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Reduction of Volatile Organic Compound Emission Use of Alkoxy-modified Silsesquioxane for Compounding Silica-filled Rubbers

机译:烷氧基改性硅氧烷的挥发性有机化合物排放使用用于复合二氧化硅填充橡胶的挥发性有机化合物排放使用

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A class of alkoxy-modified silsesquioxane (AMS) containing less than 5 weight % of latent alcohol that can be used for compounding silica-filled rubbers is described. The AMS derived from octyl-triethoxysilane (OTES) behaves as good shielding agent in silica-filled rubber to significantly reduce the compound Mooney viscosity and filler flocculation. The co-AMS prepared from OTES and 3-mercaptopropyl-trimethoxysilane yielded an effective shielding agent and coupling agent for reinforcing the silica-filled vulcanizates. The alcohol released as volatile organic compounds (VOC) are quantified during compounding and processing along with the compound properties of silica-filled vulcanizates containing various silicon compounds such as bis-(triethoxysilyl propyl) disulfide (TESPD), a polyhedral organo silsesquioxanes (POSS), OTES, AMS, or co-AMS. Dynamic mechanical properties such as dependences of hysteresis on temperature (HTD) and storage modulus on strain (MSD) are discussed. Stronger HTD and weaker MSD were found in stocks containing co-AMS or a combination of AMS and a coupling agent when compared to that with TESPD. This may benefit a tire compound with lower rolling resistance, more stable handling performance as well as better wet traction. More importantly, the VOC released during the manufacture of rubber articles are significantly reduced in stocks containing AMS (or co-AMS) when compared to those with a silane.
机译:描述了一类含有少于5重量%潜醇的烷氧基改性的硅氧烷(AMS),其可用于复合二氧化硅填充的橡胶。衍生自辛基 - 三乙氧基硅烷(OTES)的AMS在二氧化硅填充的橡胶中表现为良好的屏蔽剂,以显着降低化合物门尼粘度和填充絮凝。由OTES和3-巯基丙基 - 三甲氧基硅烷制备的CO-AM产生有效的屏蔽剂和偶联剂,用于增强二氧化硅填充的硫化酸盐。作为挥发性有机化合物(VOC)释放的醇在复合和加工期间定量,以及含有各种硅化合物的二氧化硅填充硫化胶的化合物性质,例如双 - (三乙氧基甲硅烷基)二硫化物(Tespd),一种多面体有机皂硅氧烷(poss) ,otes,ams或co-ams。讨论了动态机械性能,例如滞后对温度(HTD)和储存模量在应变(MSD)上的依赖性。与Tespd相比,含有含有CO-AMS或AMS和偶联剂的组合的股票中发现了更强的HTD和较弱的MSD。这可以使具有较低滚动性的轮胎化合物,更稳定的处理性能以及更好的湿牵引力。更重要的是,与用硅烷的那些相比,在含有AMS(或CO-AMS)的储存期间释放的VOC显着降低。

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