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A comparison of the dynamic mechanical properties of explosive simulants prepared using traditional and resonant acoustic mixing

机译:使用传统谐振声混合制备爆炸性模拟剂动态力学性能的比较

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Resonant acoustic mixing (RAM) is a technique that is increasingly used in the energetics community to mix materials of widely varying properties. In general, the technique is a batch process, where the mixer propagates acoustic energy through a baseplate into a sealed, clamped sample vessel. In comparison to the conventional planetary mixing there are no intrusive mechanical parts. In addition, the sample is intimately mixed after a short duration of time. Questions exist about how high intensity mixing affects the overall material properties and ageing characteristics. This paper is part of a larger research project, investigating the utility of resonant acoustic mixing for energetic materials and the content builds on a paper given at NTREM 2017. This study reports the mechanical properties of inert compositions using HTPB, DOS and AO as the binder, and melamine and barium sulphate as the filler system. There are several solid loading levels: 66%wt, 73%wt and 80%wt.
机译:谐振声混合(RAM)是一种技术,越来越多地用于精力计群体,以混合广泛变化的物质材料。通常,该技术是批处理,其中混合器通过底板传播声能量进入密封的夹紧的样品容器。与传统的行星混合相比,没有侵入式机械部件。此外,在短时间内,样品紧密混合。关于高强度混合如何影响整体材料性能和老化特征的问题存在问题。本文是较大研究项目的一部分,研究了谐振声学混合对能量材料的效用,并在NTREM 2017上给出的纸张中的含量。本研究报告了使用HTPB,DOS和AO作为粘合剂的惰性组合物的机械性能和三聚氰胺和硫酸钡作为填料系统。有几种固体加载水平:66%wt,73%wt和80%wt。

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