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岩体温度应力效应及差异性风化对赤水丹霞的破坏作用 被引量:4
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作者 冷洋洋 罗炳佳 +1 位作者 张磊 杨亮 《贵州地质》 2017年第2期123-127,共5页
赤水市丹霞地貌作为世界自然遗产地及国家地质公园,拥有着全国面积最大和最具典型代表的丹霞地貌资源。研究发现作为赤水市典型景观的丹霞地貌,一直因风化剥蚀和重力崩塌作用而发生不同程度的破坏。本文从岩体温度应力效应和差异性风化... 赤水市丹霞地貌作为世界自然遗产地及国家地质公园,拥有着全国面积最大和最具典型代表的丹霞地貌资源。研究发现作为赤水市典型景观的丹霞地貌,一直因风化剥蚀和重力崩塌作用而发生不同程度的破坏。本文从岩体温度应力效应和差异性风化两方面进行定量定性分析赤水丹霞地貌受损机制,经计算,温度应力效应导致赤水嘉定群砂岩岩体产生的剥落主要发生在岩体立面0.12 m范围内;差异风化形成倒岩腔,会发生倾倒破坏景观。 展开更多
关键词 赤水 丹霞 温度应力效应 差异性风化
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乙烯-四氟乙烯薄膜徐变特性的试验分析
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作者 李一坡 胡建辉 +2 位作者 陈务军 阴悦 杨德庆 《上海交通大学学报》 EI CAS CSCD 北大核心 2018年第2期147-151,共5页
对12组250μm厚的乙烯-四氟乙烯(ETFE)薄膜在40~80℃时进行了不同温度和应力下的徐变试验.对试验数据进行对数拟合,分析了拟合参数随试验条件的变化规律,得出考虑加载应力和温度的函数关系式,用以描述ETFE薄膜在不同温度和应力下的徐变... 对12组250μm厚的乙烯-四氟乙烯(ETFE)薄膜在40~80℃时进行了不同温度和应力下的徐变试验.对试验数据进行对数拟合,分析了拟合参数随试验条件的变化规律,得出考虑加载应力和温度的函数关系式,用以描述ETFE薄膜在不同温度和应力下的徐变性能.该函数关系式对后续分析ETFE薄膜力学性能和长期荷载作用下的结构性能有重要作用.试验和分析结果表明,ETFE薄膜的徐变量随加载应力的增大和温度的升高而明显增大,且呈非线性关系;温度小于40℃且应力小于6MPa时,材料的徐变量较小且增加缓慢;40℃以上或较高应力状态下,徐变显著. 展开更多
关键词 乙烯-四氟乙烯薄膜 徐变特性 温度应力效应
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硅基TPMS集成传感器研究 被引量:3
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作者 张兆华 刘兵武 +3 位作者 张艳红 谭智敏 林惠旺 刘理天 《传感技术学报》 CAS CSCD 北大核心 2006年第05B期1815-1817,共3页
本文介绍了一种应用于轮胎压力监测系统(TPMS)的传感器芯片的设计与制作.该传感器芯片集成了压阻式压力传感器和单电阻结构的温度传感器,根据量程需要,硅杯膜的厚度与面积比比较大,所以高应力区向膜外扩展,通过改变桥臂电阻的摆放位置... 本文介绍了一种应用于轮胎压力监测系统(TPMS)的传感器芯片的设计与制作.该传感器芯片集成了压阻式压力传感器和单电阻结构的温度传感器,根据量程需要,硅杯膜的厚度与面积比比较大,所以高应力区向膜外扩展,通过改变桥臂电阻的摆放位置和形状,提高了传感器的灵敏度,并且通过采取高浓度注入电阻拐角区域,得到了较好的零点输出. 展开更多
关键词 TPMS、压力传感器、温度传感器、压阻效应应力分布
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Fracture properties of epoxy asphalt mixture based on extended finite element method 被引量:7
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作者 钱振东 胡靖 《Journal of Central South University》 SCIE EI CAS 2012年第11期3335-3341,共7页
Crack is found to be a major distress that affects the performance of the epoxy asphalt pavement.An extended finite element method was proposed for investigating the fracture properties of the epoxy asphalt mixture.Fi... Crack is found to be a major distress that affects the performance of the epoxy asphalt pavement.An extended finite element method was proposed for investigating the fracture properties of the epoxy asphalt mixture.Firstly,the single-edge notched beam test was used to analyze the temperature effect and calculate the material parameters.Then,the mechanical responses were studied using numerical analysis.It is concluded that 5℃ can be selected as the critical temperature that affects the fracture properties,and numerical simulations indicate that crack propagation is found to significantly affect the stress state of the epoxy asphalt mixture.The maximum principal stress at the crack surface exhibits different trends at various temperatures.Numerical solution of stress intensity factor can well meet the theoretical solution,especially when the temperature is lower than 5℃. 展开更多
关键词 epoxy asphalt mixture MICROSTRUCTURE extended finite element method fracture morphology mechanical response
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Exploring the Low-Temperature Oxidation Chemistry of Cyclohexane in a Jet-Stirred Reactor:an Experimental and Kinetic Modeling Study 被引量:3
