The Application of CMM (Coordinate Measuring Machine) in the Aerospace Industry

2025-02-08
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As the aerospace industry currently requires its tier - 1 suppliers to conduct 100% inspections, OGP provides coordinate measuring equipment with accuracy, repeatability, and reliability for the most challenging tasks, offering the highest standards of metrology solutions to customers. The basic measurement methods of OGP are simple and easy to implement, which can better improve manufacturing processes and produce the best aerospace components.

From turbine blades, vanes and fiber washers in jet engines to cockpit electronics and plastic products on tray tables, QVI's multi - sensor coordinate measuring systems provide the required precision for key components in aerospace manufacturing. It complies with customers' strict quality specifications and ensures the consistency of the quality control process for various components used in aircraft.

QVI's coordinate measuring systems and software enable aerospace manufacturers to routinely perform advanced inspection and reporting operations as part of the measurement process, and complete the collection of informative data. Currently, QVI machines installed in the aerospace industry help improve production line performance by addressing complex measurement challenges involving commercial aviation, unmanned aerial vehicles, as well as public and government - sponsored projects.

QVI's coordinate measuring machines can have greater technical performance and are fully capable of meeting the needs of optimized control such as aerospace product quality. Specific aerospace component materials require the use of non - contact measurement principles to increase flexibility. Even for the most complex components, accurate and rapid measurement can be achieved without damage and distortion.

Industrial manufacturers can use QVI's coordinate measuring machines to measure the dimensions and features of product components as efficiently as possible. In special cases, it can meet the measurement requirements for feature dimensions, positions, and shape tolerances that are too strict to be detected by traditional means.