Customized Equipment Enclosures,Waterproof Enclosures,Powder Coated Enclosures,Non-Standard Enclosures FCX Metal Structure Co., Ltd. , https://www.fcxmetal.com
**Product Specifications:**
- **Model No.:** FTech-ISO9073(III)
- **Standard:** ISO 9073
- **Trademark:** TESTECH
- **Transport Package:** Plywood Packing
- **Origin:** China
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**Description of Goods:**
The FTech-ISO9073(III) is a high-performance universal testing machine designed for evaluating the mechanical properties of various materials, including tensile strength, tear resistance, elongation, constant load, flexibility, seam slippage, and peeling. It is widely used in industries such as textiles, rubber, plastics, leather, metal, wire, paper, packaging, construction materials, petrochemicals, electronics, and geotechnical engineering.
This equipment supports a wide range of testing standards, ensuring accurate and reliable results for different applications.
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**Relevant Standards:**
| Standard | Description |
|----------|-------------|
| ISO 13934.1 | Stretch Fabric Strip Method |
| ISO 13934.2 | Stretch Fabric Catch Sampling Method |
| ISO 13937.2 | Textile Trouser (Single Slit) Tear |
| ISO 9073.4 | Textile Trapezoid Tear |
| ISO 13936.1 | Method Set Slip Yarn Woven Fabric at the Seams Anti-Slip |
| ISO 13936.2 | Fixed Load Method of Yarn Woven Fabric Seams at the Anti-Slip |
| ISO 13935.1 | Strong Seams Strip Method |
| ISO 13935.2 | Joints Strong Grasp Sampling Method |
| ASTM D5034 | Stretch Fabric Catch Sampling Method |
| ASTM D5035 | Stretch Fabric Strip Method |
| ASTM D2261 | Single Tongue Tear Strength Fabric |
| ASTM D5587 | Trapezoidal Tear Strength Fabric |
| ASTM D4964 | Flexibility Test |
| ASTM D3936 | Peel Strength |
| ASTM D1683 (Substitute 434) | Joint Anti-Slip |
| JIS L1096 | Fabric Tensile, Tear Test |
*Note: This list represents part of the standard support. Some features may require specific grips and sensors depending on the actual test requirements.*
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**Instrument Features:**
1. **Durable Design with Long Lifespan**
The machine is built using high-strength materials and a solid frame. Pre-loaded bearings and precision ball screws ensure stability, while thick beams and base beams reduce belt tension. This design minimizes energy stored during testing, leading to more accurate modulus and strain values.
2. **High Precision Rail and Bending System**
A rigid rail system ensures stable and precise axial testing, minimizing lateral forces that could affect results. This guarantees accurate stress and strain measurements during testing.
3. **Advanced Motor Drive and Servo Control**
The motor drive system uses imported Japanese AC servo drives, offering high-speed performance and low vibration. The dual-belt system synchronizes with the ball screw movement, reducing beam tilt and enabling precise positioning.
4. **Digital Signal Processing (DSP) Technology**
The seventh-generation embedded control system provides high-speed processing, multi-channel data acquisition, and open data management. It supports load, deformation, displacement, and speed measurement and control.
5. **High-Precision Load Cell**
The system includes an imported 24-bit A/D load cell with a sampling frequency of 2000Hz and a maximum resolution of 1/100,000, ensuring accurate force measurement.
6. **User-Friendly Mobile Control Box**
The control box allows easy movement or rack mounting. It displays the machine’s working status and enables precise positioning using buttons and thumb wheels, allowing adjustments down to 0.1 mm.
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**Powerful and Easy-to-Use Control Software (Copyright 2010SR046285):**
- **Component-Based Architecture:** Supports flexible test method combinations and integrates a growing library of standards (GB/T, FZ/T, ISO, ASTM, BS, etc.).
- **Guided Testing Process:** Users can follow step-by-step procedures without needing to reset hardware or software. Online support and easy maintenance ensure long-term reliability.
- **Intuitive Interface:** Simple button operations and clear visual feedback make it easy to select tests, start processes, and monitor results in real time.
- **Customizable Reports:** Generates detailed reports and charts in multiple formats, including Excel, Word, and HTML, to meet specific needs.
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**Optional Accessories:**
- Full set of clamps, accessories, and extensometers available for different testing scenarios.
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**Technical Parameters:**
1. **Test Method:** Based on the Constant Elongation (CRE) principle.
2. **Measuring System:** Imported high-precision force sensor.
3. **Force Measurement Range:** 1% to 100% of full scale.
4. **Full Scale:** 10,000 N.
5. **Minimum Scale Value:** 0.1 N.
6. **Force Measurement Accuracy:** ≤ ± 0.2% F·S.
7. **Clamping Distance:** Digital setting with limit block control.
8. **Clamping Range Adjustment Accuracy:** ± 0.1 mm.
9. **Speed Control System:** Imported Japanese AC servo system.
10. **Tensile Speed:** 0.001–1000 mm/min (digital speed, error ≤ ± 2%).
11. **Instrument Stroke:** 800 mm (beam).
12. **Gantry Width:** 420 mm.
13. **Elongation Resolution:** 0.001 mm.
14. **Sample Holder:** Manual or pneumatic clamping.
15. **Sampling Frequency:** 2000 times/sec.
16. **Power Supply:** AC 220V ± 10%, 50Hz, 1KW.
17. **Dimensions:** 900 × 780 × 1750 mm (L × W × H).
18. **Weight:** 100 kg (standard).
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