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Multi-domain simulation and dynamic analysis of the 3D loading and micromotion of continuous-contact helical gear pumps

机译:连续接触螺旋齿轮泵3D负荷和微观运动的多域仿真和动态分析

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摘要

This paper presents a multi-domain dynamic simulation model for continuous-contact helical gear pumps, which is an unconventional hydraulic pump design that is capable of canceling its kinematic flowrate variation. In this model, the fluid dynamics (in its lumped-element representation) are fully coupled in a closed feedback loop with other physical domains, including critical tribological interfaces, 3D dynamic loadings on the solid parts, dynamics, and micro-vibrations of the rotors. The model is compared to the analytical derivation and experimental measurements to prove its validity. The model can be used to provide predictive simulations for existing designs, or as a tool to optimize the design to provide better hydrostatic balancing for future iterations of hydraulic pump designs.
机译:本文介绍了一种用于连续接触式螺旋齿轮泵的多域动态仿真模型,这是一种非常规液压泵设计,能够取消其运动流量变化。 在该模型中,流体动力学(其集成元件表示)与其他物理域的封闭反馈回路完全耦合,包括临界摩擦界面,固体部件,动力学和转子的微振动上的3D动态负载 。 将模型与分析推导和实验测量进行比较,以证明其有效性。 该模型可用于为现有设计提供预测模拟,或者作为优化设计的工具,为未来的液压泵设计提供更好的静液压平衡。

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