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Study on the Effect of Fused Deposition Modeling (FDM) Process Parameters on the Printed Part Quality

机译:熔融沉积建模(FDM)工艺参数对印刷零件质量的影响研究

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3D printing known as additive manufacturing (AM) has been applied for applications in different fields such as aerospace, automotive, biomedical, and energy industries. It is the fact that 3D printing has gained a very wide acceptance over the last decade. However, several significant hurdles prevent its wider adoption. One of the most important barriers is the quality of the printed parts. Currently, many manufacturers and end users have difficulty stating with certainty that parts or products produced via 3D printing will be of consistent quality, strength, and reliability. Without this guarantee, many manufacturers will remain leery of AM technology. For getting the good quality of the printed part, influence factors must be considered such as material properties, machine specifications, printing conditions and process parameters. Among the large number of 3D printing methods, fused deposition modeling (FDM) method is used widely.....
机译:称为增材制造(AM)的3D打印已应用于航空航天,汽车,生物医学和能源行业等不同领域的应用。事实是,过去十年来3D打印获得了广泛的接受。但是,有几个重大障碍阻碍了它的广泛采用。最重要的障碍之一是印刷零件的质量。当前,许多制造商和最终用户很难确定通过3D打印生产的零件或产品将具有一致的质量,强度和可靠性。没有这种保证,许多制造商将对AM技术持谨慎态度。为了获得高质量的印刷件,必须考虑影响因素,例如材料特性,机器规格,印刷条件和工艺参数。在大量的3D打印方法中,熔融沉积建模(FDM)方法被广泛使用.....

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