• 제목/요약/키워드: compression wood

검색결과 132건 처리시간 0.022초

Relationship between Anatomical Properties and Compression Strength Parallel to Grain of Larix kaemferi C.

  • Oh, Seung-Won;Jeong, In-Soo
    • 한국가구학회지
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    • 제17권4호
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    • pp.49-57
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    • 2006
  • Larix kaemferi is now a major economic kind of trees and is produced in large quantity every year. Thus, the study of Larix kaemferiis conducted to acquire the basic date of measures for the reasonable use, clarifying the relation with the compression strength parallel to grain according to anatomical properties by heartwood and sapwood, and earlywood and latewood. As the length of an earlywood tracheid and the radial wall thickness of earlywood and latewood tracheids increased, the compression strength rose, and as the height of uniseriate ray in cell number increased, the compression strength parallel to grain fell. The major anatomical factors effecting on the compression strength parallel to grain of heart wood were the radial wall thickness of a latewood tracheid and the length of a latewood tracheid, while in sapwood, the length of an earlywood tracheid and the radial wall thickness of earlywood and latewood tracheids were the major factor on it.

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적층목질재(積層木質材)(Glulam)의 중립축(中立軸)과 강도적(强度的) 성질(性質)에 관한 연구(硏究) (Study on the Neutral Axis of Glulam and its Mechanical Properties)

  • 박헌
    • Journal of the Korean Wood Science and Technology
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    • 제18권3호
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    • pp.42-52
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    • 1990
  • In this study, thick 24mm glulams were composed of thick. 3, 4, 6, 8mm Larch laminas to study that the theoretical analysis and the experimental analysis regarding the location of neutral axis of the glulams were compared, and to study on the effect of location of neutral axis on mechanical properties of glulam. The variation of location of neutral axis after proportional limit(or elastical limit) was studied to offer basic data to make the better composition method of glulam. The result obtained can be summarized as follows: 1. The theoretical neutral axis was 0.547 in solid wood, and also 0.547 in glulams because glulams were composed of only Larch laminas. 2. In solid wood, the deviation of the theoretical and the experimental neutral axis location was 0.1%, But in glulams, the deviation from-12.2% to + 7.8% showed nonuniform pattern but no large deviation. Because laminas was only of Larch and so the mechanical properties of laminas were monotonous. 3. The neutral axis exerted no influance on the elasticity of glulam, which meaned that the maximum shear strength in the neutral axis showed no influance on elasticity limit. 4. The only minutely lower elasticities of glulam than that of solid wood were shown. This was because of influance of glue lines of glulam on the elasticlties. 5. The failure type of glulam was wholly simple tension failure and the horizontal shear failure near neutral axis was not taken place, which was that glue line was complete in bonding and the strength of the lamina was not various but uniform. 6. The ratio of tension strain($^{\varepsilon}t$) I compression strain($^{\varepsilon}c$) initially showed uniform level After the elasticity limit. the ratio was increased with the flow of time and so the tension strain was more increased than compression strain. So this proved tension lamination technique, which is that the mechanical properties of glulam could be improved, if the lamina of more superior strength would he added on the bottom side of the glulam.

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WPC 방음판의 수직하중에 대한 내하성능 평가 (Load Carrying Capacity Evaluation of WPC Soundproof Panel Subjected to Vertical Loads)

  • 장태순;이일근;김철환;심재원
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2014년도 추계학술대회 논문집
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    • pp.823-826
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    • 2014
  • The weight of soundproof panels is an important consideration in the design of both panels and supporting structures. The soundproof panels in noise barriers have to carry their net weight in wet condition respectively the reduced weight and also the weight of the above installed panels in wet condition without showing any failing. In this study, a compression test and a flexural test were performed to determine the maximum vertical load which a wood plastic composites (WPC) panel can bear. In addition, the maximum loading number and height of WPC panels in a noise barrier were calculated for full, simple, and continuous support conditions.

