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Some advanced plastic processing technologies and their numerical simulation

机译:一些先进的塑料加工技术及其数值模拟

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The development of aero-space, automobile, and high-technology industries requires the development of advanced plastic processing technologies in order to manufacture parts with light weight, high strength, high precision, high efficiency and at low cost, with a short period and a friendly environment, and with intellectualization and digitization. There are key problems urgently to be solved in the research and development of advanced plastic processing technologies, and FEM numerical simulation in combination with physical modeling and theoretical analysis has been playing a more and more important role in this field. This paper reports the state-of-the-art of some advanced plastic processing technologies and their numerical simulation in the authors' laboratory, including the unequal deforming and in-plane bending process of strip metal, free deformation under dieless constraint and axial compressive precision forming process of tube, wrinkling and spring-back prediction and the NC bending precision forming process of thin-walled tubes, and precision forming laws and a complicated massive forming process such as blade forging with a damper platform.
机译:航空航天,汽车和高科技产业的发展要求开发先进的塑料加工技术,以便在短时间内,低成本地制造重量轻,强度高,精度高,效率高且成本低的零件。友好的环境,以及智能化和数字化。先进的塑料加工技术的研发迫切需要解决的关键问题,有限元数值模拟与物理建模和理论分析相结合在该领域发挥着越来越重要的作用。本文报告了一些先进的塑料加工技术的最新进展及其在作者实验室中的数值模拟,包括带材金属的不均匀变形和面内弯曲过程,无模约束下的自由变形和轴向压缩精度管的成形过程,起皱和回弹的预测以及薄壁管的NC弯曲精密成形过程,精密成形定律和复杂的整体成形过程(如带阻尼平台的叶片锻造)。

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