Information on the most widely used ASTM standards within the materials testing industry
Model: UT1029M-E, 2000N
In-situ tensile testing platform: In situ testing technology for mechanical properties of materials can be used to characterize and analyze the microstructure evolution and damage failure mechanism during the service of materials in the process of mechanical properties testing, and to study the inner law among material composition, process, microstructure, mechanical properties, and service behaviors.
General introduction
The in-situ tensile testing platform is a high-precision in-situ tensile test machine designed for real-time material characterization under real-time material characterization, microstructure evolution observation, and damage failure mechanism analysis. It supports simultaneous loading and imaging during mechanical testing, making it ideal for advanced research requiring in-situ mechanical testing system capabilities. Biaxial & Triaxial Testing Machines are used to apply multi-directional loading in two or three axes, providing more realistic stress simulation than single-axis testing.
This miniature tensile testing platform functions as an advanced in-situ loading test system, enabling multi-physical field coupling testing under controlled environments. It is widely used for real-time observation under loading in materials research laboratories.
Our in-situ tensile testing platform is engineered for researchers who require accurate mechanical testing while observing specimen behavior in real time. The compact structure allows easy integration with SEM, AFM, XRD, optical microscopes, and other limited-space analytical systems. It is ideal for studying microstructure evolution, crack initiation, deformation processes, and damage failure mechanisms under controlled loading conditions.
Testing scheme for the mechanical properties of materials under multi-physical field coupling conditions:
During loading, the clamps at both ends move in opposite symmetric directions, keeping the sample always in the center of the field of view, making it very suitable for in-situ online observation.
Combined with optical microscopes, X-ray diffractometers, and other microscopic observation equipment, it achieves online characterization of the microstructural evolution of materials during loading.
It has a proprietary dynamic control system that enables multi-channel closed-loop control of load, displacement, strain, and more.
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| Metal material high temperature tensile testing | Vascular tensile test |
Features
◆ Miniature design, suitable for use in limited space environments such as SEM, AFM, X-ray diffractometer, etc;
◆ The fixture is symmetrically driven in opposite directions by a double threaded screw to keep the sample always in the center of the field of view, achieving in-situ actuation, which is very suitable for online observation;
◆ Can perform tests such as tensile, compressive, bending, shear, creep, relaxation, etc;
◆ Humanized control software allows users to flexibly and conveniently configure multiple testing methods, including stress control, strain control, and displacement control. The loading waveforms include sine waves, triangular waves, trapezoidal waves, etc.
◆ The control software has powerful multi-step loading function and modular test process design function, which can meet the special test requirements of users.
The system is widely used as a micro mechanical testing platform in advanced material research.
Applications include:
· Metals and alloys with microstructure evolution observation
· Polymers and biomaterials testing
· Composite materials and thin films
· Advanced materials with damage failure mechanism analysis
It is suitable for university laboratories, research institutes, and industrial R&D centers.
Main technical specification
| Maximum rated load | 2000N |
| Load measurement range | 0.4%~100%F.S. |
| Load measurement accuracy | Better than ± 0.2% of the indicated value (within the load measurement range) |
| Maximum fatigue loading frequency | 1Hz |
| Displacement measurement range | 0~70mm(120mm) |
| Displacement resolution | 0.1μm |
| Displacement loading rate | 5μm/s-1mm/s |
FAQ – In-situ Biaxial Tensile Test Machine
What is an in-situ tensile testing platform used for?
It is used for real-time mechanical testing while observing material deformation and microstructure evolution.
Can it work with SEM, AFM, or XRD systems?
Yes, it is fully compatible with SEM, AFM, XRD and optical microscope systems for in-situ observation.
What materials can be tested?
Metals, polymers, composites, biomaterials, thin films, and advanced functional materials.
Does it support multi-physics testing?
Yes, it supports multi-physical field coupling testing with synchronized mechanical loading and imaging.
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