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STUDY OF ALTERNATIVE ASSEMBLY PATTERNS USING FINITE ELEMENT ANALYSIS AND LAB TESTS

机译:使用有限元分析和实验室测试研究替代装配模式

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A total of 24 lab tests were performed to evaluate two different joint assembly patterns (legacy and an alternative pattern), two lubricant types (Nickel based and Moly-Disulphide based), and two types of torque wrenches (Hydraulic and Pneumatic). Bolt stress was measured during assembly using load indicating bolts (SPC4). Assembly time was also measured since alternative assembly patterns have been recognized as a potential method for improving assembly efficiency without negatively impacting bolt pre-load scatter. In order to understand the bolt stress distribution in both of the legacy and alternative assembly patterns, a finite element model was developed to simulate wrench sequences specified by ASME PCC-1. The FEA model included the effect of elastic interaction of the bolts and flange. The FEA results indicate similar behavior when compared to the lab test results, and the FEA study was extended to two other alternative assembly patterns. This paper summarizes the results of the FEA and lab tests on a 24" NPS Class 300 flange and may provide validation and supporting information for users who are considering the use of a more efficient assembly method such as the alternative assembly patterns presented in ASME PCC-1.
机译:进行总共24个实验室测试以评估两种不同的关节组装图案(遗留和替代图案),两个润滑剂类型(基于镍和钼基),以及两种类型的扭矩扳手(液压和气动)。使用负载指示螺栓(SPC4)在组装期间测量螺栓应力。还测量了组装时间,因为替代组装图案已被识别为用于改善组装效率而不会产生螺栓预载散射的潜在方法。为了理解两个遗产和替代组装模式中的螺栓应力分布,开发了有限元模型以模拟由ASME PCC-1指定的扳手序列。 FEA模型包括螺栓和法兰弹性相互作用的效果。与实验室测试结果相比,FEA结果表明了类似的行为,并且FEA研究扩展到另外两个替代装配图案。本文总结了24“NPS类别300法兰上的FEA和实验室测试的结果,并且可以为正在考虑使用更高效的装配方法,例如ASME PCC-呈现的替代装配模式,为用户提供验证和支持信息1。

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