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Bending,Compression and Bonding Performance of Cross-Laminated Timber(CLT)Made from Malaysian Fast-Growing Timbers
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作者 Norshariza Mohamad Bhkari Lum Wei Chen +4 位作者 Anis Azmi Muhammad Shaiful Nordin Norman Wong Shew Yam Zakiah Ahmad Lee Seng Hua 《Journal of Renewable Materials》 SCIE EI 2022年第11期2851-2869,共19页
This study investigated the bending,compression as well as the bonding performance of CLT panels made from fast-growing timber species,i.e.,Laran(Neolamarckia cadamba)and Batai(Paraserianthes falcataria).The variables... This study investigated the bending,compression as well as the bonding performance of CLT panels made from fast-growing timber species,i.e.,Laran(Neolamarckia cadamba)and Batai(Paraserianthes falcataria).The variables studied were timber species(Laran and Batai),layers of lamination(3-layer and 5-layer),loading direction in bending(in-plane and out-of-plane),loading direction in compression(x-,y-,and z-axis)and different treatment conditions for bonding performance test.The desired outputs of this study were bending and compression properties(strength and stiffness)as well as bonding performance(block shear strength,wood failure percentage and delamination value).The bending and compression test were conducted according to EN16351:2015 and EN408:2012,respectively.On the other hand,the bonding performance test was determined by block shear and delamination test based on EN16351:2015 and EN14374:2004,respectively.Prior to block shear test,the samples were subjected to three different treatment conditions.The results showed that CLT made from 3-layer Laran timber,loaded at out-of-plane direction exhibited the highest bending properties.Contrarily,CLT made from 5-layered Batai timber,loaded at in-plane direction showed the lowest bending properties.Laran samples for compression loaded at x-axis exhibited the best compressive properties.Generally,Laran CLT showed greater bonding performance determined by shear test compared to Batai CLT for both 3-and 5-layer panels.On the contrary,delamination results showed that Batai CLT demonstrated better bonding performance compared to Laran CLT.In terms of bonding performance measured by wood failure percentage(WFP),most samples under various treatment conditions showed WFP≥80%except for samples under wet condition with WFP≤60%. 展开更多
关键词 cross-laminated timber plantation timber flexural performance bonding performance
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Evaluation of Mechanical Properties of Cross-Laminated Timber with Different Lay-ups Using Japanese Larch 被引量:4
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作者 Yingchun Gong Fenglu Liu +3 位作者 Zhaopeng Tian Guofang Wu Haiqing Ren Cheng Guan 《Journal of Renewable Materials》 SCIE 2019年第10期941-956,共16页
