首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Effect of the angle of the laid-up filaments on the surfaces on the coefficient of static friction between parts manufactured by extrusion-based 3D printing
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Effect of the angle of the laid-up filaments on the surfaces on the coefficient of static friction between parts manufactured by extrusion-based 3D printing

机译:竖桩长丝角度对基于挤出的3D印刷制造的部件静态摩擦系数的效果

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摘要

Three-dimensional printers, particularly the extrusion-based ones, are driving a global academic, industrial, and social revolution. The accessibility of the technology has allowed a number of enthusiasts and scientists to dedicate efforts to improve the technical properties of the parts produced. However, there is little literature on the measurement of the coefficient of friction, especially the static one, between a pair of printed parts. In this sense, an investigation was carried out in two stages, in which at first the static coefficient of friction was measured, through a simple apparatus based on the concept of the inclined plane, varying the angle of the filaments laid up on the surfaces of the two parts in contact. The parameter was analyzed at three levels—0°, 45°, and 90°—in components manufactured in poly(lactic acid) and poly(ethylene glycol terephthalate). In the second part of the research, a case study was carried out to test and validate the effects of the best and worst friction conditions on the behavior of the insertion force of snap-fit connections. The results obtained show a significant influence of the filament angle in the interaction between two printed parts. Combinations of contact with different angles decrease the static coefficient of friction, while faces with equal angles tend to increase the magnitude of the response, especially if the arrangement of the filaments allows a fit of the surfaces opposite to sliding. The static coefficient of friction of poly(lactic acid) varied from 0.12 to 0.38, while the static coefficient of friction of poly(ethylene glycol terephthalate) varied from 0.13 to 0.21. The responses of the inclined plane test allowed to predict the behavior of the insertion force and plan the design of quick fittings.
机译:三维打印机,特别是挤出基础,正在推动全球学术,工业和社会革命。该技术的可访问性使许多爱好者和科学家们努力提高改善所生产零件的技术性质。然而,在一对印刷部件之间的摩擦系数,尤其是静态零件之间的测量,几乎没有文献。从这个意义上讲,在两个阶段进行调查,其中首先通过基于倾斜平面的概念的简单装置测量静态摩擦系数,改变铺设在表面上的长丝的角度接触的两部分。将参数分析在0°,45°,40°-in-in-in-in-in in-in-in-in-in组分中,并聚(乙二醇对苯二甲酸乙二醇酯)。在研究的第二部分中,进行了案例研究以测试和验证最佳和最差摩擦条件对卡扣连接的插入力的行为的影响。得到的结果显示了丝角在两个印刷部件之间的相互作用中的显着影响。与不同角度的接触组合降低了静态摩擦系数,而具有相等角度的面倾向于增加响应的幅度,特别是如果长丝的布置允许与滑动相反的表面配合。聚(乳酸)的静态摩擦系数在0.12至0.38中变化,而聚(乙二醇对苯二甲酸甲酸酯)的静态摩擦系数为0.13至0.21。倾斜平面测试的响应允许预测插入力的行为并计划快速配件的设计。

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