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Analysis of thermal management and anti-mechanical abuse of multi-functional battery modules based on magneto-sensitive shear thickening fluid
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作者 Yang XIONG Bo LU +1 位作者 Yicheng SONG Junqian ZHANG 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2024年第3期529-542,共14页
Electric vehicles(EVs)have garnered significant attention as a vital driver of economic growth and environmental sustainability.Nevertheless,ensuring the safety of high-energy batteries is now a top priority that cann... Electric vehicles(EVs)have garnered significant attention as a vital driver of economic growth and environmental sustainability.Nevertheless,ensuring the safety of high-energy batteries is now a top priority that cannot be overlooked during large-scale applications.This paper proposes an innovative active protection and cooling integrated battery module using smart materials,magneto-sensitive shear thickening fluid(MSTF),which is specifically designed to address safety threats posed by lithium-ion batteries(LIBs)exposed to harsh mechanical and environmental conditions.The theoretical framework introduces a novel approach for harnessing the smoothed-particle hydrodynamics(SPH)methodology that incorporates the intricate interplay of non-Newtonian fluid behavior,capturing the fluid-structure coupling inherent to the MSTF.This approach is further advanced by adopting an enhanced Herschel-Bulkley(H-B)model to encapsulate the intricate rheology of the MSTF under the influence of the magnetorheological effect(MRE)and shear thickening(ST)behavior.Numerical simulation results show that in the case of cooling,the MSTF is an effective cooling medium for rapidly reducing the temperature.In terms of mechanical abuse,the MSTF solidifies through actively applying the magnetic field during mechanical compression and impact within the battery module,resulting in 66%and 61.7%reductions in the maximum stress within the battery jellyroll,and 31.1%and 23%reductions in the reaction force,respectively.This mechanism effectively lowers the risk of short-circuit failure.The groundbreaking concepts unveiled in this paper for active protection battery modules are anticipated to be a valuable technological breakthrough in the areas of EV safety and lightweight/integrated design. 展开更多
关键词 magneto-sensitive shear thickening fluid(MSTF) battery module impact protection temperature control integrated design
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SiO_(2)/聚乙二醇200/碳纳米管剪切增稠液浸渍芳纶织物及其复合材料防刺性能
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作者 贾笑娅 王蕊宁 孙润军 《纺织学报》 EI CAS CSCD 北大核心 2024年第4期151-159,共9页
为优化高性能织物的防刺性能,采用SiO 2和不同长径比的多壁碳纳米管(MWCNTs)制备多相剪切增稠液(MSTFs),研究MWCNTs的长径比与添加量对剪切增稠液流变性能的影响及MSTFs芳纶复合织物的防刺性能。之后将MSTFs复合织物与碳化硅/聚氨酯(SiC... 为优化高性能织物的防刺性能,采用SiO 2和不同长径比的多壁碳纳米管(MWCNTs)制备多相剪切增稠液(MSTFs),研究MWCNTs的长径比与添加量对剪切增稠液流变性能的影响及MSTFs芳纶复合织物的防刺性能。之后将MSTFs复合织物与碳化硅/聚氨酯(SiC/TPU)涂层织物叠层制备双层防刺复合材料,探究叠层顺序对层合复合材料抗穿刺性能的影响。结果得出:长径比较大的碳纳米管对提高剪切增稠液(STF)的增稠效果更优;随着碳纳米管含量的增加,剪切增稠效果逐渐增强。实验结果表明:MSTFs(0.4%MWCNTs-A)浸渍芳纶织物的最大穿刺载荷较纯STF浸渍芳纶织物提高154.33%;不同叠层结构中以剪切增稠液浸渍织物为面层、SiC/TPU涂层织物为背层的双层复合织物表现出更优的防刺性能。 展开更多
关键词 多壁碳纳米管 多相剪切增稠液 流变 叠层结构 防刺复合材料 芳纶织物
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第三组分对纳米二氧化硅STF体系性能的影响
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作者 安超 范业萌 +1 位作者 孙蕴涵 贾清秀 《北京服装学院学报(自然科学版)》 CAS 北大核心 2020年第2期46-52,共7页
通过添加纳米纤维素(CNF)、氧化石墨烯(GO)或多壁碳纳米管(MWNT)制备了基于纳米二氧化硅的多相剪切增稠液体(STF)。对制得的多相STF体系进行了红外光谱、扫描电子显微镜和流变性能表征。结果表明:CNF由于分散尺度小和提供大量氢键的原因... 通过添加纳米纤维素(CNF)、氧化石墨烯(GO)或多壁碳纳米管(MWNT)制备了基于纳米二氧化硅的多相剪切增稠液体(STF)。对制得的多相STF体系进行了红外光谱、扫描电子显微镜和流变性能表征。结果表明:CNF由于分散尺度小和提供大量氢键的原因,可以增强纳米二氧化硅STF体系的综合性能,包括稳态流变表征下的临界剪切速率降低和最大增稠黏度增大,动态流变表征下的模量增强响应提前。GO和MWNT的加入则会使STF的性能降低。CNF的增强效果出现先增大后减小的趋势,最佳用量的质量分数为0.2%~0.3%。 展开更多
关键词 纳米二氧化硅 多相剪切增稠液体 流变性能 第三组分
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