• Title/Summary/Keyword: domestic wood

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Present Condition of Domestic Wooden Playground (국내 목재 놀이터의 현황)

  • Hong, Seong-Cheol;Hwang, Sung-Wook;Lee, Won-Hee
    • Journal of the Korea Furniture Society
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    • v.23 no.2
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    • pp.207-213
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    • 2012
  • It was investigated present condition and enhancement of wooden playground. Wood material is the concept of eco-friendly materials. Wood is the best material which helps children to improve their emotional and physical quality. Recently, the number of wooden playgrounds was reduced but synthetic resin material has greatly increased. It was because of the high construction cost of wooden playground. Therefore, to increase the number of wooden playgrounds, it is the most important to remind people of positive recognition about wood material.

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A Study on the Table Design for Utilization of Cornus controversa Laminated Wood Manufactured by Pressing and Heating (가압.가열 처리한 층층나무 적층재를 활용한 테이블 디자인 연구)

  • Shin, Rang-Ho;Han, Tae-Hyung;Kwon, Jin-Heon
    • Journal of the Korea Furniture Society
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    • v.23 no.1
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    • pp.68-74
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    • 2012
  • In this study domestic thinning and small diameter woods of Giant dogwood (Cornus controversa Hemsl) was used. To increase the utilizability of wood, the utilizability was proposed after manufacturing laminated wood by pressing and heating. The physical and mechanical characteristics of Laminated wood were investigated and the color change was measured, using a Chromaticity coordinates, after being pressed at 10% (45 mm), 20% (40 mm), 30% (35 mm) for 5 minutes, using Stopper, and then heated at $180^{\circ}C$ for 6, 12, 24 and 48 hours. The results were as follows. Wood density, compressive strength, MOR, MOE are increased with increasing pressing rate but decreased as heating time is increased after pressing. However, Color change is clear, dimensional stability is improved after pressing and heating.

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Utilization of Wood Collections Using a Database Program for Personal Computers (퍼스널 컴퓨터용 데이타베이스 프로그램을 이용한 목재 재감의 효율적 이용)

  • Lee, Kyoung-Eun;Park, Won-Kyu
    • Journal of the Korean Wood Science and Technology
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    • v.20 no.4
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    • pp.43-48
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    • 1992
  • A database system for retrieving the information on wood collections was developed using the D-BASE III Plus program for personal computers. Basic information of biological, physical, chemical and technological properties was added to the data which used to be employed in simple card systems, such as identification number, species name and collection site. All information was fast and reliably retrievable. This paper also discussed the results of a survey on wood collections housed at domestic colleges and research institutes.

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Effect of Smoking Process on the Contents of Polycyclic Aromatic Hydrocarbons in Smoke Flavouring (훈연공정이 훈연액 중의 다환방향족 탄화수소의 함량에 미치는 영향)

  • 강희곤;이명섭;이광형;김창한
    • Food Science of Animal Resources
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    • v.18 no.1
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    • pp.42-49
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    • 1998
  • The contents of holocellulose, one of the main components of the wood, were 83.9% in oak wood and 76.9% in apple wood, respectively. Those of hemicellulose were 16.41 and 20.33%, and in lignin 23.0 and 19.7%, respectively. Six species of domestic oak wood and apple wood were considered to be suitable for smoking materials due to the low content of lignin. Benzo(a)pyrene contents in smoke flavoring prepared with oak wood at 150, 400 and 500$^{\circ}C$ were 0. 4, 3. 7 and 5.6$\mu\textrm{g}$,/kg, respectively. The amounts of phenanthrene were 112.7, 131.4 and 255.9$\mu\textrm{g}$/kg, respectively, in each temperature. The amounts of polycyclic aromatic hydrocarbons(PAH) in smoke flavory were in the order of phenanthrene>anthracene>pyrene>benzo(a)anthracene>chrysene>benzo(b)fluoranthens>benzo(a)pyrene Benzo(a)pyrene contents in smoking extracts prepared with apple wood at 150, 400 and 500$^{\circ}C$ were 0.4, 3.3 and 5.5$\mu\textrm{g}$/kg, respectively. Phenanthrene contents in those samples were 72.7, 100.2 and 220.5$\mu\textrm{g}$/kg, respectively. Contents of each PAH showed the same order as in oak wood.

