Effect of surface treatment on the fatigue performance of adhesive/metal interface
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摘要: 對碳鋼表面分別進行硅烷和磷化處理,然后用環氧樹脂膠粘劑粘接.研究了不同表面處理的膠接接頭力學性能,分析了金屬表面處理方法對膠粘劑/金屬界面疲勞性能的影響.在膠接接頭施加疲勞載荷,測量了膠接接頭疲勞前后的強度-位移曲線.對比疲勞前后界面剪切強度的變化,采用斷裂力學理論分析了界面裂紋擴展過程.結果表明:表面經硅烷處理后,界面粘接強度最大,耐疲勞性能最好.膠接接頭的失效通常在界面發生,能量可以通過裂尖擴展釋放,也可以通過粘接層的塑性變形釋放.Abstract: Metal surfaces were treated by silane, phosphate and untreated respectively, and then adhered by epoxy resin. The mechanical properties of the adhesive joints by different treatment methods were investigated and the effect of surface treatment on the fatigue performance of the adhesive/metal interface was analyzed. The stress-strain curves of the adhesive joints were compared before and after fatigue load was applied on the joints. Crack propagation in the interface was discussed on the basis of fracture mechanics. The results show that the fatigue resistance of silane-treated samples is the best and the adhesive strength is the greatest. Adhesion failure always initiates at the interface. Energy can release through propagation of crack tips and also can through plastic deformation of the adhesive layer.
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Key words:
- adhesive joint /
- interface /
- surface pretreatment /
- adhesive performance /
- mechanical properties
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