Characterization of Leather Skin Layer Coatings on Water Dispersed Polyurethane Applied with Eathyl Acetate and Piperazine
본 연구에서는 에틸아세테이트와 피페라진을 적용한 가죽 표면 코팅제로 사용할 수용성 폴리우레탄의 합성을 위해 poly(tetramethylene ether) glycol(PTMG)를 기반으로 isoporon diisocyanate (IPDI)와 dimethylolbutanoic acid(DMBA)의 반응을 통해 프리폴리머를 합성하였다. 이후 수분산시킨 수지에 피페라진을 0.01M, 0.03M, 0.05M, 0.07M을 쇄연장 반응을 해서 각각의 인장강도, 연신율, CV(cyclic voltammetry), 내용제성 분석을 실시했다. 준비된 시료의 인장강도는 피페라진 함량 0.07M일 때 5.422 kgf/㎟ 로 측정되었으며, 연신율을 측정한 결과 피페라진이 0.01M 일 때 587 %로 측정되었다. 내용제성 분석결과 피페라진 함량과 상관없이 동등한 내용제성으로 측정되었으며, CV 측정을 통해 피페라진 함량에 따라 산화환원전위가 변화되는 것을 확인 할 수 있었다.
In this study, prepolymer was synthesized through the reaction of isoporon diisocyanate (IPDI) and dimethylolbutanoic acid (DMBA) based on poly (tetramethylene ether) glycol (PTMG) for the synthesis of water-soluble polyurethane to be used as a leather surface coating applied with ethyl acetate and piperazine. Thereafter, the piperazine was chain-extended with 0.01 M, 0.03 M, 0.05 M, and 0.07 M in the water-dispersed resin, and the tensile strength, elongation, CV (cyclic voltammetry), and solvent resistance analysis were performed. Tensile strength of the prepared sample was measured at 5.422 kgf/㎟ when the piperazine content was 0.07M, and elongation was measured as 587% when the piperazine was 0.01M. Solvent resistance analysis showed the same solvent resistance regardless of piperazine content, and the redox potential was changed according to piperazine content through CV measurement.