Wet Process Particle Size Analyzer

Wet particle size analyzers measure particle size distribution by dispersing samples in liquid and utilizing laser diffraction or dynamic light scattering. They are used in industries such as coatings and inks to monitor the particle uniformity of raw materials and products, ensuring process stability.
Selection
When selecting, consider that the measurement range covers the sample size, the dispersion system matches the sample properties, the measurement speed fits the production pace, the operation and maintenance align with personnel skills, and the data interfaces connect with existing workflows.
Optical inspection principle
test principle
Special purpose

Terms

Standards

Instruments

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

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

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 6-channel synchronous detection capability, maximum sampling concentration of 35000 pcs/L, using semiconductor laser Illuminant life of 10 years, built-in battery life of more than 5 hours and support data export printing.

$ 1501.00

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

Wet film thickness 13.7 μ m, formed process without wire-wound, wear-resistant stainless steel material, total length 40cm, application width 30cm, easy to clean.

$ 167.00

Spreader formed process to ensure uniform, wet film thickness of 80 microns, diaMeter 10mm design and stable operation, 304 stainless steel material durable and unbroken wire, easy cleaning and maintenance.

$ 178.00

Using stainless steel material and excellent wire-wound process, wet film thickness 148.6μm, application width 300mm, to ensure accurate and durable film, to avoid the problem of broken wire.

$ 160.00

Explosion-proof enclosure design ensures stable operation in harsh environments, can simultaneously monitor multiple particle size dust concentration without changing the cutter, Measurement range 0.01-100 mg/m ³, built-in protective gas curtain to prevent Optical inspection system contamination.

$ 5043.00

Formed process design, wet film thickness 20μm, effective application width 500mm, stainless steel material easy to clean and corrosion resistance, can precisely control the fluid and maintain coating uniformity.

$ 231.00

Articles

Laser particle size analyzer measures the particle size distribution of spray powder.
Laser particle size analyzers measure the particle size distribution of sprayed powder based on the principle of light scattering, which is critical for coating uniformity and adhesion. During measurement, the powder must be dispersed in a suitable medium to avoid agglomeration, and tests should be repeated to ensure accuracy.
Zero-span tensile strength tester measures the tensile strength of wet pulp.
This article introduces the method of measuring the tensile strength of wet pulp using a zero-span tensile strength tester. Traditional testing is often conducted after the pulp is dried, but testing in the wet state can more directly reflect the bonding potential between fibers.
Laser particle size analyzer analyzes particle size distribution of paint pigments.
This article introduces the application of laser particle size analyzers in analyzing the particle size distribution of paint pigments. It mentions that the particle size distribution of pigments affects the optical properties, stability, and rheological characteristics of coatings.
Blue-style grinder achieves efficient grinding of ink fineness.
The basket mill is a type of wet grinding equipment used in fine chemical fields such as ink production. It utilizes a high-speed rotating impeller to drive grinding media, generating shear and impact forces on the slurry, thereby dispersing pigment particles and reducing their fineness.
Sieve Residue Analyzer and Sieve Analysis for Determining Pigment Particle Size Distribution
This article introduces how the sieve residue analyzer measures the particle size distribution of pigments through mechanical sieving.
Porosity Control in the Preparation of Porous Coatings During the Blade Coating Process
Doctor blade coating is a wet coating technique widely used for preparing functional coatings, which involves uniformly applying a slurry containing solid particles (such as ceramics, polymers, or metal oxides) onto a substrate, followed by drying and heat treatment to form the coating.