Page 77 - 应用声学2019年第5期
P. 77

第 38 卷 第 5 期             陈育志等: BFRP 筋混凝土粘结 -滑移声发射特性研究                                       829


             [10] 高丹盈, 朱海堂, 谢晶晶. 纤维增强塑料筋混凝土粘结滑移本                   characteristics of bond-slip for the reinforced concrete un-
                 构模型 [J]. 工业建筑, 2003, 33(7): 41–43, 82.            der the dynamic tensile[J]. Journal of Applied Acoustics,
                 Gao Danying, Zhu Haitang, Xie Jingjing. The constitu-  2017, 36(4): 343–348.
                 tive models for bond slip relation between FRP rebars and  [13] Sagaidak A I, Elizarov S V. Acoustic emission parame-
                 concret[J]. Industrial Construction, 2003, 33(7): 41–43,  ters correlated with fracture and deformation processes of
                 82.                                               concrete members[J]. Construction and Building Materi-
             [11] 王勃, 欧进萍, 张新越, 等. FRP 筋与混凝土粘结性能的试验                als, 2007, 21(3): 477–482.
                 研究 [J]. 低温建筑技术, 2006(1): 39–41.                [14] Kurz J H, Finck F, Grosse C U, et al.  Stress drop
                 Wang Bo, Ou Jinping, Zhang Xinyue, et al.  Exper-  and stress redistribution in concrete quantified over time
                 iment evaluation on bond properties of FRP bars to  by the b-value analysis[J]. Structural Health Monitoring,
                 concrete[J]. Low Temperature Architecture Technology,  2006, 5(1): 69–81.
                 2006(1): 39–41.                                [15] Aggelis D G, Soulioti D V, Sapouridis N, et al. Acoustic
             [12] 陈育志, 陈师节. 钢筋混凝土动态粘结滑移声发射特性试                      emission characterization of the fracture process in fibre
                 验 [J]. 应用声学, 2017, 36(4): 343–348.                reinforced concrete[J]. Construction and Building Materi-
                 Chen Yuzhi, Chen Shijie.  Experimental study on AE  als, 2011, 25(11): 4126–4131.
   72   73   74   75   76   77   78   79   80   81   82