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Showing 1 to 10 of 10 for “"AlSi10Mg"”.

  1. Development of AlSi10Mg based alloys for Additive Manufacturing Processes

    L'abstract è presente nell'allegato / the abstract is in the attachment

    poli-torino Repository record for Development of AlSi10Mg based alloys for Additive Manufacturing Processes (opens in a new tab)

  2. Performance evaluation of alsi10mg mould insert material fabricated by selective laser melting process

    … building feasibility and dimension accuracy of AlSi10Mg samples fabricated by selective laser melting (SLM) technique, as well as novel fabrication strategies as an alternative to conventional methods in order to produce of plastic injection mould (PIM) tools was investigated. Response surface …

    uthm Repository record for Performance evaluation of alsi10mg mould insert material fabricated by selective laser melting process (opens in a new tab)

  3. The design and study of a vapor chamber fabricated via laser powder bed fusion

    … was utilized to create aluminum alloy (i.e., AlSi10Mg) specimens for two related sets of experiments for this study. The first was a series of 5-mm-diameter support pillars with a fixed height of 5 mm containing varying filet angles and build orientations (i.e., 0˚, 10˚, 20˚, 30˚, 40˚, 50˚, …

    ksu Repository record for The design and study of a vapor chamber fabricated via laser powder bed fusion (opens in a new tab)

  4. Additive Manufacturing of Aluminium-Metal Matrix Composite developed through Mechanical Alloying

    Laser melting of aluminium alloy - AlSi10Mg has increasingly been used to create specialised products in aerospace and automotive applications. However, research on utilising laser melting of Aluminium matrix composites in replacing specialised parts have been slow on the uptake. This has been …

    wlv Repository record for Additive Manufacturing of Aluminium-Metal Matrix Composite developed through Mechanical Alloying (opens in a new tab)

  5. Design, Validation, and Verification of the Cal Poly Educational Cubesat Kit Structure

    … ABS polymer and Selective Laser Melting with AlSi10Mg metal) and subtractive (milling with Al-6061) technologies. Modal, harmonic, and random vibration analyses and tests are done to ensure the structure passes vibration testing qualification loads, as outlined by the National Aeronautics and …

    calpoly Repository record for Design, Validation, and Verification of the Cal Poly Educational Cubesat Kit Structure (opens in a new tab)

  6. Additive manufacturing of novel metal microwave components for space application

    … fabrication. The printing materials included AlSi10Mg and commercially pure copper. Some of the copper prototypes were electro-polished to examine the effect of surface post-processing on insertion loss. The measured performance and manufacturing quality are analysed in detail, and …

    heriot-watt Repository record for Additive manufacturing of novel metal microwave components for space application (opens in a new tab)

  7. Qualification and characterization of metal additive manufacturing

    … pressing (HIP) post-treatment for an Al alloy (AlSi10Mg) produced via laser powder bed fusion using 400-watt laser equipment. Only coupon orientation had a statistically significant effect on dimensional accuracy, increasing the variance of y-axis (within the build plane) error by ~50%, although …

    mit Repository record for Qualification and characterization of metal additive manufacturing (opens in a new tab)

  8. Development and Prototype Validation of an Additive Manufactured Cubesat Propulsion Tank

    … pressure chamber, is it clear that the AlSi10Mg material is stronger than a billet Aluminum 6061 T-6. The maximum operating pressure of the propulsion tank is 160 psi and the pressure the tank ruptured is 410 psi proves that FEA correctly predicted a factor of safety of 2.10. The results …

    embry-riddle Repository record for Development and Prototype Validation of an Additive Manufactured Cubesat Propulsion Tank (opens in a new tab)

  9. Additively manufactured aluminium auxetic architecture with targeted mechanical and energy absorption characteristics

    … design variables on–𝜐, 𝜎𝑦, E, SEA, PCF, CFE for AlSi10Mg metamaterial architecture informed by the sinusoidal ligament architecture (AUX5). When optimising the selected auxetic architecture AUX5 for lightweight application (Scenario 1) a stiffness and strength of 991-1023 MPa and 5.95-5.68 MPa …

    wlv Repository record for Additively manufactured aluminium auxetic architecture with targeted mechanical and energy absorption characteristics (opens in a new tab)