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Measurement of Creep Deformation across Welds in 316H Stainless Steel Using Digital Image Correlation

机译:用数字图像相关法测量316H不锈钢焊缝蠕变变形

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摘要

Spatially resolved measurement of creep deformation across weldments at high temperature cannot be achieved using standard extensometry approaches. In this investigation, a Digital Image Correlation (DIC) based system has been developed for long-term high-temperature creep strain measurement in order to characterise the material deformation behaviour of separate regions of a multi-pass weld. The optical system was sufficiently stable to allow a sequence of photographs to be taken suitable for DIC analysis of creep specimens tested at a temperature of 545 °C for over 2000 h. The images were analysed to produce local creep deformation curves from two cross-weld samples cut from contrasting regions of a multi-pass V-groove weld joining thick-section AISI Type 316H austenitic stainless steel. It is shown that for this weld, the root pass is the weakest region of the structure in creep, most likely due to the large number of thermal cycles it has experienced during the fabrication process. The DIC based measurement method offers improved spatial resolution over conventional methods and greatly reduces the amount of material required for creep characterisation of weldments.
机译:使用标准引伸法无法实现高温下焊缝间蠕变变形的空间分辨测量。在这项研究中,已开发出一种基于数字图像相关(DIC)的系统,用于长期高温蠕变应变测量,以表征多道次焊缝各个区域的材料变形行为。光学系统足够稳定,可以拍摄一系列照片,以适合于在545°C的温度下测试2000小时以上的蠕变样品的DIC分析。对图像进行了分析,以从两个交叉焊接的样品中产生局部蠕变变形曲线,该样品是从多道V形坡口焊缝的厚壁AISI 316H型奥氏体不锈钢的对比区域切割而来的。结果表明,对于这种焊接,根部焊道是结构蠕变中最薄弱的区域,这很可能是由于其在制造过程中经历了大量的热循环。基于DIC的测量方法提供了比常规方法更高的空间分辨率,并大大减少了焊件蠕变表征所需的材料量。

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