Fully Automatic Constant Temperature ViscoMeter

The fully automatic constant temperature viscometer maintains the sample at a constant temperature through a temperature control system, measures fluid resistance by rotating the rotor driven by a motor, and records torque via a digital sensor to convert it into viscosity values. It is used for detecting the flow characteristics of coatings and inks, quality control of coating liquids for printing paper, and determining the melt index of plastics to ensure the stability of production processes.
Selection
When selecting, consider the measurement range covering the viscosity range of the samples, temperature control accuracy matching material characteristics, and rotor configuration adapting to different fluid types. Focus on automation features to reduce operational errors, ensure data output formats are compatible with existing systems, and incorporate protective designs to handle corrosive samples.

Terms

Standards

Instruments

Using positive pressure test principle, Measurement range 0~ 1.6MPa, fully automatic operation, support three test modes, built-in calibrating program, suitable for quantitative measurement of various sealing performance indicators.

$ 1332.00

Adopt fully enclosed and environmentally friendly Compressor refrigeration system, Temperature Uniformity +/- 0.05 ℃, can directly start refrigeration at 200 ℃ high temperature, equipped with multiple Safety protection devices to ensure stable and reliable operation.

$ 3478.00

Measurement accuracy of 0.1 ℃, range of 0~ 100 ℃, real-time display of temperature values, suitable for a variety of Viscometer models, to ensure a stable test environment.

$ 135.00

The fully automatic electronically controlled hydraulic pump provides smooth and continuous pulling force with +/- 1% accuracy, built-in rechargeable battery supports 200 tests, and IP65 Protection Rating ensures durability.

$ 4212.00

Temperature range -40~ 130 ℃, Temperature Fluctuation ≤ +/- 0.5 ℃, using imported Air-Cooled fully enclosed refrigeration Compressor, with grounding protection, over-temperature protection, refrigerator overpressure overload protection and other functions.

$ 5187.00

Microcomputer PID temperature control technology, Temperature Fluctuation +/- 0.05 ℃, equipped with a 70 opening easy to beaker fixed, fully enclosed Compressor refrigeration fast and stable, 304 stainless steel corrosion resistant and durable.

$ 922.00

Fully enclosed metal Furnace body to enhance Baseline Stability, with imported alloy Sensor to enhance corrosion resistance; Temperature range covering room temperature to 600 ℃, support 0.1~ 100 ℃/min program temperature control, with 0.001 ℃ resolution and Automatic calibration function.

$ 3672.00

Adapt to a variety of Viscometer use, suitable for factory field applications, real-time printing measurement results, no need to hand copy, easy operation, can save labor time.

$ 183.00

Measurement range 37~ 141KU and 10-5000cP, fully automatic test cycle ensures high Repeatability, robust construction suitable for pRoduction environment or laboratory.

$ 7655.00

Fully automatic heating cabin door dual-drive ultra-quiet opening, 230 ℃ limit heating temperature to meet most sample tests, equipped with imported HBM weighing Sensor and four stainless steel heating cabin, Capacity 110g, moisture readability of 0.01%.

$ 1171.00

Using 7-inch true color Touchscreen and 32-bit microprocessor, Temperature range RT +~ 400 ℃, with automatic atmospheric pressure compensation and over-temperature protection function, the test process is fully automated.

$ 5399.00

Using titanium alloy heating tube and hidden water heating, the heating rate is 0~ 2.0 ℃/min, Temperature uniformity +/- 2 ℃. Ultrasonic atomization tower and circulating fan ensure uniform atomization, support intermittent humidification and automatic water inlet protection.

$ 6205.00

Pneumatic fixture to achieve automatic clamping, no manual operation; Measurement range covers 10~ 16000mN, support a variety of sheet material Tear strength detection, equipped with 3.2 inch LCD display and thermal printer.

$ 2308.00

Adopt a new generation of High Accuracy Sensor to ensure stable and reliable weighing, with a reaction time of less than 2 seconds, a fully automatic internal calibration function triggered by time and temperature, and support for a variety of weighing units.

$ 935.00

Using slot-die coating method, application width ≤ 500mm, thickness range 10-250μm; equipped with automatic deviation correction and constant tension system, Oven temperature RT +~ 160 ℃, support segmented thermostatic, ensure Spreader accuracy +/- 3 microns.

