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1)  suspensoid cross-link method
悬浮交联法
1.
The Hippiphae Rimniodesc(HR) mixture microcapsule was manufactured through suspensoid cross-link method.
采用悬浮交联法制备沙棘混合粉的微胶囊。
2)  inverse suspension polymerization method
反相悬浮交联法
1.
Methods An inverse suspension polymerization method was utilized to synthesize crosslinked starch microspheres, factors influencing emulsification and crosslinking reaction were studied.
方法使用反相悬浮交联法制备淀粉微球,对乳化过程中影响粒径分布的单因素进行考察;在交联过程中,以吸附量为指标,采用正交实验,确定最佳反应条件;用SSX-550扫描电镜、激光衍射粒度分析仪、傅立叶红外色谱仪、差示扫描量热器、热重分析仪等对微球的结构及外观进行考察和表征。
3)  reversed suspension crosslinking reaction
反相悬浮交联反应
4)  counter suspension crosslinking polymerization
逆相悬浮交联聚合
1.
The neutral starch microspheres(ESM) were synthesized from soluble starch by the counter suspension crosslinking polymerization with epichlorohydrin as the crosslinking agent.
本文先以可溶性淀粉为原料,以表氯醇为交联剂,采用逆相悬浮交联聚合法制得中性淀粉微球,然后用Na3P3O9作交联剂进行第二次交联和阴离子化,制得阴离子型淀粉微球。
2.
The neutral starch microspheres(ESM)were synthesized from soluble starch by counter suspension crosslinking polymerization with epichlorohydrin as the crosslinking agent,span 60 as the emulsifying agent and the mixture of toluene and castor oil as the organic phase.
以可溶性淀粉为原料,环氧氯丙烷为交联剂,Span 60为乳化剂,甲苯和蓖麻油的混合物为油相,采用逆相悬浮交联聚合法合成淀粉微球。
5)  floating zone-electrotransport joint method
悬浮区熔电迁移联合法
6)  aqueous suspension
水悬浮法
1.
In this article, the process of snitched continuous glass fiber mat reinforced PVC composites by aqueous suspension is studied.
介绍了水悬浮法制备连续玻璃纤维针刺毡增强PVC复合材料(PVC/GMT)的成型工艺。
2.
The compatibility of macromolecular binder in suspension solution and PVC resin in glass fiber/PVC composites prepared by aqueous suspension is studied by using DMA,DSC.
采用DMA、DSC、SEM等手段研究了水悬浮法制备的GF (玻璃纤维 ) /PVC (聚氯乙烯树脂 )复合材料中PVC与悬浮液高分子粘结剂的相容性 ,并探讨了其对复合材料性能的影响。
3.
In consideratioin of technical properties of GF/PVC composite materials prepared with aqueous suspension, a model interfacial design is carried out on fiber/matrix interfacial structures, and serial materials are prepared according to the design.
根据水悬浮法制备GF/PVC复合材料工艺的特点 ,对材料中的纤维 /基体的界面结构进行了模型界面设计 ,并根据设计方案制备系列材料 ,考察在材料制备中界面形成的机理及界面层结构与材料性能的关系。
补充资料:微悬浮法聚氯乙烯
分子式:
CAS号:

性质:指用微悬浮法所制得的一种聚氯乙烯树脂。树脂颗粒分布比传统乳液法聚氯乙烯宽,而且平均粒径较大,可用以配制低黏度糊。此法工艺特点是氯乙烯单体借助于乳化剂和高剪切机械力(常用胶体磨,高速泵,均化泵)的作用在水中分散成如1μm左右液滴,采用油溶性引发剂引发聚合。它兼具乳液法和悬浮法的特点,胶乳粒径大小可调,生产稳定。用于配制聚氯乙烯糊,进行各种糊加工成型。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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