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Nondestructive Inspection of Boilers and Pressure Vessels

Introduction

DURING THE FABRICATION of a boiler, pressure vessel, and such related components as boiling water reactor piping or steam generator tubes, various types of nondestructive inspection (NDI) are performed at several stages of processing, mainly for the purpose of controlling the quality of fabrication.

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In-service inspection is used to detect the growth of existing flaws or the formation of new flaws. This can be done while the vessel is in operation or down for servicing. The inspection methods used include visual, radiographic, ultrasonic, liquid penetrant, magnetic particle, eddy current, and acoustic emission inspection, as well as replication microscopy and leak testing. The assurance of component quality depends largely on the adequacy of NDI equipment and procedures and on the qualification of personnel conducting the inspection.

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NDT- ULTRASONIC CHECKLIST

This Audit Check List is used to audit the Ultrasonic Testing Facilities such as NDT Operator’s Training, Qualification, Competency, System Elements, Client Specified Procedures, Standards, Job Instructions, Acceptance Criteria, Equipment, Probes, Calibration Certificates, Calibration Blocks, Ref

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THE ADVANTAGES OF LASER ULTRASONIC FOR THE INSPECTION OF COMPLEX COMPOSITE PARTS

INTRODUCTION

Laser ultrasonics is rapidly becoming a well-known industrial technique for inspecting composites that provides large benefits over conventional systems in the inspection of complex contoured carbon-fiber reinforced polymer (CFRP) components (Osterkamp and Kaiser, 2008). The advantages of laser ultrasound over conventional systems for the inspection of complex shaped CFRP are multi-fold. Systems are typically able to rapidly scan the laser beam across the surface of the part with no knowledge of the part curvature, no special tooling or fixtures, and no contour following.