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高韧性微膨胀道路水泥研究
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作者 陈胡星 《今日科技》 2003年第5期58-58,共1页
关键词 道路材料 韧性微膨胀水泥 钙矾石 材料强度
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川中高压气井钻完井期间环空带压原因分析及应对固井技术 被引量:13
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作者 刘洋 鲜明 冯予淇 《钻井液与完井液》 CAS 北大核心 2018年第1期77-82,共6页
川中高压气井纵向上存在多产层、多压力系统,须家河之上浅层气及嘉陵江组、飞仙关组等高压气层显示活跃。区块整体固井质量较好,但钻完井期间有12口井B、C环空异常带压。通过固井情况、气源、带压时间分析,并采用水泥环完整性评价装置... 川中高压气井纵向上存在多产层、多压力系统,须家河之上浅层气及嘉陵江组、飞仙关组等高压气层显示活跃。区块整体固井质量较好,但钻完井期间有12口井B、C环空异常带压。通过固井情况、气源、带压时间分析,并采用水泥环完整性评价装置及软件分析后续工况对水泥环密封完整性的影响,推断常规水泥石力学性能不适应川中高压气井层间封隔要求,固井后管柱试压、钻井液密度降低易导致水泥环完整性受损,是C环空带压的重要原因。φ177.8 mm尾管固井质量差,后续工况进一步削弱固井胶结质量是B环空带压的重要原因。基于此,针对性地优化了韧性微膨胀水泥浆体系,形成了"以快治气"防窜固井工艺,推广应用封隔式尾管悬挂器。现场应用12口井,φ177.8 mm尾管固井质量声幅评价段平均合格率由52.98%提高至73.18%,较好地解决了钻完井期间环空带压问题。 展开更多
关键词 环空带压 环隙 韧性微膨胀 大温差 封隔器
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Effects of submicron-MgO and nano-MgO on the expansion and microscopic properties of high-performance concrete 被引量:2
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作者 TIAN Chang-jin WANG You-zhi +1 位作者 QIU Kai YANG Qi-lin 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第9期3186-3200,共15页
MgO-series expansive agents can effectively compensate for the shrinkage and deformation of concrete structures.However,few experimental studies have been conducted on MgO expansive agents,particularly concerning the ... MgO-series expansive agents can effectively compensate for the shrinkage and deformation of concrete structures.However,few experimental studies have been conducted on MgO expansive agents,particularly concerning the difference between and effects of submicron-MgO and nano-MgO in high-performance concrete(HPC)with a low water-cement ratio,thereby limiting their application in practical engineering.To clarify the expansion effect and expansion mechanism of MgO expansive agents in HPC,the effects of submicron-MgO and nano-MgO on the strength,toughness,and expansion characteristics of HPC were examined.The test results showed that submicron-MgO and nano-MgO continued to hydrate in the cement environment to produce Mg(OH)_(2),thus improving the structural compactness and structural strength of HPC.Nano-MgO concrete was found to have more stable mechanical properties and better structural deformability than submicron-MgO concrete.This study provides effective data support and theoretical reference concerning the hydration expansion mechanisms and engineering applications of nano-expanded materials. 展开更多
关键词 submicron-MgO nano-MgO high-performance concrete STRENGTH TOUGHNESS expansion characteristics microstructure
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