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The effect of microstructural change on fracture behavior in heat-affected zone of API 5L X65 pipeline steel

机译:微观结构变化对API 5L X65管道钢热影响区断裂行为的影响

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Reliability evaluation of welded structures by mechanical testing of weld heat-affected zones (HAZs) has become general practice throughout th world. HAZs of steel welded joints show a gradient of microstructure from the fusion line to the nunaffected base metal. This study is concerned with a correlation between the microstructural change and the fracture characteristics in HAZs of both seam and girth welds of API 5L X65 pipeline steel, which is generally used for natural gas transmission pipelines in Korea. The focus in present study was the investigation of macroscopic fracture behavior of the various regions within HAZ. Changes in microstructure and impact toughness were observed using synthetic HAZ specimens as well as actual HAZ specimens. To evaluate the macroscopic toughness of actual HAZ, Chary V-notch impact test was performed.
机译:通过焊接热影响区域(HAZS)的机械测试对焊接结构的可靠性评估已成为整个世界的一般实践。钢焊接接头的HAZ显示从融合线到非熔化基础金属的微观结构的梯度。本研究涉及API 5L X65管道钢的两个接缝和周长焊缝中的微观结构变化和裂缝特性之间的相关性,这通常用于韩国的天然气传输管道。本研究的重点是调查HAZ内各个区域的宏观断裂行为。使用合成HAZ样品以及实际HAZ样本观察微观结构和冲击韧性的变化。为了评估实际HAZ的宏观韧性,进行CHARY V-NOTCH冲击试验。

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