All Stories

  1. High-precision predictive modeling of AWJM for S275 steel machining
  2. Machinability and Geometric Evaluation of FFF-Printed PLA-Carbon Fiber Composites in CNC Turning Operations
  3. Machinability and Geometric Evaluation of FFF-Printed PLA-Carbon Fiber Composites in CNC Turning Operations
  4. Enhancing Fatigue Resistance of Polylactic Acid through Natural Reinforcement in Material Extrusion
  5. Correlation between Surface Texture, Wettability and Mechanical Strength of Polylactic Acid Parts Fabricated by Fused Filament Fabrication
  6. Cutting parameters influence on surface integrity of dry-turned Ti6Al4V alloy
  7. Influence of printing parameters and short carbon fibre reinforcement on fatigue behaviour, dimensional accuracy and macrogeometrical deviations of polylactic acid in material extrusion
  8. Dimensional Analysis in Additive Manufacturing Processes with PLA + Carbon Fiber
  9. Influence of Layer Thickness on Fatigue Life of PLA + Carbon Fiber Specimens by Additive Manufacturing
  10. Geometrical analysis in material extrusion process with polylactic acid (PLA)+carbon fiber
  11. Modeling of the fracture energy on the finite element simulation in Ti6Al4V alloy machining
  12. Influence of Tool Wear on Form Deviations in Dry Machining of UNS A97075 Alloy
  13. Cutting parameters influence analysis on fatigue behaviour of dry turned UNS A97075 alloy after corrosion
  14. Shrinkage Factor Analysis in the Dry Machining of UNS A92024 Alloy by FEM
  15. Fatigue Behavior Parametric Analysis of Dry Machined UNS A97075 Aluminum Alloy
  16. Cutting Speed and Feed Influence on Surface Microhardness of Dry-Turned UNS A97075-T6 Alloy
  17. 2D–3D Digital Image Correlation Comparative Analysis for Indentation Process
  18. Parametric Analysis of Macro-Geometrical Deviations in Dry Turning of UNS A97075 (Al-Zn) Alloy
  19. Online Tool Wear Monitoring by the Analysis of Cutting Forces in Transient State for Dry Machining of Ti6Al4V Alloy
  20. Use of Additive Manufacturing on Models for Sand Casting Process
  21. Experimental Parametric Relationships for Chip Geometry in Dry Machining of the Ti6Al4V Alloy
  22. Fatigue Test Bench Manufacturing by Reusing a Parallel Lathe
  23. Material Flow Analysis in Indentation by Two-Dimensional Digital Image Correlation and Finite Elements Method
  24. Hardening Effect Analysis by Modular Upper Bound and Finite Element Methods in Indentation of Aluminum, Steel, Titanium and Superalloys
  25. Analysis of the Chip Geometry in Dry Machining of Aeronautical Aluminum Alloys
  26. Hardening effect analysis in indentation processes by modular configuration of the upper bound theorem
  27. Parametric analysis of the Ultimate Tensile Strength in dry machining of UNS A97075 Alloy
  28. Temperature implementation for the Modular Upper Bound application in indentation processes
  29. Study of the Tool Geometry Influence in Indentation for the Analysis and Validation of the New Modular Upper Bound Technique
  30. Thesaurus and Graphipedia Tools Development at the Manufacturing Engineering Subjects of the University of Malaga
  31. Experimental Validation of the New Modular Application of the Upper Bound Theorem in Indentation
  32. Application of the Upper Bound Theorem to Indentation Processes with Tilted Punch by Means of Modular Model
  33. Hardening Study on the Application of the Upper Bound Theorem in Indentation Processes by Means of Modules of Triangular Rigid Zones
  34. Selection of the Optimal Distribution for the Upper Bound Theorem in Indentation Processes
  35. Teaching Machines Tools Operation in Virtual Laboratories of Engineering Faculties
  36. Analysis of the Integrated Implementation of the Manufacturing Engineering Subject in Engineering Degrees at the Malaga University
  37. Analysis and Selection of the Modular Block Distribution in Indentation Process by the Upper Bound Theorem
  38. Analytical Approach to the Indentation Process. Application of the Upper Bound Element Technique
  39. Application of the upper bound element technique with triangular rigid blocks in indentation