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Metallurgical Study of a AISI 316L Stainless Steel used in a Gas Turbine Exhaust System

机译:燃气轮机排气系统中AISI 316L不锈钢的冶金研究

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Several high temperature fatigue and possibly creep-fatigue cracks have nucleated and propagated through the 3.7 mm wall thickness of a gas turbine exhaust system of a navy combat ship made of a grade type AISI 316L annealed stainless steel. The main cracks propagated near some welded joints, where the measured working temperature was approximately equal to 350°C (Fig. 1). The paper presents tensile, fatigue and creep data obtained from experimental tests that were performed in several test specimens obtained from steel plates used in-service. Results of optical microscopy for the microstructure of the material and analysis of the fracture surfaces carried out with the SEM have identified the failure mechanisms at test temperatures. The paper also presents microhardness and grain size measurements carried out together with microstructural observations in the SEM. A research work to investigate carbide precipitation in virgin thin sheet specimens, as used in these exhaust tubes, was also performed and it is presented. The influence of stages time (100, 200, 100+100 and 4x50 hours) and of thermal exposure temperatures (500 and 550°C) was assessed to compare the metallurgical properties of the material. Finally, the paper shortly analyses other materials that could replace the used one.
机译:几种高温疲劳和可能的蠕变 - 疲劳裂缝具有核心和传播的燃气轮机排气系统的3.7毫米壁厚,由级别AISI 316L退火不锈钢制成的海军战斗船。主要裂缝在一些焊接接头附近传播,其中测量的工作温度近似等于350℃(图1)。本文呈现了从在从使用的钢板获得的几种测试样品中进行的实验试验中获得的拉伸,疲劳和蠕变数据。用于材料的微观结构的光学显微镜的结果和利用SEM进行的裂缝表面的分析已经确定了测试温度的故障机制。本文还介绍了微硬度和晶粒尺寸测量,与SEM中的微观结构观测一起进行。还进行了研究在这些排气管中的碳化物沉淀在这些排气管中的碳化物沉淀的研究工作,并提出。评估阶段时间(100,200,100 + 100和4x50小时)和热暴露温度(500和550℃)的影响以比较材料的冶金性质。最后,本文不久分析了其他可以取代使用的材料。

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