Abstract

본 연구에서는 시차주사열량계시험, 반응열시험, 접착전단시험을 통해 자가치료제의 열분석 특성과 접착 특성을 평가하였다. 자가치료제는 DCPD와 ENB의 혼합비에 따라 D1E0, D3E1, D1E1, D1E3, D0E1을 고려하였다. 촉매는 Grubbs' catalyst를 자가치료제의 종류에 따라 0.1 wt%에서 1.5 wt%까지 적용하였다. DCPD의 경우는 촉매 양이 많을수록 중합반응이 빠르고 안정화된 접착강도가 높아지지만 많은 양의 촉매가 요구된다. ENB의 경우 촉매와의 반응성이 우수하여 적은 양의 촉매로도 빠른 중합반응을 얻을 수 있지만 반응열이 높게 나타난다. DCPD와 ENB의 혼합비를 변화시키면 자가치료제의 열분석 특성 및 접착 특성을 조절할 수 있으며 본 연구에서 고려한 자가치료제 중 D3E1가 최대접착강도, 최대접착강도에 도달하는 시간, 안정화된 접착강도, 반응열 측면에서 자가치료제로 가장 유리함을 알 수 있다. Thermal analysis properties and adhesive properties of self-healing agents were evaluated through differential scanning calorimetry, reaction heat measurement, and adhesive shear test. D1E0, D3E1, D1E1, D1E3, and D0E1, depending on the mixing ratio of DCPD and ENB, were considered as self-healing agents. The amount of Grubbs' catalyst, depending on the type of self-healing agents, was varied from 0.1 wt% to 1.5 wt%. In the case of DCPD, the polymerization reaction occurred faster and the stabilized adhesive strength increased as the amount of catalyst increased; however, a large amount of catalyst was required. ENB had excellent reactivity with a small amount of the catalyst; however, high reaction heat was observed at the early stage of polymerization. Thermal analysis properties and adhesive properties of self-healing agents can be controlled by varying a mixing ratio of DCPD and ENB. Among the self-healing agents used for this study, the D3E1 would be one of the most preferable candidates with regard to maximum adhesive strength, reaching time to maximum adhesive strength, stabilized adhesive strength, and reaction heat.

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