Portable 3D scanner-MetraSCAN 3D for Design, Manufacturing and Analysis
Portable 3D scanner-MetraSCAN 3D for Design, Manufacturing and Analysis
批准号:
RTI-2019-00396
负责人:
Xie, WenFang
金额:
$7.76万
依托单位:
依托单位国家:
加拿大
项目类别:
Research Tools and Instruments
财政年份:
2018
资助国家:
加拿大
项目状态:
已结题
起止时间:
2018-01-01 至 2019-12-31
中文摘要
数字化制造在当今的制造业中越来越流行。从三维计算机辅助设计模型到物理零件,数字化制造提供了一种降低制造成本的方法,在人工时间,减少材料废料,良好的加工质量和过程的可重复性方面。另一方面,为现有物理部件创建3D虚拟模型对于验证、检验、质量控制、无损检测、产品开发和数值模拟(有限元分析/计算流体动力学)非常重要。该方案需要当地公司creaform Inc.的便携式3D扫描仪metrascan 3D来创建制造数据库,并以可用的格式(如三角面网格、NURBS曲面集或CAD模型)获取模型。相比其他方法,如传统的CMM,请求MetraSCAN是完全免费的,没有任何刚性测量设置。它可以提供对环境不稳定性具有鲁棒性的车间测量精度。它还可以提供快速的3D建模和帮助工具和夹具的开发。使用MetraSCAN,用户可以对零件进行有限元分析和数值模拟。所要求的3D扫描仪具有可扩展的测量体积,高速和可用的数据,可以轻松地动态扩展,而不会损失精度或传统的飞跃。因此,它可以提高生产过程的灵活性和效率。测量精度可达0.020mm,可满足申请人科研项目的要求。该设备的研究成果将推动复合材料结构的制造技术,从芯轴设计、在线AFP纤维放置、复合材料结构分析和制造复合材料的损伤检测。复合材料制造和其他航空航天机器人制造系统(如钻孔、铆接和去毛刺系统)的数字制造技术的发展可能会取得重大进展。
英文摘要
Digital manufacturing has become more popular in today's manufacturing industries. From 3D computer-aided design model to a physical part, digital manufacturing provides a way to reduce the manufacturing cost, in terms of labor hour, reduction in material scrap, good processing quality and repeatability of process. On the other hand, to create a 3D virtual model of an existing physical part is very important for validation, inspection, quality control, non-destructive testing, product development and numerical simulation (Finite Element Analysis / Computational Fluid Dynamics). This proposal requests a portable 3D scanner –MetraSCAN 3D from local company—Creaform Inc. to create a manufacturing database and obtain a model in a usable format such as a triangular-faced mesh, a set of NURBS surfaces or a CAD model. Compared to the other methods such as conventional CMM, the requested MetraSCAN is free of any rigid measurement setup. It can provide shop floor measurement accuracy that is robust to the instabilities of the environment. It can also provide fast 3D modeling and help tooling and jig development. With the MetraSCAN, the user can carry out finite element analysis and numerical simulation of the part. The requested 3D scanner has extendable measurement volume, high speed and usable data that can be easily and dynamically extended without loss in accuracy or conventional leapfrogs. Hence, it can improve the flexibility and efficiency of the production process. The measurement accuracy is up to 0.020mm, which can satisfy the requirement of the applicants' research projects. The results of the equipment will advance the manufacturing techniques of composite structure from mandrel design, on-line AFP fiber placement, and the analysis of composite structure and damage detection of the manufacturing composite. The potential for major advances is the digital manufacturing technology development for composite manufacturing and other aerospace robotic manufacturing systems such as drilling, riveting and deburring systems.
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会议论文
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