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首页> 外文期刊>Journal of Mechanical Science and Technology >Characteristics of pressure and force considering friction in a closed cylinder with a holed piston
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Characteristics of pressure and force considering friction in a closed cylinder with a holed piston

机译:考虑到带孔活塞的封闭气缸中的摩擦力的压力和力的特性

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摘要

A mathematical model for a closed cylinder with a holed piston was established to investigate the operational characteristics of a gas spring. An ideal gas working fluid and an adiabatic process were assumed in the model. Simulation and experimental results for a typical design and operational condition showed good agreement. The model was then used to investigate the effects of the orifice diameter, the filling pressure, and the velocity of the piston on the applied force and operating pressures of two chambers in the gas spring. The results showed that the orifice diameter and the piston velocity had significant effects on the pressure difference between the two chambers. A 0.05-mm reduction in the orifice diameter led to an approximately two-fold increase in the pressure difference. A 10% increase in the piston velocity resulted in an approximately 25% increase in the pressure difference. The orifice diameter and the piston velocity had a greater effect on the chamber with lower pressure than on the chamber with higher pressure. The force applied to the piston also varied with the piston velocity, the orifice diameter, and the filling pressure due to irreversibilities including the throttling process through the orifice and friction between the wall and the piston. The present model and results are expected to supply useful information about a new gas spring design.
机译:建立了带孔活塞的封闭气缸的数学模型,以研究气体弹簧的工作特性。在模型中假设了理想的气体工作流体和绝热过程。典型设计和运行条件的仿真和实验结果显示出良好的一致性。然后,使用该模型研究孔口直径,填充压力和活塞速度对气弹簧中两个腔室的作用力和工作压力的影响。结果表明,孔口直径和活塞速度对两个腔室之间的压力差有显着影响。孔口直径减小0.05毫米会导致压力差增加大约两倍。活塞速度增加10%,压力差增加约25%。孔口直径和活塞速度对压力较低的腔室的影响大于对压力较高的腔室的影响。由于不可逆性,包括通过孔口的节流过程以及壁与活塞之间的摩擦力,由于不可逆性,施加到活塞上的力也会随活塞速度,孔口直径和填充压力而变化。当前的模型和结果有望提供有关新型气弹簧设计的有用信息。

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