重组木制造技术研究进展与展望
Research Status and Trends of Wood Scrimber Manufacturing Technology
- 2022年36卷第1期 页码:22-28
DOI: 10.12326/j.2096-9694.2021040
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1.山东农业大学林学院;黄河下游森林培育国家林业和草原局重点实验室,山东泰安 271018
2.山东省林业科学研究院,山东济南 250014
3.山东京博木基材料有限公司,山东滨州 256500
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高旭东,亓燕然,范吉龙等.重组木制造技术研究进展与展望[J].木材科学与技术,2022,36(01):22-28.
GAO Xu-dong,QI Yan-ran,FAN Ji-long,et al.Research Status and Trends of Wood Scrimber Manufacturing Technology[J].Chinese Journal of Wood Science and Technology,2022,36(01):22-28.
依据原料基本单元形态的不同(细长小径材形态和宽薄单板),将重组木分为两类:传统重组木和高性能重组木。围绕两类重组木的制备工艺,重点论述主要工艺的研究进展,分析瓶颈问题;针对高性能重组木关键技术的薄弱环节,提出优化木束单元精细疏解技术、提升加工装备自动化水平、开发绿色功能化的高端产品,构建完善的理论技术体系等建议。
According to the morphology difference of the raw-materials (small-diameter logs and wide-and-thin veneer), the wood scrimbers were divided into two categories: the traditional wood scrimbers and the high-performance wood scrimbers. In this paper, the processing technologies were reviewed and discussed, and the bottleneck issues were analyzed. In view of the weak points of the key technologies for the high performance scrimbers, four suggestions were proposed, including optimization of the fine crush technology for the wood bundles, increasing automation of the processing equipment, developing green and multifunctional wood scrimbers, as well as building sound theoretical and technical systems.
重组木小径材疏解单板
wood scrimbersmall-diameter logcrushed veneers
林天成, 翟莲, 彭东俊. 国内外重组木的研究现状与发展趋势[J]. 低温建筑技术, 2017, 39(3): 58-60.
LIN T C, ZHAI L, PENG D J. Research status and development trend of domestic and foreign scrimber[J]. Low Temperature Architecture Technology, 2017, 39(3): 58-60.
张亚慧, 齐越, 黄宇翔, 等. 我国高性能重组木材料制备技术开发与应用及未来发展[J]. 木材工业, 2018, 32(2): 14-17.
ZHANG Y H, QI Y, HUANG Y X, et al. Manufacturing technology, application and future development of high-performance wood scrimber in China[J]. China Wood Industry, 2018, 32(2): 14-17.
Coleman J D. Reconsolidated wood product:US04232067A[P]. 1980-11-04.
王恺, 肖亦华. 重组木国内外概况及发展趋势[J]. 木材工业, 1989, 3(1): 40-43.
WANG K, XIAO Y H. General situation and development trend of scrimber at home and abroad[J]. China Wood Industry, 1989, 3(1): 40-43.
汪孙国. 国外两种重组木生产线介绍[J]. 木材工业, 1990, 4(2): 46-47, 45.
WANG S G. Introduction of two kinds of SCRIMBER production lines abroad[J]. China Wood Industry, 1990, 4(2): 46-47, 45.
陈明及, 吴金绒, 陈骁轶, 等. 不同因素对竹柳枝桠材重组木性能的影响[J]. 浙江农林大学学报, 2016, 33(4): 658-666.
CHEN M J, WU J R, CHEN X Y, et al. Properties of Salix discolor scrimber[J]. Journal of Zhejiang A&F University, 2016, 33(4): 658-666.
李奇. 沙柳材混凝土模板的研究[D]. 呼和浩特: 内蒙古农业大学, 2005.
阿伦. 沙柳材重组木的制造工艺研究[D]. 呼和浩特: 内蒙古农业大学, 2004.
于文吉. 我国重组竹产业发展现状与趋势分析[J]. 木材工业, 2012, 26(1): 11-14.
YU W J. Current status and future development of bamboo scrimber industry in China[J]. China Wood Industry, 2012, 26(1): 11-14.
宋孝周, 陈达, 郭康权, 等. 农作物秸秆重组材工艺分析与研究展望[J]. 西北农林科技大学学报(自然科学版), 2008, 36(5): 229-234.
SONG X Z, CHEN D, GUO K Q, et al. Technical analysis and prospect of crop straw scrimber[J]. Journal of Northwest A & F University (Natural Science Edition), 2008, 36(5): 229-234.
TIAN W, QIAN Y M, WANG R Z, et al. Tensile performance of a novel glue-laminated cornstalk scrimber[J]. Journal of New Materials for Electrochemical Systems, 2020, 23(3): 198-203.
金维洙, 马岩, 刘伟, 等. 不同树种构成的重组木力学性能的试验研究与分析[J]. 林产工业, 1998, 25(1): 24-26.
