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Design and Construction of a Testing Platform and Estimating Attenuation Painting Reflectivity to Laser Beam
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The project has been described the design and construction of a reliable optical testing platform used for evaluate the reflectivity of metal surfaces treated with special paintings required for laser beam attenuation. The platform comprises an Nd-YAG laser system which has been designed and fabricated with specifications to be compatible with their corresponding in laser range finder transmitters used for various applications. The reflectivity of various attenuating paintings, at different detection angles, has been observed. Moreover, the variation of the reflected energy with painting type and metal type to be painted has been studied experimentally. Results illustrated the existence of a definite angle, at which the reflectivity was maximum (specular reflection). On the other hand, samples with attenuation paintings have constant very low diffusive reflectivity and are independent of the detection angle.
College of Science for Women, University of Baghdad
Title: Design and Construction of a Testing Platform and Estimating Attenuation Painting Reflectivity to Laser Beam
Description:
The project has been described the design and construction of a reliable optical testing platform used for evaluate the reflectivity of metal surfaces treated with special paintings required for laser beam attenuation.
The platform comprises an Nd-YAG laser system which has been designed and fabricated with specifications to be compatible with their corresponding in laser range finder transmitters used for various applications.
The reflectivity of various attenuating paintings, at different detection angles, has been observed.
Moreover, the variation of the reflected energy with painting type and metal type to be painted has been studied experimentally.
Results illustrated the existence of a definite angle, at which the reflectivity was maximum (specular reflection).
On the other hand, samples with attenuation paintings have constant very low diffusive reflectivity and are independent of the detection angle.
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