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首页> 外文期刊>CIRP Journal of Manufacturing Science and Technology >Investigation of the tribolgocal behaviour of microstructures for controlling the material flow in sheet-bulk metal forming
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Investigation of the tribolgocal behaviour of microstructures for controlling the material flow in sheet-bulk metal forming

机译:用于控制块散装金属成形材料流动的微观结构肌科行为的研究

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摘要

Sheet-bulk metal forming (SBMF) processes are characterized by a successive and/or simultaneous occurrence of different load conditions with regard to stress and strain states. These conditions significantly influence the material flow and thus the geometrical accuracy of the produced components. To improve the product quality a control of the material flow is required. A suitable approach is given by a local modification of the tribological conditions using surface modifications of tool or workpiece. To control the material flow, methods to adjust the friction are needed. Within the present study, microstructured workpiece surfaces to reduce the friction are investigated. The aim of the study is the determination of the tribological mechanisms of this kind of surface modifications. To identify the mechanisms a combined experimental and numerical approach was used. The use of such a combined approach revealed that the structure volume and the interaction between different types of structures significantly influence the friction reducing potential of microstructured workpiece surfaces.
机译:块状金属成形(SBMF)工艺的特征在于,关于应力和应变状态的连续和/或同时出现不同的负载条件。这些条件显着影响材料流动,从而显着影响所生产的部件的几何精度。为了提高产品质量,需要控制材料流量。通过使用工具或工件的表面改造的摩擦学条件的局部修改给出了合适的方法。为了控制材料流动,需要调节摩擦的方法。在本研究中,研究了微观结构的工件表面以减少摩擦。该研究的目的是确定这种表面修饰的摩擦学机制。为了识别机制,使用组合的实验和数值方法。这种组合方法的使用揭示了结构体积和不同类型结构之间的相互作用显着地影响了微结构化工件表面的摩擦还原电位。

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