Education, Science, Technology, Innovation and Life
Open Access
Sign In

Analysis of Mechanical and Technical Measures for Subgrade and Pavement Compaction in Highway Engineering Construction

Download as PDF

DOI: 10.23977/jceup.2023.050402 | Downloads: 17 | Views: 357

Author(s)

Di Zhang 1

Affiliation(s)

1 Municipal Engineering Branch, Yunnan Institute of Transportation Planning and Design, Kunming, Yunnan, 650041, China

Corresponding Author

Di Zhang

ABSTRACT

With the social progress and rapid economic development, the increasing innovation of science and technology, there are more and more road construction and traffic projects. The research and development of science and technology has continuously improved the efficiency and material utilization rate of engineering projects, resulting in many social and economic benefits, which is of great significance for the development of technical measures and the use of machinery. This study discusses the subgrade compaction construction technology, expounds the internal and external factors of subgrade and pavement compaction construction quality, and summarizes the correct methods of compaction construction technology in various ways.

KEYWORDS

Highway Engineering, Compaction of Subgrade, Pavement Compaction

CITE THIS PAPER

Di Zhang, Analysis of Mechanical and Technical Measures for Subgrade and Pavement Compaction in Highway Engineering Construction. Journal of Civil Engineering and Urban Planning (2023) Vol. 5: 12-20. DOI: http://dx.doi.org/10.23977/jceup.2023.050402.

REFERENCES

[1] Reichert Gabriel, Schmidl Christoph. SWOT Analysis of Non-Technical and Technical Measures towards “(Nearly) Zero-Emission Stove Technologies”. Energies, 2023, 16(3).
[2] Machine Learning; Research from Perm National Research Polytechnic University in the Area of Machine Learning Published (Development of a comprehensive methodology for the forecast of effectiveness of geological and technical measures based on machine learning ...). Robotics & Machine Learning, 2020.
[3] Abrosimov Yu, Babushkin V, Galyamov R. Structuring Organizational and Technical Measures of the Production Program. IOP Conference Series: Earth and Environmental Science, 2021, 666(6).
[4] Pcheliakov Alexey A., Diachkova Ekaterina Yu., Vasil’ev Yuriy L., Svitich Oxana A., Poddubikov Alexander V.,Evlashin Stanislav A.,Volel Beatrice A., Bakhmet Anastasia A., Klochkova Svetlana V., Velichko Ellina V., Tiunova Natalia, Tarasenko Svetlana V.. Comparative Analysis of Mechanical Properties and Microbiological Resistance of Polyfilament and Monofilament Suture Materials Used in the Operation “Tooth Extraction”. Biomimetics, 2023, 8(1).
[5] Liu Hu, Li Meng, Shen Yijun. Numerical Analysis of Mechanical Behaviors of Composite Tensile Armored Flexible Risers in Deep-Sea Oil and Gas. Journal of Marine Science and Engineering, 2023, 11(3).
[6] Casavola C, Pappalettera G, Pappalettere C, Patronelli M, Renna G, Ciavarella D, Laurenziello M. DIC analysis of mechanical response of tooth aligners under simulated swallowing acts. IOP Conference Series: Materials Science and Engineering, 2023, 1275(1).
[7] Kim Haneol, Ha Sanggui, Rehman Hafeezur, Yoo Hankyu. Analysis of Mechanical Excavation Characteristics by Pre-Cutting Machine Based on Linear Cutting Tests. Applied Sciences, 2023, 13(2).
[8] Wang YiChen, Yang Dan, Zhao LiHua, Xiao Bo, Ma QiChao, Dong LiangChao, Li Xiang, Zhang YuGuo, Zhang ZiMing, Luo Yi. Finite Element Analysis of Mechanical Characteristics of Internal Fixation for Treatment of Proximal Femoral Osteolytic Lesions in Children. Orthopaedic surgery, 2023, 15(2).
[9] Li Bing, Niu Shaohua, Li Bingyang, Wang Pengfei, Qiao Yuli. Design and Analysis of Mechanical Characteristics of EAP Flexible Drivers. Machines, 2022, 10(12).
[10] Jabal Mohamed Sobhi, Ibrahim Mohamed K, Thurnham Jade, Kallmes Kevin M, Kobeissi Hassan, Ghozy Sherief, Hardy Nicole, Tarchand Ranita, Bilgin Cem, Heit Jeremy J, Brinjikji Waleed, Kallmes David F. Common Data Elements Analysis of Mechanical Thrombectomy Clinical Trials for Acute Ischemic Stroke with Large Core Infarct.. Clinical neuroradiology, 2022.
[11] Ru Shaofeng, Zhao Can, Yang Songmei. Multi-Objective Optimization and Analysis of Mechanical Properties of Coir Fiber from Coconut Forest Waste. Forests, 2022, 13(12).
[12] Li Yuan, Wang Hongyu, Xi Yifeng, Sun Anqiang, Deng Xiaoyan, Chen Zengsheng, Fan Yubo. Multi-indicator analysis of mechanical blood damage with five clinical ventricular assist devices. Computers in biology and medicine, 2022, 151(Pt A).
[13] Miralbes Ramon, Higuera Saul,Ranz David,Gomez Jose Antonio. Comparative analysis of mechanical properties and energy absorption capabilities of functionally graded and non-graded thermoplastic sheet gyroid structures. Mechanics of Advanced Materials and Structures, 2022, 29(26).
[14] Zhou Wenhai, Zhou Youhe. Analysis of mechanical behavior on anisotropic cylindrical superconducting materials with inclusions. Acta Mechanica Sinica, 2022, 39(1).
[15] Yang Min-Ji, Shim Jae-Hyun, Park Jeong-Yeon, Park Jae-Wan. Analysis of Mechanical Properties and Electrochemical Behavior of Li-Ion Secondary Batteries According to Particle Size of Silicon Anode. Electrochemical Society Meeting Abstracts, 2022, MA2022-02(7).
[16] Chukwuneke J.L., Ndefo M.I., Sinebe J.E., Ofochebe S. M. Numerical and thermal analysis of mechanical properties degradations and distortions in steel weld joint. Cleaner Materials, 2022, 6.

All published work is licensed under a Creative Commons Attribution 4.0 International License.

Copyright © 2016 - 2031 Clausius Scientific Press Inc. All Rights Reserved.