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CHARACTERIZATION OF X80 GRADE LINEPIPE STEEL COIL WITH 24 MM THICKNESS

机译:厚度为24毫米的X80级管线钢的特性

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High strength and high toughness at low temperatures on heavy wall thickness skelp is required to build high pressure gas transportation pipelines. Detailed mechanical and microstructural characterization was carried on 24mm thick ArcelorMittal X80 coils in order to identify the microstructure control required to reach high toughness as determined by the shear fracture appearance after DWTT testing. Detailed microstructural characterization through thickness reveals that the microstructure gradient described by a systematic increase of the average grain size between surface and middle thickness of the strip and the increment of the volume fraction of M/A (martensite/ retained austenite) are the key microstructural parameters to control in order to ensure the adequate toughness of the material. The obtained high toughness of the coils indicates that the microstructure, controlled by an optimized rolling and cooling practice, is homogeneous through thickness of heavy wall linepipe grades.
机译:在厚壁厚的海带上,在低温下具有高强度和高韧性,是建造高压气体输送管道所必需的。详细的机械和微观结构表征是在24mm厚的ArcelorMittal X80卷材上进行的,目的是确定达到高韧性所需的微观组织控制,这是由DWTT测试后的剪切断裂外观确定的。通过厚度的详细微观结构表征表明,由带材表面和中部厚度之间的平均晶粒尺寸的系统性增加以及M / A(马氏体/残余奥氏体)的体积分数的增加所描述的微观结构梯度是关键的微观结构参数进行控制以确保材料足够的韧性。所获得的线圈高韧性表明,通过优化的轧制和冷却实践控制的微观结构在厚壁管线管等级的厚度范围内是均匀的。

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