• 제목/요약/키워드: melamine resin sheet

검색결과 4건 처리시간 0.023초

멜라민수지 함침지 적층에 의한 소나무재의 표면 강화 (Surface Hardening of Pine Wood by Laminating of Melamine Resin Sheet)

  • 한규성
    • 한국가구학회지
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    • 제17권1호
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    • pp.83-89
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    • 2006
  • Because the surface of pine wood is very soft, there have been many attempts, like as surface coating, resin impregnation, and densificationt, to harden the surface of wood for its interior use. This study was carried out for surface hardening of pine wood by laminating of melamine resin sheet. The effect of laminating method on the characteristics of melamine resin sheet-laminated wood(MLW) was investigated. Flat-sawn softwoods were suitable for MLW making. And the pre-drying of wood at $105^{\circ}C$ for 30min, before laminating, was effective for preparing of defect-free MLW. The abrasion resistance of pine wood was greatly improved by laminating of melamine resin sheet on its surface. Consequently, the laminating of melamine resin sheet was proved to be a favorable method for improvement of surface abrasiveness of pine wood.

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멜라민시트 적층 MDF 마루판재의 가열에 의한 치수변화 (Dimensional Change of Melamine Sheet Laminated MDF Flooring by Heating)

  • 민일홍;김의식;한규성
    • Journal of the Korean Wood Science and Technology
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    • 제24권4호
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    • pp.32-39
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    • 1996
  • The overall purpose of this study was to investigate the dimensional changes of melamine sheet laminated medium density fiberboard(MDF) floorings by sub-heating system(Ondol). This study was also conducted to improve the properties of melamine sheet laminated MDF floorings. The effects of density, resin content, manufacturing speed of MDF and types of melamine sheet on dimensional and weight changes of floorings were investigated. The results were as followings. 1. Dimensional and weight change of melamine sheet laminated MDF flooring by heating decreased with decreasing the density of MDF. 2. Dimensional and weight change of melamine sheet laminated MDF flooring by heating decreased with increasing the resin content of MDF. 3. Dimensional and weight change of melamine sheet laminated MDF flooring by heating decreased with decreasing the manufacturing speed of MDF. 4. Dimensional change of melamine sheet laminated MDF flooring in width direction by heating was doubled than that in machine direction. 5. Dimensional change and curling of high pressure melamine laminate(HPM) laminated MDF flooring by heating was less than those of low pressure melamine laminate(LPL) flooring. 6. Weight loss of melamine sheet laminated MDF flooring by heating has linear relationship with shrinkage.

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섬유판(纖維板)의 증강(增强)사이즈제(齊)가 재질(材質)에 미치는 영향(影響) (Effect of Strength Increasing Sizes on the Quality of Fiberboard)

