Dissertation > Excellent graduate degree dissertation topics show
Experimental Study on Cement Concrete Pavement Force Condition in Steep Slope Road Sections of Highway in Mountainous Areas
Author: LiZuo
Tutor: YangXiWu
School: Chongqing Jiaotong University
Course: Road and Railway Engineering
Keywords: cement concrete pavement steep slope tensile stress shear stress three dimensional finite element
CLC: U416.216
Type: Master's thesis
Year: 2010
Downloads: 54
Quote: 0
Read: Download Dissertation
Abstract
|
In Western areas of China, there are a large proportion of highway is in mountain areas. Besides the reasons of design、construction、maintenance and long-term overload ,the early damage of the pavement is also influenced by factors of Large longitudinal slope and low criterion design on alignment. The analysis of loading stress of cement concrete pavement on longitudinal slope is favorable to the precise design and construction so as to ensure the quality of cement concrete pavement in mountainous areas and promote development of cement concrete pavement.Through creating test model based on various longitudinal slopes and testing stress of cement concrete slab in the indoor laboratory, the thesis explores stress variation law of cement concrete pavement under the static load on longitudinal slope of 0%, 6%, 9% and 12% by selecting and loading corner of slab and middle of slab edge. Maximum flexural-tensile stress of slab is located in the inferior part of the middle of slab edge regardless of slope variation and it slightly decreases as slope increases.Then the paper carry through the contrast analysis about the maximum flexural-tensile stress of surface slab loading corner of slab and the maximum flexural-tensile stress of the inferior part of the middle of slab. The result indicate that in cement concrete pavement force condition in steep slope road sections, the maximum flexural-tensile stress of the inferior part of the middle of slab is bigger then the maximum flexural-tensile stress of surface slab, so it is feasible to adopt the inferior part of the middle of slab as the critical load position when design the pavement in steep slope road sections.Through mechanics analysis model based on ANSYS finite element analysis software, variation of maximum tensile stress of slab bottom and interlaminar shear stress on longitudinal slope subject to axle load is studied by applying three dimensional finite element methods. By comparing theoretical calculation results and measured results, conclusion that tensile stress increases as longitudinal slope decreases and shear stress increases as longitudinal slope increases is drawn. When the longitudinal slope increase 3%,the maximum tensile stress of slab bottom decrease 1.5%, interlaminar shear stress increase 6.5%.Therefore, the main influence factor arouse the pavement early damage in steep slope road sections is interlaminar shear stress. In the last, the paper analysis the influence factors which would arouse the stress change of cement concrete pavement in steep slope road sections, such as the thickness of surface course and base course, the modulus of resilience of base course and soil base. Then the paper put forward the reasonable advice to prevent the interlaminar shear stress become too big.
|
Related Dissertations
- Simulation Analysis on Temperature Stress of RCC Arch Dam and Its Construction Joints Design Research,TV642.2
- The Establishment and Preliminary Application of the Three-dimensional Finite Element Model of Ankle Joint,R687.3
- Effects of NF-кB Signaling Pathways on Cyclic Stretch―Induced Human Periodontal Ligament Fibroblasts Proliferation and Its Mechanism,R781.4
- Influence of Various PH and the Treating Time on Mechanical Property and Surface Structure of Ni-ti Orthodontic Wire,R783.5
- Preparation and Characterization of Proton Exchange Membrane of Phosphate Acid Doped Polybenzimidazole by Sol-Gel Method,TM911.4
- Destroy the Cell Wall of Excess Sludge with High Speed Disks,X703
- Effects of p38MAPK Signaling Pathway on Cyclic Stretch-induced Fibroblast Apoptosis,R781.4
- Finite Element Simulation on the Mechanical Properties of the Film/Substrate System in the Process of Nanoindentation,TB383.2
- Study on the Law of Strata Distortion Due to Tunnel Construction with Shield on Harbin,U455.43
- The Influence of Different Retainer Designs on the Stress Distribution of Two-unit Cantilever Resin-bonded Bridg: A Three-dimensional Finite Element Study,R783
- Three-dimensional Thermal Simulation and Structure Design of Phase Change Access Random Memory,TP333.8
- Research on Micro Flexible Thermal Shear Stress Sensor Array with Floating Structures,TP212
- Effect and Mechnisms of MIR-21 in Low Shear Stress Induced Carotid Remodeling in Mice,R363
- Change the Role and Mechanism of Macrophages Biological Functions in Atherosclerosis Regulated by Shear Stress,R543.5
- Capacitance Tomography direct three-dimensional image reconstruction technology research,TP391.41
- Based on GPR Concrete Pavement Void Detection Technology,U416.216
- Research on the Reinforced Concrete Arch Bridge Strengthened with CFRP,U445.72
- Research on Cement Concrete Overlay Stress Analysis and Cracking Prediction in the Rubblization of Old Cement Concrete Pavement,U416.216
- Key Technology Research for Asphalt Pavement Ultra-thin Overlay,U416.217
- Research on the Void Prediction of Cement Concrete Overly on Old Cement Pavement after Rubblization,U414
- Cement Concrete Pavement of Rural Roads Construction and Management,U416.216
CLC: > Transportation > Road transport > Road works > Roadbed, pavement engineering > Pavement Engineering > Road : use of the material points > Cement concrete pavement
© 2012 www.DissertationTopic.Net Mobile
|