• 제목/요약/키워드: Wood Composite

검색결과 277건 처리시간 0.023초

Studies on Manufacturing Wood Particle-Polypropylene Fiber Composite Board

  • Lee, Chan-Ho;Eom, Young-Geun
    • Journal of the Korean Wood Science and Technology
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    • 제29권3호
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    • pp.47-58
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    • 2001
  • For finding both ways of recycling the wood and plastic wastes and solving the problem of free formaldehyde gas emission through manufacturing wood particle-polypropylene fiber composite board without addition of formaldehyde-based thermosetting resin adhesive, control particleboards and nonwoven web composite boards from wood particle and polypropylene fiber formulation of 50 : 50, 60 : 40, and 70 : 30 were manufactured at density levels of 0.5, 0.6, 0.7, and 0.8 g/$cm^3$, and were tested both in the physical and mechanical properties according to ASTM D 1037-93. In the physical properties, control particleboard had significantly higher moisture content than composite board. In composite board, moisture content decreased with the increase of target density only in the board with higher content of polypropylene fiber and also appeared to increase with the increase of wood particle content at a given target density. Control particleboard showed significantly greater water absorption than composite board and its water absorption decreased with the increase of target density. In composite board, water absorption decreased with the increase of target density at a given formulation but increased with the increase of wood particle content at a given target density. After 2 and 24 hours immersion, control particleboard was significantly higher in thickness swelling than composite board and its thickness swelling increased with the increase of target density. In composite board, thickness swelling did not vary significantly with the target density at a given formulation but its thickness swelling increased as wood particle content increased at a given target density. Static bending MOR and MOE under dry and wet conditions increased with the increase of target density at a given formulation of wood particle and polypropylene fiber. Especially, the MOR and MOE under wet condition were considerably larger in composite board than in control particleboard. In general, composite board showed superior bending strength properties to control particleboard, And the composite board made from wood particle and polypropylene fiber formulation of 50 : 50 at target density of 0.8 g/$cm^3$ exhibited the greatest bending strength properties. Though problems in uniform mixing and strong binding of wood particle with polypropylene fiber are unavoidable due to their extremely different shape and polarity, wood particle-polypropylene fiber composite boards with higher performance, as a potential substitute for the commercial particleboards, could be made just by controlling processing variables.

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스티렌계 수지(樹脂)를 매트릭스로 사용한 목재 - 플라스틱 복합체(複合體)의 물성(物性)에 미치는 상용화제(相溶化劑)의 효과(效果) (Effect of Compatibilizers on Mechanical Properties of Wood-Plastic Composites Using Styrene Polymers as Matrix Polymers)

  • 한규성
    • Journal of the Korean Wood Science and Technology
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    • 제21권2호
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    • pp.31-37
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    • 1993
  • Composites of styrene polymers with woody fibers were prepared, and the effect of compatibilizers on their mechanical properties was evaluated. To improve the compatibility of wood fibers and the matrix polymers, styrene-maleic anhydride copolymer(SMA) and maleic anhydride-modified polymers were used as compatibilizers. As results, maleic anhydride-modified polystyrene and SMA were proved to improve the tensile strength of the molded composites, and also were evaluated as good compatibilizers for the wood fiber polystyrene composite. Cellulosic fiber (dissolving pulp) provided better reinforcement than lignocellulosic fiber(thermomechanical pulp). On the contrary in the case of the composite of wood fiber and acrylonitrile-butadiene styrene copolymer(ABS), SMA and maleic anhydride-modified acrylonitrile-butadiene-styrene copolymer(MABS) did not act as compatibilizers. However, MABS was evaluated as a good polymer matrix to make wood fiber reinforced composite. The tensile properties of the composites of wood fiber and MABS were superior than those of wood fiber-ABS composites.

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한지슬러지-목재섬유 복합보드의 제조연구 II. 한지슬러지-목재섬유 복합보드의 기계적 성질 (Study on Manufacture of Korean Paper(Hanji) Sludge-Wood Fiber Composite Boards II. Mechanical Properties of Korean Paper(Hanji) Sludge-Wood Fiber Composite Boards)

  • 이필우;이학래
    • Journal of the Korean Wood Science and Technology
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    • 제27권2호
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    • pp.31-37
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    • 1999
  • 한지제지 공정 중에서 발생하는 백색슬러지와 흑색슬러지를 각각 일정비율(10:90, 20:80, 30:70, 40:60)로 목재 섬유와 혼합하고 PMDI, 요소 및 폐놀수지를 이용하여 목표비중 0.60, 0.75, 0.90 별로 복합보드를 제조한 결과 전반적으로 볼 때 PMDI수지를 적용한 백색슬러지-목재섬유 복합보드나 요소수지를 적용한 흑색슬러지-목재섬유 복합보드의 경우 20% 정도까지의 슬러지 첨가는 거의 통상적인 보드에 대용하는 기계적 성질을 지닌다고 믿어진다.

