DURING the last few years a programme of creep tests under general stress systems at high temperatures has been carried out at the N.P.L., using four metallic alloys which were chosen as being representative of basic groups of materials used in practice in machinery operating at high temperatures. This work, it was hoped, would fulfil, at least partly, the great need for experimental data in this field, as opposed to the comparative abundance of theoretical work available, and also enable a critical examination of the merits of this theoretical work to be made. The materials chosen in order of examination were a cast 0–17 per cent carbon steel, an aluminium alloy (R.R. 59), a magnesium alloy (containing 2 per cent aluminium), and a nickel‐chromium alloy (Nimonic 75). Each material was tested at temperatures lying within the normal working range of the material in question. Thus the 0–17 per cent carbon steel was tested at 350, 450 and 550 dcg. C. (662, 842 and 1,022 deg. F.), the aluminium alloy at 150 and 200 deg. C. (302 and 392 dcg. F.), the magnesium alloy at 20 and 50 deg. C. (68 and 122 dcg. F.), and the nickel‐chromium alloy at 550 and 650 dcg. C. (1,022 and 1,202 deg. F.).
Article navigation
Review Article|
January 01 1952
Creep Under Complex Stress Systems at High Temperatures: A Paper Circulated for Written Discussion by the Institution of Mechanical Engineers
A.E. Johnson, D.Sc, M.Sc.Tech., A.M.I.Mech.E.
A.E. Johnson, D.Sc, M.Sc.Tech., A.M.I.Mech.E.
Department of Scientific and Industrial Researeh, Engineering Division, National Physical Laboratory.
Search for other works by this author on:
Publisher: Emerald Publishing
Online ISSN: 2059-9366
Print ISSN: 0002-2667
© MCB UP Limited
1952
Aircraft Engineering (1952) 24 (1): 6–16.
Citation
Johnson A (1952), "Creep Under Complex Stress Systems at High Temperatures: A Paper Circulated for Written Discussion by the Institution of Mechanical Engineers". Aircraft Engineering, Vol. 24 No. 1 pp. 6–16, doi: https://doi.org/10.1108/eb032121
Download citation file:
122
Views
New and popular articles
Suggested Reading
Optimization of WEDM process parameters in machining Nimonic 75 alloy using brass wire
Multidiscipline Modeling in Materials and Structures (March,2020)
Creep Resisting Alloys for Aircraft Gas Turbines: Details of the Two New Vacuum‐Melted Alloys: Nimonic 110 and Nimonic 115
Aircraft Engineering (August,1962)
The Plastic, Creep and Relaxation Properties of Metals
Aircraft Engineering (January,1949)
Investigating the performance of powder mixed electric discharge machining of Nimonic 75 by using different tool materials
World Journal of Engineering (April,2018)
Parametric optimization in die-sinking EDM of Nimonic 90 alloy using Taguchi-based GRA approach
World Journal of Engineering (November,2020)
Related Chapters
DENSITY CHANGES IN CLADDING MATERIALS IRRADIATED IN DFR
VOIDS FORMED BY IRRADIATION OF REACTOR MATERIALS
ELECTRON MICROSCOPE OBSERVATIONS OF VOIDS IN CLADDING MATERIALS IRRADIATED IN DFR
VOIDS FORMED BY IRRADIATION OF REACTOR MATERIALS
26 The fracture toughness of fast reactor irradiated Type 321 stainless steel and Nimonic PE16
Dimensional stability and mechanical behaviour of irradiated metals and alloys
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
