Control optimization of taper interference coupling system for large piston compressor in the smart industries

Wenwen Sun, Huifang Xia
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Abstract

Abstract To study the control optimization of conical interference connection system for large piston compressor, the reliability optimization and reliability optimization design of conical interference connection were systematically described. By using the proposed method, the maximum operating reliability can be obtained under the condition of constant interference joint size, namely, reliability optimization. Alternatively, the desired working reliability can be designed into the mating connection by optimizing parameters (combining size and interference), namely, reliability optimization design. Design value of 2.12 compression ratio is significantly higher than the unit level. As a result, the mid-stage exhaust temperature of the unit is as high as 124°C, and it is in high temperature operation state. It has been proved that conical interference connection is widely used in hydraulic transmission device because of its advantages of simple structure, reliable operation, and ability to bear certain impact load, reliable transmission torque than general connection, and convenient assembly and disassembly and has been proved to be reliable in practice.
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智能工业中大型活塞压缩机锥度干涉耦合系统控制优化
摘要为研究大型活塞式压缩机锥形过盈连接系统的控制优化,系统地阐述了锥形过盈连接的可靠性优化和可靠性优化设计。采用该方法,在过盈节点尺寸一定的情况下,可获得最大的运行可靠性,即可靠性优化。也可以通过优化参数(结合尺寸和过盈度)将期望的工作可靠性设计到配合接头中,即可靠性优化设计。设计值2.12压缩比显著高于机组水平。导致机组中期排气温度高达124℃,处于高温运行状态。实践证明,锥形过盈连接具有结构简单、工作可靠、能承受一定的冲击载荷、传递扭矩比一般连接可靠、拆装方便等优点,在液压传动装置中得到了广泛的应用,并在实践中得到了可靠的证明。
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