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首页> 外文期刊>Journal of Vinyl & Additive Technology >Fabrication of Damping Material over Broad Temperature Range: Blending Amorphous Styrene-Butadiene-Styrene Triblock Copolymer with Semi-Crystalline Syndiotactic 1,2-Polybutadiene
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Fabrication of Damping Material over Broad Temperature Range: Blending Amorphous Styrene-Butadiene-Styrene Triblock Copolymer with Semi-Crystalline Syndiotactic 1,2-Polybutadiene

机译:宽温度范围内的阻尼材料的制造:将无定形苯乙烯 - 丁二烯 - 苯乙烯三嵌段三嵌段共聚物与半结晶同步1,2-聚丁二烯共混

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摘要

Broad-temperature-range (-85.4 to 96.2 degrees C) damping material was fabricated by blending amorphous styrene-butadiene-styrene triblock copolymer (SBS) with semicrystalline syndiotactic 1,2-polybutadiene (s-PB). According to dynamic mechanical thermal analysis (DMTA) analysis, SBS/s-PB blends exhibited three consecutive damping peaks at -85.4, 2.7, and 96.2 degrees C. The peaks at -85.4 and 96.2 degrees C were associated with the glass transition of polybutadiene and polystyrene in SBS, and peak at 2.7 degrees C belonged to the glass transition of s-PB. The analysis of rheological behavior and thermal properties showed that the mobility and thermal stability of SBS/s-PB blends improved with the introduction of semi-crystalline s-PB. Moreover, regarding the results of DMTA, Fourier transform infrared spectroscopy (FTIR) and Scanning electron microscopy (SEM) measurements, SBS and s-PB were compatible in the macroscopic scale while they were immiscible in thermodynamic scale. Wide-angle X-ray diffraction (WAXD) results present the crystal structure of blends were unchanged. Besides, with the introduction of s-PB in blends, 100% tensile modulus increased from 3.2 to 5.8 MPa and tear strength increased from 49.2 to 84.2 kN/m. The Kerner-Uemura-Takayanagi model was employed to compare with experimental data. Thus, broad-temperature-range damping material was fabricated by blending SBS with s-PB and the material combined with good processability, thermal stability, and mechanical properties. J. VINYL ADDIT. TECHNOL., 2019. (c) 2019 Society of Plastics Engineers
机译:通过将非晶苯乙烯 - 丁二烯 - 苯乙烯三嵌段三嵌段三嵌段(SBS)与半结晶的Syndotical1,2-聚丁二烯(S-PB)混合来制造宽温度范围(-85.4至96.2摄氏度)阻尼材料。根据动态机械热分析(DMTA)分析,SBS / S-PB共混物在-85.4,2.7和96.2℃下表现出三个连续的阻尼峰。-85.4和96.2℃的峰与聚丁二烯的玻璃化转变有关在SBS中的聚苯乙烯,并且在2.7℃下的峰属于S-Pb的玻璃化转变。流变行为和热性质的分析表明,随着半结晶S-PB的引入,SBS / S-PB共混物的迁移率和热稳定性改善了。此外,关于DMTA的结果,傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)测量,SBS和S-Pb在宏观阶段中兼容,同时在热力学规模中不混溶。广角X射线衍射(WAXD)结果呈现共混物的晶体结构不变。此外,随着S-PB的共混物,100%拉伸模量从3.2增加到5.8MPa,撕裂强度从49.2增加到84.2KN / m。采用Kerner-Uemura-Takayanagi模型与实验数据进行比较。因此,通过用S-Pb混合SB和与良好的加工性,热稳定性和机械性能混合来制造宽温度范围阻尼材料。 J.乙烯基添加剂。 Technol.,2019.(c)2019年塑料工程师协会

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