2010Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIERequires access

Accuracy design of double parallel-joints coordinate measuring machine

Guisuo Xia, Yetai Fei, Jiliang Zhao

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Abstract

Double parallel-joints coordinate measuring machine (CMM) is a new type of coordinate measuring devices. In this paper, measuring principle and basic structure of double parallel-joints CMM are introduced at first and then total error sources that influence the measuring accuracy are analyzed. The possible accuracy of error sources correction is analyzed and the total error of the instrument is calculated. The error distribution is presented on the basis of accuracy design of the instrument. The error distribution is simulated and the error distribution law of the instrument is summarized. The accuracy analysis and the structure design of the instrument are guided by the research in the paper, and the solid theoretical basis is provided by the error correction to achieve the accuracy indicators of double parallel-joint CMM. The tasks accomplished in this thesis will be provided as a solid foundation for developing double parallel-joint CMM with our own intellectual properties and it will be accuracy higher and cost lower than the currently existing imported CMM.

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What this paper is about

Double parallel-joints coordinate measuring machine (CMM) is a new type of coordinate measuring devices. In this paper, measuring principle and basic structure of double parallel-joints CMM are introduced at first and then total error sources that influence the measuring accuracy are analyzed. The possible accuracy of error sources correction is analyzed and the total error of the instrument is calculated. The error distribution is presented on the basis of accuracy design of the instrument. The error distribution is simulated and the error distribution law of the instrument is summarized. The accuracy analysis and the structure design of the instrument are guided by the research in the paper, and the solid theoretical basis is provided by the error correction to achieve the accuracy indicators of double parallel-joint CMM. The tasks accomplished in this thesis will be provided as a solid foundation for developing double parallel-joint CMM with our own intellectual properties and it will be accuracy higher and cost lower than the currently existing imported CMM.

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Available abstract

Double parallel-joints coordinate measuring machine (CMM) is a new type of coordinate measuring devices. In this paper, measuring principle and basic structure of double parallel-joints CMM are introduced at first and then total error sources that influence the measuring accuracy are analyzed. The possible accuracy of error sources correction is analyzed and the total error of the instrument is calculated. The error distribution is presented on the basis of accuracy design of the instrument. The error distribution is simulated and the error distribution law of the instrument is summarized. The accuracy analysis and the structure design of the instrument are guided by the research in the paper, and the solid theoretical basis is provided by the error correction to achieve the accuracy indicators of double parallel-joint CMM. The tasks accomplished in this thesis will be provided as a solid foundation for developing double parallel-joint CMM with our own intellectual properties and it will be accuracy higher and cost lower than the currently existing imported CMM.

Key concepts: Coordinate-measuring machine, Computer science, Basis (linear algebra), Observational error, Joint (building), Distribution (mathematics), Measuring instrument, Algorithm

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