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Thiết bị kiểm tra khuyết tật bằng dòng điện xoáy ibg EDDYLINER-C

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Thiết bị kiểm tra khuyết tật bằng dòng điện xoáy ibg EDDYLINER-C

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Thiết bị kiểm tra khuyết tật bằng dòng điện xoáy ibg EDDYLINER-C


ibg's eddyliner® C is a digital eddy current tester for one channel nondestructive testing for cracks, pores and grinder burn per the Preventive Multi-Filter Technology (PMFT). Testing of metal components, including mass-produced parts and semi-finished products, is now available with simultaneous 100% inline detection of grinder burn and cracks in production lines. The eddyliner® C's method of auto-generating 360° tolerance zones while testing over 30 simultaneous band passes and ibg's unique good-part-referencing, you will be able to find defects that conventional instruments with defect-oriented calibration will miss.

Compact Design

The eddyliner® C features a compact design and focuses on one channel crack and grinder burn detection with one probe. Its touchscreen interface is intuitive, easy-to-use and functions and test results are prominently displayed. The measuring signal is digitally processed with unique processors immediately after the pre-amplifier, providing the most stable test results possible.

Compatible Across All ibg Probes and Rotating Heads 

The eddyliner® C is compatible with all probes and rotating head from the ibg family of instruments. The eddyliner® is recommended for new testing applications as well as for upgrading installations with the latest eddy current technology.

Advanced Crack and Grinder Burn Detection

ibg's Preventive Multi-Filter Technology (PMFT) with automatic tolerance zone creation, simplifies the inspection process for crack, pore and grinder burn detection. This process eliminates the need for experts to perform sophisticated and time-consuming manual procedures. 

While calibrating with PMFT, good parts surface areas are scanned, and the eddy current variations are recorded simultaneously in each of 30 band pass filters. 360-degree tolerance zones are auto-generated within each filter band, capturing the allowable "noise" from good parts including such characteristics as edge effects, hardness profile run out, eccentricity, etc. This process dramatically reduces pseudo rejects while retaining visibility to actual flawed parts. 

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