Interface Analysis between Inconel 625 and Cobalt-Chromium Alloy Fabricated by Powder Bed Fusion Using Pulsed Wave Laser. [PDF]
Yao L +6 more
europepmc +1 more source
Microstructural Characterization of Additively Manufactured Inconel 625 [PDF]
B.W. Baker +3 more
openaire +1 more source
Impact resistance of spar-shell composite fan blades [PDF]
Composite spar-shell fan blades for a 1.83 meter (6 feet) diameter fan stage were fabricated and tested in a whirling arm facility to evaluate foreign object damage (FOD) resistance.
Graff, J., Stoltze, L., Varholak, E. M.
core +1 more source
FEM-Based Thermogram Correction for Inconel 625 Joint Hardness Clustering. [PDF]
Jamrozik W +3 more
europepmc +1 more source
Additive Manufacturing of Inconel 625 - Corrosion Properties
Inconel 625 (IN625) er en nikkelbasert superlegering med utmerket korrosjonsbestandighet og styrke ved høye temperaturer. Derfor har den blitt brukt i flere industrier som opererer under tøffe forhold. Eksempler på applikasjonsområder er luftfart, energi og petroleum industri.
openaire +1 more source
Space Shuttle Orbiter AFT heat shield seal [PDF]
The evolution of the orbiter aft heat shield seal (AHSS) design, which involved advancing mechanical seal technology in severe thermal environment is discussed.
Walkover, L. J.
core +1 more source
Effect of Scanning Strategy on Thermal Stresses and Strains during Electron Beam Melting of Inconel 625: Experiment and Simulation. [PDF]
Zhao X +4 more
europepmc +1 more source
Bosch CO2 Reduction System Development [PDF]
Development of a Bosch process CO2 reduction unit was continued, and, by means of hardware modifications, the performance was substantially improved. Benefits of the hardware upgrading were demonstrated by extensive unit operation and data acquisition in
Holmes, R. F. +2 more
core +1 more source
Effects of a New Type of Grinding Wheel with Multi-Granular Abrasive Grains on Surface Topography Properties after Grinding of Inconel 625. [PDF]
Kopytowski A +5 more
europepmc +1 more source
Test methods for determining the suitability of metal alloys for use in oxygen-enriched environments [PDF]
Materials are more flammable in oxygen rich environments than in air. When the structural elements of a system containing oxygen ignite and burn, the results are often catastrophic, causing loss of equipment and perhaps even human lives.
Gunaji, Mohan V., Stoltzfus, Joel M.
core +1 more source

