A New MEMS-Based Paradigm for Liquid Flow Management

20 Jun 2012
Roger Wayman
Administrator / Office Personnel

Product news

RheoSense Inc. has introduced its new E chip that expands the range of viscosity measurements with significantly greater shear rates.

Mounted on the m-VROC viscometer, the E chip attains 2,000,000 1/s measurements of water-like viscosity or 1,000,000 1/s for various injket inks (~ 4 mPas).

Industrial processes such as inkjetting, coating, printing and injection include high shear flows. Paper coating, inkjetting, and engine lubrication engage shear rates over 1,000,000 1/s.

With conventional viscometers, viscosity measurement at high shear rates has been very difficult. This is because the flow becomes turbulent or unstable and invalidates measurements. Measurements, therefore, have to be repeated, using more samples and resources.

Using the E chip eliminates the onset of early turbulence. The well-defined, micro-fabricated uniform flow channel of the E chip maintains the laminar flow at high shear rates, producing accurate measurements. This viscosity measurement is facilitated by the higher full scale pressure of the chip.

VROC

RheoSense Inc.

The VROCTM measures the true viscosity curve of complex liquids and organic compounds. It is the perfect solution for the following applications: Laboratory · Micron sample R&D · High shear rate viscosity measurement · High throughput analysis · Portable On-line quality control · Real time QC

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RheometryRheometers are used to measure the rheology of fluids, which is the flow of fluids in response to an applied force. The most common types of rheometer include shear rheometers (capillary, cone and plate and rotational cylinder) and extensional rheometers. Viscometers are similar to rheometers however viscometers only measure the viscosity of a fluid.ViscometersViscometers are used to measure the viscosity of a fluid. Types of viscometer include rotational, vibrational and falling piston viscometers. Options for viscometers include modular, portable, benchtop and temperature compensation and density measurement features.Shear RatesLaminar Flow
A New MEMS-Based Paradigm for Liquid Flow Management