TA Instruments RPA elite with Sample Pressure Sensor 470000.902
The TA Instruments RPA Elite with Sample Pressure Sensor 470000.902 is an advanced rotorless rotational shear rheometer designed for the complete characterization of rubber, compounds, and polymers at various manufacturing stages. It provides viscoelastic data on materials in both uncured and cured states, offering precise torque and viscosity measurements over a wide range of testing conditions. The instrument features a highly flexible architecture, allowing for capabilities such as large amplitude oscillatory testing, post-cure characterization, and programmable sealing pressure.
Key Features:
- High-resolution motor with 100% strain control
- Proprietary stiffness and transducer sensitivity for noise-free data
- Completely programmable parameters including strain, frequency, time, temperature, and pressure
- Autosampler for automatic operation
- Wide combination of tests provided
- Pneumatic locking cylinders with adjustable platen closing force and pressure sensor
Advantages:
- Provides precise and reliable viscoelastic measurements for rubber and polymer materials
- Enables comprehensive characterization of materials at different manufacturing stages
- Allows for high-level testing capabilities such as large amplitude oscillatory testing
- Offers programmable sealing pressure for versatile testing options
- Enhances research and quality control processes in material science applications
Product Details
Overview
| Model | |
|---|---|
| Product Type | Spare Parts |
| Part Number | 470000.902 |
| Brand | TA Instruments |
| Gross Dimensions (WxDxH cm) | |
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| Gross Weight (kg) | |
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Specifications
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TA Instruments
TA instruments provides innovative material characterization instruments that are widely used for research, analysis, and quality control in the evaluation of physical properties. We are the world’s leading supplier of thermal analysis, rheology, and microcalorimetry instruments, and our product areas have expanded to include thermal conductivity & diffusivity, dilatometry, rubber testing, and dynamic mechanical characterization.