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首页> 外文期刊>Journal of Dynamic Behavior of Materials >Experimentally Simulating High Rate Composite Deformation in Tension and Compression: Polymer Bonded Explosive Simulant
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Experimentally Simulating High Rate Composite Deformation in Tension and Compression: Polymer Bonded Explosive Simulant

机译:在拉伸和压缩过程中模拟高速率复合变形的实验:聚合物粘结炸药

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Characterizing the response of composite materials to high strain rate deformation is of great importance for a range of applications; however, the experiments required to do this are challenging. In order to be fully representative, specimens must be large, making it difficult to achieve mechanical equilibrium; furthermore diagnostic tools such as X-ray tomography and electron microscopy cannot be used on the required timescales of ca 10 μs. Many composites consist of a rate and temperature dependent polymer binder, with a filler that is independent of these parameters. In this paper, a simulation technique is applied, in which the high rate mechanical response of a composite is experimentally reproduced in low strain rate experiments by making use of the polymer time–temperature superposition principle. This is a novel application of time–temperature superposition to composite materials in order to experimentally replicate the high-rate response. In order to demonstrate this method on a model composite material, a particulate composite (polymer bonded sugar) and its binder are extensively characterized in compression, and the composite in indirect tension (Brazilian) tests, over a range of strain rates and temperatures. It is then shown that by reducing the temperature, low rate experiments can be performed which faithfully replicate the high rate data, opening up the opportunity for more extensive research programs combining mechanical testing and microstructural characterization of these materials.
机译:表征复合材料对高应变速率变形的响应对于一系列应用非常重要。但是,执行此操作所需的实验具有挑战性。为了完全具有代表性,标本必须较大,从而难以实现机械平衡;此外,无法在所需的约10μs时间范围内使用X射线断层扫描和电子显微镜等诊断工具。许多复合材料由速率和温度相关的聚合物粘合剂以及与这些参数无关的填料组成。在本文中,应用了一种模拟技术,其中利用聚合物的时间-温度叠加原理在低应变率实验中通过实验再现了复合材料的高机械响应。这是时间-温度叠加在复合材料上的一种新颖应用,目的是通过实验复制高速率响应。为了在模型复合材料上证明该方法,在一定的应变速率和温度范围内,对颗粒复合材料(聚合物键合的糖)及其粘合剂进行了压缩和间接拉伸(巴西)测试,并对其进行了广泛表征。结果表明,通过降低温度,可以进行低倍率实验,这些实验如实地复制高倍率数据,从而为结合这些材料的机械测试和微观结构表征提供了更广泛的研究计划的机会。

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