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      Experimental investigation of mechanical properties of PLA, ABS, and PETG 3-d printing materials using fused deposition modeling technique

      1 , 2
      Materials Testing
      Walter de Gruyter GmbH

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          Abstract

          In recent years, there has been a logarithmic interest in three-dimensional printing technologies. This technique has made it possible to make more intricately shaped parts of superior quality, allowing for use in a variety of industries, including aircraft, automobiles, and ships. This study characterized the materials and assessed the mechanical features of PLA, PETG, and ABS materials generated at various raster angles. The strength ratios of the various materials have been found to fluctuate when the raster angles change. The PLA parts created at a picture raster angle of 45° had the maximum tensile strength. ABS material created with a picture raster angle of 45° has been shown to have the best energy absorption, and PLA material made with a raster angle of 45° has the best performance compressive strength. When bending strength was evaluated, it was found that samples of ABS made with a raster angle of 0–90° had the greatest value. The SEM micrographs were obtained, and the tensile test was used to examine the fracture behavior of the materials. As a result, it has been found that materials created using various raster angles can have various strength values from one another.

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                Author and article information

                Journal
                Materials Testing
                Walter de Gruyter GmbH
                0025-5300
                2195-8572
                December 15 2023
                September 13 2023
                December 01 2023
                December 15 2023
                September 08 2023
                December 01 2023
                : 65
                : 12
                : 1795-1804
                Affiliations
                [1 ]Department of Automotive Engineering , Bursa Uludag University , Görükle , Bursa , 16059 , Türkiye
                [2 ]Department of Mechanical Engineering , Bursa Uludag University , Görükle, Bursa , 16059 , Türkiye
                Article
                10.1515/mt-2023-0202
                f52ef088-3a16-4b47-be59-a44491bbd7b9
                © 2023
                History

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