• Optoelectronic Technology
  • Vol. 43, Issue 3, 255 (2023)
Hanqin YUAN1, Qingmu TIE2, Weixian ZHAO3、4, Xumeng QIU3、4, Sai ZHENG3、4, Tiande WU3、4, Chen WANG3、4, and Bin YANG3、4
Author Affiliations
  • 1Military Representative Office of the Naval Equipment Department in Hefei Aera, Hefei 230000, CHN
  • 2National Pilot School of Software, Yunnan University, Kunming 650504, CHN
  • 3The 55th Research Institute of China Electronics Technology Corporation, Nanjing 210016, CHN
  • 4National Flat Panel Display Engineering Technology Research Center, Nanjing 210016, CHN
  • show less
    DOI: 10.19453/j.cnki.1005-488x.2023.03.012 Cite this Article
    Hanqin YUAN, Qingmu TIE, Weixian ZHAO, Xumeng QIU, Sai ZHENG, Tiande WU, Chen WANG, Bin YANG. Research on High Conductive Rubber Based on Multi⁃layered Structure Design for TFT⁃LCD[J]. Optoelectronic Technology, 2023, 43(3): 255 Copy Citation Text show less

    Abstract

    Multi-layered conductive rubber was designed, aiming at the complicated process design of the filling material at the gap opening of the front shell of TFT-LCD. The metal particle filling layer with high conductivity was selected as the conductive surface layer, meanwhile the carbon cloth layer was used to realize the electromagnetic shielding function. Whereas, the flexible silicone rubber was used as the intermediate matrix layer. The synergy of low hardness and high conductivity of conductive rubber was achieved through multi-layered structure. Results showed that when the shore A hardness of silicone rubber was 30, the volume resistivity was 0.01 Ω·cm, which could meet the application requirements of sealing, waterproof and EMI shielding of TFT-LCD.
    Hanqin YUAN, Qingmu TIE, Weixian ZHAO, Xumeng QIU, Sai ZHENG, Tiande WU, Chen WANG, Bin YANG. Research on High Conductive Rubber Based on Multi⁃layered Structure Design for TFT⁃LCD[J]. Optoelectronic Technology, 2023, 43(3): 255
    Download Citation