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Constitutive Modeling of a Glass Fiber-Reinforced PTFE Gasketed-Joint Under a Re-torque

机译:在重新扭矩下玻璃纤维增​​强PTFE垫圈的本构型建模

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Joints gasketed with viscoelastic seals often receive an application of a secondary torque, i.e., re-torque, in order to ensure joint tightness and proper sealing. The motivation of this study is to characterize and analytically model the load and deflection re-torque response of a single 25% glass-fiber reinforced polytetrafluorethylene (PTFE) gasket-bolted joint with serrated flange detail. The Burger-type viscoelastic modeling constants of the material are obtained through isolating the gasket from the bolt by performing a gasket creep test via a MTS electromechanical test frame. The re-load creep response is also investigated by re-loading the gasket after a period of initial creep to observe the response. The modeling constants obtained from the creep tests are used with a Burger-type viscoelastic model to predict the re-torque response of a single bolt-gasket test fixture in order to validate the ability of the model to simulate the re-torque response under various loading conditions and flange detail.
机译:用粘弹性密封件垫圈的接头通常会收到二次扭矩,即重新扭矩的施加,以确保接头紧密性和适当的密封。该研究的动机是用锯齿状法兰细节进行特征和分析模拟单个25%玻璃纤维增​​强聚四氟乙烯(PTFE)螺栓连接接头的载荷和偏转再扭矩响应。通过通过MTS机电测试框架执行垫圈蠕变测试,通过将垫圈与螺栓隔离来获得材料的汉堡型粘弹性型材。通过在初始蠕变之后重新装载垫圈以观察反应,还通过重新装载垫圈来研究重新装载蠕变响应。从蠕变试验中获得的建模常数与汉堡型粘弹性模型一起使用,以预测单个螺栓垫圈测试夹具的重新扭矩响应,以验证模型模拟各种扭矩响应的能力装载条件和法兰细节。

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