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A PREDICTION OF RELIABILITY OF SUCTION VALVE IN RECIPROCATING COMPRESSOR

机译:往复式压缩机中吸入阀可靠性的预测

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A suction valve is a very important element in reciprocating compressor. And because of the shape of the reed valve its reliability is taken up a subject for discussion and sometimes it is main source of bad product. Because the reliability of the suction valve is directly related to the stress acted on it, the stress and reliability analysis should be carried out in design stage. In this study, the maximum stress and the maximum impact value acted on the suction valve of reciprocating compressor were analyzed by using the commercial nonlinear dynamic structural analysis program LS DYNA3D. The stress acted on the suction valve was measured by the experiment of bolted-case test using the strain gage. In order to investigate more accurately the motion of the valve in air, the displacement of the valve was measured by the laser sensor and the stress of the valve was measured by the strain gage in open-shell state. These were used in making relations between the displacement and the stress. The displacement-stress relationship was used in measuring the displacement of the valve in real cycle. And the maximum impact value was analyzed by experiment. The maximum stress analyzed by FEM was compared with the allowable stress of the material of the valve. The maximum impact value analyzed by FEM and the experiment was compared with the allowable impact value of the material of the valve.
机译:吸入阀是往复式压缩机中非常重要的元件。并且由于簧片阀的形状,其可靠性被讨论讨论,有时它是糟糕产品的主要来源。因为吸阀的可靠性与作用的应力直接相关,所以应在设计阶段进行应力和可靠性分析。在该研究中,通过使用商业非线性动态结构分析程序LS DYNA3D分析了在往复式压缩机的吸入阀上作用的最大应力和最大冲击值。通过使用应变计的螺栓壳试验试验,测量作用在吸阀上的应力。为了更准确地研究空气中阀的运动,通过激光传感器测量阀的位移,通过在开壳状态下的应变计测量阀的应力。这些用于制造位移与压力之间的关系。位移应力关系用于测量阀门在实际循环中的位移。通过实验分析了最大冲击值。将FEM分析的最大应力与阀门材料的允许应力进行比较。通过FEM和实验分析的最大冲击值与瓣膜材料的允许撞击值进行比较。

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