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    • 2. 发明授权
    • Method and apparatus for evaluation and improvement of mechanical and thermal properties of CNT/CNF arrays
    • 用于评估和改进CNT / CNF阵列的机械和热性能的方法和装置
    • US08048688B2
    • 2011-11-01
    • US11618441
    • 2006-12-29
    • Ephraim SuhirYuan XuYi Zhang
    • Ephraim SuhirYuan XuYi Zhang
    • H01L21/66
    • G01N3/08B82Y30/00G01N2203/028H01L2924/01006H01L2924/01013H01L2924/01027H01L2924/01029H01L2924/01042H01L2924/14
    • A method and apparatus for the evaluation and improvement of the mechanical and thermal properties of carbon-nanotube (CNT) and carbon nanofiber (CNF) arrays grown on a substrate is disclosed. The Young's modulus of a CNT/CNF material is measured by applying an axial compressive force on the CNT/CNF array and measuring the applied forces and the induced displacements. Also disclosed are the evaluation of the nonlinear stress-strain relationship of the CNT/CNF material, increasing of the Young's modulus and decreasing the thermal resistance by application of a compressive load, the application of rapid thermal annealing to improve the quality of the CNT/CNF material and to reduce the interfacial thermal resistance, improvement of the bonding strength of the CNT/CNF array to a substrate, evaluation of the bonding strength of the CNT/CNF array to a substrate, evaluation of the shearing force at failure, and an analytical stress model that enables one to predict the interfacial shearing stress from the measured force.
    • 公开了一种用于评价和改善在衬底上生长的碳纳米管(CNT)和碳纳米纤维(CNF)阵列的机械和热性质的方法和装置。 CNT / CNF材料的杨氏模量通过在CNT / CNF阵列上施加轴向压力并测量所施加的力和诱发的位移来测量。 还公开了CNT / CNF材料的非线性应力 - 应变关系的评估,通过施加压缩载荷提高杨氏模量和降低热阻,应用快速热退火来提高CNT / CNF材料并降低界面热阻,改善CNT / CNF阵列与基片的结合强度,评估CNT / CNF阵列与基片的接合强度,评估破坏时的剪切力,以及 分析应力模型,可以从测量的力量预测界面剪切应力。
    • 3. 发明申请
    • Method and Apparatus for Evaluation and Improvement of Mechanical and Thermal Properties of CNT/CNF Arrays
    • 用于评估和改进CNT / CNF阵列的机械和热性能的方法和装置
    • US20080096293A1
    • 2008-04-24
    • US11618441
    • 2006-12-29
    • Ephraim SuhirYuan XuYi Zhang
    • Ephraim SuhirYuan XuYi Zhang
    • H01L21/66
    • G01N3/08B82Y30/00G01N2203/028H01L2924/01006H01L2924/01013H01L2924/01027H01L2924/01029H01L2924/01042H01L2924/14
    • A method and apparatus for the evaluation and improvement of the mechanical and thermal properties of carbon-nanotube (CNT) and carbon nanofiber (CNF) arrays grown on a substrate is disclosed. The Young's modulus of a CNT/CNF material is measured by applying an axial compressive force on the CNT/CNF array and measuring the applied forces and the induced displacements. Also disclosed are the evaluation of the nonlinear stress-strain relationship of the CNT/CNF material, increasing of the Young's modulus and decreasing the thermal resistance by application of a compressive load, the application of rapid thermal annealing to improve the quality of the CNT/CNF material and to reduce the interfacial thermal resistance, improvement of the bonding strength of the CNT/CNF array to a substrate, evaluation of the bonding strength of the CNT/CNF array to a substrate, evaluation of the shearing force at failure, and an analytical stress model that enables one to predict the interfacial shearing stress from the measured force.
    • 公开了一种用于评价和改善在衬底上生长的碳纳米管(CNT)和碳纳米纤维(CNF)阵列的机械和热性质的方法和装置。 CNT / CNF材料的杨氏模量通过在CNT / CNF阵列上施加轴向压力并测量所施加的力和诱发的位移来测量。 还公开了CNT / CNF材料的非线性应力 - 应变关系的评估,通过施加压缩载荷提高杨氏模量和降低热阻,应用快速热退火来提高CNT / CNF材料并降低界面热阻,改善CNT / CNF阵列与基片的结合强度,评估CNT / CNF阵列与基片的接合强度,评估破坏时的剪切力,以及 分析应力模型,可以从测量的力量预测界面剪切应力。
    • 6. 发明授权
    • Methods and apparatus for imaging with magnetic induction
    • 用磁感应成像的方法和装置
    • US09411033B2
    • 2016-08-09
    • US11913894
    • 2006-05-10
    • Bin HeYuan XuXu Li
    • Bin HeYuan XuXu Li
    • A61B5/05G01R33/48A61B5/00A61B8/00
    • G01R33/4808A61B5/0093A61B8/00
    • An apparatus includes a magnetic energy source to provide a magnetic signal and a detector to detect an acoustic energy signal from a sample stimulated by the magnetic energy signal. A method includes applying a magnetic signal to a biological sample, detecting an acoustic signal from the sample, and processing the acoustic signal to determine the electrical impedance distribution of the sample, and identify disease in the biological sample. A method includes applying a magnetic signal to a sample, detecting a magnetic or electrical signal within the sample, and processing the magnetic or electrical signal to reconstruct electrical impedance distribution of the sample.
    • 一种装置包括提供磁信号的磁能源和用于从由磁能信号刺激的样本中检测声能信号的检测器。 一种方法包括将磁信号应用于生物样品,检测来自样品的声信号,以及处理声信号以确定样品的电阻抗分布,并识别生物样品中的疾病。 一种方法包括对样品施加磁信号,检测样品内的磁信号或电信号,以及处理磁信号或电信号以重建样品的电阻抗分布。