Mechanical Behavior of 3D Printed Lattice-structured Materials false
By:Rafaela Vannutelli
Published on 2017 by
Lattice structures are created by the repetition of a unit cell where solid struts connected to each other provide parts that combine lightweight and strength. This makes the use of cellular solids advantageous in many applications, varying from engineering to industrial areas. This work focused on designing and mechanical testing of different lattices using 3D printing methods and compression testing. Initially, four different lattices were designed using SolidWorks. Then, the parts were 3D printed from Inconel 718 powders using selective laser melting (SLM). Compression testing of these parts provided mechanical properties that were later compared to a finite element analysis (FEA) model. The four geometries were also 3D printed from NiMnGa powders using binder-jetting technique. This process delivers porous structures that are required in functional materials made of NiMnGa magnetic shape memory alloys (MSMAs) in order to explore the shape memory effects (SMEs). Modeling of these parts provided a better understanding of the compressive behavior of porous structures. Although NiMnGa materials have weak mechanical properties, by creating lattice structures, it was possible to improve the mechanical and functional characteristics and to create parts with controlled porosity, and strength.
This Book was ranked at 37 by Google Books for keyword 3D Printing.
Book ID of Mechanical Behavior of 3D Printed Lattice-structured Materials's Books is 246VtQEACAAJ, Book which was written byRafaela Vannutellihave ETAG "QxJj4PBQb4s"
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