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Experimental Investigation of process parameters for rapid prototyping technique (Selective Laser Sintering) to enhance the part quality of prototype by Taguchi method

机译:快速原型技术(选择性激光烧结)工艺参数的实验研究(选择性激光烧结),以增强TAGUCHI方法的原型零件质量

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Rapid Prototyping has come out as the best technology in the recent times, which allows the direct conversion of CAD files into the functional prototypes where it mainly decreases the lead time to produce the physical prototype important for design verification and operational analysis by creating the prototype directly from CAD data. Part quality of the prototype in the RP technique mainly depends upon the parameters such as hatch cure depth, layer thickness, orientation, laser power, temperature, hatch spacing. Thus an attempt was made to study and optimization of process parameters governing the system which are linked with part characteristics by using the Taguchi experimental design technique. This paper proposes to characterize the influence of physical build parameters over the part quality. This paper mainly represents the influence of three parameters i.e. Laser power, Temperature and Part Orientation for the dimensional accuracy and micro-hardness of part made in Selective Laser Sintering technique by using the Taguchi technique and an orthogonal array of experiment was developed which has least number of experimental runs with above three process parameters and also made by analysis tools such as ANOVA (Analysis of Variance).
机译:快速的原型制作在最近的时间内出现了最佳技术,它允许CAD文件直接转换为主要的原型,其中它主要减少了通过直接创建原型来生产用于设计验证和操作分析的物理原型来产生重要的原型来自CAD数据。 RP技术中原型的部分质量主要取决于孵化性深度,层厚度,取向,激光功率,温度,舱口间距等参数。因此,通过使用Taguchi实验设计技术对系统与部件特征相关联的工艺参数进行研究和优化。本文提出了在零件质量上表征物理构建参数的影响。本文主要代表三个参数的影响,即通过使用Taguchi技术的选择性激光烧结技术的尺寸精度,温度和部分取向的影响,并开发了具有最小数量的正交实验阵列实验运行具有高于三个工艺参数,也通过分析工具如ANOVA(方差分析)制作。

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