All Stories

  1. Welding of Powder Metallurgy AA2060 Wires by Plasma Metal Deposition Technique
  2. Engineering Innovations Vol. 14
  3. The 7th Powder Metallurgy and Additive Manufacturing of Titanium (PMTi 2024)
  4. Additive Manufacturing Techniques and Sustainability
  5. Comparison between TiN Coating on Porous Ti-6Al-4V Produced by PBF-EB/M or PM for Bipolar Plates in PEM Fuel Cells
  6. Interaction of Binder and Powder in Processing of Titanium by MEX-AM
  7. Titanium-Based Advanced Materials and Metal Injection Molding
  8. Fabrication and Coating of Porous Ti6Al4V Structures for Application in PEM Fuel Cell and Electrolyzer Technologies
  9. Influence Of Sintering Pressure And Composition On The Processing Of Ti(C,N)-Based Cermets
  10. Book of Abstracts from the 7th International Conference on Powder Metallurgy and Additive Manufacturing of Titanium, PMTi2024
  11. A Comparative Study on the Wear Performance and High-Temperature Oxidation of Co-Free Cermets and Hardmetals
  12. Engineering Innovations Vol. 11
  13. Processing and surface modification of titanium open cell porous structures for PEM fuel cell bipolar plates
  14. Engineering Innovations Vol. 7
  15. Assessment of Plasma Deposition Parameters for DED Additive Manufacturing of AA2319
  16. Wire Arc Additive Manufacturing (WAAM) for Aluminum-Lithium Alloys: A Review
  17. Engineering Innovations Vol. 3
  18. Effect of Heat Treatment Prior to Direct Hot-Extrusion Processing of Al–Cu–Li Alloy
  19. Engineering Innovations Vol. 1
  20. Design and Production of a New FeCoNiCrAlCu High-Entropy Alloy: Influence of Powder Production Method on Sintering
  21. High-Entropy Alloys
  22. Beta Titanium Alloys Produced from Titanium Hydride: Effect of Alloying Elements on Titanium Hydride Decomposition
  23. Corrosion and Tribocorrosion Behavior of Ti-40Nb and Ti-25Nb-5Fe Alloys Processed by Powder Metallurgy
  24. Study on the Growth and Properties of Electrolessly Deposited Thin Copper Coatings on Epoxy-Based CFRP
  25. Oxidation and Corrosion Behavior of New Low-Cost Ti-7Fe-3Al and Ti-7Fe-5Cr Alloys from Titanium Hydride Powders
  26. Multi-component boron and niobium coating on M2 high speed steel processed by powder metallurgy
  27. Development of Ti–Nb and Ti–Nb–Fe beta alloys from TiH2 powders
  28. Corrosion and tribocorrosion behaviour of β-type Ti-Nb and Ti-Mo surfaces designed by diffusion treatments for biomedical applications
  29. Joint Effect of Steel Addition and Press-and-Sinter on the Properties of Low-Cost PM Ti Alloys
  30. Processing of a new high entropy alloy: AlCrFeMoNiTi
  31. Role of beta-stabilizing elements on the microstructure and mechanical properties evolution of modified PM Ti surfaces designed for biomedical applications
  32. Corrosion and Tribocorrosion Behavior of Ti-Alumina Composites
  33. Shaping Strategies for Porous Ti Fabrication throughout Colloidal Chemistry
  34. Low-Cost α+β PM Ti Alloys by Fe/Ni Addition to Pure Ti
  35. Feasibility study of the production of biomedical Ti–6Al–4V alloy by powder metallurgy
  36. Cermets based on FeAl–NbC from composite powders: Design of composition and processing
  37. Oxidation and corrosion protection by halide treatment of powder metallurgy Ti and Ti6Al4V alloy
  38. Role of stabilisers in the design of Ti aqueous suspensions for pressure slip casting
  39. Powder metallurgy CP-Ti performances: Hydride–dehydride vs. sponge
  40. Study of the properties of low-cost powder metallurgy titanium alloys by 430 stainless steel addition
  41. Investigation of the factors influencing the tensile behaviour of PM Ti–3Al–2.5V alloy
  42. Influence of heat treatment on the high temperature oxidation mechanisms of an Fe–TiCN cermet
  43. Colloidal processing of Fe-based metalceramic composites with high content of ceramic reinforcement
  44. Flexural properties, thermal conductivity and electrical resistivity of prealloyed and master alloy addition powder metallurgy Ti–6Al–4V
  45. High temperature transformations in a steel-TiCN cermet
