• Synthetic rubber latex is made by emulsion polymerization.

    合成橡胶胶乳由乳液聚合制成。

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  • Research the starch adhesive modification through emulsion polymerization.

    通过乳液聚合对淀粉胶改性研究。

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  • The self-crosslinking acrylate printing adhesive was synthesized by emulsion polymerization.

    采用乳液聚合法合成自交联型丙烯酸酯类印花粘合剂。

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  • The polyacrylate nano-particle has been prepared by use of emulsion polymerization technology.

    通过乳液聚合,制备了聚丙烯酸酯纳米粒子。

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  • Use emulsion polymerization to produce soluble and conductive polyaniline (PAn) with DBSA doped.

    采用乳液聚合方法,合成有机大分子酸DBSA掺杂的可溶导电聚苯胺。

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  • Application field for products prepared by inverse emulsion polymerization was presented at last.

    最后简要介绍反相乳液聚合产品的应用领域。

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  • The possible polymerization mechanism causing anion emulsion polymerization by this system is raised.

    并提出了该体系进行阴离子乳液聚合反应可能的反应历程。

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  • The emulsifier-f ree emulsion polymerization of styrene in the presence of 18-crown-6 has been studied.

    本文研究了在苯乙烯不外加乳化剂的乳液聚合体系中,加入王冠醚18-冠-6对聚合反应及其产物的影响。

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  • The influence of synthetic factors on the emulsion polymerization and the complex latex size were discussed.

    探讨了各种合成因素对乳液聚合反应的影响,并对复合胶乳粒径影响因素进行了考察。

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  • The monodisperse micron-size polystyrene particles were prepared by emulsifier-free emulsion polymerization.

    采用无皂乳液聚合法制备了具有单分散性的微米级聚苯乙烯微球。

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  • The silicone-acrylate copolymer was synthesized using siloxane and ethyl acrylate by emulsion polymerization.

    以硅氧烷、丙烯酸乙酯为原料,经乳液聚合制备了有机硅-丙烯酸酯共聚物。

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  • The nucleation mechanisms and colloid stability are the key aspects of emulsifier free emulsion polymerization.

    成核机理和稳定性是无皂乳液聚合的关键。

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  • The results indicate that the soapless emulsion polymerization of 4VP/BA followed homogeneous nucleation mechanism.

    结果表明:4VP/BA的无皂乳液聚合遵循均相成核机理。

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  • The microgels can be prepared by solution polymerization, precipitation polymerization or emulsion polymerization process.

    通过溶液聚合、沉淀聚合和乳液聚合等方法制备微凝胶。

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  • METHODS: the ternary fluorescent copolymer microspheres were synthesized by means of emulsifier-free emulsion polymerization.

    方法:采用无皂乳液聚合法合成三元共聚荧光微球。

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  • Emulsifier-free emulsion polymerization can be used to prepare monodisperse micro-spheres with and without functional groups.

    无皂乳液聚合可用于制备单分散有或无功能性微球。

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  • Kinds and choice of initiator were summarized up, and the effect of initiator on emulsion polymerization was analyzed in paper.

    综述了引发剂种类和引发剂的选择,并对引发剂对乳液聚合的影响因素作了分析。

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  • Produced by emulsion polymerization in a similar way to styrene-butadiene rubber processes, yielding both "hot" and "cold" rubbers.

    生产方法是乳液聚合,和苯乙烯-丁二烯橡胶的生产过程相似,得到“热”橡胶和“冷”橡胶。

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  • A kind of rigid polymer microsphere with core shell structure was synthesized by multi step composite emulsion polymerization technique.

    通过多步复合乳液聚合方法合成了一种具有核壳结构的刚性聚合物微球。

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  • A room temperature film formation and low VOC acrylic finishing coatings has been prepared by core-shell structure emulsion polymerization.

    用核-壳乳液聚合方法制备了室温成膜低voc丙烯酸类上光涂料。

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  • The method of emulsion polymerization was used to synthesize polyvinyl acetate resin by adding hard monomer_methyl methacrylate to modify it.

    本论文采用乳液聚合的方法合成了聚醋酸乙烯树脂,并通过加入硬单体—甲基丙烯酸甲酯对其进行改性。

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  • The aim of this paper is to build the steady state simulation platform of the low temperature styrene/butadiene emulsion polymerization unit.

    本文的目的是建立起低温乳聚丁苯橡胶聚合单元的稳态模拟平台,并在此基础上对生产装置进行优化计算。

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  • A novel method of pervaporation separation polysiloxane membrane prepared via concentrated emulsion polymerization was proposed in this paper.

    提出了一种以浓乳液聚合直接浇注制备新型有机硅类渗透蒸发分离膜的新方法。

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  • A super absorbent resin, which is self-cross-linking polyacrylic acid sodium salt, was synthesized by means of counter emulsion polymerization.

    采用逆相乳液聚合法合成自交联型聚丙烯酸钠高吸水性树脂。

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  • Because of introduced cosurfactants, which are important parts in the systems, miniemulsion polymerization is a new kind of emulsion polymerization.

    细乳液聚合由于在体系中引进了助乳化剂,是一种新型的乳液聚合,助乳化剂是细乳液聚合中的重要组成部分。

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  • The emulsion polymerization also was influenced by the dosage of emulsifier and initiator, reaction temperature and reaction time and agitating speed.

    乳化剂、引发剂用量及反应温度、反应时间和搅拌速度对乳液聚合反应有重要影响。

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  • As a result, there were great differences between ATRP and conventional emulsion polymerization, especially the nucleation mechanism and the kinetics.

    结果表明原子转移自由基乳液聚合和常规乳液聚合存在着很大的差异,特别在成核机理和动力学方面。

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  • In this paper, polystyrene microspheres were synthesized by emulsion polymerization method. The preparation conditions of PS microspheres were discussed.

    采用乳液聚合法制备了聚苯乙烯(PS)微球,对制备条件进行了研究。

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  • In this paper, polystyrene microspheres were synthesized by emulsion polymerization method. The preparation conditions of PS microspheres were discussed.

    采用乳液聚合法制备了聚苯乙烯(PS)微球,对制备条件进行了研究。

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