首页> 外文OA文献 >In-Situ X-ray Tomography Observation of Structure Evolution in 1,3,5-Triamino-2,4,6-Trinitrobenzene Based Polymer Bonded Explosive (TATB-PBX) under Thermo-Mechanical Loading
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In-Situ X-ray Tomography Observation of Structure Evolution in 1,3,5-Triamino-2,4,6-Trinitrobenzene Based Polymer Bonded Explosive (TATB-PBX) under Thermo-Mechanical Loading

机译:原位X射线断层扫描在热机械载荷下,在1,3,5-三氨基-2,4,6-三硝基苯基聚合物粘结炸药(TATB-PBX)中的结构演变的观察

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摘要

In order to study the fracture behavior and structure evolution of 1,3,5-Triamino-2,4,6-Trinitrobenzene (TATB)-based polymer bonded explosive in thermal-mechanical loading, in-situ studies were performed on X-ray computed tomography system using quasi-static Brazilian test. The experiment temperature was set from −20 °C to 70 °C. Three-dimensional morphology of cracks at different temperatures was obtained through digital image process. The various fracture modes were compared by scanning electron microscopy. Fracture degree and complexity were defined to quantitatively characterize the different types of fractures. Fractal dimension was used to characterize the roughness of the crack surface. The displacement field of particles in polymer bonded explosive (PBX) was used to analyze the interior structure evolution during the process of thermal-mechanical loading. It was found that the brittleness of PBX reduced, the fracture got more tortuous, and the crack surface got smoother as the temperature rose. At lower temperatures, especially lower than glass transition temperature of binders, there were slipping and shear among particles, and particles tended to displace and disperse; while at higher temperatures, especially above the glass transition temperature of binders, there was reorganization of particles and particles tended to merge, disperse, and reduce sizes, rather than displacing.
机译:为了研究1,3,5-颗粒-2,4,6-三硝基苯(TATB)的骨折行为和结构演化,基于热机械载荷的爆炸性爆炸性,在X射线上进行原位研究计算机断层扫描系统使用准静态巴西测试。实验温度从-20℃达到70℃。通过数字图像过程获得不同温度下的裂缝的三维形态。通过扫描电子显微镜进行比较各种裂缝模式。定义断裂度和复杂性,以定量表征不同类型的裂缝。分形尺寸用于表征裂缝表面的粗糙度。聚合物键合炸药(PBX)中颗粒的位移场用于分析热机械负载过程中的内部结构演变。结果发现,PBX的脆性降低,骨折变得更加曲折,随着温度升起,裂缝表面变得更加光滑。在较低温度下,特别低于粘合剂的玻璃化转变温度,在颗粒中脱落和剪切,致粒子倾向于移动和分散;虽然在更高的温度下,特别高于粘合剂的玻璃化转变温度之上,但重组颗粒和颗粒倾向于合并,分散和减少尺寸,而不是位移。

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