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Mechanical properties of ULTEM 9085 material processed by fused deposition modeling

机译:用熔融沉积建模加工ULTEM 9085材料的机械性能

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摘要

With the advancement of fused deposition modeling (FDM) additive manufacturing process for producing end use products, there is a great need for new high-performance materials capable of meeting the requirements of different engineering applications. ULTEM 9085 is a thermoplastic material with superior performance that emerged a few years ago. To use this material in different sectors, it is essential to characterize its mechanical properties and predict its behavior and performance. Moreover, in the FDM process, the properties of materials are highly influenced by the processing parameters. In this study, the characterization of the mechanical (tensile, compression and flexural) properties of a high-performance ULTEM 9085 thermoplastic material was carried out. The study also investigated the influence of the parameters on these properties. Test specimens were prepared by varying two different process parameters of the machine (Fortus 450mc), layer orientation (0 degrees, +45 degrees/-45 degrees and 90 degrees) and build direction (flat, edge and upright). The test results show that the mechanical properties of the material are extremely dependent on the processing parameters. Maximum tensile stress is observed for the parameter combination of 0 degrees layer orientation and edge build direction, whereas maximum compression stress is registered for the parameter combination of 90 degrees layer orientation and flat build direction. Maximum flexural stress is registered for the parameter combination of 0 degrees layer orientation and flat build direction. Over all, among the considered parameters, edge printing direction and 0 degrees layer orientation, resulted in the highest mechanical properties.
机译:随着融合沉积建模(FDM)添加剂制造工艺的推进,生产最终用品的产品,很有需要新的高性能材料能够满足不同工程应用的要求。 Ultem 9085是一种热塑性材料,几年前出现了卓越的性能。为了在不同部门使用这种材料,必须表征其机械性能并预测其行为和性能。此外,在FDM工艺中,材料的性质受加工参数的高度影响。在该研究中,进行了高性能ULTEM 9085热塑性材料的机械(拉伸,压缩和弯曲)性能的表征。该研究还研究了参数对这些性质的影响。通过改变机器(FORTUS 450MC),层取向(0度,+ 45度/ -45度和90度)和构建方向(平坦,边缘和直立)来制备测试样品。测试结果表明,材料的机械性能极大地取决于加工参数。对于0度层取向和边缘构建方向的参数组合,观察到最大拉伸应力,而最大压缩应力被注册为90度层取向和平坦构建方向的参数组合。最大弯曲应力被注册为0度层取向和平坦构建方向的参数组合。在所有的中,在考虑的参数中,边缘打印方向和0度层取向中,导致最高的机械性能。

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