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Study on the Physical and Mechanical Properties of Particleboard and Oriented Strandboard Manufactured by Tulliptree (Liriodendron tulipifera L.)

백합나무를 이용하여 제조한 3층 파티클보드와 배향성 스트랜드보드(OSB)의 물성에 관한 연구

  • Seo, Jun won (Department of Green Technology Convergence, Konkuk University) ;
  • Gang, Gil woo (Department of Green Technology Convergence, Konkuk University) ;
  • Jo, Gun hee (Department of Green Technology Convergence, Konkuk University) ;
  • Park, Heon (Department of Green Technology Convergence, Konkuk University)
  • 서준원 (건국대학교 녹색기술융합학과) ;
  • 강길우 (건국대학교 녹색기술융합학과) ;
  • 조건희 (건국대학교 녹색기술융합학과) ;
  • 박헌 (건국대학교 녹색기술융합학과)
  • Received : 2017.12.23
  • Accepted : 2018.01.05
  • Published : 2018.01.25

Abstract

This study was conducted to investigate a potential of Yellow poplar (Liriodendron tulipifera L.) as a raw material for the manufacturing of particleboard (PB) and oriented strandboard (OSB). PB panels were prepared at the parameters of $0.7g/cm^3$ density, 15 mm thickness, three-layer, $E_1$ grade urea-formaldehyde (UF) resin, emulsion wax, and hardener. OSB panels were manufactured with a density of $0.65g/cm^3$, thickness of 10 mm, and $E_1$ grade of UF resin. Particle size of the face layer of PB was 20~80 mesh with 7~9% moisture content (MC), while that of core-layer was 3~20 mesh with 3~5% MC, which was similar to the production condition of commercial PB. As a result, the manufactured PB panels with 15.8 mm thickness, $0.7g/cm^3$ density, and 5.8% MC satisfied the requirement of bending strength of 15 type PB of Korean Industrial Standard (KS F 3104). Both internal bonding (IB) strength and surface screw withdrawal resistance also satisfied the requirement of 18 type PB of the standard. But, the edge screw withdrawal resistance satisfied the requirement of 15 type PB of the standard. These differences in properties could be due to the slenderness ratio of raw particles. In case of OSB panels with 10.7 mm thickness, $0.68g/cm^3$ density, and 5.8% MC satisfied all the requirements of bending strength, screw withdrawal resistance, and IB strength of 18 type PB of the standard. These results suggest that Yellow poplar wood has a good potential as a raw material for the production of PB and OSB.

본 연구에서는 주요 조림수종으로 선정된 백합나무를 이용하여 파티클보드(PB)와 배향성 스트랜드보드(OSB)를 제조하여 보드 원료로서의 가능성을 확인하였다. 두께 15 mm, 밀도 $0.7g/cm^3$의 파티클보드와 두께 10 mm, 밀도 $0.65g/cm^3$의 OSB를 제조하였으며, 파티클보드 공장에서 상용하고 있는 $E_1$ 등급의 요소 폼알데하이드 수지와 왁스, 경화제를 첨가하여 실제 생산, 유통하는 보드제품과 최대한 유사하게 제작조건을 맞추었다. 제조된 보드의 품질시험 결과, PB의 경우, 평균두께 15.8 mm, 평균밀도 $0.71g/cm^3$, 함수율은 5.8% 기준에 적합하였다. 휨강도는 KS 규격(KS F 3104)의 13형 이상($13.0N/mm^2$ 이상), 박리강도는 18형 이상($0.3N/mm^2$ 이상), 나사못 유지력은 평면에서는 18형 이상(700 N 이상), 측면 15형 이상(300 N 이상)의 품질을 만족시켰다. 그러나 휨강도가 박리강도, 나사못유지력에 비해서 낮은 강도를 나타내는데 이것은 파티클 길이/두께의 비율(Slenderness ratio)이 영향을 미친 것으로 판단된다. OSB의 경우, 평균두께 10.7 mm, 평균밀도 $0.68g/cm^3$, 함수율은 6.3%로 KS F 3104 기준에 적합하였으며, 휨강도 18형 이상($18.0N/mm^2$ 이상), 나사못유지력 18형 이상(700 N 이상), 박리강도 13형 이상($0.20N/mm^2$ 이상)의 품질을 만족시켰다.

Keywords

References

  1. Chong, S.H. 2000. Quality and processing characteristics of yellow poplar.
  2. Kang, M.S., Chang, K.S., Son, Y.M., Kim, R.H., Park, I.H., Lee, K,H. 2013. Development of Biomass Allometric Equations for Liriodendron tulipifera L. Proceeding of Korea Forest Science pp. 517-519.
  3. Kim, G.S., Park, I.H., Chai, K.S., Kim, M.S. 2010. Estimation of Biomass in Chamaecyparis obtusa Stands 20(1): 70-73.
  4. Korea Forest Research Institute. 2012. Yellow poplar. Korea Forest Research Institute: 2-7.
  5. Korea Forest Research Institute. Forest research project report 5(2): 1-19.
  6. Lee, M., Park, S.B., Lee, S.M., Son, D.W., 2014. Characteristics of Volatile Organic Compounds and Aldehydes Emission from Yellow poplar( Liriodendron tulipifera L.). Journal of the Korean Wood Science and Technology 42(4): 357-366. https://doi.org/10.5658/WOOD.2014.42.4.357
  7. Lee, S.T., Jeong, J.M., Kim, H.S., Bae, S.W., Jang, S.C., Lee, K.J. 2010. Management and characteristics of yellow poplar. Korea Forest Research Institute. Research Data. No. 395.
  8. Lim, J.A., Oh, J.K., Yeo, H.M., Lee, J.J., 2010. Feasibility of Domestic Yellow Poplar (Liriodendron tulipifera L.) Dimension Lumber for Structural Uses. Journal of the Korean Wood Science and Technology 38(6): 357-366.
  9. Park, B.S., Chung, D.J., Lee, D.S., Chong, S.H., Park, J.H. 2009. Yellow poplar's fundamental wood property. Forest Science Paper 69: 6572.
  10. Ryu, K.O., Kim, U.J., Kim, I.S., Choi, H.S., Lee, D.H., Kim, Y.W. 2008. Liriodendron tulipifera L.-Growth characteristics and utilization technique-. Korea Forest Research Institute. No. 286, 320.
  11. Ryu, K.O., Jang, S.S., Choi, W.Y., Kim, H.E. 2003. Growth Performance and Adaptation of Liriodendron tulipifera in Korea. Journal of Korean Forest Society 92(6): 515-525.