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    Additive Manufactured Lightweight Vehicle Door Hinge with Hybrid Lattice Structure 

    Aydin, I.; Akarcay, E.; Gumus, O.F.; Yelek, H.; Engin, C.B. (University of Texas at Austin, 2019)
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    Compressive Response of Strut-Reinforced Kagome with Polyurethane Reinforcement 

    Gautam, Rinoj; Sridharan, Vijay Shankar; Teh, Wee Lee; Idapalapati, Sridhar (University of Texas at Austin, 2019)
    Lattice structures find immense application in lightweight structures for their high specific strength, modulus, and energy absorption. Strut-reinforced Kagome (SRK) structures provide better compressive performance ...
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    The Effect of Cell Size and Surface Roughness on the Compressive Properties of ABS Lattice Structures Fabricated by Fused Deposition Modeling 

    Mason, L.; Leu, M.C. (University of Texas at Austin, 2019)
    Researchers looking to improve the surface roughness of acrylonitrile butadiene styrene (ABS) parts fabricated by fused deposition modeling (FDM) have determined that acetone smoothing not only achieves improved surface ...
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    A Computational and Experimental Investigation into Mechanical Characterizations of Strut-Based Lattice Structures 

    Sereshk, Mohammad Reza Vaziri; Triplett, Kevin; St. John, Christopher; Martin, Keith; Gorin, Shira; Avery, Alec; Byer, Eric; St Pierre, Conner; Soltani-Tehrani, Arash; Shamsaei, Nima (University of Texas at Austin, 2019)
    Strut-based lattices are widely used in structural components for reducing weight. Additive manufacturing has provided a unique opportunity to fabricate such complex geometries. In addition to the unit cell type, the ...
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    Mechanical Behavior of Additively-Manufactured Gyroid Lattice Structure under Different Heat Treatments 

    Sereshk, Mohammad Reza Vaziri; Shrestha, Rakish; Lessel, Brandon; Phan, Nam; Shamsaei, Nima (University of Texas at Austin, 2019)
    Gyroid lattice structures, known for high stiffness and specific strength, are gaining attention for their energy absorption ability. However, energy absorption and strength of the gyroids are two desired properties, ...
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    Effects of Unit Cell Size on the Mechanical Performance of Additive Manufactured Lattice Structures 

    Soltani-Tehrani, Arash; Lee, Seungjong; Sereshk, Mohammad Reza Vaziri; Shamsaei, Nima (University of Texas at Austin, 2019)
    Lattice structures are generated through the repetition of smaller structures, defined as unit cells. These structures are popular alternatives for bone implants due to the potential to adjust the stiffness. However, in ...
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    Effective Elastic Properties of Additively Manufactured Metallic Lattice Structures: Unit-Cell Modeling 

    Fashanu, O.; Murphy, D.; Spratt, M.; Newkirk, J.; Chandrashekhara, K. (University of Texas at Austin, 2019)
    Lattice structures are lightweight materials, which exhibit a unique combination of properties such as air and water permeability, energy and acoustic absorption, low thermal conductivity, and electrical insulation. In ...

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    AuthorSereshk, Mohammad Reza Vaziri (3)Shamsaei, Nima (3)Soltani-Tehrani, Arash (2)Akarcay, E. (1)Avery, Alec (1)Aydin, I. (1)Byer, Eric (1)Chandrashekhara, K. (1)Engin, C.B. (1)Fashanu, O. (1)... View MoreSubject
    lattice structures (7)
    laser beam powder bed fusion (3)ABS (2)fused deposition modeling (2)mechanical properties (2)additive manufacturing (1)bone implants (1)cell size (1)compressive loading (1)compressive properties (1)... View MoreDate Issued2019 (7)DepartmentMechanical Engineering (7)Has File(s)Yes (7)

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    University of Texas at Austin Libraries
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    © The University of Texas at Austin