WU Jun, ZHOU Shi-liang, SHU Yue-jie, CAO Shi-bao, ZHOU Yuan-hang. Fiber monitoring of cold-casting anchor's performance[J]. Journal of Traffic and Transportation Engineering, 2019, 19(6): 37-44. doi: 10.19818/j.cnki.1671-1637.2019.06.004
Citation: WU Jun, ZHOU Shi-liang, SHU Yue-jie, CAO Shi-bao, ZHOU Yuan-hang. Fiber monitoring of cold-casting anchor's performance[J]. Journal of Traffic and Transportation Engineering, 2019, 19(6): 37-44. doi: 10.19818/j.cnki.1671-1637.2019.06.004

Fiber monitoring of cold-casting anchor's performance

doi: 10.19818/j.cnki.1671-1637.2019.06.004
More Information
  • Author Bio:

    WU Jun (1981-), male, associate professor, PhD, 195575462@qq.com

  • Received Date: 2019-05-19
  • Publish Date: 2019-12-25
  • To monitor the performance of cold-casting anchor, the structural stress characteristics were analyzed, and the micro unit static balancing model of steel wire in the anchor and modified epoxy filler was established. The impact of bond stress between steel wire and epoxy filler on the steel wire stress distribution characteristics was analyzed, and the failure of anchor was characterized as a singular change of bond stress. A non-destructive monitoring method of anchor's performance status by measuring the axial multi-point stress distributions of steel wires was proposed. For the LMLPES-7-211 anchor, the axial stress distribution characteristics of steel wires in the anchor were analyzed by using the finite element method. According to the non-uniform strain characteristics and harsh environment requirements, a strain-equalized DTG measurement scheme using the capillary encapsulation was proposed, and a special implantable distributed strain sensor for cold-casting anchor was developed. The simulation tests of cable anchor's performance state monitoring were carried out, two DTG distributed strain sensors were implanted into anchor 1 with normal performance and anchor 2 with abnormal performance, respectively, and then the distributed strains of steel wires under the standard stress state of anchor were monitored. Analysis result shows that the distributed strains of steel wire in the anchors 1 and 2 present a big difference. The strain attenuation trend in the anchor 1 is smoother, and the error is less than 5% compared with the finite element simulation result. The smoothness of strain attenuation trend in anchor 2 is insufficient, and the maximum error is more than 40% compared with the finite element simulation result. The performance degradation causes the bond stress of near the anchoring section to drop sharply, reaching a maximum of-2.55 MPa, and the bond stress near the anchoring section of tapping base plate increases greatly, and the increment reaches 3.25 times. Therefore, by setting the reasonable threshold of bond stress, the online monitoring and early warning of anchor's performance state can be realized.

     

  • loading
  • [1]
    叶觉明. 高强钢丝斜拉索工艺技术探讨[J]. 金属制品, 2002, 38(2): 11-14, 23. https://www.cnki.com.cn/Article/CJFDTOTAL-JSZP201202004.htm

    YE Jue-ming. Discussion on technical skill of high strength steel wire stay cable[J]. Metal Products, 2002, 38(2): 11-14, 23. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-JSZP201202004.htm
    [2]
    吴育苗, 蒋湘成, 朱利明. 斜拉桥斜拉索体系病害分析与处理方案[J]. 世界桥梁, 2013, 41(3): 77-80, 84. https://www.cnki.com.cn/Article/CJFDTOTAL-GWQL201303017.htm

    WU Yu-miao, JIANG Xiang-cheng, ZHU Li-ming. Deterioration analysis of stay cable system of cable-stayed bridge and the dealing scheme[J]. World Bridge, 2013, 41(3): 77-80, 84. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-GWQL201303017.htm
    [3]
    刘海基. 斜拉桥拉索病害成因及对策分析[J]. 城市建筑, 2013(24): 288. doi: 10.3969/j.issn.1673-0232.2013.24.260

    LIU Hai-ji. Analysis of cable disease causes and solutions of cable-stayed bidge[J]. City Building, 2013(24): 288. (in Chinese). doi: 10.3969/j.issn.1673-0232.2013.24.260
    [4]
    李权, 习燕, 赵轶才, 等. 新型斜拉索冷铸锚灌注料试验研究[J]. 公路交通技术, 2011(1): 86-89. doi: 10.3969/j.issn.1009-6477.2011.01.022

