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Enhancement of adhesion between copper and vinyl ester in glass fiber-vinyl ester composites
The paper describes surface treatment methods to improve adhesion between copper and vinyl ester in glass fiber-vinyl ester composites. Surface treatment methods were developed for commercially available copper that was optimized for epoxies and adhesion performance was compared based on 90° peel st...
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Published in: | Composite interfaces 2007-01, Vol.14 (2), p.99-116 |
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container_title | Composite interfaces |
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creator | Obaid, A. Abu Gokce, A. Yarlagadda, S. Advani, S. G. |
description | The paper describes surface treatment methods to improve adhesion between copper and vinyl ester in glass fiber-vinyl ester composites. Surface treatment methods were developed for commercially available copper that was optimized for epoxies and adhesion performance was compared based on 90° peel strength measurements. Four surface treatments for copper were tested: (i) co-cured Epon/vinyl ester; (ii) fully cured Epon; (iii) epoxy film adhesive; and (iv) γ-MPS silane along with two baseline systems: copper/vinyl ester and copper/epoxy. Measured average peel strengths for the surface treatments were 21%, 101%, 110% and 91% of the baseline copper/vinyl ester system, respectively. Compared to the copper/epoxy system, fully cured Epon, epoxy film adhesive and the silane treatment generated comparable adhesion between copper and vinyl ester. For all samples tested, mixed cohesive/adhesive failure modes were observed. Overall, the surface treatment with the silane coupling agent is the most appropriate method for obtaining comparable and uniform performance compared to copper/glass fiber/epoxy system (FR4 materials). |
doi_str_mv | 10.1163/156855407779819008 |
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Abu ; Gokce, A. ; Yarlagadda, S. ; Advani, S. G.</creator><creatorcontrib>Obaid, A. Abu ; Gokce, A. ; Yarlagadda, S. ; Advani, S. G.</creatorcontrib><description>The paper describes surface treatment methods to improve adhesion between copper and vinyl ester in glass fiber-vinyl ester composites. Surface treatment methods were developed for commercially available copper that was optimized for epoxies and adhesion performance was compared based on 90° peel strength measurements. Four surface treatments for copper were tested: (i) co-cured Epon/vinyl ester; (ii) fully cured Epon; (iii) epoxy film adhesive; and (iv) γ-MPS silane along with two baseline systems: copper/vinyl ester and copper/epoxy. Measured average peel strengths for the surface treatments were 21%, 101%, 110% and 91% of the baseline copper/vinyl ester system, respectively. Compared to the copper/epoxy system, fully cured Epon, epoxy film adhesive and the silane treatment generated comparable adhesion between copper and vinyl ester. For all samples tested, mixed cohesive/adhesive failure modes were observed. 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Compared to the copper/epoxy system, fully cured Epon, epoxy film adhesive and the silane treatment generated comparable adhesion between copper and vinyl ester. For all samples tested, mixed cohesive/adhesive failure modes were observed. 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G.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Enhancement of adhesion between copper and vinyl ester in glass fiber-vinyl ester composites</atitle><jtitle>Composite interfaces</jtitle><date>2007-01-01</date><risdate>2007</risdate><volume>14</volume><issue>2</issue><spage>99</spage><epage>116</epage><pages>99-116</pages><issn>0927-6440</issn><eissn>1568-5543</eissn><abstract>The paper describes surface treatment methods to improve adhesion between copper and vinyl ester in glass fiber-vinyl ester composites. Surface treatment methods were developed for commercially available copper that was optimized for epoxies and adhesion performance was compared based on 90° peel strength measurements. Four surface treatments for copper were tested: (i) co-cured Epon/vinyl ester; (ii) fully cured Epon; (iii) epoxy film adhesive; and (iv) γ-MPS silane along with two baseline systems: copper/vinyl ester and copper/epoxy. 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source | Taylor and Francis:Jisc Collections:Taylor and Francis Read and Publish Agreement 2024-2025:Science and Technology Collection (Reading list) |
subjects | GLASS FIBER/VINYL ESTER PEEL STRENGTH SURFACE TREATMENT OF COPPER |
title | Enhancement of adhesion between copper and vinyl ester in glass fiber-vinyl ester composites |
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