U Bolt FMPI Fluorescent Magnetic Particle Inspection For Surface Near Surface Defects

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U Bolt FMPI Fluorescent Magnetic Particle Inspection For Surface Near Surface Defects
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Features
Specifications
Product: Fluorescent Magnetic Particle Inspection For U-bolt
Magnetomotive Force: AC 0–12000 AT (adjustable)
Duty Cycle: ≥40%
Clamping: Pneumatic
Detection Efficiency: Approx. 2 Pcs / 12 Sec
Power Supply: 380V±5%, 50Hz, 3-phase 4-wire, 200A
Weight: Approx. 1700 Kg
Highlight:

Surface Near fluorescent magnetic particle inspection

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FMPI fluorescent magnetic particle inspection

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Surface Defects fluorescent magnetic particle testing

Basic Infomation
Place of Origin: CHINA
Brand Name: TESTECH
Certification: CE; ISO
Model Number: CXW-12000AT
Payment & Shipping Terms
Packaging Details: in Wooden
Delivery Time: 15-30 days
Payment Terms: T/T,Credit Card,Paypal,Western Union
Supply Ability: 100 pcs per month
Product Description

CXW-12000AT U-Bolt Fluorescent Magnetic Particle Inspection (FMPI) For Surface & Near-Surface Defects

 

Inspection requirements

Inspect the bolt surface and near-surface materials for minute defects such as cracks, folds, and inclusions caused by forging, machining, and heat treatment. The direction of these defects is mostly variable; therefore, flaw detection is required in all directions on the bolt surface.U Bolt FMPI Fluorescent Magnetic Particle Inspection For Surface Near Surface Defects 0

Design Requirements
  1. A wet continuous method with composite magnetization and fluorescent magnetic particle testing is employed for continuous, uninterrupted, omnidirectional flaw detection of bolts.
  2. 15/50D type test pieces are adhered to the workpiece surface. After composite magnetization, all grooves on the test piece should be clearly visible; cracks in the actual crack test piece should be clearly identifiable. The overall sensitivity of the flaw detector is verified as (qualified).
  3. An imported programmable logic controller (PLC) is used for automatic or manual control of the equipment operation.
  4. Considering the specific shape of the parts and the relevant requirements of the customer, a specific analysis is conducted to formulate a reasonable technical solution.
Design of magnetization methods
  1. X-axis Magnetization: X-axis magnetization uses vertically arranged coils to establish a circumferential magnetic field on the surface of the part, detecting longitudinal discontinuities.
  2. Y-axis Magnetization: Y-axis magnetization uses horizontally arranged coils to establish a longitudinal magnetic field on the surface of the part, detecting circumferential discontinuities.
  3. Z-axis Magnetization: Z-axis magnetization uses front-to-back coils to establish opposing magnetic fields on the surface of the part, detecting opposing discontinuities.
Main technical parameters
Parameter Value
Composite Magnetization Methods X-axis, Y-axis, and Z-axis magnetization methods.
X-axis Magnetization Magnetomic Potential AC 0-12000AT RMS value, continuously adjustable, with power-off phase control.
Y-axis Magnetization Magnetomic Potential AC 0-12000AT RMS value, continuously adjustable, with power-off phase control.
Z-axis Magnetization Magnetomic Potential AC 0-12000AT RMS value, continuously adjustable, with power-off phase control.
Duty Cycle ≥40%.
Clamping Method Pneumatic.
Operation Mode Manual/Automatic.
Flaw Detection Sensitivity Clearly displays 15/50A1 type specimens; cracks in actual cracked specimens are clearly identifiable.
Flaw Detection Cycle Time Approximately 2 pieces/12 seconds (Observation and flaw detection are performed simultaneously; the flaw detection speed and process can be adjusted according to the actual needs of the customer).
Power Supply Three-phase four-wire 380V±5% 50Hz 200A.
Overall Dimensions 4000mm(L)×1500mm(W)×1500mm(H) (including spray rack height)
Operating Environment Temperature -5℃ to +40℃, relative humidity ≤80%, free from corrosive gases, dust, and mid-to-high frequency interference.
Total Weight Approximately 1700Kg.
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Contact Person : Linda
Tel : +86 13488765676
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