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Product Details:
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| Type: | Testing Machine | Accuracy Class: | High Accuracy |
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| Accuracy: | ---- | Application: | Auto Testing, Laboratory Testing, Lab Testing |
| Customized Support: | OEM, ODM, OBM | Power: | --- |
| Protection Class: | Ip56 | Voltage: | 220 V |
| Warranty: | 1 Year | Temperature Range: | Room Temperature~1000℃ |
| Gas Flow Rate: | 20~200ml/min | Gas Pressure: | 0.2Mpa |
| Power Supply: | AC220V 50Hz/60Hz | ||
| Highlight: | thermal expansion coefficient tester,static thermomechanical analysis machine,materials creep tester lab |
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Thermal Mechanical Analyzer Static Thermomechanical Analysis Machine Thermal Expansion Coefficient Tester Materials Creep Tester
Overview
The LR-TMA-1000 Thermal Mechanical Analyzer is a high-tech instrument that measures the deformation of a substance under non-oscillating loads as a function of temperature, under programmed temperature control. It is a new type of thermomechanical analyzer characterized by miniaturization, intelligence, and modular design, internationally abbreviated as TMA.
It can measure parameters such as the coefficient of thermal expansion, shrinkage rate, melting point, and creep of materials, and is widely used in laboratories of research institutions, universities, and industrial and mining enterprises for testing materials such as metals, ceramics, glass, polymers, and low-molecular-weight organic compounds.
The static thermo-mechanical method involves applying a certain load to a substance and determining the magnitude of its deformation. Initially, the penetration method was used, where a needle-like indenter touches the sample and a load is applied. As the temperature rises to a certain point, the needle-like indenter moves rapidly; this temperature is taken as the softening temperature of the sample.
By applying a couple to the extension direction of a rod, film, or filament sample to cause rotation, the change in modulus due to temperature changes can be measured.
The tensile method can also be used to determine the softening temperature or thermal shrinkage parameters of materials such as films and fibers. Therefore, any measurement method can be selected depending on the application conditions.
Static thermomechanical analysis is generally used for material dimensional stability, and can also be used to measure the glass transition temperature of polymers such as plastics and rubber.
Instrument Features
1. Small furnace size and light weight; small furnace heat capacity, fast heating and cooling rates, and high furnace temperature control accuracy;
2. Fully automated sampling process, capable of real-time, sensitive, and accurate reflection of sample characteristics;
3. Equipped with multiple working probes for precise measurement of various deformation physical parameters;
4. Equipped with a comprehensive professional intelligent software package with data sampling, data processing, and data output functions;
5. Compact overall instrument size, electric lifting function, and easy operation;
AThermal Mechanical Analyzer Static Thermomechanical Analysis Machine Thermal Expansion Coefficient Tester Materials Creep Tester
Technical Specification
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TMA range |
±2500um |
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Temperature range |
room temperature~1000℃ |
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Heating Rate |
1~20℃/min |
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Temperature Resolution |
0.01℃ |
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Temperature Accuracy |
±0.1℃ |
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Temperature Repeatability |
±0.1℃ |
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TMA Accuracy |
±2% |
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TMA Resolution |
0.1um |
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TMA Resolution |
0.1um |
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Temperature Control Method |
Heating, constant temperature, cooling, and circulation temperature control (fully automatic program control) |
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Curve Scanning |
Full-process scanning for temperature rise, constant temperature and temperature drop |
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Atmosphere Control |
The flowmeter automatically switches between two gas paths (rotameter) |
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Gas Pressure |
0.2Mpa |
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Gas Flow Rate |
20~200ml/min |
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Display Method |
24-bit color, 7-inch LED touch screen display |
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Data Interface |
USB interface, with corresponding operation software |
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Parameter Calibration |
It is equipped with standard calibrators and features a one-click calibration function, allowing users to calibrate the temperature by themselves |
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Power Supply |
AC220V 50Hz/60Hz |
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Sample Requirements |
Solid, the diameter of the sample must be less than 5mm. The height is less than 6mm. Samples vary depending on the type of sample and the purpose of the analysis. Generally speaking, the appropriate length for samples of high molecular polymers is 2 to 6mm, while for samples of other materials, 6mm is preferred. The end faces should be parallel, which makes |
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Contact Person: Kaitlyn Wang
Tel: 19376687282
Fax: 86-769-83078748