNC technologies and innovation in materials have impacted enormously on the development of NNS technologies. This paper reviews the different methods reported for NNS manufacturability assessment and examines how they can make an impact on cost, quality and process variability in the context of a specific production volume. The discussion identifies a lack of structured approaches, poor connection with process optimization methodologies and a lack of empirical models as gaps in the reported approaches.
机译:在过去的三十年中,可制造性的概念已应用于许多行业的许多不同过程中。这导致出现了几种不同的“制造设计”方法,这些方法的共同目的是通过应用通用制造规则来降低生产成本。近净成形技术已扩展了这些概念,主要针对主要成形过程,例如铸造或锻造。近净形状(NNS)工艺可制造性分析的理想结果是,通过最小化工艺步骤(尤其是切割和精加工操作)和节省原材料,降低了成本并缩短了交货时间。通过NNS优化,还可以提高产品质量,减少可变性并提高组件设计功能。工艺参数,产品设计和材料选择是制造链中不断变化的变量,它们以复杂的非线性方式相互作用。因此,建模和仿真在替代方法的研究中起着重要作用。但是,定义不同过程的制造能力也是“移动的目标”,因为各种NNS技术在不断改进和发展,因此准确反映其要求和能力存在挑战。例如,在过去的十年中,CAD,CNC技术和材料创新对NNS技术的发展产生了巨大影响。本文回顾了为NNS可制造性评估所报告的不同方法,并研究了它们如何在特定产量下对成本,质量和过程可变性产生影响。讨论确定缺少结构化的方法,与过程优化方法的联系不良以及缺少经验模型作为报告的方法中的空白。

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