1. Product Function and Application
The Cryogenic Fabric Flex and Abrasion System is designed to evaluate the flexibility, durability, and abrasion resistance of materials at extremely low temperatures, such as –320°F (–196°C) using a liquid nitrogen cooling chamber.
This system allows researchers and material engineers to assess how textiles, leathers, composites, or coated fabrics perform under cryogenic conditions commonly encountered in aerospace, automotive, and protective gear applications.
The system tests two specimens simultaneously, providing consistent and repeatable results under sub-zero conditions.
2. Applicable Test Standards
Custom-designed for cryogenic material flex and abrasion evaluation
Capable of adaptation to OEM and laboratory-defined procedures simulating extreme low-temperature environments
3. Technical Specifications
| Feature | Specification |
|---|---|
| Test Capacity | Single station, accommodates 2 test specimens |
| Operating Temperature Range | Down to –320°F (–196°C) within nitrogen environment |
| Test Chamber Construction | Aluminum and stainless steel with Styrofoam perimeter insulation |
| Chamber Cover | Clear polycarbonate lift-off lid for visual observation during testing |
| Test Sample Clamping | Manual clamping mechanism before test initiation |
| Stroke Adjustment | Manual adjustment before test initiation |
| Sample Gap / Compression | Manually adjustable prior to testing |
| Bearings | Custom non–oil impregnated bronze shaft bearings |
| Thermal Isolation | Garolite G-10 thermal brake drive tube (rated to –450°F) |
| Surface Treatment | Aluminum anodizing not included (for cryogenic compatibility) |
| Internal Wiring | Fully integrated and insulated for low-temperature operation |
| Cooling Medium | Liquid nitrogen or nitrogen vapor |
| Construction Materials | All aluminum and solid stainless steel |
| System Type | Bench-top nitrogen chamber with integrated mechanical test assembly |
4. Product Advantages and Features
Engineered for ultra-low temperatures — suitable for cryogenic research and extreme environmental simulation.
Dual-sample testing allows for parallel evaluation and improved throughput.
Simple manual adjustments for stroke, clamp force, and sample spacing ensure easy setup and repeatability.
Thermally isolated drive system with G-10 components prevents heat transfer into the nitrogen chamber.
Oil-free, low-maintenance bearings designed for cryogenic compatibility.
Robust aluminum and stainless-steel frame ensures structural stability and corrosion resistance.
Transparent polycarbonate cover provides safe visual monitoring of test operations.
Compact and ergonomic bench-top design, ideal for laboratory environments.
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Moocy
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