Japanese larch is one of the main plantation tree species in China.A lack of engineered wood products made by Japanese larch,however,limits its application in wood stnuctures.In this study,based on optimum process par... Japanese larch is one of the main plantation tree species in China.A lack of engineered wood products made by Japanese larch,however,limits its application in wood stnuctures.In this study,based on optimum process parameters,such as pressure(12 MPa),adhesive spread rate(200 g/m^(2))and adhesive(one-component polyurethane),the mechanical properties of Japanese larch-made cross-laminated timber(CLT)with different lay-ups were evaluated by means of the static method.Results of this study showed that variations in lay-ups significantly affected the mechanical properties of CLT.The strength and modulus of bending and parallel compression for CLT increased with the thickness of lumber,while that of bending,parallel compression and rolling shear all decreased with the number of layers.Thickness,layup orientation and the number of layers all had an impact on the strength of CLT.Failure modes obtained from numerical simulation were basically the same as those of experimental tests.There was also strong alignment between theoretical value and test value for effective bending stifness and shear stifness.Thus,the shear analogy method can be used to predict the mechanical properties of CLT effectively.This study proved great potential in using Japanese larch wood for manufacturing CLT due to its good mechanical properties. 展开更多
关键词 cross-laminated timber mechanical properties lay-ups failure mode shear analogy
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Comparative Study on Various Strength Parameters of Structural Elements Made from Cross-Laminated Timber
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作者 Mohammad Anwar-Us-Saadat Janeshka Goonewardena +2 位作者 Bidur Kafle Mahmud Ashraf Mahbube Subhani 《Journal of Renewable Materials》 SCIE EI 2022年第6期1575-1606,共32页
Cross laminated timber(CLT)is an innovative and environment friendly engineered timber product with superior structural performance.CLT offers strong resistance against both in-plane and out-of-plane loading.Hence,it ... Cross laminated timber(CLT)is an innovative and environment friendly engineered timber product with superior structural performance.CLT offers strong resistance against both in-plane and out-of-plane loading.Hence,it is widely used as floors,roofs or wall elements.Considerable experimental research on CLT under various loading conditions has been done in the recent past.This article presents a comprehensive review of various design methods to determine basic mechanical properties such as tension,compression and rolling shear strength of CLT with primary focus on Norway spruce.All relevant experimental data available from existing literature were collated and consequently been used to evaluate the performance of various methods to design CLT structures.The comparison revealed that