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HAAKE™ Rheomix OS Lab Mixers System

HAAKE™ Rheomix OS Lab Mixers / Internal Mixers

Optimize your material processing with the HAAKE™ Rheomix Lab Mixers, a modular component of the HAAKE™ PolyLab™ OS torque rheometer platform. These lab mixers are designed for batch testing of highly viscous materials, simulating real-world industrial processes on a laboratory or pilot plant scale. Ideal for characterizing polymers, elastomers, additives, and fillers, the Rheomix system helps prevent costly production issues by providing in-depth material analysis.

Precise Material Analysis Through Torque Rheometry:

A typical mixer test involves running material at a defined speed (shear rate) while measuring the resulting torque. The temperature-controlled mixing chamber, with independent heating and cooling zones, allows for precise control. Crucially, the system also records the change in melt temperature caused by frictional heat, providing a comprehensive “Rheogram” (torque and melt temperature vs. time). This unique “fingerprint” is invaluable for quality control, enabling consistent incoming and outgoing product inspections. Analyze melting behavior, energy consumption, and melt viscosity (indicated by torque) to objectively quantify additive type and concentration.

Versatile Applications for Diverse Industries:

The HAAKE™ Rheomix Lab Mixers offer a powerful and versatile solution for researchers and manufacturers across diverse industries. Explore the capabilities of these advanced lab mixers for applications including:

  • Polymer Melt Testing: Characterize melting and degradation behavior of polymers.
  • Nano-Additive Impact: Measure viscosity changes with nano-particle and other additive incorporation.
  • Plasticizer Studies: Evaluate gelation and plasticizing behavior of materials like PVC dry-blends.
  • Thermoset Characterization: Analyze flow and curing behavior of thermosetting plastics.
  • Rubber Compound Analysis: Understand the influence of additives like carbon black, fillers, and accelerators on rubber mixtures.
  • Elastomer Behavior: Record masticating and vulcanizing behavior of elastomers.
  • Carbon Black Interaction: Measure oil absorption of carbon black.
  • Plasticizer Quantification: Quantify DOP absorption in PVC dry-blends.
  • Filler/Additive Stability: Analyze the combined effects of fillers, stabilizers, lubricants, and color pigments on material stability.
  • High-Performance Plastic Testing: Assess processability of advanced materials.
  • Conductivity Evaluation: Perform electrical conductivity measurements for rubber mixtures.
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