  • 신동소;이화형
    • 한국산림과학회지
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    • 제30권1호
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    • pp.19-29
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    • 1976
  • 습식(濕式) 경질섬유판(硬質纖維板) 제조(製造)를 위(爲)한 보강용(補强用) 사이징제(劑)로서 실험실(實驗室) 제조(製造) 석탄산수지(石炭酸樹脂), 요소수지(尿素樹脂)(음(陰)이온 형(型), 양(陽)이온 형(型)), 요소(尿素) 메라민 공축합수지(共縮合樹脂)와 일본(日本) M사(社)의 변성(變性)메라민수지(樹脂)(P-6100)와 변성(變性) 양(陽)이온형(型) 요소수지(尿素樹脂)(P-1500)등을 사용(使用)하여 섬유판(纖維板) 재질(材質)에 미치는 영향(影響)을 검토(檢討)하였다. 공시재(供試材)는 라왕(20%)+소나무(80%)로 사용(使用)하였고 침착제(沈着劑)는 황산알미늄을 사용(使用)하였으며 열압조건(熱壓條件)은 전기가열(電氣加熱) 푸레스로 $180^{\circ}C$, $50-6-50kg/cm^2$, 시간(時間)은 1-2-7분(分)으로 S-1-S 경질섬유판(硬質纖維板)을 제조(製造)하여 일주일 기건(氣乾)시킨 후(後) 그 성질(性質)을 조사(調査)한 결과(結果)를 요약(要約)하면 다음과 같다. 1. 섬유판(纖維板)의 비중(比重)은 각(各) 보강제(補强劑)의 처리량(處理量)에 따른 비중(比重)의 차(差)는 없으나 보강제(補强劑) 간(間)에는 고도(高度)의 유의차(有意差)가 있어 변성(變性)메라민수지(樹脂)가 제일 높고 양(陽)이온형(型), 음(陰)이온형(型) 및 요소(尿素) 메라민 공축합수지(共縮合樹脂)가 중간(中間)이며 석탄산수지(石炭酸樹脂)가 제일 낮았다. 2. 섬유판(纖維板)의 함수율(含水率)은 보강제(補强劑) 간(間)의 차(差)와 보강제(補强劑) 처리량(處理量)에 따른 함수율(含水率)의 차(差)가 전부(全部) 유의성(有意性)이 있었으며 전체적(全體的)으로 처리량(處理量)이 증가(增加)할 수록 함수율(含水率)은 떨어지나 2%와 3% 처리(處理) 간(間)의 함수율(含水率) 차(差)는 없었다. 3. 섬유판(纖維板)의 흡수율(吸水率)은 보강제(補强劑) 간(間) 및 파라핀 왁스유탁액(乳濁液) 처리량(處理量) 간(間) 모두 다 유의차(有意差)를 보이고 있다. 파라핀 왁스유탁액(乳濁液) 처리량(處理量)을 늘일수록 흡수율(吸水率)은 떨어져 내수성(耐水性)이 증가(增加)함을 보이고 있으며 P-6100 및 P-1500은 무처리(無處理)에도 표준규격(標準規格)을 만족시켜 주며 음(陰)이온형(型) 요소수지(尿素樹脂), 양(陽)이온형(型) 요소수지(尿素樹脂), 요소(尿素) 메라민 공축합수지(共縮合樹脂)의 산(酸)콜로이드는 내수제(耐水劑)를 1% 요구하고 석탄산수지(石炭酸樹脂)는 2%에 합격(合格)되고 있었다. 4. 섬유판(纖維板)의 곡강도(曲强度)는 보강제(補强劑) 간(間) 및 보강제(補强劑) 처리량(處理量) 간(間)에 모두 유의차(有意差)가 있으며 처리량(處理量)이 증가(增加)할 수록 곡강도(曲强度)는 증가(增加)하였다. P-6100이 가장 곡강도(曲强度)가 높고 P-1500, 양(陽)이온형(型) 및 음(陰)이온형(型) 요소수지(尿素樹脂), 요소(尿素) 메라민 공축합수지(共縮合樹脂)의 산(酸)콜로이드등(等)이 중간(中間)이며, 석탄산수지(石炭酸樹脂)가 곡강도(曲强度)는 제일 낮았다. 5. 섬유판(纖維板)의 품질(品質)과 경제적(經濟的)인 면(面)을 고려한다면 석탄산수지(石炭酸樹指)의 대체(代替)로서 산(酸)콜로이드 방법(方法)에 의한 요소(尿素) 메라민 공축합수지(共縮合樹脂)와 양(陽)이온형(型) 요소수지(尿素樹脂)를 사용(使用)하는 것이 가장 바람직하며 이들 변성수지(變性樹脂)에 대(對)한 개선(改善) 연구(硏究)가 계속 필요(必要)하다 하겠다.

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Development of High Functional Black Resin Coated Electrogalvanized Steel Sheet for Digital TV Panel

  • Jo, Du-Hwan;Kwon, Moonjae;Lee, Jae-Hwa;Kang, Hee-Seung;Jung, Yong-Gyun;Song, Yon-Kyun;Jung, Min-Hwan;Cho, Soo-Hyoun;Cho, Yeong-Bong;Cho, Myoung-Rae;Cho, Byoung-Chon;Lim, Kwangsoo;Seon, Pan-Woo;Han, Hyeon-Soop;Jeong, Hwon-Woo;Lee, Jae-Ryung;Kim, Jong-Sang
    • Corrosion Science and Technology
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    • 제12권1호
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    • pp.1-6
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    • 2013
  • Recently Digital TV industry has drastically been moving the illuminating system, which causes an obvious product change from PDP and LCD to LED model to provide high-definition image. Due to strong competition in the digital industry, TV manufacturers make a great efforts to reduce production cost by using low-priced materials such as steels instead of aluminum and plastic etc. In this paper we have developed a new low-priced electrogalvanized steel sheet, which has a black resin composite layer, to substitute conventional high-priced PCM steel and plastic mold for rear cover panel in the digital TV. The black resin composite was prepared by mechanical dispersion of the mixture solution that consists of high solid polyester resin, melamine hardener, black pigment, micronized silica paste, polyacrylate texturing particle and miscellaneous additives. The composite solution was coated on the steel sheet using roll coater followed by induction furnace curing and cooling. Although the coated layer has a half thickness compared to the conventional PCM steels having $23{\mu}m$ thickness, it exhibits excellent quality for the usage of rear cover panel. The new steel sheet was applied to test products to get quality certification from worldwide electronic appliance customers. Detailed discussion provides in this paper including preparation of composite solution, roll coating technology, induction curing technology and quality evaluation from customers.