The engine failure occurred when the aircraft was climbing 500 feet above ground level and was caused by fracture of compressor turbine (CT) blades. The engine was on a time between overhaul (TBO) extension program, which extended the normal 3,600-hour interval to 8,000 hours. The engine had 3,752.3 hours on it when the failure occurred. The borescope inspections were not being performed as frequently as recommended by Pratt & Whitney, and the operator had elected not to perform engine trend monitoring. The NTSB determined that if the engine manufacturer service bulletin had been complied with or specifically required as part of the borescope inspection procedure, possible metal creep or abnormalities in the turbine compressor blades might have been discovered and the accident prevented.

The State of Hawaii Health & Social Services Director, Loretta Fuddy, died in the crash. She was found by the rescue personnel wearing a partially inflated infant life vest. Although she did not suffer any significant traumatic injuries during the crash, her cause of death was directly attributable to not having proper safety gear on board the plane. No safety briefings were performed before the flight as Federal Aviation Administration regulations required. Passengers were not briefed on ocean ditching procedures or the location or usage of flotation equipment. Our firm successfully resolved the Fuddy case and that of another injured passenger.


Borescope Inspection Procedure Pdf 61


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Visual inspection of medical devices alone may not be enough in the cleaning process. STERIS VerifEye 2.0 Video Borescope provides illumination and magnification to assist in the visual inspection of medical devices that are not easily visible. The VerifEye Video Borescope's high-resolution visualization of previously inaccessible areas allows you to inspect for damage/residual bioburden and take necessary corrective action.

This water resistant digital borescope system assists in your processing cycle to inspect lumens for possible bioburden and damage visually. If debris is observed, it can be removed at the point of processing, saving time and avoiding potential cross-contamination. Damage can be detected early, and your equipment is sent for repair before a minor problem becomes a significant issue.

Borescopes are commonly used in non-destructive testing (NDT) operations involving components with hard-to-reach cavities. Some have lights on the lens end to enhance visibility within the component during inspection operations, while others (video borescopes) have a recording function that makes it easier to maintain comprehensive documentation of inspections. Regardless of the design and configuration, they serve the same function: helping technicians inspect component areas that are difficult or impossible to reach without damaging or dismantling the object. These instruments allow for fast and easy diagnosis of component issues, such as blockages, corrosion, cracking, erosion, or weak welds.

One of the most common applications for borescopes is the inspection of pipes/tubes and fittings. They are used to determine and/or verify the integrity of longitudinal weld joints in manufactured pipes and tubes and orbital weld joints in connected pipe and tube assemblies.

At Highland Equipment, we are fully aware of the important role borescopes play in inspection operations. By utilizing these tools to inspect the hard-to-reach areas of our piping system fabrications, we ensure the quality of each weld and the integrity of the overall system. To learn more about how we use borescopes to ensure fabrication quality, contact us today.

CANON MEDICAL, Video Sensing Division (VSD) is the video technology leader with its innovative, ultra-compact, exceptional ultra-high-definition (HD) 4K and 1080p video cameras, robust remote-head 3-CMOS color video camera performance, and economical single-chip HD cameras. VSD also supplies cutting-edge chip-on-tip video camera technologies for surgical imaging and industrial inspection applications.

Regarding to the current and the future training and development plans of many airlines to have the competent, sufficient and backup staff able to practice a standard borescope inspection to satisfy their needs, EGYPTAIR TRAINING ACADEMY introduces Borescope courses for many types of aircraft engines in accordance to the international training standards and quality at any time.

Each course starts by covering Borescope equipment and terminology and describing the Gas Path of the engine. Then, Borescope inspection procedures are presented in details. The course includes theoretical and practical hours with assessment and examination.

Unique experience in the development and training of borescope engine inspection programs for more than fifteen types of aero engines. Qualifying the EGME borescope team to be responsible for more than 200 engines in making the best maintenance decision in accordance to the standard level of inspection which lead to fleet reliability and time/cost saving.

A borescope designed in flexible tubular mode with a camera attached end had already gained popularity for its multiple advantages in problem-solving. You can recommend it as an effective option to inspect the problems in the turbine so that there is no need for manual work to solve the problem. Safety issues were reported to be the common problems during the inspection of large machines like turbines. You can alleviate the above-specified problems by the inclusion of artificial camera options used in the borescope. It can help workers to obtain a detailed image of problem affected area in the turbine so that there won't be any risk in solving problems. The majority of the work activities with high-risk inspection procedures generally make use of borescopes to prevent the occurrence of accidental issues.

Flexible design can be highlighted as one of the main advantages of a borescope that keep it fit for doing inspection works. It can be passed through any small holes to obtain the desired picture of the object under inspection. Several multinational companies had already made use of borescopes to inspect the minute cracks and damages of objects under inspection. It can help workers to solve problems effortlessly within a short period. Just a small hole is needed to insert a borescope for the inspection procedures. This feature, in turn, can save the time of the user by reducing his or her workload.

The majority of experts had suggested the utilization of borescopes as a cost-effective solution for problem-solving procedures. It need only less time for the inspection procedures as it can pass through minute holes to take pictures of the damaged objects. High-risk activities can be made effortless by the use of the best borescopes in problem-solving procedures. As per studies, the use of borescopes for the inspection procedures was found to be very beneficial to minimize its complexities. Easier captivation of high-quality images by dragging a borescope through a small hole can save the time of users. Time delay in inspection procedures was reported to be the main cause of a series of damage problems. You can overcome the above-specified difficulties by making use of borescopes to inspect and solve problems.

The use of borescopes for the inspection works can also minimize the fee rate assigned for workers by reducing their number. You can specify a borescope as a highly durable and cost-effective product for doing the inspection procedures. Enhanced flexibility in management can be highlighted as one of the important features that keep borescope as the most used product for inspection procedures. The user-friendly design of the product can allow it to pass through the tiny holes to grab the required photographs of the damaged object.

The captivation of high-quality images via ordinary cameras may not be an easy task during the inspection procedures of turbines and other related objects. This situation can be reversed by the selection of the best quality borescope for doing the inspection works. It can assure users with high-quality images so that workers can easily notify the defective area of machine parts as per the required status. Immediate access to the machine parts can become a difficult task with manual work processes. The utilization of innovative technologies including borescope can overcome the above situation by allowing easier access to the machine parts. This feature in turn can help users to prevent the occurrence of a series of damages that can lead way to the malfunction of machines.

The high durability of the material and its low maintenance fee had already made borescope a top demanded product for the inspection procedures of machines like turbines. Even an inexperienced candidate in technical knowledge can make use of borescope as per the required status. Any person in need to know the repair work processes of borescope can do a Google search to get the step-by-step procedures. You can also minimize the need for a specialist by making use of a borescope for the inspection procedures.

The use of a borescope was found to be very effective to store the details of the image as per the required status. Any information regarding the damages and the repair works can be traced by accessing the recorded details in borescope. It can help the users to verify the repair works so that people can save time and money during the inspection procedures.

Hundreds of borescopes can be availed from the online stores at present. Depstech borescope with LED lights and waterproof inspection camera option, as well as patented Camtele and Bluart tech was one of the best-sold products on the market. High clarity images of foreign objects from inaccessible locations can be made effortless by the utilization of Depstech borescope for the inspection procedures. It can save both time and money for users by assuring immediate access to images as per the required status.

Using a borescope to inspect an engine is easier than you might expect. The main steps are (1) insert the probe into the cylinder, (2) inspect the components, and (3) remove the probe. Here are a few best practice recommendations from our remote visual inspection (RVI) team: be457b7860

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