...
首页> 外文期刊>ACS nano >How the Toughest Inorganic Fullerene Cages Absorb Shockwave Pressures in a Protective Nanocomposite: Experimental Evidence from Two In Situ Investigations
【24h】

How the Toughest Inorganic Fullerene Cages Absorb Shockwave Pressures in a Protective Nanocomposite: Experimental Evidence from Two In Situ Investigations

机译:最强的无机富勒烯笼子如何在保护纳米复合材料中吸收冲击波压力:两种原位调查的实验证据

获取原文
获取原文并翻译 | 示例
           

摘要

Nanocomposites fabricated using the toughest caged inorganic fullerene WS2 (IF-WS2) nanoparticles could offer ultimate protection via absorbing shockwaves; however, if the IF-WS2 nanomaterials really work, how they behave and what they experience within the nanocomposites at the right moment of impact have never been investigated effectively, due to the limitations of existing investigation techniques that are unable to elucidate the true characteristics of high-speed impacts in composites. We first fabricated Al matrix model nanocomposites and then unlocked the exact roles of IF-WS2 in it at the exact moment of impact, at a time resolution that has never been attempted before, using two in situ techniques. We find that the presence of IF-WS2 reduced the impact velocity by over 100 m/s and in pressure by at least 2 GPa against those Al and hexagonal WS2 platelet composites at an impact speed of 1000 m/s. The IF-WS2 composites achieved an intriguing inelastic impact and outperformed other reference composites, all originating from the "balloon effect" by absorbing the shockwave pressures. This study not only provides fundamental understanding for the dynamic performance of composites but also benefits the development of protective nanocomposite engineering.
机译:使用最强的笼养无机富勒烯WS2(IF-WS2)纳米颗粒制造的纳米复合材料可以通过吸收冲击波提供最终保护;但是,如果IF-WS2纳米材料真的工作,因此由于现有调查技术无法阐明真实特征的局限性,因此从未有效地研究了它们的行为和纳米复合物在纳米复合材料中的经历。复合材料中的高速冲击。我们首先制造了Al矩阵模型纳米复合材料,然后在从未尝试过的IF的时间分辨率,在其上,使用两种原位技术,将IF-WS2的确切角色解锁IF-WS2的确切角色。我们发现IF-WS2的存在在1000m / s的那些Al和六边形WS2血小板复合材料中将冲击速度和压力降低了至少2GPa。 IF-WS2复合材料达到了有趣的非弹性冲击和优于其他参考复合材料,这一切都是通过吸收冲击波压力的“气球效应”来源于“气球效应”。这项研究不仅为复合材料的动态性能提供了基础知识,而且有利于保护纳米复合材料工程的发展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号