Laboratory Nano Sand Mill

The laboratory nano sand mill utilizes the high-speed rotation of the grinding disc to drive the grinding media, generating shear forces that achieve nanoscale dispersion of material particles through collisions. It is used for sample pretreatment in industries such as coatings and inks to achieve uniform particle size distribution.
Selection
Select the corresponding power according to the material viscosity; match the grinding media material and size based on the target particle size; determine the chamber capacity considering the sample processing volume; adapt a cooling system to prevent overheating; prioritize easily disassembled structures for convenient cleaning and maintenance.

Terms

Standards

Instruments

Centrifugal separation device to achieve large Flow rate discharge, equipped with double mechanical sealing and double chill down mode, grinding Chamber capacity of 0.3L, Power 1.5kw, effective control of ground heat and ensure stable operation.

$ 6205.00

Using 1400rpm speed regulation and 1.5 liters effective volume sand grinding basket, rapid dispersion and grinding are achieved through tensile shear and Impact between sand and material, and the operation is simple.

$ 574.00

Set dispersion and sand grinding functions in one, complete two processes in a single container, speed range 130~ 3000rpm, grinding basket size Φ 80x60mm, high efficiency and easy to clean.

$ 1413.00

The variable frequency motor is used to achieve stepless speed regulation from 0 to 7500 rpm, equipped with dispersed impeller and sand grinding blades, and the dual-axis constant force lifting system has a stroke of 200mm, which can adapt to different experimental requirements and calculate the material reaction relationship.

$ 816.00

1400 rpm high-speed stirring is used to achieve strong tensile shear and Impact between the material and the sand, and the fineness of grinding can reach 25 microns or less, suitable for sample testing, with a capacity of 1.5 liters.

$ 751.00

1400 rpm high-speed stirring is used to achieve strong tensile shear and Impact between the material and the sand, the fineness of grinding can reach 25 microns or less, and the capacity is 1.5 liters, which is suitable for laboratory sample dispersion grinding.

$ 619.00

Using dual-axis constant force lifting system and variable frequency motor, 0-3000rpm stepless speed regulation, equipped with dispersed impeller and sand grinding blades, can directly calculate the relationship between material viscosity and reaction rate.

$ 493.00

The linear velocity of blade disk is 10.5 m/s, the volume of material barrel is 1.8 L, and the aggregates are destroyed by strong impact and shearing to achieve high-efficiency dispersion and mixing, which is suitable for liquid material experiments.

$ 1171.00

Using 1320rpm high-speed dispersion shaft, equipped with 30L grinding cylinder to achieve strong shear impact on the ground, sieve discharge design is easy to clean and change color, adapt to different material fineness adjustment.

$ 3785.00

Continuously variable frequency speed regulation 0-3000rpm, ground medium 0.8-2 mm, stable operation and low noise, can work continuously for a long time, suitable for medium and low viscosity fluids.

$ 3301.00

Cylinder volume 40L with 1020rpm dispersion shaft Rotation speed, can achieve continuous and efficient grinding dispersion, sieve discharge design is easy to change color cleaning operation

$ 4269.00

Cylinder volume 120L, Rotation speed of dispersion shaft 700rpm, using sieve discharge design, can adjust the grinding medium to adapt to different fineness requirements, to achieve continuous and efficient pRoduction.

$ 8126.00

Cylinder volume 80L with 830rpm dispersion shaft Rotation speed, to achieve efficient ground dispersion; sieve discharge design for easy cleaning and color change, to adapt to different material process requirements.

$ 6205.00

Compression stroke 2.50mm, load 237g, suitable for wet mold sand/core surface Hardness measurement, support USB and Bluetooth data output, with average calculation and undervoltage alarm function.

$ 328.00

Suitable for medium and high viscosity materials, using bottom open turbine structure with strong suction pump effect, grinding medium diameter 0.8-2 mm, variable frequency speed range 0-1440rpm, equipped with chill down heating jacket to control material temperature.

$ 4592.00

Articles

The coating machine applies a conductive layer (silver nanowires) for flexible display screens onto a PET substrate.
This article introduces the technique of coating a silver nanowire conductive layer on PET substrates using a film applicator. Silver
Operating Specifications for the Determination of Hexavalent Chromium Content in Wastewater Using Colorimetric Titration Apparatus
This article introduces the standard operating procedure for determining hexavalent chromium content in wastewater using a colorimetric titrator. The method is based on the reaction between hexavalent chromium and diphenylcarbazide under acidic conditions to form a purplish-red complex, with the titration endpoint determined by monitoring changes in absorbance at a wavelength of 540 nanometers.
Comparison of Pigment Fineness Dispersion between Flat Grinding Mill and Sand Mill
Copper nanowire and zinc oxide thin film preparation coater
The coating machine is a key device for preparing copper nanowires and zinc oxide thin films, which uniformly coats slurry onto a substrate through methods such as blade coating to form a thin film.
Preparation of silver nanowire transparent conductive films by the wire bar coating method
The preparation of silver nanowire transparent conductive films using a coating method is an efficient and scalable production process. This article systematically elaborates on the technology from aspects such as principles, materials, processes, performance characterization, and standards.
How to achieve high uniformity in silver nanowire transparent conductive films through wire rod coating
This article introduces how to prepare uniform silver nanowire transparent conductive films using the wire rod coating technique. These films, which use silver nanowires as the conductive material, exhibit high transparency and conductivity, making them suitable for applications such as touch panels.