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Dynamic and ballistic impact behavior of biocomposite armors made of HDPE reinforced with chonta palm wood(Bactris gasipaes) microparticles 被引量:1

Dynamic and ballistic impact behavior of biocomposite armors made of HDPE reinforced with chonta palm wood(Bactris gasipaes) microparticles
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摘要 The mechanical behavior of chonta palm wood(Bactris gasipaes) microparticles reinforced high density polyethylene(HDPE) under high strain-rate compressive and ballistic impact loading were investigated.The palm wood microparticles were introduced into the HDPE via an extrusion process using parallel twin screw extruder to produce biocomposite containing 10, 20, 25, and 30 wt % chonta wood microparticles. In addition to mechanical tests, fractographic analysis was done to understand the failure mechanism in the biocomposites under dynamic and ballistic impact loads. The results indicate that both quasi-static and dynamic mechanical properties of HDPE are enhanced by reinforcement with chonta palm wood particles. The biocomposites containing 25 wt % wood microparticles exhibited the highest strength, stiffness, ballistic impact resistance and impact energy absorption capability. Introduction of microparticles of chonta palm wood as reinforcement into a polymeric matrix such as HDPE is therefore a promising method to develop biocomposites with enhanced capacity to withstand dynamic impact loading and absorb impact energy. The mechanical behavior of chonta palm wood(Bactris gasipaes) microparticles reinforced high density polyethylene(HDPE) under high strain-rate compressive and ballistic impact loading were investigated.The palm wood microparticles were introduced into the HDPE via an extrusion process using parallel twin screw extruder to produce biocomposite containing 10, 20, 25, and 30 wt % chonta wood microparticles. In addition to mechanical tests, fractographic analysis was done to understand the failure mechanism in the biocomposites under dynamic and ballistic impact loads. The results indicate that both quasi-static and dynamic mechanical properties of HDPE are enhanced by reinforcement with chonta palm wood particles. The biocomposites containing 25 wt % wood microparticles exhibited the highest strength, stiffness, ballistic impact resistance and impact energy absorption capability. Introduction of microparticles of chonta palm wood as reinforcement into a polymeric matrix such as HDPE is therefore a promising method to develop biocomposites with enhanced capacity to withstand dynamic impact loading and absorb impact energy.
出处 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2018年第3期238-249,共12页 Defence Technology
基金 the financial supports of the Natural Sciences and Engineering Research Council of Canada (NSERC) The financial support of the National Secretary of Science and Technology of the Ecuador (SENESCYT) and Ecuadorian Army
关键词 HDPE 弹道 行为 盔甲 机械测试 吸收能力 密度聚乙烯 挤出过程 Biocomposite armors High density polyethylene Chonta palm wood microparticles Split hopkinson pressure bar Ballistic impact
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