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A study on the development of a numerical model for a rotary vane vacuum pump for brake boosters

机译:制动钢筋旋转叶片真空泵数值模型的开发研究

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摘要

A negative pressure is formed inside the brake booster in a running diesel vehicle by using a rotary vane vacuum pump. In vacuum pump design, it is important to reduce the time required to induce the minimum negative pressure required for immediate consecutive braking and to reduce the torque used to drive the pump. In this study, a numerical simulation model to predict the performance of a vacuum pump was developed and experimentally validated by comparing the pump's drive torque and the time required by a 4 L chamber to reach the target pressure. The housing profile was obtained via 3D scanning, while the check valve, bypass hole, and groove, which significantly affect the pump performance, were mathematically described. The model was validated by comparing the vacuum chamber pressure variation and the average torque. Similarly, the pump performance with respect to changes in major design factors, such as check valve and bypass hole shapes, were compared against the experimental data. In addition, the pump performance was predicted as a function of the housing profile shape, which is difficult to evaluate experimentally, and a new profile shape to improve the performance was proposed.
机译:通过使用旋转叶片真空泵,在运行的柴油车内在制动助力器内形成负压。在真空泵设计中,重要的是减少诱导立即连续制动所需的最小负压所需的时间,并减小用于驱动泵的扭矩。在该研究中,通过比较泵的驱动扭矩和4L室所需的时间来实现泵的驱动扭矩和达到目标压力所需的时间来开发和实验验证的数值模拟模型。通过3D扫描获得外壳轮廓,而在数学上描述了显着影响泵性能的止回阀,旁路孔和凹槽。通过比较真空室压变化和平均扭矩来验证该模型。类似地,在实验数据中比较了关于主要设计因子的变化的泵性能,例如止回阀和旁路孔形状。另外,泵性能被预测为壳体轮廓形状的函数,这难以通过实验评估,并且提出了一种新的轮廓形状以提高性能。

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