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Ultralight and hyperelastic SiC nanofiber aerogel spring for personal thermal energy regulation 被引量:5
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作者 Limeng SONG Bingbing FAN +7 位作者 Yongqiang CHEN Qiancheng GAO Zhe LI Hailong WANG Xinyue ZHANG Li GUAN Hongxia LI Rui ZHANG 《Journal of Advanced Ceramics》 SCIE EI CAS CSCD 2022年第8期1235-1248,共14页
Multifunctionalization is the development direction of personal thermal energy regulation equipment in the future.However,it is still a huge challenge to effectively integrate multiple functionalities into one materia... Multifunctionalization is the development direction of personal thermal energy regulation equipment in the future.However,it is still a huge challenge to effectively integrate multiple functionalities into one material.In this study,a simple thermochemical process was used to prepare a multifunctional SiC nanofiber aerogel spring(SiC NFAS),which exhibited ultralow density(9 mg/cm3),ultralow thermal conductivity(0.029 W/(m·K)at 20℃),excellent ablation and oxidation resistance,and a stable three-dimensional(3D)structure that composed of a large number of interlacing 3C-SiC nanofibers with diameters of 300–500 nm and lengths in tens to hundreds of microns.Furthermore,the as-prepared SiC NFAS displayed excellent mechanical properties,with a permanent deformation of only 1.3%at 20℃after 1000 cycles.Remarkably,the SiC NFAS exhibited robust hyperelasticity and cyclic fatigue resistance at both low(~-196℃)and high(~700℃)temperatures.Due to its exceptional thermal insulation performance,the SiC NFAS can be used for personal thermal energy regulation.The results of the study conclusively show that the SiC NFAS is a multifunctional material and has potential insulation applications in both low-and high-temperature environments. 展开更多
关键词 sic nanofiber aerogel spring(sic NFAS) mechanical property thermal insulation personal thermal energy regulation
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弹簧钢55SiCr氧化与脱碳特性的研究 被引量:25
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作者 曹安然 李玉芳 +1 位作者 王剑 韩茂栋 《金属热处理》 CAS CSCD 北大核心 2010年第9期51-55,共5页
用光学金相、显微硬度、扫描电子显微镜(SEM)等测试方法研究加热温度、冷却方式对弹簧钢55S iCr的氧化与脱碳行为的影响。结果表明,随着温度的升高,氧化失重率呈上升趋势;随着温度的升高全脱碳层深度增大,在950℃以下,于800℃时达到最大... 用光学金相、显微硬度、扫描电子显微镜(SEM)等测试方法研究加热温度、冷却方式对弹簧钢55S iCr的氧化与脱碳行为的影响。结果表明,随着温度的升高,氧化失重率呈上升趋势;随着温度的升高全脱碳层深度增大,在950℃以下,于800℃时达到最大值,950℃以上呈直线上升;相同条件下,冷却速度越小,该弹簧钢的脱碳与氧化越严重,氧化层与基体结合强度越大,钢铁除鳞愈难。 展开更多
关键词 55sicr弹簧钢 氧化 脱碳
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