Jacketed Stainless Steel Vessel
Controls Mixing Temperature Precisely
Controls Mixing Temperature Precisely
Controls Mixing Temperature Precisely
Model No. :
Brand : BEVS
The BEVS 2511 Jacketed Stainless Steel Vessels are essential accessories designed to maintain precise temperature control during critical laboratory mixing, dispersion, and grinding operations. The integrated jacketed design permits connection to an external chiller or circulator, ensuring the stability and reproducibility of temperature-sensitive formulations throughout the entire processing cycle.
- Integral temperature management capacity
- Constructed from durable stainless steel
- Available across various laboratory volumes
− Features
- Integrated Double-Wall Jacket: Features an external jacket that allows circulating heating or cooling fluid, enabling precise thermal control of the sample material during high-shear mixing, which is critical for rheological and stability studies.
- Premium Stainless Steel Construction: Manufactured from high-grade stainless steel, offering excellent chemical resistance, easy cleaning, and long-term durability in demanding laboratory environments.
- Wide Range of Capacities: Available in six standard laboratory sizes: 0.5 L,1.5 L,3 L,5 L,10 L, and 20 L, ensuring the perfect match for all models in the BEVS 2501 Lab Mixer series.
- Optimized Compatibility: Designed to seamlessly integrate with the BEVS 2501 Lab Mixer range, ensuring stable mounting and proper impeller clearance for repeatable mixing geometry.
- Enhanced Process Consistency: By stabilizing the batch temperature, the vessels eliminate temperature fluctuations that can affect material viscosity, dispersion quality, and final product properties, leading to highly reproducible results.
+ Technical Specifications
| BEVS 2511/1 | 0.5L |
| BEVS 2511/2 | 1.5L |
| BEVS 2511/3 | 3L |
| BEVS 2511/4 | 5L |
| BEVS 2511/5 | 10L |
| BEVS 2511/6 | 20L |
+ Application & Standards
These vessels are indispensable in R&D and Quality Control environments where the formulation process is sensitive to temperature. Key applications include the preparation of paints, coatings, adhesives, and chemical suspensions where heat generated by high-shear dispersion must be removed, or where the material must be maintained at an elevated or reduced temperature for accurate viscosity measurement and stability testing.
+ Resources
+ FAQs
What is the highest viscosity value the BEVS 1131/360 can measure?
This model, using Spindle 3, is capable of measuring dynamic viscosity up to 360 Poise, which translates to 36,000 centipoise (cP).
Why is a fixed 562 rpm speed important for high-viscosity materials?
The fixed high speed ensures a constant, high rate of shear is applied. This shear rate is necessary to accurately simulate the forces that high-viscosity coatings experience during application processes like spraying or pumping.
Is the BEVS 1131/360 suitable for extremely thick materials like mastics or sealants?
With a range extending up to 36,000 cP, the BEVS 1131/360 is highly suitable for testing a wide variety of thick, high-solids materials, including many industrial coatings and high-viscosity adhesives.
If my material is slightly over 360 Poise, will the measurement be inaccurate?
Measurements slightly above the maximum range of 360 P will exceed the calibrated ±1% accuracy threshold. For materials consistently exceeding this limit, a different type of viscometer with a higher torque range would be required.
Does the instrument require a specific sample can size for this spindle?
Yes, the BEVS 1131 series is typically standardized to use a 250 ml tin can for the test sample, ensuring the sample geometry and volume are consistent for all measurements.
Features
- Integrated Double-Wall Jacket: Features an external jacket that allows circulating heating or cooling fluid, enabling precise thermal control of the sample material during high-shear mixing, which is critical for rheological and stability studies.
- Premium Stainless Steel Construction: Manufactured from high-grade stainless steel, offering excellent chemical resistance, easy cleaning, and long-term durability in demanding laboratory environments.
- Wide Range of Capacities: Available in six standard laboratory sizes: 0.5 L,1.5 L,3 L,5 L,10 L, and 20 L, ensuring the perfect match for all models in the BEVS 2501 Lab Mixer series.
- Optimized Compatibility: Designed to seamlessly integrate with the BEVS 2501 Lab Mixer range, ensuring stable mounting and proper impeller clearance for repeatable mixing geometry.
- Enhanced Process Consistency: By stabilizing the batch temperature, the vessels eliminate temperature fluctuations that can affect material viscosity, dispersion quality, and final product properties, leading to highly reproducible results.
Technical Specifications
| BEVS 2511/1 | 0.5L |
| BEVS 2511/2 | 1.5L |
| BEVS 2511/3 | 3L |
| BEVS 2511/4 | 5L |
| BEVS 2511/5 | 10L |
| BEVS 2511/6 | 20L |
Application & Standards
These vessels are indispensable in R&D and Quality Control environments where the formulation process is sensitive to temperature. Key applications include the preparation of paints, coatings, adhesives, and chemical suspensions where heat generated by high-shear dispersion must be removed, or where the material must be maintained at an elevated or reduced temperature for accurate viscosity measurement and stability testing.
Accessories
Software
FAQs
What is the highest viscosity value the BEVS 1131/360 can measure?
This model, using Spindle 3, is capable of measuring dynamic viscosity up to 360 Poise, which translates to 36,000 centipoise (cP).
Why is a fixed 562 rpm speed important for high-viscosity materials?
The fixed high speed ensures a constant, high rate of shear is applied. This shear rate is necessary to accurately simulate the forces that high-viscosity coatings experience during application processes like spraying or pumping.
Is the BEVS 1131/360 suitable for extremely thick materials like mastics or sealants?
With a range extending up to 36,000 cP, the BEVS 1131/360 is highly suitable for testing a wide variety of thick, high-solids materials, including many industrial coatings and high-viscosity adhesives.
If my material is slightly over 360 Poise, will the measurement be inaccurate?
Measurements slightly above the maximum range of 360 P will exceed the calibrated ±1% accuracy threshold. For materials consistently exceeding this limit, a different type of viscometer with a higher torque range would be required.
Does the instrument require a specific sample can size for this spindle?
Yes, the BEVS 1131 series is typically standardized to use a 250 ml tin can for the test sample, ensuring the sample geometry and volume are consistent for all measurements.
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