Effect of Overheating on Creep-rupture Properties of HS-31 Alloy at 1,500 Degrees F

Effect of Overheating on Creep-rupture Properties of HS-31 Alloy at 1,500 Degrees F

Author: John Paul Rowe

Publisher:

Published: 1957

Total Pages: 702

ISBN-13:

DOWNLOAD EBOOK

An investigation of overheating HS-31 alloy to temperatures of 1,650 degrees, 1,800 degrees, 1,900 degrees, and 2,000 degrees F during the course of rupture tests 1,500 degrees F was carried out. The overheating was applied periodically for 2 minutes in most of the tests. The intent was to develop basic information on the effect of overheats on creep- rapture properties in order to assist in the evaluation of damage from overheats during gas- turbine operation.


Effect of Overheating on Creep-rupture Properties of S-816 Alloy at 1,500 Degrees F

Effect of Overheating on Creep-rupture Properties of S-816 Alloy at 1,500 Degrees F

Author: John P. Rowe

Publisher:

Published: 1957

Total Pages: 75

ISBN-13:

DOWNLOAD EBOOK

The effects of overheats to temperatures of 1650, 1800, 1900, and 2000 F were evaluated in terms of the changes in creep-rupture characteristics at 1500 F of S-816 alloy under stresses within the range of rupture strengths of the alloy for 100 to 1000 hours. Overheat periods were predominantly of 2-minute duration and were applied cyclically at approximately 5- or 12-hour intervals. The possible damage from overheating was believed to include internal metal structure changes induced by exposure to the higher temperatures and loss of life by creep if stress was present during the overheats.


Effect of Overheating on Creep-rupture Properties of M-252 Alloy

Effect of Overheating on Creep-rupture Properties of M-252 Alloy

Author: John P. Rowe

Publisher:

Published: 1958

Total Pages: 83

ISBN-13:

DOWNLOAD EBOOK

A study was carried out of the influence of periodic overheats of 2-minute duration to temperatures of 1,650, 1,800, 1,900, and 2,000 degrees F on the creep-rupture properties of M-252 alloy at 1,500 degrees F. The conditions of the experiments had been selected to provide basic information applicable to estimation of the effects of overheating on creep-rupture performance of gas-turbine parts. The overheats were conducted both with the stress removed during overheating and with stress present.