首页> 外文会议>International Conference on Materials for Advanced Technologies;ICMAT; 20070701-06;20070701-06; Singapore(SG);Singapore(SG) >STUDIES ON THE FABRICATION AND STAB RESISTANCE CHARACTERIZATION OF NOVEL THERMOPLASTIC-KEVLAR COMPOSITES
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STUDIES ON THE FABRICATION AND STAB RESISTANCE CHARACTERIZATION OF NOVEL THERMOPLASTIC-KEVLAR COMPOSITES

机译:新型热塑性基体复合材料的制备及抗刺性能的研究

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Kevlar has demonstrated the ability to protect well against ballistic threats but has low resistance to puncture. Correctional Kevlar has shown good resistance to puncture. However, the fabric is expensive, difficult to manufacture because of its tight weave construction, and has limited protection against ballistic threats. In an effort to produce materials that are less bulky, more flexible, and resistant to puncture, thermoplastic-Kevlar (TP-Kevlar) composites have been examined. Kevlar fabric was impregnated with thermoplastic film using a hot press to produce the composites. Static and dynamic puncture resistant properties of the TP-Kevlar composites were investigated using a National Institute of Justice (NIJ Standard 0115.00) Stab Tower. The TP-films used in this study were polyethylene, Surlyn, and co extruded-Surlyn, which is a co extrusion of Surlyn and polyethylene. Response of the polyethylene (PE)-Kevlar composites, Surlyn-Kevlar composites, and co extruded (COEX)-Kevlar composites to spike and knife threats under static and dynamic conditions were compared with that of neat Kevlar. The infusion of thermoplastic films into the Kevlar fabric was shown to dramatically increase puncture resistance during quasi-static and dynamic testing with spikes. The TP-film type also made a difference when examining the resistance on a comparative basis of the TP-Kevlar targets. The TP-Kevlar composite targets showed more resistance to quasi-static spike testing than quasi-static knife testing. Weapon comparisons revealed that the TP-Kevlar composite targets had more resistance to dynamic knife testing than dynamic spike testing.
机译:凯夫拉(Kevlar)已展示出良好的防御弹道威胁的能力,但对穿刺的抵抗力很低。凯夫拉矫正器对穿刺表现出良好的抵抗力。但是,该织物价格昂贵,由于其紧密的编织结构而难以制造,并且对弹道威胁的防护能力有限。为了生产体积更小,更柔韧且耐刺穿的材料,已研究了热塑性-芳纶(TP-Kevlar)复合材料。使用热压机将热塑性薄膜浸渍在凯夫拉尔织物上,以生产复合材料。 TP-Kevlar复合材料的静态和动态抗穿刺性能是使用国立司法学院(NIJ标准0115.00)稳定塔研究的。本研究中使用的TP膜是聚乙烯,Surlyn和共挤出的Surlyn,这是Surlyn和聚乙烯的共挤出。将聚乙烯(PE)-凯夫拉尔复合材料,萨林-凯夫拉尔复合材料和共挤出(COEX)-凯夫拉尔复合材料在静态和动态条件下对尖刺和刀刺的反应响应与纯凯夫拉尔的响应进行了比较。在准静态和动态尖峰测试期间,将热塑性薄膜注入Kevlar织物可显着提高耐穿刺性。在比较TP-Kevlar靶材的电阻时,TP膜类型也有所不同。 TP-Kevlar复合靶标对准静态尖峰测试的抵抗性强于准静态刀式测试。武器比较显示,TP-Kevlar复合靶材对动态刀测试的抵抗力大于动态峰值测试。

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