Special Issue

Smart Mechanical Systems for Sustainable Engineering

  • Submission Deadline: 30 January 2026
  • Status: Open for Submission
  • Lead Guest Editor: Hari Vasudevan
About This Special Issue
As the global engineering community grapples with the dual challenge of accelerating technological advancement and promoting sustainability, the field of mechanical engineering is undergoing a radical transformation. The convergence of Industry 4.0 technologies such as artificial intelligence, machine learning, digital twins, and smart sensors with sustainable practices is reshaping the way systems are designed, manufactured, operated, and maintained. This shift is especially critical in addressing climate change, energy efficiency, and resource optimization across sectors such as transportation, energy, manufacturing, and infrastructure. The integration of smart technologies into mechanical systems holds the key to developing environmentally responsible, intelligent, and adaptive solutions. Against this backdrop, there is an urgent need for scholarly discourse that bridges sustainability goals with innovations in mechanical engineering design and application.
The primary goal of this special issue is to present a curated collection of high-quality research that explores how smart mechanical systems can contribute to sustainable engineering practices and global environmental goals. We invite contributions that explore interdisciplinary and application-driven advancements in the field, with particular interest in transformative technologies, novel materials, and intelligent system integration.
Types of articles welcomed: Original research articles, review articles, case studies, etc.
Through this special issue, we aim to create a multidisciplinary knowledge platform that will serve as a valuable reference for researchers, educators, and practitioners working at the intersection of sustainability and smart mechanical systems. By integrating scientific insights with practical applications, this issue will contribute to advancing knowledge, promoting responsible innovation, and fostering global collaboration in the development of intelligent, efficient, and sustainable engineering solutions.
We welcome contributions from diverse disciplines—including mechanical engineering, materials science, energy systems, automation, robotics, and industrial design—to ensure rich, interdisciplinary perspectives. Your submissions will play a crucial role in shaping the future of sustainable technology and empowering engineers to meet global environmental and industrial challenges.

The broad theme of “Smart Mechanical Systems for Sustainability”, with particular interest in the following specific areas of focus:

  1. Smart Materials and Shape Memory Alloys
  2. Bio-Based and Biodegradable Materials
  3. Advanced Composites and Hybrid Materials
  4. Materials for Energy Storage and Harvesting
  5. Lightweight Materials for Transportation Systems
  6. Material Development, Testing and Analysis
  7. Green and Lean Manufacturing
  8. Additive Manufacturing (3D Printing)
  9. Energy-Efficient Machining and Forming Processes
  10. Cyber-Physical Systems in Manufacturing
  11. Digital Twins and Smart Factories
  12. Analysis of Manufacturing Systems
  13. Solar Thermal and Photovoltaic Systems
  14. Wind, Hydro, and Geothermal Energy Technologies
  15. Energy Harvesting and Storage Systems
  16. Smart Grids and Decentralized Energy Systems
  17. Waste-To-Energy Systems and Energy Audits
  18. Sustainable Refrigeration and Air Conditioning
  19. Heat Exchangers and Thermal Management Systems
  20. Smart Cooling and Heating Systems
  21. Microchannel Heat Transfer and Phase Change Materials
  22. HVAC System Optimization for Buildings and Vehicles
  23. Powertrain Design and Optimization
  24. Battery and BMS Technologies
  25. Regenerative Braking and Energy Recovery
  26. Lightweight Chassis and Smart Drive Systems
  27. Charging Infrastructure and Vehicle-to-Grid Systems
  28. Intelligent Automation for Sustainable Production
  29. Autonomous Robotic Systems for Inspection and Maintenance
  30. Smart Actuators and Sensors
  31. Human-Robot Collaboration
  32. Soft Robotics and Biomimetic Systems
  33. Machine Learning in Design Optimization
  34. Predictive Maintenance and Fault Diagnosis
  35. AI in Thermal and Fluid Systems Modeling
  36. Deep Learning for Mechanical System Control
  37. Digital Manufacturing and Smart Inspection
  38. Product/ System Design
  39. Eco-Design and Lifecycle Assessment
  40. Design for Disassembly and Recyclability
  41. Reliability Engineering and Risk Assessment
  42. Failure and Risk Assessment
  43. Sustainable Packaging and Product Development
  44. Structural Health Monitoring Systems
  45. Smart Vibration and Noise Control Techniques
  46. Adaptive and Tunable Structures
  47. Dynamic Analysis of Smart Mechanical Systems
  48. Applications in Aerospace, Automotive, and Civil Systems
  49. Sustainability in Engineering Education
  50. Policy Frameworks and International Collaboration
  51. Innovation and Entrepreneurship in Sustainable Technologies
  52. Circular Economy Models
  53. Techno-Economic Analysis and Sustainability Metrics
Lead Guest Editor
  • Hari Vasudevan

    Department of Mechanical Engineering, Dwarkadas J. Sanghvi College of Engineering, Mumbai, India

Guest Editors
  • Atul Dhale

    Department of Mechanical Engineering, Dwarkadas J. Sanghvi College of Engineering, Mumbai, India

  • K. N. Vijaya Kumar Kuttur

    Department of Mechanical Engineering, Dwarkadas J. Sanghvi College of Engineering, Mumbai, India

  • Nitish Yelve

    Department of Mechanical Engineering, Indian Institute of Technology, Mumbai, India

  • Rohan Shirwaiker

    University Faculty Scholar, North Carolina State University, North Carolina, India

  • Amit Jariwala

    School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, United States

  • Rajkumar Patil

    Department of Mechanical Engineering, Dwarkadas J. Sanghvi College of Engineering, Mumbai, India

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