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* Dept. of Electronic, Telecommunications, Mechanical and Automotive Engineering, Inje Univ. (Received June 10, 2015 ; Revised September 2, 2015 ; Accepted September 16, 2015)Key Words: Nanofiber(나노섬유), Electrospinning(전기방사), Polyacrylonitrile(폴리아크릴로니트릴), Heat Roller(히트롤러)초록: 나노물질은 작은 크기와 공기필터 응용장치의 초고표면적과 함께 기계적, 물리적, 화학적 특성을 가진다. 전기방사는 나노섬유 중합체를 제조하는데 있어 가장 효율적인 기술로 인식되어왔다. 최적의 제조 조건을 찾기 위해, 여러 전기방사 공정 파라미터의 효과에 따른 폴리아크릴로니트릴(PAN) 나노섬유의 직경, 성향 및 분포를 분석했다. 층간파괴 인성 향상시키고 히트롤러로 적층된 부직포의 형태로 박리를 억제하고, PAN 나노섬유 공기필터의 여과효율과 압력강하 성능을 실험적으로 평가하였다. Abstract: Nanomaterials possess unique mechanical, physical, and chemical properties. They are small, and have an ultrahigh surface area, making them suitable for air filter applications. Electrospinning has been recognized as an efficient technique for fabricating polymer nanofibers. In order to determine the optimum manufacturing conditions, the effects of several electrospinning process parameters on the diameter, orientation, and distribution of polyacrylonitrile (PAN) nanofiber are analyzed. To improve interlaminar fracture toughness and suppress delamination in the form of laminated non-woven fibers by using a heat roller, the performances of filter efficiency and pressure drop achieved with PAN nanofiber air filter are evaluated experimentally. |