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Ultraviolet transmission type plastic film thickness on-line measurement method

A technology of plastic film and measurement method, which is applied in transmittance measurement, measurement device, instrument, etc., can solve the problems of unclear diffraction image of amorphous polymer material, extremely high parallelism requirements of test rails, and increased difficulty in thickness measurement. , to achieve the effect of ensuring data validity, ensuring product quality requirements, and adjusting process parameters in time

Active Publication Date: 2020-12-04
上海海关机电产品检测技术中心 +2
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Among them, the X-ray thickness measurement technology is mature. However, due to its shortcomings such as strong electromagnetic radiation, high instrument maintenance costs, and unclear diffraction images of amorphous polymer materials, it is generally not considered in the thickness test of plastic film materials. The method; the capacitance thickness measurement method is based on the principle that the dielectric constant between the capacitance of the capacitive sensor and the pole plates will vary with the thickness of the medium. When the film material is between the capacitive pole plates, the measurement of the film thickness is realized. It is suitable for dynamic online testing, but distributed electricity is likely to cause nonlinear output, which affects the measurement accuracy, and requires extremely high parallelism of the test rails, which adds difficulty to the thickness test; the infrared thickness measurement method uses the plastic film material to The difference in infrared characteristic absorption wavelength, the thickness information of the film can be obtained by monitoring the change of infrared light intensity, the infrared method has no radiation and low cost, but the change of film temperature and haze caused by infrared thermal effect will directly affect the thickness measurement result
[0006] Ultraviolet light refers to electromagnetic waves with a wavelength range of 10-400nm. The frequency is between visible light and X-rays. The photon energy it carries is greater than that of visible light, but its radiation effect is much lower than that of X-rays.

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Embodiment Construction

[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only some, not all, embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts belong to the protection scope of the present invention.

[0034]In the embodiment of the present invention, 280-400 nm is selected as the target ultraviolet band, incident perpendicular to the surface of the film, and the interval of extracted ultraviolet wavelengths is 2 nm. The film material is PET (polyester fiber), its apparent density is 1.38, and its tensile strength is greater than or equal to 80Mpa.

[0035] figure 2 It is the wavelength-transmittance distribution map corresponding to the PET film materials...

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Abstract

The invention discloses an ultraviolet transmission type plastic film thickness on-line measurement method. The method comprises the following steps: emitting ultraviolet rays to the surface of a testsample to be measured to obtain data of ultraviolet transmissivity of the test sample in an ultraviolet waveband range; detecting a batch of samples in advance to obtain ultraviolet transmissivity values corresponding to samples under different ultraviolet wavelengths, and drawing a ultraviolet transmissivity value change curve of the samples with different thicknesses in the ultraviolet band; and measuring in real time to obtain the ultraviolet transmissivity y of the sample to be tested with a thickness value, substituting the value into a pre-obtained fitting formula between the thicknessand the ultraviolet transmissivity, and directly calculating to obtain the thickness value x of the sample. The method is low in measurement cost and convenient to operate; and real-time thickness testing on a film production line is achieved in the method for achieving non-contact type thickness online measurement of the plastic film material through the ultraviolet transmission principle, so technological parameters can be adjusted in time, the product quality requirement is guaranteed, and the production cost is effectively saved.

Description

technical field [0001] The invention relates to the technical field of physical optics measurement, in particular to an ultraviolet transmission type online measurement method for plastic film thickness. Background technique [0002] In recent years, with the continuous update of modern scientific research technology and the rapid development of the polymer industry, the research and application of plastic film materials have shown a rapid growth trend. At present, the common film products on the market include high temperature resistant polyester film (PET), polypropylene film (BOPP), polyethylene film (PE), based on their excellent properties such as acid and alkali resistance, electrical insulation, high transparency, etc., have been Benefits to food packaging, aerospace, pharmaceutical chemicals, agricultural film and other fields. Moreover, according to the market policy of my country's national economy and the adjustment and transformation of rural production structur...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01B11/06G01N21/59
CPCG01B11/06G01N21/59
Inventor 杨荣静温馨何秀玲徐嘉段冀渊严波吕晶
Owner 上海海关机电产品检测技术中心
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