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An investigation on the impact fatigue characteristics of valve leaves for small hermetic reciprocating compressors in a new automated test system

机译:新型自动测试系统中小型封闭式往复式压缩机气门叶片冲击疲劳特性的研究

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This paper presents an investigation on the impact fatigue characteristics of valve leaves that are prevalently used in hermetic reciprocating compressors especially for the household type refrigerators. A unique automated impact fatigue test system has been designed and produced, which enables to carry out impact fatigue tests of the compressor valve leaves under the desired impact velocities. The test system incorporates a noncontact actuation, a data acquisition system and an acoustic-based damage detection technique, which continuously monitors the health of the structure. The damage detection system allows parametrical investigation on the impact fatigue life by detecting any possible damage and automatically terminating the test. The investigation relates the impact fatigue lifetime of the valve leaves with the impact velocity, asymmetrical impact, operation temperature, material type (carbon strip steel, stainless strip steel and new stainless strip steel grade) and tumbling operation duration. The observations show that the cracks have initiated from the edges of the valve leaf where is in contact with the valve plate. Subsequently, the cracks initially have propagated in the radial direction inwards the center of the impact area. Various failure cases have been resulted in by either a single crack or inter-related multiple cracks. Microscopic and metallographic observations have been performed on the specimens to enhance the understanding of the damage mechanisms. The investigation and introduced test system guide the design optimization of the valve leaves in terms of compressor performance due to the energy consumption and lifetime of the valve leaf.
机译:本文对气门扇的冲击疲劳特性进行了研究,该气门扇普遍用于密封往复式压缩机中,尤其是家用冰箱。设计并生产了独特的自动化冲击疲劳测试系统,该系统能够在所需的冲击速度下对压缩机气门叶片进行冲击疲劳测试。该测试系统结合了非接触驱动,数据采集系统和基于声学的损坏检测技术,可连续监控结构的健康状况。损坏检测系统可以通过检测任何可能的损坏并自动终止测试来对冲击疲劳寿命进行参数研究。研究将气门叶片的冲击疲劳寿命与冲击速度,非对称冲击,工作温度,材料类型(碳钢,不锈钢钢和新的不锈钢钢等级)和翻滚操作持续时间联系起来。观察结果表明,裂纹是从与阀板接触的阀叶边缘开始的。随后,裂纹最初在径向方向上向冲击区域的中心传播。单个裂纹或相互关联的多个裂纹导致了各种故障案例。对标本进行了显微和金相观察,以增进对损伤机理的了解。研究和引入的测试系统会根据气门叶片的能耗和使用寿命来指导气门叶片在压缩机性能方面的优化设计。

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