首页> 外文期刊>Tribology Transactions >Experimental Study of Leakage and Friction of Rectangular, Elastomeric Hydraulic Seals for Reciprocating Motion from-54 to+135 degrees C and Pressures from 3.4 to 34.5 MPa
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Experimental Study of Leakage and Friction of Rectangular, Elastomeric Hydraulic Seals for Reciprocating Motion from-54 to+135 degrees C and Pressures from 3.4 to 34.5 MPa

机译:矩形,弹性液压密封件在-54至+135摄氏度的往复运动和3.4至34.5 MPa的压力下往复运动的泄漏试验研究

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摘要

Hydraulic seals for reciprocating motion are used in mechanisms, machines, and devices most commonly in automotive, aerospace, marine, and general industrial sectors. Applications vary from those of a cheap medical injector and tire pump to mechanisms controlling ultra-expensive equipment in power stations, ships, and space vehicles. Unfortunately, elastomeric seals are flexible solids with nonlinear response to changes in their environment involving stress or strain, heat transfer, interaction with fluids, and aging. Unsurprisingly, research into their performance is ongoing for more than 80 years. The present experimental study is a step toward a better understanding of sealing performance in a broad range of temperatures and sealed pressures. Hundreds of experiments were conducted in conformance to international standards and in controlled conditions within tight tolerances of all parameters, including mechanical properties, solid dimensions, and operating conditions. Rectangular elastomeric seals for aerospace applications were studied under sealed pressures of 3.4 to 34.5 MPa (500 to 5,000 lb/in(2)) and in ambient temperatures of -54 to +135 degrees C. The combined range of pressures and temperatures exceeds what is available in the literature, particularly on the low temperature side. Other parameters varied in the experiments include the seal dimensions and radial interference, the surface roughness of the cooperating shafts, and the support of seals by one or two back-up rings. The results of the parametric study, summarized in eight tables and two figures, have been sorted for ascending leakage and friction force at each of the studied ambient temperatures for quick selection of optimal values.
机译:往复运动的液压密封件广泛用于汽车,航空航天,船舶和一般工业领域的机构,机器和设备中。其应用范围很广,从廉价的医用注射器和轮胎泵到控制发电站,船舶和太空飞行器中超昂贵设备的机械装置。不幸的是,弹性密封件是柔性固体,对环境变化(包括应力或应变,热传递,与流体的相互作用以及老化)具有非线性响应。毫不奇怪,对它们的性能的研究已经进行了80多年。当前的实验研究是朝着更好的理解温度和密封压力范围内的密封性能迈出的一步。在符合所有标准(包括机械性能,固体尺寸和操作条件)的严格公差范围内,在符合国际标准和受控条件下进行了数百次实验。在3.4至34.5 MPa(500至5,000 lb / in(2))的密封压力和-54至+135摄氏度的环境温度下研究了用于航空航天领域的矩形弹性体密封件。压力和温度的总和超过可从文献中获得,尤其是在低温方面。实验中改变的其他参数包括密封件尺寸和径向干扰,配合轴的表面粗糙度以及由一个或两个支撑环支撑的密封件。对参数研究的结果进行了归纳,总结了八张表和两个图,以提高在每个研究的环境温度下的泄漏和摩擦力,以便快速选择最佳值。

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