1) Co-colloid
共胶
2) blend
[英][blend] [美][blɛnd]
共混胶
1.
Study on Irradiation Modification of Plasticzied PVC/NBR Blend;
增塑PVC/NBR共混胶的辐照改性
2.
The physical-mechanical properties and viscoelastic properties of 20 phr 3,4-IR blends of SBR or NR were studied.
6℃]与SBR或NR质量比为20/80组成的共混胶的力学性能和粘弹性能。
3.
The formula,technology and main properties of EVA/NBR/NR blend in making oil resistant microcellular sole have been introduced.
介绍EVA/NBR/NR三元共混胶在耐油环境中使用的微孔鞋底的配方、工艺及主要性能。
3) copolymerization capsules
共聚胶囊
1.
double bonds,meanwhile the compatibility with active monomers was strengthened and copolymerization capsules were formed thereon when copolymerized with active monomers.
经含有不饱和双键的硅烷偶联剂处理后,纳米SiO2表面的极性有所减弱,同时与活性单体的相容性得到了增强,再与活性单体进行共聚反应,在其表面形成共聚胶囊。
4) blend latex
共混胶乳
1.
It was found that the mixing process and stability of blend latex were strongly affected by polymeric polarity and amount of emulsifer in original latex under the present experiment conditions.
对乳液最低成膜温度(MFT)、胶膜硬度及耐水性的研究表明:质量比为11的PBA/PMMA共混胶膜和P(BA-MMA)共聚胶膜的连续相组成相近;而对于同样组成的PBA/PSt共混胶膜,分散在连续相中的PSt所占比例明显高于P(BA-St)共聚胶膜;PBA/PSt共混胶乳的使用性能不仅取决于其组成,还取决于成膜温度和使用温
5) co gelling
共胶法
1.
This paper reviewed the features of hydrocracking catalysts preparation technologies via co gelling method, as well as industrial production and application of the catalysts.
本文概述了共胶法系列加氢裂化催化剂生产工艺的技术特点 ,介绍了共胶法系列加氢裂化催化剂工业生产和应用情况。
6) co-gel
共凝胶体
1.
Viscoelasticity of co-gel varied from ratio of two macromolecular and salt concentration.
以明胶与卡拉胶为模式体系,研究其共凝胶体的力学特性,从而探讨其交互作用的机理。
补充资料:丁腈/聚氯乙烯共混胶
分子式:
CAS号:
性质: 以丁腈橡胶为主,加入30%~50%的聚氯乙烯树脂共混制得的。共混工艺采用两种胶乳,按要求比例混合后再进行凝聚、洗涤、干燥、热处理等工序。与丁腈橡胶相比,丁腈/聚氯乙烯共混胶提高了耐臭氧和耐天候老化性能,改善了拉伸强度、定伸应力、抗撕裂性、耐热性和耐燃性,提高了耐油、耐燃油和耐化学药品性能,改善了压出、压延加工性能,还提高了储存稳定性,并可任意着色。丁腈/聚氯乙烯共混胶用于电线电缆护套、油管外层胶、皮辊和皮圈、汽车模压零件、微孔海绵、发泡绝热层、安全靴等。
CAS号:
性质: 以丁腈橡胶为主,加入30%~50%的聚氯乙烯树脂共混制得的。共混工艺采用两种胶乳,按要求比例混合后再进行凝聚、洗涤、干燥、热处理等工序。与丁腈橡胶相比,丁腈/聚氯乙烯共混胶提高了耐臭氧和耐天候老化性能,改善了拉伸强度、定伸应力、抗撕裂性、耐热性和耐燃性,提高了耐油、耐燃油和耐化学药品性能,改善了压出、压延加工性能,还提高了储存稳定性,并可任意着色。丁腈/聚氯乙烯共混胶用于电线电缆护套、油管外层胶、皮辊和皮圈、汽车模压零件、微孔海绵、发泡绝热层、安全靴等。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条