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Dimensional Quality and Distortion Analysis of Thin-Walled Alloy Parts of AlSi10Mg Manufactured by Selective Laser Melting

机译:通过选择性激光熔化制造的Alsi10mg薄壁合金零件的尺寸和变形分析

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摘要

The quality and reliability in additive manufacturing is an emerging area. To ensure process quality and reliability, the influence of all process parameters and conditions needs to be understood. The product quality and reliability characteristics, i.e., dimensional accuracy, precision, repeatability, and reproducibility are mostly affected by inherent and systematic manufacturing process variations. This paper presents research on dimensional quality and distortion analysis of AlSi10Mg thin-walled parts developed by a selective laser melting technique. The input process parameters were fixed, and the impact of inherent process variation on dimensional accuracy and precision was studied. The process stability and variability were examined under repeatability and reproducibility conditions. The sample length (horizontal dimension) results revealed a 0.05 mm maximum dimensional error, 0.0197 mm repeatability, and 0.0169 mm reproducibility. Similarly, in sample height (vertical dimension) results, 0.258 mm maximum dimensional error, 0.0237 mm repeatability, and 0.0863 mm reproducibility were observed. The effect of varying design thickness on thickness accuracy was analyzed, and regression analysis performed. The maximum 0.038 mm error and 0.018 mm standard deviation was observed for the 1 mm thickness sample, which significantly decreased for sample thickness ≥2 mm. The % error decreased exponentially with increasing sample thickness. The distortion analysis was performed to explore the effect of sample thickness on part distortion. The 0.5 mm thickness sample shows a very high distortion comparatively, and it is reduced significantly for >0.5 mm thickness samples. The study is further extended to examine the effect of solution heat treatment and artificial aging on the accuracy, precision, and distortion; however, it did not improve the results. Conclusively, the sample dimensions, i.e., length and height, have shown fluctuations due to inherent process characteristics under repeatability and reproducibility conditions. The ANOVA results revealed that sample length means are not statistically significantly different, whereas sample height means are significantly different. The horizontal dimensions in the xy-plane have better accuracy and precision compared to the vertical dimension in the z-axis. The accuracy and precision increased, whereas part distortion decreased with increasing thickness.
机译:添加剂制造的质量和可靠性是新兴区域。为确保过程质量和可靠性,需要了解所有工艺参数和条件的影响。产品质量和可靠性特性,即尺寸精度,精度,可重复性和再现性主要受固有和系统制造过程变化的影响。本文介绍了通过选择性激光熔化技术开发的Alsi10mg薄壁部件的尺寸质量和失真分析研究。研究了输入处理参数,研究了固有的过程变化对尺寸精度和精度的影响。在重复性和可重复性条件下检查过程稳定性和变异性。样品长度(水平尺寸)结果显示为0.05mm的最大尺寸误差,重复性为0.0197mm,再现0.0169mm。类似地,在样品高度(垂直尺寸)结果中,观察到0.258mm的最大尺寸误差,重复性为0.0237mm,重复性和0.0863mm的再现性。分析了不同设计厚度对厚度精度的影响,进行了回归分析。对于1mm厚度样品,观察到最大0.038mm误差和0.018mm标准偏差,对于样品厚度≥2mm显着降低。随着样品厚度的增加,%误差呈指数增长。进行失真分析以探讨样品厚度对部件失真的影响。 0.5mm厚度样品相对表示非常高的变形,并且对于> 0.5mm厚度样品,它显着减小。进一步扩展了该研究以检验溶液热处理和人工老化对精度,精度和变形的影响;但是,它没有改善结果。最后,样品尺寸,即长度和高度,由于可重复性和可重复性条件下的固有过程特征而导致波动。 ANOVA结果表明,样品长度意味着没有统计学上显着不同,而样品高度意味着显着不同。与Z轴上的垂直尺寸相比,XY平面中的水平尺寸具有更好的精度和精度。准确性和精度增加,而厚度较大的部件失真减小。

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