• 제목/요약/키워드: laminated wood

검색결과 163건 처리시간 0.019초

Physical and Mechanical Properties of Glued Laminated Lumber of Pine (Pinus merkusii) and Jabon (Anthocephalus cadamba)

  • Lestari, Andi Sri Rahayu Diza;Hadi, Yusuf Sudo;Hermawan, Dede;Santoso, Adi
    • Journal of the Korean Wood Science and Technology
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    • 제46권2호
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    • pp.143-148
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    • 2018
  • The aim of this research was to determine the physical and mechanical properties of glued laminated lumber (glulam) made from jabon (Anthocephalus cadamba) and pine (Pinus merkusii). Three layers of lamina from each wood species were bonded using isocyanate adhesive with a glue spread of $280g{\cdot}m^{-2}$ and then pressed using cold press with a specific pressure of 1.47 MPa. Samples had dimensions of $3cm{\times}6cm{\times}100cm$ (thickness, width, and length, respectively). Glulam properties were tested based on Japanese Agricultural Standard (JAS) 234-2003. The results showed that the density of glulam was $0.36g{\cdot}m^{-3}$ for jabon and $0.73g{\cdot}m^{-3}$ for pine. The moisture content of all glulams fulfilled the JAS standard. The mechanical properties of pine glulam fulfilled the JAS standard in all tests, whereas jabon glulam fulfilled the standard in the modulus of rupture and shear tests.

Performance of Six-Layered Cross Laminated Timber of Fast-Growing Species Glued with Tannin Resorcinol Formaldehyde

  • Deazy Rachmi TRISATYA;Adi SANTOSO;Abdurrachman ABDURRACHMAN;Dina Alva PRASTIWI
    • Journal of the Korean Wood Science and Technology
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    • 제51권2호
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    • pp.81-97
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    • 2023
  • The aim of this study were to evaluate tannin resorcinol formaldehyde (TRF) for the preparation of cross-laminated timbers (CLTs) made from fast-growing tree species and to analyze the physical and mechanical properties of CLTs. TRF copolymer resin was prepared by using the bark extracts of Swietenia mahagoni (L.) Jacq. It was observed that the TRF adhesive possessed less solid content (23.59%), high viscosity (11.35 poise), and high pH values (10.0) compared to the standard phenol resorcinol formaldehyde. The TRF adhesive was applied to produce CLTs with the addition of 15% tapioca and flour as an extender. The six-layered CLTs were produced from sengon (Falcataria moluccana Miq.), jabon [Anthocephalus cadamba (Roxb) Miq.], coconut (Cocos nucifera L.), and the combination of coconut-jabon and coconut-sengon wood. The analysis of variance revealed that the layer composition of CLT significantly affected the physical and mechanical properties of the beam. While the modulus of rupture met the standard, the moisture content and modulus of elasticity values did not fulfill JAS 1152-2007. All of the CLTs produced in this study demonstrated low formaldehyde emission, ranging from 0.001 mg/L to 0.003 mg/L, thereby satisfying the JAS 1152 for structural glue laminated timber.

Determining Shear Modulus of 3-ply Laminated Veneer Lumber by Uniaxial Tension Test

  • Oh, Sei-Chang
    • Journal of the Korean Wood Science and Technology
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    • 제41권5호
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    • pp.425-431
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    • 2013
  • Estimation equations of shear modulus in the plane of laminated veneer lumber (LVL) were compared each other through uniaxial tension test results. The equations - basic elastic equation in the dimensional orthotropic case, Hankinson's formula and empirical equation proposed by Salikis and Falk, were applied to determine the elastic constants at various angles to the grain, which were needed for determination of shear modulus. Tensile elastic modulus of LVL predicted from these equations were compared with test data to evaluate the accuracy of the equation. Tensile elastic modulus rapidly decreased at orientations between 0 and 15 degrees and elastic modulus at grain angles of 15, 30, and 45 degrees overestimated in the presented equations. But the proposed equation by Salikis and Falk showed better prediction, especially at 30, and 45 degrees. This proposed formula would be more useful and practical for estimating of shear modulus of wood composites like LVL to minimize the effect of Poisson's ratio term.

