MANUFACTURING OF RAPID PROTOTYPES OF MECHANICAL PARTS USING REVERSE ENGINEERING AND 3D PRINTING

IF 0.5 Q4 ENGINEERING, MULTIDISCIPLINARY
Salah Amroune, A. Belaadi, Moussa Menaseri, Noureddine Geroski, Barhm Mohamad, Khalissa Saada, Riyad Benyettou
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引用次数: 3

Abstract

This article focuses on the design and manufacture of mechanical parts that have complicated shapes using the technique of reverse design using a scanner or an MMT for data acquisition in the form of a point cloud, using CAD software (CATIA). The digital model created is used for a virtual representation of the final product. Then we get the physical model on a 3D printer (also called additive manufacturing process) for later use in sand moulds. To have the imprint in the sand mould, we go through the fusion of the physical model (part). The use of this technique in the industry, allows us to save a lot of time in terms of model preparation and simple to implement, especially if it is mechanical parts that do not have a definition drawing, or they are worn out, then structural analysis was applied on the model using FE based software and tools to prove the quality of the product. Von Mises equivalent strains and stresses were predicted and decreased with increasing areas and honeycomb thickness. The objective of this article is to give an overview of this relatively modern technology and its various applications.
利用逆向工程和三维打印技术快速制造机械零件原型
本文的重点是使用反向设计技术设计和制造具有复杂形状的机械零件,该技术使用扫描仪或MMT,使用CAD软件(CATIA)以点云的形式进行数据采集。创建的数字模型用于最终产品的虚拟表示。然后,我们在3D打印机上获得物理模型(也称为增材制造工艺),以便稍后在砂型中使用。为了在砂型中留下印记,我们要经过物理模型(零件)的融合。该技术在行业中的使用使我们能够在模型准备和简单实施方面节省大量时间,特别是如果是没有定义图的机械零件,或者它们已经磨损,则使用基于有限元的软件和工具对模型进行结构分析,以证明产品的质量。预测了Von Mises等效应变和应力,并随着蜂窝面积和蜂窝厚度的增加而减小。本文的目的是概述这种相对现代的技术及其各种应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
0.90
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