ASTM E606-92(2004)e1 PDF

ASTM E606-92(2004)e1 PDF

Name:
ASTM E606-92(2004)e1 PDF

Published Date:
07/01/2004

Status:
Active

Description:

Standard Practice for Strain-Controlled Fatigue Testing

Publisher:
ASTM International

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Russian version):
200 business days

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$20.1
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1.1 This practice covers the determination of fatigue properties of nominally homogeneous materials by the use of uniaxially loaded test specimens. It is intended as a guide for fatigue testing performed in support of such activities as materials research and development, mechanical design, process and quality control, product performance, and failure analysis. While this practice is intended primarily for strain-controlled fatigue testing, some sections may provide useful information for load-controlled or stress-controlled testing.

1.2 The use of this practice is limited to specimens and does not cover testing of full-scale components, structures, or consumer products.

1.3 This practice is applicable to temperatures and strain rates for which the magnitudes of time-dependent inelastic strains are on the same order or less than the magnitudes of time-independent inelastic strains. No restrictions are placed on environmental factors such as temperature, pressure, humidity, medium, and others, provided they are controlled throughout the test, do not cause loss of or change in dimension with time, and are detailed in the data report.

Note 1-The term inelastic is used herein to refer to all nonelastic strains. The term plastic is used herein to refer only to the time-independent (that is, noncreep) component of inelastic strain. To truly determine a time-independent strain the load would have to be applied instantaneously, which is not possible. A useful engineering estimate of time-independent strain can be obtained when the strain rate exceeds some value. For example, a strain rate of 1 X 10 -3 sec -1 is often used for this purpose. This value should increase with increasing test temperature.

1.4 This practice is restricted to the testing of axially loaded uniform gage section test specimens as shown in Fig. 1(a). Testing is limited to strain-controlled cycling. The practice may be applied to hourglass specimens, see Fig. 1(b), but the user is cautioned about uncertainties in data analysis and interpretation. Testing is done primarily under constant amplitude cycling and may contain interspersed hold times at repeated intervals. The practice may be adapted to guide testing for more general cases where strain or temperature may vary according to application specific histories. Data analysis may not follow this practice in such cases.


File Size : 1 file , 220 KB
Note : This product is unavailable in Russia, Ukraine, Belarus
Number of Pages : 15
Published : 07/01/2004

History

ASTM E606/E606M-21
Published Date: 06/01/2021
Standard Test Method for Strain-Controlled Fatigue Testing
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ASTM E606/E606M-19e1
Published Date: 11/01/2019
Standard Test Method for Strain-Controlled Fatigue Testing
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ASTM E606/E606M-19
Published Date: 11/01/2019
Standard Test Method for Strain-Controlled Fatigue Testing
$20.7
ASTM E606/E606M-12
Published Date: 06/01/2012
Standard Test Method for Strain-Controlled Fatigue Testing
$20.1
ASTM E606-04e1
Published Date: 10/01/2004
Standard Practice for Strain-Controlled Fatigue Testing
$20.1
ASTM E606-04
Published Date: 10/01/2004
Standard Practice for Strain-Controlled Fatigue Testing
$20.1
ASTM E606-92(2004)e1
Published Date: 07/01/2004
Standard Practice for Strain-Controlled Fatigue Testing
$20.1
ASTM E606-92(1998)
Published Date: 04/10/1998
Standard Practice for Strain-Controlled Fatigue Testing
$20.7
ASTM E606-80
Published Date: 01/01/1980
Standard Recommended Practice for Constant-Amplitude Low-Cycle Fatigue Testing
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