• 제목/요약/키워드: Wood products manufacturing

검색결과 97건 처리시간 0.018초

참나무류와 리기다소나무 간벌재를 이용한 목질 조사료 제조 및 사료가치 평가 (Manufacturing and Feed Value Evaluation of Wood-Based Roughage Using Lumber from Thinning of Oak and Pitch Pine)

  • 김석주;이성숙;백열창;김용식;박미진;안병준;조성택;최돈하
    • Journal of the Korean Wood Science and Technology
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    • 제43권6호
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    • pp.851-860
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    • 2015
  • 참나무류와 리기다소나무 간벌재 칩을 사용하여 각각 60, 90, 120분 동안 증기 가열(증해) 처리하여 조사료를 제조하고 정유 함량을 비교하였다. 두 수종 모두 증해 처리 시간이 증가됨에 따라 정유 함량이 감소하였으며, 90분과 120분 처리했을 때 $0.1m{\ell}/kg$ 이하의 정유 함량을 보였다. 90분 증해 처리하여 제조된 조사료의 사료로써의 가치를 화학성분 조성, NRC (National Research Counsil) 모델링, 반추위 소화율, 영양성분 대비 상대적 경제 가치 분석을 통해 평가하였다. 참나무류 조사료의 DM (dry matter; 건물), CP (crude protein; 조단백), EE (ether extract; 조지방), NDF (neutral detergent fiber; 중성세제섬유소), ADF (acid detergent fiber; 산성세제섬유소), ADL (acid detergent lignin; 산성세제리그닌), NFC (nonfiber carbohydrate; 비섬유소탄수화물) 함량은 각각 95.4, 1.36, 3.11, 90.05, 83.85, 17.33, 6.50 %로 측정되었고, 리기다소나무 조사료는 각각 94.37, 1.33, 5.48, 87.89, 86.88, 30.56, 6.32%로 측정되었다. NRC 모델링을 이용한 영양평가에서는 참나무류 조사료가 TDN (total digestible nutrient) 40.55%, DE (digestible energy) 1.79 Mcal/kg이었고 리기다소나무 조사료가 TDN 31.22%, DE 1.38 Mcal/kg으로 나타나 참나무류 조사료가 더 높은 영양가를 가진 것으로 사료되었다. 반추위 내 건물소화율은 참나무류 조사료(18.07%)가 리기다소나무 조사료(10.02%)보다 높았다. 영양성분 대비 상대적 경제 가치는 참나무류 조사료는 235원, 리기다소나무 조사료는 210원으로 나타났다.

목재가구산업의 적정 물류운반시스템에 관한 연구 (A Study on the Reasonable Materials Handling System of Wooden Furniture Industries)

  • 정우양
    • Journal of the Korean Wood Science and Technology
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    • 제24권2호
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    • pp.71-80
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    • 1996
  • Handling the manufacured goods is the most cost-consuming task in material handling system in wooden furniture industries. Fully automated warehouse for cartoned goods of a furniture manufacturing company was analized to provide plant engineers and managers with some important informations on the utility and profitability of the automated storage and retrieval system(AS/RS). Process-oriented simulation modeling tech-niques were used to describe the system and to propose some alternatives to promote the efficiency of AS/RS. Simulation report could be inter-preted as follows: 1. Warehouse for the furniture goods must be designed in accordance with reliable material handling program and constructed with suitable equipments depending on the specification of packed products. 2. An excess of palletized products induced the indigestion and the inefficiency of AS/RS of the furniture industry and put this high-costly system into the shade. 3. Overcrowded AS/RS of the furniture factories could regain its material handling function by cutting down the deposit of products into the automated warehouse. For this purpose, reducing the regular output and direct delivering the outside products to the destination should be considered as the definite counterplan. And additional operation of conventional handy warehouse was also expected to improve the efficiency of main AS/RS.

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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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대용섬유자원으로써 어저귀를 이용한 한지제조(제2보) -인피 및 목질부 섬유를 이용한 한지 제조- (Manufacturing of Korean Paper(Hanji) with Indian Mallow (Abutilon avicennae Gaertner) as the Alternative Fiber Resources(II) - Manufacturing of The Hajis Made from Bast Fiber and woody core fibers -)

  • 정선화;조남석;최태호
    • Journal of the Korean Wood Science and Technology
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    • 제32권1호
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    • pp.1-8
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    • 2004
  • 생장속도가 빨라서 단위면적당 Biomass의 생산량이 많은 어저귀(Indian mallow, Abutilon avicennae G.)를 원료로 하여 펄프화하였으며, 제조한 한지의 물리적·기계적·현미경적 특성에 관하여 비교 검토하였다. 제조한 한지의 특성을 살펴보면 광학적, 강도적, 현미경적인 특성에서 설포메틸 펄프화법이 우수한 결과를 나타냈고, 장섬유인 인피부 펄프에 대한 단섬유인 목질부 펄프의 혼입량 증가에 따른 변화에 있어 지질(밀도, 백색도, 불투명도, 지합)의 변화는 점차 증가했으나, 강도는 감소하는 경향을 나타냈다.

