Starch Viscosity Tester

The starch viscometer measures changes in resistance during the starch gelatinization process through rotational or capillary methods, reflecting gelatinization characteristics and viscosity. It is used in the food, paper, and textile industries to monitor gelatinization temperature, peak viscosity, and stability, guiding production process control.
Selection
When selecting, consider that the measurement range should cover the sample viscosity interval, the temperature control precision should match process requirements, and it should comply with industry standard methods. Additionally, take into account sample volume compatibility, the convenience of data output interfaces, and daily maintenance costs.

Terms

Standards

Instruments

Using starch measurement special rotor, the sample dosage only needs about 1g, Measurement range of 10000mPa.s, repeability error ≤ +/- 1%, automatic measurement and direct export data.

$ 1987.00

Automatic lifting and stepless speed regulation function, viscosity range of 50~ 1000000mPa · s, built-in temperature program temperature control accuracy +/- 0.1 ℃, fully automatic gelatinization Linear dispersion analysis.

$ 16318.00

Manual lifting design, Rotor speed 0.1-200/min stepless adjustable, built-in automatic temperature optimization program, up to 8 degrees/min, sample volume 10ml, repRoducibility +/- 1% F.S.

$ 5933.00

Stepper motor direct drive to ensure accurate Rotation speed, viscosity measurement range of 50~ 1000000mPa · s, LCD backlight display information, real-time monitoring of viscosity changes, beyond the range of sound and light alarm prompt.

$ 1011.00

500Ml capacity S6 viscosity standard oil, 20 ℃ viscosity 8.911mPa · s, 25 ℃ viscosity 7.498mPa · s, traceable to national standards, compatible with a variety of test equipment calibrating requirements.

$ 472.00

Silicone oil standard liquid viscosity value 11000cp, capacity 400ml, specially designed for Viscometer calibrated, providing stable and reliable viscosity reference standards.

$ 204.00

Stepper motor direct drive gearless, accurate speed; viscosity range of 50~ 1000000mPa · s, repRoducibility +/- 0.5% F. S; LCD liquid crystal with blue backlight display information, can display the maximum viscosity value and has a timing function.

$ 1100.00

Adopt stepper motor direct drive gearless design, the speed is accurate and stable; single-turn multiple sampling technology ensures measurement conformity; viscosity range 1~ 5000mPa · s to 1000000mPa · s, repRoducibility +/- 0.5% F.S.

$ 1424.00

Using 6mm filter diaMeter, viscosity measurement range 188-684cSt, flow time 30-100 seconds, in line with international standards design, suitable for rapid viscosity evaluation of newtonian fluids, aluminum alloy structure to ensure durability.

$ 432.00

Stepper motor direct drive gearless, accurate speed; LCD liquid crystal with blue backlight, display information; can display the maximum viscosity of the rotor at the current speed; measurement timing function; viscosity value display continuous change; beyond the measurement range There are alarm sound prompts; standard RTD temperature Probe; computer full scale linear correction; AC Power Adapter 100V-240V, good anti-interference.

$ 2152.00

Made of stainless steel, the flow hole diaMeter is 2mm, according to DIN 53211, providing accurate viscosity measurement for Newtonian or near newtonian fluids.

$ 581.00

Silicone oil standard solution, calibrated viscosity 380cp, capacity 400ml, suitable for Viscometer calibrating.

$ 185.00

Measurement range of 25~ 120cSt, outflow aperture of 2.53mm, suitable for laboratory viscosity testing.

$ 167.00

Aperture 4.12mm, viscosity measurement range of 70~ 370cSt, aluminum alloy Cup with stainless steel aperture, in line with ASTM D1200 standard, suitable for laboratory viscosity testing.

$ 167.00

Flow hole diaMeter 6mm, Cup height 74mm, stainless steel material, in line with international standards, suitable for Newtonian or near newtonian fluid, providing accurate viscosity assessment.

$ 587.00

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.
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.
The impact of temperature uniformity in laboratory water baths on viscosity measurement
This article discusses the importance of temperature uniformity in laboratory water baths for viscosity measurement. Viscosity is highly sensitive to temperature variations, and uneven temperature distribution within the water bath can lead to deviations in measurement results.
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.
The Zahn cup is used for the daily inspection of the viscosity of electrophoretic paint bath solutions.
This article introduces the application of the Zahn cup in daily inspections of the viscosity of electrophoretic paint bath solutions. The viscosity of electrophoretic paint affects coating quality, making daily inspections crucial. The Zahn cup is simple to operate, cost-effective, and suitable for rapid on-site measurements.
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.
Handheld viscosity cups are used for rapid assessment of paint viscosity at construction sites.
A handheld viscosity cup is a portable tool used to quickly assess the viscosity of coatings at construction sites. It operates based on the flow-out time method, calculating viscosity by measuring the time it takes for the coating to flow out of the cup's orifice. It is suitable for Newtonian or approximately Newtonian fluids.
Application of Desktop Viscometer Cups in Batch Sample Screening at Quality Inspection Centers
This article introduces the application of desktop viscosity cups in batch sample screening at quality inspection centers. Viscosity cups estimate viscosity by measuring the outflow time of fluids, making them suitable for rapid screening.
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.
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.
Rotational rheometer measures the viscosity and processing performance of polymer melts.
A rotational rheometer applies a controlled shear field to measure rheological parameters such as the viscosity of polymer melts. The melt typically exhibits shear-thinning behavior, where its viscosity changes with the shear rate, directly affecting processing methods such as extrusion and injection molding.
The coating machine applies the OLED light-emitting layer onto ITO glass.
This article introduces the technique of using a coating machine to apply OLED luminescent layers onto ITO glass. The coating principle involves matching solution rheology with substrate surface energy, allowing control over film thickness by adjusting parameters such as viscosity and speed.