Journal of the Korean Wood Science and Technology
- 제16권1호
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- Pages.21-44
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- 1988
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- 1017-0715(pISSN)
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- 2233-7180(eISSN)
목재(木材)파이티클과 플라스틱(폴리프로필렌) 망(網)의 결체(結締) 보오드의 물리(物理) 및 기술적(機械的) 성질(性質)에 미치는 영향(影響)
Effect of Combining Wood Particles and Plastic(Polypropylene) Screen on the Physical and Mechanical Properties of Board
- Lee, Phil-Woo (College of Agriculture, Seoul National University) ;
- Park, Heon (College of Natural Sciences, Konkuk University)
- 투고 : 1988.01.27
- 발행 : 1988.03.30
초록
팔만칩 및 톱밥을 보오드에 활용(活用)하기 위한 방안(方案)의 하나로, 이들의 취약한 처리(物理) 및 기계적(機械的) 성질(性質)을 개선(改善)시키기 위하여 비목질재료(非木質材料)인 폴리프로필렌망(網)을 결체(結締)하여 보오드를 제조(製造)하였다. 보오드의 제조조건(製造條件)은 비중(比重)을 0.40, 0.55, 0.70 및 0.85의 4수준으로 하고 수지첨가율(樹脂添加率)을 8%, 10%, 12% 및 14%의 4수준으로 하였으며, 망수(網數)는 1장에서 4장으로 하여 보오드를 각각 제조(製造)하였다. 이들 보오드의 물리(物理) 및 기계적(機械的) 성질(性質)은 두께팽창율(膨脹率), 휨파괴계수(破壞係數), 휨탄성계수(彈性係數), 인장강도(引張强度), 박리저항(剝離抵抗) 및 나사못보지력(保持力) 등을 측정조사(測定調査)하고 고찰(考察)하였는데 본연구(本硏究)에서 얻은 중요한 결론(結論)은 다음과 같다. 1) 지수첨가율(指數添加率)이 증가함에 따라 두께팽창율(膨脹率)은 감소(減少)하였고, press-lam 보오드는 일반성형(一般成形)보오드 보다 낮은 값을 보여 주었다. 2) 보오드의 휨파괴계수(破壞係數) 및 탄성계수(彈性系數)는 비중(比重)이 증가하였으며 press-lam 보오 드는 일반적형(一般的形)보오드보다 높은 값을 나타내었다. 망수(網數)가 증가함에 따라 휨파괴계수(破壞係數)는 증가하였고, 수지첨가율(樹脂添加率)이 증가함에 따라서도 같은 양상이 나타났으나 휨탄성계수(彈性係數)의 경우 망수(網數)에 따른 효과(效果)는 나타나지 아니하였다. 3) 비중(比重)이 증가함에 따라 보오드의 인장강도(引張强度)는 증가하였으며, 망구성(網構成)보오드는 대조보오드보다 높은 값을 나타내었다. 또 망수(網數)가 증가함에 따라서도 인장강도(引張强度)는 증가하였으며, press-lam 보오드는 일반적형(一般的形)보오드보다 높은 인장강도치(引張强度値)를 보여 주었다. 4) 보오드의 박리저항(剝離抵抗)은 비중(比重)이 증가함에 따라 증가하였으며 망(網)을 결체(結締)한 보오드는 대조보오드 보다 모두 낮은 값을 보여 주었다. 기수매구성(奇數枚構成)보오드는 우수매구성(偶數枚構成)보오드보다 낮은 박리저항치(剝離抵抗値)를 보였다. 5) 수지첨가율(樹脂添加率) 및 비중(比重)이 증가함에 따라 나사못 보지력(保持力)은 증가하였으나, 망구성(網構成)보오드와 대조보오드사이에서의 차이는 크지 아니하였다. presslam 보오드에서 팔만칩보오드의 경우 고비중(高比重)보오드가, 톱밥보오드의 경우 저비중(低比重)보오드가 각각 대조보오드보다 높은 값을 보여 주었다.
As a way for the effective utilization of pallman chips and sawdusts, these furnish materials were combined with non-woody material of plastic (polypropylene) screen in board manufacturing to improve their weak physical and mechanical properties. The conventional boards were made with conditions of specific gravity 0.40, 0.55, 0.70, and 0.85, resin content 8, 10, 12 and 14%, and number of polypropylene screen 1, 2, 3 and 4, and press-lam boards were also manufactured. The physical and mechanical properties were measured and discussed on thickness swelling, bending modulus of rupture and elasticity, tensile strength, internal bond strength, and screw holding strength. The results obtained at this study were summarized as follows: 1. In thinckness swelling both of pallman chip board and sawdust board were improved by the increase of resin content, and press-lam boards showed lower thickness swelling than conventional boards. 2. Both the modulus of rupture and elasticity were increased with the increase of specific gravity, and press-lam boards showed higher modulus of rupture and elasticity than conventional boards. On the other hand, modulus of rupture was increased with the increase of number of polypropylene screen and resin content whereas these effects in modulus of elasticity was not recognized. 3. Tensile strength was increased with the increase of specific gravity, and the boards combined with polypropylene screen showed higher tensile strength than control boards. Also tensile strength was increased with the increase of number of polypropylene screen, and press-lam boards revealed higher tensile strength than conventional boards. 4. Internal bond strength was increased with the increase of specific gravity, and the boards combined with polypropylene screen were lower in internal bond strength than control boards. Also, the boards combined with odd number of polypropylene screen showed lower internal bond strength than those combined with even number of polypropylene screen. 5. Screw holding strength was increased with the increase of resin content and specific gravity but significant difference was not approved between boards combined with polypropylene screen and control boards. In press-lam boards, pallman chip boards of higher specific gravity but sawdust boards of lower specific gravity showed better screw holding strength than control boards.
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