Introduction
Coefficient of Friction Tester supports a force measuring range of 0 to 2 N with a 0.5 level precision. It features a user-friendly design with a touchscreen display for precise data. This tester has the ability to store and print up to 10 sets of data. The work surface spans 200 mm × 470 mm, with a ±2% measurement tolerance. Our tester is designed to measure the static and dynamic friction coefficients of various materials.
This test equipment is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Our Coefficient of Friction Tester is used in packaging, paper, and film industries to measure static and dynamic friction coefficients of materials like plastic film, rubber, paper, and coatings. It helps ensure quality control by assessing surface smoothness, opening difficulty, and uniformity in production.
Specifications
| Force Measuring Range | 0 to 2 N (customizable) |
| Accuracy | 0.5 level |
| Sample Thickness | Up to 2 mm (customizable) |
| Coefficient Measurement Range | 0.001 to 0.999 |
| Slider Size | 63 × 63 mm |
| Test Speed | 100 mm/min (150 mm/min customizable) |
| Slider Mass | 200 g (customizable) |
| Work Surface Size | 200 × 470 mm |
| Measurement Tolerance | ± 2% |
| Power Supply | AC 220 V, 50 Hz |
Features
Stable performance and accurate test results
Simple operation with thermal printing experiment report
Password protection to prevent unauthorized modifications
Compact and durable benchtop structure
FAQs
1. What is the purpose of the Coefficient of Friction Tester?
Coefficient of Friction Tester is designed to measure the static and dynamic friction coefficients of various materials such as plastic films, rubber, paper, cardboard, woven bags, wood, and coatings. It helps manufacturers assess the smoothness, opening difficulty, and uniformity of materials, ensuring better quality control in industries like packaging, paper manufacturing, and film production. By accurately determining friction properties, it enables companies to optimize production processes and maintain product standards.
2. How does the Coefficient of Friction Tester work?
Coefficient of Friction Tester operates by cutting a sample into two pieces, with one placed on the worktable and the other on a slider. The slider is placed on the sensor hanging hole, allowing it to move under the influence of gravity. As the two surfaces move relative to each other, a sensor measures the force exerted, which is then processed to determine the static and dynamic friction coefficients. The collected data is displayed on a touchscreen and can be printed for further analysis.
3. What types of materials can be tested with this Coefficient of Friction Tester?
The Coefficient of Friction Tester can be used to test a wide range of materials, including plastic films, plastic rubber, paper, cardboard, woven bags, wood, and coatings. These materials are commonly used in industries where friction properties are critical for packaging, printing, or surface treatment processes. The tester helps in evaluating material behavior under different conditions to ensure quality and performance consistency.
4. Can the Coefficient of Friction Tester’s parameters be customized?
Yes, It allows customization of key testing parameters of our Coefficient of Friction Tester. The force measuring range (default 0 to 2N) can be adjusted based on requirements. Sample thickness can accommodate up to 2mm, but this can also be customized. The slider mass (default 200g) and test speed (100mm/min, with an optional 150mm/min) can be modified according to industry standards and specific testing needs. This flexibility makes the device suitable for a variety of applications.
5. How accurate are the test results from the Coefficient of Friction Tester?
Coefficient of Friction Tester provides highly accurate results with a measurement tolerance of ±2% and an accuracy level of 0.5. This level of precision ensures that manufacturers receive reliable data for quality control, material selection, and production process improvements. The device’s sensitive sensor and advanced data processing system contribute to its accuracy and repeatability.
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