欢迎登录材料期刊网

材料期刊网

高级检索

报道了提高孔洞结构压电驻极体膜压电活性的新方法.该方法是在对已膨化处理的压电驻极体薄膜再进行一次膨化处理,通过调节薄膜的力学性能来进一步优化材料的压电活性.结果表明,将聚丙烯(PP)压电驻极体薄膜进行二次膨化处理后,其压电活性比一次膨化的:PP薄膜提高约40%.这是因为薄膜在真空蒸镀电极过程中导致的厚度减小能够通过二次膨化工艺得到恢复,而厚度的增加可以有效地降低材料的杨氏模量,从而使薄膜的压电系数d33增加;两次膨化温度对压电系数d33均有影响,并且相互联系;通过选择合理的一次和二次膨化工艺参数(例如100℃和45℃)能够获得稳定的高压电系数压电驻极体膜.

参考文献

[1] Paajanen M.;Gerhard-Multhaupt R.;Wegener M. .Understanding the role of the gas in the voids during corona charging of cellular electret films - a way to enhance their piezoelectricity[J].Journal of Physics, D. Applied Physics: A Europhysics Journal,2001(16):2482-2488.
[2] Zhang X;Hillenbrand J;Sessler GM .Piezoelectric d(33) coefficient of cellular polypropylene subjected to expansion by pressure treatment[J].Applied physics letters,2004(7):1226-1228.
[3] 张鹏锋,夏钟福,邱勋林,吴贤勇.聚丙烯蜂窝膜驻极体压电系数的测量及压电性的改善[J].物理学报,2005(01):397-401.
[4] 张晓青,夏钟福,邱勋林,王飞鹏,安振连.孔洞结构聚合物驻极体的储电性和压电性[C].四川大学学报(自然科学版)(第十一届全国电介质物理、材料与应用学术会议:论文专辑),2005:23-28.
[5] Paajanen M;Minkkinen H;Raukola J.Gas diffusion expansion-increased thickness and enhanced electromechanical response of cellular polymer electret films[A].New York:IEEE Press,2002:191.
[6] Hillenbrand J;Zhang X;Zhang Y.Pressure-treated cellular polypropylene with large piezoelectric coefficients[A].New York:IEEE Press,2003:40.
[7] Wegener M;Wirges W;Fohlmeister J et al.Two-step inflation of cellular polypropylene films:void-thickness increase and enhanced electromechanical properties[J].Journal of Physics D:Applied Physics,2004,37:623.
[8] Wegener M;Wirges W;Gerhard-Multhaupt R et al.Controlled inflation of voids in cellular polymer ferroelectrets:optimizing electromechanical transducer properties[J].Applied Physics Letters,2004,84:392.
[9] Lindner M;Hoislbauer H;Schw(o)diauer R et al.Charged cellular polymers with"ferroelectretic"behavior[J].IEEE Transactions on Dielectrics and Electrical Insulation,2004,11:255.
[10] Sessler G M.Electrets[M].Laplacian Press,1999
[11] Kressmann R .Linear and nonlinear piezoelectric response of charged cellular polypropylene[J].Journal of Applied Physics,2001,90:3489.
[12] Hillenbrand J;Sessler G M .Quasistatic and dynamic piezoelectric coefficients of polymer foams and polymer film systems[J].IEEE Transactions on Dielectrics and Electrical Insulation,2004,11:72.
[13] Gibson L J;Ashby M F.Cellular Solid:Structure and Properties[M].Cambridge:Cambridge University Press,1997
[14] Sessler G M;Hillenbrand J .Electromechanical response of cellular electret films[J].Applied Physics Letters,1999,75:3405.
[15] Hillenbrand J;Sessler G M;Xiaoqing Zhang .Vefification of a model for the piezoelectric d33 coefficient of cellularelectret films[J].Journal of Applied Physics,2005,98:064105.
[16] Zhang XQ;Sessler GM;Hillenbrand J .Improvement of piezoelectric coefficient of cellular polypropylene films by repeated expansions[J].Journal of Electrostatics,2007(2):94-100.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%