The integration of weigh-in-motion (WIM) sensors within highways or bridge structural health monitoring systems is becoming increasingly popular to ensure structural integrity and users safety. Compared to standard technologies, smart self-sensing materials and systems present a simpler sensing setup, a longer service life, and increased durability against environmental effects. Field deployment of such technologies requires characterization and design optimization for realistic scales. This paper presents a field investigation of the vehicle load-sensing capabilities of a newly developed low-cost, eco-friendly and high durability smart composite paving material. The novel contributions of the work include the design and installation of a f...
A new load cell-based Weight-in-Motion (WIM) equipment for detecting traffic overload conditions on ...
Pavements tend to deteriorate with time under repeated traffic and/or environmental loading. By dete...
Pavements tend to deteriorate with time under repeated traffic and/or environmental loading. By dete...
The integration of weigh-in-motion (WIM) sensors within highways or bridge structural health monitor...
Smart materials are promising technologies for reducing the instrumentation cost required to continu...
The integration of load tracking systems for structural health monitoring of road infrastructures is...
The need for ageing infrastructure monitoring has recently emerged as an urgent priority in many cou...
With the development of the highway transportation and business trade, vehicle Weigh-In-Motion (WIM)...
Vehicle count and weight data plays an important role in traffic planning, weight enforcement, and p...
Pavement undergoes a process of deterioration resulting from repeated traffic and/or environmental l...
Recently, smart composites that serve as multi-functional materials have gained popularity for struc...
2013Final Report, September 2008-July 2012PDFTech ReportFHWA-HRT-12-072DTFH61-08-C-00015Fatigue (Mec...
Raj Bridgelall is the program director for the Upper Great Plains Transportation Institute (UGPTI) C...
667610827Final research report.PDFTech Reporthttp://www.transnow.org/publication/final-reports/docum...
Smart multifunctional composites exhibit enhanced physical and mechanical properties and can provide...
A new load cell-based Weight-in-Motion (WIM) equipment for detecting traffic overload conditions on ...
Pavements tend to deteriorate with time under repeated traffic and/or environmental loading. By dete...
Pavements tend to deteriorate with time under repeated traffic and/or environmental loading. By dete...
The integration of weigh-in-motion (WIM) sensors within highways or bridge structural health monitor...
Smart materials are promising technologies for reducing the instrumentation cost required to continu...
The integration of load tracking systems for structural health monitoring of road infrastructures is...
The need for ageing infrastructure monitoring has recently emerged as an urgent priority in many cou...
With the development of the highway transportation and business trade, vehicle Weigh-In-Motion (WIM)...
Vehicle count and weight data plays an important role in traffic planning, weight enforcement, and p...
Pavement undergoes a process of deterioration resulting from repeated traffic and/or environmental l...
Recently, smart composites that serve as multi-functional materials have gained popularity for struc...
2013Final Report, September 2008-July 2012PDFTech ReportFHWA-HRT-12-072DTFH61-08-C-00015Fatigue (Mec...
Raj Bridgelall is the program director for the Upper Great Plains Transportation Institute (UGPTI) C...
667610827Final research report.PDFTech Reporthttp://www.transnow.org/publication/final-reports/docum...
Smart multifunctional composites exhibit enhanced physical and mechanical properties and can provide...
A new load cell-based Weight-in-Motion (WIM) equipment for detecting traffic overload conditions on ...
Pavements tend to deteriorate with time under repeated traffic and/or environmental loading. By dete...
Pavements tend to deteriorate with time under repeated traffic and/or environmental loading. By dete...