利用铰接臂三坐标测量机改进逆向工程流程

Dhuha Mohammed Mahmood, Ahmed Zaidan Mahmood
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引用次数: 1

摘要

本发明涉及一种用于确定探头测量位置的三坐标测量机(CMM)。AACMM的测量原理依赖于机器人运动学(正向和反向),即使用AACMM的连杆和关节角度来确定精确的工作空间或零件坐标。因此,使用AACMM获得的测量结果将非常准确和精确,因为这仅仅依赖于刚性结构参数,测量误差的唯一来源是由于人为操作。本文提出了一种新的AACMM设计方案。新设计的AACMM通过设计一种新的兼容的AACMM,将所有的情感设计因素考虑在内,解决了复杂的运动学求解、克服工作空间限制、避免奇异性和消除设计误差影响等常见问题。不同类型的设计因素和限制因素,显著影响了AACMM的生产制造工艺,并最终影响了AACMM的性能。给出了精度。成本和时间因素对设计和制造的影响最为显著。使用了两种主要的制造技术,这两种技术都依赖于严格的CAD/CAM迭代,从而产生完全可用的g代码。这些方法是CNC和3D打印,在任何行业中使用最广泛的方法。然而,精确测量必须考虑精度和人体工程学因素。设计通过各种方法进行验证,例如使用有限元测量技术,以确保设计结构正确
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving Reverse Engineering Processes by using Articulated Arm Coordinate Measuring Machine
The invention relates to a coordinate measuring machine (CMM) for determining a measuring position of a probe. The AACMM isdepends on the robotkinematics (forward and reverse) in their measurementprinciple, i.e., using the AACMM links and joint angles todetermine the exact workspace or part coordinates. Hence, themeasurements are obtained using an AACMM will be extremely accurate and precise since that ismerely dependent on rigid structural parameters and the only source of measurement error is due to human operators. In this paper, a new AACMM design was proposed. The new AACMM design addresses common issues such as solving the complex kinematics, overcoming the workspace limitation, avoiding singularity, and eliminating the effects of design error by designing a new and compatible AACMM that will incorporate all affective design factors into consideration. Different types of design factors and limitations, which significantly affect the AACMM production fabrication processes, and ultimately.accuracy are given. Cost and time factors effects on the design and manufacturing are found to be the most significant. Two primary manufacturing techniques were used, both of which relied on rigors CAD/CAM iterations resulting in an entirely usable G-Code.Those methods are CNC and 3D printing, the most widely used methods in any industry. Nevertheless, accuracy and ergonomics factors must be considered for precise measurements. The design was validated through various methods, such as the use of finite element measurement techniques, to make sure that the design was structurally correct
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