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  • Home
  • About Us
  • Projects
  • TRAINING
  • TITLES 2025-2026
    • IEEE PROJECTS
    • MECHANICAL Projects
    • COMPOSITE projects
    • DESIGN Projects
    • MBA projects
    • BBA projects
  • PLACEMENT
    • CURRENT OPENINGS
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composite materials projects and mechanical projects at CADDTEK Project Centre

IEEE – MECHANICAL 2025 - 2026

1. Development and performance testing of an evacuated tube solar water heater suitable for various composite materials projects.  

2. Ocean energy harvesting to generate electricity using an innovative raft approach applicable to IEEE projects.  

3. Design of a five-axis denture carving machine based on an open CNC system, pivotal for mechanical projects.  

4. Extending the function of CNC milling machines, where slotting key-grooves can be efficiently replaced by CNC milling techniques relevant to composite materials projects.  

5. General motion simulation description of multi-axis CNC machine tools for optimizing mechanical projects.  

6. Application of imaging technology in quality inspection of agricultural products aligns with the latest advancements in IEEE projects.  

7. Modern farming utilizing IoT-enabled sensors for improved crop selection is significant for composite materials projects.  

8. Design and optimization of underwater vehicles contribute to mechanical projects focusing on efficiency.  

9. The design and development of intelligent agricultural machinery demonstrate innovative applications in composite materials projects.  

10. Integrating fuzzy logic with LDR sensors optimizes solar energy harvesting in sun-tracking systems, highlighting its importance within IEEE projects.  

11. Design of a small-type wheeled pipeline robot driven by monocular vision serves relevant purposes in mechanical projects.  

12. The design and development of an automatic robotic arm equipped with a mechanical gripper for holding irregular shapes relate closely to composite materials projects.  

13. The effect of ambient temperature on the costs of charging battery electric vehicles within a microgrid framework reflects a crucial area within IEEE projects.  

14. The impact of the sintering process on the mechanical properties of silicon nitride ties into research relevant to composite materials projects.  

15. The mechanical effects of silane coupling agent modified alumina filler on the breakdown characteristics of epoxy composites are key in mechanical projects.  

16. Preparation and characterization of epoxy and PLA & PA pellets composites emphasize innovative solutions in composite materials projects.  

17. Metal-ceramic and epoxy composite materials with nanostructure coatings enhance durability in mechanical projects.  

18. Improving the corrosive characteristics of Al7075 gripper by ceramic coating via plasma arc nitriding is relevant to composite materials projects.  

19. Mechanical characteristics and microscopic studies on jute fiber-reinforced epoxy composite for lower limb prosthetics applications emphasize research in mechanical projects.  

20. The effects of fiber layering and acetylation treatment on the mechanical and water absorption properties of luffa cylindrica fiber epoxy composite are critical for composite materials projects.  

21. The impact of dip-coating on tensile and high cycle fatigue behavior of 3D printed bio-polymer blends showcases advancements in composite materials projects.  

22. The influence of a 90:10 (WC-10Co-4Cr: NiAl) composite coating on the 20MnCr5 alloy gear material illustrates practical applications for mechanical projects.  

23. Improved mechanical properties, corrosion, and wear resistance of high-voltage aluminum wires through micro-arc oxidation coating are vital in IEEE projects.  

24. Ongoing research in metal-ceramic and epoxy composite materials nanostructure coatings reflects significant advancements in mechanical projects.  

25. Enhancements in carbide cutting tool performance by YSZ coating are crucial for composite materials projects.  

26. Characterization of ceramic coating for scratch resistance on robot gripper surfaces highlights essential areas of interest in mechanical projects.  

27. The structure, hardness, and wear resistance of detonation coating based on Cr3C2-NiCr after pulse-plasma treatment find application in composite materials projects.  

28. The influence of process parameters on the machinability of wire electrical discharge machining for tool steel grade JIS SKD 11 is an important consideration in IEEE projects.  

29. Challenges and strategies in friction stir welding of Al-Mg-Si alloy pipes are relevant to mechanical projects.  

30. Research on optimizing ultrasonic welding process parameters of Al-Cu bimetallic busbars for application in battery electric vehicles demonstrates innovation in IEEE projects.  

31. Investigation of the mechanical properties of aluminum AA4007 joints using MIG and FSW processes are critical for composite materials projects.  

32. The static and vibration analysis of a manned lunar rover frame based on ANSYS showcases advanced design in mechanical projects.  

33. Design optimization and improvement of water-cooling jackets using ANSYS Workbench are essential for efficient thermal management in composite materials projects.  

34. ANSYS-based analysis of leaf spring systems with hybrid material arrangements is applicable in mechanical projects.  

35. Thermal analysis of an EV lithium iron phosphate battery pack for improved cooling is vital for advancements in IEEE projects.  

36. Simulation and analysis of Venturi tubes for duct wind turbine power plants illustrate innovative applications in mechanical projects.  

37. Comparison and failure analysis of solid and hollow compression helical springs through FEA are critical aspects of composite materials projects.  

38. Design, modeling, simulation, and evaluation of an electric scooter energy consumption model incorporate features of IEEE projects.  

39. Analysis and design of roof turbine ventilators for effective wind energy harvesting are key to mechanical projects.  

40. Static structural analysis of roof ventilator turbine blades using ANSYS highlights ongoing research in composite materials projects.  

41. The design of a 72 V 40 Ah electrical system battery pack for electric motorcycles reflects innovation within IEEE projects.  

42. Performance analysis of a 48V battery pack with SoC estimation and cell balancing for electric vehicles underscores progress in mechanical projects.  

43. The functional safety assessment of battery management systems in autonomous electric vehicles showcases challenges within IEEE projects.  

44. Exploring innovative IoT solutions for automated battery condition detection in electric vehicles represents a significant area of focus within composite materials projects.  

45. The effect of fiber orientation on interfacial mechanical characteristics for adhesively bonded composite plates is essential in mechanical projects.  

46. Experimental analysis of mechanical properties of natural hybrid composites for roofing applications is relevant to composite materials projects.  

47. Development of polymer composite battery pack cases for electric vehicles emphasizes sustainability in IEEE projects.  

48. An investigation into stresses and crash analysis in explicit dynamics of CFRP plate structures highlights crucial safety concerns in mechanical projects.  

49. Development of graphene nano-composite fibers for improving the toughness of thermoset composites reflects leading-edge research in composite materials projects.  

50. Implementation of lightweight rollers in roller conveyors using hybrid composites demonstrates practicality in IEEE projects.  

51. The effect of fiber orientation on mechanical properties of coconut fiber-reinforced epoxy resin composites signals research directions within composite materials projects.  

52. The impact of fiber orientation on interfacial mechanical characteristics for adhesively bonded composite plates underscores the importance of this research in mechanical projects.  

53. The effect of fillers on the mechanical properties of epoxy reinforced hybrid composites is critical for future developments in composite materials projects.  

54. The design and analysis of a hybrid sandwich layered industrial safety helmet using natural materials like epoxy resin and various fibers illustrate the intersection of safety and innovation in mechanical projects.  

55. Optimization of materials for aircraft interior applications using natural fibers reflects sustainable practices in composite materials projects.

composite materials projects and mechanical projects at CADDTEK Project Centre

#compositeproject #Naturalfibers #hybridcomposites #syntheticfibers #metalmatrix #casting #coatingprojects are essential components in a variety of composite materials projects, which are often highlighted in IEEE projects and other mechanical projects.

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