航天推进技术研究院主办
LIU Yang,DOU Shuangqing,WANG Hongliang,et al.Research on vibration method measuring technology for gelled propellant viscosity measurement[J].Journal of Rocket Propulsion,2017,43(05):80-86.
凝胶推进剂粘度振动法测量技术研究
- Title:
- Research on vibration method measuring technology for gelled propellant viscosity measurement
- 分类号:
- V513-34
- 文献标志码:
- A
- 摘要:
- 介绍了凝胶推进剂粘度测量系统的组成、原理和测量方法,重点阐述基于振动法的凝胶推进剂粘度测量原理,论证了粘度计不同安装方式对测量结果造成的影响。结合校准原理,研究粘度计在现场校准应用环境下的校准技术,并给出校准测试数据。通过试验验证,总结出凝胶推进剂粘度现场测量中减小测量误差的有效方法就是实现现场校准。
- Abstract:
- The principle,composition and measurement method of the gelled propellant viscosity measurement system are introduced in this paper. The principle of the gelled propellant viscosity measurement based on the vibration method is expatiated emphatically.The effect of different installation ways of viscosity meter on the measurement result is verified.The calibration technology of viscosity meter in the field calibration environment is studied in combination with the calibration principle.The measured calibration data is given.The experimental verification result indicates that effective method of reducing the error in the site measurement of gelled propellant viscosity is spot calibration.
参考文献/References:
[1] 吴德志,徐东亮, 吴耀楚. 粘度测定原理与应用[J]. 中国仪器仪表, 2002(6): 41-43.
[2] 韩伟, 杜宗罡, 符全军, 等. 四氧化二氮凝胶推进剂的配方研究[J]. 火箭推进, 2008, 34(1): 54-58.
HAN Wei, DU Zonggang, FU Quanjun, et al. Study on the formulation of NTO gelled propellant [J]. Journal of rocket propulsion, 2008, 34(1): 54-58.
[3] 杜忠选,胡亚非,张始斋.粘度测量原理与方法[J]. 煤矿机械, 2006, 27(6): 71-72.
[4] 施庆珊, 王计伟, 欧阳友生, 等. 非牛顿流体粘度测定方法研究进展[J], 发酵技术通讯, 2001, 40(2): 42-45.
[5] 马敬东. 粘度测量中的温度修正及其应用[J]. 上海计量测试, 2005(2): 31-32.
[6] 童刚, 陈丽君, 冷健. 旋转式粘度计综述[J]. 自动化博览, 2007(2): 68-70.
[7] 肖文涛, 张国忠, 刘坤, 等. 同轴圆筒旋转粘度计测量误差的分析与修正[J], 现代科学仪器, 2012(2): 114-118.
[8] 唐冬富.船用润滑油粘度在线测量技术研究[D]. 大连: 大连海事大学, 2009.
[9] 何政. 振动式粘度计的研究[D]. 武汉:华中科技大学, 2011.
[10] 郑慧琴,杨黎黎.流变剪切粘度测量不确定度的评定[J]. 合成技术及应用, 2008, 23(3): 55-60.
[11] 王巧梭.在线粘度测量及其应用[J]. 玻璃, 2001(4): 26-29.
[12] 王淑红, 庄侃, 郭强. 振动式在线黏度计在合成橡胶生产中的应用[J]. 仪器仪表与应用, 2005(4): 62-64.
[13] 唐为义. 流体粘度在线测量系统的设计与研究[D]. 青岛: 青岛科技大学, 2008.
[14] WAKABAYASHI T. Viscosity correlation with specific gravity and molecular weight of crude oil fraction [J]. Fuel, 1997, 76(11): 1049-1056.
[15] NAGASHIMA A. Recent development and applications of an optical method for measurements of thermo physical properties [J]. International journal of thermophysics, 1995, 16(5): 1069-1086.
备注/Memo
收稿日期:2017-04-24; 修回日期:2017-08-12 基金项目:国防技术基础科研项目(JSJL2014203B020) 作者简介: 刘阳(1985—),男,工程师,研究领域为液体火箭发动机试验测控技术