포푸라와 일본잎갈나무의 집성재 제조에 관한 연구 (A Study on the Fabrication of the Laminated Wood Composed of Poplar and Larch)

  • 조재명;강선구;김기현;정병재
    • Journal of the Korean Wood Science and Technology
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    • 제2권2호
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    • pp.25-31
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    • 1974
  • 포푸라와 일본잎갈나무는 속성조림 수종으로 적극 장려되고 있으나 구조용재로서 저재질인 까닭에 그 이용도가 제한되고 있다. 따라서 이들의 이용도 증진과 수요의 안정화를 위하여 대량으로 소비되는 일반 건축용재로 이용할 수 있는 형질의 개량과 강도 증진을 목적으로 임업시험장에서 1967년부터 포푸라와 일본잎갈나무의 집성재 제조조건을 구명하기 위하여 본 시험연구를 시작하여 현재까지 포푸라와 일본잎갈나무의 접착, scarf 접착성능과 실대형통직, 만곡 집성재의 제조조건 및 이 수종 구성집성재 제조에 의한 포푸라재의 집성강도 증진과 lamina 형질이 집성 강도에 마치는 영향을 구명한 결과 다음과 같은 결론을 얻었다. 1. 접착제 Resorcinol Plyophen #6000에 의한 미류(Populus deltoides)와 일본잎갈나무(Larix leptolepis)의 단일 수종, 이수종 접착성능, 방부처리, 미류의 접착성능과 미류와 일본잎갈나무의 scarf 접속 정착성능 및 방부처리, 마류의 scarf 접착성능을 구명한 결과 1.1 Block 전단 및 안장선단 시험에 의한 접착성능은 평균 목파율이 65%로 우수하였고, 미류는 촉단면이 경단면보다, 일본잎갈나무는 경단면이 촉단면 보다 접착성이 양호하였다(표 1, 2참조). 1. 2 방부제 Na-PCP는 resorcinol 수지 접착제의 접착력에 영향 하였으나 집성재 제조에 요구되는 접착력에는 영향하지 않았다(표 3, 4참조). 1. 3 Plane scarf joint 접착에 있어서 안전한 scarf비는 일본잎갈나무 1/12이상, 미류는 1/6이상이 요구되고 방부처리 미류의 plane scarf joint 접착의 안전 scarf 비도 무처리재와 같이 1/6 이상이 요구되었다(표 5, 6, 7 및 8참조). 2. 접착제 Resorcinol Plyophen #6000에 의한 미류와 일본잎갈나무의 단일 수종 및 이수종구성 집성재의 상대 접착력과 삶음반복 접착력 및 접착층의 박리시험에 의한 접착성능을 구명한 결과 2.1 실대형 통직, 만곡 집성재의 block 전단 상태 접착강도는 허용 최소상태 접착강도의 3배 이상이였으며 삶음반복 접착 강도는 상태접착 강도의 1/2로 감소 되었으나, 허용 최소 기준 삶음반복 접착강도의 2배 이상으로 실대형 내수 집성재 제조의 안전성이 확인되였다(표 9 및 10참조). 2.2 실대형 통직, 만곡집성재의 박리율은 미류, 이수종(일본잎갈나무+미류), 일본잎갈나무의 순으로 높았으나 최대치는 일본잎갈나무의 통직집성재(3.5%)로서 허용 최대 기준율보다 적었다.(표 11 참조) 3. urea 수지 접착제에 의한 이태리포푸라(Populus euramericana)와 일본잎갈나무의 단수종, 이수종 및 lamina 형질에 따른 5 ply 구성 통직 접성재의 휨강도 시험, 압축강도 시험에 의한 집성강도와 접착성능을 구명한 결과 3.1 집성강도가 요구되는 건축 구조용재를 목적으로 이태리포푸라와 일본잎갈나무의 이수종 구성 집성재를 제조할 때에는 수종 구성을 L(일본잎갈나무)+P(이태리포푸라)+L+P+L로 하는 것이 양호하였다.(표 12참조) 3.2 수심과 옹이를 가지는 lamina로 구성된 집성재의 경성 강도는 무결점 lamina로 구성된 집성재 강도보다 현저히 강도가 감소되므로 강도가 요구되는 구조용재로서의 집성재 제조에는 이들 결점 부재의 분산 집성이 필요하였다.(표 13참조) 3.3 실대형 통직 집성재의 FPL 전단 상태 접착강도는 허용 최소기준 상태 접착강도의 2배 이상으로 urea 수지접착제로서 이을 수종의 내장주조용 집성재 제조가 가능하였다.

