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煤岩储气层岩石蠕变特性与本构模型研究 被引量:15
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作者 范翔宇 张千贵 +3 位作者 艾巍 夏宏泉 何传亮 李枝林 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2013年第S2期3732-3739,共8页
与一般煤岩相比,裂隙发育是煤岩储气层的主要物理特征,其结构较为软弱,在复杂地应力条件下易产生蠕变破坏,往往造成煤层气开采中钻井的破坏失稳。为探讨储气层煤岩钻井壁的蠕变失稳规律,采用美国RTR–1000型三轴岩石力学测试系统对储气... 与一般煤岩相比,裂隙发育是煤岩储气层的主要物理特征,其结构较为软弱,在复杂地应力条件下易产生蠕变破坏,往往造成煤层气开采中钻井的破坏失稳。为探讨储气层煤岩钻井壁的蠕变失稳规律,采用美国RTR–1000型三轴岩石力学测试系统对储气层煤岩进行系统的单轴压缩试验。利用饱依丁–汤姆逊体与宾汉姆体,建立储气层煤岩蠕变模型,并通过拟合得到蠕变方程中的各个参数。根据储气层煤岩在不同载荷条件下的单轴压缩试验结果对蠕变模型进行验证。结果表明,所提出的储气层煤岩蠕变模型能很好地描述各蠕变阶段的变形特性,尤其是衰减阶段与稳定蠕变阶段,并能很好地反映蠕变的长期强度。同时,将煤岩蠕变特性与钻井方式相结合,提出煤层钻井液的优选思路,对保持煤岩钻井壁稳定、有效保护储集层以及高效安全建井等具有重要的实际意义。 展开更多
关键词 岩石力学 储气层 蠕变物性 本构模型
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Creep properties of bimetal Al/SiC/Cu compositesfabricated via accumulative roll bonding process
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作者 Basem Ali Jasim Dheyaa J +2 位作者 Bansal Pooja Qasim Maytham T Brisset B.J 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3807-3818,共12页
In the present study,microstructural evolution,mechanical and creep properties of Al/SiC/Cu composite stripsfabricated via accumulative roll bonding(ARB)process were studied.The obtained results showed the formation o... In the present study,microstructural evolution,mechanical and creep properties of Al/SiC/Cu composite stripsfabricated via accumulative roll bonding(ARB)process were studied.The obtained results showed the formation of anatomic diffusion layer with thickness of about 17μm at the interface during the ARB under three creep loadingconditions namely 30 MPa at 225℃,35 MPa at 225℃,and 35 MPa at 275℃.An generated intermetallic compoundresulted in a 40%increase of interface thickness near Al.The stress level decreased by 13%at constant temperature withno signi fi cant effect on the interface thickness,and the creep failure time declined by 44%.It was observed that atconstant temperatures,the second slope of the creep curve reached to 39%with increasing stress level,then,it dropped to2%with a little temperature rising.After creep test under 35 MPa at 275℃,the sample displays the presence of 60%Aland 40%Cu,containing brittle Al_(2)Cu intermetallic compound at the interface.Applied temperature and stress had effecton the creep properties,specially increasing the slope of creep curves with higher stresses. 展开更多
关键词 creep property intermetallic compounds accumulative roll bonding MICROSTRUCTURE BIMETAL
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