Advances in Materials Science and Engineering

Advanced Pavement Materials for Sustainable Transportation Infrastructure


Status
Published

Lead Editor

1Michigan Technological University, Michigan, USA

2Universiti Sains Malaysia, Penang, Malaysia

3Chang’an University, Xi’an, China

4Aswan University, Aswan, Egypt


Advanced Pavement Materials for Sustainable Transportation Infrastructure

Description

Pavement materials are crucial factors affecting pavement durability. The asphalt pavement industry has made extensive efforts to develop and promote advanced pavement materials and structures for constructing and maintaining sustainable pavements. Pavement materials that can extend durability, cut costs, reduce neat material usage, and lower environmental impacts are desirable for such purposes. Modified asphaltic and cementitious materials possessing better properties, in certain aspects, have been well developed during the past decades. Meanwhile, some new design ideas that differ from traditional pavement structures have shown noticeable benefits in terms of pavement durability or cost.

Well-designed strategies for pavement maintenance have also attracted the interests of researchers since a large number of existing pavements are facing deterioration all over the world. Material selection is a component of making a pavement maintenance strategy. These materials may include joint or crack sealing and repairing, seal coating, slurry sealing, patching, and overlaying. Some uncommon materials only applied for special purposes (i.e., for bridge pavement, decks, deicing, and flame retardants) are also encouraged here. Many road managers and stakeholders are looking for more options from the development in maintenance materials and strategies.

We invite authors to contribute original research articles as well as review articles that will contribute to the development and implementation of advanced pavement materials. The advanced materials shall conform with the goal of sustainability, which commonly implies low cost, high durability, environmental friendliness, and effective resource usage.

Potential topics include but are not limited to the following:

  • Advanced asphalt and cementitious materials for modern transportation
  • New materials for durable pavements
  • Materials under various traffic conditions
  • Recycling and sustainable transportation materials
  • Advanced pavement maintenance strategies
  • Uncommon maintenance materials for special purposes

Articles

  • Special Issue
  • - Volume 2017
  • - Article ID 6063508
  • - Research Article

Asphalt Concrete Overlay Optimization Based on Pavement Performance Models

Jan Mikolaj | Lubos Remek | Marian Macula
  • Special Issue
  • - Volume 2017
  • - Article ID 3927106
  • - Research Article

Portland Cement Hydration Behavior at Low Temperatures: Views from Calculation and Experimental Study

Zhuangzhuang Liu | Wenxiu Jiao | ... | Wei Xu
  • Special Issue
  • - Volume 2017
  • - Article ID 7128602
  • - Research Article

Quantitative Analysis on Force Chain of Asphalt Mixture under Haversine Loading

Mingfeng Chang | Pingming Huang | ... | Binhui Zheng
  • Special Issue
  • - Volume 2017
  • - Article ID 3154634
  • - Research Article

Laboratory Evaluation of Aging Behaviour of SBS Modified Asphalt

Jie Wang | Yongchun Qin | ... | Jian Xu
  • Special Issue
  • - Volume 2017
  • - Article ID 8426475
  • - Research Article

Aging of Rejuvenated Asphalt Binders

Mojtaba Mohammadafzali | Hesham Ali | ... | Wayne A. Rilko
  • Special Issue
  • - Volume 2017
  • - Article ID 3829340
  • - Research Article

Concrete Pavement Service Condition Assessment Using Infrared Thermography

Yang Lu | Aidin J. Golrokh | MD Aminul Islam
  • Special Issue
  • - Volume 2017
  • - Article ID 4101503
  • - Research Article

Application of Conductive Materials to Asphalt Pavement

Hai Viet Vo | Dae-Wook Park
  • Special Issue
  • - Volume 2017
  • - Article ID 4576026
  • - Research Article

A Preliminary Study on the IoT-Based Pavement Monitoring Platform Based on the Piezoelectric-Cantilever-Beam Powered Sensor

Yue Hou | Linbing Wang | ... | Xinlong Tong
  • Special Issue
  • - Volume 2017
  • - Article ID 2394945
  • - Research Article

Design and Performance of Anticracking Asphalt-Treated Base

Xiaoge Tian | Haifeng Han | ... | Ye Li
  • Special Issue
  • - Volume 2017
  • - Article ID 7236153
  • - Research Article

Laboratory Performance Evaluation of High Modulus Asphalt Concrete Modified with Different Additives

Peng Li | Mulian Zheng | ... | Yonghong Wang
Advances in Materials Science and Engineering
 Journal metrics
See full report
Acceptance rate16%
Submission to final decision115 days
Acceptance to publication21 days
CiteScore3.300
Journal Citation Indicator-
Impact Factor-
 Submit Evaluate your manuscript with the free Manuscript Language Checker

We have begun to integrate the 200+ Hindawi journals into Wiley’s journal portfolio. You can find out more about how this benefits our journal communities on our FAQ.