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Studies on the Physical and Mechanical Properties of Imported and Domestic Corks (수입(輸入)코르크와 국산(國産)코르크의 물리(物理)·기계적(機械的) 성질(性質)에 관(關)한 연구(硏究))

  • Kim, Byung-Ro
    • Journal of the Korean Wood Science and Technology
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    • v.21 no.4
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    • pp.45-54
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    • 1993
  • This study examines the differences in structures, physical and mechanical properties between domestic(Quercus variabilis Blume) and foreign(Quercus suber L.) corks. The results obtained are as follows: 1. The cork tissue consists of cork cells, lenticels, sclereids and dark-brown zone. There was a significant difference in ratio of cork cells between foreign cork(93 %) and domestic cork(87 %). The ring width and width of late cork of the foreign cork were wider than those of domestic cork. But the percentage of late cork of domestic cork was richer than that of foreign cork. The size of cork cell of foreign cork was larger by about two times than that of domestic cork. 2. The density was slightly higher in domestic cork(0.22 g/$cm^3$) than in foreign cork(0.19 g/$cm^3$). During first 24 hours, the amount of water absorption of the foreign cork was greater than that of domestic cork. However, after 24 hours, the tendency was reversed. The level of EMC was higher in domestic cork than in foreign cork. Total shrinkage in the radial and tangential directions was larger in domestic cork than tn foreign cork. In the longitudinal direction, the tendency was reversed. There was no difference in total swelling in three woody directions between the two corks. 3. The modulus of elasticity in compression in the logitudinal and tangential direction was higher in domestic cork than in foreign cork, but the tendency was reversed in the radial direction. Both corks showed 95% of recovery rate after 24 hours when they were compressed by 0.5. There were no differences in tension strength and Brinell,s hardness bet ween domestic and foreign corks.

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A basic research for the probability based design of wood structures (확률 기반 목구조설계법을 위한 기초 연구)

  • Kim, Gwang-Chul
    • Journal of the Korea Furniture Society
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    • v.20 no.4
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    • pp.339-357
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    • 2009
  • Probability based design(PBD) method is independent of construction materials and uses real material properties unlike allowable stress design(ASD) that depends on small clear specimen property, also give quantitative safety and endurance lifetime of a certain material. Moreover, almost advanced country accepted PBD method instead of ASD method. So it is urgent to convert the current ASD method into the PBD method. However, there are wholly lacking of domestic researches related to current issue, and to solve several points in ASD method and to take advantage of PBD method, the conversion from the ASD method into the PBD method is a worldwide trend. Other domestic construction codes, such as steel or concrete constructions, accept the PBD method as well. Accordingly, to introduce PBD method into wood structural design, general theory, and preliminary data and methods were reviewed. With keeping this in mind, some important contents were reviewed, sorted some points for wood structural design that have distinctions against the other construction materials. Furthermore, the history of PBD method, and statistical data and theories for the PBD method, and preliminary data of resistance and load that are two random variables for the PBD method, and finally the difference between limit state design(LSD) and load and resistance factor design(LRFD) that were two superpowers in the PBD method.

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Suitability Analyses of Domestic Hardwoods as Furniture Parts (국산(國産) 활엽수재(闊葉樹材)의 가구부재(家具部材) 이용(利用) 타당성(妥當性) 분석(分析))

  • Kim, Gyu-Hyeok;Kim, Jin-Sung
    • Journal of the Korean Wood Science and Technology
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    • v.27 no.1
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    • pp.24-29
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    • 1999
  • A model to classify domestic hardwood species for furniture applications was developed by using discriminant analysis. The results indicated that among those 36 domestic hardwoods, which have the desired properties for use in furniture parts, 15 species would possibly substitute for temperate hardwoods imported from North America and 21 species for tropical hardwoods imported from southeast Asia and western Africa.

