Nano-material dispersion

Nanomaterial dispersion involves uniformly distributing nanoparticles in a medium through mechanical or chemical methods to prevent agglomeration. Its purpose is to preserve the properties of nanomaterials and enhance the performance of products such as coatings and inks.
Selection
When selecting nanomaterials for dispersion, consider matching particle size with the target, ensuring dispersant compatibility with the medium, choosing methods such as ultrasonication or grinding to meet process requirements, and evaluating stability and cost factors.

Terms

Standards

Instruments

6 channel design with nano space insulation material, can work for 60 minutes in 300 ℃ environment, accuracy of +/- 0.3 ℃, support 200,000 data recording, to achieve high temperature environment stable temperature measurement.

$ 1184.00

8-Channel design supports multi-point simultaneous temperature measurement, using nano-space insulation material to ensure stable operation at 300 ℃ environment for 60 minutes, equipped with K-type Thermocouple to achieve +/- 0.3 ℃ High Accuracy measurement, suitable for high temperature process monitoring.

$ 1390.00

The titanium alloy horn has high strength and corrosion resistance, the processing range is 0.1-300 ml, the output voltage is adjustable 12-24V, and the automatic load of Frequency tracking is stable, which is suitable for handheld or fixed use of trace samples.

$ 727.00

Rotation speed up to 3000rpm, fineness of grinding generally up to 10um or less, liquid-liquid dispersion ground up to sub-micron or even nano level; double-decked chilled down jacket design, conventional temperature rise less than 10º, to ensure pRoduct Stability.

$ 2468.00

With 8-channel temperature tracking capability, nano-aerospace environmentally friendly insulation material, thermal insulation performance up to 700 ° C for 90 minutes, Measurement accuracy +/- 0.3 ° C, support multi-rate sampling and customized insulation box configuration.

$ 3615.00

Speed range 8000-28000rpm, maximum linear speed 27m/s, through mechanical shearing and hydraulic action to achieve efficient dispersion, suitable for a variety of viscosity material handling.

$ 1432.00

Nano thermal energy technology implementation speed uniform heating, can simultaneously process 5 samples, stirring speed 100-1100rpm continuously adjustable, Max.stirring Capacity 2.5L, working panel with acid and alkali microcrystalline Pottery and porcelain material.

$ 816.00

Set dispersion and stirring functions in one, Speed range 100-8000rpm, manual lift Travel 250mm, suitable for fluid material experiments, high efficiency and easy cleaning.

$ 369.00

Explosion-proof design, suitable for flammable and explosive environment; with variable speed stirring function, can quickly and accurately disperse material particles to meet the grinding process requirements of paints, inks and other industries.

$ 2365.00

Using LCD and Button-Operated knob for easy operation, Nano Pottery and porcelain disc improve high temperature hardness and heat resistance Impact performance, support 0~ 1600rpm stepless speed regulation and 0~ 60 ℃ Temperature range, with independent safety circuit and temperature sensing monitoring.

$ 214.00

15 station synchronous processing, nano thermal energy technology implementation speed uniform heating, plate temperature of 200 ℃, sample temperature of 120 ℃, Microcrystalline Pottery and porcelain panel acid and alkali easy to clean, DC motor running smoothly and quietly.

$ 1684.00

The noise at work is only 52 decibels, the exhaust volume is 118 liters/minute, the Nano coating cylinder liner system is adopted, no lubricating oil is required, the gas cleanliness is high, and the automatic design can realize unattended operation.

$ 557.00

15 Station Synchronous Stir, Nano heating technology implementation fast uniform heating, speed range 100-1100rpm continuously adjustable, Max.stirring Capacity 7.5L, Microcrystalline Pottery and porcelain panel acid and alkali easy to clean.

$ 1461.00

Nano thermal technology heating fast and uniform, can simultaneously process 10 samples, Max. stirring Capacity 5L, speed 100~ 1100rpm continuously adjustable, Microcrystalline Pottery and porcelain panel acid and alkali easy to clean.

$ 1259.00

Using Nano coating cylinder liner system, the exhaust capacity is 472L/min, the noise is as low as 54dB, the pure oil-free design ensures that the gas is clean, and the automatic operation does not require special personnel to be on duty, which is suitable for high-demand fields.

$ 2107.00

Articles

Extended Application of Paper Water Absorption Tester in the Dispersibility Evaluation of Tissue Paper
This article explores how to extend the application of an instrument originally used for testing the water absorption capacity of paper to evaluate the dispersibility of tissue paper.
Study on the Dispersion Uniformity of Blade Coating Machines in High-Load Electrode Slurry Coating
This article investigates how to optimize the dispersion uniformity of coatings by adjusting process parameters when using a blade coater to handle high-load electrode slurries.
Selection of laboratory grinders is based on the fineness requirements of coatings, choosing between ball mills or sand mills.
The selection of a laboratory grinder should be based on the fineness requirements of the coating. A fineness greater than 50 microns indicates coarse dispersion, 10 to 50 microns is considered medium fineness, and less than 10 microns requires high fineness dispersion.
When selecting a laboratory disperser, it is essential to evaluate the dispersion capacity and the speed range.
When selecting a laboratory disperser, it is crucial to evaluate the dispersion capacity and speed range. The dispersion capacity should be determined based on parameters such as material viscosity and solid content to avoid uneven dispersion or localized overheating caused by excessive or insufficient capacity.
Capacity Matching for Laboratory Small Dispersers and Pilot Dispersers
This article primarily discusses how to select the appropriate disperser for laboratory research and process development.
Laboratory dispersers achieve efficient dispersion of paint pigments.
This article introduces how laboratory dispersers efficiently disperse paint pigments. They break up pigment agglomerates through mechanical actions such as shear force, involving three stages: wetting, dispersing, and stabilizing.
Selection of disperser speed range and matching of dispersing disc form with container
This article discusses the technical points in the selection of a disperser, including the speed range, the form of the dispersion disc, and the matching with the container.
How to Match the Selection of Fineness Gauge with Grinding Process Requirements
The fineness gauge is used to measure the particle dispersion of materials such as slurries and coatings, reflecting the particle size distribution through the depth of grooves on its surface.
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.
Operating Specifications and Result Interpretation of Paint Fineness Gauges
The fineness gauge is used to measure the dispersion of particles in paint. During operation, the sample should be applied to the groove under standard conditions, and a scraper is used to spread it evenly to form a wet film. The particle visibility is then observed under appropriate lighting, and the fineness value is read from the corresponding scale.
The laboratory pulp wet disintegrator is used for pulp disintegration treatment.
The laboratory pulp wet disintegrator is a device used to simulate the industrial pulping process. It disperses pulp fibers into individual fibers or small fiber bundles through mechanical action, while simultaneously promoting fiber swelling and fibrillation, thereby providing standardized samples for subsequent performance evaluation.
The impact of the disperser impeller structure on dispersion effectiveness.
This article mainly discusses how the impeller structure of a disperser affects the dispersion effectiveness. The impeller is the core component of a disperser, and its design directly influences the uniformity and stability of the final mixture.
Application of High-Speed Disperser in the Preparation of Water-Based Inks
This article introduces the application of a high-speed disperser in the preparation of water-based inks. It first explains the working principle of the equipment, which involves generating shear forces through high-speed rotation to disperse particles.
Ink fineness gauge measures the dispersion degree of pigment particles.
The fineness of grind gauge is a method used to evaluate the dispersion level of pigment particles in ink.
Comparison of Pigment Fineness Dispersion between Flat Grinding Mill and Sand Mill