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Design and Simulation of Piston Buffering Device forImpact Hammer

机译:活塞缓冲装置锻造锤的设计与仿真

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Aiming at the mispunchproblem of emulsion impact hammer, the cone-type piston buffering structure was adopted to minimize the impact. Impact process simulation model of differential connection piston was built using AMESim software, the influences of different buffer length, conical angles and buffer clearance on the terminal velocity and pressure were analyzed according to the model and optimum parameters (half cone angle 5°, length 50mm as well as clearance 0.25mm) were determined. The collision progress between piston and the guide sleeve at 2m/s simulated by LS-DYNA software shows that the maximum stress is 674MPa which locates at the edge of the liquid inlet hole of guide sleeve, and the maximum stress on interface is less than 400MPa, both of them area lower than the yield strength of materials, so the guide sleeve is of shock resistance. However, it is found to have rebounding phenomenon during the buffering process and the misspent should be attentively prevented.
机译:针对乳液撞击锤的错位问题,采用锥型活塞缓冲结构,以最大限度地减少撞击。使用AMESIM软件建立差动连接活塞的冲击过程模拟模型,根据模型和最佳参数(半锥角5°,长度为50mm,对终端速度和压力进行终端速度和压力对终端速度和压力的影响。确定了0.25mm的间隙。活塞和引导套筒之间的碰撞进展在由LS-DYNA软件模拟的2M / s处表示,最大应力为674MPa,位于引导套筒的液体入口孔的边缘处,界面上的最大应力小于400MPa ,它们的两个面积低于材料的屈服强度,因此引导套筒具有抗冲击性。但是,发现在缓冲过程中具有反弹现象,并且应注意遗忘。

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