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ANALYSIS OF FCC EXPANSION JOINTS MOVEMENT TEST

机译:FCC膨胀节运动试验分析

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The Turboexpander is an equipment that works under very critical conditions requiring very low allowable nozzle forces and moments. A solution to minimize the piping loads transmitted to the equipment is the use of expansion joints. A usual piping stress analysis normally is not enough to guarantee the turboexpander reliability.This paper shows the results obtained in a movement test realized on metallic bellows expansion joints (EJ) used in a turboexpander piping system. The EJ were designed according to the expansion joints manufacturer association code (EJMA), the diameters range from 457 to 2,898 mm, the material of the bellows is Inconel 625 LCF and the shell materials are "killed" carbon steel, for refractory lined EJ or stainless steel 304H.A special test device was developed to apply the design movements on the EJ at the factory. A digital dynamometer was used for data acquisition and the tests were performed on 16 expansion joints of two distinct types: hinged and gimbal. The EJ were pressurized with water during the test. The reactions and corresponding displacements for each step of the test were recorded during loading and unloading.
机译:涡轮膨胀机是在非常关键的条件下工作的设备,需要非常低的允许喷嘴力和力矩。最小化传递到设备的管道负载的解决方案是使用伸缩缝。通常,管道应力分析通常不足以保证涡轮膨胀机的可靠性。 本文显示了在涡轮膨胀机管道系统中使用的金属波纹管膨胀节(EJ)进行的运动测试中获得的结果。 EJ是根据伸缩缝制造商协会代码(EJMA)设计的,直径范围为457至2898 mm,波纹管的材料为Inconel 625 LCF,外壳材料为“杀死”碳钢,用于耐火衬里EJ或不锈钢304H。 开发了一种特殊的测试设备,以将设计动作应用于工厂的EJ。使用数字测力计进行数据采集,并在两种不同类型的16个伸缩缝上进行了测试:铰链式和万向节式。在测试过程中,用水将EJ加压。在装载和卸载过程中,记录了每个测试步骤的反应和相应的位移。

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