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Mechanical Properties of Woodceramics According to Carbonizing Temperature - Bending, Compression and Hardness -

  • Byeon, Hee-Seop;Ahn, Sang-Yeol;Oh, Seung-Won;Piao, Jin-Ji
    • Journal of the Korean Wood Science and Technology
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    • 제32권3호
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    • pp.59-65
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    • 2004
  • This paper reports the mechanical properties of bending, compression and hardness of woodceramics manufactured at different carbonizing temperatures (600℃, 800℃, 1000℃, 1200℃ and 1500℃) in a vacuum sintering furnace using sawdust boards of Pinus densiflora, Pinus koraiensis and Larix kaemferi. The highest values of bending MOR (MORb) were 104 kgf/cm2 (1200℃), 91 kgf/cm2 (1500℃) and 86 kgf/cm2 (1500℃), the highest values of compression strength were 152 kgf/cm2(1200℃)), 160 kgf/cm2(1000℃) and 189 kgf/cm2(1000℃), the highest values of hardness were 2.00 kgf/mm2(800℃), 2.01 kgf/mm2 (1200℃) and 2.28 kgf/mm2 (1000℃) in P. densifora, L. kaemferi and P. koraiensis, respectively. The carbonizing temperature of 600℃ was not proper to the mechanical properties for three kinds of sawdust boards and the highest values of mechanical properties were different from the kinds of mechanical properties and species of sawdust boards. Therefore, it is necessary to manufacture woodceramics at a proper temperature for particular species of sawdust boards to obtain good mechanical properties.

Effect of Thermal Compression Treatment on the Surface Hardness, Vertical Density Propile and Thickness Swelling of Eucalyptus Wood Boards by Hot-pressing

  • Unsal, Oner;Candan, Zeki;Buyuksari, Umit;Korkut, Suleyman;Chang, Yoon-Seong;Yeo, Hwan-Myeong
    • Journal of the Korean Wood Science and Technology
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    • 제39권2호
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    • pp.148-155
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    • 2011
  • Thermal treatment techniques are used for modifying wood and wood-based materials to improve dimensional stability and hygroscopicity. This study investigated the effects of press pressure and temperature on density, vertical density profile, thickness swelling and surface hardness of eucalyptus wood boards. The experimental wood boards were prepared from Turkish River Gum ($Eucalyptus$ $camaldulensis$ Dehn.). The surface hardness value increased with increasing press pressure in the treated groups. The application of a higher pressure at the same temperature level increased the amount of swelling of wood. It means that it is not needed for application of higher pressure to enhance the dimensional stability of wood. It is expected that it is possible to produce increased hardness, dimensional stability and durability by application of hot pressing treatment. This research showed that different press pressure and temperature values should be used to improve the performance properties of eucalyptus wood so that the end-use of the wood materials could be expanded.

폐타이어를 이용한 목질계 복합판넬의 연구 - 열압조건에 의한 재질특성 - (Studies on Wood-based Composite Panel with Waste Tire - Properties of Composite Boards in Relation to Hot Pressing Conditions -)

  • 이원희;박상진
    • Journal of the Korean Wood Science and Technology
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    • 제25권4호
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    • pp.29-38
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    • 1997
  • The effect and control of wood property of reconstituted composite panels for improved board properties by wood-waste materials and development of combination method for heterogeneous materials have been of interest to the wood science researchers. The purpose of this study is to consider the properties in relation to hot pressing conditions and to develope the optimum hot pressing condition with waste wood and waste tire for the manufacturing of composite boards. The study of composite boards for recycling of wood and waste tire is nothing up to the present. Physical and mechanical properties such as specific gravity, moisture content, swelling coefficient, modulus of rupture and modulus of elasticity in bending test were studied. The condition of 3-stage press time for the lowest moisture content of composite board was $4{\rightarrow}3{\rightarrow}3$ minutes. Specific gravity of composite panels was affected mainly by the amount of rubber chip. Because of the low rigidity and high elasticity in rubber chip, it is considered the composite panel was adequate material in the place of compression load, but not bending load. Therefore, it was concluded that a use of rubber-based wood composite panel is proper to the interior materials such as floor a room than exterior materials. From the test results, the most optimum hot pressing conditions were $4{\rightarrow}3{\rightarrow}3$ minutes for 3-stage press time and $45{\rightarrow}20{\rightarrow}5kg/cm^2$ for 3-stage press pressure. The rubber-based wood composite panel was very excellent in elasticity by combination of rubber chip in comparison with existing other wood-based materials. Therefore, it was considered that rubber-based wood composites can be applicable to every interior materials such as floor a room and will be expected to effective reuse and recycle of waste tires and wood-waste materials, and will be contribute to protection of environment pollution in earth.

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은행나무 지재(枝材)의 압축이상재(壓縮異常材)와 대응재(對應材)에 관(關)한 해부학적(解剖學的) 특성(特性) 비교(比較) (Anatomical Comparison between Compression Wood and Opposite Wood in a Branch of Ginkgo biloba L.)

