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STUDY ON SKIRT-TO-SHELL ATTACHMENT OF COKE DRUM BY EVALUATION OF FATIGUE STRENGTH OF WELD METAL

机译:焊接金属疲劳强度评价岩滚筒裙壳附着的研究

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A skirt-to-shell attachment of a coke drum experience severe thermal cyclic stresses, which cause failures due to low cycle fatigue. Various skirt attachment designs, therefore, have been proposed and implemented. A design where the skirt is attached by a weld build-up is most commonly used. A design where the skirt is attached to the drum shell by utilizing an integral machined plate or forging has been utilized in several projects. One of the advantages of the integral skirt attachment is that a large inner radius can be formed which allows reducing stress concentration compared with the weld build-up design. This advantage can be confirmed easily by FE-analysis in recent years [1] [2] [3]. Another major advantage of the integral skirt attachment is that the area of highest stress intensity is located at the base metal section, not at the weld metal or the heat affected zone which are generally thought to have lower fatigue strength. The fatigue design curve from ASME Section VIII Division 2 [9] is based on fatigue tests for the base metal. It is necessary to reveal differences of fatigue strength among these metals. This paper describes a comparison of fatigue strength of three metals: i) base metal ii) weld metal iii) heat affected zone provided by the low cycle fatigue test for 1 l/4Cr-l/2Mo materials. Our results indicate that the fatigue life of the base metal is about twice as long as that of the weld metal and about three times as long as the heat affected zone. Accordingly, the integral skirt attachment is more resistant to cracking than its welded counterpart from a fatigue strength viewpoint.
机译:焦炭鼓的裙子到外壳附件体验严重的热循环应力,这导致由于低循环疲劳而导致故障。因此,已经提出和实施了各种裙子附件设计。最常用的是焊接堆积的裙子连接的设计。通过利用整体加工板或锻造已经利用了裙部的设计,其中若干项目已经使用了整体加工板或锻造。整体裙部附件的一个优点是可以形成大的内半径,这允许与焊接堆积设计相比降低应力集中。近年来,可以通过Fe分析容易地确认该优点[1] [2] [3]。整体裙部附件的另一个主要优点是最高应力强度的面积位于基础金属部分,而不是在焊缝金属或热影响区域,这些区域通常认为具有较低的疲劳强度。来自ASME第VIII段第2族的疲劳设计曲线[9]基于基础金属的疲劳试验。有必要揭示这些金属之间的疲劳强度的差异。本文描述了三种金属的疲劳强度的比较:i)底座金属II)焊接金属III)通过低循环疲劳试验提供的1 L / 4CR-L / 2MO材料提供的热影响区。我们的结果表明,只要焊接金属的疲劳寿命约为焊接金属的疲劳寿命和大约3倍,只要热影响区域就约为三倍。因此,整体裙部附件比疲劳强度观点的焊接对应物更耐开裂。

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