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Ignition processes and characteristics of charring conductive polymers with a cavity geometry in precombustion chamber for applications in micro/nano satellite hybrid rocket motors
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作者 Zhiyuan Zhang Hanyu Deng +2 位作者 Wenhe Liao Bin yu zai yu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期55-66,共12页
The arc ignition system based on charring polymers has advantages of simple structure,low ignition power consumption and multiple ignitions,which bringing it broadly application prospect in hybrid propulsion system of... The arc ignition system based on charring polymers has advantages of simple structure,low ignition power consumption and multiple ignitions,which bringing it broadly application prospect in hybrid propulsion system of micro/nano satellite.However,charring polymers alone need a relatively high input voltage to achieve pyrolysis and ignition,which increases the burden and cost of the power system of micro/nano satellite in practical application.Adding conductive substance into charring polymers can effectively decrease the conducting voltage which can realize low voltage and low power consumption repeated ignition of arc ignition system.In this paper,a charring conductive polymer ignition grain with a cavity geometry in precombustion chamber,which is composed of PLA and multiwall carbon nanotubes(MWCNT)was proposed.The detailed ignition processes were analyzed and two different ignition mechanisms in the cavity of charring conductive polymers were revealed.The ignition characteristics of charring conductive polymers were also investigated at different input voltages,ignition grain structures,ignition locations and injection schemes in a visual ignition combustor.The results demonstrated that the ignition delay and external energy required for ignition were inversely correlated with the voltages applied to ignition grain.Moreover,the incremental depth of cavity shortened the ignition delay and external energy required for ignition while accelerated the propagation of flame.As the depth of cavity increased from 2 to 6 mm(at 50 V),the time of flame propagating out of ignition grain changed from 235.6 to 108 ms,and values of mean ignition delay time and mean external energy required for ignition decreased from 462.8 to 320 ms and 16.2 to 10.75 J,respectively.The rear side of the cavity was the ideal ignition position which had a shorter ignition delay and a faster flame propagation speed in comparison to other ignition positions.Compared to direct injection scheme,swirling injection provided a more favorable flow field environment in the cavity,which was beneficial to ignition and initial flame propagation,but the ignition position needed to be away from the outlet of swirling injector.At last,the repeated ignition characteristic of charring conductive polymers was also investigated.The ignition delay time and external energy required for ignition decreased with repeated ignition times but the variation was decreasing gradually. 展开更多
关键词 Micro/nano satellite hybrid propulsion Arc ignition Charring conductive polymer Ignition mechanism Ignition characteristic Repeated ignition
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肺癌调强放射治疗中摆位误差分析及 CTV-PTV外放边界的研究 被引量:12
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作者 张骥 宰宇 唐甜 《医学理论与实践》 2020年第11期1732-1734,1752,共4页
目的:采用千伏级锥形束CBCT(Kilovolt cone-beam computed tomography)测量和分析肺癌调强放疗摆位误差,并依此分析CTV外扩至PTV的边界大小,为我科放疗计划的设计提供一定的理论依据。方法:对2019年1-8月在我院全程进行图像引导放射治疗... 目的:采用千伏级锥形束CBCT(Kilovolt cone-beam computed tomography)测量和分析肺癌调强放疗摆位误差,并依此分析CTV外扩至PTV的边界大小,为我科放疗计划的设计提供一定的理论依据。方法:对2019年1-8月在我院全程进行图像引导放射治疗的60例肺癌患者的摆位误差进行测量。体位固定采用一体板和热塑体膜。每例患者在第1周的每一次以及之后的每周放射治疗前利用锥形束CT扫描;将获取的CBCT影像与治疗计划CT进行比较,记录并分析治疗过程中的摆位误差,以此为依据计算CTV-PTV外放边界大小。结果:60例肺癌共采集413次摆位数据;经测量得到X左右方向误差为(1.662 32±1.422 25)mm;Y头脚方向误差为(2.127 05±1.366 56)mm;Z背腹方向误差为(2.119 32±1.580 24)mm;经公式计算,得到我科肺癌外扩CTV理论边界X左右、Y头脚、Z背腹各方向分别为1.88mm、5.66mm、2.71mm。结论:应用千伏级锥形束CBCT测量和分析肺癌治疗前的摆位误差的规律,并计算CTV外扩边界的大小,可以为我科外扩CTV边界提供理论依据,具有实际的临床意义。 展开更多
关键词 肺癌 调强放射治疗 摆位误差 外扩边界
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制药工程专业药剂学教学改革尝试与体会
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作者 秦城 宰予 顾莹 《中国卫生产业》 2023年第16期241-244,共4页
随着我国科技的不断进步,医疗技术也在飞速发展,而药剂学是制药工程专业中的一门基础性的学科,担任着培养制药人才的重要使命。药剂学主要是研究各种药物制剂的处方内容、制药工艺、药物的基础原理、药品的合理搭配等内容,是一门综合性... 随着我国科技的不断进步,医疗技术也在飞速发展,而药剂学是制药工程专业中的一门基础性的学科,担任着培养制药人才的重要使命。药剂学主要是研究各种药物制剂的处方内容、制药工艺、药物的基础原理、药品的合理搭配等内容,是一门综合性较强的学科,不仅对学生的学习技能有较高要求,教师的教学手段对促进学生的学习成功也有着重大影响,能够对学生的学习效率产生积极意义。本文旨在分析制药工程专业药剂学教学的现状、药剂学的作用,提出理论和实际两方面的一些教学措施促进教学质量,最终对药剂学教学改革的成果进行简略分析,以期不断完整教学改革措施,提升教学水平。 展开更多
关键词 制药工程 药剂学 教学改革
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Publisher’s Note
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作者 zai yu 《eScience》 2023年第1期1-1,共1页
Within the publishing industry,article numbering has emerged as an easy and efficient way to cite journal articles.Article numbering has already been successfully rolled out to Elsevier’s multidisciplinary open acces... Within the publishing industry,article numbering has emerged as an easy and efficient way to cite journal articles.Article numbering has already been successfully rolled out to Elsevier’s multidisciplinary open access journal Heliyon,as well as more than 1600 other journals,and has been well received by the academic community.Based on that positive feedback,we are now pleased to introduce article numbering to eScience from 2023. 展开更多
关键词 journal Elsevier academic
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