首页> 外文期刊>Transactions of the Indian Institute of Metals >Design, Development, Analysis and Comparison of Instrumented Irradiation Capsule for Online Determination of Uniaxial Creep Behavior in Structural Specimen Out-of-Pile Test Results with Analytical Results in FBTR
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Design, Development, Analysis and Comparison of Instrumented Irradiation Capsule for Online Determination of Uniaxial Creep Behavior in Structural Specimen Out-of-Pile Test Results with Analytical Results in FBTR

机译:仪表辐照胶囊的设计,开发,分析和比较在线测定结构标本中的单轴蠕变行为中的结构标本突发性试验结果与FBTR分析结果

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The main intent of this work is to develop an instrumented capsule for online determination of uniaxial creep behavior of SS 316L structural specimen. The irradiation capsule has three different zones located one over the other. In the bottom zone of the capsule, the specimen is located, with one end fixed to the bottom portion of capsule and the other end connected to a central tube through a connecting plug. In the top zone a linear variable differential transducer (LVDT) is placed and its core is passed through the central tube. The end point of the LVDT core touches the plug connected to the specimen to measure the elongation of the structural specimen. In this capsule setup, bellows are used to apply a load on the structural specimen with the use of pressurized argon gas. With the application of pressure, the bottom bellow will expand and the top bellow will get compressed. During this expansion of the bottom bellow, tensile load will be applied on the specimen, and the elongation of the structural specimen will be measured by the movement of the core of the LVDT. This paper discusses the details of the design, assembly of an out-of-pile version of instrumented capsule and its experimental results are compared with literature results. The creep experiments have been carried out at three different temperatures and three different stresses (269 MPa at 450 A degrees C, 287 MPa at 500 A degrees C and 306 MPa at 550 A degrees C). Initially the capsule is filled with pre-pressurized argon gas at 6 MPa at room temperature. We have observed that the force/load due to argon gas pressure is the major component for the tensile loading of the specimen and 95% of the total load acts on the SS 316L specimen and remaining 5% load only acts on the bellow. Design concept of instrumented capsule for uniaxial creep measurement has been validated.
机译:这项工作的主要目的是开发一种用于在线测定SS 316L结构标本的单轴蠕变行为的仪表胶囊。辐射胶囊有三个不同的区域,位于另一个上。在胶囊的底部区域中,样品位于,一端固定到胶囊的底部,另一端通过连接塞连接到中心管。在顶部区域中,放置了线性可变差分换能器(LVDT),并且其芯通过中心管。 LVDT芯的终点触及连接到样本的插头,以测量结构样品的伸长率。在该胶囊设置中,波纹管用于使用加压氩气的结构样品上施加负荷。随着压力的施加,底部光泽将膨胀,顶部波纹管将被压缩。在该底部光泽的膨胀期间,将在样品上施加拉伸载荷,并且结构样本的伸长率将通过LVDT的核心的运动来测量。本文讨论了设计的细节,组装了纯版的仪表胶囊,其实验结果与文献结果进行了比较。蠕变实验已经在三种不同的温度下进行,三种不同的应力(在550℃下以450℃,287MPa为550℃,在550℃下为269MPa)。最初,胶囊在室温下以6MPa填充有预加压的氩气。我们观察到,由于氩气压引起的力/载荷是标本的拉伸负载的主要成分,95%的总载荷作用于SS 316L样本,其余5%的负荷仅在光泽上起作用。验证了单轴蠕变测量仪表胶囊的设计理念已得到验证。

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