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한지(韓紙) 슬러지·목재(木材) 파티클 복합(複合)보드의 제조연구(製造硏究) - I. 한지(韓紙) 슬러지·목재(木材) 파티클 복합(複合)보드의 물리적(物理的) 성질(性質) (Studies on Manufacture of Hanji(Korean Paper) Sludge·Wood Particle Composite - I. Physical Properties of Hanji(Korean Paper)Sludge·Wood Particle Composite)

  • 이필우;이학래;손정일
    • Journal of the Korean Wood Science and Technology
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    • 제29권2호
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    • pp.109-117
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    • 2001
  • 한지(韓紙) 제조(製造) 공정(工程) 중에서 발생하는 백색 슬러지와 흑색 슬러지를 각각 일정비율(10, 20, 30, 40%)로 목재(木材) 파티클과 혼합(混合)하고 PMDI, 요소 및 페놀수지를 이용하여 각각 목표비중(目標比重) 0.60, 0.75, 0.90 별로 복합(複合)보드를 제조(製造)하여 물리적(物理的) 성질(性質)을 측정 분석한 결과 흡수길이변화율은 대조보드에 비해 크게 증가하지 않았으며 흡수두께팽창율은 PMDI를 적용한 백색 슬러지 목재(木材) 파티클 복합(複合)보드가 가장 낮은 값을 보였고 흡수율은 흑색 슬러지 목재(木材) 파티클 복합(複合)보드의 경우 혼합(混合) 비율(比率)이 증가할수록 대체로 감소하는 경향을 보였다.

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Preparation of Flame Retardant and Antibacterial Wood with Composite Membrane Coating

  • XU, Jun-xian;LIU, Yang;WEN, Ming-yu;PARK, Hee-Jun;ZHU, Jia-zhi;LIU, Yu-nan
    • Journal of the Korean Wood Science and Technology
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    • 제49권6호
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    • pp.658-666
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    • 2021
  • A novel flame retardant and antibacterial composite membrane coating for wood surfaces was prepared by adding POSS-based phosphorous nitrogen flame retardant (later referred to as NH2-POSS) and silver nanoparticles (Ag NPs) to chitosan (CS). The effects of NH2-POSS content (mass fractions of CS 0%, 0.5%, 1%, 3%, 5%, and 7%) on the structure and properties of the composite membrane coating on wood were investigated. The composite film was prepared by the method of blending and ducting. Contact angle, tensile property and antibacterial effects of the composite film were measured, and infrared spectroscopy was used. The results show that the addition of NH2-POSS can not only improve the toughness of the membrane, but also the flame retardancy of the membrane, which improves the application of the membrane in wood products. However, with the addition of NH2-POSS, the transparency of the composite membrane was weakened. The inhibitory effect of the composite membrane on the growth of Escherichia coli was enhanced with the increase in Ag NPs. This research provides a foundation for the application of functional wood.

가소화 처리 목편으로부터 재조된 복합재료의 물성 (Properties of WPC with Chemical Modified Wood Particles)

  • 김철현;김강재;엄태진
    • 펄프종이기술
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    • 제40권3호
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    • pp.53-58
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    • 2008
  • Wood composite, could generally be made from very fine wood powder(<150 mesh) because more large size of wood particle had much less plasticity compared of polymer. To make more high plasticity of relatively large size of wood particle, wood particles were chemically modified with some reagent for acetylation and esterification, etc. WPC(wood plastic composite) was prepared with chemically modified wood particles and the mechanical properties of WPC were evaluated. WPC of esterified wood with maleic anhydride shows the highest level in tensile strength and breaking elongation.

Studies on Thickness Swelling Mechanism of Wood Particle-Polypropylene Fiber Composite by Scanning Electron Microscopy

  • Lee, Chan Ho;Cha, Jae Kyung;Eom, Young Geun
    • Journal of the Korean Wood Science and Technology
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    • 제30권3호
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    • pp.48-58
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    • 2002
  • This study was carried out through scanning electron microscopy to elucidate the mechanism of thickness swelling in wood particle-polypropylene composite which is a typical way of using wood and plastic materials. For this purpose, control particleboards and nonwoven web composites from wood particle and polypropylene fiber formulations of 100:0, 70:30, 60:40, and 50:50 were manufactured at target density levels of 0.5, 0.6, 0.7, and 0.8 g/cm3. Their water absorption and thickness swelling were tested according to ASTMD 1037-93 (1995). To elucidate thickness swelling mechanism of composite through the observation of morphological change of internal structures, the specimens before and after thickness swelling test by 24-hour immersion in water were used in scanning electron microscopy. From the scanning electron microscopy, thickness swelling of composite was thought to be caused by the complicated factors of degree of built-up internal stresses by mat compression and/or amount of wood particles encapsulated with molten polypropylene fibers during hot pressing. In the composites with wood particle contents of 50 to 60% at target densities of 0.5 to 0.8 g/cm3 and with wood particle content of 70% at target densities of 0.5 to 0.7 g/cm3, thickness swellings seemed to be largely dependent upon the restricted water uptake by encapsulated wood particles with molten polypropylene fibers. Thickness swelling in the composite with wood particle content of 70% at target density of 0.8 g/cm3, however, was thought to be principally dependent upon the increased springback phenomenon by built-up internal stresses of compressed mat.

