Energy-absorption properties of polypropylene composites filled with glass beads and powdered rubber
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摘要: 采用單軸壓縮試驗分別對空心玻璃微珠(HGB)和丁腈橡膠粉末(PNBR)填充的聚丙烯(PP)復合材料進行壓縮性能和吸能特性研究,通過測定基于擺錘沖擊試驗的沖擊韌性對材料的吸能能力進行驗證,并采用掃描電子顯微鏡觀察材料的微觀形貌.結果表明:空心玻璃微珠增加聚丙烯的剛度并降低延展性,粉末丁腈橡膠減小聚丙烯的剛度并提高延展性;吸收相同能量時,粉末丁腈橡膠/聚丙烯體系產生的應力響應最小;根據吸能效率,空心玻璃微珠/聚丙烯體系的設計應力應高于粉末丁腈橡膠/聚丙烯體系;理想吸能效率的最大值出現在相對平緩的屈服階段;沖擊試驗結果證明空心玻璃微珠和粉末丁腈橡膠都能改善聚丙烯的吸能特性.Abstract: The compressive properties and energy absorption properties of polypropylene(PP) composites filled with hollow glass beads(HGB) and powdered nitrile butadiene rubber(PNBR) respectively were studied by uniaxial compression tests. The energy absorption capacity of the studied materials was verified by impact toughness based on pendulum impact tests. Scanning electron microscopy was used to observe the microstructure of the fracture surfaces. It is found that HGB increases the stiffness but lowers the ductility of polypropylene,while PNBR is on the contrary. The stress response degree of PNBR/PP is the lowest as absorbing the same energy. The design stress of HGB/PP should be higher than that of PNBR/PP according to energy-absorption efficiency. The maximum value in the ideal energy-absorption efficiency curve occurs at the yield stage. Impact test results show that HGB and PNBR can improve the energy-absorption capability of polypropylene.
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Key words:
- composite materials /
- polypropylene /
- glass beads /
- rubber /
- energy absorption
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