JIN W Z, MA Y, LIU W, et al. Experimental research and analysis of mechanical properties of scrimber made from different wood species[J]. China Forest Products Industry, 1998, 25(1): 24-26.
梁艳君. 制造工艺对纤维化单板重组木性能影响规律的研究[D]. 北京: 中国林业科学研究院, 2018.
张亚梅, 于文吉, 牛义. 浸胶法对桉树纤维化单板重组木性能的影响[J]. 木材工业, 2015, 29(5): 17-19.
ZHANG Y M, YU W J, NIU Y. Effects of adhesive impregnating methods on properties of scrimber made from fibrous Eucalyptus veneers[J]. China Wood Industry, 2015, 29(5): 17-19.
韦亚南, 魏金光, 张亚梅, 等. 浸胶量对杨木重组木物理力学及表面性能的影响[J]. 林业工程学报, 2018, 3(2): 11-15.
WEI Y N, WEI J G, ZHANG Y M, et al. Effect of resin content on the physical-mechanical and surface properties of poplar scrimber[J]. Journal of Forestry Engineering, 2018, 3(2): 11-15.
阿伦, 高志悦, 马岩. 施胶量和断面结构对沙柳材重组木性能的影响[J]. 林业科技, 2007, 32(2): 42-43.
A L, GAO Z Y, MA Y. Effects of resin content or cross-section structure on properties of Salix scrimber[J]. Forestry Science & Technology, 2007, 32(2): 42-43.
梁艳君, 张亚慧, 马红霞, 等. 户外用杨木重组木的制备工艺与性能评价[J]. 木材工业, 2017, 31(2): 49-52.
LIANG Y J, ZHANG Y H, MA H X, et al. Preparation and properties of Populus scrimber for outdoor use[J]. China Wood Industry, 2017, 31(2): 49-52.
YU H X, FANG C R, XU M P, et al. Effects of density and resin content on the physical and mechanical properties of scrimber manufactured from mulberry branches[J]. Journal of Wood Science, 2015, 61(2): 159-164.
张亚梅, 余养伦, 李长贵, 等. 速生轻质木材制备高性能重组木的适应性研究[J]. 木材工业, 2016, 30(3): 41-44.
ZHANG Y M, YU Y L, LI C G, et al. Manufacturing technology and properties of scrimber made of low density wood[J]. China Wood Industry, 2016, 30(3): 41-44.
马岩, 许琼晓, 许世祥. 重组木碾压疏解设备关键部件的设计与有限元分析[J]. 林产工业, 2016, 43(5): 10-14.
MA Y, XU Q X, XU S X. The structural design and the finite analysis of the key components of scrimber crushing and defibering equipment[J]. China Forest Products Industry, 2016, 43(5): 10-14.
杜春贵. 杉木积成材制造中的梳解加工及产品特性研究[D]. 南京: 南京林业大学, 2008.
马岩, 许琼晓, 许世祥, 等. 小径木刨切单板纤维化处理设备整机结构设计[J]. 林业工程学报, 2016, 1(6): 119-123.
MA Y, XU Q X, XU S X, et al. The structural design of small-diameter wood sliced veneer fibrosis treatment equipment[J]. Journal of Forestry Engineering, 2016, 1(6): 119-123.
余养伦, 于文吉. 新型纤维化单板重组木的主要制备工艺与关键设备[J]. 木材工业, 2013, 27(5): 5-8.
YU Y L, YU W J. Manufacturing technology of novel scrimber made of fibrosis of veneer[J]. China Wood Industry, 2013, 27(5): 5-8.
陈云. 重组方材连续四面热压机的研发[D]. 杨凌: 西北农林科技大学, 2015.
张静. 桑枝重组方材热压工艺及性能研究[D]. 杨凌: 西北农林科技大学, 2016.
胡玉安, 何梅, 王玉, 等. 樟树剩余物制备重组木工艺与性能研究[J]. 林业工程学报, 2016, 1(5): 36-39.
HU Y A, HE M, WANG Y, et al. Study on manufacturing process and performance of scrimber from residues of Cinnamomum camphora[J]. Journal of Forestry Engineering, 2016, 1(5): 36-39.
Du C G, Yao X L, Hua Y T, et al. Preparation and characterization of combed sawmill slab residues from Chinese fir and its scrimber[J]. BioResources, 2018, DOI:10.15376/biores.13.4.8477-8487http://dx.doi.org/10.15376/biores.13.4.8477-8487.
商晓霞, 马岩, 张建华, 等. 国内外重组木研究近况及发展前景[J]. 世界林业研究, 1998, 11(1): 38-43.
SHANG X X, MA Y, ZHANG J H, et al. The status of scrimber research at home and abroad and the prospect of its development in China[J]. World Forestry Research, 1998, 11(1): 38-43.
翟莲, 刘长安, 彭东旭, 等. 国内重组木发展中存在的问题及前景[J]. 四川建材, 2019, 45(1): 6, 8.
