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Direct digital manufacturing of three-dimensional functionally graded material objects

机译:三维功能梯度材料对象的直接数字化制造

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摘要

Among the different types of direct digital manufacturing (DDM) technologies, some of them can be used for making functionally graded material (FGM) objects. Apart from specific characteristics of the DDM process being employed, one problem in FGM object fabrication is the generation of the corresponding information complete format so that the functionally graded material information can be realized. In this paper, this issue is addressed and the three-dimensional printing (3DP) process is considered as the DDM technology employed for making a FGM prototype. The property of printing a 3D prototype in color is adopted and a methodology is proposed for representing the mechanical properties of an FGM object by color information. In this methodology, an object is considered as "functionally graded" if its mechanical strength is gradually changed within the object and the mechanical strength arisen from gluing powdered material by binders in 3DP is assumed to be proportional to the concentrations of the binders applied in it. If the concentration of each primary color binder is different and a pixel of color is printed in the appropriate proportion, the resultant pixel would have a corresponding binder concentration value. To determine the binder concentration requirements, a computer-aided engineering (CAE) analysis is first carried out and the concentration requirements in different parts of the object are inferred from the CAE analysis result. These requirements are then converted to color information by applying the proposed methodology. As the binder concentrations of different colors are different, a colorful prototype would also be an FGM one.
机译:在不同类型的直接数字制造(DDM)技术中,其中一些可用于制造功能渐变材料(FGM)对象。除了采用DDM工艺的特定特性外,FGM对象制造中的一个问题是生成相应的信息完整格式,以便可以实现功能分级的物料信息。在本文中,此问题已得到解决,并且三维打印(3DP)工艺被视为制造FGM原型所采用的DDM技术。采用了用彩色打印3D原型的属性,并提出了一种通过颜色信息表示FGM对象的机械属性的方法。在此方法中,如果某个对象的机械强度在该对象内逐渐变化,并且假定通过3DP中的粘合剂将粉末状材料粘合成粉末而产生的机械强度与所施加的粘合剂浓度成正比,则该对象被视为“功能等级” 。如果每种原色粘合剂的浓度不同,并且以适当比例打印颜色像素,则所得像素将具有相应的粘合剂浓度值。为了确定粘合剂的浓度要求,首先要进行计算机辅助工程(CAE)分析,然后从CAE分析结果中推断出对象不同部分的浓度要求。然后通过应用建议的方法将这些要求转换为颜色信息。由于不同颜色的粘合剂浓度不同,因此彩色原型也将是FGM。

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