구성형태(構成形態)와 구성비율별(構成比率別)로 제조(製造)한 슬러지-파티클보드의 물리적(物理的) 및 기계적(機械的) 성질(性質) (Physical and Mechanical Properties of Sludge-Particle Board Manufactured by Composition Types and Composition Ratios from Mixed or Layered Paper Sludge and Wood Particle)

  • 이필우;윤형운
    • Journal of the Korean Wood Science and Technology
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    • 제24권1호
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    • pp.17-26
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    • 1996
  • This research was accomplished to evaluate possibility of using paper sludge for the raw materials of wood based panel products. The experimental panels were manufactured by four mixed ratios, the proportion of paper sludge to wood particle: 20:80, 30:70, 40:60, 50:50% (oven dry weight basis) and by three composition types, sludge-particle mixed board, three layered sludge-particle board and three layered particle board. They were tested mechanical (bending strength and internal bond) and physical properties (water absorption, thickness swelling and linear expansion). From the results they were shown that bending strength of mixed and three layered sludge-particle board were decreased with increasing of composition ratios of sludge. And the mechanical and physical properties of the boards of three layered composition types have superior to those of mixed composition type. Although composition ratios of sludge increased, the internal bond strength and dimensional stability of sludge-particle board not decreased quantitatively. We concluded that the mechanical and physical properties of three layered sludge-particle board were similar w those of three layered particle-board (control) made by our laboratory design. Therefore, it was recognized that paper sludge can be used as potential raw material in particle-board manufacturing industry.

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Physical and Mechanical Properties of Wood Fiber-Polypropylene Fiber Composite Panel

  • Kim, Jee-Woong;Eom, Young-Geun
    • Journal of the Korean Wood Science and Technology
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    • 제29권3호
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    • pp.36-46
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    • 2001
  • This study was to find a way of reusing wood and plastic wastes, which considered as a troublesome problem to be solved in this age of mass production and consumption, in manufacturing wood fiber-polypropylene fiber composite panel. And the feasibility of this composite panel as a substitute for existing headliner base panel of automobile was also discussed, especially based on physical and mechanical performance. Nonwoven web composite panels were made from wood fiber and polypropylene fiber formulations of 50 : 50, 60 : 40, and 70 : 30, based on oven-dry weight, with densities of 0.4, 0.5, 0.6, and 0.7 g/$cm^3$. At the same density levels, control fiberboards were also manufactured for performance comparison with the composite panels. Their physical and mechanical properties were tested according to ASTM D 1037-93. To elucidate thickness swelling mechanism of composite panel 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. Test results in this study showed that nonwoven web composite panel from wood fibers and polypropylene fibers had superior physical and mechanical properties to control fiberboard. In the physical properties of composite panel, dimensional stability improved as the content of polypropylene fiber increased, and the formulation of wood fiber and polypropylene fiber was considered to be a significant factor in the physical properties. Water absorption decreased but thickness swelling slightly increased with the increase of panel density. In the mechanical properties of composite panel, the bending modulus of rupture (MOR) and modulus of elasticity (MOE) appeared to improve with the increase of panel density under all the tested conditions of dry, heated, and wet. The formulation of wood fiber and polypropylene fiber was considered not to be a significant factor in the mechanical properties. All the bending MOR values under the dry, heated, and wet conditions met the requirements in the existing headliner base panel of resin felt.

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Influence of a Novel Mold Inhibitor on Mechanical Properties and Water Repellency of Bamboo Fiber-based Composites

  • Qi, Yue;Huang, Yu-Xiang;Ma, Hong-Xia;Yu, Wen-Ji;Kim, Nam-Hun;Zhang, Ya-Hui
    • Journal of the Korean Wood Science and Technology
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    • 제47권3호
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    • pp.336-343
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    • 2019
  • Effects of a novel mold inhibitor specifically for bamboo, on the properties of composite products have been confirmed in this study. The mechanical and dimensional stability properties of bamboo fiber-based composites (BFBCs) from different bamboo species were also investigated. The results showed that Burmanica Gamble possessed the highest values of modulus of elasticity (MOE) of 33.2 GPa, modulus of rupture (MOR) of 286.9 MPa, compressive strength of 182.6 MPa and shear strength of 24.0 MPa. By contrast, Phyllostochys heterocycla among all of species showed the lowest MOE of 16.3 GPa, MOR of 170.3 MPa and compressive strength of 128.9 MPa were the lowest among all of species. Moreover, there is a remarkable variation in the swelling and water absorption between the samples with 4 h and 28 h water immersion treatment, especially Phyllostachys iridenscens. Overall, the results suggested that TCIT (Tebuconazole and 3(2H)-isothiazolone) had no significant effect on the mechanical properties compared with the control condition, and it would be utilized as an antimould of BFBCs manufacturing.

