1960•British Journal of Applied PhysicsRequires access

Spectral emission of radiation by glass

J. R. Beattie, E Coen

Open publisher page 41 citations

Abstract

The spectral radiation emitted normally from the surface of a thin sheet of glass having a specified temperature distribution throughout its thickness is calculated for the wavelength range 1.0 to 6.0 μ. From the results obtained, the design of a radiation pyrometer capable of measuring both the surface and inside temperatures of the glass is described. The pyrometer consists of two radiation detectors, one with a filter to measure only the radiation arising from, and hence the temperature of, the surface of the glass, the other with a filter to measure the radiation arising from the interior of the glass and which therefore has a response dependent on the temperature distribution within the glass.

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What this paper is about

The spectral radiation emitted normally from the surface of a thin sheet of glass having a specified temperature distribution throughout its thickness is calculated for the wavelength range 1.0 to 6.0 μ. From the results obtained, the design of a radiation pyrometer capable of measuring both the surface and inside temperatures of the glass is described. The pyrometer consists of two radiation detectors, one with a filter to measure only the radiation arising from, and hence the temperature of, the surface of the glass, the other with a filter to measure the radiation arising from the interior of the glass and which therefore has a response dependent on the temperature distribution within the glass.

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Available abstract

The spectral radiation emitted normally from the surface of a thin sheet of glass having a specified temperature distribution throughout its thickness is calculated for the wavelength range 1.0 to 6.0 μ. From the results obtained, the design of a radiation pyrometer capable of measuring both the surface and inside temperatures of the glass is described. The pyrometer consists of two radiation detectors, one with a filter to measure only the radiation arising from, and hence the temperature of, the surface of the glass, the other with a filter to measure the radiation arising from the interior of the glass and which therefore has a response dependent on the temperature distribution within the glass.

Key concepts: Pyrometer, Radiation, Materials science, Optics, Wavelength, Range (aeronautics), Particle detector, Spectral power distribution

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