different methods show considerable variance in predicting the capacity of CLT panels due to the variation in timber species,which affects the corresponding mechanical properties of the lamella.In addition to species,rolling shear properties can also vary considerably depending on the type of experimental technique used for testing.A predictive model has also been proposed to correlate rolling shear strength obtained from shear analogy method to that obtained using planar shear. 展开更多
关键词 cross-laminated timber mass timber mechanical strength rolling shear strength planar shear test short span bending test
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Understanding the Impacts of Plant Capacities and Uncertainties on the Techno- Economic Analysis of Cross-Laminated Timber Production in the Southern U.S.
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作者 Zhenzhen Zhang Kai Lan 《Journal of Renewable Materials》 SCIE EI 2022年第1期53-73,共21页
Understanding the economic feasibility of cross-laminated timber(CLT),an emerging and sustainable alternative to concrete and steel,is critical for the rapid expansion of the mass timber industry.However,previous stud... Understanding the economic feasibility of cross-laminated timber(CLT),an emerging and sustainable alternative to concrete and steel,is critical for the rapid expansion of the mass timber industry.However,previous studies on economic performance of CLT have not fully considered the variations in the feedstock,plant capacities,manu-facturing parameters,and capital and operating costs.This study fills this gap by developing a techno-economic analysis of producing CLT panels in the Southern United States.The effects of those variations on minimum sell-ing price(MSP)of CLT panels are explored by Monte Carlo simulation.The results show that,across all the plant capacities from 30,000 to 150,000 m^(3)/year,the MSP ranges from$345 to$609/m^(3) with a±6%–9%range caused by the variations in feedstocks,key manufacturing parameters,capital and operating cost.The MSP decreases sig-nificantly along the increasing capacities.A sensitivity analysis exhibits that the lumber price,lumber preparing loss,plant capacity,and the installed costs of layering and gluing,finishing,and miscellaneous,are the top driving factors to CLT MSP.Supported by Geographic Information System,this study also studies the transportation cost of delivering CLT to customers under three CLT demanding levels(1%,5%,15%).The results show that the trans-portation cost is 1%–8%of the MSP.Lower demanding level or higher plant capacity can increase the transporta-tion cost due to average longer delivering distance.When considering the delivered cost that sums MSP and transportation cost,larger plant capacity does not necessarily generate lower delivered cost. 展开更多
关键词 cross-laminated timber techno-economic analysis plant capacity uncertainty minimum selling price
