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LCR Capillary rheometer
LME laboratory extruder
TUS take up system
LEC Laboratory granulator
LMI Melt indexer
CMR Fiber reometer
Viscosensor
Viscoindicator
The LCR7000 Series Capillary Rheometers offer many new features.
They are versatile and easy to use yet offer the most sophisticated materials characterization, data analysis, and reporting capabilities.
The LCR series can be used with a standard load cell and a barrel mounted pressure transducer.
LAB KARS is the most powerful and easy to use rheological Windows™ based software package available. .
Equiped with the new mercury free transducer VERTEX
With step-by-step illustrated instructions within the machine’s software, semi-automated test procedures, and several methods to collect test data, the LMI6000 makes it easier than ever to verify your materials before they enter your process. The LMI6000 can perform ASTM testing methods A, A/B, B, C, and D (D is only avalable with auto-lift model), and can measure intrinsic viscosity [IV] through an altered procedure of test method B. The optional automated lift system allows you to let the machine run most of the test procedures unattended after you pack a small sample of material into the machine’s barrel. Whether you’re a manufacturer, recycler, material researcher, or quality control expert, the LMI6000 plays a critical role in ensuring your material meets the proper specifications before it enters your process. Melt flow rate (MFR), melt volume rate (MVR), and intrinsic viscosity (IV) are critical markers for determining how your material will behave inside your industrial process and within the finished product.
The dual purpose machine draws material from the LME into fibers.
The fiber is wound onto the spindle with a variable speed drive to produce the desired fiber diameter.
The two lower rollers of the TUS pull the extrudate from the LME to form a strand that can be cut into pellets with the LEC Pelletizing Chopper
The ViscoSensor provides continuous measurements of the melt flow rate or apparent viscosity directly on the manufacturing process.
The ViscoSensor system consists of two parts: a Viscosensor Rheologic Sensing Unit (RSU), connected directly to the process, and a Rheologic Control Unit that controls the ViscoSensor test parameters, provides outputs of computed results, and provides communications to an external distributed control system when required.
The Dynisco CMR system consists of two parts: a rheometer head connected directly to the process which samples, conditions, and measures the melt flow of the resin, and an RCU (Rheologic Control unit) that controls the CMR test parameters (temperature, pressure, rate), and provides outputs of computed results, and communications to an external distributed control system when required.
Specifically designed for the synthetic fiber production industry, the Dynisco FCR‐R series can be configured to measure a range of apparent shear viscosities, dual melt flow rate, simultaneous melt flow rate and extensional viscosities using the Cogswell Equations.
Specifically designed for the thermoplastics resin industry. The ViscoIndicator duplicates the test conditions of a laboratory Melt Flow Rate (MFR) tester or capillary rheometer.
Melt viscosity measurements such as melt flow rate and Intrinsic viscosity are primary specifications of thermoplastic resins.
Dont forget- our ViscoIndicator is IoT enabled. The IoT native software of the ViscoIndicator allows for real-time access to your testing information.
With the Dynisco Cloud Connect Subscription, you get comprehensive access of rheological data, correlations, and dashboards.
This interface allows for a complete “Window into the Process” providing valuable insight to your polymer process.
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In condimentum facilisis porta. Sed nec diam eu diam mattis viverra. Nulla fringilla, orci ac euismod semper, magna diam.
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In condimentum facilisis porta. Sed nec diam eu diam mattis viverra. Nulla fringilla, orci ac euismod semper, magna diam.
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In condimentum facilisis porta. Sed nec diam eu diam mattis viverra. Nulla fringilla, orci ac euismod semper, magna diam.
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In condimentum facilisis porta. Sed nec diam eu diam mattis viverra. Nulla fringilla, orci ac euismod semper, magna diam.
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