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      건축용 난연 목재 개발에 대한 실험 연구 = An Experimental Study on the Development of Fire-retardant Treated Wood for Construction

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      https://www.riss.kr/link?id=A103844540

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      다국어 초록 (Multilingual Abstract)

      This study investigates fire-retardant performances and combustion/thermal characteristics of fire-retardant treated wood by comparing them with those of fire-retardant untreated wood from the expreimental resutls of cone calorimeter and thermo-gravim...

      This study investigates fire-retardant performances and combustion/thermal characteristics of fire-retardant treated wood by comparing them with those of fire-retardant untreated wood from the expreimental resutls of cone calorimeter and thermo-gravimetric(TG) analyzer. Hazardousness of combustion product gases for fire-retardant treated wood and untreasted wood were also observed from the results of internal finish material incombustibility test according to the Korea standard code of KS F 2271. In this study, we also tried to improve the fire retardant performance of wood by applying fire-retardant chemical composites, and to secure the fire safety performance in buildings. Red pine (Pinus densiflora) was selected as a test specimen because it is mostly used as a building material in Korea. Fire retardant chemical composites (FRCs) were prepared by mixing boron, phosphorous, and nitrogen species and treated by press-impregnation method. Water-based FRCs were composed of 3% boric acid($H_3BO_3$), 3% borax decahydrate($Na_2B_4O_7$), 8% ammonium carbonate($(NH_4)_2CO_3$), diammonium phosphate ($(NH_4)_2HPO_4$) varied from 10-30% and potassium carbonate($K_2CO_3$) varied from 10-30%. From the test results of cone calorimeter, TG analysis and gas hazard assessments, newly proposed were the optimal composition and production methods of FRCs which can sufficiently meet fire-retardant level 3 based on Korea law of construction. Thus, the FRCs, developed in this study, are anticipated to contribute to the improvement of fire safety and widespread of usage in wood as building materials.

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      참고문헌 (Reference)

      1 김종인, "목재 및 목질재료용 난연성 폴리우레탄수지 도막의 난연성능" 한국목재공학회 30 (30): 172-179, 2002

      2 신백우, "목분-고밀도폴리에틸렌 복합체의 연소성 및 열적특성" 한국화재소방학회 26 (26): 89-95, 2012

      3 서현정, "국내 유용 해외 목재 수종의 연소특성 평가" 한국목재공학회 44 (44): 19-29, 2016

      4 Y. G. Eom, "Wood and Engineered Wood as The Eco-friendly Building Materials" 20 (20): 26-49, 2007

      5 J. Yang, "Using DTA to Quantitatively Determine Enthalpy Change Over a Wide Temperature Range by the"Mass-Difference Baseline Method"" 131 (131): 1999-,

      6 H. Yang, "Thermal Properties of Bio-flour-Filed Polyolefin Composites with Different Compatibilizing Agent Type and Content" 181 (181): 2006-,

      7 Y. Park, "The Improvement of Thermal Conductivity of Wood-based Panel for Laminated Flooring Used the Exfoliated Graphite for Heating Energy Conservation" 18 (18): 650-655, 2011

      8 H. J. Seo, "The Evaluation of the Flame Retardant Performance of the Wood-based Building Materials Applied to Carbon Materials" 21 (21): 514-526, 2014

      9 K. Ozkaya, "The Effect of Potassium Carbonate, Borax and Wolmanit on the Burning Characteristics of Oriented Strandboard(OSB)" 21 (21): 1457-1462, 2007

      10 S. Liodakis, "Testing the Retardancy Effect of Various Inorganic Chemicals on Smoldering Combustion of Pinus Halepensis Needles" 444 (444): 157-165, 2006

      1 김종인, "목재 및 목질재료용 난연성 폴리우레탄수지 도막의 난연성능" 한국목재공학회 30 (30): 172-179, 2002

      2 신백우, "목분-고밀도폴리에틸렌 복합체의 연소성 및 열적특성" 한국화재소방학회 26 (26): 89-95, 2012

      3 서현정, "국내 유용 해외 목재 수종의 연소특성 평가" 한국목재공학회 44 (44): 19-29, 2016

      4 Y. G. Eom, "Wood and Engineered Wood as The Eco-friendly Building Materials" 20 (20): 26-49, 2007

      5 J. Yang, "Using DTA to Quantitatively Determine Enthalpy Change Over a Wide Temperature Range by the"Mass-Difference Baseline Method"" 131 (131): 1999-,

      6 H. Yang, "Thermal Properties of Bio-flour-Filed Polyolefin Composites with Different Compatibilizing Agent Type and Content" 181 (181): 2006-,

      7 Y. Park, "The Improvement of Thermal Conductivity of Wood-based Panel for Laminated Flooring Used the Exfoliated Graphite for Heating Energy Conservation" 18 (18): 650-655, 2011

      8 H. J. Seo, "The Evaluation of the Flame Retardant Performance of the Wood-based Building Materials Applied to Carbon Materials" 21 (21): 514-526, 2014

      9 K. Ozkaya, "The Effect of Potassium Carbonate, Borax and Wolmanit on the Burning Characteristics of Oriented Strandboard(OSB)" 21 (21): 1457-1462, 2007

