Speed Centrifuge

A speed centrifuge uses a motor to drive the rotor at high speeds, utilizing centrifugal force to separate components of different densities in a mixture. It is used for laboratory sample processing, such as pigment dispersion in coatings and inks, grading of paper pulp, and separation of plastic particles.

Instruments

The 6-well design supports 15ml capacity Sample Handling, which is suitable for a variety of Centrifuge models and provides stable centrifugal separation results.

$ 127.00

It is designed with 24-hole 0.5ml specification, suitable for a variety of Centrifuge models, with high temperature resistance and high voltage characteristics and excellent chemical Stability.

$ 127.00

Support 100 ℃ high temperature heating, suitable for 24 holes 5ml centrifuge tube, optional electronic ice box and thermostatic metal Bath module, achieve precise temperature control and diverse Sample Handling.

$ 175.00

The 12-well design has a capacity of 5ml per well, uses high transparency material for easy observation of samples, has excellent chemical Stability, and is suitable for mainstream Centrifuge models to improve experimental efficiency.

$ 127.00

Double-sided horizontal mounting design can accommodate 40 5ml centrifuge tubes, suitable for standard centrifuge tube specifications, improving Sample Handling efficiency and ease of operation.

$ 149.00

44 1.5ml or 2.0ml centrifuge tubes can be installed vertically on both sides, providing efficient Sample Handling capability, adapting to a variety of centrifuge tube specifications, and improving the convenience of experimental operation and space utilization.

$ 149.00

Rotation speed up to 600rpm, support 100 ℃ thermostatic operation, equipped with a variety of specifications to meet the needs of different capacity Sample Handling.

$ 175.00

Support 100 ℃ thermostatic treatment, compatible with 35 1.5ml centrifuge tubes, optional 4-degree electronic ice box and intelligent thermostatic module, suitable for a variety of experimental scenarios.

$ 148.00

12 10ml or 15ml centrifuge tubes can be installed vertically on both sides, providing stable fixation and efficient mixing. They are suitable for a variety of centrifuge tube specifications and enhance the convenience of experimental operation.

$ 149.00

Rotation speed up to 600rpm, Temperature up to 100 ℃, Support a variety of module replacement, Adapt to different capacity sample tube, Easy to operate and High Stability.

$ 175.00

Support high temperature treatment at 100 ° C, adapt to 20 0.5ml and 15 1.5ml centrifuge tubes, and use thermostatic metal Bath design to ensure uniform and stable temperature and improve experimental efficiency.

$ 148.00

The 54-hole design is suitable for 0.5ml centrifuge tube, with a maximum temperature tolerance of 100 ° C. A variety of thermostatic modules can be selected to achieve accurate temperature control to meet various experimental needs.

$ 148.00

The maximum speed is 14500rpm, the maximum centrifugal force is 14000xg, and it only takes 15 seconds to accelerate to the highest speed. The unique airflow guidance design keeps the sample low temperature, and the aluminum alloy rotor can autoclaving at high temperature for ultra-quiet operation.

$ 967.00

The maximum dehydrate mass is 200g, the dehydrate speed is 2800rpm, and the time setting range is 0.5-30 minutes. It is suitable for Stock concentration determination and dehydrate sampling.

$ 538.00

Standard HX-D module, support 35 2.0ml centrifuge tubes, withstand 100 ℃ high temperature, adapt to a variety of modules to meet the needs of multi-sample thermostatic treatment.

$ 148.00

Articles

Lab Mixer Selection - Viscosity Determines Torque
This article mainly discusses how to select a laboratory mixer based on the viscosity of the material. The higher the viscosity, the greater the torque required. Low-viscosity liquids are suitable for high speed and low torque, while high-viscosity materials require low speed and high torque.
Practical Guide to Selecting Rotors and Speeds for Rotational Viscometers
A rotational viscometer measures viscosity by detecting the resistance encountered by a rotor rotating in the sample. When selecting a rotor, it is necessary to consider the estimated viscosity range of the sample, ensuring that the torque reading falls within 10% to 90% of the instrument's measurement range, while also taking into account the sample volume and rheological properties.
Rotation Speed of Sample Rack in Hot Air Aging Test Chamber on Color Fastness of Textiles
This article explores the influence of the rotation speed of sample racks in a hot air aging test chamber on the color fastness testing of textiles. The rotation speed affects the flow of hot air and temperature uniformity inside the chamber, thereby altering the heating conditions of the samples and leading to variations in color fastness results.
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.
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.
Effect of Spin Coater Rotation Speed and Acceleration Settings on Photoresist Coating Uniformity
This article primarily explores how the settings of rotational speed and acceleration in a spin coater affect the uniformity of photoresist coating.
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.
Stormer viscometer measures the KU viscosity of latex paint
This article introduces the method of measuring the KU viscosity of latex paint using a Stormer viscometer. The viscometer measures the load required to maintain a fixed rotational speed through the rotation of its paddle, thereby calculating the KU value, which is related to the application and storage properties of the coating.
Rotational Viscometer vs. Stormer Viscometer: How to Choose the Right Instrument Based on Coating Type
The rotational viscometer measures viscosity by detecting rotor torque and can analyze rheological properties at different shear rates, making it suitable for research and precise measurements. The Stormer viscometer uses the load at a fixed rotational speed to determine the KU value, simulating construction conditions, and is commonly used for rapid on-site evaluation of coating application performance.
Application of Stormer Viscometer KU Value in Coating Viscosity Control
This article introduces the application of KU values measured by the Stormer viscometer in the coatings industry. The KU value reflects the viscosity of coatings by measuring the torque at a specific rotational speed, with higher numbers indicating greater viscosity.
If the standard disintegrator procedure for fiber dissociation is not done correctly, the first step of paper strength testing is already compromised.
Fiber disintegration is the first step in paper strength testing. If the operation is not standardized, such as inaccurate concentration, excessive time, or incorrect rotational speed, it can lead to fiber breakage or uneven dispersion, resulting in inaccurate strength data for the prepared hand sheets.