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THE DESIGN OF FABRIC EXPANSION JOINT GAS SEAL MEMBRANES

机译:织物膨胀节气密封膜的设计

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Fabric expansion joints are commonly used in round and rectangular ducting systems for accommodating differential thermal expansion and containing internal pressure. Fabric expansion joints are intended for sustained operation without significant leakage. Failure of fabric expansion joints can lead to plant shutdowns. The outer gas seal membrane is a structural material most commonly made from woven fabric with an elastomeric coating. The fibers in the fabric are comparatively strong and flexible but not chemically resistant. The coating protects the fibers from chemical attack and seals the woven fabric to minimize leakage through the material. The fabric material is typically clamped between metal frames attached to the ducting. The orientation of the fibers with respect to the frames is a critical design factor. Fabric expansion joints are normally designed in accordance with the guidelines of the Fluid Sealing Association Technical Handbook. The handbook gives helpful information but does not provide analytical methods for the mechanical design of gas seal membranes. The intent of this paper is to provide analytical methods for determining the movement capability and pressure capacity of gas seal membranes. Test results and non-linear finite element analysis are used to support the proposed methods.
机译:织物伸缩缝通常用于圆形和矩形管道系统中,以适应不同的热膨胀并控制内部压力。织物伸缩缝用于持续运行而不会产生明显泄漏。织物伸缩缝的故障会导致工厂停工。外部气封膜是最通常由具有弹性体涂层的机织织物制成的结构材料。织物中的纤维比较结实,柔软,但不耐化学腐蚀。涂层可保护纤维免受化学侵蚀,并密封机织织物,以最大程度地减少通过材料的泄漏。织物材料通常被夹在附接到管道的金属框架之间。纤维相对于框架的取向是关键的设计因素。织物伸缩缝通常根据《流体密封协会技术手册》的指南进行设计。该手册提供了有用的信息,但没有提供用于气密封膜机械设计的分析方法。本文的目的是提供确定气体密封膜的运动能力和压力能力的分析方法。测试结果和非线性有限元分析被用来支持所提出的方法。

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