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Synopsys simpleware3/14/2023 This can create a potential bottleneck for high-throughput applications. High density and complex parts, like turbine blades, typically require a significant amount of scan and technician interpretation time. However, one challenge with this workflow is that the ability to resolve defects and dimensions within the part is dictated by overall image quality and image quality can be directly correlated with inspection cycle time. This collection of 2D radiographs are then reconstructed into a 3D CT volume which can be digitally sliced through at any angle, allowing users to inspect both the external and internal features of the product without needing to physically cut or open their product. However, manufactured parts may contain small embedded and hidden defects, creating a need to use a methodology such as CT inspection to inspect the inside of these parts.ĬT inspection is a nondestructive industrial x-ray process, where a part is rotated 360 degrees while hundreds or thousands of individual 2D radiographs are captured at specific degree intervals. As a result, complex cooling geometries, coatings, and other properties are used to keep blades within operational temperature, with failure not being an option. Jet engine turbine blades are required to operate in some of the most extreme conditions, where operating temperatures may exceed the melting point of the alloys used.
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