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An Efficient Force Prediction Strategy in Single Point Incremental Sheet Forming

机译:单点增量板形成中有效的力预测策略

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Incremental sheet forming is a flexible forming process where a tool is programmed to follow a pre-determined tool path to create sheet metal parts. Without using complex tool and die, the process can generate various part geometries directly from CAD models and CNC codes, and is ideal for rapid prototyping and low volume production. Modeling incremental sheet forming and predicting forming forces can significantly benefit product design and process development. Existing force prediction methods are either inaccurate or too time consuming. In this paper, an efficient force prediction strategy was proposed based on experimental observations of forming force patterns. It was found that by creating a near finished part geometry as a starting point of numerical simulation, forming forces can be predicted with satisfactory accuracy and efficiency. The proposed strategy was validated with forming of a truncated pyramid and was further demonstrated in forming of parts having different geometries. As the proposed simulation strategy can be completed in a fraction of the full simulation time, it can be adopted to guide the design and development of incremental sheet forming parts.
机译:增量板形成是一种柔性成形过程,其中编程工具以遵循预定的工具路径以产生金属板。如果不使用复杂的工具和模具,该过程可以直接从CAD型号和数控代码产生各种部分几何,并且是快速原型和低批量生产的理想选择。建模增量板形成和预测成型力可显着益处产品设计和过程开发。现有的力预测方法是不准确的或太耗时的耗材。本文基于成型力图案的实验观察提出了一种有效的力预测策略。结果发现,通过作为数值模拟的起点形成近的成品部分几何形状,可以以令人满意的精度和效率来预测成形力。通过形成截短的金字塔验证了所提出的策略,并进一步在形成具有不同几何形状的部件的情况下证明。由于所提出的仿真策略可以在完整的模拟时间的一小部分中完成,因此可以采用它来指导增量板形成部件的设计和开发。

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