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首页> 外文期刊>Journal of Materials Science >Novel low-cost hybrid composites from asphaltene/SBS tri-block copolymer with improved thermal and mechanical properties
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Novel low-cost hybrid composites from asphaltene/SBS tri-block copolymer with improved thermal and mechanical properties

机译:由沥青质/ SBS三嵌段共聚物制成的新型低成本杂化复合材料,具有改进的热和机械性能

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摘要

A continuous demanding in raw chemicals cost reduction and processing simplification facilitates the exploration and development of new materials in current plastics industries. In this study, a novel carbonaceous filler material "asphaltene" extracted from inexpensive and abundant asphalt is blended into a thermoplastic elastomer poly(styrene-butadiene-styrene) copolymer (SBS) for the fabrication of hybrid composites at different loadings via melt-compounding. Due to its intrinsic molecular rigidness and desirable compatibility with SBS, the prepared asphaltene/SBS composites displays excellent thermo-mechanical properties by improving the storage modulus in the glassy region by 19 % and in the rubbery region by 305 %, as well as increasing the thermal stability by up to 20 A degrees C. The overall mechanical properties are also enhanced substantially by incorporation of asphaltene into the SBS matrix according to the filler loading in SBS: the tensile strength increased by 2.2 MPa, the maximum elongation by 268 %, Young's modulus by 214 %, and toughness by 100.4 %. Although the introduced asphaltene inevitably led to a gradual increment in the viscosity of polymer melts from the filler-filler and filler-polymer interactions, homogeneous dispersion of the reinforcing fillers at optimum loading (20-30 wt%) in SBS matrix is still sustained.
机译:对降低原始化学品成本和简化工艺的持续要求促进了当前塑料行业中新材料的探索和开发。在这项研究中,从廉价而丰富的沥青中提取的新型碳质填料“沥青质”被掺入热塑性弹性体聚(苯乙烯-丁二烯-苯乙烯)共聚物(SBS)中,以通过熔融复合以不同的负载量制造杂化复合材料。由于其固有的分子刚度和与SBS的理想相容性,通过将玻璃态区域的储能模量提高19%,橡胶态区域的储能模量提高305%,并提高橡胶态的储能模量,制备的沥青质/ SBS复合材料表现出出色的热机械性能。热稳定性最高可达20 A摄氏度。根据SBS中的填料含量,将沥青质掺入SBS基体中,还可显着提高整体机械性能:拉伸强度提高2.2 MPa,最大伸长率提高268%,杨氏模量为214%,韧性为100.4%。尽管引入的沥青质不可避免地导致由填料-填料和填料-聚合物相互作用引起的聚合物熔体的粘度逐渐增加,但仍能以最佳负载量(20-30 wt%)将增强填料均匀分散在SBS基体中。

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