Practice for Identifying Test Methods for Breeder Reactor Core Materials (Withdrawn 1998)

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Status
Withdrawn
Withdrawal Date
09-Jun-1998
Current Stage
Ref Project

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ASTM E764-80(1995)e1 - Practice for Identifying Test Methods for Breeder Reactor Core Materials (Withdrawn 1998)
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ASTM E7b4 80 M 0759530 05b3800 b9b -
AMERICAN SOCIE-IY FOR TESTING AND MATERIALS
1916 Race St, Philadelphia, Pa 19103
Designation: E 764 - 80 (Reapproved 1995)”
Reprinted from the Annual Book of ASTM Standards. Copyright ASTM
#b
If not Wed in the current combined index, will appear In the next edition.
Standard Practice for
Identifying Test Methods for Breeder Reactor Core Materials’
This standard is issued under the fixed designation E 764; the number immediately following the designation indicates the year of
original adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. A
superscript epsilon (c) indicates an editorial change since the last revision or reapproval.
(t NOTE-Keywords were added editorially in June 1995.
E 139 Practice for Conducting Creep, Creep-Rupture, and
1. Scope
Stress-Rupture Tests of Metallic Materials4
1.1 This practice covers the test methods that may be used
E 150 Practice for Conducting Creep and Creep-Rupture
for measuring physical and mechanical properties for solid
Tension Tests of Metallic Materials Under Conditions
metallic materials for use in the design and evaluation of
of Rapid Heating and Short Times’
fast-breeder reactor core materials.
E 206 Definitions of Terms Relating to Fatigue Testing
1.2 The test methods referenced herein are applicable to
and the Statistical Analysis of Fatigue Data6
the in-core portion of ducts, cladding (both end caps and
E 228 Test Method for Linear Thermal Expansion of
tubing), wire wrap, spacer grids, wear pads, and welded
Solid Materials with a Vitreous Silica Dilatometer’
structures.
E 384 Test Method for Microhardness of Materials4
1.3 The test methods are summarized in Table 1.
E 453 Practice for Examination of Fuel Element Cladding
1.4 This standard does not purport to address all of the
Including the Determination of the Mechanical
safety concerns, tf any, associated with its use. It is the
Properties8
responsibility of the user of this standard to establish appro-
E 52 1 Practice for Neutron Radiation Damage Simulation
priate safety and health practices and determine the applica-
by Charged-Particle Irradiation*
bility of regulatory limitations prior to use.
E 583-87 Practice for Systematizing the Development of
(ASTM) Voluntary Consensus Standards for the Solu-
2. Referenced Documents
tion of Nuclear and Other Complex Problems*
2.1 ASTM Standards:
A 370 Test Methods and Definitions for Mechanical
3. Terminology
Testing of Steel Products2
C 177 Test Method for Steady-State Heat Flux Measure- 3.1 Definitions-For definitions, refer to the test method
ments and Thermal Transmission Properties by Means of interest.
of the Guarded-Hot-Plate Apparatus3 3.2 Descriptions of Terms Specific to This Standard
C 5 18 Test Method for Steady-State Heat Flux Measure-
3.2.1 cladding-the metal tubing that contains the fuel or
ments and Thermal Transmission Properties by Means
absorber materials, or both, in the reactor core. The cladding
of the Heat Flow Meter Apparatus3
is typically located in elements bundled inside the reactor
E 3 Methods of Preparation of Metallographic Speci-
ducts. The cladding with the fuel is sealed by end caps that
mens4
are welded to both ends of the tubing.
E 8 Test Methods for Tension Testing of Metallic
3.2.2 component appearance-Figures 1 and 2 show ex-
Materials4
amples of typical core components for the fuel and control
E 10 Test Method for Brinell Hardness of Metallic
rod assemblies for the Fast-Flux Test Facility (FFTF).
Materials4
3.2.3 duct-a tube (typically hexagonal, rhombic, or cir-
E 18 Test Methods for Rockwell Hardness and Rockwell
cular) containing fuel, absorber, or structural assemblies
Superficial Hardness of Metallic Materials4
utilized in the operation or experimentation, or both, carried
E 45 Test Methods for Determining the Inclusion Content
out in a fast-breeder reactor core. The ducts serve as structural
of Steel4
members and provide flow channels for irradiation vehicles
E 92 Test Method for Vickers Hardness of Metallic
and facilitate insertion and removal of such assemblies.
Materials4
3.2.4 load pads-sections of metal (generally coated with
E 112 Test Methods for Determining the Average Grain
a hard substance) at various locations on the exterior duct
Size4
surface that contact other load pads on surrounding ducts.
The purpose of the load pad is to facilitate core compaction
and assembly insertion/withdrawal by providing low-friction
t This practice is under the jurisdiction of ASTM Committee E-10 on Nuclear
Technology and Applications and is the direct responsibility of Subcommittee
E1O.10 on Matrix Approaches to Standards for Nuclear Systems Technology.
5 Discontinued-See 1983 Annual Book of ASTM Standards, VolO3.01.
Current edition approved Oct. 28, 1980. Published January 198 I.
6 Discontinued-See 1986 Annual Book of ASTM Standards, VolO3.0 1.
z Annual Book ofASTM Standards, Vol 01.03.
’ Annual Book of ASTM Standards, Vol 14.02.
3 Annual Book of ASTM Standards, VolO4.06.
4 Annual Book of ASTM Standards, VolO3.0 1. 8 Annual Book ofASTM Standards, Vol 12.02.

ASTM E7bY 80 - 0759
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