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1)  brominated butyl rubber
溴化丁基橡胶
1.
Determination of bromine content of brominated butyl rubber;
溴化丁基橡胶溴含量的测定
2.
Preparation and structure characterization of brominated butyl rubber;
溴化丁基橡胶的制备与结构表征
3.
Properties of brominated butyl rubber/montmorillonite composites prepared with in-situ organic modification;
用原位有机改性法制备的溴化丁基橡胶/蒙脱土复合材料的性能
2)  BIIR
溴化丁基橡胶
1.
BIIR/MMT Composites Prepared with In-situ Organic Modification Method and Study on Its Properties;
原位有机改性制备溴化丁基橡胶/蒙脱土复合材料及其性能研究
2.
The properties of brominated isobutylene-isoprene rubber(BIIR) reinforced with silica were studied.
研究了白炭黑补强溴化丁基橡胶(BIIR)的性能及特点。
3.
The reinforcement of hydroxymethylated lignin on BIIR was investigated.
研究了羟甲基化木质素对溴化丁基橡胶 (BIIR)的补强作用。
3)  bromobutyl rubber
溴化丁基橡胶
1.
Crosslinked vibration-absorbing bamboo powder/styrene-isoprene block copolymer/bromobutyl rubber composites
交联型竹粉/苯乙烯-异戊二烯嵌段共聚物/溴化丁基橡胶吸振复合材料
2.
The purpose and significance of blending bromobutyl rubber with common butyl rubber is discussed in the paper.
文中对溴化丁基橡胶与普通丁基橡胶并用的目的和意义进行了探讨 ,对不同比例并用胶料的硫化特性、物理性能、化学性能进行了测试和分析。
3.
This article studies one kind of new damping compound material, It is consisted of bromobutyl rubber, piezoelectric ceramic powder (PZT) and acetylene black.
本文研究了一种新型的阻尼复合材料,它是由溴化丁基橡胶、压电陶瓷粉(PZT)和乙炔碳黑混合而成。
4)  brominated butyl rubbe
溴化丁基橡胶
1.
Synthesis and characterization of branched brominated butyl rubber;
具有支化结构溴化丁基橡胶的合成及表征
2.
Star-branched brominated butyl rubber(BSBBR) was synthesized by brominated butyl rubber reacted with Li-capped PSt-PIp copolymer or Li-capped PIp, which was prepared by anion polymerization method.
研究了星形支化溴化丁基橡胶的合成方法,采用活性负离子聚合法制备端基锂聚苯乙烯-异戊二烯共聚物、端基锂聚异戊二烯聚合物并与溴化丁基橡胶胶液反应合成出星形支化卤化丁基橡胶,以期提高丁基橡胶的某些性能,拓宽丁基橡胶的应用领域。
5)  1,3-Butadiene, 2-methyl-, polymer with 2-methyl-1-propene, brominated
溴丁基橡胶
6)  branched brominated butyl rubber
支化溴化丁基橡胶
1.
which were compared with unbranched brominated butyl rubber.
采用三台联用(LS+VIS+RI)、DSC、氧弹燃烧等方法对合成产物进行表征,并将产物硫化测定其硬度、拉伸应力、比重等性能,与非支化溴化丁基橡胶之性能进行对比。
补充资料:溴化丁基橡胶
分子式:
CAS号:

性质:将丁基橡胶进行溴化即制得溴化丁基橡胶,含溴量约2%。溴的加成反应绝大部分在异戊二烯链节的α-双键上。溴化丁基橡胶比氯化丁基橡胶有更好的黏着力、更好的耐热性,更适用于无内胎高性能子午线轮胎的内密封层。

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