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At present, the color box printing quality detection technology mainly includes two kinds of density and color. Among them, the density mode is a process control mode, which controls the key steps of the printing production process according to the ink layer thickness. The color mode is a high-precision system control mode, and the color control is performed according to the visual measurement of the colorimetric or spectroscopic spectrum, but it needs to comprehensively consider the printed material, the application environment, and the test purpose. In terms of implementation, both manual offline sampling and automatic online detection can be used.
In addition to the four-color printing color pictures, the color box printed with special materials has many spot colors and anti-counterfeiting technologies. The detection contents include density, dot gain, registration, and gloss. Due to the restriction of surface gloss of special materials, in the measurement of density and dot, it is necessary to use a test instrument that uses d/0 to measure optical geometric conditions. It is best to divide the visible light from 400 to 700 nm into 31 measurement intervals according to the principle of spectroscopy. Spectral reflectance of color, and then to obtain color CIELab value and color difference spectrophotometer, such as X-Rite's SP series. Thus, the accuracy and reliability of the measurement data of the high gloss surface material are guaranteed. Measurement instruments used in the geometric conditions of common materials 0/45, such as the X-Rite 900 series, cannot achieve consistent and accurate results.
The spot color ink distribution system is a system composed of a computer, a color matching software, a spectrophotometer, an analytical balance, an evenness meter, an ink exhibition machine, and a printability meter. The spot color ink distribution system can store the parameters of the printing materials, inks and color matching data of color box printing companies in the system database through testing and experiments. The color matching software can perform spectrophotometric measurement according to the color swatches provided by the customer, and can be applied to the computer automatically. Color matching and color matching operations are performed, and color matching conditions are controlled according to CIELab values, density values, and ΔE of customer samples and color matching samples, and printing control parameters are provided, thereby realizing dataization of spot color ink distribution. For example, the SpectroEye Swiss ink formulation system including spectrophotometer SpectroEye and InkFormulation not only can measure the print dot, density value, but also can measure Hue, Saturation and Luminosity; InkFormulation only A small concentration scale creates an accurate database. Color matching data can be offset-oriented or flexo-, gravure- and screen-printable, providing a variety of ink formulation sorting methods, such as hue similarity, metamerism value, spot ink unit price, ink usage, Ink thickness and so on. Therefore, the application of numbers fundamentally breaks through the constraints of empirical color matching and satisfies the development requirements of the higher quality, shorter cycle, and lower cost of the color box printing industry.
The online print quality inspection and control system uses high-definition, high-resolution, high-speed camera lenses to capture images. Standard sample data is used as the standard. Differences and differences between real-time contrast-detected images and standard samples (such as those generated during the printing process) Traces, dots, chromatic aberrations and other errors). The 0.10mm size defect can be accurately found even if the defect is only one gray level difference from the standard image. This system can completely eliminate human error, achieve high-speed, high-precision, 100% real-time detection of color box prints, and establish a unified, quantifiable inspection standard.
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