The Experts below are selected from a list of 21 Experts worldwide ranked by ideXlab platform

Jia-horng Lin - One of the best experts on this subject based on the ideXlab platform.

  • electromagnetic shielding effectiveness of copper stainless steel polyamide fiber co woven knitted fabric reinforced polypropylene composites
    Journal of Reinforced Plastics and Composites, 2008
    Co-Authors: H C Chen, Jia-horng Lin, K C Lee
    Abstract:

    Copper wire and polyamide filament were used as the core Yarn, and stainless steel wire was used as the wrapping Yarn to fabricate the loop Yarns for knitting structure. The nonwoven selvedge served as the core Yarn, and the conducting wire was used as the wrapping Yarn, to fabricate the weft-Inlaid Yarn. The rotor twister successfully fabricated a series of conductive hybrid Yarns (CHYs). The co-woven-knitted machine successfully fabricated the conductive co-woven-knitted fabrics (CWKFs) with various CHYs. The conducting materials of the hybrid Yarn were copper wire and stainless steel wire, taken as the wrapping and core Yarn, respectively. The conductive co-woven-knitted fabrics were laminated with various angles in four and six layers and then heat pressed to 2 and 3 mm in thickness. This study investigated the surface resistivity, electromagnetic shielding effectiveness (EMSE) and electrostatic discharge (ESD) attenuation percentage of the co-woven-knitted fabrics and CWKFs reinforced composites.

  • Electromagnetic Shielding Effectiveness of Copper/Stainless Steel/Polyamide Fiber Co-Woven-Knitted Fabric Reinforced Polypropylene Composites:
    Journal of Reinforced Plastics and Composites, 2007
    Co-Authors: H C Chen, Jia-horng Lin, K C Lee
    Abstract:

    Copper wire and polyamide filament were used as the core Yarn, and stainless steel wire was used as the wrapping Yarn to fabricate the loop Yarns for knitting structure. The nonwoven selvedge served as the core Yarn, and the conducting wire was used as the wrapping Yarn, to fabricate the weft-Inlaid Yarn. The rotor twister successfully fabricated a series of conductive hybrid Yarns (CHYs). The co-woven-knitted machine successfully fabricated the conductive co-woven-knitted fabrics (CWKFs) with various CHYs. The conducting materials of the hybrid Yarn were copper wire and stainless steel wire, taken as the wrapping and core Yarn, respectively. The conductive co-woven-knitted fabrics were laminated with various angles in four and six layers and then heat pressed to 2 and 3 mm in thickness. This study investigated the surface resistivity, electromagnetic shielding effectiveness (EMSE) and electrostatic discharge (ESD) attenuation percentage of the co-woven-knitted fabrics and CWKFs reinforced composites.

  • electromagnetic and electrostatic shielding properties of co weaving knitting fabrics reinforced composites
    Composites Part A-applied Science and Manufacturing, 2004
    Co-Authors: Hsinchuan Chen, Kueichi Lee, Jia-horng Lin
    Abstract:

    Abstract The rotor twister successfully fabricated a series of hybrid conductive Yarns. Copper wire and polyamide filament were used as the core Yarn, and stainless steel wire was used as the wrapping Yarn to fabricate the loop Yarns for knitting structure. The nonwoven selvedge served as the core Yarn, and the conducting wire was used as the wrapping Yarn, to fabricate the weft-Inlaid Yarn. The co-weaving-knitting machine was used successfully in this study to fabricate the conducting co-weaving-knitting fabrics (CWKFs) with the hybrid Yarn. The conducting materials of the hybrid Yarn were copper wire and stainless steel wire, taken as the wrapping and core Yarn, respectively. The CWKFs were laminated with various angles in four layers, and then were heat pressed for 3 mm in thickness. This study examined the surface resistivity, electromagnetic shielding effectiveness and electrostatic discharge attenuation percentage of the CWKFs reinforced composites.

