Information on the most widely used ASTM standards within the materials testing industry
Model: UT1029S-E100, 100N
c with a displacement resolution of less than 0.02 nanometers, and can analyze the microscopic structure and physical property relationships of materials by combining high-resolution transmission electron microscopy and energy spectrum functions. This system supports various testing modes such as tension and compression, and facilitates non-contact strain measurements for samples ranging from 10 micrometers to 1 millimeter, with a measurement accuracy better than 1×10^-5, a maximum load capacity of 10 N, and a load sensor measurement accuracy of ±0.15%.
General introduction
Micro in-situ mechanical testing system can meet the different testing needs of various materials, thereby achieving an integrated characterization of the performance and microstructural evolution of materials from crack initiation and growth to failure under different cycles.
Suitable for various micro-devices Real-time characterization of material microstructural evolution processes, micro-crack initiation, propagation, and fracture processes In-situ symmetrical loading;
In-situ symmetrical loading method can apply different magnitudes of stress to the specimen, keeping the sample moderately located in the center of the field of view, suitable for online observation.

Meet your various testing needs:
Capable of multiple loading modes such as stretching, compression, and shearing
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| In situ tensile testing of heart valve materials | Rubber material tensile test | Integrated Atomic Force Microscope |
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| Compression test of water gel in water bath | Hydrogel cyclic compression test | Integrated super depth 3D microscopy system |
Features
Main technical specification
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