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Evaluation of the Out-of-Plane Shear Properties of Cross-Laminated Timber
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作者 Yin Yang Xiaoyan Cao +2 位作者 Zhiqiang Wang Zhijun Liang Jianhui Zhou 《Journal of Renewable Materials》 SCIE 2019年第10期957-965,共9页
The out-of-plane shear properties of cross-laminated timber(CLT)substantially influence the overall mechanical properties of CLT.Various testing methods and theories related to these properties have recently been deve... The out-of-plane shear properties of cross-laminated timber(CLT)substantially influence the overall mechanical properties of CLT.Various testing methods and theories related to these properties have recently been developed.The effects of the number of layers(three and five layers)and testing method(short-span three-and four-point bending tests)on the out-of-plane shear properties of CLT were evaluated.The out-of-plane shear strength values were calculated based on different theories for comparison.The failure mode in the short-span four-point bending(FPB)method was mainly the rolling shear(RS)failure in the cross layers,indicating that the FPB method was appropriate to evaluate the RS strength of CLT.The out-of-plane shear capacity obtained using the three-point bending(TPB)method was higher than that tested by the FPB method.The testing methods significantly influenced the out-of-plane shear capacity of the three-layer specimens but not that of the five-layer specimens.With an increase in the number of layers,the out-of-plane shear strength of the specimens decreased by 24%.A linear correlation was found among the shear strength values obtained from different theories. 展开更多
关键词 cross-laminated timber out-of-plane shear properties testing methods failure modes
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Analysis of Crack Expansion and Morphology of Cross-Laminated Timber Planar Shear Test
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作者 Yujie Huang Yifan Zhang +3 位作者 Zheng Wang Assima Dauletbe Yao Lu Zhaoyu Shen 《Journal of Renewable Materials》 SCIE EI 2022年第3期849-870,共22页
To describe the dynamic cracking process of the CLT vertical layer,the correlation between a load-displacement curve,specimen cracking,and planar shear failure mechanism of the CLT were explored.A three-point bending ... To describe the dynamic cracking process of the CLT vertical layer,the correlation between a load-displacement curve,specimen cracking,and planar shear failure mechanism of the CLT were explored.A three-point bending test and an improved planar shear test are used to evaluate the shear performance of the CLT.In this study,the load-displacement curve is recorded,the experimental part is synchronized with the video,the dynamic process of cracking of the vertical layer is observed and analyzed throughout the test.From the load-displacement curve,the image characteristics of the initial cracking and the sudden increase