      10 S. Liodakis, "Testing the Retardancy Effect of Various Inorganic Chemicals on Smoldering Combustion of Pinus Halepensis Needles" 444 (444): 157-165, 2006

      11 KS F 2271, "Testing Method for Incombustibility of Internal Finish Material and Element of Buildings" 2006

      12 C. Branca, "Semi-global Mechanisms for the Oxidation of Diammonium Phosphate Impregnated Wood" 91 (91): 97-104, 2011

      13 H. J. Seo, "Review on Enhancing Flame Retardant Performance of Building Materials using Carbon Nanomaterials" 20 (20): 514-526, 2013

      14 S. Liang, "Recent Developments in Flame Retardant Polymeric Coatings" 76 (76): 1642-1665, 2013

      15 KS F ISO 5660-1, "Reaction to Fire Test-Heat Release. Smoke Production And Mass Loss Rate-Part 1 : Heat Release Rate(Cone Calorimeter Method)" Korean Standards Association 2003

      16 K. C. Tsai, "Orientation Effect on Cone Calorimeter Test Results to Assess Fire Hazard of Materials" 763 (763): 2009-,

      17 B. Li, "Influence of Polymer Additives on Thermal Decomposition and Smoke Emission of Poly(Vinyl Chloride)" 82 (82): 467-476, 2003

      18 L. Zhou, "Hydropyrolysis cHaracteristics and Kinetics of Potassiumimpregnated Pine Wood" 116 : 149-157, 2013

      19 A. P. Mouritz, "Heat Release of Polymer Composites in Fire" 37 (37): 1040-1054, 2006

      20 T. Randoux, "Halogen-free Flame Retardant Radiation Curable Coatings" 281 (281): 2002-,

      21 M. Delichatsios, "Flammability Properties for Charring Materials" 38 (38): 219-228, 2003

      22 L. A. Lowden, "Flammability Behaviour of Wood and a Review of the Methods for Its Reduction" 2 (2): 1-19, 2013

      23 Mingyu-Wen, "Flame Retardant Performance of Wood Treated with Flame Retardant Chemicals" 한국목재공학회 40 (40): 311-318, 2012

      24 M. Gao, "Flame Retardance of Wood Treated with Guanidine Compouns Characterized by Thermal Degradation Behavior" 73 (73): 151-156, 2005

      25 G. Camino, "Fire Retardant Polymer Materials New Perspectives" 101 (101): 2005-,

      26 P. D. Evans, "Fire Resistance of Preservative Treated Fence Posts" 1994

      27 H. J. Seo, "Fire Properties of Pinus densiflora Utilizing Fire-retardant Chemicals based on Borated and Phosphorus(I)-Combustion Characteristics" 12 (12): 5417-5427, 2017

      28 H. J. Seo, "Enhancing the Flame-retardant Performance of Wood-based Materials using Carbon-based Materials" 123 : 1935-1942, 2016

      29 A. D. Cavdar, "Effect of Various Wood Preservatives on Limiting Oxygen Index Levels of Fir Wood" 50 : 279-284, 2014

      30 J. Jiang, "Effect of Nitrogen Phosphorus Flame Retardants on Thermal Degradation of Wood" 24 (24): 2633-2637, 2010

      31 A. D. Cavdar, "Effect of Boric Acid and Borax on Mechanical, Fire and Thermal Properties of Wood Flour Filled High Density Polyethylene Composites" 60 : 6-12, 2015

      32 정영진, "Comparison of combustion properties of native wood species used for fire pots in Korea" 한국공업화학회 16 (16): 15-19, 2010

      33 Y. J. Chung, "Comparison of Combustion Properties of the Pinus Regida, Castanea Sativa and Zelkoa Serrata" 23 (23): 73-78, 2009

      34 H. J. Seo, "Combustion and Thermal Characteristics of Korean Wood Species" 11 (11): 7537-7550, 2016

      35 J. Luche, "Characterization of Thermal Properties and Analysis of Combustion Behavior of PMMA in a Cone Calorimeter" 46 (46): 451-461, 2011

      36 J. A. Drysdale, "Boron Treatments for the Preservation of Wood-a Review of Efficacy Data for Fungi and Termites" 1994

      37 Y. J. Park, "A Study on the Emissions of CO2/non-CO2 for the Crown Layer and Surface Layer of Pine Trees" 30 (30): 111-118, 2015

      38 H. J. Seo, "A Study on the Combustion Characteristics of Useful Imported Wood for Building Materials-Focusing on the North American species(Douglas-fir, Western Red cedar)and African species(Makore, Padauk, Bubinga)-" 32 (32): 8-14, 2017

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-10-26 학술지명변경 한글명 : 산업안전학회지 -> 한국안전학회지 KCI등재
      2005-02-28 학회명변경 한글명 : 한국산업안전학회 -> 한국안전학회
      영문명 : The Korean Institute Of Industrial Safety -> The Korean Society of Safety
      KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2003-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.3 0.3 0.31
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.28 0.27 0.519 0.12
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