Research Article
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Architectural Engineering Construction Quality Control of Concrete Structures Perspectives

Year 2024, Volume: 10 Issue: 1, 25 - 35, 12.06.2024

Abstract

The quality of the concrete structure building during civil engineering construction can have a direct impact on the overall project quality. As the process of urbanization and construction in China continues to progress, the demand for concrete products has gradually increased. During the construction of civil engineering, the reasonable use of concrete structure construction technology can effectively improve the stability and safety of the entire building structure, increasing the project construction revenue. As a result, the points of concrete structure construction technology for civil engineering are thoroughly investigated. This investigation aims to discuss the importance of architectural engineering construction quality control in concrete structures. Concrete structures play a vital role in civil engineering construction, and ensuring their quality is of paramount importance. Therefore, it is necessary to implement strict quality control measures during the construction process, including proper mix design, effective curing methods, and regular inspections to detect and address any issues or defects in the concrete structures. By following these quality control measures, the durability and long-term performance of the concrete structures can be

Ethical Statement

Funding: This paper was funded by the Natural Science Foundation of Jiangsu Province (Grants No. BK20230618).

Supporting Institution

Nantong University

References

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  • J. Liu, G. Ou, Q. Qiu, F. Xing, K. Tang, and J. Zeng, "Atmospheric chloride deposition in field concrete at coastal region," Construction and Building Materials, vol. 190, pp. 1015-1022, 2018.
  • A. Sánchez-Deza, D. M. Bastidas, A. l. Iglesia, E. M. Mora, and J. M. Bastidas Rull, "Service life prediction for 50-year-old buildings in marine environments," 2018.
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Year 2024, Volume: 10 Issue: 1, 25 - 35, 12.06.2024