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목재(木材)파아티클과 철선복합(鐵線複合)보오드의 물리적(物理的) 및 기계적(機械的) 성질(性質)에 관(關)한 연구(硏究) (A Study on the Physical and Mechanical Properties of the Board Composed of Wood Particle and Steel Wire)

  • 박헌
    • Journal of the Korean Wood Science and Technology
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    • 제16권3호
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    • pp.22-37
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    • 1988
  • In tendancy of manufacturing beam with laminating particleboard, it was thought that if the properties, especially mechanical properties, of particleboard be reinforced, the mechanical properties of particleboard-laminated beam would be also improved. So in this study the particleboard was reinforced with composing of wood particle and steel wire. This study was carried out to obtain the basic physical and mechanical properties of board composed of wood particle and steel wire, especially tensile strength and compressive strength which are the important factors of the lamina of beam, in order to estimate whether the board, composed of wood particle and steel wire could be to improve the properties of the particleboard- laminated beam. The results obtained were summarized as follows: 1. The board composed of wood particle and steel wire in accordance with lower board density took better thickness swelling. 2. The board with lower board density was improved in higher value of tensile strength with more steel wires in prescribed cross section area of the board. for example, the board of density 0.5 showing 140% improved value. 3. In compressive strength, the board with lower board density was also improved in hjgher value with more steel wires in prescribed cross section area.

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집성재를 이용한 막구조물의 시공 및 설계 (Membrane Structural Design and Construction by Using Glued Laminated Timber)

  • 황부진;고광웅
    • 한국공간구조학회:학술대회논문집
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    • 한국공간구조학회 2008년도 춘계 학술발표회 논문집
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    • pp.49-52
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    • 2008
  • 목재자원을 효율적으로 활용하기 위한 목적으로 개발된 공학목재는 기존에 구조용으로 사용되어 오던 목재제품에 비해 강도가 높으면서도 안정적인 장점을 가지고 있다. 또한 설계 상세에 따라 부재를 주문 제작이 가능하며, 대규모 건축물에도 주요 구조체로 사용되어져 오고 있다. 장 스팬이 요구되는 재료로 구조용 집성재나 목재 I형장선, 단판적층재(LVL) 등을 활용하여 사용되고 있다. 본 프로젝트는 공학목재 중에서 집성재 및 막재를 이용한 구조 시스템으로, 강원도 뿌리기념관 공원공사 중 "야외무대 지붕공사"로 구조 재료, 구조설계 및 시공에 관한 내용으로 구성되어 있다. 지붕 구조재는 PVF/PFLT(테드라 필름코팅) 소재의 막이 사용되었다. 기둥 및 경사 부재는 강재(SS400)를 사용하였고, 캔틸레버 보 부재는 비대칭 구성 집성재(10S-28B)를 이용하였다.

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Evaluation of Adhesive Characteristics of Mixed Cross Laminated Timber (CLT) Using Yellow Popular and Softwood Structural Lumbers

