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Seismic Performance of Three-Story Cross-Laminated Timber Structures in Japan

机译:日本三层交叉层压木材结构的地震性能

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To promote the development of cross-laminated timber (CLT) structures, the Japanese Government Notifications on Structural Design of CLT Buildings (GN 611) was issued in 2016. In GN 611, three types of platform-framing CLT structures were classified in the simple calculation method of Route-1. Compared with a platform-framing structure, which has been clarified in GN 611, a balloon-framing structure is superior in shortening the construction period and reducing the number of CLT panels and metal connectors. To study the seismic properties of balloon-framing CLT structures and develop new structures for a CLT building, four full-scale, 3-story CLT structures were tested under quasistatic cyclic loading: Specimen 1 was a platform-framing structure with narrow wall panels; Specimen 2 was a balloon-framing structure with continuous wall panels; Specimen 3 a was platform-framing structure with wide wall panels; and Specimen 4 was a balloon-framing structure with continuous wall panels and glulam beams. In this study, experiments were conducted, and the seismic performance of the balloon- and platform-framing CLT structures were evaluated and compared. The test results indicated that the seismic properties of Specimens 1, 2, and 3 were similar and that the design method of Specimen 1, as specified in GN 611, was applicable for Specimens 2 and 3. Specimen 4 exhibited higher lateral load resistance than the other three specimens. The performance of Specimen 4 depended on the moment-resisting performance of the glulam beam and CLTwall joint. In this case, the moment-resisting performance obtained through the experiment was significantly higher than the predicted performance. (C) 2020 American Society of Civil Engineers.
机译:为促进交叉层压木材(CLT)结构的发展,日本政府在2016年发布的CLT建筑物结构设计(GN 611)的通知。在GN 611中,三种类型的平台框架CLT结构被分类为简单Route-1的计算方法。与GN 611中澄清的平台框架结构相比,气球框架结构在缩短施工周期并减少CLT面板和金属连接器的数量方面优异。为了研究气球框架CLT结构的地震性能并开发用于CLT建筑的新结构,在Quasistatic循环载荷下测试了四种全量程,3层CLT结构:样本1是具有窄墙板的平台框架结构;标本2是带连续墙板的气球框架结构;标本3 A是具有宽墙板的平台框架结构;并标本4是带有连续墙板和胶水束的气球框架结构。在该研究中,进行了实验,并评估了球囊和平台框架CLT结构的地震性能。试验结果表明,样品1,2和3的地震性质相似,并且如GN 611中规定的样本1的设计方法适用于标本2和3.样本4表现出比横向载荷厚度更高其他三个标本。试样4的性能取决于胶石梁和CLTWALL接头的抗矩抵抗性能。在这种情况下,通过实验获得的力矩抗性性能显着高于预测性能。 (c)2020年美国土木工程师协会。

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