Asphalt grinder

The asphalt grinder pulverizes asphalt samples to a uniform fineness through mechanical shearing and extrusion, which is used in laboratories to prepare asphalt mixture specimens, ensuring consistent particle distribution for subsequent testing.
Selection
When selecting, consider matching the sample hardness with the motor power, aligning the grinding particle size with the sieve specifications, ensuring the material's corrosion resistance suits the characteristics of asphalt, and verifying that the compact design meets operational space requirements while the maintenance cycle aligns with the frequency of use.

Terms

Standards

Instruments

It adopts copper ring and steel ball structure, supports 2-3.55 gram steel ball configuration, and accurately determines the softening temperature of the material through the drop distance of 25.4 mm, which is suitable for all kinds of asphalt experiment needs.

$ 122.00

Measurement range of 50~ 7600 μm, error +/- 3%, suitable for thick soft coatings such as polyurea and asphalt neoprene, providing accurate thickness detection.

$ 3226.00

Measurement range 0-10mm, accuracy ≤ 0.02mm, Graduation 0.01mm, pressure 22kPa +/- 2kPa, upper probe diaMeter < 10mm plane, simple and reliable structure, handheld and Benchtop two specifications.

$ 267.00

Measurement of thick soft coatings such as polyurea and asphalt, thickness range 50 to 7600 μm, storage of 100,000 readings, ASTM D6132 compliant, non-destructive ultrasonic technology, durable and easy to operate.

$ 3987.00

Can measure 50~ 200000mPa · s viscosity range, Temperature control accuracy of +/- 0.1 ℃, the use of high subdivision stepper motor to ensure smooth Rotation speed, support the whole process of monitoring viscosity - Linear dispersion, beyond the range of automatic alarm.

$ 1645.00

Adopt horizontal three-roller extrusion grinding, roller clearance hand adjustment, maximum processing viscosity 3000000cps, roller can be cooled down water temperature control, fineness control precision, suitable for a variety of viscosity materials.

$ 1745.00

Complete 64 Sample Handling in 1 minute, use vertical oscillation to ensure Stability, noise is lower than 55dB, support dry grinding, wet grinding and low temperature grinding, suitable for a variety of specifications grinding tube.

$ 3139.00

Rotation speed 86rpm, disc diaMeter 240mm, weight of about 7.32kg four pieces of adjustable pressure, double transmission to ensure that the number of revolutions is accurate, concave socket design for easy replacement of grinding, strong anti-interference and foot shock absorption anti-skid.

$ 1313.00

Complete 48 Sample Handling within 1 minute, adopt fully enclosed design to avoid cross-contamination, support 0-70Hz homogenization speed and low temperature grinding mode, and the noise is lower than 55dB to ensure a quiet experimental environment.

$ 2978.00

The surface of the three rollers is squeezed and rubbed at different speeds to achieve grinding. The roller is made of cold hard alloy steel, with a surface Hardness of HS70 ° or more, a fineness of grinding up to 15μm, and a capacity of 350Kg/h.

$ 12983.00

The equipment adopts electric lifting and frequency conversion speed regulation, Rotation speed 0-3000 rpm, equipped with double-decked chilled down jacket and zirconia bead grinding medium to achieve efficient wet dispersion grinding, small temperature rise and easy operation.

$ 2655.00

96 samples are ground in 1 minute, the noise is lower than 55dB by vertical oscillation, the sample tube is fully enclosed to avoid cross-contamination, and the adapter can cool down the liquidnitrogen to achieve a low temperature grinding environment.

$ 3462.00

Three rollers are used for mutual extrusion and friction at different speeds to achieve grinding. Hardness of the roller surface is above HS70 °, and fineness of grinding can reach 15 μm, which is suitable for grinding dispersion of high viscosity materials.

$ 4592.00

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

Adopting three-roll extrusion friction grinding principle, Rotation speed 28-152rpm adjustable, fineness of grinding up to 15μm, Hardness HS70 ° above the surface of cold hard alloy steel roller, support water chilling down system, suitable for high viscosity material processing.

$ 2090.00

Articles

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.
Mill Selection: Grinding Media and Material Fineness Targets
This article introduces how to select appropriate grinding media based on material characteristics and target fineness during the selection of a grinder.
Process of Three-Roll Mill for Handling High-Viscosity Inks
This article introduces the process of using a three-roll mill to handle high-viscosity inks. It first explains that the equipment utilizes three rollers rotating at different speeds to grind materials through shearing and squeezing actions, making it suitable for high-viscosity systems.
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.
How to Choose Between the Ring and Ball Method and the Cup and Ball Method for Softening Point Testers? Read This and Stop Worrying
This article introduces two main methods for determining the softening point of materials: the ring-and-ball method and the cup-and-ball method. The ring-and-ball method is more widely used and is suitable for materials such as asphalt. It involves measuring the temperature at which a steel ball causes the sample to sink. The cup-and-ball method is often used for specific resins or wax products, relying on the flow of the sample or the penetration of a steel ball to determine the endpoint.