  • Keon-Ho KIM;Hyun-Mi LEE;Min LEE
    • Journal of the Korean Wood Science and Technology
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    • 제52권1호
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    • pp.58-69
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    • 2024
  • To evaluate the adhesive characteristics of mixed cross-laminated timber (CLT) using domestic softwoods structural lumber proposed by KS F 3020 and yellow poplar, penetration depth of adhesive and thickness of bonding line were analyzed based on the results of boiling water soaking delamination. 3 Types of adhesives and 2 types of major layer were divided into a 5 ply CLT using yellow popular as minor layer. The bonding performance of the mixed CLT as structural members was evaluated based on the KS F 2081. The thickness of bonding line between layers of the mixed CLT was measured with a scanning electron microscope, and the adhesive penetration depth in the layer members was measured with an optical microscope. As a result of boiling water soaking delamination test of mixed CLT, the CLT specimens using PRF and PUR adhesives met the requirements of KS F 2081. It was verified that the penetration path of the adhesive in the layes was mainly through the tracheid cell in the case of Japanese larch and Korean red pine layers, and through the vessel and radial tissue in yellow popular layers. The penetration depth of the adhesive was the highest for the PRF adhesive under the same pressing time conditions, and the thickness of the bonding line was in inverse proportion to the penetration depth in the case of the PUR adhesive.

Resistance of Polystyrene-Impregnated Glued Laminated Lumbers after Exposure to Subterranean Termites in a Field

  • Dede HERMAWAN;Mahdi MUBAROK;Imam Busyra ABDILLAH;Yusuf Sudo HADI;Cossey YOSI;Aujchariya CHOTIKHUN;Rohmah PARI;Gustan PARI
    • Journal of the Korean Wood Science and Technology
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    • 제52권1호
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    • pp.70-86
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    • 2024
  • Termites are a serious threat to wood-based products in Indonesia. This study investigated the termite resistant property of glulam made from polystyrene-modified wood. Three tropical fast-growing wood species, namely mangium (Acacia mangium), manii (Maesopsis eminii), and rubberwood (Hevea brasiliensis), were prepared for flat-sawn laminae. After getting air-dried condition, the laminae were impregnated with polystyrene using potassium peroxydisulphate as a catalyst followed by polymerization at 80℃. Polystyrene-impregnated and control glued-laminated lumbers (glulams) were manufactured, and solid wood was provided. Three wood species and three wood products with six replicates were exposed in a field in Bogor, Indonesia, for four months, and before the tests, their density and moisture content were measured. At the end of the field tests, the weight loss and protection levels of each test sample were determined. A completely randomized factorial design was used for data analysis. The weight percentage gains for mangium, manii, and rubberwood were 22.30%, 18.22%, and 10.44%, respectively. The results showed that manii belonged to low-density wood, whereas the other two woods were medium-density wood, and the moisture content was the ambient moisture content, typical of the Bogor area. Regarding weight loss and protection level, mangium was the most durable against subterranean termite attacks, followed by rubberwood and manii. Among the wood products, the polystyrene-impregnated glulam presented the highest durability, followed by the control glulam and solid wood. Therefore, mangium and rubberwood polystyrene-impregnated glulams are recommended for future product development.

소나무 집성판의 표면화장 재료별 외관품질 및 접착성 평가 (Evaluation on the Appearance and Gluing Characteristics of Pine Laminated Boards according to Overlaying Materials)

  • 소원택
    • Journal of the Korean Wood Science and Technology
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    • 제35권1호
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    • pp.27-35
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    • 2007
  • 적절한 화장재료를 표면에 오버레이하는 방법으로 집성판을 2차가공하여 부가가치를 높이려는 목적으로 국산 소나무 소경 간벌목을 제재하여 집성판을 제조하고 표면화장 재료로서 화장단판, 종이류, 포류를 집성판의 표면에 오버레이 접착가공을 설시하였다. 제조된 화장집성판의 외관품질과 접착성을 조사하고 국산재의 집성이용 및 화장효과에 대한 성능을 평가한 결과를 요약하면 다음과 같다. 티크 슬라이스드 단판 오버레이 화장집성판의 경우 미약한 단판 부풀음, 균열 및 접합틈새가 발생하였고 종이 및 직물류 오버레이 화장집성판의 경우 미약한 밀림현상이 발생하였으나 전체적으로 재면 및 겉모양 품질은 양호하였으며 KS규격의 1급에 해당하였다. 화장집성판의 박리율을 비교했을 때 단판이 종이 빛 직물류 오버레이보다 내수접착성이 불량하였다.