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Critical quality indicators of high-performance polyetherimide(ULTEM)over the MEX 3D printing key generic control parameters:Prospects for personalized equipment in the defense industry
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作者 Nectarios Vidakis Markos Petousis +6 位作者 Constantine David Nektarios K.Nasikas Dimitrios Sagris Nikolaos Mountakis Mariza Spiridaki Amalia Moutsopoulou Emmanuel Stratakis 《Defence Technology(防务技术)》 2025年第1期150-167,共18页
Additive Manufacturing(AM)can provide customized parts that conventional techniques fail to deliver.One important parameter in AM is the quality of the parts,as a result of the material extrusion 3D printing(3D-P)proc... Additive Manufacturing(AM)can provide customized parts that conventional techniques fail to deliver.One important parameter in AM is the quality of the parts,as a result of the material extrusion 3D printing(3D-P)procedure.This can be very important in defense-related applications,where optimum performance needs to be guaranteed.The quality of the Polyetherimide 3D-P specimens was examined by considering six control parameters,namely,infill percentage,layer height,deposition angle,travel speed,nozzle,and bed temperature.The quality indicators were the root mean square(Rq)and average(Ra)roughness,porosity,and the actual to nominal dimensional deviation.The examination was performed with optical profilometry,optical microscopy,and micro-computed tomography scanning.The Taguchi design of experiments was applied,with twenty-five runs,five levels for each control parameter,on five replicas.Two additional confirmation runs were conducted,to ensure reliability.Prediction equations were constructed to express the quality indicators in terms of the control parameters.Three modeling approaches were applied to the experimental data,to compare their efficiency,i.e.,Linear Regression Model(LRM),Reduced Quadratic Regression Model,and Quadratic Regression Model(QRM).QRM was the most accurate one,still the differences were not high even considering the simpler LRM model. 展开更多
关键词 Polyetherimide(PEI) Material extrusion(MEX) three-dimensional printing(3D-P) Critical quality indicators(CQIs) Quadratic regression model(QRM) Taguchi
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基于RSM的三维打印参数对材料收缩率的影响 被引量:4
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作者 符柳 李淑娟 胡超 《机械科学与技术》 CSCD 北大核心 2013年第12期1835-1840,共6页
采用三维打印(three dimensional printing,3DP)成型的制件,经过干燥和后处理会在不同的方向上产生收缩现象,这严重影响成型制件的尺寸精度。将ZP310三维打印机作为试验平台,采用中心复合试验设计方法(central composite design,CCD)对... 采用三维打印(three dimensional printing,3DP)成型的制件,经过干燥和后处理会在不同的方向上产生收缩现象,这严重影响成型制件的尺寸精度。将ZP310三维打印机作为试验平台,采用中心复合试验设计方法(central composite design,CCD)对打印参数进行实验方案设计.并用响应曲面法(response surface methodology,RSM)分析三维打印过程中饱和度和层厚对淀粉基混合粉末收缩率的影响,建立了三维打印成型过程中材料在X、Y、Z这3个方向上的收缩率与打印参数之间关系的数学模型。实验证明根据收缩率进行的误差补偿,降低了制件在不同方向上的尺寸误差。 展开更多
关键词 三维打印 收缩率 打印参数 响应曲面法(RSM) 尺寸精度
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