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首页> 外文期刊>Acta Mechanica et Automatica >An Exploratory Study on the Accuracy of Parts Printed in FDM Processes from Novel Materials
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An Exploratory Study on the Accuracy of Parts Printed in FDM Processes from Novel Materials

机译:新型材料中FDM工艺印刷零件准确性的探索性研究

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The paper describes the experiment of assessing the chosen geometric characteristics of test models with simple geometry, shaped by the FDM (fused deposition modelling) method of different materials. The influence of the material grade and the degree of infill density on the shrinkage affecting their dimensional deviations and selected surface topography parameters of printed parts was examined and compared. Three different types of materials were used to fabricate the test models, namely HDGLASS and NANOCARBON, two new fibre reinforced composites available in the market and, additionally ABS, a popular monoplastic material. An infill density ratio of 10, 50 and 90% was assumed for each material. Three specimens were made on the same printer for each infill density, which allowed to assess the repeatability of the analysed characteristics. From among many possible shapes of models, a cube was chosen as representing the simplest geometry, facilitating the measurements themselves and the interpretation of the results. New fibre-reinforced materials are more attractive in industrial applications than pure plastics (ABS) due to their mechanical properties or appearance. They are characterized by a relatively low melting point and short cooling time, after which they can return to their original geometry; however, there is a lack of detailed data on the geometric accuracy of parts made of used composite materials. The presented work was to explanatorily broaden the knowledge about the properties of composite made parts. The practical purpose of the research was that on the basis of measurements, it would be possible to indicate among the materials used that particular material whose properties and method of application would allow obtaining the best quality surface and would be the most resistant to thermal loads. An attempt was also made to explain the possible causes of the differences in the observed characteristics of the tested materials.
机译:本文介绍了使用不同材料的FDM(融合沉积建模)法,用简单的几何评估测试模型的所选择的几何特性的实验。研究了物质级和填充密度对影响其尺寸偏差和所选表面形貌参数的收缩的影响,并进行比较。使用三种不同类型的材料来制造测试模型,即海绵和纳米碳,市场上有两种新的纤维增强复合材料,另外ABS,一种流行的一体塑料材料。为每种材料假定10,50和90%的填充密度比。对于每个填充密度,在相同的打印机上进行三种标本,其允许评估分析特性的可重复性。从许多可能的模型中,选择了一个立方体代表最简单的几何形状,促进测量本身和结果的解释。由于其机械性能或外观,新的纤维增强材料比纯塑料(ABS)更具吸引力。它们的特征在于相对较低的熔点和短冷却时间,之后它们可以返回原来的几何形状;然而,缺乏关于由使用的复合材料制成的部件的几何精度的详细数据。本工作是阐明了对复合制造零件的性能的知识。该研究的实际目的是在测量的基础上,可以在使用的材料中指示其特殊材料的特殊材料,其应用方法和应用方法将允许获得最佳质量表面,并且是热负荷最耐热的材料。还可以尝试解释所测试材料的观察到特性差异的可能原因。

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