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Investigation of die wear during fine-blanking process of a kind of automobile synchronizer slipper by FEM and experiments

机译:有限元和实验的一种汽车同步器拖鞋的细小消隐过程中模具磨损的研究

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In this paper, die wear during fine-blanking process of a kind of automobile synchronizer slipper was investigated based on Finite Element Method (FEM) and experiments. The Finite Element (FE) model to simulate the fine-blanking process of the automobile synchronizer slipper was established on the DEFORM-3D software platform, and Archard's wear model was employed to calculate die wear during the process. Meanwhile, mesh refinement and automatic remeshing technique were used during meshing process of the blanked materials and bottom die in order to achieve high accuracy results of FE simulations and improve the computational efficiency. Simulation results have been verified and show good agreement with the real manufacture. In addition, relationships between die wear and the process parameters during fine-blanking process such as pressure pad force, ejector force, blanking speed, blanking clearance, fillet radius of bottom die as well as hardness of bottom die were investigated, respectively via FEM. The simulation results indicate that die wear is in proportion to the pressure pad force, ejector force, blanking speed and fillet radius of bottom die, while in inverse proportion to the blanking clearance and hardness of bottom die, which will provide a reliable reference for the real manufacture and engineering application.
机译:本文基于有限元方法(FEM)和实验,研究了一种汽车同步器拖鞋的微小消隐过程中的模具磨损。在Deform-3D软件平台上建立了用于模拟汽车同步器拖鞋的细小消隐过程的有限元素(FE)模型,采用了Archard的磨损模型来计算过程中的模具磨损。同时,在消隐材料和底部模具的啮合过程中使用了网眼细化和自动倒闭技术,以实现FE模拟的高精度结果并提高计算效率。仿真结果已被验证并与真实制造符合良好的一致性。另外,通过FEM分别研究了诸如压力焊盘力,喷射力,消隐速度,消隐,底模的消隐空间,底模的硬度,底模的硬度的微消隐工艺之间的关系和工艺参数之间的关系。仿真结果表明,模具磨损与压力焊盘力,喷射器力,消隐速度和底部圆角半径成比例,同时与底模的消隐间隙和硬度相反,这将为底部模具和硬度相反真正的制造和工程应用。

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