林产工业
林產工業
림산공업
CHINA FOREST PRODUCTS INDUSTRY
2009年
6期
13-16
,共4页
刘焕荣%刘君良%李龙哲%柴宇博
劉煥榮%劉君良%李龍哲%柴宇博
류환영%류군량%리룡철%시우박
密实%单板层积材%酚醛树脂%浸渍
密實%單闆層積材%酚醛樹脂%浸漬
밀실%단판층적재%분철수지%침지
Dense%Laminated Veneer Lumber (LVL)%Phenol formal Resin%Impregnation
介绍了单板层积材、密实型单板层积材在国内外的研究和利用概况.探讨了采用低分子量酚醛树脂浸渍处理杨木单板的方法制备杨木单板层积材的生产技术.结果表明:施胶量相当时,浸渍方式与涂胶方式生产的单板层积材相比,密度相当,吸水厚度膨胀(24hTS)降低了24%,胶合强度提高了:16%,弹性模量(MOE)和静曲强度(MOR)分别提高了20.17%和44.76%.采用浸渍树脂方式生产的密实型强化杨木单板层积材随着吸药量的增多,密度增大;24hTS减小;胶合强度随着吸药量的增加先增大而后趋于平稳;MOE和MOR先增大后减小.当吸药量为168%时,MOE、MOR达到最大,分别为15.34GPa和135.31 MPa.密实型强化单板层积材能够满足建筑和木结构等结构材要求,具有良好的发展空间.
介紹瞭單闆層積材、密實型單闆層積材在國內外的研究和利用概況.探討瞭採用低分子量酚醛樹脂浸漬處理楊木單闆的方法製備楊木單闆層積材的生產技術.結果錶明:施膠量相噹時,浸漬方式與塗膠方式生產的單闆層積材相比,密度相噹,吸水厚度膨脹(24hTS)降低瞭24%,膠閤彊度提高瞭:16%,彈性模量(MOE)和靜麯彊度(MOR)分彆提高瞭20.17%和44.76%.採用浸漬樹脂方式生產的密實型彊化楊木單闆層積材隨著吸藥量的增多,密度增大;24hTS減小;膠閤彊度隨著吸藥量的增加先增大而後趨于平穩;MOE和MOR先增大後減小.噹吸藥量為168%時,MOE、MOR達到最大,分彆為15.34GPa和135.31 MPa.密實型彊化單闆層積材能夠滿足建築和木結構等結構材要求,具有良好的髮展空間.
개소료단판층적재、밀실형단판층적재재국내외적연구화이용개황.탐토료채용저분자량분철수지침지처리양목단판적방법제비양목단판층적재적생산기술.결과표명:시효량상당시,침지방식여도효방식생산적단판층적재상비,밀도상당,흡수후도팽창(24hTS)강저료24%,효합강도제고료:16%,탄성모량(MOE)화정곡강도(MOR)분별제고료20.17%화44.76%.채용침지수지방식생산적밀실형강화양목단판층적재수착흡약량적증다,밀도증대;24hTS감소;효합강도수착흡약량적증가선증대이후추우평은;MOE화MOR선증대후감소.당흡약량위168%시,MOE、MOR체도최대,분별위15.34GPa화135.31 MPa.밀실형강화단판층적재능구만족건축화목결구등결구재요구,구유량호적발전공간.
This paper introduces the present study and utilization of Laminated Veneer Lumber (LVL) and dense LVL. It mainly covers the investigation on manufacture technology of dense Poplar LVL in impregnation way ,in which Poplar veneers were impregnated with low-molecular-weight water-soluble phenol-formaldehyde resin. The results indicated that :under the condition of equal resin consumption , the properties of dense LVL manufactured in impregnation way were better than those of manufactured in resin spreading way, 24h TS of the former decreased by 24% than the latter, bond strength increased by 16%, MOE and MOR increased by 20. 17% and 44. 76% respectively, while the density of two kinds of LVL manufactured in different ways were close; when impregnation way was used, as the resin amount absorbed increased, the density of dense LVL in-creased, 24h TS decreased, the bond strength increased at first and then remained stable, MOE and MOR were improved significantly first, then decreased afterwards, and MOE and MOR came to the peak value, reached 15.34GPa and 135.31MPa respectively at absorbed resin content of 168. 1%. The great physical and mechan-ical properties of dense LVL meet the requirement for construction use, so it is a potential structure material.