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首页> 外文期刊>Journal of micro and nano manufacturing >Experimental and Simulation of Friction Effects in an Open-Die Microforging/Extrusion Process
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Experimental and Simulation of Friction Effects in an Open-Die Microforging/Extrusion Process

机译:开放式微孔/挤出过程中摩擦效应的实验与仿真

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Friction effects during a progressive microforming process for production of micropins of various diameters were experimentally investigated and were analytically modeled, using a hybrid friction model. The response surface method and ANOVA analysis were used to generalize the findings for various pin diameters. Besides, it was shown that to get an accurate result in simulation, the friction model must be considered locally instead of a global friction model for the whole process. The effect of friction factor on the final micropart dimensions (the effect on the instantaneous location of the neutral plane) and the forming pressure were investigated. The results showed a reduction in the friction factor as die diameter increased. Following that, the optimum frictional condition to obtain the highest micropart aspect ratio was defined as the maximum friction on the interface between the die upper surface and the punch surface, together with a minimum friction inside the die orifice.
机译:通过混合摩擦模型进行实验研究并分析模拟了用于生产各种直径的微碎片的渐进式微铸过程中的摩擦效应。 响应面方法和ANOVA分析用于概括各种销直径的发现。 此外,表明要获得准确的仿真结果,必须在本地考虑摩擦模型而不是整个过程的全局摩擦模型。 研究了摩擦因子对最终微珠尺寸的影响(对中性平面瞬时位置的影响)和成形压力。 结果表明,摩擦因子减少,因为模具直径增加。 在此之后,获得最高摩擦条件的最佳摩擦条件被定义为模具上表面和冲头表面之间的界面上的最大摩擦,以及模孔内的最小摩擦。

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