Research on the Mechanical Properties of Some New Aluminum Alloy Composite Structures in Construction Engineering

  • Mengting Fan;Xuan Wang
    • 한국재료학회지
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    • 제34권2호
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    • pp.72-78
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    • 2024
  • The lightweight and high strength characteristics of aluminum alloy materials make them have promising prospects in the field of construction engineering. This paper primarily focuses on aluminum alloy materials. Aluminum alloy was combined with concrete, wood and carbon fiber reinforced plastic (CFRP) cloth to create a composite column. The axial compression test was then conducted to understand the mechanical properties of different composite structures. It was found that the pure aluminum tube exhibited poor performance in the axial compression test, with an ultimate load of only 302.56 kN. However, the performance of the various composite columns showed varying degrees of improvement. With the increase of the load, the displacement and strain of each specimen rapidly increased, and after reaching the ultimate load, both load and strain gradually decreased. In comparison, the aluminum alloy-concrete composite column performed better than the aluminum alloy-wood composite column, while the aluminum alloy-wood-CFRP cloth composite column demonstrated superior performance. These results highlight excellent performance potential for aluminum alloy-wood-CFRP composite columns in practical applications.

한지슬러지-목재섬유 복합보드의 제조연구 I. 한지슬러지-목재섬유 복합보드의 물리적 성질 (Study on Manufacture of Korean Paper(Hanji) Sludge-Wood Fiber Composite Boards I. Physical Properties of Korean Paper(Hanji) Sludge-Wood Fiber Composite Boards)

  • 이필우;이학래
    • Journal of the Korean Wood Science and Technology
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    • 제27권2호
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    • pp.23-30
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    • 1999
  • 한지제지 공정 중에서 발생하는 백색슬러지와 흑색슬러지를 각각 일정비율(10:90, 20:80, 30:70, 40:60)로 목재 섬유와 혼합하고 PMDI, 요소 및 폐지수지를 이용하여 목표비중 0.60, 0.75, 0.90 별로 복합보드를 제조한 결과 전반적으로 볼 때 백색슬러지를 20% 정도까지 혼합하고 PMDI 수지를 적용하면 통상적인 보드와 유사하거나 오히려 더 좋은 치수안정성을 가지는 것으로 판단된다. 또한 흑색슬러지의 경우는 요소수지를 사용하거나 PMDI 수지의 첨가량을 증가시켜 조절한다면 20%의 슬러지 첨가량까지는 치수안정성 면에서 통상적인 보드와 큰 차이가 없는 보드를 제조할 수 있다고 믿어진다.

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녹차-숯-목재섬유 복합보드의 역학적 성능에 미치는 구성원료의 종류 및 배합비율의 영향 (Effect of the Kind and Content of Raw Materials on Mechanical Performances of Hybrid Composite Boards Composed of Green Tea, Charcoals and Wood Fiber)

  • 박한민;허황선;성은종;남경한;임재섭
    • Journal of the Korean Wood Science and Technology
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    • 제41권1호
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    • pp.64-76
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    • 2013
  • 이 연구에서는 녹차-목재섬유 복합보드의 강도성능과 기능성을 보강한 건축내장재를 개발하기 위하여, 목재섬유에 녹차와 흑탄, 백탄, 활성탄 등 3종류의 숯을 혼합한 녹차-숯-목재섬유 복합보드를 제작하였고, 구성원료의 종류 및 그 배합비율이 복합보드의 정역학적 성능에 미치는 영향을 조사하였다. 녹차-숯-목재섬유 복합보드의 휨 강도성능은 백탄함유 복합보드에서 평균적으로 가장 높은 값을 나타내었으나, 숯의 종류에 따른 휨 강도성능의 차이는 크지 않았다. 그러나 그 값은 선행연구의 녹차-목재섬유 복합보드보다 현저한 휨 강도성능의 향상을 나타내었고, 녹차와 숯의 배합비율이 증가할수록 휨 강도성능의 감소가 확인되었다. 바인더로 사용된 요소수지의 종류에 따른 차이는 $E_1$급 요소수지를 사용한 복합보드가 $E_0$급 요소수지를 사용한 그것보다 높은 휨 강도성능을 나타냈지만, 양 수지간의 차이는 선행연구의 녹차-목재섬유 복합보드에 비해 현저히 감소하였다. 복합보드의 박리강도는 백탄 $$\geq_-$$ 활성탄 > 흑탄함유 복합보드의 순이었고, 백탄함유 복합보드에서는 목재섬유로만 구성된 대조보드와 거의 비슷한 값을 나타내는 것이 확인되었다.