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Cause analysis of crankshaft crack Crank bearing scuff of large-scale reciprocating compressor

机译:大型往复式压缩机曲轴裂纹和曲轴轴承磨损的原因分析

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The crankshaft of a six-crank reciprocating compressor frequently cracks during operation station. After the diameter of main shaft being magnified, this problem is not solved while new one appears, i.e., the unit vibrates strongly and the Crank bearing scuffs continuously at the 1st and 2nd crank. To explain the exact reason and modify the configuration of compressor, analysis of modal and dynamic response is performed for the initial and magnified crankshaft with ANSYS finite element analysis software. The result shows that the crack of crankshaft results from the fatigue damage worsened by torsional resonance vibration, and the crank bearings are scuffed because of the largest torsional vibration amplitude of crank pin, which increases continuously from the driving end to the free end. As the diameter of main shaft is magnified, the first order of torsional vibration natural frequency is increased and thus the frequency ratio r of sevenfold rotating speed to the first order of torsional vibration natural frequency is reduced from 1.036 to 1.016, and therefore stronger resonance vibration occurs. Improved configuration is put forward with reduced diameters of crankshaft and cylinders of each stage. With the fault eliminated, not only the predetermined technical performance is ensured but also lower cost and smaller size of components can be obtained.
机译:六曲柄往复式压缩机的曲轴在操作台上经常开裂。主轴直径放大后,新的出现并没有解决此问题,即,装置强烈振动,曲轴轴承在1st 和2stup 处连续擦伤曲柄。为了解释确切原因并修改压缩机的配置,使用ANSYS有限元分析软件对初始曲轴和放大曲轴进行了模态和动态响应分析。结果表明,曲轴裂纹是由扭转共振振动加剧的疲劳损伤造成的,曲柄销的最大扭转振动振幅从驱动端到自由端连续增大,从而导致曲轴轴承磨损。随着主轴直径的增大,一阶扭转振动固有频率增加,因此七倍转速与一阶扭转振动固有频率的频率比r从1.036减小到1.016,因此共振振动更强发生。提出了改进的构造,其中减小了每个阶段的曲轴和气缸的直径。通过消除故障,不仅可以确保预定的技术性能,而且可以降低成本并减小组件尺寸。

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