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CONSIDERATIONS OF THE RESTRAINT INTRODUCED BY PIPING SUPPORT FRICTION IN A COMPREHENSIVE ASME B31.3 ANALYSIS

机译:在ASME B31.3综合分析中采用管道支撑摩擦引入约束的注意事项

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This paper discusses the prescribed requirements contained within the ASME B31.3 Process Piping Code that specifically address the need to recognize the restraint introduced by piping support friction. The requirement for the design of sliding supports (pipe shoes) and brackets to resist the forces due to friction in addition to the loads induced by bearing is also reviewed and discussed. Questions surrounding the inclusion of the effects of utilizing the maximum coefficients of static friction and the impact of these values on equipment nozzle loadings are explored in light of the qualitative guidelines contained within WRC Bulletin 449. The restraint provided by support friction is approached through the mathematical treatment of extrema with respect to calculated nozzle loads. The calculated nozzle loads then become based upon the analyst's choice of the largest referenced coefficients of static friction (in most cases) between the two interfacing materials under consideration. It is highly improbable that the choice of the maximum coefficients of friction at each support will exist, but rather, it is physically impossible for this "worst case" condition to occur. Recommendations for the proper treatment of the potential restraint induced by piping support friction in a Code piping analysis are tendered.
机译:本文讨论了ASME B31.3过程管道规范中包含的规定要求,这些要求专门解决了认识由管道支撑摩擦引入的约束的需求。还回顾并讨论了设计滑动支撑(管靴)和支架以抵抗除轴承引起的载荷之外的摩擦力的要求。根据WRC公告449中包含的定性指导原则,探讨了围绕最大静摩擦系数的使用影响以及这些值对设备喷嘴载荷的影响的问题。关于计算出的喷嘴载荷的极端处理。然后,计算得出的喷嘴载荷将基于分析人员在考虑的两种界面材料之间的最大参考静摩擦系数(大多数情况下)的选择而定。极不可能存在每个支撑处的最大摩擦系数的选择,但实际上,这种“最坏情况”的条件在物理上是不可能发生的。提出了在规范管道分析中对管道支撑摩擦引起的潜在约束进行适当处理的建议。

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