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金属橡胶材料孔隙结构特性参数
国亚东1,赵辉2,付翠亭1,刘国荣1,周彬1
(1.中国石油大学化学工程学院,山东青岛 266580;2.中国石油克拉玛依石化公司设计所,新疆克拉玛依 834000)
摘要:
通过对金属橡胶材料微观孔隙结构进行合理的简化,以毛细管模型为基础,根据相关的流体力学公式,采用理论分析与实验验证相结合的方法,对金属橡胶材料的孔隙度、比表面积、平均孔径及最大孔径等参数进行研究,推导出其相应的理论计算公式,并通过压汞实验法对理论计算公式进行验证。结果表明:金属橡胶比表面积仅与其孔隙度和丝线直径有关,比表面积随着孔隙度增加线性降低,且与丝线直径成反比关系。平均孔径是孔隙度和丝线直径的函数,随着孔隙度增加,平均孔径增大,丝线直径与平均孔径呈线性递增关系。金属橡胶最大孔径随着孔隙度增大呈非线性增大,丝线直径与最大孔径呈线性递增关系,其最大孔径不受其材料厚度影响。
关键词:  金属橡胶  孔隙结构  孔隙度  比表面积  平均孔径  最大孔径
DOI:10.3969/j.issn.1673-5005.2013.04.027
分类号::TH 137.85
基金项目:国家自然科学基金项目(61103056);中央高校基本科研业务费专项(27R1204023A);山东省博士后基金项目(201002039)
Pore structure characteristic parameters of metal rubber material
GUO Ya-dong1, ZHAO Hui2, FU Cui-ting1, LIU Guo-rong1, ZHOU Bin1
(1.College of Chemical Engineering in China University of Petroleum, Qingdao 266580, China;2.PetroChina Karamay Petrochemical Company Design Institute, Karamay 834000, China)
Abstract:
According to a reasonable simplification of microscopic pore structure, the metal rubber pore structure parameters including material porosity, specific surface area, average pore diameter and the maximum pore size were systematically studied by combining theoretical analysis with experimental verification based on capillary model and relevant hydrodynamic equations. The theoretical formulas of the parameters were deduced and verified by mercury experiments. The results indicate that the specific surface area of metal rubber relates to porosity and thread diameter. It linearly decreases with the porosity increasing, and has an inverse relationship with thread diameter. The average pore size is a function of porosity and thread diameter. It increases with the porosity increasing, and has an increasing linear relationship with thread diameter. The maximum pore size nonlinearly increases with the porosity increasing and also linearly increases with the thread diameter increasing, but has nothing to do with the thickness of the material.
Key words:  metal rubber  pore structure  porosity  specific surface area  average pore size  maximum pore size
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