期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
多孔硝基胍发射药压伸数值仿真及验证 被引量:6
1
作者 常飞 南风强 何卫东 《含能材料》 EI CAS CSCD 北大核心 2017年第2期106-112,共7页
为研究硝基胍发射药配方和压伸工艺对挤出成型尺寸的影响问题,建立了不同配方硝基胍发射药压伸过程数学模型及边界条件,用有限元方法仿真计算,得到了不同配方条件下流动过程的剪切速率场、压力场以及速度场分布情况。结果表明,发射药实... 为研究硝基胍发射药配方和压伸工艺对挤出成型尺寸的影响问题,建立了不同配方硝基胍发射药压伸过程数学模型及边界条件,用有限元方法仿真计算,得到了不同配方条件下流动过程的剪切速率场、压力场以及速度场分布情况。结果表明,发射药实际外径尺寸(8.03 mm)与仿真尺寸(8.38 mm)基本一致,误差为4.36%,外弧厚误差为7.89%,内弧厚为3.10%,孔径误差为9.26%,中心孔径误差为5.36%,误差均小于10%。 展开更多
关键词 硝基胍发射药 数值仿真 力和速度分布 剪切速率 压伸工艺
下载PDF
“绿色”火箭推进剂及其制造新工艺 被引量:1
2
作者 张海燕 《飞航导弹》 2001年第12期53-55,共3页
综述了美国在“绿色”火箭推进剂研究方面所取得的最新进展。列举了几种“绿色”火箭推进剂配方 ,阐明了“绿色”火箭推进剂的R3(重回收 重循环 重利用 )特征。重点介绍了美国关于“绿色”火箭推进剂制造新工艺———双螺杆压伸 (TSE)... 综述了美国在“绿色”火箭推进剂研究方面所取得的最新进展。列举了几种“绿色”火箭推进剂配方 ,阐明了“绿色”火箭推进剂的R3(重回收 重循环 重利用 )特征。重点介绍了美国关于“绿色”火箭推进剂制造新工艺———双螺杆压伸 (TSE)工艺的研究。 展开更多
关键词 固体推进剂 双螺杆压伸工艺 制造工艺 "绿色"火箭推进剂 配方 含能热塑性弹性体
下载PDF
双基推进剂螺压嵌长金属丝药柱成型过程的流变性分析
3
作者 谢玉立 王晰猷 《兵工学报》 EI CAS 1987年第3期76-80,共5页
本文通过对双基药料在嵌金属丝成型模具中流变性和金属丝随药料流动的受力分析,探讨了螺旋压伸嵌长金属丝药柱的基本影响因素,并提出了一种改进嵌丝模具的设计方法。借助改进的模具可在螺旋压伸机里将带有涂层的长金属丝嵌入双基药柱,... 本文通过对双基药料在嵌金属丝成型模具中流变性和金属丝随药料流动的受力分析,探讨了螺旋压伸嵌长金属丝药柱的基本影响因素,并提出了一种改进嵌丝模具的设计方法。借助改进的模具可在螺旋压伸机里将带有涂层的长金属丝嵌入双基药柱,药柱质量完全满足有关性能测试的要求。 展开更多
关键词 金属丝 药柱 双基推进剂 基本影响因素 双基药 实验曲线 流变性 实验数据 压伸工艺 受力分析
下载PDF
Flexible conductive Ag nanowire/cellulose nano?bril hybrid nanopaper for strain and temperature sensing applications 被引量:12
4
作者 Rui Yin Shuaiyuan Yang +5 位作者 Qianming Li Shuaidi Zhang Hu Liu Jian Han Chuntai Liu Changyu Shen 《Science Bulletin》 SCIE EI CAS CSCD 2020年第11期899-908,M0003,共11页
With the rapid development of smart wearable devices, flexible and biodegradable sensors are in urgent needs. In this study, ‘‘green" electrically conductive Ag nanowire (Ag NW)/cellulose nanofiber (CNF) hybrid... With the rapid development of smart wearable devices, flexible and biodegradable sensors are in urgent needs. In this study, ‘‘green" electrically conductive Ag nanowire (Ag NW)/cellulose nanofiber (CNF) hybrid nanopaper was fabricated to prepare flexible sensors using the facial solution blending and vacuum filtration technique. The amphiphilic property of cellulose is beneficial for the homogeneous dispersion of Ag NW to construct effective electrically conductive networks. Two different types of strain sensors were designed to study their applications in strain sensing. One was the tensile strain sensor where the hybrid nanopaper was sandwiched between two thermoplastic polyurethane (TPU) films through hot compression, and special micro-crack structure was constructed through the pre-strain process to enhance the sensitivity. Interestingly, typical pre-strain dependent strain sensing behavior was observed due to different crack densities constructed under different pre-strains. As a result, it exhibited an ultralow detection limit as low as 0.2%, good reproducibility under different strains and excellent stability and durability during 500 cycles (1% strain, 0.5 mm/min). The other was the bending strain sensor where the hybrid nanopaper was adhered onto TPU film, showing stable and recoverable linearly sensing behavior towards two different bending modes (tension and compression). Importantly, the bending sensor displayed great potential for human motion and physiological signal detection. Furthermore, the hybrid nanopaper also exhibited stable and reproducible negative temperature sensing behavior when it was served as a temperature sensor. This study provides a guideline for fabricating flexible and biodegradable sensors. 展开更多
关键词 Ag nanowire Cellulose nanofibril NANOPAPER STRAIN Temperature sensor
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部