Non-Contact Video Extensometer for Electro-Hydraulic Servo Compression Fatigue Testing Machine

Product Details
Customization: Available
After-sales Service: Yes
Warranty: 1
Manufacturer/Factory, Trading Company
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  • Non-Contact Video Extensometer for Electro-Hydraulic Servo Compression Fatigue Testing Machine
  • Non-Contact Video Extensometer for Electro-Hydraulic Servo Compression Fatigue Testing Machine
  • Non-Contact Video Extensometer for Electro-Hydraulic Servo Compression Fatigue Testing Machine
  • Non-Contact Video Extensometer for Electro-Hydraulic Servo Compression Fatigue Testing Machine
  • Non-Contact Video Extensometer for Electro-Hydraulic Servo Compression Fatigue Testing Machine
  • Non-Contact Video Extensometer for Electro-Hydraulic Servo Compression Fatigue Testing Machine
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Basic Info.

Model NO.
VSP
Max Diameter of Workpiece
<500mm
Mass Scope of Workpiece
<900kg
Type
Vibration Testing Machine
Maxcapacity
>1000KN
Accuracy Grade
0.5
Load Way
Electronic Load
Loading Method
Dynamic Load
Display
Needle
Control
Computer Control
Weight
100-500Kg
Power Source
AC220V
Oil Cylinder Position
Under
Not Limited by The Strain Range, The Str
0 -- 1000%
Wide Strain Range
The Measured Strain Range Is From 0.002% to More T
Ultra-Small Specimen Testing
Conventional Systems Can Measure About 5mm, Less T
Transport Package
Wooden Box
Specification
800**520*1850mm(Can be Customized)
Trademark
VFTest
Origin
China
HS Code
8412210090
Production Capacity
200pieces/Year

Product Description

      Video extensometer is a non-contact high-precision real-time strain measurement system. Based on a separate digital camera and real-time image processing algorithm, it can dynamically measure strain, displacement and other data in real time by taking images of test pieces during the experiment process and analyzing the changes in image characteristics. It can be interoperable with the signal of the testing machine to measure stress-strain curve, elastic modulus and other mechanical properties parameters. Suitable for all kinds of mechanical tests, such as tensile, compression, fatigue, etc., can also be used in high temperature, low temperature and other unconventional environment for real-time strain observation.
     The non-contact three-dimensional full-field strain measurement system uses the principle of digital image correlation method (DIC) to collect images through two industrial cameras, capture the surface features of the specimen before and after deformation, identify the surface feature changes of the measured object, and then obtain the corresponding coordinate changes of each pixel of the image through three-dimensional reconstruction and digital image correlation algorithm. The 3D displacement field, 3D strain field and 3D deformation field data in this process are calculated.

DSE 3D optical full-field strain measurement system is suitable for testing the mechanical properties of materials and specimens under various static and dynamic conditions, as well as for dynamic displacement and trajectory tracking. The measurement results provided by the system include data, charts and cloud images, which can intuitively and clearly reflect the displacement, deformation and strain changes of the measured object, and provide convenience for related research work.
Non-Contact Video Extensometer for Electro-Hydraulic Servo Compression Fatigue Testing Machine

Non-Contact Video Extensometer for Electro-Hydraulic Servo Compression Fatigue Testing MachineNon-Contact Video Extensometer for Electro-Hydraulic Servo Compression Fatigue Testing Machine
Full-field measurement

Three-dimensional measurement

Not limited by the shape of the sample: plate, rod, sheet, linear, film, concrete, soft materials, biological materials, etc

Not limited by the strain range, the strain range can be measured: 0 -- 1000%

Unconstrained by strain direction: both axial and lateral elongation measurements are possible

Real-time measurement for strain control

It has automatic recognition function of rebar without speckle

It has the function of automatic identification of sample edge width

Embedded software, easy to operate

Meet the existing JJG762-2007 0.5 grade accuracy requirements

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