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Effects of phase change material(PCM)-based nanocomposite additives on thermal decomposition and burning characteristic of high energy propellants containing RDX 被引量:1
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作者 En-fa Fu na sun Zheng-gang Xiao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第4期557-566,共10页
A kind of phase change material(PCM)-based nanocomposite was prepared and added into high energy propellants containing RDX as additives to investigate its effect on thermal decomposition and burning characteristic of... A kind of phase change material(PCM)-based nanocomposite was prepared and added into high energy propellants containing RDX as additives to investigate its effect on thermal decomposition and burning characteristic of high energy propellants.The effect of PCM-based nanocomposites on thermal decomposition of high energy propellants is investigated by TG/DSC-FTIR-MS technology.Due to the delayed protection effect(PCM-based nanocomposites can absorb lots of heat at the range of certain temperature when it undergoes structure change or phase transitions)of PCM-based nanocomposites under the thermal decomposition condition,the thermal stability of high energy propellants modified with PCMbased nanocomposites is improved.At the same time,the concentration of N2,NO2,H2O and CO_(2)is increased during thermal decomposition of high energy propellants whereas NO and CO is decreased.The burning gaseous products and burning characteristic of high energy propellants are studied by the combination of closed bomb test and Fourier transform infrared spectrum.The main burning gaseous products are N2,CO_(2),CO,H2O,CH4,etc.After the high energy propellant modified with PCM-based nanocomposites,the concentration of CH4is increased while CO,CO_(2) and H2O is decreased under the high-pressure burning condition.The progressivity factor of high energy propellants is increased by22.2%compared with the control sample while the maximum pressure is merely decreased 1.25%after the addition of the PCM-based nanocomposite,thus PCM-based nanocomposites can be used to adjust the burning process and improve the burning progressivity of high energy propellants.This study is expected to boost the practical application of PCM-based nanocomposite to the propellant formulation and effectively control the burning characteristic of high energy propellants. 展开更多
关键词 Phase change material Propellants NANOCOMPOSITE Thermal decomposition BURNING
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计算解析异常代谢对乳腺癌微环境重塑的调控机制 被引量:3
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作者 万羽鑫 朱欣雨 +3 位作者 赵宇 孙娜 江天彤妃 徐娟 《遗传》 CAS CSCD 北大核心 2024年第10期871-885,共15页
肿瘤微环境(tumor microenvironment,TME)中T细胞亚群的组成和肿瘤特异的T细胞互作促进了乳腺癌异质性的形成。此外,肿瘤的异常代谢通常与T细胞的抗肿瘤免疫功能失调关联密切,识别影响免疫细胞互作的关键代谢基因能够为乳腺癌治疗提供... 肿瘤微环境(tumor microenvironment,TME)中T细胞亚群的组成和肿瘤特异的T细胞互作促进了乳腺癌异质性的形成。此外,肿瘤的异常代谢通常与T细胞的抗肿瘤免疫功能失调关联密切,识别影响免疫细胞互作的关键代谢基因能够为乳腺癌治疗提供潜在靶点。本研究利用乳腺癌单细胞转录组数据,重点研究了乳腺癌发展过程中肿瘤特异性T细胞亚群及其互作子网,进一步评估肿瘤特异性激活的T细胞亚群的代谢通路活性。结果显示,肠促胰岛素的合成、分泌和失活的代谢通路以及果糖分解代谢通路显著影响了多个T细胞亚群的互作。整合肿瘤中T细胞显著上调以及影响互作的代谢通路,依此筛选出核心T细胞互作相关的异常代谢基因,并进一步构建乳腺癌风险评估模型。利用异常代谢显著相关预后基因表达谱与药物IC50值预测靶向药物,最终获得潜在靶向药物GSK-J4、PX-12等。本研究整合分析乳腺癌微环境中T细胞互作的重塑与代谢通路异常在癌症恶性进展中的作用,为新型乳腺癌抗癌疗法提供线索。 展开更多
关键词 乳腺癌 微环境重塑 异常代谢 T细胞互作
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