  46. Influence of sintering parameters on the properties of powder metallurgy Ti–3Al–2.5V alloy
  47. Colloidal approach for the design of Ti powders sinterable at low temperature
  48. Improvement of sintering behaviour of titanium by colloidal techniques
  49. Processing of Elemental Titanium by Powder Metallurgy Techniques
  50. Comparison of Microstructure and Properties of Ti-6Al-7Nb Alloy Processed by Different Powder Metallurgy Routes
  51. Mechanical behaviour of pressed and sintered CP Ti and Ti–6Al–7Nb alloy obtained from master alloy addition powder
  52. Influence of carbon content on the sinterability of an FeCr matrix cermet reinforced with TiCN
  53. Influence of vacuum hot-pressing temperature on the microstructure and mechanical properties of Ti–3Al–2.5V alloy obtained by blended elemental and master alloy addition powders
  54. Mechanical behaviour of pressed and sintered titanium alloys obtained from master alloy addition powders
  55. Mechanical behaviour of pressed and sintered titanium alloys obtained from prealloyed and blended elemental powders
  56. Improvement of Ti Processing through Colloidal Techniques
  57. Modification of Sintered Titanium Alloys by Hot Isostatic Pressing
  58. Microstructural evolution and mechanical properties of the Ti–6Al–4V alloy produced by vacuum hot-pressing
  59. Mechanical properties and microstructural evolution of vacuum hot-pressed titanium and Ti–6Al–7Nb alloy
  60. Microstructural development and mechanical properties of iron based cermets processed by pressureless and spark plasma sintering
  61. Inductive hot-pressing of titanium and titanium alloy powders
  62. Influence of powder characteristics on sintering behaviour and properties of PM Ti alloys produced from prealloyed powder and master alloy
  63. PM processing and characterisation of Ti–7Fe low cost titanium alloys
  64. Introducción al procesado pulvimetalúrgico del titanio
  65. Study of compaction and ejection of hydrided-dehydrided titanium powder
  66. Boride coatings obtained by pack cementation deposited on powder metallurgy and wrought Ti and Ti–6Al–4V
  67. Influence of Fe content and particle size the on the processing and mechanical properties of low-cost Ti–xFe alloys
  68. Cutting performance of TiCN–HSS cermet in dry machining
  69. Characterization of novel W alloys produced by HIP
  70. Oxidation and tribological behaviour of an Fe-based MMC reinforced with TiCN particles
  71. Low-cost titanium alloys? Iron may hold the answers
  72. Influence of milling time on the processing of Fe–TiCN composites
  73. Development of Fe–NbC cermet from powder obtained by self-propagating high temperature synthesis
  74. A comparative study of the wear behaviour of sintered and laser surface melted AISI M42 high speed steel diluted with iron
  75. Enhancement of liquid phase sintering through Al–Si additions to Al–Cu systems
  76. Influence of milling parameters on the manufacturing of Fe–TiCN composite powders
  77. Toward optimisation of electrolytic reduction of solid chromium oxide to chromium powder in molten chloride salts
  78. Development and characterisation of high-speed steel matrix composites gradient materials
  79. Laser Surface Treatment of Sintered M42 High-Speed Steel Diluted with Iron
  80. Wear Behavior of a Ferritic Stainless Steel with Carbides Manufactured through Powder Metallurgy
  81. Mechanical and wear behaviour of high-speed steels reinforced with TiCN particles
  82. Mechanical properties and wear behaviour of nitrided Fe–3·5Mo base sintered steels
  83. Microstructural Development and Mechanical Properties of High Speed Steels
  84. Radial Crushing Strength, Microhardness and Microstructure of Molybdenum Alloyed Sintered Steels
  85. Statistical approach to mechanical behaviour of ceramic matrix composites based on Portland clinker
  86. Microstructural development of high speed steels metal matrix composites
  87. Wear mechanisms in high speed steel reinforced with (NbC)p and (TaC)p MMCs
  88. Comparative study of high speed steels obtained through explosive compaction and hot isostatic pressing