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handle: 11583/2897214 , 11573/1684086 , 11391/1587534
Abstract PLA is an organic polymer that lends itself to multiple applications. It is commonly used in fused deposition modeling technology (FDM), which operates by depositing successive layers of material. The material extrusion, in the form of a wire, follows an imposed pattern, which influences the static and dynamic behavior of the final component. In the literature there are many works concerning the mechanical characterization of the PLA but, due to the natural orthotropy of the FDM process and, above all, to the ascertained influence of the particular technical system with which the operations are performed, it is necessary to characterize the extruded material through different metrological techniques. In order to allow the use of this technology for structural elements production, in the present work, quasi-static tests have been carried out to characterize the material and the process considering the three spatial growth directions (x, y and z). In particular, uniaxial tensile tests were performed for the determination of mechanical strength, modulus of elasticity and percentage elongation.
3D Printing; Acrylonitrile; Butadiene styrenepolylactic acid; FDM; Rapid prototyping; Tensile strength, pla; fused deposition modeling
3D Printing; Acrylonitrile; Butadiene styrenepolylactic acid; FDM; Rapid prototyping; Tensile strength, pla; fused deposition modeling
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