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13篇 您的检索式:作者名="Liu Danwei"
    题名 作者 年代 出处 被引量
1Adaptive Walking Control of Biped Robots Using Online Trajectory Genera- tion Method Based on Neural Oscillators显示文摘Chengju Liu Danwei Wang Erik David Goodman Qijun Chen 2016Journal of Bionic Engineering2016,13,4:5
2Direct ink writing of programmable functional silicone-based composites for 4D printing applications显示文摘Polydimethylsiloxane(PDMS)has been widely used in flexible electronics,soft robotics,and bioelectronics.However,the fabrication of PDMS-based devices has mostly relied on conventional approaches,such as casting and molding,thereby limiting their potential.Here we fabricate PDMS-based composites with programmable microstructures by direct ink writing and realize their practical functionalities of four-dimensional(4D)printing.The mechanical,thermomechanical and magnetic properties of the three-dimensional-printed composites can be well tailored by using carbon,metal,or ceramic functional fillers.By taking advantage of the printable,flexible,and magnetic PDMS composites,we demonstrate new practical functionalities of 4D printing by designing programmable architectures,including magnetic-field-driven battery cases and patchworks,as well as arbitrary morphing ceramic structures.In particular,4D-printed batteries are constructed by PDMS-based battery cases for the first time,which can be actuated via external magnetic field.This study broadens the paradigm of 4D printing for prospective applications,such as implant batteries,biomimetic engineering,and customized biomedical devices.Zhiyang Lyu J.ustin Koh Gwendolyn J.H.Lim Danwei Zhang Ting Xiong Lei Zhang Siqi Liu Junfei Duan Jun Ding John Wang Jinlan Wang Yunfei Chen Chaobin He 2022Interdisciplinary Materials2022,1,4:2
3A ZVS bi-directional DC-DC converter for multiple energy storage elements显示文摘LIU Danwei LI Hui 0,,05:1
4A ZVS bi-directional DC-DC converter for multiple energy storage elements显示文摘Liu Danwei Li Hui 2006IEEE Transactions on Power Electronics2006,21,5:1
5A Small-Molecule Inhibitor of Tgf-β Signaling Replaces Sox2 in Reprogramming by Inducing Nanog显示文摘Justin K. Ichida Joel Blanchard Kelvin Lam Esther Y. Son Julia E. Chung Dieter Egli Kyle M. Loh Ava C. Carter Francesco P. Di Giorgio Kathryn Koszka Danwei Huangfu Hidenori Akutsu David R. Liu Lee L. Rubin Kevin Eggan 2009Cell Stem Cell2009,,:1
6A ZVS bi-directional DC-DC converter for multiple energy storage elements显示文摘LIU Danwei LI Hui 2006IEEE Transactions on Power Electronics2006,21,5:1
7A ZVS bi-directional DC-DC converter for multiple energy storage elements显示文摘Liu Danwei Li Hui 2006IEEE Transactions on Power Electronics2006,21,5:1
8A Small-Molecule Inhibitor of Tgf-β Signaling Replaces Sox2 in Reprogramming by Inducing Nanog显示文摘Justin K. Ichida Joel Blanchard Kelvin Lam Esther Y. Son Julia E. Chung Dieter Egli Kyle M. Loh Ava C. Carter Francesco P. Di Giorgio Kathryn Koszka Danwei Huangfu Hidenori Akutsu David R. Liu Lee L. Rubin Kevin Eggan 2009Cell Stem Cell2009,,5:1
9A ZVS Bi-directional DC-DC converter for Muhiple Energy Storage Elements 显示文摘Liu Danwei Li Hui 2006IEEE Transactions on Power Electronics2006,21,5:1
10A ZVS bi-directional DC-DC converter for multipleenergy storage elements 显示文摘Liu Danwei Li Hui 2006IEEE Transactions on Power Systems2006,21,5:1
11A ZVS Bi-Directional DC - DC Converter for Multiple Energy Storage Elements 显示文摘Liu Danwei Li Hui 2006IEEE Transactions on Power Electronics2006,21,5:1
12A Small-Molecule Inhibitor of Tgf-β Signaling Replaces Sox2 in Reprogramming by Inducing Nanog显示文摘Justin K. Ichida Joel Blanchard Kelvin Lam Esther Y. Son Julia E. Chung Dieter Egli Kyle M. Loh Ava C. Carter Francesco P. Di Giorgio Kathryn Koszka Danwei Huangfu Hidenori Akutsu David R. Liu Lee L. Rubin Kevin Eggan 2009Cell Stem Cell2009,,5:1
13High temperature co-firing of 3D-printed AleZnO/Al_(2)O_(3) multimaterial two-phase flow sensor显示文摘Sensors are crucial in the understanding of machines working under high temperatures and highpressure conditions.Current devices utilize polymeric materials as electrical insulators which pose a challenge in the device's lifespan.Ceramics,on the other hand,is robust and able to withstand high temperature and pressure.For such applications,a co-fired ceramic device which can provide both electrical conductivity and insulation is beneficial and acts as a superior candidate for sensor devices.In this paper,we propose a novel fabrication technique of complex multi-ceramics structures via 3D printing.This fabrication methodology increases both the geometrical complexity and the device's shape precision.Structural ceramics(alumina)was employed as the electrical insulator whilst providing mechanical rigidity while a functional ceramic(alumina-doped zinc oxide)was employed as the electrically conductive material.The addition of sintering additives,tailoring the printing pastes'solid loadings and heat treatment profile resolves multi-materials printing challenges such as shrinkage disparity and densification matching.Through high-temperature co-firing of ceramics(HTCC)technology,dense high quality functional multi-ceramics structures are achieved.The proposed fabrication methodology paves the way for multi-ceramics sensors to be utilized in high temperature and pressure systems in the near future.Danwei Zhang Win Jonhson Tun Seng Herng Xi Xu Xiaojing Liu Liang-ming Pan Hui He Jun Ding 2022Journal of Materiomics2022,8,3:0
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