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Modeling and experimental validation for truncated cone parts forming based on water jet incremental sheet metal forming

机译:基于水射流增量钣金成形的截锥零件成形的建模和实验验证

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摘要

Dieless sheet metal forming technology has many advantages for prototypes and small batch productions, but it is limited by its accuracy. This paper introduces a water jet incremental sheet metal forming (WJISMF) technology for dieless sheet metal forming. It gave a comprehensive study on truncated cone parts forming based on WJISMF, including its forming theoretical model and experimental validation. Firstly, a theoretical model for truncated cone forming based on WJISMF was developed based on plane strain assumption and work-energy theorem. The theoretical model mainly revealed the relationships between the key process parameters (especially water jet pressure) and truncated cone parts forming angle, which was very useful to predict the forming angle in certain water jet pressure or to determine the water jet pressure for different cone angle parts. Then, to validate the theoretical model, truncated cone workpiece was manufactured on a built WJISMF machine. Experimental results show that theoretical model matched the experiment well.
机译:无模钣金成形技术对于原型和小批量生产具有许多优势,但其准确性受到限制。本文介绍了用于无模钣金成形的水射流增量钣金成形(WJISMF)技术。对基于WJISMF的截锥零件成形进行了综合研究,包括成形理论模型和实验验证。首先,基于平面应变假设和功能定理,建立了基于WJISMF的截锥成形理论模型。该理论模型主要揭示了关键工艺参数(尤其是水射流压力)与截锥部分成形角之间的关系,这对于预测一定水射流压力下的成形角或确定不同锥角的水射流压力非常有用。部分。然后,为验证理论模型,在内置的WJISMF机床上制造了截锥工件。实验结果表明,理论模型与实验吻合良好。

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