    LI Quan, XI Yan, ZHAO Yi-cai, et al. Experimental study on neotype filler for stayed-cable chilled casting anchor[J]. Technology of Highway and Transport, 2011(1): 86-89. (in Chinese). doi: 10.3969/j.issn.1009-6477.2011.01.022
    [5]
    卢剑峰, 罗艺红, 陈艺玲, 等. 冷铸锚650 t张拉杆失效分析[J]. 预应力技术, 2014(2): 37-39.

    LU Jian-feng, LUO Yi-hong, CHEN Yi-ling, et al. Failure analysis of 650 tons tension rod of cold casting anchor[J]. Prestress Technology, 2014(2): 37-39. (in Chinese).
    [6]
    HAN S H, LEE W S, BANG M S. Probabilistic optimal safety with minimum life-cycle cost based on stochastic finite element analysis of steel cable-stayed bridges[J]. International Journal of Steel Structures, 2011, 11(3): 335-349. doi: 10.1007/s13296-011-3008-9
    [7]
    CHOI D H, PARK W S. Tension force estimation of extradosed bridge cables oscillating nonlinearly under gravity effects[J]. International Journal of Steel Structures, 2011, 11(3): 383-394. doi: 10.1007/s13296-011-3012-0
    [8]
    MOZOS C M, APARICIO A C. Numerical and experimental study on the interaction cable structure during the failure of a stay in a cable stayed bridge[J]. Engineering Structures, 2011, 33(8): 2330-2341. doi: 10.1016/j.engstruct.2011.04.006
    [9]
    BOARETTO N, CENTENO T M. Automated detection of welding defects in pipelines from radiographic images DWDI[J]. NDT and E International, 2017, 86(1): 7-13.
    [10]
    SHAO Jia-xin, DU Dong, CHANG Bao-hua, et al. Automatic weld defect detection based on potential defect tracking in real-time radiographic image sequence[J]. NDT and E International, 2012, 46(1): 14-21.
    [11]
    ZOU Yi-rong, DU Dong, CHANG Bao-hua, et al. Automatic weld defect detection method based on Kalman filtering for real-time radiographic inspection of spiral pipe[J]. NDT and E International, 2015, 72: 1-9. doi: 10.1016/j.ndteint.2015.01.002
    [12]
    ZHAO Yi, LI Xiao-min, LIN Lei, et al. Measurements of coating density using ultrasonic reflection coefficient phase spectrum[J]. Ultrasonics, 2011, 51(5): 596-601. doi: 10.1016/j.ultras.2010.12.015
    [13]
    董泽蛟, 李生龙, 温佳宇, 等. 基于光纤光栅测试技术的沥青路面温度场实测[J]. 交通运输工程学报, 2014, 14(2): 1-6, 13. doi: 10.3969/j.issn.1671-1637.2014.02.002

    DONG Ze-jiao, LI Sheng-long, WEN Jia-yu, et al. Real-time temperature field measurement of asphalt pavement based on fiber Bragg grating measuring technology[J]. Journal of Traffic and Transportation Engineering, 2014, 14(2): 1-6, 13. (in Chinese). doi: 10.3969/j.issn.1671-1637.2014.02.002
    [14]
    邓年春, 周智, 龙跃, 等. 光纤光栅冷铸镦头锚拉索及其在桥梁中应用[J]. 预应力技术, 2007(3): 3-6, 24.

