Products Description
Although the small tensile testing machine is compact in size, it contains a powerful technical core. One of its core advantages is the high-precision testing system. The equipment is equipped with imported high-precision tension sensors, with a measurement accuracy of up to 0.5 grade, which can accurately capture the subtle force value changes of the material during the stretching process. Whether it is a tiny textile fiber or a high-strength alloy material, it can achieve precise monitoring from the initial force to the maximum force, ensuring the authenticity and reliability of the test data. At the same time, the equipment adopts a high-precision ball screw transmission system, with displacement control accuracy of ±0.01mm. Combined with servo motor drive, it realizes the stepless adjustment of the testing speed, meeting the diverse requirements of different material standards for testing rates.
Equipment Advantages

The intelligent operation experience is also a major highlight of the small tensile testing machine. The equipment is equipped with a full-touch high-definition display screen and is equipped with an independently developed intelligent testing system. The operation interface is simple and intuitive, allowing even novice operators to quickly get started. The system is pre-installed with a wealth of standard testing programs, covering international and domestic standards in various fields such as metals, plastics, rubber, textiles, paper, and composite materials. Users can directly call the preset programs for testing without the need for cumbersome parameter settings. At the same time, the system supports custom testing schemes, allowing users to flexibly set parameters such as force, displacement, and speed according to actual needs, to meet personalized testing requirements. During the testing process, real-time curves dynamically display the stress-strain changes of the material, and key data such as tensile strength, yield strength, and elongation at break are automatically calculated and updated in real time, making the testing process clear at a glance.

In terms of data processing and analysis, the small tensile testing machine also performs exceptionally well. The device is equipped with a large-capacity storage module that can store tens of thousands of sets of test data. It supports local query and export of data. After the test is completed, the system automatically generates professional test reports, which cover complete information such as test parameters, raw data, curve charts, and calculation results, meeting the needs of quality traceability and academic research. In addition, the device supports transmitting data to a computer via USB interface or wireless network. Combined with the dedicated data management software, it enables further analysis, statistics, and sharing of data, providing convenience for the quality control system of enterprises and the data analysis of researchers.
Application fields
The application scope of small tensile testing machines is extremely broad, covering almost all industries that require material tensile performance testing. In the metal materials industry, it can be used to test the tensile strength, yield strength and elongation of materials such as steel wires, steel plates, and aluminum alloys, providing quality control basis for metal material smelting, rolling and other production processes; in the plastic and rubber industry, it can detect the tensile performance, elastic modulus and other indicators of plastic films and rubber products, ensuring that the products have sufficient toughness and durability during use; in the textile and clothing industry, it can conduct tensile tests on yarns and fabrics, evaluating their breaking strength, tear strength and other properties, ensuring the quality and wearing safety of textiles; in the medical device industry, it is used to test the tensile performance of medical polymer materials, sutures and other materials, ensuring the safety and reliability of medical devices in clinical use; in research institutions, it is an important tool for material research, helping researchers study the mechanical properties of new materials and providing data support for material innovation.
Equipment parameters
|
Model |
BT-300B |
BT-600B |
BT-1000B |
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Maximum test force(kN) |
300 |
600 |
1000 |
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Accuracy level |
1 |
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Collection method |
Spoke load sensor |
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Piston stroke(mm) |
200 |
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Clamping method |
Hydraulic |
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Test control method |
Microcomputer servo control |
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Compression test space(mm) |
600 |
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Tensile test space(mm) |
700 |
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Total power(kW) |
1.5 |
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Compression platen(mm) |
Φ148 |
Φ198 |
Φ225 |
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Round sample clamping range(mm) |
Φ10-30 |
Φ13-40 |
Φ13-40 |
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Flat sample clamping range(mm) |
0-10 |
0-15 |
0-20 |
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Bending fulcrum span(mm) |
50-300 |
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Bending heart / stick diameter(mm) |
50/50 |
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Number of columns (screws) |
6 column |
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Mainframe dimensions(mm) |
810*560*1910 |
880*570*2050 |
940*640*2250 |
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Host weight(kg) |
≈1620 |
≈2000 |
≈2600 |
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Control cabinet size(mm) |
1010*640*840 |
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Control cabinet weight(kg) |
150 |
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