Abstract

References

  • M. R. Geiker, M. A. Hendriks, and B. Elsener, "Durability-based design: the European perspective," Sustainable and Resilient Infrastructure, vol. 8, no. 2, pp. 169-184, 2023.
  • Z. Li, X. Zhou, H. Ma, and D. Hou, Advanced concrete technology. John Wiley & Sons, 2022.
  • S. Wang et al., "Thermal energy storage in concrete: Review, testing, and simulation of thermal properties at relevant ranges of elevated temperature," Cement and Concrete Research, vol. 166, p. 107096, 2023.
  • G. Prakash, R. Dugalam, M. Barbosh, and A. Sadhu, "Recent advancement of concrete dam health monitoring technology: a systematic literature review," in Structures, 2022, vol. 44: Elsevier, pp. 766-784.
  • Y. Zheng, Y. Zhang, J. Zhuo, Y. Zhang, and C. Wan, "A review of the mechanical properties and durability of basalt fiber-reinforced concrete," Construction and Building Materials, vol. 359, p. 129360, 2022.
  • X. Wang et al., "Single-atom vacancy defect to trigger high-efficiency hydrogen evolution of MoS2," Journal of the American Chemical Society, vol. 142, no. 9, pp. 4298-4308, 2020.
  • W. Sima et al., "Novel smart insulating materials achieving targeting self-healing of electrical trees: high performance, low cost, and eco-friendliness," ACS Applied Materials & Interfaces, vol. 13, no. 28, pp. 33485-33495, 2021.
  • H. Pang et al., "Construction of a Vibrio alginolyticus hopPmaJ (hop) mutant and evaluation of its potential as a live attenuated vaccine in orange-spotted grouper (Epinephelus coioides)," Fish & shellfish immunology, vol. 76, pp. 93-100, 2018.
  • S. Barbhuiya, B. B. Das, and M. Idrees, "Thermal energy storage in concrete: A comprehensive review on fundamentals, technology and sustainability," Journal of Building Engineering, p. 108302, 2023.
  • K. S. Lee, J.-I. Choi, S. E. Park, J.-S. Hwang, and B. Y. Lee, "Damping property of prepacked concrete incorporating coarse aggregates coated with polyurethane," Cement and Concrete Composites, vol. 93, pp. 301-308, 2018.
  • L. Eufemia, I. Schlindwein, M. Bonatti, S. T. Bayer, and S. Sieber, "Community-based governance and sustainability in the Paraguayan Pantanal," Sustainability, vol. 11, no. 19, p. 5158, 2019.
  • O. S. Ovbeniyekede, D. Adenan, M. Ahmad, and K. Kamaruddin, "Water absorption and compressive strength of self compacting concrete incorporating fly ash and quarry dust," Int J Sci Res Publ, vol. 8, no. 10, pp. 377-384, 2018.
  • Y. Lemcherreq, T. Galkovski, J. Mata-Falcón, and W. Kaufmann, "Application of distributed fibre optical sensing in reinforced concrete elements subjected to monotonic and cyclic loading," Sensors, vol. 22, no. 5, p. 2023, 2022.
  • W. Zhong et al., "Combustion and emission characteristics of gasoline/hydrogenated catalytic biodiesel blends in gasoline compression ignition engines under different loads of double injection strategies," Applied Energy, vol. 251, p. 113296, 2019.
  • S. Foroughi and S. B. Yüksel, "Investigation of the moment–curvature relationship for reinforced concrete square columns," Turkish Journal of Engineering, vol. 4, no. 1, pp. 36-46, 2020.
  • M. Gonçalves, R. M. Novais, L. Senff, J. Carvalheiras, and J. A. Labrincha, "PCM-containing bi-layered alkali-activated materials: A novel and sustainable route to regulate the temperature and humidity fluctuations inside buildings," Building and Environment, vol. 205, p. 108281, 2021.
  • B. Mazhoud, F. Collet, S. Pretot, and J. Chamoin, "Hygric and thermal properties of hemp-lime plasters," Building and Environment, vol. 96, pp. 206-216, 2016.
  • W. Van De Walle, S. Claes, and H. Janssen, "Implementation and validation of a 3D image-based prediction model for the thermal conductivity of cellular and granular porous building blocks," Construction and Building Materials, vol. 182, pp. 427-440, 2018.
  • C. Feng and H. Janssen, "Hygric properties of porous building materials (VII): Full-range benchmark characterizations of three materials," Building and Environment, vol. 195, p. 107727, 2021.
  • Y. Zhang, S. Wang, S. He, and X. Hao, "Analysis of factors influencing the temperature field variation in mass concrete during hydration heat release," Case Studies in Thermal Engineering, vol. 52, p. 103737, 2023.
  • S. K. Verma, S. S. Bhadauria, and S. Akhtar, "Monitoring corrosion of steel bars in reinforced concrete structures," The scientific world journal, vol. 2014, 2014.
  • J. Massana, E. Reyes, J. Bernal, N. León, and E. Sánchez-Espinosa, "Influence of nano-and micro-silica additions on the durability of a high-performance self-compacting concrete," Construction and Building Materials, vol. 165, pp. 93-103, 2018.
  • R. Wang, Z. Hu, Y. Li, K. Wang, and H. Zhang, "Review on the deterioration and approaches to enhance the durability of concrete in the freeze–thaw environment," Construction and Building Materials, vol. 321, p. 126371, 2022.
  • Y. Dong, "Performance assessment and design of ultra-high performance concrete (UHPC) structures incorporating life-cycle cost and environmental impacts," Construction and Building Materials, vol. 167, pp. 414-425, 2018.
  • N. Bhutani, Y. Suhara, W.-C. Tan, A. Halevy, and H. V. Jagadish, "Open information extraction from question-answer pairs," arXiv preprint arXiv:1903.00172, 2019.
  • A. Farahani, H. Naderpour, G. Konstantakatos, A. Tarighat, R. Peymanfar, and P. G. Asteris, "Developing a Fuzzy Expert System for Diagnosing Chemical Deterioration in Reinforced Concrete Structures," Applied Sciences, vol. 13, no. 18, p. 10372, 2023.
  • M. Peiris and N. De Silva, "Fuzzy logic model to benchmark maintenance strategies for concrete structures," 2019.
  • A. Aevarsson et al., "Going to extremes–a metagenomic journey into the dark matter of life," FEMS microbiology letters, vol. 368, no. 12, p. fnab067, 2021.
  • R. Wang, Q. Zhang, and Y. Li, "Deterioration of concrete under the coupling effects of freeze–thaw cycles and other actions: A review," Construction and Building Materials, vol. 319, p. 126045, 2022.
  • J. Liu, G. Ou, Q. Qiu, F. Xing, K. Tang, and J. Zeng, "Atmospheric chloride deposition in field concrete at coastal region," Construction and Building Materials, vol. 190, pp. 1015-1022, 2018.
  • A. Sánchez-Deza, D. M. Bastidas, A. l. Iglesia, E. M. Mora, and J. M. Bastidas Rull, "Service life prediction for 50-year-old buildings in marine environments," 2018.
  • J. Qian, Y. Zheng, Y. Dong, H. Wu, H. Guo, and J. Zhang, "Sustainability and resilience of steel–shape memory alloy reinforced concrete bridge under compound earthquakes and functional deterioration within entire life-cycle," Engineering Structures, vol. 271, p. 114937, 2022.
  • D. Zhang, Y. Suhara, J. Li, M. Hulsebos, Ç. Demiralp, and W.-C. Tan, "Sato: Contextual semantic type detection in tables," arXiv preprint arXiv:1911.06311, 2019.
There are 33 citations in total.

Details

Primary Language English
Subjects Materials and Technology in Architecture
Journal Section Research Article
Authors

Francis Deng 0009-0004-8359-447X

Publication Date June 12, 2024
Submission Date December 25, 2023
Acceptance Date May 1, 2024
Published in Issue Year 2024 Volume: 10 Issue: 1

Cite

APA Deng, F. (2024). Architectural Engineering Construction Quality Control of Concrete Structures Perspectives. A+Arch Design International Journal of Architecture and Design, 10(1), 25-35.


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