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5篇 您的检索式:作者名="DONG LinXi"
    题名 作者 年代 出处 被引量
1Effects of Bias Voltage Polarity on Differential Capacitive Sensitive Devices显示文摘Che Lufeng Xiong Bin Dong Linxi 2004Sensors and Actuators2004,112,23:1
2Effects of Non-Parallel Combs on Reliable Operation Conditions of Capacitive Inertial Sensor for Step and Shock Signals显示文摘Dong Linxi 2005Sensors and Actuators2005,121,2:1
3Effects of Non-Parallel Combs on Reliable Operation Conditions of CapacitiveInertial Sensor for Step and Shock Signals 显示文摘Dong Linxi Chen Jindan Sun Lingling 2005Sensors andActuators A:Physical2005,121,2:1
4Highly sensitive piezoresistive and thermally responsive fibrous networks from the in situ growth of PEDOT on MWCNT-decorated electrospun PU fibers for pressure and temperature sensing显示文摘Flexible electronics have demonstrated various strategies to enhance the sensory ability for tactile perception and wearable physiological monitoring.Fibrous microstructures have attracted much interest because of their excellent mechanical properties and fabricability.Herein,a structurally robust fibrous mat was first fabricated by electrospinning,followed by a sequential process of functionalization utilizing ultrasonication treatment and in situ polymerization growth.Electrospun polyurethane(PU)microfibers were anchored with multi-walled carbon nanotubes(MWCNTs)to form conductive paths along each fiber by a scalable ultrasonic cavitation treatment in an MWCNT suspension.After,a layer of poly(3,4-ethylene dioxythiophene)(PEDOT)was grown on the surface of PU fibers decorated with MWCNTs to enhance the conductive conjunctions of MWCNTs.Due to the superior electromechanical behaviors and mechanical reinforcement of PEDOT,the PEDOT/MWCNT@PU mat-based device exhibits a wide working range(0–70 kPa),high sensitivity(1.6 kPa−1),and good mechanical robustness(over 18,000 cycles).The PEDOT/MWCNT@PU mat-based sensor also demonstrates a good linear response to different temperature variations because of the thermoelectricity of the PEDOT/MWCNT composite.This novel strategy for the fabrication of multifunctional fibrous mats provides a promising opportunity for future applications for high-performance wearable devices.Yunyun Luo Libo Zhao Guoxi Luo Linxi Dong Yong Xia Min Li Ziping Li Kaifei Wang Ryutaro Maeda Zhuangde Jiang 2023Microsystems & Nanoengineering2023,9,5:0
5Constrained multiobjective robust optimization of a bistable mechanism for inertial switch显示文摘This paper proposes an optimization method for finding the optimal design of a bistable mechanism with a desired performance that is robust to structural and material uncertainties.Using interval numbers to characterize the uncertainties in the structural parameters and materials,we present a nonprobabilistic multiobjective optimization model and transform it into a single objective optimization model using a penalty function.The sensitivity of the mechanical performance of bistable structures to uncertain parameters was analyzed,and the design parameters with notable effects on the bistable performance were identified as optimization variables.A neural network-based proxy model for the nonlinear characteristics of the bistable mechanism was established,and its accuracy was validated through finite element outcomes.Based on this model,a two-layer nested genetic algorithm was employed to solve the multiobjective robust optimization problem of the bistable structures with critical forces and a second stable position.The effectiveness of the optimization method was verified by comparing it with the finite element and experimental results.The proposed method was applied in the design of silicon-based inertial switches.LIU Min WANG WeiDong ZHU YingMin YUAN YangBo NIU YanXu DONG LinXi WANG ChenYing JIANG Kyle CHEN GuiMin 2023Science China(Technological Sciences)2023,66,11:0
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