of the cracking of the specimen are summar-ized.The description results of the whole dynamic process of the CLT vertical layer cracking are analyzed by pla-nar shear strength value,cracking phenomenon,and azimuth angle of cracking surface.The main conclusions show that the three-point bending test and the improved plain shear test can be used to test the plain shear strength of the CLT,with a difference of only 5.7%.The original crack and the new crack expansion account for 18.9%and 81.1%of the main cracking surface,respectively.And the vertical layer of the CLT specimen under three-point bending has three cracking morphologies,such as radial shake,ring shake,neither along with the radial shake nor along with the ring shake.The azimuth angle of the cracking surface of the CLT vertical layer under planar shear is quite consistent with the first main plane azimuth of the vertical layer of the CLT specimens under the three-point bending test and the shearing test.The shape in the cracking direction of the left half-span or the right half-span of the vertical layer of the specimen is similar to the Chinese character eight. 展开更多
关键词 cross-laminated timber planar shearing performance three-point bending test improved planar shear test crack expansion dynamic process
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Mechanical Experimental Study on Tensile Bolted Connections of Cross-laminated Timber
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作者 Chenxiao Su Haibei Xiong 《Structural Durability & Health Monitoring》 EI 2020年第1期81-94,共14页
In order to explore a kind of high-strength,earthquake-resistant,eco-nomical and suitable connection,4 groups of cross-laminated timber wall-to-floor and wall-to-wall bolted connections were tested under monotonic and... In order to explore a kind of high-strength,earthquake-resistant,eco-nomical and suitable connection,4 groups of cross-laminated timber wall-to-floor and wall-to-wall bolted connections were tested under monotonic and cyclic load-ing.The defommation characteristics and failure modes of the cross-laminated tim-ber wall-to-floor and wall-to-wall bolted connections were exploited.Load-slip curves,bearing capacity,yielding point,stiffness and ductility of each group of specimens were analyzed.The test results indicate that the loading process of cross-laminated timber bolted connections under tension can be categorized as five stages,namely the elastic stage,the slip stage,the embedding stage,the yield-ing stage and the ultimate stage.The ultimate tensile capacity of cross-laminated timber bolted wall-to-floor connections is 2.67 times that of the wall-to-wall bolted connections.Compared with cross-laminated timber self-tapping screwed connections,the ultimate tensile capacity of the cross-laminated timber wall-to-floor bolted connections is 2.70 times that of the self-tapping screwed connec-tions,and the ultimate tensile capacity of the cross-laminated