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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >FEM Investigation on Thermal Effects on Force in High-Speed Blanking of Mild Steel
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FEM Investigation on Thermal Effects on Force in High-Speed Blanking of Mild Steel

机译:低碳钢高速冲裁时热力受力的有限元研究

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This study consists of a numerical investigation of high-speed blanking of mild steel. A finite element model of the high-speed blanking process was developed using ABAQUS/explicit, and the strain rate and temperature-dependent behavior of the work material were included in the model by using the Johnson-Cook hardening model for mild steel. The blanking simulations had a punch speed ranging from 30 mm/s to 60 mm/s to study the influence of the thermal behavior of mild steel on the blanking force. In addition, the influence that the clearance, thickness of the work material and tool edge radius had on the blanking force was studied while changing the punch speed. The simulations revealed that the blanking force decreases when the punch speed increases beyond a certain amount as a result of thermal softening of the mild steel. Also, the clearance, material thickness and tool edge radius were observed to influence the development of the temperature. The results of this study can help understand the high-speed blanking process in order to design an apparatus for further research into high-speed blanking.
机译:这项研究包括对低碳钢高速冲裁的数值研究。使用ABAQUS / explicit建立了高速冲裁过程的有限元模型,并使用Johnson-Cook低碳钢淬火模型将工作速率的应变率和温度相关行为包括在模型中。落料模拟的冲压速度范围为30 mm / s至60 mm / s,以研究低碳钢的热性能对落料力的影响。另外,研究了在改变冲头速度的同时,间隙,工件材料的厚度和刀刃半径对冲裁力的影响。模拟结果表明,由于低碳钢的热软化,当冲头速度增加超过一定量时,落料力减小。此外,观察到间隙,材料厚度和刀具边缘半径也会影响温度的升高。这项研究的结果可以帮助理解高速消隐过程,从而设计一种用于进一步研究高速消隐的设备。

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