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MTA02 Micro Force Displacement Test Control System

NegotiableUpdate on 01/24
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Overview
MTA02 Micro Force Displacement Test Control System
Product Details

FT-MTA02It is a micro robot system that integrates micro nano mechanics testing, micro nano mechanical performance testing, micro nano 3D manipulation, and assembly. High resolution sensing probes combined with high-precision 3D mobile stations can directly and simultaneously measure accuratelyMicro forces within the range of 5nN~100mN and micro displacements within the range of 1nm~26mm. Micro forceps with force sensing can manipulate or assemble objects ranging from 0 to 100um, including picking up, moving, stretching, etc. Thanks to its modular design, FT-MTA02 can be used in conjunction with many instruments, such as probe stations, various optical microscopes, industrial production line integration, etc. Very suitable for micro nano mechanical testing and manipulation research in fields such as MEMS, materials, and biology.

2、 Function

lmajor function

Microsystem testing:The mechanical parameters that are frequently tested include stiffness, Young's modulus, linearity, adhesion, hysteresis, deflection, actuator force, yield strength, creep, and morphology. By quantitatively measuring mechanics at the microscale, the development time and cost of MEMS can be reduced, as faulty devices can be detected early and the quality of the manufacturing process can be tested.

Material Mechanics:The development of smart materials has opened up broad application and product prospects for the field of microsensors and microactuators. Quantitative micro - and nano scale material testing is key to designing advanced materials and material compounds.

Biomechanics:Due to the close connection between the mechanical properties of biological samples and their physiological functions, a new field called mechanobiology has emerged. Affects biological systems at the level of organisms, tissues, and cells.

Therefore, multi-scale mechanical testing plays an important role in understanding the relationship between mechanics and biological processes in the field of mechanobiology.