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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Predication and analysis of positioning status of large-scale billets on forging dies using multi-body dynamics simulation
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Predication and analysis of positioning status of large-scale billets on forging dies using multi-body dynamics simulation

机译:基于多体动力学仿真的大型锻模坯料定位状态预测与分析

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In the processing of large and ultra-large forgings, the heated billets need to be properly placed on the lower forging die as quickly as possible before the plastic forming, or else the cooling of billets incurs enormous risks to the operation. This paper presents a novel methodology for examining the positioning status of billets on a forging die based on multi-body dynamics simulation and design of experiment (DOE). Using this method, the position and posture of a billet can be theoretically predicted after falling into the cavity of lower die from a manipulator with varying initial states. The method can also clarify the initial geometrical position parameters of the billet that should be strictly controlled in the operation of the manipulator above the lower die. Furthermore, finite element method (FEM) simulation can be used to analyze plastic deformations of the billets on the lower die surface with varying states, to attain in-depth understanding of the influence of the geometric states of billets in forming processes. A case study of forging with Al 7050 indicates that the method can provide a valuable reference for the rapid positioning of billets on the lower die.
机译:在加工大型和超大型锻件时,需要在塑料成型之前尽快将加热的坯料正确地放置在下部锻模上,否则坯料的冷却会给操作带来巨大的风险。本文基于多体动力学仿真和实验设计(DOE),提出了一种新颖的方法来检查坯料在锻模上的定位状态。使用这种方法,从具有变化的初始状态的机械手掉入下模腔中后,理论上可以预测坯料的位置和姿势。该方法还可以阐明在下模上方的机械手的操作中应严格控制的坯料的初始几何位置参数。此外,可以使用有限元方法(FEM)模拟来分析具有变化状态的下模表面上的坯料的塑性变形,以深入了解坯料的几何状态在成形过程中的影响。铝7050锻造的案例研究表明,该方法可为在下模上快速定位坯料提供有价值的参考。

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