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1)  allylic zinc
烯丙基锌
1.
Allylic bromide reacted with zinc power at 0~10 ℃ in THF to give the allylic zinc which reacted with diaryl diselenides in THF at room temperature to afford 3-arylselenopropenes in 63%~75% yields .
烯丙基溴与锌粉在 0~ 10℃下THF中反应生成烯丙基锌 ,后者与二芳基二硒醚在THF中、室温下反应生成烯丙基芳基硒醚 ,产率 63 %~ 75 % 。
2)  ZDMA
甲基丙烯酸锌
1.
Reinforcement of SBR by HNTs/ZDMA blend
埃洛石纳米管/甲基丙烯酸锌并用补强SBR的研究
2.
The reinforcement of HNBR by in situ prepared ZDMA through neutral reaction of ZnO with MAA was investigated.
对氧化锌和甲基丙烯酸(MAA)发生中和反应原位生成甲基丙烯酸锌(ZDMA)补强氢化丁腈橡胶(HNBR)进行研究。
3.
The effects of the addition levels of curing agent DCP and zinc methylacrylate(ZDMA) and the curing time on the physical properties of ZDMA/NBR composite were investigated.
以甲基丙烯酸锌(ZDMA)为补强剂,研究硫化剂DCP用量、ZDMA用量和硫化时间对ZDMA/NR复合材料物理性能的影响。
3)  zinc dimethacrylate
二甲基丙烯酸锌
4)  PZDMA
聚甲基丙烯酸锌
1.
The development process and reinforcing mechanism of the nanodispersion phase structure in the insitu polymerized nanoPZDMA/POE were investigated by microscopy and thermogravimetric analysis and the dependence of the stressstrain behavior and tensile strength of PZDMA/POE composite on the temperature was also studied.
利用显微镜观察和热分析方法研究了原位聚合纳米聚甲基丙烯酸锌(PZDMA)补强乙烯 α辛烯共聚物(POE)材料(简称PZDMA补强材料)的纳米分散相结构的生成历程和补强机理,探讨了PZDMA补强材料的应力 应变特性及拉伸强度与温度的关系。
5)  zinc methacrylate
甲基丙烯酸锌
1.
Application of zinc methacrylate in NBR;
甲基丙烯酸锌在NBR中的应用
2.
High performance NBR/zinc methacrylate[(Zn(MAA)2)]alloy was produced by blending NBR with Zn(MAA)2 by using in- situ reaction.
将自制的甲基丙烯酸锌[(Zn(MAA)2] 与丁腈橡胶(NBR) 共混,采用就地反应法制得了高性能的NBR/Zn(MAA)2 合金。
3.
The effect of unsaturated carboxylate zinc methacrylate(MAA-Zn)on the properties of NBR/lignin(100/100, mass ratio)vulcanizate was studied.
研究了α-甲基丙烯酸锌(MAA一Zn)对NBR/木质素(100/100,质量比)硫化胶性能的影响。
6)  zinc (meth)acrylate
(甲基)丙烯酸锌盐
补充资料:烯丙基异丙基丙二酸二乙酯
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