HAAKE™ Rheomex OS Twin Screw Extruder for HAAKE™ PolyLab™ OS Torque Rheometer
Thermo Scientific™

HAAKE™ Rheomex OS Twin Screw Extruder for HAAKE™ PolyLab™ OS Torque Rheometer

With only a small sample quantity, simulate production processes, investigate rheological and substance-specific properties, and test and inspect new formulations with a HAAKE™ Rheomex OS Twin-Screw Extruder for the HAAKE™ PolyLab™ OS System torque rheometer.
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Catalog NumberBarrel Bore DiameterBarrel Length L/D
567-752124 mm40 L/D
567-203131.8/20 mm (rear/front)
567-750816 mm25 L/D
567-750416 mm40 L/D
567-752024 mm28 L/D
Catalog number 567-7521
Price (USD)
-
Barrel Bore Diameter:
24 mm
Barrel Length L/D:
40 L/D

HAAKE™ Rheomex OS Twin-Screw Extruder for the HAAKE™ PolyLab™ OS Torque Rheometer System is available either as a parallel twin-screw extruder or a conical twin-screw extruder and attaches via a plug-and-play connection to the modular HAAKE Polylab Rheodrive OS. With a small sample quantity, customers can simulate production processes, investigate rheological and substance-specific properties, and test, and inspect new formulations.

The HAAKE Rheomex CTW 100 OS is a conical counter-rotating Twin-Screw Extruder that can be used for a wide range of tasks in laboratories and pilot plants when used together with specially designed screws with differing geometries. The conical twin-screw extruder is used for high-shear compounding of materials such as PVC, wood fiber compounding, and blending of polymers with different viscosities. A wide range of applications can be performed using different designed screw to adapt to the needs of the laboratory or pilot plant. The counter-rotating design supplies a positive material displacement from the hopper to the die, delivering high levels of pressure and shear, while allowing control of residence times.

The HAAKE Rheomex PTW 16 or 24 parallel twin-screw extruders have screw diameter of 16 mm or 24 mm, respectively. The horizontally split barrel, with the top half fitting upward, allows easy inspection of the melting and mixing. Parallel twin-screw, small-scale compounder are used for instance for running early-stage compounding and blending tests. For optimization of this behavior, the screws can be configured individually with elements for conveying, mixing and kneading. The segmented top barrel half is constructed in easy to configure modules for feeding and venting.

  • Continuous compounding with twin-screw extruders
  • Twin-screw laboratory extruders have a proven record in continuous compounding with feed-dosing of different additives (liquids or solids) along the extruder barrel
  • Combination of a twin-screw extruder unit with additional sensors offers the ability to measure material properties of the melt during processing

Typical twin-screw investigations:

  • Compounding of polymers with additives, reinforcing fibers, and fillers
  • Viscosity and flow behavior of the compound
  • Extrudability and scale-up data
  • Reactive extrusion
  • Morphology of polymer and nanocomposites
  • Decomposition of biopolymers
  • Influence on screw design on the viscosity

Compatible with:
Peripheral devices such as feeding systems, application-specific screws, mixer rotors, or extruder downstream equipment combine different modules to a complete downsized production line for the testing or small-scale production of new materials:

  • Extrudate cooling baths
  • Take-off units
  • Blown film tower
  • Inspection systems
  • Feeders
  • Pelletizers
  • Melt pumps
  • Capillary rheometers
Specifications
BarrelParallel, horizontally split
Barrel Bore Diameter24 mm
Barrel Zones10 - Heating/cooling
DescriptionRheomex PTW 24/40 OS Parallel Twin-Screw Extruder
IP RatingIP20
Max. Temperature400 °C (optional 450 °C)
Barrel Length L/D40 L/D
Unit SizeEach

Frequently asked questions (FAQs)

When should I choose the Thermo Scientific Process 16 twin-screw extruder instead of the HAAKE Rheomex PTW16 OS extruder?

Choose the Thermo Scientific Process 16 twin-screw extruder if your application requires higher throughput or the incorporation of low-density fillers. The Process 16 extruder supports side feeding, allowing low-density materials to be introduced downstream of the main feed to help improve feeding stability and reduce premature compression. It also offers a higher output range than the HAAKE Rheomex PTW16 OS.

Choose the Thermo Scientific HAAKE Rheomex PTW16 OS extruder if you need a flexible laboratory platform for research, formulation development, quality control, or small-scale production. As part of the HAAKE PolyLab modular system, it allows you to switch between compatible processing units as your application needs change. The PTW16 OS extruder also features a modular, horizontally split barrel that can be extended from 25:1 to 40:1 L/D using a plug-and-play barrel extension, providing additional flexibility for laboratory process development.

More details about the Process 16 extruder can be found on the product page thermofisher.com/process16

How do I choose the right Thermo Scientific HAAKE Rheomex twin-screw extruder for my application?

Choose the Thermo Scientific HAAKE Rheomex twin-screw extruder based on your sample volume, throughput requirements, and processing objectives.

  • Thermo Scientific HAAKE Rheomex PTW16 OS is designed for research, formulation development, and quality control using small sample volumes. Its modular, horizontally split barrel supports quick screw configuration changes and easy cleaning, making it well suited for laboratories evaluating multiple formulations.
  • Thermo Scientific HAAKE Rheomex PTW24 OS is designed for higher-throughput laboratory process development and pilot-scale production. Its modular barrel configuration supports a broad range of polymer compounding and process optimization applications.
  • Thermo Scientific HAAKE Rheomex CTW100 OS is a conical, counter-rotating twin-screw extruder designed for materials that benefit from short residence times and high-pressure processing, including thermally sensitive polymers such as rigid PVC compounds.

Which applications are suited for Thermo Scientific twin-screw extruders?

Thermo Scientific twin-screw extruders are designed for polymer compounding, formulation development, reactive extrusion, additive dispersion, masterbatch development, and evaluation of new materials where controlled mixing and process flexibility are important. Their modular configurations and flexible processing capabilities support laboratory research, process optimization, and scale-up studies across a wide range of polymer applications.