    DENG Nian-chun, ZHOU Zhi, LONG Yue, et al. Fiber Bragg grating cold casting twist anchor cable and its application in bridges[J]. Prestress Technology, 2007(3): 3-6, 24. (in Chinese).
    [15]
    HO S C M, LI Wei-jie, WANG Bo, et al. A load measuring anchor plate for rock bolt using fiber optic sensor[J]. Smart Materials and Structures, 2017, 26: 1-7.
    [16]
    YANG Ming-hong, BAI Wei, GUO Hui-yong, et al. Huge capacity fiber-optic sensing network based on ultra-weak draw tower gratings[J]. Photonic Sensors, 2016, 6(1): 26-41. doi: 10.1007/s13320-015-0298-0
    [17]
    WANG Yun-miao, GONG Jian-min, WANG D Y, et al. A quasi-distributed sensing network with time-division-multiplexed fiber Bragg gratings[J]. IEEE Photonics Technology Letters, 2011, 23(2): 70-72. doi: 10.1109/LPT.2010.2089676
    [18]
    RAO Y J, RIBEIRO A B L, JACKSON D A, et al. Simultaneous spatial, time and wavelength division multiplexed in-fibre grating sensing network[J]. Optics Communications, 1996, 125: 53-58. doi: 10.1016/0030-4018(95)00722-9
    [19]
    余海湖, 郑羽, 郭会勇, 等. 光纤光栅在线制备技术研究进展[J]. 功能材料, 2014, 12(5): 12001-12005. https://www.cnki.com.cn/Article/CJFDTOTAL-GNCL201412001.htm

    YU Hai-hu, ZHENG Yu, GUO Hui-yong, et al. Research progress in online preparation techniques of fiber Bragg gratings on optical fiber drawing tower[J]. Functional Materials, 2014, 12(5): 12001-12005. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-GNCL201412001.htm
    [20]
    李剑芝, 杜彦良, 刘晨曦. 采用在线成型工艺的光纤光栅传感器[J]. 光学精密工程, 2009, 17(9): 2069-2075. doi: 10.3321/j.issn:1004-924X.2009.09.001

    LI Jian-zhi, DU Yan-liang, LIU Chen-xi. FBG strain sensor based on online forming[J]. Optics and Precision Engineering, 2009, 17(9): 2069-2075. (in Chinese). doi: 10.3321/j.issn:1004-924X.2009.09.001
    [21]
    LINDNER E, CANNING J, CHOJETZKI C, et al. Post-hydrogen-loaded draw tower fiber Bragg gratings and their thermal regeneration[J]. Applied Optics, 2011, 50(17): 2519-2522. doi: 10.1364/AO.50.002519
    [22]
    ASLUND M L, CANNING J, STEVENSON M, et al. Thermal stabilization of type I fiber Bragg gratings for operation up to 600 degrees[J]. Optics Letters, 2010, 35(4): 586-588. doi: 10.1364/OL.35.000586
    [23]
    XU Ru-quan, GUO Hui-yong, LIANG Lei. Distributed fiber optic interferometric geophone system based on draw tower gratings[J]. Photonic Sensors, 2017, 7(3): 246-252. doi: 10.1007/s13320-017-0408-2
    [24]
    JOHNSON D. Draw-tower process creates high-quality FBG arrays[J]. Laser Focus World, 2012, 48(10): 53-56.
    [25]
    吴俊, 陈伟民, 舒岳阶, 等. 锚头植入式应变均化光纤布喇格光栅测力传感器[J]. 光子学报, 2015, 44(7): 1-6. https://www.cnki.com.cn/Article/CJFDTOTAL-GZXB201507015.htm

    WU Jun, CHEN Wei-min, SHU Yue-jie, et al. Embedded strain homogenized FBG sensor for smart cables[J]. Acta Photonica Sinica, 2015, 44(7): 1-6. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-GZXB201507015.htm
    [26]
    吴俊, 陈伟民, 余葵, 等. 非栅区封装光纤布喇格光栅应变传感特性研究[J]. 光子学报, 2016, 45(2): 1-5. https://www.cnki.com.cn/Article/CJFDTOTAL-GZXB201602016.htm

    WU Jun, CHEN Wei-min, YU Kui, et al. Strain sensing properties of grating ends packaged FBG sensors[J]. Acta Photonica Sinica, 2016, 45(2): 1-5. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-GZXB201602016.htm
    [27]
    WANG Hua-ping, ZHOU Zhi. Advances of strain transfer analysis of optical fibre sensors[J]. Pacific Science Review, 2014, 16: 8-18.
    [28]
    XUE Zi-qiu, PARK H, KIYAMA T, et al. Effects of hydrostatic pressure on strain measurement with distributed optical fiber sensing system[J]. Energy Procedia, 2014: 4003-4009.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (620) PDF downloads(429) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return