ZHAI L, LIU C A, PENG D X, et al. Problems and prospects of domestic scrimber development[J]. Sichuan Building Materials, 2019, 45(1): 6, 8.
张亚慧, 韦亚南, 于文吉. 疏解单板厚度对杨木重组木性能的影响[J]. 木材工业, 2017, 31(1): 46-49.
ZHANG Y H, WEI Y N, YU W J. Effect of crushed veneer thickness on poplar scrimber properties[J]. China Wood Industry, 2017, 31(1): 46-49.
LI Z, HE M, TAO D, et al. Experimental buckling performance of scrimber composite columns under axial compression[J]. Composites Part B, 2016, 86:203-213.
韦亚南, 张亚梅, 于文吉. 浸胶方式对荷木重组木性能的影响[J]. 木材加工机械, 2016, 27(5): 29-31, 11.
WEI Y N, ZHANG Y M, YU W J. Effects of adhesive impregnating manners on properties of Schima superba scrimber[J]. Wood Processing Machinery, 2016, 27(5): 29-31, 11.
韦亚南, 张亚慧, 张亚梅, 等. 浸胶疏解单板含水率对杨木重组木性能的影响[J]. 木材工业, 2017, 31(4): 35-38.
WEI Y N, ZHANG Y H, ZHANG Y M, et al. Effect of moisture content of impregnated veneer on properties of poplar scrimber[J]. China Wood Industry, 2017, 31(4): 35-38.
时萌蒙. 重组方材两种原材料疏解干燥工艺研究[D]. 杨凌: 西北农林科技大学, 2015.
梁艳君, 张亚慧, 余养伦, 等. 铺装方式对杨木重组木性能的影响[J]. 木材工业, 2017, 31(3): 40-43.
LIANG Y J, ZHANG Y H, YU Y L, et al. Effect of strand mat forming on poplar scrimber properties[J]. China Wood Industry, 2017, 31(3): 40-43.
邱学海, 梁星宇, 林雨斌, 等. 两种压制方法对杨木重组木性能的影响[J]. 林业机械与木工设备, 2017, 45(3): 40-43.
QIU X H, LIANG X Y, LIN Y B, et al. Effects of two pressing methods on properties of poplar reconstituted wood[J]. Forestry Machinery & Woodworking Equipment, 2017, 45(3): 40-43.
张亚慧, 张亚梅, 任丁华, 等. 高性能重组木制造工艺对其性能的影响[J]. 木材工业, 2016, 30(5): 31-34.
ZHANG Y H, ZHANG Y M, REN D H, et al. Effect of manufacturing technology on scrimber performance[J]. China Wood Industry, 2016, 30(5): 31-34.
魏金光, 韦亚南, 鲍敏振, 等. 辐射松重组木密度对其孔隙率和性能的影响[J]. 浙江农林大学学报, 2018, 35(3): 519-523.
WEI J G, WEI Y N, BAO M Z, et al. Effect of density on porosity and physical-mechanical properties of highperformance scrimbers[J]. Journal of Zhejiang A & F University, 2018, 35(3): 519-523.
梁艳君, 张亚慧, 马红霞, 等. 户外用杨木重组木的制备工艺与性能评价[J]. 木材工业, 2017, 31(2): 49-52.
LIANG Y J, ZHANG Y H, MA H X, et al. Preparation and properties of Populus scrimber for outdoor use[J]. China Wood Industry, 2017, 31(2): 49-52.
余养伦, 周月, 于文吉. 密度对桉树纤维化单板重组木性能的影响[J]. 木材工业, 2013, 27(6): 5-8.
YU Y L, ZHOU Y, YU W J. Effect of density on properties of scrimber made of fibrosis of Eucalyptus veneer[J]. China Wood Industry, 2013, 27(6): 5-8.
BAO M Z, LI N, HUANG C J, et al. Fabrication, physical-mechanical properties and morphological characterizations of novel scrimber composite[J]. European Journal of Wood and Wood Products, 2019, 77(5): 741-747.
WEI J G, LIN Q Q, ZHANG Y H, et al. Surface properties of pine scrimber panels with varying density[J]. Coatings, 2019, 9(6): 397.
王进峰. 旋切机工作原理及技术特点[J]. 吉林农业, 2016(14): 68-69.
WANG J F. Working principle and technical characteristics of rotary cutting machine[J]. Jilin Agricultural University , 2016(14): 68-69.
FU B, LI X G, YUAN G M, et al. Preparation and flame retardant and smoke suppression properties of bamboo-wood hybrid scrimber filled with calcium and magnesium nanoparticles[J]. Journal of Nanomaterials, 2014, DOI:10.1155/2014/959135http://dx.doi.org/10.1155/2014/959135.
杨思瑞. 酚醛树脂的增韧改性及杨木重组木性能研究[D]. 南京: 南京林业大学, 2019.
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