陈田

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实验师 硕士生导师

招生学科专业:
化学 -- 【招收硕士研究生】 -- 材料科学与技术学院
材料科学与工程 -- 【招收硕士研究生】 -- 材料科学与技术学院
材料与化工 -- 【招收硕士研究生】 -- 材料科学与技术学院

性别:男

毕业院校:南京航空航天大学

学历:南京航空航天大学

学位:工学博士学位

所在单位:材料科学与技术学院

联系方式:chentian@nuaa.edu.cn

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Electromechanical response of polyol-polyurethane blends as dielectric elastomer flexible mirco-actuator material

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所属单位:材料科学与技术学院

发表刊物:JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS

关键字:GRAPHENE OXIDE SOFT ACTUATORS PERFORMANCE COMPOSITES NANOCOMPOSITES STRAIN PERMITTIVITY PERSPECTIVES TRANSPARENT FABRICATION

摘要:A simple, cheap, all-organic process for the fabrication of polyurethane (PU) composites for dielectric elastomer actuators was presented in this paper. This study focused on improving the electromechanical properties of PU matrix with polyol small organic molecule as filler. The dielectric, tensile mechanical, dynamic thermal mechanical, creep, and electric field induced strain properties of a series of polyol-PU blends were described in detail. It was found that the dielectric constant of PU at low frequencies (40-100 Hz) remarkably increased with the addition of polyols and the tensile strength of the PU/polyol blends decreased obviously with an increase in the content of polyol. The polyol-PU all organic composites had better electromechanical response than the pristine PU. Among the PU/glycerol, PU/ethylene glycol, and PU/triethylene glycol blends, PU/glycerol-50% had relatively high dielectric constant of 32.71 (40 Hz), low tensile strength of 16.37 MPa, low loss modulus of 164.24 MPa (-40 A degrees C), high compliance of 9.709 x 10(-5) 1/Pa, and high electric field induced strain of 49.7 (37.4 MV/m). The enhancement of the electric field induced strain was mainly triggered by an increase of the dielectric constant and a decrease of the elastic modulus.

ISSN号:0957-4522

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发表时间:2017-02-01

合写作者:Lin, Minchao,Zhao, Yanzhang,Pan, Lifeng,Tang, Qingping

通讯作者:陈田