• 제목/요약/키워드: wood adhesives

검색결과 134건 처리시간 0.026초

Structural Performance of Finger-Jointed Lumber with Different Joint Configurations

  • Lee, Sang-Joon;Eom, Chang-Deuk;Kim, Kwang-Mo
    • Journal of the Korean Wood Science and Technology
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    • 제39권2호
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    • pp.172-178
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    • 2011
  • Three different finger-jointed lumbers which have different geometric features and adhesives were manufactured and studied in this study. Larch and pitch pine lumbers with and without preservative treatment were used. Bending MOE was measured as the preliminary investigation for grouping the specimen. After the finger, bending MOE of two wood species without preservative treatment shows over 97% property of the control group. The tensile modulus also shows almost same property after the finger joint. And it is found out that the preservative treatment induce little effect on bending and tensile MOE. Based on this result, high performance of examined finger-jointed lumber can be found out. However, tensile strength decreased around 20% which would be induced by the crack along the root of the finger which is formed near the edge during manufacturing stage. And finger-jointed lumber with preservative treatment even shows higher decrement of the tensile strength with higher wooden part failure mode.

리기다소나무 판재(板材)의 접착조건(接着條件)이 집성재(集成材)의 접착성능(接着性能)에 미치는 영향(影響) (Effects of Adhesion Conditions on Bonding Strength of Pitch Pine Woods for Glued-Laminated Wood)

  • 박상범;공영토;조재명
    • Journal of the Korean Wood Science and Technology
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    • 제16권4호
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    • pp.48-53
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    • 1988
  • 본(本) 연구(硏究)는 리기다소나무판재(板材)를 이용(利用)하여 집성재(集成材)를 제조(製造)할 경우(境遇), 압체시간(壓締時間) 및 접착제도포량(接着劑塗布量), 목재(木材)의 함수율(含水率), Butt-joint의 틈새간격(間隔) 및 접착제(接着劑)의 종류(種類) 등(等)이 접착강도(接着强度)에 미치는 영향(影響)을 알아보기 위해 수행(遂行)되었다. 1. 리기다소나무집성재(集成材)의 제조(製造)에 수성(水性)비닐우레탄접착제(接着劑)를 사용(使用)한 결과(結果), 접착제도포량(接着劑塗布量) 200g/$m^2$, 압체압력(壓締壓力) 10kg/$cm^2$에서 12시간(時間) 압체(壓締)하면 기준강도(基準强度)(50kg/$cm^2$)이상(以上)에 달(達)하였다. 2. 판재(板材)의 함수율(含水率)의 접착력(接着力)을 크게 감소(減少)시켰으나, 고함수시(高含水時) 접착(接着)한 후(後) 기건(氣乾)하여 접착력(接着力)을 측정(測定)한 결과(結果), 100kg/$cm^2$)이상(以上)의 블록전단강도(剪斷强度)를 나타내었다. 3. 판재(板材)의 Butt joint 부분(部分)의 틈새간격(間隔)이 0.5mm이하(以下)인 경우(境遇), 강도(强度)값은 영향(影響)하지 않았고, 하중방향(荷重方向)이 접착력(接着力)과 수치(垂値)일 때가 수평(水平)일 때보다 강도성태(强度性能)이 양호(良好)하였다. 4. 시험(試驗)에 사용(使用)된 5종(種)의 접착제(接着劑) 중(中) 수성(水性)비닐우레탄수지접착제(樹脂接着劑)가 상태(常態) 및 내수접착력면(耐水接着力面)에서 가장 양호(良好)하였다.

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타닌접착제를 위한 침엽수 수피의 알칼리성 추출물의 양적 변이 (Quantitative Variation of Alkali-soluble Extracts from Coniferous Barks for Tannin-based Adhesives)

  • 조남석;김영신;한규성
    • Journal of the Korean Wood Science and Technology
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    • 제25권1호
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    • pp.23-27
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    • 1997
  • Alkali-soluble extracts were prepared from barks of Japanese larch(Larix leptolepis). Siberian larch(Larix gmelineii) and Radiata pine(Pinus radiata) The effect of various factors, such as particle size, liquor ratio, extraction temperature, and reaction time, on the extracts yield was investigated. Particle sizes affected the alkali-soluble extracts; the finer the particle size, the higher extracts and extract efficiency. High temperature and high liquor ratio were more effective. In the range of 0.25% to 1% NaOH concentration, alkali extracts were increased with the increasing alkali concentration. However, extract yields were leveled off above 0.5% alkali concentration. Extractions with NaHCO3 were almost equivalent to those of NaOH extraction. 1% NaOH and 1% NaHCO3 resulted in the highest yields of alkaline extracts. Extracts from Japanese larch were lower than those from Siberian larch and Radiata pine barks. Siberian larch bark was the best raw material for tannin adhesives, because its extractive yield was higher than those of the other barks. Concerning pH of alkaline media during extraction, small increases of the extract yields were resulted at range of pH 7 to pH 9, while a large increases from pH 9.0 to pH 12. This phenomenon is attributed to higher alkalinity.