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Development of Structural Glued Laminated Timber with Domestic Cedar (국산 삼나무를 이용한 구조용 집성재 이용기술)

  • Kim, Kwang-Mo;Shim, Sang-Ro;Shim, Kug-Bo;Park, Joo-Saeng;Kim, Wun-Sub;Kim, Byoung-Nam;Yeo, Hwanmyeong
    • Journal of the Korean Wood Science and Technology
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    • v.37 no.3
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    • pp.184-191
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    • 2009
  • In the southern part of the Korean Peninsula including Jeju-island, the production amount of domestic cedar has increased gradually. However, their low qualities, expected to be caused by the low density and frequent knots, have restricted their practical utilization as the high value-added products. In this study, it is aimed to look for the new uses of domestic cedar and to examine the applicability for lamination lumbers of structural glued laminated timber (glulam). Above all, machine stress ratings for individual sawn lumbers confirmed that modulus of elasticity (MOE) of cedar lumber was lower than that of other common softwood species in Korea. On the other hand, cedar lumbers have enough stiffness to manufacture the structural glulam in accordance with Korean Industrial Standard (KS). The bonding strength and durability also met the KS limitation. Nevertheless, from the result of bending tests for cedar glulam, it was shown that the modulus of elasticity (MOE) did not meet the KS limitation. Therefore, it was concluded that additional researches were needed for reinforcing the stiffness of cedar glulam.

Some Physical Properties and Adsoptive Behaviors of Wood Charcoal Carbonized with Domestic wood (국산수종으로 탄화한 목탄의 물성 및 흡착성)

  • Jo, Tae-Su;Lee, Oh-Kyu;Ahn, Byung-Jun;Choi, Joon-Weon
    • Journal of Korea Foresty Energy
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    • v.25 no.1
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    • pp.9-17
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    • 2006
  • Properties of wood charcoal made from the domestic wood species at $300-900^{\circ}C$ have investigated to understand the correlation between carbonization temperature and chemical and physical characteristics of wood charcoal. In terms of charcoal yield at particular carbonization temperatures, it was drastically decreased until the temperature reaches up to $600^{\circ}C$ and the decrease ratio of yield was reduced at higher temperatures. As the carbonization temperature increased, pH of the wood charcoal increased so that it became basic at last. The wood charcoal prepared at $600{\sim}700^{\circ}C$ showed the highest caloric value and those of wood charcoals made at higher temperature became plateau at a little lower level than the peak. The caloric value of Japanese larch charcoal was a bit higher than that of Red oak charcoal. The carbon content in the wood charcoal was increased as the carbonization temperature increased, whereas the hydrogen content was decreased. Specific surface area of the wood charcoal became larger with increase in temperature up to $600^{\circ}C$ but it was decreased or reduced in the increasing ratio after, and then it rose again at higher temperature than $800^{\circ}C$. Absorption capacity of the wood charcoal against iodine and gaseous acetic acid became greater as the carbonization temperature increased. Japanese larch charcoal presented higher absorption capacity than Red oak charcoal. As the above results, it is revealed that carbonization temperature affects the chemical and physical properties of wood charcoal. Therefore, to use wood charcoal with maximum effect it should be prepared at optimum temperature for proper use.

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Prediction for the quantity of wood pellet demand and optimal biomass power generation according to biomass power plant expansion and co-firing plan (바이오매스 발전설비 증설·혼소 계획에 따른 Wood pellet 소요량 예측 및 최적 바이오매스 발전량 연구)

  • kim, Sang-Seon;Lee, Bong-Hee
    • Journal of the Korean Applied Science and Technology
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    • v.34 no.4
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    • pp.818-826
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    • 2017
  • In accordance with the New and Renewable Energy Supply Statistics, biomass power generation has surged since 2013, and use of wood pellet has the most sharply increased, 696Gwh in 2013, 2,764Gwh in 2014 and 2,512Gwh in 2015. Total domestic wood pellet consumption was 1.48million tons in 2015, of which wood pellets consumed for power generation account for about 1.08million tons, about 73%. In this study, we gained the result that the wood pellet would be consumed 2.61million tons in 2020, 6.85million tons in 2025, 11.39million tons in 2030. We also calculated the optimum biomass power generation, on the premise that the power plant co-fire 50% biomass, and the result was that 2.26million tons of wood pellets should be produced domestically in 2021 to operate the present licensed wood pellet power plant from this study.