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A thermally-cyclized electrospun GO/PAN nanofiber piezoelectric sensor for high-temperature applications
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作者 LI Wei-dong LI Yin-hui +5 位作者 YIN Rong-yan FAN Kai GAO Fei LIANG Jian-guo LI Peng-wei BIAN Gui-bin 《新型炭材料(中英文)》 2025年第5期1154-1168,I0051-I0057,共22页
High-temperature piezoelectric sen-sors are very important in severe environments such as fire safety,aerospace and oil drills,however,most current sensors are not heat res-istant(<300℃)and are fragile,which limit... High-temperature piezoelectric sen-sors are very important in severe environments such as fire safety,aerospace and oil drills,however,most current sensors are not heat res-istant(<300℃)and are fragile,which limits their use,especially in high-temperature environ-ments.A high-temperature resistant flexible piezoelectric film based on graphene oxide(GO)/polyacrylonitrile(PAN)composites was prepared by electrospinning and thermal treat-ment.It was packed into a micro-device,which could work continuously at 500℃.The intro-duction of GO significantly increased the mechanical properties of the PAN nanofibers because the oxygen-containing func-tional groups(electronegative groups)on the surface of the GO initiated a nucleophilic attack on the PAN molecule during heat treatment,enabling the GO to initiate the cyclization of the PAN at lower heat-treatment temperatures.In addition,the abund-ant oxygen-containing functional groups on GO acted as pro-oxidants to hasten the oxidation of PAN during heat treatment.The effects of GO content and heat treatment temperature on the properties of the nanofiber films were investigated.A GO/PAN nanofiber piezoelectric sensor heat-treated at 300℃had a 9.10 V and 2.25μA peak output,which are respectively 101.3%and 78.6%higher than those of the untreated films.Cyclic testing over 5000 cycles at 350℃confirmed the stable out-put performance of the GO/PAN nanofiber piezoelectric sensor.Furthermore,a sensor heat-treated at 400℃had a sensitivity of 1.7 V/N,which is 83.5%higher than that of an untreated one.The results show that the prepared GO/PAN nanofiber piezo-electric sensor combines high temperature resistance,high flexibility,stability and high sensitivity,and may have broad applic-ations in high temperature environments such as the aerospace and petroleum industries. 展开更多
关键词 GO/PAN nanofiber Piezoelectric High-temperature thermal-cyclization Fully flexible
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Study Over Thermal State of Gas Turbine Engine Metal-ceramic Rotor Blades and Nozzle Guide Vanes Under Thermal Shock and Thermal-cyclic Loading Conditions
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作者 A.V.SOUDAREV A.A. SOURYANINOV +4 位作者 V.Ya. PODGORETS V.V.GRISHAEV V.Yu. TIKHOPLAV A.S. MOLCHANOV B.V. SOUDAREV 《Journal of Thermal Science》 SCIE EI CAS CSCD 2004年第2期163-166,共4页
To ensure a reliable operation of the 2.5 MW gas turbine engine (GTE- 2.5) with the inlet gas temperature TIT = 1623 K, studies were performed over the thermal state of the nozzle guide vanes and rotor blades with the... To ensure a reliable operation of the 2.5 MW gas turbine engine (GTE- 2.5) with the inlet gas temperature TIT = 1623 K, studies were performed over the thermal state of the nozzle guide vanes and rotor blades with the temperatures, rates and flows of the working media and cooling air simulating all the potential turbine stage operating duties. The steady state and thermal-cyclic tests having been accomplished, there was no visible defect on the rotor blades and the nozzle vanes. Afterwards, they survived the endurance tests at the rated cooling. Therefore, the functionality of the shell thin-wall hybrid nozzle vanes and rotor blades under the variable operating duties of the gas turbine at the 'shock' and 'cyclic' loads of the working media temperature variations has been demonstrated. 展开更多
关键词 metal-ceramic blades high temperature thermal-cyclic loading
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低温热循环加速非晶合金剪切带在室温的结构弛豫 被引量:1
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作者 魏玉锋 潘杰 +4 位作者 孙永昊 李宁 张诚 汪卫华 柳林 《Science China Materials》 SCIE EI CAS CSCD 2024年第3期974-982,共9页
低温热循环是实现非晶合金结构回春的一种简单有效方法,但某些非晶合金在低温热循环处理后发生弛豫而不是回春.本研究通过在非晶合金中引入剪切带,在同一块样品上获得了不同区域初始能量不同的非晶合金,系统地研究了不同初始状态对低温... 低温热循环是实现非晶合金结构回春的一种简单有效方法,但某些非晶合金在低温热循环处理后发生弛豫而不是回春.本研究通过在非晶合金中引入剪切带,在同一块样品上获得了不同区域初始能量不同的非晶合金,系统地研究了不同初始状态对低温热循环处理效果的影响.研究结果发现,在经过低温热循环处理后,同一试样中的剪切带发生结构弛豫,而基体发生结构回春.类似的双向变化趋势还可以从显微硬度、纳米压痕曲线以及压痕形状的变化上得到验证.经历了100次低温热循环处理后,剪切带和基体的焓和硬度均收敛到一个平衡值.低温热循环能够加速剪切带的结构弛豫,实现了在低温热循环的上限温度上做长时间退火所达不到的状态.文中还采用自由体积模型对实验结果进行分析,阐明了非晶合金的初始状态影响其结构演化方向的机理.本研究为低温热循环处理非晶合金提供了新见解,阐明非晶合金初始状态在其焓变方向上的关键作用. 展开更多
关键词 metallic glasses cryogenic thermal-cycling REJUVENATION RELAXATION energy state
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