All Stories

  1. Optimization of L-PBF Process Parameters: A Multi-Objective Framework for Variance Reduction and Mechanical Strength Enhancement Using Linear Programming and Multi-Objective Methods
  2. CAM system applications in additive technologies as shown by wire and arc additive manufacturing and SPRUTCAM
  3. Optimization of L-PBF Process Parameters for Defect Reduction and Mechanical Strength of Ni-Cr-Mo-Nb Superalloy Using Multi-Objective Methods
  4. Effect of Interface Relief on the Occurrence of Cracks at the Contact Point of Laser-Direct-Energy-Deposited Copper Alloy and Nickel Base Superalloy
  5. Short Fiber-Reinforced Polymer Polyamide 6 Lugs and Selective Laser-Melted Ti-6Al-4V Bushing Contact Cohesive Zone Model Mode II Parameters’ Evaluation
  6. Evaluation of SFRP Lugs with SLM Bushing Load Capacity and Dependence of CZM Mode II Model Parameters on Embedded Elements Surface Roughness
  7. Multiresponse Optimization of Selective Laser Melting Parameters for the Ni-Cr-Al-Ti-Based Superalloy Using Gray Relational Analysis
  8. Technological Process Design for Selective Laser Fusion of a Heat-Resistant Alloy for the Burner Device Manufacturing
  9. Optimization of Process Parameters for Powder Bed Fusion Additive Manufacturing Using a Linear Programming Method: A Conceptual Framework
  10. Research on Cracked Conditions in Nickel Chrome Alloy Ni50Cr33W4.5Mo2.8TiAlNb, Obtained by Direct Laser Deposition
  11. Determining Rational Technological Parameters for Selective Laser Melting of AlSi10Mg Aluminum Alloy Powder
  12. Determining rational process parameters for selective laser melting of powder titanium alloy VT6
  13. Practical Approbation of Thermodynamic Criteria for the Consolidation of Bimetallic and Functionally Gradient Materials
  14. Study of the structure and mechanical properties of samples obtained by the selective laser alloying technology from the Inconel 738 heat-resistant alloy powder
  15. Interface Quality Indices of Al–10Si–Mg Aluminum Alloy and Cr18–Ni10–Ti Stainless-Steel Bimetal Fabricated via Selective Laser Melting
  16. A Review of Hydraulic and Pneumatic Aggregates Manufacturing By Additive Technologies
  17. Surface modification of Ti-based alloy by selective laser melting of Ni-based superalloy powder
  18. Investigation of the IN-738 superalloy microstructure and mechanical properties for the manufacturing of gas turbine engine nozzle guide vane by selective laser melting
  19. SLM-built titanium materials: great potential of developing microstructure and properties for biomedical applications: a review
  20. Microstructural Characterization of Coatings Produced by Selective Laser Melting of Ni-Powder on Titanium Alloy Substrate
  21. Research study of residual stress during Ni-Co-Cr alloy selective laser melting process
  22. Investigation of the Ni-Co-Cr alloy microstructure for the manufacturing of combustion chamber GTE by selective laser melting
  23. Designing of the digital casting process for the gas turbine engine blades with a single-crystal structure
  24. Development of SLM quality system for gas turbines engines parts production
  25. The investigation of microstructure and mechanical properties of tool steel produced by selective laser melting technology
  26. Structure and mechanical properties of parts obtained by selective laser melting of metal powder based on intermetallic compounds Ni3Al
  27. Possibilities and limitations of titanium alloy additive manufacturing
  28. Multi-criteria planning model of engines parts additive manufacturing
  29. Development Algorithm of the Technological Process of Manufacturing Gas Turbine Parts by Selective Laser Melting
  30. Optimization of Selective Laser Melting by Evaluation Method of Multiple Quality Characteristics
  31. Design and optimization of the micro-engine turbine rotor manufacturing using the rapid prototyping technology
  32. Research of the possibility of using an electrical discharge machining metal powder in selective laser melting
  33. Experimental implementation of direct laser alloying
  34. Implementation of the Additive PolyJet Technology to the Development and Fabricating the Samples of the Acoustic Metamaterials
  35. Implementation of the Additive Technology to the Design and Manufacturing of Vibroisolators with Required Filtering
  36. Numerical research of influence of laser radiation parameters on the formation of intermetallic phases from metal powders in selective laser melting technology
  37. STUDY OF THE STRUCTURE AND MECHANICAL CHARACTERISTICS OF SAMPLES OBTAINED BY SELECTIVE LASER MELTING TECHNOLOGY FROM VT6 ALLOY METAL POWDER
  38. Research and optimization of the technological process of manufacturing a GTE blades using computer-aided design
  39. Selective laser melting of titanium alloy: investigation of mechanical properties and microstructure
  40. Paths of Improving the Technological Process of Manufacture of GTE Turbine Blades
  41. Selective Laser Melting of Metal Powder Of Steel 3161
  42. Research on the possibility of restoring blades while repairing gas turbine engines parts by selective laser melting
  43. Recovery Technology Features of Aerospace Parts by Layering Synthesis
  44. Particularly Selective Sintering of Metal Powders by Pulsed Laser Radiation
  45. Restoration of the face of a GTE blade tip by pulse laser cladding
  46. Analysis of Results of Computer Simulation of the Casting Process
  47. Lean Principles-Based Optimization of the Manufacturing System
  48. Production Processes Management by Simulation in Tecnomatix Plant Simulation
  49. Production Technology of the Internal Combustion Engine Crankcase Using Additive Technologies
  50. Application of Additive Technologies in the Production of Aircraft Engine Parts
  51. The Organization of Engineering Shop “Lean” Management System
  52. Repair of a Gas Turbine Blade Tip by Impulse Laser Build-Up Welding