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作者 Jia-biao Zou Wei Li +4 位作者 Li-li Ye Xiao-yuan Zhang Yu-yang Li Jiu-zhong Yang Fei Qi 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2018年第4期537-546,615,共11页
We report the investigation on the low-temperature oxidation of cyclohexane in a jet-stirred reactor over 500-742 K. Synchrotron vacuum ultraviolet photoionization mass spectrometry (SVUV-PIMS) was used for identify... We report the investigation on the low-temperature oxidation of cyclohexane in a jet-stirred reactor over 500-742 K. Synchrotron vacuum ultraviolet photoionization mass spectrometry (SVUV-PIMS) was used for identifying and quantifying the oxidation species. Major products, cyclic olefins, and oxygenated products including reactive hydroperoxides and high oxygen compounds were detected. Compared with n-alkanes, a narrow low-temperature window (-80 K) was observed in the low-temperature oxidation of cyclohexane. Besides, a kinetic model for cyclohexane oxidation was developed based on the CNRS model [Combust. Flame 160, 2319 (2013)], which can better capture the experimental results than previous models. Based on the modeling analysis, the 1,5-H shift dominates the crucial isomerization steps of the first and second O2 addition products in the low-temperature chain branching process of cyclohexane. The negative temperature coefficient behavior of cyclohexane oxidation results from the reduced chain branching due to the competition from chain inhibition and propagation reactions, i.e. the reaction between cyclohexyl radical and O2 and the de- composition of cyclohexylperoxy radical, both producing cyclohexene and HO2 radical, as well as the decomposition of cyclohexylhydroperoxy radical producing hex-5-en-l-al and OH radical. 展开更多
关键词 CYCLOHEXANE Low-temperature oxidation Synchrotron vacuum ultravioletphotoionization mass spectrometry Kinetic rnodel Negative temperature coefficient behavior
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Modeling of growth stress gradient effect on the oxidation rate at high temperature 被引量:2
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作者 Fan YANG Bin LIU Dai-ning FANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2010年第10期789-793,共5页
A new oxidation kinetics model is established for high-temperature oxidation. We assume that the interface reaction is fast enough and the oxidation rate is controlled by diffusion process at high temperature. By intr... A new oxidation kinetics model is established for high-temperature oxidation. We assume that the interface reaction is fast enough and the oxidation rate is controlled by diffusion process at high temperature. By introducing the growth stress gradient we modify the classical oxidation parabolic law. The modified factor of the oxidation rate constant is a function of growth strain, environment oxygen concentration, and temperature. The modeling results show that the stress gradient effect on the oxidation rate cannot be ignored. Growth strain will dominate whether the stress gradient effect promotes or slows down the oxidation process. The stress gradient effect becomes weaker at higher temperature. This effect is amplified at higher concentrations of environmental oxygen. Applied mechanical loads do not affect the oxidation rate. This model is available for high temperature oxidation of metals and alloys. 展开更多
关键词 High temperature MODELING Growth stress gradient Oxidation rate
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