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Study on Optimization of Damping Performance and Damping Temperature Range of Silicone Rubber by Polyborosiloxane Gel

机译:聚硼硅氧烷凝胶优化硅橡胶阻尼性能和阻尼温度范围的研究

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摘要

Polyborosiloxane gel (PBS-gel) with shear hardening properties was prepared by cross-linking boric acid and hydroxyl-terminated polydimethylsiloxane through B–O–Si dynamic covalent bonding. The prepared PBS gel was mixed with methyl vinyl silicone rubber (MVQ), and a benzoyl peroxide (BPO) cross-linking agent was added to vulcanize the silicone rubber. At the same time, the gel molecules were co-vulcanizing with MVQ to produce molecular cross-linking. The effects of PBS-gel on the damping properties of silicone rubber were analyzed by dynamic rheological test, Fourier transform infrared spectroscopy and dynamic mechanical analysis. The results demonstrated that the damping performance of MVQ/PBS rubber is greatly improved and the rubber has a tanδ > 0.3 in the range of −25~125 °C. The shear-hardening gel is uniformly dispersed in the system, due to the combined action of covalent bonds and intermolecular forces, which act as an active molecular chain that can efficiently dissipate and transfer energy inside the silicone rubber.
机译:通过硼酸和羟基封端的聚二甲基硅氧烷通过B–O–Si动态共价键交联,制备具有剪切硬化特性的聚硼硅氧烷凝胶(PBS-gel)。将制备的PBS凝胶与甲基乙烯基硅橡胶(MVQ)混合,并添加过氧化苯甲酰(BPO)交联剂以硫化硅橡胶。同时,凝胶分子与MVQ共硫化以产生分子交联。通过动态流变试验,傅立叶变换红外光谱和动态力学分析,分析了PBS凝胶对硅橡胶阻尼性能的影响。结果表明,MVQ / PBS橡胶的阻尼性能大大提高,在-25〜125°C范围内tanδ> 0.3。由于共价键和分子间力的共同作用,剪切硬化凝胶均匀地分散在系统中,而分子间力作为活性分子链可以有效地分散和转移硅橡胶内部的能量。

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