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Effect of changing printing parameters on mechanical properties of printed PLA and Nylon 645

机译:打印参数在印刷PLA和尼龙645机械性能下改变印刷参数的影响

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Nowadays, 3 Dimensional (3D) Printing is an effective and fast way to fabricate prototypes. It can fabricate desired shape by layering multiple thin layers using various types of plastics. Making objects with 3D printing are faster and less expensive than the existed ways like machining, molding and etc. But 3D printed objects are not considered as high robustness because of making method of Fused Deposition Modeling (FDM) such as 3D printing. Following experiments are planned to compare the strength of 3D printed objects. In this research, Nylon 645 and blue, green, brown, blue colored Polylactic Acid (PLA) filaments are used to fabricate tensile and compression test specimens. First, specimens are tested to investigate a relationship between filament colors, extrude temperature and strength. Second, tensile test is conducted to investigate a relationship between the rate of infill and strength using PLA and Nylon 645 specimens. Third, compression test is conducted to investigate a relationship between the rate of infill and strength using PLA and Nylon 645 specimens. This research shows that extrude temperature does not affect strength and each colored PLA filaments have their own strengths. Brown colored PLA is strongest of the PLA filament in this experiment. Rate of infill affects strength significantly. As infill rate become higher, Ultimate Tensile Strength (UTS), Ultimate Compressive Strength (UCS), and Young’s modulus also become higher. The results of this research will help designing objects which be made with 3D print to be loaded.
机译:如今,3维(3D)打印是制造原型的有效且快速的方法。它可以通过使用各种类型的塑料层分层多层薄层来制造所需的形状。具有3D打印的物体比加工,模制等所存在的方式更快,更便宜。但是3D印刷物体不被视为高稳健性,因为制造了融合沉积建模(FDM),例如3D打印。计划进行以下实验以比较3D印刷物体的强度。在本研究中,使用尼龙645和蓝色,绿色,棕色,蓝色聚乳酸(PLA)长丝用于制造拉伸和压缩试样。首先,测试样品以研究丝子颜色,挤出温度和强度之间的关系。其次,进行拉伸试验以研究使用PLA和尼龙645样本的填充和强度之间的关系。第三,进行压缩测试以研究使用PLA和尼龙645样本的填充和强度之间的关系。该研究表明,挤出温度不影响力量,每根彩色PLA长丝都有自己的优势。棕色的PLA是该实验中的PLA灯丝中最强的。填充率显着影响力量。由于填充率变得更高,极限拉伸强度(UTS),最终压缩强度(UCS)和杨氏模量也变得更高。本研究的结果将有助于设计要加载3D打印制成的物体。

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