Particle Surface ColoriMeter

The particle surface colorimeter captures the visible spectrum reflected from the particle surface using optical sensors and calculates the difference in chromaticity coordinates. It is used to detect color consistency in materials such as pigments and plastic pellets, controlling the color difference range across production batches.
Selection
When selecting, focus on matching the measurement aperture to the particle size, consider the instrument's repeatability accuracy and lighting conditions. Check whether it complies with industry standards and fits into existing quality control processes. Evaluate equipment maintenance requirements and environmental adaptability.

Terms

Instruments

With 15 °, 45 °, 110 ° three-angle measurement function, can simultaneously obtain Color data, flicker and particle grade; built-in automatic white calibrating, no human intervention; with stable long-life LED Illuminant, the service life is up to 10 years.

$ 11100.00

Measurement range 0.5-3000 μm, maximum resolution 0.1μm, support more than 30 image analysis functions, Particle size distribution and morphology analysis.

$ 5237.00

The image method is used to analyze the particle morphology and particle size, the test range is 1~ 3500 μ m, the system magnification is 4000 times, the automatic segmentation success rate exceeds 93%, and paraMeters such as length-diaMeter ratio and sphericity can be counted.

$ 5366.00

100L/min Sampling flow rate and six particle size channel detection, equipped with long life laser Illuminant and imported air pump, support Touchscreen operation and USB data export function.

$ 10578.00

Using 50L/min Sampling flow rate and six particle size channel synchronous detection, equipped with semiconductor laser Illuminant and Touchscreen control, built-in thermal printer supports real-time data output, Continuous Operating Time up to 5 hours.

$ 8461.00

The image method is used for particle morphology analysis, the measurement range is 0.1~ 3000μm, the total magnification is 8000 times, and the automatic segmentation and measurement of various geometric paraMeters are supported, and the operation is efficient.

$ 8949.00

The image method is used for particle morphology analysis, the measurement range is 0.1~ 3000 μ m, the total magnification is 8000 times, and it has the functions of automatic segmentation and measurement of various geometric paraMeters.

$ 12176.00

Image segmentation technology is used to process overlapping dust and maintain particle prototype; Measurement range is 0.1~ 3000μm, repeatability error ≤ +/- 1%; support custom particle size classification and various image processing methods.

$ 9998.00

Using light scattering principle to detect 0.3-10 μ m particle size, Sampling flow rate 28.3L/min, built-in lithium battery supports 6 hours of work, can directly save data to U disk, equipped with thermal printer for on-site output.

$ 3922.00

With six-channel particle size detection and 2.83L/min Sampling flow rate, using laser Illuminant life of over 30,000 hours, support UCL calculation and Built-in Printer, AC-DC dual-use can work continuously for more than 6 hours.

$ 848.00

With six particle size channel detection capability, sampling capacity of 2.83L/min, built-in lithium battery supports 6 hours of continuous operation, using semiconductor laser Illuminant and color Touchscreen design.

$ 2510.00

Made of stainless steel, the range is 0-100μm, Graduation is 5μm, and the plane flatness of the scraper is 0.003mm to ensure accurate and reliable particle fineness measurement.

$ 138.00

With six-channel particle size detection capability, Sampling flow rate 2.83L/min, using long-life laser Illuminant to ensure Stability, built-in thermal printer and support AC and DC power supply, can work continuously for more than 6 hours.

$ 1171.00

Made of stainless steel, good wear resistance, accuracy of +/- 2 µm, surface roughness of 0.1, can quickly determine the particle dispersion fineness of various materials.

$ 202.00

Test range 0.5~ 3000μm, Maximum magnification 4000 times, can analyze the number of particles, area, circumference, diaMeter, aspect ratio and other distribution data, support a variety of formats of test report output.

$ 6205.00

Articles

Colorimeter controls batch color difference in plastic and rubber films.
This article primarily discusses how to use a colorimeter to control color differences in the production of plastic and rubber films. It explains the working principle of the colorimeter, which involves converting colors into numerical values represented by L, a, and b values, and then calculating the color difference.
Colorimeter evaluates the change in yellowing index of transparent resin.
This article introduces how to use a colorimeter to measure the yellowing index changes in transparent resin. Transparent resin can turn yellow over time or due to environmental influences, and the yellowing index can quantify the degree of color change.
Application of Colorimeters in Color Management for Packaging and Printing
This article mainly discusses the application of colorimeters in color management for packaging and printing. A colorimeter is an instrument used to measure color, capable of converting colors into numerical values, such as representing them with L*a*b* values.
Multi-angle colorimeter detects color changes in pearlescent coatings.
Pearlescent coatings contain special flake pigments that produce color effects that vary with the viewing angle, known as "goniochromism." Traditional single-angle measurements struggle to accurately capture this characteristic.
Application of Colorimeters in Controlling Color Differences in Paint Batches
This article introduces the role of colorimeters in controlling color consistency in paint production. Since human judgment of color is easily influenced by lighting and subjective factors, colorimeters quantify color differences in the CIELAB color space by measuring spectral data, providing an objective basis for production.
Application of Colorimeter and Color Matching Box in Pigment Color Inspection
A colorimeter and a light booth are two primary tools in pigment color inspection. The colorimeter measures color through photoelectric principles, while the light booth provides a standardized light source environment for visual evaluation of color effects, metamerism, and other phenomena.