timber wall-to-wall bolted connections is 3.83 times that of the self-tapping screwed connections.The crosslaminated timber bolted connections have larger yielding displacement and wider plastic range,and they are more energy dissipative and more ductile.Furthermore,the cost of the cross-laminated timber wall-to-floor bolted connec-tions is 46%that of the self-tapping screwed connections,while the cost of cross-laminated wall-to-wall bolted connections is 53%that of the self-screwed connections. 展开更多
关键词 cross-laminated timber bolted connections mechanical properties economical and suitable
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近零能耗建筑设计实践——以CLT木结构建筑为例
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作者 郑芳 《森林防火》 2024年第1期113-116,共4页
基于近零能耗建筑设计理念,本研究采用正交胶合木(CLT)作为主要建筑材料,完成了一项创新性的建筑设计实践,全面展示了CLT在近零能耗建筑上的应用成果,为近零能耗建筑的研究和实践提供了实际案例,并对绿色低碳建筑领域中CLT的应用进行了... 基于近零能耗建筑设计理念,本研究采用正交胶合木(CLT)作为主要建筑材料,完成了一项创新性的建筑设计实践,全面展示了CLT在近零能耗建筑上的应用成果,为近零能耗建筑的研究和实践提供了实际案例,并对绿色低碳建筑领域中CLT的应用进行了有意义的探索。 展开更多
关键词 近零能耗建筑 clt木结构 低碳可持续 建筑设计实践 技术措施
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某高层木混合结构抗震分析与性能测试
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作者 孙小鸾 宗超 +3 位作者 翟家骏 陆伟东 王深山 程小武 《南京工业大学学报(自然科学版)》 CAS 北大核心 2024年第4期426-435,共10页
木混凝土混合结构在多高层木结构建筑中应用广泛,但此类结构的整体抗震性能以及楼盖动力特性有待研究。本文以江苏省康复医院医技楼为例,应用反应谱法与弹性时程分析法分别开展木混合结构的抗震性能分析,并对局部正交胶合木(CLT)楼盖通... 木混凝土混合结构在多高层木结构建筑中应用广泛,但此类结构的整体抗震性能以及楼盖动力特性有待研究。本文以江苏省康复医院医技楼为例,应用反应谱法与弹性时程分析法分别开展木混合结构的抗震性能分析,并对局部正交胶合木(CLT)楼盖通过原位测试,开展力学性能、动力特性以及人致振动研究。结果表明:结构抗震指标符合规范要求;CLT楼盖荷载位移关系呈双折线,挠度、应力理论计算时,建议板两端按简支考虑;CLT楼盖竖向自振频率均值约15.49 Hz,满足建筑楼盖限值要求,但在单人快走、单人小跑以及多人随机人致振动工况下,楼盖的峰值加速度偏大,应考虑增加现浇建筑面层,改善纯CLT楼盖舒适度不足的问题。可见,木混合结构通过设计可满足抗震要求,但轻质楼盖应注意舒适度构造措施。 展开更多
关键词 木混合结构 clt楼盖 弹性时程分析法 动力特性 人致振动
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正交胶合木新型抗剪及抗拉连接耗能特性试验
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作者 熊海贝 武喆 陈佳炜 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第5期684-696,共13页
连接节点是保证木结构抗震性能的重要因素,节点的耗能能力是衡量其是否适用于抗震区的重要指标。提出了适用于正交胶合木(cross laminated timber,CLT)结构的新型耗能抗剪连接节点和新型耗能抗拉连接节点,为研究该类连接节点的破坏模式... 连接节点是保证木结构抗震性能的重要因素,节点的耗能能力是衡量其是否适用于抗震区的重要指标。提出了适用于正交胶合木(cross laminated timber,CLT)结构的新型耗能抗剪连接节点和新型耗能抗拉连接节点,为研究该类连接节点的破坏模式及力学性能,开展了15组低周往复加载试验。试验结果表明,新型耗能连接节点试件延性系数(D)均大于9.0,满足欧洲规范Eurocode 8中对高延性节点D>6的要求,属于高延性范围;新型耗能连接节点工作阶段强度退化系数均低于20%,具备工程适用性;新型耗能连接节点工作阶段等效黏滞阻尼系数为12%~22%,普通商用连接节点等效黏滞阻尼系数为2.5%~15.8%,两类新型耗能连接节点具有较好的耗能能力。 展开更多
关键词 正交胶合木 新型连接节点 耗能特性 力学性能 破坏模式
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CLT楼板耐火极限计算中零强度层厚度取值研究 被引量:2
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作者 张晋 陆川 +2 位作者 梅方 王卫昌 李维滨 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2020年第3期73-81,共9页
为研究正交胶合木(CLT)楼板耐火极限计算中的零强度层厚度取值,分别进行了三层、五层CLT楼板常温极限承载力试验和耐火极限试验,并基于国内外木结构设计规范,结合忽略横纹层层板的弹性模量、仅考虑其厚度对组合截面惯性矩贡献的简化计... 为研究正交胶合木(CLT)楼板耐火极限计算中的零强度层厚度取值,分别进行了三层、五层CLT楼板常温极限承载力试验和耐火极限试验,并基于国内外木结构设计规范,结合忽略横纹层层板的弹性模量、仅考虑其厚度对组合截面惯性矩贡献的简化计算方法与剩余截面法,得到了一种适用于CLT楼板高温下零强度层厚度取值的计算方法,分析了CLT楼板零强度层厚度随炭化深度的变化规律,比较了CLT楼板高温下抗弯承载力在文中零强度层厚度取值下的结果和欧洲规范EN1995-1-2中的结果.研究结果表明:文中计算方法下的计算值与试验值吻合较好.当CLT楼板的炭化层到达横、顺纹层胶缝处时,零强度层厚度变化连续;而当炭化深度到达顺、横纹层的胶缝处时,零强度层厚度发生急剧突变.本文计算方法得到的高温下CLT楼板抗弯承载力相较于欧洲规范EN1995-1-2更合理,对于工程中的CLT楼板抗火设计具有更好的参考价值. 展开更多