$ 61393.00

Articles

Application of High-Temperature Viscometer in Testing the Melt Viscosity Characteristics of Hot Melt Ink
This article introduces a method for testing the melt viscosity of hot-melt ink using a high-temperature viscometer. The test employs a rotational viscometer to measure the viscosity of three ink samples at different temperatures.
Application of Cone-and-Plate Viscometer in Determining the Rheological Curve of Non-Newtonian Fluids in UV Inks
This article introduces how a cone-plate viscometer measures the rheological curve of UV ink. UV ink is a non-Newtonian fluid whose viscosity changes with shear rate.
Guide to Selecting a Laboratory Rotational Viscometer for Coatings Development
This article introduces how to select a laboratory rotational viscometer in coatings research and development. It first explains the principle of rotational viscometers measuring viscosity based on shear resistance, and then points out that key parameters to consider during selection include measurement range, shear rate, temperature control, and rotor configuration.
High-temperature viscometer evaluates the flow characteristics of ceramic coatings before sintering.
This article introduces how to use a high-temperature viscometer to evaluate the flow characteristics of ceramic coatings before sintering. During measurement, the instrument detects changes in the viscosity of the coating sample under simulated sintering temperature conditions using rotational or oscillatory principles.
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.
High-temperature viscometer measures the flow behavior of powder coatings in the molten state.
This article introduces the use of a high-temperature viscometer to measure the flow behavior of powder coatings in their molten state. Powder coatings need to melt and flow before curing, a process that directly affects the smoothness and performance of the coating.
Temperature-controlled Rotational Viscometer Simulates Coating Rheology in Construction Environments
This article introduces how to use a temperature-controlled rotational viscometer to simulate construction environments in order to study the flow characteristics of coatings. The viscosity of coatings changes under different temperatures and shear conditions, which affects their application performance.
Comparison of Rotational Viscometer and Capillary Rheometer in Testing the Flowability of Resin Processing
The rotational viscometer measures torque via rotor rotation, making it suitable for testing the static or low-shear fluidity of resins under low shear rates, with simple and quick operation. The capillary rheometer, on the other hand, forces samples through a capillary to simulate high-shear processing, providing flow data closer to actual production conditions, but it is more complex and time-consuming to operate.
Rotational Viscometer Measures Viscosity and Processability of Resin Melts
A rotational viscometer calculates viscosity by measuring the torque experienced by a rotor as it rotates in the resin melt, thereby helping to understand the material's processing properties.
Rotational Viscometer for Measuring and Controlling the Application Viscosity of Coatings
A rotational viscometer is a commonly used tool for controlling the viscosity of coatings during application, as it measures the torque generated by a rotor rotating in a fluid to calculate viscosity.
Method for determining the dynamic viscosity of varnish using a falling ball viscometer
This article introduces a method for measuring the dynamic viscosity of varnish using a falling-ball viscometer. It is based on Stokes' law, which calculates viscosity by measuring the time required for a standard small ball to fall a fixed distance in a vertical glass tube filled with varnish.
Stormer Viscometer for Determining Krebs Viscosity of Paints
This article introduces the method of measuring the Krebs viscosity value of colored paints using a Stormer viscometer. Viscosity is a key indicator that affects the application and storage of coatings. The Krebs unit (KU) quantifies viscosity based on the resistance encountered by a rotor as it rotates within the paint sample.
Rotational viscometer measures the viscosity of paint at low shear rates.
This article introduces the method and significance of measuring the viscosity of colored paint at low shear rates using a rotational viscometer.
Standard Method for Measuring the Melt Viscosity of Hot Melt Adhesives with a Rotational Viscometer
This article introduces the standard method for measuring the molten viscosity of hot-melt adhesives using a rotational viscometer. During the measurement, the hot-melt adhesive sample must be fully melted and degassed, placed into a measuring cup, and then measured with the rotational viscometer at a set temperature.
The cone and plate viscometer measures the rheological properties of a small amount of ink sample.
A cone-plate viscometer measures torque through rotation between the cone and plate, enabling the analysis of rheological properties with small ink samples. It is suitable for small-volume measurements, reducing interference from solvent evaporation.