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Comparison Study of Thermal Decomposition Characteristics of Wattle & Pine Tannin-based Adhesives

  • Kim, Sumin;Lee, Young-kyu;Kim, Hyun-Joong;Eom, Young Geun
    • Journal of the Korean Wood Science and Technology
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    • 제30권3호
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    • pp.34-41
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    • 2002
  • This study investigated the thermogravimetric analysis of two types of cured tannin-based adhesives from wattle and pine, with three hardeners of paraformaldehyde, hexamethylenetetramine and TN (tris(hydroxyl)nitromethan), at a temperature of 170℃ and a heating rate of 5, 10, 20 and 40℃/min for 10 minutes. The 5 minutes cured wattle tannin-based adhesive with each hardener at 170℃ was also tested to compare the degree of curing. It was found that thermogravimetric analysis could be used to measure the degree of curing of a thermosetting adhesive. The TG-DTG curves of all the adhesive systems were similar and showed three steps in a similar way to a phenolic resin. This means that each adhesive system is well cross-linked. However, a high thermal decomposition rate was shown at 150 to 400℃ in the case of the pine tannin sample with TN (tris(hydroxyl)nitromethan). The Flynn & Wall expression was used to evaluate the activation energy for thermal decomposition. As the level of conversion (𝛼) increased, the activation energy of each system increased. The activation energy of the wattle tannin-based adhesive with paraformaldehyde was higher than the others.

Influence of Hydrolytic Degradation on the Morphology of Cured Urea-Formaldehyde Resins of Different Formaldehyde/Urea Mole Ratios

  • Park, Byung-Dae;Jeong, Ho-Won
    • Journal of the Korean Wood Science and Technology
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    • 제39권2호
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    • pp.179-186
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    • 2011
  • In an effort to understand the hydrolytic degradation process of cured urea-formaldehyde (UF) resins responsible for the formaldehyde emission of wood-based composite panels, this study analyzed the influence of acid hydrolysis on the morphology of cured UF resins with different formaldehyde/urea (F/U) mole ratios such as 1.6, 1.4, 1.2 and 1.0. Field emission-scanning electron microscopy (FE-SEM) was employed to observe both exterior and fracture surfaces on thin films of cured UF resins before and after the etching with hydrochloric acid as a simulation of the hydrolytic degradation process. FE-SEM images showed that the exterior surface of cured UF resin with the F/U mole ratio of 1.0 had spherical structures after the acid hydrolysis while the other cured UF resins were not the case. However, the fracture surface observation showed that all the samples possessed spherical structures in the cured state of UF resins although their occurrence and size decreased as the F/U mole ratio increased. For the first time, we found the spherical structures in cured UF resins of higher F/U mole ratio of 1.4. After the acid hydrolysis, the spherical structures became a much predominant at the fracture surface. These results indicated that the spherical structures in cured UF resinswere much more resistant to the hydrolytic degradation by the acid than amorphous region.

Effect of Wood-Fiber Characteristics on Medium Density Fiberboard (MDF) Performance

  • Park, Byung-Dae;Kim, Yoon-Soo;Riedl, Bernard
    • Journal of the Korean Wood Science and Technology
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    • 제29권3호
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    • pp.27-35
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    • 2001
  • Four different sources of wood-fibers from Eucalyptus, Italian poplar, hemlock, and mixed species fibers were used to study the influence of their fiber characteristics on the performance of medium density fiberboard (MDF) panels bonded with both urea-formaldehyde (UF) and phenol-formaldehyde (PF) adhesives. Included fiber characteristics were fiber length, size distribution, bulk density, and acidity. Physical and mechanical properties of MDF panels manufactured by dry process using these different fibers were determined for the comparison of board performance. Two hardwood species had a large fraction of short fibers resulting in a higher bulk density while very long hemlock fibers had lower bulk density. Fiber acidity was revealed to strongly affect the internal bond (IB) strength of MDF panels bonded with UF resins. MDF panels made from mixed species fibers showed highest IB strength of all panels prepared. UF-bonded MDF panels showed poor dimensional stability. In conclusion, the present study showed that wood-fiber characteristics such as fiber length, bulk density, and acidity affect the performance of MDF boards, and also suggested that fiber characteristics be considered for MDF panel manufacture.

