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Modeling and simulation of a direct drive reversing valve for the hydraulic die forging hammer

机译:液压模锻锤直接驱动倒档阀的建模与仿真

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As the core component of the hydraulic die forging hammer, the main reversing valve controls the strike and return action of the hammer. It has high cost and poor stability since driven by hydraulic pressure, which needs a separately hydraulic circuit and it is unable to control the valve core precisely. In order to improve the speed control accuracy and position precision, a new drive method based on TPMLM (tubular permanent magnet linear motor) is designed in this paper. The mathematical models of the original reversing valve and the improved one are built. Theoretical calculation and simulation on the fluid force analysis are discussed to verify the method. The simulation performance is conduct to compare response characteristic between the two hydraulic systems based on AMESim. The results indicate that the new drive method exhibits a faster response of the reversing valve.
机译:作为液压模锻锤的芯部件,主换流阀控制锤子的击打和返回动作。它具有高成本和稳定性差,因为通过液压驱动,需要一个单独的液压回路,并且它无法精确控制阀芯。为了提高速度控制精度和位置精度,本文设计了一种基于TPMLM(管状永磁线性电机)的新型驱动方法。建立了原始倒车阀的数学模型和改进的。讨论了流体力分析的理论计算和模拟以验证该方法。仿真性能是在进行基于Amesim的两个液压系统之间进行比较的响应特性。结果表明,新的驱动方法表现出更快的反转阀的响应。

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