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Research on Brittle Fracture of X70/X80 Line Pipes with Big Wall Thickness at Low Temperature

机译:低温大壁厚X70 / X80线管脆性骨折研究

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Based on research of the low temperature fracture property of high grade steel pipe, it shows that X70, X80 steel pipe and X80 tee have high Charpy impact toughness. However, as the wall thickness increases, the shear area of DWTT decreases rapidly, and the thickness effect is significant. The research results show that the original wall thickness impact specimen fracture of steel pipe may not be ductile, for design temperature less than -30°C and wall thickness greater than 40mm. The brittle fracture was caused by structural factors. The Charpy impact energy, which just reflects the toughness of materials, does not show the fracture appearance as it would occur in service, because of the different specimen geometry and high rate of impact. The brittle fracture can occur at low temperature and low stress even with a high Charpy impact energy, the conditions of brittle fracture should be established under combination of the wall thickness, temperature and other factors. In this work, it is clarified that measurement of the fracture toughness under service temperature should be used to control low stress brittle fracture, besides the Charpy impact energy to ensure the material toughness.
机译:基于高档钢管低温骨折性能的研究,表明X70,X80钢管和X80 TEE具有高夏比冲击韧性。然而,随着壁厚增加,DWTT的剪切区域迅速降低,厚度效果显着。研究结果表明,钢管原有壁厚冲击试样骨折可能不是延展岩,用于设计温度小于-30°C和壁厚大于40mm。脆性骨折是由结构因素引起的。夏比冲击能量,即反映材料的韧性,由于不同的试样几何形状和撞击率高,因此不会显示出骨折外观。即使具有高夏比冲击能量,脆性骨折可能在低温和低应力下发生,脆性骨折的条件应在壁厚,温度和其他因素的组合中建立。在这项工作中,除了夏比冲击能量之外,应使用在使用温度下的断裂韧性的测量来控制低应力脆性骨折,以确保材料韧性。

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