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APPLICATION OF PLASTIC REGION BOLT TIGHTENING TO FLANGE JOINT ASSEMBLY - Behavior of Compact Flanged Joint Subjected to Thermal Load

机译:塑料区螺栓拧紧对法兰接头组装的应用 - 热载荷的紧凑型凸缘关节的行为

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In the past study the plastic region tightening has been applied to the compact flange joint and its advantages have been demonstrated. However, behavior of the compact flange joint subjected to the thermal load is not investigated. There are reduction of the gasket stiffness, the flange rotation, and difference in the thermal expansion among the members making up the flange joint. It is well known that these problems cause the change in axial bolt force. The present paper describes the behavior of the compact flange joint subjected to the thermal load under the plastic region tightening. Since there is a difference in temperature between the compact flange joint and the bolts, the axial bolt force increases as the temperature of the internal fluid increases. The additional axial bolt force is positive when the thermal loads are applied to the compact flange joint. However, the additional axial bolt force was approximately 3% of the bolt yield force at maximum and the bolt had a sufficient margin for the allowable limit. Additionally, the load factor depends on the change in the elastic modulus due to change in temperature of the internal fluid.
机译:在过去的研究中,将塑料区域紧固已施加到紧凑的法兰接头上,并且已经证明了其优点。然而,未研究受到热负荷的紧凑法兰接头的行为。垫圈刚度,法兰旋转和构成法兰接头构成的构件中的热膨胀的差异降低。众所周知,这些问题导致轴向螺栓力的变化。本文介绍了在塑料区域拧紧下进行热负荷的紧凑法兰接头的行为。由于紧凑的法兰接头和螺栓之间的温度差异,因此随着内部流体的温度增加,轴向螺栓力增加。当热负荷施加到紧凑的法兰接头时,额外的轴向螺栓力是正的。然而,额外的轴向螺栓力最大约3%的螺栓屈服力,并且螺栓具有足够的余量,用于允许极限。另外,负载因子取决于由于内部流体的温度变化导致的弹性模量的变化。

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