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CHARACTERIZATION OF CRYSTALLOGRAPHIC TEXTURE OF ERW WELDED AND HEAT-TREATED API X70 PIPELINE STEEL

机译:ERW焊接和热处理API X70管道钢晶体纹理的特征

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The impact toughness of high frequency electric resistance welded (ERW) line pipe depends on the steel chemical composition, welding procedure, and post-welding heat treatment. Among several microstructural factors that may influence the impact toughness of high frequency electric resistance welded bond line, the crystallographic texture factor is often assumed, but not sufficiently studied. The evolution of texture during high frequency electric resistance welding and simulated post-welding heat treatments (PIVHT) of API X70 pipeline steel was characterized using X-ray diffraction (XRD) and electron backscatter diffraction (EBSD). Results of a texture factor calculated using the 6/26 XRD scans indicated that following the post-weld normalizing treatment, the texture factor of {100} planes for the weld bond line appeared to have increased with the increase in post-weld normalizing temperature. The texture factor results obtained from θ/2θ XRD scans were further verified by using the EBSD on the CVN tested samples in the regions near the fracture path. The XRD texture factor was also used to correlate the evolution of crystallographic texture and Charpy toughness for the PWHT samples. Based on the observations from both XRD and EBSD, the {100} crystallographic orientation of planes in the notched direction correlates well with the cleavage fracture planes of the Charpy impact tested samples. Therefore, the post-weld heat treatment should be designed to minimize any preferred crystallographic texture with {100} planes in the bond line, to promote ductile fracture and improved bond line impact toughness at low temperatures.
机译:高频电阻的冲击韧性焊接(ERW)管线管取决于钢的化学成分,焊接工艺,和焊后热处理。在可以影响高频电阻的冲击韧性焊接粘结线几个微观结构因素,晶体织构因子通常假定,但不充分的研究。使用X射线衍射(XRD)和电子背散射衍射(EBSD)的纹理高频电阻焊接期间API X70管线钢的演变和模拟焊接后热处理(PIVHT)进行了表征。使用6/26 XRD扫描计算的纹理因子的结果表明,以下的焊后正火处理,{100}面的焊接粘结线的纹理因子似乎已经在-焊后正火温度的增加而增加。从获得的纹理因子结果θ/2θXRD扫描通过使用EBSD对CVN在裂缝通路的附近的区域中测试样品进一步验证。 X射线衍射的质地因素也被用来进行焊后热处理样本关联晶体质地和夏比韧性的演变。基于来自两个XRD和EBSD,在缺口方向良好相关与夏比冲击试验的样品的解理断裂面平面的{100}晶向的观察。因此,焊后热处理应被设计以最小化任何优选的晶体学织构与{100}面在接合线,以促进韧性断裂并在低温下改进的粘结线的冲击韧性。

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