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泥质岩微孔结构及其与扩散系数关系 被引量:1
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作者 曲斌 刘玉 +2 位作者 孔艳 曲秀英 张秋 《大庆石油学院学报》 CAS 北大核心 2005年第4期17-19,共3页
应用毛细管理论建立了微孔结构数学模型;对于泥质岩无法通过电模型检测的孔隙弯曲度,分别用不同形式的孔隙弯曲度代替,并研究了不同弯曲度下微孔结构与各参数之间的关系;采用柯静常数替代后的数学模型与扩散系数、渗透率及孔隙度具有很... 应用毛细管理论建立了微孔结构数学模型;对于泥质岩无法通过电模型检测的孔隙弯曲度,分别用不同形式的孔隙弯曲度代替,并研究了不同弯曲度下微孔结构与各参数之间的关系;采用柯静常数替代后的数学模型与扩散系数、渗透率及孔隙度具有很好的相关性.实验表明,该参数能够从微孔结构的角度反映泥质岩盖层封盖的能力. 展开更多
关键词 泥质岩 微孔结构 扩散系数 孔隙弯曲度 实验
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Preparation of precursor for stainless steel foam
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作者 周向阳 李善妮 +1 位作者 李劼 刘业翔 《Journal of Central South University of Technology》 EI 2008年第2期209-213,共5页
The effects of polyurethane sponge pretreatment and slurry compositions on the slurry loading in precursor were discussed,and the performances of stainless steel foams prepared from precursors with different slurry lo... The effects of polyurethane sponge pretreatment and slurry compositions on the slurry loading in precursor were discussed,and the performances of stainless steel foams prepared from precursors with different slurry loadings and different particle sizes of the stainless steel powder were also investigated.The experimental results show that the pretreatment of sponge with alkaline solution is effective to reduce the jam of cells in precursor and ensure the slurry to uniformly distribute in sponge,and it is also an effective method for increasing the slurry loading in precursor;the mass fraction of additive A and solid content in slurry greatly affect the slurry loading in precursor,when they are kept in 9%-13% and 52%-75%,respectively,the stainless steel foam may hold excellent 3D open-cell network structure and uniform muscles;the particle size of the stainless steel powder and the slurry loading in precursor have great effects on the bending strength,apparent density and open porosity of stainless steel foam;when the stainless steel powder with particle size of 44 μm and slurry loading of 0.5 g/cm3 in precursor are used,a stainless steel foam can be obtained,which has open porosity of 81.2%,bending strength of about 51.76 MPa and apparent density of about 1.0 g/cm3. 展开更多
关键词 stainless steel foam PRECURSOR PREPARATION open porosity bending strength apparent density
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