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International Journal of Frontiers in Engineering Technology, 2024, 6(4); doi: 10.25236/IJFET.2024.060412.

Research on the Installation Process of T-shaped High-Precision Embedded Parts

Author(s)

Jinlong Zou1, Lei Feng1, Pengyu Xiang2

Corresponding Author:
Jinlong Zou
Affiliation(s)

1China Nuclear Industry 23 Construction Co., Ltd., Shunyi District, No. 58 Shunkang Road, Beijing, China

2China Nuclear Engineering Consulting Co., Ltd., Sichuan Branch, Petrochemical Building, No. 2028, South Section of Tianfu Avenue, Huayang Street, Tianfu New Area, Chengdu, China

Abstract

This study focuses on the high-precision installation requirements of equipment foundation embedded parts in nuclear power engineering and proposes an innovative installation process for T-shaped high-precision embedded parts. Through detailed construction procedures and technical requirements, including measurement and line setting, hole reservation and cleaning, positioning and installation, and fine-aggregate concrete pouring, the stability and accuracy of the embedded parts during installation are ensured. Practical results show that this process significantly improves the installation quality of embedded parts, meeting the high requirements for equipment stability and safety in nuclear power engineering and providing valuable technical references and experience for similar projects.

Keywords

T-shaped High-Precision Embedded Parts; Nuclear Power Engineering; Installation Process; Stability; Precision Control

Cite This Paper

Jinlong Zou, Lei Feng, Pengyu Xiang. Research on the Installation Process of T-shaped High-Precision Embedded Parts. International Journal of Frontiers in Engineering Technology (2024), Vol. 6, Issue 4: 70-74. https://doi.org/10.25236/IJFET.2024.060412.

References

[1] Jia, Y., Lü, H., & Wang, L. (2008). Manufacturing and construction technology of high-precision large embedded parts. Construction Technology, 2008(S1), 318-319.

[2] Li, F., Tai, W., Ma, Q., et al. (2017). High precision embedded parts displacement control technology. Construction Technology, 46(S1), 579-581.

[3] Xu, X., & He, R. (2015). Installation technology of high precision embedded parts for arc continuous track. Construction Technology, 44(07), 125-128.

[4] Xie, C., Wang, P., & Wang, K. (2011). Research on sub-millimeter level embedded parts positioning technology. Geomatics Science, 36(01), 131-133. DOI: 10.16251/j.cnki.1009-2307.2011.01.059.

[5] Zhao, Z. (2005). Installation technology of high-precision large embedded parts in steel structures. Construction Technology, (10), 23-82.

[6] Qi, H. (2006). High precision construction technology of embedded parts in track beam. Railway Construction, (02), 22-24.

[7] Shi, Y., Yang, Y., Li, M., et al. (2015). Construction technology of post-placement of embedded parts for large beam truss supports at the pit top. Construction Technology, 44(19), 28-29+42.