K C Lee - One of the best experts on this subject based on the ideXlab platform.

  • electromagnetic shielding effectiveness of copper stainless steel polyamide fiber co woven knitted fabric reinforced polypropylene composites
    Journal of Reinforced Plastics and Composites, 2008
    Co-Authors: H C Chen, Jia-horng Lin, K C Lee
    Abstract:

    Copper wire and polyamide filament were used as the core Yarn, and stainless steel wire was used as the wrapping Yarn to fabricate the loop Yarns for knitting structure. The nonwoven selvedge served as the core Yarn, and the conducting wire was used as the wrapping Yarn, to fabricate the weft-Inlaid Yarn. The rotor twister successfully fabricated a series of conductive hybrid Yarns (CHYs). The co-woven-knitted machine successfully fabricated the conductive co-woven-knitted fabrics (CWKFs) with various CHYs. The conducting materials of the hybrid Yarn were copper wire and stainless steel wire, taken as the wrapping and core Yarn, respectively. The conductive co-woven-knitted fabrics were laminated with various angles in four and six layers and then heat pressed to 2 and 3 mm in thickness. This study investigated the surface resistivity, electromagnetic shielding effectiveness (EMSE) and electrostatic discharge (ESD) attenuation percentage of the co-woven-knitted fabrics and CWKFs reinforced composites.

  • Electromagnetic Shielding Effectiveness of Copper/Stainless Steel/Polyamide Fiber Co-Woven-Knitted Fabric Reinforced Polypropylene Composites:
    Journal of Reinforced Plastics and Composites, 2007
    Co-Authors: H C Chen, Jia-horng Lin, K C Lee
    Abstract:

    Copper wire and polyamide filament were used as the core Yarn, and stainless steel wire was used as the wrapping Yarn to fabricate the loop Yarns for knitting structure. The nonwoven selvedge served as the core Yarn, and the conducting wire was used as the wrapping Yarn, to fabricate the weft-Inlaid Yarn. The rotor twister successfully fabricated a series of conductive hybrid Yarns (CHYs). The co-woven-knitted machine successfully fabricated the conductive co-woven-knitted fabrics (CWKFs) with various CHYs. The conducting materials of the hybrid Yarn were copper wire and stainless steel wire, taken as the wrapping and core Yarn, respectively. The conductive co-woven-knitted fabrics were laminated with various angles in four and six layers and then heat pressed to 2 and 3 mm in thickness. This study investigated the surface resistivity, electromagnetic shielding effectiveness (EMSE) and electrostatic discharge (ESD) attenuation percentage of the co-woven-knitted fabrics and CWKFs reinforced composites.

Hsinchuan Chen - One of the best experts on this subject based on the ideXlab platform.

  • electromagnetic and electrostatic shielding properties of co weaving knitting fabrics reinforced composites
    Composites Part A-applied Science and Manufacturing, 2004
    Co-Authors: Hsinchuan Chen, Kueichi Lee, Jia-horng Lin
    Abstract:

    Abstract The rotor twister successfully fabricated a series of hybrid conductive Yarns. Copper wire and polyamide filament were used as the core Yarn, and stainless steel wire was used as the wrapping Yarn to fabricate the loop Yarns for knitting structure. The nonwoven selvedge served as the core Yarn, and the conducting wire was used as the wrapping Yarn, to fabricate the weft-Inlaid Yarn. The co-weaving-knitting machine was used successfully in this study to fabricate the conducting co-weaving-knitting fabrics (CWKFs) with the hybrid Yarn. The conducting materials of the hybrid Yarn were copper wire and stainless steel wire, taken as the wrapping and core Yarn, respectively. The CWKFs were laminated with various angles in four layers, and then were heat pressed for 3 mm in thickness. This study examined the surface resistivity, electromagnetic shielding effectiveness and electrostatic discharge attenuation percentage of the CWKFs reinforced composites.

