USE OF REVERSE ENGINEERING TECHNIQUES FOR INSPECTING SCREWS SURFACES OF A HELICAL HYDRAULIC PUMP

N. Baroiu, G. Moroșanu, V. Teodor, R. Crăciun, V. Păunoiu
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引用次数: 2

Abstract

Recently, 3D measurement systems have developed more and more in various fields. With the help of 3D measuring systems, the measurement time in design, manufacture, assembly and production is substantially reduced. In this paper, it is proposed to redesign two pieces of a helical pump (driver and driven screws) based on numerical models obtained by scanning. These models are obtained based on the processing of point clouds resulting from the 3D scanning of the respective pieces. After completing the actual scanning process, the numerical models were measured using specific software to determine the dimensional characteristics and their modeling was performed in a computer-aided design program. Subsequently, the inspection was performed by overlapping the scanned model and the CAD model of each piece, in order to be able to compare the analytical models with the real pieces. This comparison allows to appreciate the degree to which the analytical model obtained by redesign corresponds to the real piece. In this way, the ability of future pieces obtained based on the analytical model to be able to accomplish the desired functional role can be appreciated.
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逆向工程技术在螺旋液压泵螺杆表面检测中的应用
近年来,三维测量系统在各个领域得到了越来越多的发展。借助3D测量系统,大大缩短了设计、制造、组装和生产中的测量时间。在本文中,提出了在扫描获得的数值模型的基础上重新设计两件螺旋泵(驱动器和从动螺杆)。这些模型是基于对各个片段的3D扫描产生的点云的处理而获得的。在完成实际扫描过程后,使用特定软件对数值模型进行测量,以确定尺寸特征,并在计算机辅助设计程序中对其进行建模。随后,通过将每个工件的扫描模型和CAD模型重叠来进行检查,以便能够将分析模型与实际工件进行比较。这种比较允许理解通过重新设计获得的分析模型与真实工件的对应程度。通过这种方式,可以欣赏基于分析模型获得的未来工件能够实现期望的功能作用的能力。
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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来源期刊
International Journal of Modern Manufacturing Technologies
International Journal of Modern Manufacturing Technologies Engineering-Industrial and Manufacturing Engineering
CiteScore
0.70
自引率
0.00%
发文量
15
期刊介绍: The main topics of the journal are: Micro & Nano Technologies; Rapid Prototyping Technologies; High Speed Manufacturing Processes; Ecological Technologies in Machine Manufacturing; Manufacturing and Automation; Flexible Manufacturing; New Manufacturing Processes; Design, Control and Exploitation; Assembly and Disassembly; Cold Forming Technologies; Optimization of Experimental Research and Manufacturing Processes; Maintenance, Reliability, Life Cycle Time and Cost; CAD/CAM/CAE/CAX Integrated Systems; Composite Materials Technologies; Non-conventional Technologies; Concurrent Engineering; Virtual Manufacturing; Innovation, Creativity and Industrial Development.
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