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Role of crystallographic texture on the improvement of hydrogen-induced crack resistance in API 5L X70 pipeline steel

机译:API 5L X70管线钢的结晶织构对提高抗氢致裂纹性能的作用

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The purpose of this work was to improve the resistance of hydrogen-induced cracking in API 5L X70 steel by engineering the crystallographic texture and grain boundary distributions via different rolling temperatures. Hydrogen-induced cracking and electrochemical hydrogen charging tests were carried out in two different conditions: commercially produced and isothermally rolled at 850 degrees C in laboratory. The results showed that the development of dominant {011} grains parallel to the normal direction, and a small number of {001}//ND grains obtained by isothermal rolling at 850 degrees C, increased the hydrogen-induced crack resistance; while the hot rolled sample with sharp {001}//ND textures was highly susceptible to cracking. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项工作的目的是通过设计不同轧制温度下的晶体织构和晶界分布来提高API 5L X70钢中氢致开裂的抵抗力。在两个不同的条件下进行了氢诱导的裂化和电化学氢填充测试:商业生产和在实验室中在850摄氏度下进行等温轧制。结果表明,在平行于法线方向的情况下,优势{011}晶粒的发展,以及通过在850℃下等温轧制获得的少量{001} // ND晶粒,提高了抗氢裂纹性。而具有清晰的{001} // ND织构的热轧样品极易破裂。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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