Matches in SemOpenAlex for { <https://semopenalex.org/work/W2896412846> ?p ?o ?g. }
Showing items 1 to 61 of
61
with 100 items per page.
- W2896412846 abstract "The need for improved thermal efficiency of jet engines has led to changes in the design of combustor turbine blades. Modern turbine stage inlet temperatures now exceed the melting point temperatures of turbine blade materials. Super alloys, based on nickel, have been developed for use as blades, guide vanes, afterburners etc. To combat and avert blade failure caused by excessive operating temperatures, film cooling has been incorporated into blade design. In film cooling, cool air is bled from the compressor stage, ducted into internal chambers of the turbine blades, and discharged through small holes in the blade walls. This provides a thin, cool, insulating blanket along the external surface of the turbine blade. Large numbers of shaped holes have allowed designers to maximize the cooling effect.This paper explores a new design for inspecting turbine blade cooling holes. In the paper, we examine the inspection techniques currently in use and present a novel optical technique as an alternative. Our design consists of two stages of inspection, each optically based. The first stage uses a camera positioned axially in line with a laser beam. A sample is mounted on an XY micro-positioning stage, and a vision system captures an image of the sample and displays the size and shape of each entrance hole. To measure the presence of a bottom, a second XYZ inspection stage is used. Using a small collimating tube, a micro-beam illuminates a drilled hole in a pre-programmed fashion. Depending on the level of reflected intensity and where it occurs, the presence of a hole bottom is determined. The optical inspection system consists of a laser, motorized micro-positioning stages, collimating tubes, vision system, data acquisition software and a customized fixture for manipulating the samples.The need for improved thermal efficiency of jet engines has led to changes in the design of combustor turbine blades. Modern turbine stage inlet temperatures now exceed the melting point temperatures of turbine blade materials. Super alloys, based on nickel, have been developed for use as blades, guide vanes, afterburners etc. To combat and avert blade failure caused by excessive operating temperatures, film cooling has been incorporated into blade design. In film cooling, cool air is bled from the compressor stage, ducted into internal chambers of the turbine blades, and discharged through small holes in the blade walls. This provides a thin, cool, insulating blanket along the external surface of the turbine blade. Large numbers of shaped holes have allowed designers to maximize the cooling effect.This paper explores a new design for inspecting turbine blade cooling holes. In the paper, we examine the inspection techniques currently in use and present a novel optical technique as an alternative. Our desi..." @default.
- W2896412846 created "2018-10-26" @default.
- W2896412846 creator A5002434968 @default.
- W2896412846 creator A5018105128 @default.
- W2896412846 creator A5064879212 @default.
- W2896412846 creator A5086902977 @default.
- W2896412846 creator A5087793831 @default.
- W2896412846 date "2006-01-01" @default.
- W2896412846 modified "2023-09-26" @default.
- W2896412846 title "Optical inspection of laser drilled cooling holes in jet engine blades" @default.
- W2896412846 doi "https://doi.org/10.2351/1.5060767" @default.
- W2896412846 hasPublicationYear "2006" @default.
- W2896412846 type Work @default.
- W2896412846 sameAs 2896412846 @default.
- W2896412846 citedByCount "1" @default.
- W2896412846 countsByYear W28964128462020 @default.
- W2896412846 crossrefType "proceedings-article" @default.
- W2896412846 hasAuthorship W2896412846A5002434968 @default.
- W2896412846 hasAuthorship W2896412846A5018105128 @default.
- W2896412846 hasAuthorship W2896412846A5064879212 @default.
- W2896412846 hasAuthorship W2896412846A5086902977 @default.
- W2896412846 hasAuthorship W2896412846A5087793831 @default.
- W2896412846 hasConcept C120665830 @default.
- W2896412846 hasConcept C121332964 @default.
- W2896412846 hasConcept C127413603 @default.
- W2896412846 hasConcept C192562407 @default.
- W2896412846 hasConcept C20381859 @default.
- W2896412846 hasConcept C2776132848 @default.
- W2896412846 hasConcept C2778449969 @default.
- W2896412846 hasConcept C39643299 @default.
- W2896412846 hasConcept C520434653 @default.
- W2896412846 hasConcept C7694927 @default.
- W2896412846 hasConcept C78519656 @default.
- W2896412846 hasConceptScore W2896412846C120665830 @default.
- W2896412846 hasConceptScore W2896412846C121332964 @default.
- W2896412846 hasConceptScore W2896412846C127413603 @default.
- W2896412846 hasConceptScore W2896412846C192562407 @default.
- W2896412846 hasConceptScore W2896412846C20381859 @default.
- W2896412846 hasConceptScore W2896412846C2776132848 @default.
- W2896412846 hasConceptScore W2896412846C2778449969 @default.
- W2896412846 hasConceptScore W2896412846C39643299 @default.
- W2896412846 hasConceptScore W2896412846C520434653 @default.
- W2896412846 hasConceptScore W2896412846C7694927 @default.
- W2896412846 hasConceptScore W2896412846C78519656 @default.
- W2896412846 hasLocation W28964128461 @default.
- W2896412846 hasOpenAccess W2896412846 @default.
- W2896412846 hasPrimaryLocation W28964128461 @default.
- W2896412846 hasRelatedWork W1964714763 @default.
- W2896412846 hasRelatedWork W2000127713 @default.
- W2896412846 hasRelatedWork W2010022636 @default.
- W2896412846 hasRelatedWork W2017131349 @default.
- W2896412846 hasRelatedWork W2026330430 @default.
- W2896412846 hasRelatedWork W2090931840 @default.
- W2896412846 hasRelatedWork W2314343930 @default.
- W2896412846 hasRelatedWork W2791352671 @default.
- W2896412846 hasRelatedWork W4240266256 @default.
- W2896412846 hasRelatedWork W4248709810 @default.
- W2896412846 isParatext "false" @default.
- W2896412846 isRetracted "false" @default.
- W2896412846 magId "2896412846" @default.
- W2896412846 workType "article" @default.