关键词 正交胶合木(clt) 零强度层 耐火极限 炭化深度 剩余截面法 抗火设计
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CLT建筑发展现状及前景 被引量:3
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作者 左宏亮 许相宜 《山西建筑》 2018年第5期6-8,共3页
Cross-Laminated Timber(CLT)建筑是近年来盛行于欧美国家的新型重木结构建筑,简要介绍了CLT的优势与国内外发展现状,提出了CLT技术在中国未来发展有待解决的问题并对美好前景进行了展望。
关键词 clt 木结构建筑 建筑材料
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现代木结构在高层观景塔中的设计研究——以第七届全国高等学校木结构设计竞赛获奖作品为例
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作者 顾善闯 张海燕 吴大江 《建筑与文化》 2024年第4期275-277,共3页
高层建筑与构筑物是现代木结构自21世纪以来新的应用领域,在科技、生态与人文精神并重的时代背景下,对此进行研究具有十分重要的现实意义。因此,文章从第七届全国高等学校木结构设计邀请赛获奖作品——“鱼·跃”着手,通过研究现代... 高层建筑与构筑物是现代木结构自21世纪以来新的应用领域,在科技、生态与人文精神并重的时代背景下,对此进行研究具有十分重要的现实意义。因此,文章从第七届全国高等学校木结构设计邀请赛获奖作品——“鱼·跃”着手,通过研究现代木结构在高层观景塔的应用,对正交胶合木(CLT)筒中筒结构体系在其中的设计全过程进行解析,初步探索了现代木结构在高层构筑物建筑设计中带来的空间和造型的新变化。 展开更多
关键词 高层观景塔 现代木结构 胶合木筒中筒结构体系
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CLT楼板半层搭接节点的面外弯曲性能试验研究
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作者 白羽 张晋 王卫昌 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2022年第5期120-129,共10页
为研究半层搭接节点对正交胶合木(CLT)楼板双向抗弯承载力的影响,分别对CLT楼板半层搭接节点试件沿强轴和弱轴方向进行面外加载弯曲试验.归纳了强轴和弱轴方向受弯的试验现象和极限状态的破坏模式,考察了螺钉直径、螺钉间距、搭接长度... 为研究半层搭接节点对正交胶合木(CLT)楼板双向抗弯承载力的影响,分别对CLT楼板半层搭接节点试件沿强轴和弱轴方向进行面外加载弯曲试验.归纳了强轴和弱轴方向受弯的试验现象和极限状态的破坏模式,考察了螺钉直径、螺钉间距、搭接长度对抗弯极限荷载、跨中截面应变的影响.结合试验现象,总结了弱轴方向受弯极限状态时自攻螺钉的变形特征.提出了半层搭接节点弱轴方向抗弯承载力的计算方法,将其计算结果与抗弯极限荷载试验值作对比.研究结果表明:强轴方向受弯试件的破坏模式是混合模式(销槽承压破坏,以及木层板的受拉破坏或滚剪破坏);弱轴方向受弯试件的搭接上部有两种破坏模式,包括模式Ⅰ(销槽承压破坏和钉帽拉穿破坏)、模式Ⅱ(搭接上部半层层板顺纹劈裂和钉帽拉穿破坏).增大螺钉直径、减小螺钉间距对强轴方向抗弯承载力无显著影响,增加搭接长度、减小螺钉间距能够显著提高弱轴方向抗弯承载力.提出的计算方法能够合理地预测半层搭接节点弱轴方向抗弯极限荷载,可为推广CLT双向楼板的应用提供理论研究基础和结构设计参考. 展开更多
关键词 正交胶合木(clt) 半层搭接节点 面外弯曲 强轴方向 弱轴方向
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阔叶材CLT的研究进展
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作者 赵喜龙 王喜明 Hindman 《家具与室内装饰》 2020年第2期64-65,共2页
交叉层积材(Cross-Laminated Timber,CLT)作为一种新型的工程木制品,于20世纪90年代初在欧洲开发。CLT是由相邻层锯材垂直正交组坯形成的多层结构型工程木质复合材料。CLT材料具有施工速度快、施工方便、抗震性能好、固碳性能好、生态... 交叉层积材(Cross-Laminated Timber,CLT)作为一种新型的工程木制品,于20世纪90年代初在欧洲开发。CLT是由相邻层锯材垂直正交组坯形成的多层结构型工程木质复合材料。CLT材料具有施工速度快、施工方便、抗震性能好、固碳性能好、生态环保等优点。传统的CLT几乎完全由针叶材制成,包括樟子松、挪威云杉、白杉、欧洲落叶松和花旗松等。随着一些地区森林的构成发生变化,以及希望低价值阔叶材实现高附加值的应用,人们正越来越关注使用阔叶材来制造CLT。本文通过回顾阔叶材CLT的相关文献,探讨了制造阔叶材CLT的技术可行性,以期对我国阔叶材CLT的研究和应用提供一些借鉴和参考。 展开更多
关键词 阔叶材 交叉层积材 clt 研究进展
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国内外新一代重型CLT木结构建筑技术研究进展 被引量:12
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作者 王韵璐 曹瑜 +1 位作者 王正 王建和 《西北林学院学报》 CSCD 北大核心 2017年第2期286-293,共8页
