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爆轰合成纳米超微金刚石的热稳定性研究 总被引:1,自引:0,他引:1
用差热、热失重和X射线衍射分析对爆轰合成纳米超微金刚石的热稳定性进行了研究,分析了不同合成和提纯条件以及不同气氛对超微金刚石热稳定性的影响。研究结果表明,纳米超微金刚石在空气氛中的热稳定性较差,其起始氧化温度为500~530℃;在惰性和还原性气氛中具有较好的热稳定性;包裹水条件下得到的金刚石及用H2SO4+KMnO4提纯得到的超微金刚石的热稳定性较好。 相似文献
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聚脲作为一种涂层或夹层材料被用在爆炸冲击领域,对目标结构具有良好的防护作用。为研究聚脲材料的力学性能,利用万能试验机和分离式霍普金森拉杆试验装置对聚脲材料分别进行准静态和动态拉伸加载试验。得到碳化硅与聚脲纳米复合材料在低应变率(0.001~0.1 s-1)和高应变率(1 260~4 500 s-1)范围内的真应力-真应变曲线,并分析了应变率强化效应和纳米碳化硅颗粒含量对聚脲力学性能的影响。结合超弹性理论构建了含有应变率效应的准静态和动态本构模型,对试样的模型参数进行了拟合。结果表明:应变率越高,试样的流动应力越大,且动态加载下的流动应力要显著大于准静态,表现出明显的应变率强化效应;碳化硅与聚脲纳米复合材料的力学性能优于纯聚脲材料;碳化硅与聚脲纳米复合材料流动应力与相对应变率的对数在一定应变率范围内基本上满足线性关系;通过对聚脲动态拉伸力学性能数值模拟,仿真结果和试验结果吻合性很好,验证了拉伸试验应力-应变结果的准确性;本构模型拟合结果和试验结果吻合较好,说明所构建的本构模型能够较好地描述碳化硅与聚脲纳米复合材料的力学行为。 相似文献
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The damage properties of polymer bonded explosives under dynamic loading were studied by using ultrasonic evaluation. Explosive samples were damaged by a low-velocity gas gun at different impact velocities. Ultrasonic examination was carried out with a pulse through-transmission method. Spectra analyses were carried outby using fast Fourier transform. Characteristic ultrasonic parameters, including ultrasonic velocities, attenuation coefficients, spectra area and master frequency, were obtained. The correlation between the impact damage and ultrasonic parameters was analyzed. A damage coefficient D was defined by considering a combination of ultrasonic velocity and amplitude. The results show that ultrasonic parameters can be used to quantitatively assess the damage extent in impacted plastic bonded explosives. 相似文献
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