Manufacturing of aircraft engine turbine blades requires control of blade geometric parameters at different
stages of technological process. Acceleration and automation of measurement process can affect the duration of the
finished item production.
Modern technologies for measurement of aircraft engine turbine blades are based on numerical machines -
measurement process is based on processing of numerical data obtained by measurement using coordinate measuring
machines. The paper presents the opportunity of automation of aircraft engine turbine blades measurements using
scanner ATOS II Triple Scan with blue light source technology.
Coordinate measuring technique allows to specify full methodology for designation of complex dimensions of
physical objects and transform them into a computer program space of coordinate measuring devices.
Presented paper includes capabilities of device used in the study to improve the measurement process in the
technological and economical aspects. Another issue described in the paper is impact of measurement performance in
automatic mode on the quality of performance – the numerical model of surface, from the standpoint of accuracy and
number of collected data points in time.
The paper includes an analysis of conditions related to the measurement works, such as the process of preparing
the model, measurement equipment and data processing capacity. As the result methodology for automated scanning
measurements of aircraft engine turbine blades will be presented.
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