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溶剂压伸固体推进剂驱溶工艺的数值模拟与试验研究 被引量:2
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作者 李焕 付小龙 +2 位作者 王可 邓重清 庞维强 《兵器装备工程学报》 CAS CSCD 北大核心 2022年第7期109-114,共6页
基于计算流体动力学(CFD)方法,建立了推进剂驱溶过程的物理模型和数学模型,利用ANSYS CFD有限体积法的高精度数值模拟技术研究了溶剂压伸固体推进剂驱溶过程。计算了25℃、40℃、50℃以及60℃条件下推进剂驱溶过程中乙醇的质量损失,获... 基于计算流体动力学(CFD)方法,建立了推进剂驱溶过程的物理模型和数学模型,利用ANSYS CFD有限体积法的高精度数值模拟技术研究了溶剂压伸固体推进剂驱溶过程。计算了25℃、40℃、50℃以及60℃条件下推进剂驱溶过程中乙醇的质量损失,获得了乙醇挥发时间和推进剂温度分布规律。结果表明,以乙醇残留质量比0.39%作为驱溶结束标准,温度为25℃、40℃、50℃和60℃时,驱溶时间分别为678.4 h、263.4 h、155.7 h和92.7 h。开展了不同驱溶温度下溶剂质量损失试验研究,仿真结果与试验结果对比表明,驱溶时间的相对误差仅为7.9%~8.3%,说明本文采取的仿真模拟方法可用于驱溶过程研究。 展开更多
关键词 固体推进剂 计算流体动力学CFD 驱溶工艺 数值模拟
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Fabrication of compact and stable perovskite films with optimized precursor composition in the fast-growing procedure 被引量:4
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作者 Tanghao Liu Yuanyuan Zhou +12 位作者 Qin Hu Ke Chen Yifei Zhang Wenqiang Yang Jiang Wu Fengjun Ye Deying Luo Kai Zhu Nitin R Padture Feng Liu Thomas RusselP Rui Zhu Qihuang Gong 《Science China Materials》 SCIE EI CSCD 2017年第7期608-616,共9页
The fast-growing procedure (FGP) provides a simple, high-yield and lead (Pb)-release free method to prepare perovskite films. In the FGP, the ultra-dilute per- ovskite precursor solution is drop-cast onto a hot (... The fast-growing procedure (FGP) provides a simple, high-yield and lead (Pb)-release free method to prepare perovskite films. In the FGP, the ultra-dilute per- ovskite precursor solution is drop-cast onto a hot (-240℃) substrate where a perovskite film grows immediately ac- companied by the rapid evaporation of the host solvent. In this process, all the raw materials in the precursor solution are deposited into the final perovskite film. The potential pollution caused by Pb can be significantly reduced. Proper- ties of the FGP-processed perovskite films can be modulated by the precursor composition. While CH3NH3CI (MACI) affects the crystallization process and leads to full surface coverage, CH(NHz)2I (FAI) enhances the thermal stability of the film. Based on the optimized precursor composition of PbI2.(1-x)FAI.xMACI, x=0.75, FGP-processed planar het- erojunction perovskite solar cells exhibit power conversion efficiencies (PCEs) exceeding 15% with suppressed hysteresis and excellent reproducibility. 展开更多
关键词 fast-growing procedure lead-release free precursorcomposition surface coverage thermal stability
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