분말상 탄닌수지를 이용한 파티클보드 제조기술 및 물성개선 (Improvement of Particleboard Manufacturing Process and its Properties Using Powdered Tannin Adhesives)

  • 강석구;이화형
    • Journal of the Korean Wood Science and Technology
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    • 제32권1호
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    • pp.80-87
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    • 2004
  • 천연접착제인 분말상 탄닌수지를 사용한 파티클보드의 물리·기계적 성질의 개선을 위하여 분말상 탄닌수지와 액상 탄닌수지를 혼합하여 사용한 결과, 30:70 (분말 : 액상)의 혼합비가 최적조건이었으며 분말상 탄닌 수지의 비율이 높으면 물성이 저하되는 현상을 볼 수 있었으며 또한 포름알데히드 방산량이 E0 수준의 고내수성 제품을 제조할 수 있었다. 한편 요소수지 및 멜라민수지와 분말상 탄닌 수지와의 혼합방법은 물리·기계적 성질의 개선에 영향을 주지 못했으며, 유리포름알데히드 방산에 대한 scavenger의 역할만을 하였다.

The Movement of Boron Compound by Infusion Method and Combination of Injection and Bandage-Wrapping

  • DAMAYANTI, Ratih;SRIBUDIANI, Evi;SOMADONA, Sonia;Djarwanto, Djarwanto;TARMADI, Didi;AMIN, Yusup;YUSUF, Sulaeman;SATITI, Esti Rini;ARSYAD, Wa Ode Muliastuty;SULAEMAN, Rudianda;Syafrinal, Syafrinal;PRAMASARI, Dwi Ajias
    • Journal of the Korean Wood Science and Technology
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    • 제48권4호
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    • pp.513-526
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    • 2020
  • The existing preservation methods are difficult to be applied to a large dimension log which is needed for making traditional wooden ship 'Jalur' in Riau Province. Novel techniques to provide the use of readily available species to replace traditional species alternative were investigated. These included infusion and a combination of injection and bandage-wrapping methods for preserving living trees of Balam (Macaranga conifera (Rchb.f. & Zoll.) Müll.Arg.) and Bintangor (Calophyllum soulattri Burm.f.). Water-based boron compounds were applied as wood preservatives. In total, 18 discs from the bottom, middle, and top of four trees and two controls were used. Trees undergoing treatment were also used to see how wood anatomical structure might affect the boron penetration. The overall aim was to identify the best method for use in Jalur manufacturing. The results showed that in infused Balam tree where the hose position for the preservative intake was deep (10-15 cm from the bark), no boron compound was observed in the outer sapwood. Combination of injection and bandage-wrapping method gave higher percentage of boron penetration at bottom and middle of Balam tree. However, infused Bintangor showed 100% boron penetration. The larger vessel diameter, the absence of tyloses, and the simple perforation plates in Bintangor wood were likely to have contributed to the higher penetration of boron. The combination of bandage-wrapping and infusion, or alternatively by infusing the living trees close to the bark, and at as low as position in the stem gives better protection when treatments are applied to living trees.

리기다소나무 구조용 집성재를 활용한 아치 트러스 목조교량의 전과정평가 (Life Cycle Assessment of Timber Arch-Truss Bridge by Using Domestic Pinus rigida Glued-Laminated Timber)

  • 손휘림;박주생;김광모
    • Journal of the Korean Wood Science and Technology
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    • 제42권1호
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    • pp.1-12
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    • 2014
  • 본 연구에서는 리기다소나무 구조용 집성재를 사용한 국내 최초 차량용 목조교량에 대한 지구온난화 영향을 평가하기 위해 전과정평가를 수행하였다. 교량연장 30 m, 교량폭원 8.4 m, 교량등급 1등급인 아치 트러스 형태의 대상 교량은 원료채취부터 제조, 수송, 시공, 사용, 해체, 건설폐기물 수송, 폐기 및 재활용까지 설계수명 50년간 총 192.56 ton $CO_2$ eq.의 온실가스를 배출한다. 전과정단계 중 원료채취 및 제조단계에서 총 온실가스 배출량의 81.14%를 배출하며 특히, 콘크리트 사용으로 인하여 82.84 ton $CO_2$ eq.의 온실가스가 배출된다. 그러나 대상 교량은 $116.57m^3$의 국산 리기다소나무 집성재를 사용하였으며, 교량을 구성하는 목재에서 104.72 ton의 이산화탄소를 저장하고 있어 이를 적용할 경우, 총 온실가스 배출량의 54.38%를 저감 가능한 것으로 도출되었다. 대상 교량과 동일한 수명과 구조를 갖는 타 교량의 철골자재를 구조용 집성재로 대체할 경우, 원료채취 및 제조단계의 온실가스 배출량을 최소 10.26%에서 최대 23.91%까지 저감 가능한 것으로 도출되었다. 본 연구의 결과는 향후 국산 목재 및 목조교량의 친환경적 우수성을 정량적으로 입증할 수 있는 기반자료로 활용 가능할 것이며, 목조교량의 친환경적 설계와 보급을 위해 활용 가능할 것으로 사료된다.