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EXPERIMENTAL AND ANALYTICAL EVALUATION OF BUCKLING FORCES OF A SPIRAL WOUND FLEXIBLE GASKET

机译:螺旋缠绕柔性垫片屈曲力的实验和分析评价

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摘要

Inward buckling forces of spiral wound flexible gaskets is studied experimentally and analytically using the finite element method. A series of experiments was conducted utilizing an NPS 16 Class 300 weld-neck pipe and flange conforming to specification ASME B16.5. Strain gauges were mounted on the inner and outer metallic rings of the spiral wound sealing gasket and strain data was recorded during initial bolt preloading. Using this particular experiment as a pattern, a finite element model was developed to simulate the flange, bolt, and nonlinear gasket response under identical loading conditions. The computer-generated solid model consists of a quarter-symmetry, three-dimensional assembly constructed to the specifications of the pipe, flange, bolts, and gaskets used in the hardware trials. The finite element model was loaded to simulate the initial bolt pre-loading through the same range as in the original experiment. Solutions obtained from the finite element model are compared with the experimental results, and conclusions are drawn.
机译:使用有限元方法对螺旋缠绕挠性垫片的向内屈曲力进行了实验和分析。使用符合规格ASME B16.5的NPS 16 Class 300焊颈管和法兰进行了一系列实验。将应变仪安装在螺旋缠绕密封垫圈的内,外金属环上,并在初始螺栓预加载期间记录应变数据。使用该特定实验作为模式,开发了一个有限元模型来模拟相同载荷条件下的法兰,螺栓和非线性垫片响应。计算机生成的实体模型由四分之一对称的三维装配体组成,该装配体按照硬件试验中使用的管道,法兰,螺栓和垫圈的规格构造而成。加载有限元模型以模拟初始螺栓预加载的范围与原始实验相同。将有限元模型获得的解与实验结果进行比较,并得出结论。

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