Assembly of Bolted Flanged and Support Joints for Use in Elevated Temperature Exhaust Systems

Jason E. Dorgan, A. Gjinolli
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Abstract

Ancillary exhaust system structural design for turbines typically employs a separation of responsibilities between the design and installation functions. The design expectations must be implemented correctly during the installation phase to allow long-term serviceability and success of the turbine exhaust system. This paper will explore a case study reviewing bolt tightening of duct structural angle and plate flange joints using compressible high temperature fiberglass gasket material, as well as design suggestions for metal-on-metal duct sliding support joints to structural steel. Improper design and operation can lead to failure, downtime, warranty cost and reduced design life of the exhaust system. It is not uncommon for field installation personnel to modify key system design requirements during the installation phase; typically out of habit, perceived best practice, missed installation instructions and/or misunderstanding the system behavior. In addition, maintenance recommendations are often overlooked. Literature provides extensive background for bolting of stationary metal-to-metal plate joints, rigid gaskets and pressure vessel joints. There is a gap with respect to structural angle and plate flange joint bolt tensioning using compressible fiberglass gaskets at low pressures and high temperatures. Much of the industry standard tightening philosophy is useful, but has not been extensively studied and written about with respect to flanges under high exhaust temperatures or for sliding joints exposed to thermal expansion. This paper summarizes current industry practice, presents relevant test data and a case study, analyzes the effects of high thermal stresses, and recommends a tightening procedure for typical field applications of flange joints using high temperature gaskets, and the design of metal-to-metal sliding support joints.
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用于高温排气系统的螺栓连接、法兰连接和支撑连接总成
涡轮机的辅助排气系统结构设计通常采用设计和安装功能之间的责任分离。在安装阶段必须正确地实现设计期望,以确保涡轮排气系统的长期可维护性和成功。本文将以可压缩高温玻璃纤维垫片材料对风管结构角和板法兰连接的螺栓紧固进行案例研究,以及对金属对金属风管滑动支撑连接与结构钢的设计建议。设计和操作不当会导致排气系统故障、停机、保修成本和设计寿命缩短。现场安装人员在安装阶段修改关键系统设计要求的情况并不少见;通常出于习惯、感知最佳实践、错过安装说明和/或误解系统行为。此外,维护建议经常被忽视。文献提供了广泛的背景螺栓固定金属对金属板连接,刚性垫片和压力容器连接。在低压和高温下,使用可压缩玻璃纤维垫片对结构角和板法兰连接螺栓的张紧存在差距。许多行业标准的拧紧哲学是有用的,但没有广泛的研究和撰写关于在高排气温度下的法兰或暴露于热膨胀的滑动接头。本文总结了目前的行业实践,提供了相关的测试数据和案例分析,分析了高热应力的影响,并针对使用高温垫片的法兰连接的典型现场应用推荐了一种拧紧程序,以及金属对金属滑动支撑连接的设计。
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