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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >A study of the micro-mechanical properties of butt fusion-welded joints in HDPE pipes using the nanoindentation technique
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A study of the micro-mechanical properties of butt fusion-welded joints in HDPE pipes using the nanoindentation technique

机译:使用纳米狭窄技术研究HDPE管道焊接接头的微机械性能研究

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摘要

High-density polyethylene (HDPE) pipes are being used increasingly in many traditional industries as an alternative to metallic pipes. The weakest part of every pipe system is the welded joint. A number of standards are available that define the welding procedure for butt fusion welding of HDPE pipes. However, they define very different values for welding pressure and temperature, for the exact same materials. HDPE PE100 180 mm SDR11 pipes were welded using various standard and nonstandard welding procedures. The ranges of welding parameters chosen were expected to produce detectable changes in the size of the weld regions and their micro-mechanical properties. The micro-mechanical properties across butt fusion welds were characterised using the nanoindentation technique. The indentations were spaced at 100 mu m at the mid-wall position of the welded joint in a grid of 60 columns by 3 rows. The melt zone (MZ) showed a distinct drop in material properties consistently across all welding procedures. Nanoindentation also revealed the presence of a heat-affected zone (HAZ) surrounding the MZ, characterised by a gradual increase in material properties from that of the parent material to the boundary with the MZ. The size of the MZ measured using nanoindentation was correlated with transmission light microscopy images of microtomed slices.
机译:在许多传统工业中,高密度聚乙烯(HDPE)管子作为金属管的替代品越来越多地使用。每个管道系统的最薄弱部分是焊接接头。可提供多种标准,可定义HDPE管道的对接熔焊焊接的焊接过程。然而,它们为完全相同的材料定义了用于焊接压力和温度的非常不同的值。使用各种标准和非标准焊接程序焊接HDPE PE100 180 mm SDR11管道。期待焊接参数的范围预计将产生焊接区域的尺寸和微机械性能的可检测变化。采用纳米狭窄技术表征了对接熔接焊缝的微机械性能。压痕在焊接接头的中壁位置以30柱的焊接接头的中壁位置间隔开3行。熔融区(MZ)在所有焊接程序中始终如一地显示出实质性的材料。纳米indentation还揭示了Mz周围的热影响区(HAZ)的存在,其特征在于,材料特性从母体材料的材料特性逐渐增加到与MZ的边界。使用纳米茚定值测量的Mz的尺寸与微量切片的透射光显微镜图像相关。

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