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Mechanical properties of extruded glass fiber reinforced thermoplastic polyolefin composites

机译:挤出玻璃纤维增强热塑性聚烯烃复合材料的力学性能

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Engineered structural materials are required to feature a combination of deformability (ductility) and strength to be considered damage-tolerant for safety-critical applications. These two mechanical properties, however, tend to be mutually exclusive, encouraging optimization of the trade-off between strength and toughness. In this report, an elastomer and a glass fiber were incorporated into a blend of two grades of polypropylene (PP) to improve matrix toughness through both intrinsic and extrinsic toughening mechanisms. This study investigates the impact resistance (at 23 degrees C and -30 degrees C), and strength, stiffness, deformability, and processability of extruded compatibilized glass fiber reinforced thermoplastic polyolefin (TPO) composites at 23 degrees C. For the hybrid composites contribution of different toughening mechanisms in attainment of the final impact strength is governed by the testing temperature and processing (extruder screw) speed. The intrinsic toughening mechanism induced by the presence of the ethylene alpha-olefin copolymer is suppressed by the introduction of glass fiber at 23 degrees C, irrespective of screw speed and screw configuration design. The heat distortion temperature (HDT), flexural modulus, and tensile strength exhibit a marked improvement by glass fiber inclusion at 23 degrees C. By evaluating the performance of the composites at -30 degrees C, it was observed that the impact energy of the elastomer modified hybrid composites may be enhanced in the same manner as the glass fibers toughen the brittle unmodified PP matrix. It was noted that contrary to the tensile properties at break, the yield behavior of the composites containing fibers, severely shortened, is independent of the presence of the fibers at 23 degrees C.
机译:需要设计的结构材料来具有可易变形(延展性)和强度的组合被认为是安全关键应用的耐损害。然而,这两个机械性能往往是相互排斥的,鼓励优化力量和韧性之间的权衡。在本报告中,将弹性体和玻璃纤维掺入两种聚丙烯(PP)的共混物中,以通过本质和外部增韧机构改善基质韧性。该研究研究了抗冲击性(在23摄氏度和-30℃),以及在23摄氏度下挤出的相容性玻璃纤维增​​强热塑性聚烯烃(TPO)复合材料的强度,刚度,可变形性和加工性。用于杂交复合材料的贡献在达到最终冲击强度的不同增韧机制通过测试温度和加工(挤出机螺杆)速度来控制。通过在23℃下引入玻璃纤维,抑制了通过乙烯α-烯烃共聚物的存在诱导的内在增韧机理,无论螺杆速度和螺杆配置设计如何。热变形温度(HDT),弯曲模量和拉伸强度在23摄氏度下通过玻璃纤维包涵体表现出显着的改善。通过在-30℃下评价复合材料的性能,观察到弹性体的冲击能量改性混合复合材料可以以与玻璃纤维增​​韧相同的方式增强,因为脆性未改性的PP基质增韧。有人指出,与断裂处的拉伸性能相反,含有纤维的复合材料的屈服行为严重缩短,与23摄氏度的纤维的存在无关。

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