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Mechanical Properties and Wear Behavior of a Novel Composite of Acrylonitrile–Butadiene–Styrene Strengthened by Short Basalt Fiber

机译:短玄武岩纤维增强丙烯腈-丁二烯-苯乙烯新型复合材料的力学性能和磨损行为

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Polymer matrix composites (PMC) have a competitive and dominant role in a lot of industries, like aerospace and automobiles. Short basalt fiber (SBF) is used to strengthen acrylonitrile–butadiene–styrene (ABS) polymers as a composite. The composite material is fabricated using injection molding with a new technique to obtain a uniform distribution for the ABS matrix at an elevated temperature range from 140 °C to 240 °C. Four types of specimen were produced according to the mechanically mixed amounts of SBF, which were (5, 10, 15, 20) wt %. The produced material was tested for tension, hardness and impact to measure the enhancement of the mechanical properties of the ABS only and the ABS reinforced by SBF composite. Wear tests were carried out using a pin on disc at a velocity of 57.5 m/s at three normal loads of 5, 10 and 15 kN. Tensile strength increased with up to 5 wt % of SBF, then decreased with an increasing amount of SBF reinforcement, while surface hardness increased with increasing SBF. The impact strength was found to degrade with the whole increment of SBF. Wear resistance increased with the increasing SBF reinforcement amount at all applied normal loads.
机译:聚合物基复合材料(PMC)在航空航天和汽车等许多行业中具有竞争性和主导性作用。短玄武岩纤维(SBF)用于增强丙烯腈-丁二烯-苯乙烯(ABS)聚合物的复合材料。使用新技术通过注射成型制造复合材料,以在140°C至240°C的高温范围内获得ABS基体的均匀分布。根据SBF的机械混合量生产了四种类型的样品,其含量为(5、10、15、20)wt%。测试所生产的材料的拉伸,硬度和冲击力,以测量仅ABS和由SBF复合材料增强的ABS的机械性能的增强。使用圆盘上的销以57.5 m / s的速度在5、10和15 kN的三个法向载荷下进行磨损测试。拉伸强度随着SBF的增加达到5 wt%,然后随着SBF增强量的增加而降低,而表面硬度随SBF的增加而增加。发现冲击强度随着SBF的整体增加而降低。在所有施加的正常载荷下,耐磨性随SBF增强量的增加而增加。

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