  • 엄영근
    • Journal of the Korean Wood Science and Technology
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    • 제19권3호
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    • pp.77-85
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    • 1991
  • 은행나무 지재(枝材)에 발달(發達)하여 있는 압축이상재(壓縮異常材)와 대응재(對應材)의 해부학적(解剖學的) 특성(特性) 차이(差異)를 조직(組織) 및 그 구성요소(構成要素)의 크기 면에서 서로 검토(檢討) 비교(比較)하였다. 조직적(組織的)인 특성(特性)으로는 압축이상재(壓縮異常材)가 연륜폭(年輪幅), 횡단면상(橫斷面上) 가도관(假導官) 형상(形狀) 및 방사조직(放射組織) 비례상태(比例狀態), 세포간극(細胞間隙), 가도관(假導官) 선단(先端)의 굴곡(屈曲), 나선열(螺旋裂) 및 접선단면상(接線斷面上)의 방사조직(放射組織) 형상(形狀) 면에서 대응재(對應材)와 차이(差異)를 나타냈으며 구성요소(構成要素)의 크기에 있어서는 가도관(假導官)의 벽후(壁厚) 및 접선직경(接線直徑), 단열(單列) 방사조직(放射組織)의 높이, 이열방사조직(二列放射組織)의 수(數) 및 방사조직(放射組織) 밀도(密度) 면에서 압축이상재(壓縮異常材)가 대응재(對應材)와 차이(差異)를 나타내는 것으로 여겨졌다.

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목조건축 해체 고목재의 재질특성 및 강도성능 (Wood Quality and Strength Properties of Old Structural Members)

  • 황권환;박병수;박문재
    • Journal of the Korean Wood Science and Technology
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    • 제36권1호
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    • pp.36-44
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    • 2008
  • 목조건축물로부터 해체된 고목재를 해당 건축물의 복원이나 새로운 건축물에 재사용하기 위해서는 열화 및 부후 부위를 제외한 건전재의 재질 및 강도성능에 대한 평가가 필요하다. 트러스 현재로 사용된 부재와 사찰에 사용된 부재에 대해 현미경으로 수종식별을 행하고 KS 기준에 따라 각종 물성 및 강도 시험을 행하여 문헌에 의한 결과와 비교 검토하였다. 잎갈나무(Korean larch)는 재질 및 강도 성능이 기존 문헌값보다 높게 나타났으며, 소나무(Korean red pine)와 가문비나무(Yezo spruce)의 경우 해체재의 강도성능이 대체적으로 낮게 나타났다. 육안에 의한 건전부위의 시험편 내의 조직적 열화는 현미경적으로도 관찰되지 않았다. 인장시험편의 중앙부 두께가 5 mm에서 3 mm로 변함에 따라 인장강도가 증가하여 시험편 치수에 대한 검토가 필요한 것으로 판단되었으며, 압축 및 휨 시험법은 현행 기준으로도 적합한 수준이었다. 고목재류에 대한 구체적인 기초 강도 성능평가를 위한 시험방법 및 철물접합부의 접합성능에 대한 차후 연구 검토가 필요한 것으로 평가되었다.

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.

탄소와 목재섬유 혼합물을 이용한 전자기파 차폐용 시트의 제조 (The Manufacturing of Electromagnetic Shielding Sheet Using the Carbon and Wood Fiber Mixture)

  • 김형진;엄기증
    • 펄프종이기술
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    • 제38권4호
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    • pp.68-75
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    • 2006
  • Electromagnetic shielding sheet using the carbon and wood fiber mixture was manufactured in an effort to develop an electromagnetic shielding packaging material. Carbon fibers were cut into 5, 10, and 15 mm using the automatic cutting device and blown and dispersed using compression air passed through the fine nozzle. Then carbon fibers were slurried with water (0.1% consistency), and softwood kraft pulp along with cone starch were added. The wet mats were manufactured by dewatering in modified hand-sheet machine. The wet mats were pressed upto $4kgf/cm^2$ in the carbon and wood fiber mixture mat press. The wet mats were dried in the automatic controlled plate dryer. Investigation on the formation and surface structure of the newly developed carbon and wood fiber mixture electromagnetic shielding sheet were carried out using the scanning electron microscopy and the image analyzer. Finally electromagnetic shielding characteristics of the newly developed carbon and wood mixture sheet were measured using net-work analyser. The result was promising in the light of the fact that this method could open a new way to substitute the expensive imported electromagnetic shielding sheet.