H C Chen - One of the best experts on this subject based on the ideXlab platform.

  • electromagnetic shielding effectiveness of copper stainless steel polyamide fiber co woven knitted fabric reinforced polypropylene composites
    Journal of Reinforced Plastics and Composites, 2008
    Co-Authors: H C Chen, Jia-horng Lin, K C Lee
    Abstract:

    Copper wire and polyamide filament were used as the core Yarn, and stainless steel wire was used as the wrapping Yarn to fabricate the loop Yarns for knitting structure. The nonwoven selvedge served as the core Yarn, and the conducting wire was used as the wrapping Yarn, to fabricate the weft-Inlaid Yarn. The rotor twister successfully fabricated a series of conductive hybrid Yarns (CHYs). The co-woven-knitted machine successfully fabricated the conductive co-woven-knitted fabrics (CWKFs) with various CHYs. The conducting materials of the hybrid Yarn were copper wire and stainless steel wire, taken as the wrapping and core Yarn, respectively. The conductive co-woven-knitted fabrics were laminated with various angles in four and six layers and then heat pressed to 2 and 3 mm in thickness. This study investigated the surface resistivity, electromagnetic shielding effectiveness (EMSE) and electrostatic discharge (ESD) attenuation percentage of the co-woven-knitted fabrics and CWKFs reinforced composites.

  • Electromagnetic Shielding Effectiveness of Copper/Stainless Steel/Polyamide Fiber Co-Woven-Knitted Fabric Reinforced Polypropylene Composites:
    Journal of Reinforced Plastics and Composites, 2007
    Co-Authors: H C Chen, Jia-horng Lin, K C Lee
    Abstract:

    Copper wire and polyamide filament were used as the core Yarn, and stainless steel wire was used as the wrapping Yarn to fabricate the loop Yarns for knitting structure. The nonwoven selvedge served as the core Yarn, and the conducting wire was used as the wrapping Yarn, to fabricate the weft-Inlaid Yarn. The rotor twister successfully fabricated a series of conductive hybrid Yarns (CHYs). The co-woven-knitted machine successfully fabricated the conductive co-woven-knitted fabrics (CWKFs) with various CHYs. The conducting materials of the hybrid Yarn were copper wire and stainless steel wire, taken as the wrapping and core Yarn, respectively. The conductive co-woven-knitted fabrics were laminated with various angles in four and six layers and then heat pressed to 2 and 3 mm in thickness. This study investigated the surface resistivity, electromagnetic shielding effectiveness (EMSE) and electrostatic discharge (ESD) attenuation percentage of the co-woven-knitted fabrics and CWKFs reinforced composites.

Kueichi Lee - One of the best experts on this subject based on the ideXlab platform.

  • electromagnetic and electrostatic shielding properties of co weaving knitting fabrics reinforced composites
    Composites Part A-applied Science and Manufacturing, 2004
    Co-Authors: Hsinchuan Chen, Kueichi Lee, Jia-horng Lin
    Abstract:

    Abstract The rotor twister successfully fabricated a series of hybrid conductive Yarns. Copper wire and polyamide filament were used as the core Yarn, and stainless steel wire was used as the wrapping Yarn to fabricate the loop Yarns for knitting structure. The nonwoven selvedge served as the core Yarn, and the conducting wire was used as the wrapping Yarn, to fabricate the weft-Inlaid Yarn. The co-weaving-knitting machine was used successfully in this study to fabricate the conducting co-weaving-knitting fabrics (CWKFs) with the hybrid Yarn. The conducting materials of the hybrid Yarn were copper wire and stainless steel wire, taken as the wrapping and core Yarn, respectively. The CWKFs were laminated with various angles in four layers, and then were heat pressed for 3 mm in thickness. This study examined the surface resistivity, electromagnetic shielding effectiveness and electrostatic discharge attenuation percentage of the CWKFs reinforced composites.