Matches in SemOpenAlex for { <https://semopenalex.org/work/W2316200462> ?p ?o ?g. }
Showing items 1 to 80 of
80
with 100 items per page.
- W2316200462 abstract "The most accurate method to determine the fatigue limits is to conduct the conventional fatigue tests actually, but it is very laborious, taking many hours and requiring many specimens. Then, various methods are proposed for estimating fatigue limits rapidly, one of which is temperature measurement of fatigue specimens under gradually increasing loads.Recently one of the present authors has devised a new accurate temperature measuring method, using the ceramic condenser, the capacitance of which changes with temperature according to the Curie-Weiss law.By this method, it is easy to measure the temperature of rotating specimen accurately without any contact part like slip ring, by searching for the resonant frequency of L-C circuit consisting of coil and ceramic condenser attached to the specimen. This method is readily applicable to the rotating bending fatigue testing machines of various types widely used in Japan.In this investigation, the behaviors of rising temperature in the rotating bending specimens of Ono type fatigue testing machine under gradually increasing loads were measured and compared with the fatigue limits which were determined by conventional fatigue tests. The most specimens were machined from S20C, S45C, SNC-2 and 14S-T6 as received bars except some that were of S20C which were fully annealed in vacuum after machining.The behavior of rising temperature due to increasing stress amplitude were expressed typically in three parts, the gradually increasing part, the linearly increasing part and the rapidly increasing part. And for all materials, the fatigue limits were very close to the stress amplitude, at which the temperature began to deviate from the linear part to the rapid part, with maximum error 2.8 percent (non-conservative side)." @default.
- W2316200462 created "2016-06-24" @default.
- W2316200462 creator A5028286442 @default.
- W2316200462 creator A5042952360 @default.
- W2316200462 creator A5085721248 @default.
- W2316200462 date "1967-01-01" @default.
- W2316200462 modified "2023-09-28" @default.
- W2316200462 title "The Rapid Method of Estimating the Rotating Bending Fatigue Limits by Capacitance Thermometer for Rotator" @default.
- W2316200462 doi "https://doi.org/10.2472/jsms.16.115" @default.
- W2316200462 hasPublicationYear "1967" @default.
- W2316200462 type Work @default.
- W2316200462 sameAs 2316200462 @default.
- W2316200462 citedByCount "2" @default.
- W2316200462 countsByYear W23162004622016 @default.
- W2316200462 crossrefType "journal-article" @default.
- W2316200462 hasAuthorship W2316200462A5028286442 @default.
- W2316200462 hasAuthorship W2316200462A5042952360 @default.
- W2316200462 hasAuthorship W2316200462A5085721248 @default.
- W2316200462 hasBestOaLocation W23162004621 @default.
- W2316200462 hasConcept C119599485 @default.
- W2316200462 hasConcept C121332964 @default.
- W2316200462 hasConcept C127413603 @default.
- W2316200462 hasConcept C131850400 @default.
- W2316200462 hasConcept C134132462 @default.
- W2316200462 hasConcept C138885662 @default.
- W2316200462 hasConcept C159985019 @default.
- W2316200462 hasConcept C16108499 @default.
- W2316200462 hasConcept C17525397 @default.
- W2316200462 hasConcept C192562407 @default.
- W2316200462 hasConcept C21036866 @default.
- W2316200462 hasConcept C2780592183 @default.
- W2316200462 hasConcept C30066665 @default.
- W2316200462 hasConcept C30403606 @default.
- W2316200462 hasConcept C41895202 @default.
- W2316200462 hasConcept C62520636 @default.
- W2316200462 hasConcept C87210426 @default.
- W2316200462 hasConceptScore W2316200462C119599485 @default.
- W2316200462 hasConceptScore W2316200462C121332964 @default.
- W2316200462 hasConceptScore W2316200462C127413603 @default.
- W2316200462 hasConceptScore W2316200462C131850400 @default.
- W2316200462 hasConceptScore W2316200462C134132462 @default.
- W2316200462 hasConceptScore W2316200462C138885662 @default.
- W2316200462 hasConceptScore W2316200462C159985019 @default.
- W2316200462 hasConceptScore W2316200462C16108499 @default.
- W2316200462 hasConceptScore W2316200462C17525397 @default.
- W2316200462 hasConceptScore W2316200462C192562407 @default.
- W2316200462 hasConceptScore W2316200462C21036866 @default.
- W2316200462 hasConceptScore W2316200462C2780592183 @default.
- W2316200462 hasConceptScore W2316200462C30066665 @default.
- W2316200462 hasConceptScore W2316200462C30403606 @default.
- W2316200462 hasConceptScore W2316200462C41895202 @default.
- W2316200462 hasConceptScore W2316200462C62520636 @default.
- W2316200462 hasConceptScore W2316200462C87210426 @default.
- W2316200462 hasLocation W23162004621 @default.
- W2316200462 hasOpenAccess W2316200462 @default.
- W2316200462 hasPrimaryLocation W23162004621 @default.
- W2316200462 hasRelatedWork W2025676162 @default.
- W2316200462 hasRelatedWork W2036531134 @default.
- W2316200462 hasRelatedWork W2054942943 @default.
- W2316200462 hasRelatedWork W2314071152 @default.
- W2316200462 hasRelatedWork W2317332966 @default.
- W2316200462 hasRelatedWork W2323009148 @default.
- W2316200462 hasRelatedWork W2324265794 @default.
- W2316200462 hasRelatedWork W2325075713 @default.
- W2316200462 hasRelatedWork W2326676075 @default.
- W2316200462 hasRelatedWork W2328338054 @default.
- W2316200462 hasRelatedWork W2330661989 @default.
- W2316200462 hasRelatedWork W248642794 @default.
- W2316200462 hasRelatedWork W2775200133 @default.
- W2316200462 hasRelatedWork W3203209656 @default.
- W2316200462 hasRelatedWork W2768980857 @default.
- W2316200462 hasRelatedWork W2831551887 @default.
- W2316200462 hasRelatedWork W2834671476 @default.
- W2316200462 hasRelatedWork W2837593432 @default.
- W2316200462 hasRelatedWork W2848663365 @default.
- W2316200462 hasRelatedWork W2855708102 @default.
- W2316200462 isParatext "false" @default.
- W2316200462 isRetracted "false" @default.
- W2316200462 magId "2316200462" @default.
- W2316200462 workType "article" @default.