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    Surface Modification on a Porous Co-Cr Scaffold Fabricated by Selective Laser Melting for Bone Implant Applications 

    Han, C.J.; Chen, X.; Tan, J.W.; Yao, Y.; Wei, Q.S.; Zhang, Z.; Shi, Y.S. (University of Texas at Austin, 2015)
    Cobalt–chromium–molybdenum alloys with porous structures can be fabricated by additive manufacturing technique, which are attractive for use as scaffolds for bone implant applications. However, metallic implant are ...
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    Effect of Si on the SLM Processability of IN738LC 

    Engeli, R.; Etter, T.; Geiger, F.; Stankowski, A.; Wegener, K. (University of Texas at Austin, 2015)
    Selective laser melting of high gamma-prime strengthened superalloys such as IN738LC is of interest in stationary gas turbine applications. Differences have been obtained for the hot cracking susceptibility of different ...
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    Effect of Post-Processing on the Microstructure and Mechanical Properties of Ultra-Low Carbon Steel Fabricated by Selective Laser Melting 

    Almangour, B.; Yang, J.M. (University of Texas at Austin, 2015)
    In this study, the effects of heat treatments and hot-isotactic pressing (HIP) on the microstructure and mechanical properties of ultra-low carbon steel produced using selective laser melting (SLM) were investigated. ...
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    Investigation of the Scan Strategy and Property of 316L Stainless Steel-Inconel 718 Functionally Graded Materials Fabricated by Selective Laser Sintering 

    Zhou, Y.; Zhou, X.; Teng, Q.; Wei, Q.S.; Shi, Y.S. (University of Texas at Austin, 2015)
    316L stainless steel and Inconel 718 alloy functionally graded materials were fabricated by selective laser melting with a novel approach which combined powder-bed with powder-feed pattern. Two different scanning strategies ...
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    Mechanical Properties of Selective Laser Melted AlSi10Mg: Nano, Micro, and Macro Properties 

    Aboulkhair, Nesma T.; Stephens, Alex; Maskery, Ian; Tuck, Chris; Ashcroft, Ian; Everitt, Nicola M. (University of Texas at Austin, 2015)
    The selective laser melting (SLM) of aluminium alloys is of great current interest at both the industrial and research levels. Aluminium poses a challenge to SLM compared with other candidate materials, such as titanium ...
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    Property Evaluation of Metal Cellular Strut Structures via Powder Bed Fusion AM 

    Zhang, Shanshan; Dilip, Samuel; Yang, Li; Miyanaji, Hadi; Stucker, Brent (University of Texas at Austin, 2015)
    Cellular structures are widely used in many engineering applications, because of their light weight, high strength-to-weight ratio, high energy absorption, etc. Many previous research and development works are largely ...
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    Melt Pool Evolution Study in Selective Laser Melting 

    Cheng, Bo; Chou, Kevin (University of Texas at Austin, 2015)
    In selective laser melting (SLM) additive manufacturing, the completion of the entire scanning cross-sectional area of each layer build is consisted of many smaller scanning patches. Hence, the scanning length in each ...
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    A Temperature-Thread Multiscale Modeling Approach for Efficient Prediction of Part Distortion by Selective Laser Melting 

    Li, C.; Liu, J.F.; Guo, Y.B.; Li, Z.Y. (University of Texas at Austin, 2015)
    Selective laser melting (SLM) is a powder bed based additive manufacturing process to manufacture functional parts. The high-temperature process will produce large tensile residual stress which leads to part distortion ...
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    Fatigue Performance Enhancement of Selectively Laser Melted Aluminum Alloy by Heat Treatment 

    Maskery, I.; Aboulkhair, N.T.; Tuck, C.; Wildman, R.D.; Ashcroft, I.A.; Everitt, N.M.; Hague, R.J.M. (University of Texas at Austin, 2015)
    We measured the stress-strain behaviour and fatigue performance of the aluminium alloy Al-Si10-Mg manufactured by selective laser melting (SLM). This process, specifically the rapid cooling of the metal from its molten ...
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    Thermal Performance and Surface Characterization of a Selective Laser Melted Flat-Plate Oscillating Heat Pipe 

    Monroe, J.G.; Ibrahim, O.T.; Thompson, S.M.; Shamsaei, N.; Bian, L.; Elwany, A. (University of Texas at Austin, 2015)
    A titanium alloy (Ti-6Al-4V) flat-plate oscillating heat pipe (FP-OHP) was fabricated using Selective Laser Melting (SLM). The 50.8 x 38.1 x 15.75 mm3 FP-OHP consisted of four integral layers of capillary-sized, circular ...

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    AuthorShi, Y.S. (2)Wei, Q.S. (2)Aboulkhair, N.T. (1)Aboulkhair, Nesma T. (1)Almangour, B. (1)Ashcroft, I.A. (1)Ashcroft, Ian (1)Bian, L. (1)Chen, X. (1)Cheng, Bo (1)... View MoreSubject
    selective laser melting (10)
    additive manufacturing (2)AlSi10Mg (2)316L stainless steel (1)aluminum alloy (1)aluminum alloys (1)bone implants (1)cellular struts (1)Co-Cr scaffold (1)distortion (1)... View MoreDate Issued2015 (10)DepartmentMechanical Engineering (10)Has File(s)Yes (10)

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    University of Texas at Austin Libraries
    • facebook
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    Subscribe to our NewsletterGive to the Libraries

    © The University of Texas at Austin