摘要:
This non-destructive inspection device comprises an inspection element having an inspection probe and a signal cable connected to the inspection probe and a moving element for moving the inspection element. The moving element comprises a carrier that supports the inspection element and moves along the movement path of the inspection element and a carrier guide that guides the carrier along the movement path. The carrier is configured through the linking of a plurality of covers that are more rigid than the signal cable. The carrier guide preferably comprises a first path that is linear, a second path that turns back and has one end that is continuous with the first path, and a third path that is linear and is continuous with the other end of the second path.
摘要:
Disclosed is a tail pipe mounting/dismounting jig for mounting and dismounting a combustor tail pipe in a cylinder, in which the tail pipe is inserted into the interior of the cylinder and the tip of the tail pipe is connected to the intake of a combustion gas duct; wherein said tip and a base end are each supported by the aforementioned cylinder by the tip being disposed in the cylinder interior, and the jig is equipped with a guide unit that supports the aforementioned tail pipe so as to be moveable along the shaft line direction of the aforementioned combustor and an advancing/withdrawing mechanism that advances and withdraws the aforementioned tail pipe along the aforementioned shaft line direction.
摘要:
The purpose of the present invention is to appropriately detect a defect of an aircraft component. A defect detection system has: an original image acquisition unit (20) for acquiring an original image; an image processing unit (22) for extracting a defect candidate area from the original image on the basis of a luminance of an image in the original image, and calculating a characteristic amount of the defect candidate area on the basis of a difference in luminance between the defect candidate area and a peripheral area thereof; a characteristic amount range setting unit (24) for associating the characteristic amount calculated by the image processing unit (22) for a learning original image from which a defect part is detected in advance and information relating to the defect part, and setting a defect characteristic amount range and a non-defect characteristic amount range; and a defect detection unit (26) for determining, on the basis of the characteristic amount calculated by the image processing unit (22) with respect to a determination original image from which the defect part is not detected, the defect characteristic amount range, and the non-defect characteristic amount range, whether the defect candidate area in the determination original image is the defect part.