正交胶合木(CLT)是新型的工程木制品,是新一代重型装配式木结构建筑体系的基本单元和预制构件,目前备受国内外关注。为推动中国建筑形式的多元化和CLT装配式建筑的发展,文中分析了CLT建筑预制构件的独特优势,重点介绍了欧美发达国家在CL... 正交胶合木(CLT)是新型的工程木制品,是新一代重型装配式木结构建筑体系的基本单元和预制构件,目前备受国内外关注。为推动中国建筑形式的多元化和CLT装配式建筑的发展,文中分析了CLT建筑预制构件的独特优势,重点介绍了欧美发达国家在CLT材料工艺与性能、CLT构件的结构设计、CLT建筑的结构设计、CLT节点连接技术等方面的最新研究进展及其成果。在收获其启示和借鉴作用的基础上。通过学习国外新一代重型CLT木结构建筑的技术成果和成功经验,提出了加强高校教育与人才培养工作,造就一大批木结构建筑专业人才;行业部门要加快CLT的结构、材料、制造、安装等专业标准的制订与贯标工作;产学研有效合作;企业要重视信息化、标准化和集成化体系工作,强化人才团队建设;加大有效的宣传力度;高度重视建筑安全与耐久技术的攻关,尤其强化结构形式、结构用材、节点连接、耐久性和结构健康监测技术工作;充分利用当地木材和竹材资源来生产重型竹木复合预制板(或竹木复合CLT)等八条符合我国国情的发展CLT装配式木结构建筑的主要措施,以期提升我国CLT预制构件及重型木结构建筑体系的基础研究和应用水平,促进中国木结构建筑事业健康、快速地发展。 展开更多
关键词 正交胶合木(clt) 重型装配式建筑 结构设计 预制构件 研究进展
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CLT结构建筑体系与建筑技术研究进展 被引量:8
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作者 王界贤 姚利宏 刘睿静 《林产工业》 北大核心 2022年第9期60-63,68,共5页
正交胶合木(CLT)作为推动现代木结构建筑向多高层发展的新型工程木产品,近年来的相关研究日益增多,CLT结构建筑因其环境友好性等优势,在当前倡导生态文明、绿色建筑的背景下方兴未艾。对CLT结构建筑体系的组成、形式、体系类型和抗侧性... 正交胶合木(CLT)作为推动现代木结构建筑向多高层发展的新型工程木产品,近年来的相关研究日益增多,CLT结构建筑因其环境友好性等优势,在当前倡导生态文明、绿色建筑的背景下方兴未艾。对CLT结构建筑体系的组成、形式、体系类型和抗侧性能、节点连接进行总结,梳理了相关研究成果。结合我国国情,提出了研究方向和发展建议,以期促进我国CLT市场的蓬勃发展。 展开更多
关键词 正交胶合木 clt建筑 结构体系 建筑技术 研究进展
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交错层压木材(CLT)在建筑上的应用研究 被引量:5
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作者 王瑞峰 贾东 《华中建筑》 2016年第6期65-69,共5页
该文首先论述了当前时代背景下要求我们发展新型木材加工技术的迫切需要,之后通过对当前几种新型木材加工技术的优劣势进行比较,其中的交错层压木材(Cross-laminated Timber,CLT)木材加工技术在使木材的力学性能得到明显提升的同时,又... 该文首先论述了当前时代背景下要求我们发展新型木材加工技术的迫切需要,之后通过对当前几种新型木材加工技术的优劣势进行比较,其中的交错层压木材(Cross-laminated Timber,CLT)木材加工技术在使木材的力学性能得到明显提升的同时,又提高了木材的利用效率,是木材改性的优选方案。随后对国内外CLT技术研究情况进行了介绍,并对优秀案例进行分析,最后展望交错层压木材(CLT)技术在中国未来木结构建筑发展中的美好前景。 展开更多
关键词 交错层压木材(clt) 建筑设计 绿色建筑 木结构建筑
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不同胶黏剂对南方松CLT胶合性能的影响 被引量:4
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作者 张龙 彭思 +2 位作者 王建和 卫佩行 黄素涌 《林产工业》 北大核心 2020年第1期12-16,共5页
为探索不同胶黏剂用于正交胶合木(CLT)生产的可能性,研究采用来自不同厂家的5种胶黏剂制备南方松CLT,以浸渍剥离率、剪切强度和木破率评价南方松CLT的胶合性能。结果表明:仅A-API和B-PUR1胶黏剂制造的南方松CLT胶层耐久性达到标准要求,... 为探索不同胶黏剂用于正交胶合木(CLT)生产的可能性,研究采用来自不同厂家的5种胶黏剂制备南方松CLT,以浸渍剥离率、剪切强度和木破率评价南方松CLT的胶合性能。结果表明:仅A-API和B-PUR1胶黏剂制造的南方松CLT胶层耐久性达到标准要求,木破率均未达到标准要求;5种胶黏剂对南方松CLT的浸渍剥离率、剪切强度和木破率有显著影响(P<0.005);从胶层耐久性、剪切性能和生产成本考虑,宜用A-PUR和A-API制造南方松CLT。 展开更多
关键词 正交胶合木 南方松 胶黏剂 浸渍剥离率 剪切强度 木破率
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正交胶合木(CLT)梁剪应力分析及其层间剪切强度测试 被引量:7
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作者 王正 卢尧 +3 位作者 谢文博 高子震 丁叶蔚 付海燕 《林业科学》 EI CAS CSCD 北大核心 2019年第2期152-158,共7页
【目的】探索正交胶合木(CLT)矩形截面梁剪应力计算公式,为测试CLT梁层间剪切强度提供理论依据。【方法】根据胡克定律及梁的弯矩与剪力的微分关系,计算3层、5层和7层CLT梁及同向胶合木梁的层间剪应力,给出CLT梁剪应力计算公式,比较CLT... 【目的】探索正交胶合木(CLT)矩形截面梁剪应力计算公式,为测试CLT梁层间剪切强度提供理论依据。【方法】根据胡克定律及梁的弯矩与剪力的微分关系,计算3层、5层和7层CLT梁及同向胶合木梁的层间剪应力,给出CLT梁剪应力计算公式,比较CLT梁及同向胶合木梁的剪应力分布特征。【结果】CLT梁层间正应力间断,但层间剪应力是连续的;对于CLT矩形截面梁,其剪应力沿截面高度变化趋于均衡,不再遵循抛物线分布; CLT短跨距梁在三点弯曲加载中,依次发生垂直层滚动剪切破坏、层间剪切破坏和平行层弯曲破坏;短跨距梁三点弯曲载荷-位移曲线的最高峰值载荷为CLT发生层间剪切破坏载荷,其值稳定、易于读取;铁杉CLT梁层间剪切强度与其平行层弹性模量呈正相关。【结论】CLT梁层间剪应力和最大剪应力与CLT层数、平行层与垂直层弹性模量比值E_L/E_T(或E_L/E_R)有关; 3层、5层和7层CLT矩形截面梁的最大剪应力均发生在梁截面中性轴上,其值分别为1.5倍截面平均剪应力的92.8%、86.7%和92.6%;短跨距梁三点弯曲法是一种有效测试CLT层间剪切强度的方法。 展开更多
关键词 正交胶合木 层间剪应力 层间剪切强度 测试
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