Isaac Scientific Publishing

Frontiers in Management Research

Common Diseases of Road and Bridge Engineering and Application of Construction Treatment Technology

Download PDF (497.2 KB) PP. 78 - 83 Pub. Date: April 26, 2019

DOI: 10.22606/fmr.2019.32004

Author(s)

  • Weiwei Li*
    Shandong University, Jinan, China
  • Yiguo Xue
    Shandong University, Jinan, China
  • Yanliang Du
    Shandong University, Jinan, China
  • Xinqiang Zhang
    Shandong University, Jinan, China

Abstract

The purpose of this study is to understand the common diseases of road and bridge engineering and put forward the corresponding construction treatment technology. In this study, firstly, taking reinforced concrete bridges and roads as examples, several common diseases of road and bridge engineering are introduced. Then, the causes of these common diseases are analyzed. Finally, the control countermeasures of diseases of bridge and road are put forward. That is, the bottom plate of the large-area disease within the treatment range is outsourced with a steel plate, and the high-intensity grout is filled therein; all girder bottom diseases are repaired with acrylic mortar; for the treatment of other local diseases, the construction technology of crack sealing and grouting is adopted; and operation monitoring system is installed. The results show that these construction techniques can prevent and control the common diseases of bridge engineering to a great extent. Therefore, this study has some practical significance.

Keywords

Disease, construction treatment, bridge engineering, reinforced concrete, control

References

[1] Kang, C., Schneider, S., Wenner, M., & Marx, S. (2018). Development of design and construction of high-speed railway bridges in germany. Engineering Structures, 163, 184-196.

[2] Karmakar, M., Leavitt, P. R., & Patoine, A. (2018). Effects of bridge construction and wastewater effluent on phytoplankton abundance and sediment geochemistry in an atlantic temperate coastal bay since 1930. Estuaries and Coasts, 42(2), 365-377.

[3] Elkawas, A. A., Hassanein, M. F., & Elchalakani, M. (2018). Lateral-torsional buckling strength and behaviour of high-strength steel corrugated web girders for bridge construction. Thin-Walled Structures, 122, 112-123.

[4] Liu, W., Dunford, M., & Gao, B. (2018). A discursive construction of the belt and road initiative: from neoliberal to inclusive globalization. Journal of Geographical Sciences, 28(9), 1199-1214.

[5] Tauro, J. C. (2018). Editorial commentary: put down your saw and pick up your scope! or, why burn down the bridge when the road ahead is full of potholes? reverse total shoulder replacement versus arthroscopic rotator cuff repair. Arthroscopy the Journal of Arthroscopic & Related Surgery, 34(4), 1128-1129.

[6] Ku?awa, M., Kamiński, T., & Bień, J. (2018). Fatigue assessment procedure for old riveted road bridges. Archives of Civil\s&\smechanical Engineering, 18(4), 1259-1274.

[7] Wu, X., Wang, W., Chen, W., & Ding, S. (2018). China’s first road‐cum‐railway suspension bridge with rigid‐cables of three main stiffening frames in parallel: the two‐storey jinan yellow river bridge. Stahlbau, 87(3), 203-214.

[8] Monreal, C. O. (2018). Intelligent vehicle technology r&d group [its research lab]. IEEE Intelligent Transportation Systems Magazine, 10(3), 200-203.

[9] Liu, A. R., & Pi, Y. L. (2018). Seismic response of long span continuous rigid-framed steel arch bridge. Key Engineering Materials, 763, 1087-1094.

[10] Nguyen-Phuoc, D. Q., Amoh-Gyimah, R., Tran, A. T. P., & Cao, T. P. (2018). Mode choice among university students to school in danang, vietnam. Travel Behaviour & Society, 13(1), 1-10.

[11] Tauro, J. C. (2018). Editorial commentary: put down your saw and pick up your scope! or, why burn down the bridge when the road ahead is full of potholes? reverse total shoulder replacement versus arthroscopic rotator cuff repair. Arthroscopy the Journal of Arthroscopic & Related Surgery, 34(4), 1128-1129.

[12] Dhar, A., Kumar, N. S., Paul, P. K., Roy, S., & Vekariya, R. L. (2018). Influence of tagging thiophene bridge unit on optical and electrochemical properties of coumarin based dyes for dsscs with theoretical insight. Organic Electronics, 53, 280-286.

[13] Valle-Zerme?o, R. D., Medina, E., Chimenos, J. M., Formosa, J., Llorente, I., & Bastidas, D. M. (2017). Influence of mswi bottom ash used as unbound granular material on the corrosion behaviour of reinforced concrete. Journal of Material Cycles and Waste Management, 19(1), 124-133.

[14] Adrian, I. R. (2017). Establishing the optimal solution for obstacle crossings. application for bridge km.14+162 placed on the bypass of bistrita city. Mathematical Modelling in Civil Engineering, 13(1), 12-20.

[15] Lai, E., Gentile, C., & Mulas, M. G. (2017). Experimental and numerical serviceability assessment of a steel suspension footbridge. Journal of Constructional Steel Research, 132(5), 16-28.

[16] Chen, X., Xu, Z., Yao, L., & Ma, N. (2018). Processing technology selection for municipal sewage treatment based on a multi-objective decision model under uncertainty. International Journal of Environmental Research & Public Health, 15(3), 448.

[17] Ghaibeh, A. A., Kasem, A., Ng, X. J., Nair, H., Hirose, J., & Thiruchelvam, V. (2018). Gaining insights on nasopharyngeal carcinoma treatment outcome using clinical data mining techniques. Studies in Health Technology & Informatics, 247, 386.

[18] Jayakesh, K., & Suresha, S. N. (2018). Experimental investigation of interface treatment technique on interface shear bond fatigue behavior of ultra-thin whitetopping. Construction & Building Materials, 161, 489-500.

[19] Bessaim, M. M., Missoum, H., Bendani, K., & Laredj, N. (2018). Laboratory investigation on solutes removal from artificial amended saline soil during the electrochemical treatment. International Journal of Environmental Science & Technology(3), 1-10.

[20] Cui, Y., Zhang, X., Guo, R., Zhang, H., Bo, L., & Xie, M., et al. (2018). Construction of bi 2 o 3 /g-c 3 n 4 composite photocatalyst and its enhanced visible light photocatalytic performance and mechanism. Separation & Purification Technology, 203, 301-309.