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Influence of Manufacturing Environment on Delamination of Mixed Cross Laminated Timber Using Polyurethane Adhesive

  • SONG, Dabin;KIM, Keonho
    • Journal of the Korean Wood Science and Technology
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    • 제50권3호
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    • pp.167-178
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    • 2022
  • To investigate the influence of manufacturing environment on bonding performance of mixed cross laminated wood (CLT) using polyurethane (PUR) adhesive, a boiling water soak delamination test according to the temperature and relative humidity was conducted. The 5-ply mixed CLT consisted of Japanese Larch for external and middle layer and yellow poplar for internal layer. The PUR adhesives with different opening times of 10 and 30 minutes were used. The mixed CLT was manufactured according to pressing times of PUR and manufacturing environments of summer and winter. In case of summer environment, the delamination rate of the mixed CLT with pressing time of 4 hours using a PUR adhesive with open time of 10 minutes met the requirements of KS F 2081. In case of winter environment, the delamination rate of the mixed CLT didn't meet the requirements of KS standard. However, it was possible to confirm the effect of improving the adhesive performance by adjusting the pressing time according to the open time of the adhesive under the manufacturing conditions. The delamination rate of CLT with open time 30 minutes PUR, manufactured by indirect moisture supply methods was 11.2% better than direct moisture supply methods. As a result of delamination test in the same condition of relative humidity and adhesive, it was found that the temperature of manufacturing environment influences the adhesive performance.

핑거접합부의 수량 및 배치가 생태목조건축용 집성재의 휨강도에 미치는 영향 (The Effects of Number and Location of Finger Joints on the Bending Strength of Glue Laminated Wood for Green Wood Building)

  • 소원택
    • 한국가구학회지
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    • 제18권1호
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    • pp.20-30
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    • 2007
  • This experiment was carried out to investigate the effects of number and location of finger joints on the bending strength of glue-laminated lumbers. Urea resin adhesives were used in this experiment and the resin content was 70% for cold pressing. The lamina were edge-jointed and end-jointed. The specimen were composed of one or three layers. The obtained results are summarized as follows; The effects of finger joints on the decrease of bending strength of glue laminated woods were different according to the number and location of finger joints. The decrease of MOR was highest on the middle position of laminated woods. The effects of several arrangements of finger joints on the bending strength of glue laminated woods showed on Figure 7 and 8. The variance of thickness-laminating on the bending strength of glue laminated woods were larger than those of width-laminating.

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Some Physical and Chemical Properties of Carbonized Wood Wastes(II)

  • Kim, Byung-Ro;Mishiro, Akiyoshi
    • Journal of the Korean Wood Science and Technology
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    • 제26권2호
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    • pp.6-15
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    • 1998
  • A total of forty five-ply, 30- by 30-cm lauan and larch plywood sheets were manufactured in the laboratory using commercial urea and phenol resin adhesives; half of these sheets were treated with fresh concrete. Each sheet was carbonized for 2, 4, and 6hours at $400^{\circ}C$, $600^{\circ}C$, and $750^{\circ}C$, respectively, and their physical properties were measured. The yie1d of charcoal decreased as carbonization temperature and time increased. Charcoal yield was greater in plywood than in veneer, and slightly greater in plywood treated with concrete compared to untreated plywood. Plywood manufactured with phenol resin adhesive had higher pH, higher equilibrium moisture content (EMC), and greater adsorption of methylene-blue dye compared to plywood manufactured with urea resin. For concrete-treated plywood, pH was greater than 10 even when the sheets were carbonized for 2hours at $400^{\circ}C$. Although the EMC of the phenol resin plywood was higher than that of the urea resin plywood, EMC of the phenol resin was lower than that of the urea resin. The larch phenol resin plywood that was carbonized for 6 hours at $750^{\circ}C$ adsorbed more methylene-blue than did the commercia1 wood-based activated charcoal as a result of total pore volume and surface area.

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Effect of Urea-Formaldehyde Resin Adhesive Viscosity on Plywood Adhesion

  • Hong, Min-Kug;Park, Byung-Dae
    • Journal of the Korean Wood Science and Technology
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    • 제45권2호
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    • pp.223-231
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    • 2017
  • This work was conducted to investigate on the effect of urea-formaldehyde (UF) resin viscosity on plywood adhesion. The viscosity of UF resin was controlled either by adjusting the condensation reaction during its synthesis to obtain different target viscosities (100, 200 and 300 mPa.s) at two levels of formaldehyde/urea (F/U) mole ratios (1.0 and 1.2) or by adding different amounts (10, 20 and 30%) of wheat flour into the resins for the manufacture of plywood. When the viscosity of UF resin increased by the condensation reaction, the adhesion strength of plywood bonded with UF resin of 1.2 F/U mole ratio consistently increased, while those bonded with the 1.0 F/U mole ratio resin slightly decreased, suggesting a difference in the adhesion in plywood. However, the adhesion strength of plywood decreased as the viscosity increased by adding wheat flour, regardless of F/U mole ratio. The manipulation of UF resin viscosity by adjusting the condensation reaction was much more efficient than by adding wheat flour in improving the adhesion performance of plywood. These results indicated that a way of controlling the viscosity of UF resin adhesives has a great influence to their adhesion in plywood.