材料体积增材制造部件的设计和技术解决方案

IF 0.4 Q4 ENGINEERING, MECHANICAL
D. L. Rakov, R. Yu. Sukhorukov
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引用次数: 0

摘要

摘要 讨论了零件增材制造技术解决方案的特点。与现有的逐层合成解决方案相比,本文提出了一种在粉末体积中移动工作工具的新方法和装置。通过构建形态表,利用形态分析考虑了各种实施方案。这样可以确保所提出的技术和工艺解决方案的有效性,从而提高合成系统的技术水平和效率。通过对解决方案的分析,可以更好地控制生产过程,从而降低生产三维物体的成本,提高生产率,降低技术过程和设备的成本。此外,还可以制造出更紧凑、更轻便、更便宜的三维物体合成设备。所提出的技术解决方案通过逐层(水平)合成和体积、垂直或水平垂直混合合成部件,扩展了设备的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design and Technological Solutions for Additive Manufacturing of Parts in the Volume of Material

Design and Technological Solutions for Additive Manufacturing of Parts in the Volume of Material

Design and Technological Solutions for Additive Manufacturing of Parts in the Volume of Material

The features of technical solutions for additive manufacturing of parts are discussed. In contrast to existing solutions for layer-by-layer synthesis, a new method and device is proposed for the movement of a working tool in the volume of a powder. Various implementation options are considered using morphological analysis by constructing a morphological table. This ensures the validity of the proposed technical and technological solutions and, therefore, will improve the technical level and efficiency of the synthesized systems. An analysis has been made of solutions that provide less expensive production of three-dimensional objects due to better process control, which leads to higher productivity and reduced cost of both the technological process and the equipment. It also becomes possible to create more compact, lighter, and cheaper equipment for the synthesis of three-dimensional objects. The proposed technical solutions expand the functionality of the equipment by implementing both layer-by-layer (horizontal) synthesis and volumetric, vertical or mixed horizontal–vertical, synthesis of parts.

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来源期刊
CiteScore
0.80
自引率
33.30%
发文量
61
期刊介绍: Journal of Machinery Manufacture and Reliability  is devoted to advances in machine design; CAD/CAM; experimental mechanics of machines, machine life expectancy, and reliability studies; machine dynamics and kinematics; vibration, acoustics, and stress/strain; wear resistance engineering; real-time machine operation diagnostics; robotic systems; new materials and manufacturing processes, and other topics.
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