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Die design and process optimization of plastic gear extrusion

机译:塑料齿轮挤压模具设计与过程优化

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The flow velocity of the melt in the extruder was simulated by using software Polyflow, and the size of the die channel with the best flow uniformity was obtained. The die profile shape is obtained by reverse design. The length of the shaping section is determined by Ansys transient thermal analysis. According to the simulation results, the design and manufacture of extrusion die of plastic gear and vacuum cooling setting were obtained. The influence of the five process parameters on the precision of the plastic gear were studied by the single factor analysis method, such as the die temperature T, the screw speed R, the die spacing S, the vacuum degree M and the hauling speed V. The optimal combination of process parameters was obtained by using the neural network particle swarm optimization algorithm(T = 197.05 °C, R = 9.04rpm, S = 67mm, M =-0.0194MPa). The tooth profile deviation of the extruded plastic gear can reach 9 level of accuracy.
机译:通过使用软件多流出模拟挤出机中熔体的流速,并且获得了具有最佳流动均匀性的管芯通道的尺寸。模具轮廓形状通过反向设计获得。整形部分的长度由ANSYS瞬态热分析确定。根据仿真结果,获得了塑料齿轮挤出模具和真空冷却设定的设计和制造。通过单因素分析方法研究了五个工艺参数对塑料齿轮精度的影响,例如管芯温度T,螺杆速度r,模距S,真空度M和牵引速度V.通过使用神经网络粒子群优化算法(T = 197.05°C,r = 9.04rpm,s = 67mm,m = -0.0194MPa)获得的最佳组合。挤出塑料齿轮的齿轮廓偏差可以达到9级精度。

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