Hello,everyone.
This is our far-field eddy current flaw detector, the distance between the excitation coil and the detection coil is 2-3 times the inner diameter of the detection pipe fitting, which is called the far field. The track of the magnetic field line in the far field region is parallel to the pipe wall, so the total number of magnetic field lines passing through the material wall in the far field region is proportional to the wall thickness. Compared with conventional eddy current, magnetic flux leakage and ultrasonic nondestructive testing, far field eddy current nondestructive testing has the following advantages: the surface of the tested material does not need to be cleaned; The probe is not in contact with the surface of the material, and the change of the gap between the outer diameter of the probe and the inner diameter of the material has little influence on the detection result. The sensitivity of detecting the corrosion pit on the inner surface and the outer surface of the material is the same. It has very high sensitivity for the detection of uniform thinning, gradual thinning and off-wear thinning. Whether the detection speed of the probe is uniform has no effect on the detection result. The gas and liquid medium in the material have no influence on the detection results. The testing equipment is small in size and light in weight, which is convenient for flexible application in the field. The detection data can also be stored for long-distance detection
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Brief: Discover the advanced 558H Far Field Low Frequency Eddy Current Flaw Detector, designed for non-destructive testing of water wall tube heat exchange tubes. This cutting-edge equipment offers unmatched sensitivity for detecting inner and outer wall defects in ferromagnetic metal pipes, with no need for surface cleaning or contact. Perfect for field applications, it ensures accurate and reliable results regardless of probe speed or medium inside the material.
Related Product Features:
No need to clean the surface of the tested material, saving time and effort.
Probe does not require contact with the material surface, reducing wear and tear.
High sensitivity for detecting corrosion pits on both inner and outer surfaces.
Effective detection of uniform thinning, gradual thinning, and off-wear thinning.
Detection results unaffected by probe speed or gas/liquid medium inside the material.
Compact and lightweight design for easy field application and portability.
Advanced DSP and FPGA digital electronic technology for real-time defect detection.
Detection data can be stored for long-distance analysis and future reference.
Faqs:
What makes the 558H Far Field Low Frequency Eddy Current Flaw Detector different from conventional testing methods?
Unlike conventional methods, this detector does not require surface cleaning or probe contact, offers high sensitivity for both inner and outer surface defects, and is unaffected by probe speed or medium inside the material.
Can the 558H detector be used for field applications?
Yes, its compact and lightweight design makes it highly suitable for flexible and efficient use in field conditions.
How does the 558H detector handle data storage and analysis?
The detector allows for storage of detection data, enabling long-distance analysis and future reference, ensuring comprehensive defect tracking and reporting.