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分层高分子介质中的声吸收 被引量:20
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作者 朱金华 刘巨斌 +1 位作者 姚树人 王源升 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2001年第2期34-38,共5页
初步建立了分层高分子材料对水声吸收的数学模型 ,测试了分层高分子材料的水声吸收性能并与数学模型的计算结果进行了比较 ,发现应用该模型的计算结果与实测结果比较吻合 。
关键词 分层高分子 声吸收 数字模型 水声吸收
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Enhanced performances of polypropylene membranes by molecular layer deposition of polyimide 被引量:1
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作者 Sen Xiong Ting Sheng +3 位作者 Liang Kong Zhaoxiang Zhong Jun Huang Yong Wang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第7期843-849,共7页
Molecular layer deposition (MLD) for the deposition of polyimide (PI) at low temperature of 110 ℃ has been firstly introduced into the field of membrane separation. With the optimized MLD deposition parameters, s... Molecular layer deposition (MLD) for the deposition of polyimide (PI) at low temperature of 110 ℃ has been firstly introduced into the field of membrane separation. With the optimized MLD deposition parameters, such low de- position temperature has successfully expanded the application of MLD for the surface modification of polymeric materials. Globular PI particulates grow on both the free surfaces as well as the pore walls of the polypropylene (PP) membranes as isolated islands during progressive precursor exposures. The PI-deposited PP membranes ex- hibit synergistically improved performances in various aspects. Evidently improved surface hydrophilicity and per- meation performance (30%) have been achieved v/a the MLD deposition of polyimide films. The overall separation efficiency maintained higher than 85% even after 250 cycles of MLD deposition. More importantly, the thermal sta- bility has been improved and the integrity of the porous structure for PI-deposited PP membranes has been well preserved even after harsh treatment, which ensures its potential application in industries. 展开更多
关键词 Molecular layer depositionPolyimidePolypropyleneMembranesModification
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Material selection of polymeric composite automotive bumper beam using analytical hierarchy process 被引量:3
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作者 A.HAMBALI S.M.SAPUAN +1 位作者 N.ISMAIL Y.NUKMAN 《Journal of Central South University》 SCIE EI CAS 2010年第2期244-256,共13页
Selection of materials,as an area of design research,has been under considerable interest over the years.Materials selection is one of the most important activities in the product development process.Inappropriate dec... Selection of materials,as an area of design research,has been under considerable interest over the years.Materials selection is one of the most important activities in the product development process.Inappropriate decision of materials can cause the product to be reproduced or remanufactured.To avoid this circumstance,one of the useful tools that can be employed in determining the most appropriate material is analytical hierarchy process(AHP).To illustrate the application of AHP,six different types of composite materials were considered.The most appropriate one for suitability of use in manufacturing automotive bumper beam was determined by considering eight main selection factors and 12 sub-factors.The AHP analysis reveals that the glass fibre epoxy is the most appropriate material because it has the highest value(25.7%,mass fraction) compared with other materials.The final material is obtained by performing six different scenarios of the sensitivity analysis.It is proved that glass fibre epoxy is the most optimum decision. 展开更多
关键词 COMPOSITE polymer matrix bumper beam analytical hierarchy process
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Controlled Release of the Indomethacin Microencapsulation Based on Layer-by-layer Assembly by Polyelectrolyte Multilayers
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作者 CHEN You-fang LIN Xian-fu 《Chinese Journal of Biomedical Engineering(English Edition)》 2007年第1期8-13,共6页
Indomethacin has been encapsulated with polyelectrolyte multilayers for controlled release. Gelatin and alginate were alternatively deposited on indomethacin microcrystals. The released amount of indomethacin from coa... Indomethacin has been encapsulated with polyelectrolyte multilayers for controlled release. Gelatin and alginate were alternatively deposited on indomethacin microcrystals. The released amount of indomethacin from coated microcrystals in pH6. 8 phosphate buffer solution (PBS) was measured with a UV spectrophometer. The polyelectrolyte multilayer capsule thickness was proved to control the release rate. The effects of osmotic pressure existed during the release process of indomethacin from microcapsules coated by (gelatin/alginate) 4. 展开更多
关键词 INDOMETHACIN ENCAPSULATED Controlled release SELF-ASSEMBLY POLYELECTROLYTE
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