Published February 1982 | Version v1
Journal article

Recovery and deformation substructures of zircaloy-4 in high temperature plasticity under stationary or non-stationary stress

  • 1. Kernforschungszentrum Karlsruhe G.m.b.H. (Germany, F.R.). Inst. fuer Material- und Festkoerperforschung

Description

It was the aim of the present investigation to examine how the recovery rate in creep is influenced by a non-stationary stress. For purposes of phenomenological analysis it is postulated that, irrespective of whether the applied stress is stationary or not, for large strains the mean internal stress sigmasub(i) approaches a stationary value sigmasub(i,s). The stationary recovery rate Rsub(s) for constant load creep turns out be governed by the applied stress indicating that the recovery mechanism is dynamic in nature. For sigma-ramp loading, Rsub(s) is dependent on the stress rate sigma. In tensional stress cycling, Rsub(s) is governed by the maximum stress sigmasub(M) and is also dependent on the ratio of sigmasub(M) to the minimum stress sigma0. TEM examination of Zircaloy-4 specimens crept at 8000C at constant and cycling load respectively could not reveal any differences in the deformation substructure for the two loading types. Subgrain formation did not appear, individual dislocations were observed only rarely. However, typical networks were formed as well as pileups which perhaps are responsible for the back stress in high temperature plasticity (HTP). (orig.)

Additional details

Publishing Information

Journal Title
J. Nucl. Mater.
Journal Volume
105
Journal Issue
2/3
Series
J. Nucl. Mater.
Journal Page Range
293-301
ISSN
0022-3115

INIS

Country of Publication
Netherlands
Country of Input or Organization
Netherlands
INIS RN
13713640
Subject category
S36: MATERIALS SCIENCE;
Descriptors DEI
CREEP; DEFORMATION; DYNAMIC LOADS; HIGH TEMPERATURE; PLASTICITY; STATIC LOADS; STRESS ANALYSIS; ZIRCALOY 4
Descriptors DEC
ALLOYS; MECHANICAL PROPERTIES; TIN ALLOYS; TRANSITION ELEMENT ALLOYS; ZIRCALOY; ZIRCONIUM ALLOYS; ZIRCONIUM BASE ALLOYS