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홍태민 ( Tae Min Hong ),이지은 ( Ji Eun Lee ),홍영기 ( Young Ki Hong ),이정순 ( Jung Soon Lee ),조대현 ( Dae Hyun Cho ),이승구 ( Seung Goo Lee ) 한국접착및계면학회 2013 접착 및 계면 Vol.14 No.3
섬유 프리프레그(prepreg)는 복합재료를 제조하기 위한 중간성형재료이다. 아라미드섬유직물에 범용 페놀수지와 polyvinyl butyral (PVB) 변성 페놀수지를 각각 40 wt%씩 도포하고, 열처리를 통해 B-stage 상태의 섬유 프리프레그를 제조하였다. 섬유 프리프레그의 표면형상을 주사전자현미경을 이용하여 관찰하였다. 프리프레그의 tack성은 복합재료 성형 시에 매우 중요한 특성으로 본 연구에서는 시험적 요인에 따른 tack성을 보기 위하여 probe tack 시험법을 적용하였다. 시험시의 contact time, contact force, debonding rate를 변수로 두었다. 섬유 프리프레그의 tack성은 시험적 요인의 증가에 따라 비례적으로 증가하다가 임계점에서부터는 일정한 값을 가지는 것을 확인하였다. 최종적으로 debonding rate에 따른 tack성의 변화와 프리프레그 표면에서의 fibrillation과의 상관관계를 고찰하였다. The prepreg material is a sheet of the reinforcement pre-impregnated with a resin. In this study, two types of prepreg were prepared with a general phenolic resin and the polyvinyl butyral (PVB) modified phenolic resin, respectively, with resin content of 40 wt%. After resin impregnation, the prepregs were heat treated in an oven to make them the B-stage. Surface morphology of the prepreg was observed by using a scanning electron microscope (SEM). Tack property of the prepreg is one of the major properties that govern the ability of prepreg to be laid up. In this study, the tack of prepreg was measured under various test parameters by a probe tact test. Test parameters were contact time, contact force and debonding rate. Most of the tack properties of the prepreg increased with the test parameters. Then tack properties exhibited a linear behavior with test parameters before a saturation point. Also, the tack of prepreg was investigated in relation with the fibrillation phenomena involved in the prepreg surface with the debonding rate.
전기방사에 의한 PVDF/PU 복합나노섬유의 제조 및 특성 분석
이현재,홍태민,임성찬,원종성,이승구,Lee, Hyun Jae,Hong, Tae Min,Lim, Sung Chan,Won, Jong Sung,Lee, Seung Goo 한국섬유공학회 2015 한국섬유공학회지 Vol.52 No.2
Bicomponent nanofibers with piezoelectric and latent-crimp properties were fabricated from two polymer solutions of polyvinylidene fluoride (PVDF) and polyurethane (PU) by electrospinning. Experimental conditions for electrospinning, such as applied voltage, solution concentration, and flow rate, were investigated to determine the optimal conditions for fabricating the bicomponent nanofibers. As a result, 21 wt% solution concentration, 0.5 ml/h flow rate, and 15 kV applied voltage were identified as optimum conditions for electrospinning the bicomponent nanofibers. The morphologies of the side-byside structure of the PVDF/PU fibers were observed. The formation of ${\beta}$-phase crystals by electrospinning was confirmed by Fourier transform infrared spectroscopy (FT-IR) and differential scanning calorimetry (DSC). Additionally, it was confirmed that the applied voltage does not have a significant effect on the formation of ${\beta}$-phase crystals. After the hydrothermal treatment, the ${\beta}$-phase crystalline content in the bicomponent fibers remained unchanged.
다구찌방법을 이용한 사출성형공정의 신경회로망 모델링에 관한 연구
최기흥,유병길,홍태민,이경돈,장낙영,Choe, Gi-Heung,Yu, Byeong-Gil,Hong, Tae-Min,Lee, Gyeong-Don,Jang, Nak-Yeong 대한기계학회 1996 大韓機械學會論文集A Vol.20 No.3
Computer Integrated Manufacturing(CIM) requires models of manufacturing processes to be implemented on the computer. These models are typically used for determining optimal process control parameters or designing adaptive control systems. In spite of the progress made in the mechanistic modeling, however, empirical models derived from experimental data play a maior role in manufacturing process modeling. This paper describes the development of a meural metwork medel for injection molding. This paper describes the development of a nueral network model for injection molding process. The model uses the CAE analysis data based on Taguchi method. The developed model is, then, compared with the traditional polynomial regression model to assess the applicabilit in practice.