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ASTM D 7137/D7137M : 2017

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

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Standard Test Method for Compressive Residual Strength Properties of Damaged Polymer Matrix Composite Plates

Available format(s)

Hardcopy , PDF

Superseded date

21-06-2023

Language(s)

English

Published date

25-10-2017

€74.48
Excluding VAT

This test method covers compression residual strength properties of multidirectional polymer matrix composite laminated plates, which have been subjected to quasi-static indentation per Test Method D6264/D6264M or drop-weight impact per Test Method D7136/D7136M prior to application of compressive force.

Committee
D 30
DocumentType
Test Method
Pages
16
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy
Supersedes

1.1This test method covers compression residual strength properties of multidirectional polymer matrix composite laminated plates, which have been subjected to quasi-static indentation per Test Method D6264/D6264M or drop-weight impact per Test Method D7136/D7136M prior to application of compressive force. The composite material forms are limited to continuous-fiber reinforced polymer matrix composites with multidirectional fiber orientations, and which are both symmetric and balanced with respect to the test direction. The range of acceptable test laminates and thicknesses is defined in 8.2.

Note 1:When used to determine the residual strength of drop-weight impacted plates, this test method is commonly referred to as the Compression After Impact, or CAI, method.

1.2The method utilizes a flat, rectangular composite plate, previously subjected to a damaging event, which is tested under compressive loading using a stabilization fixture.

Note 2:The damage tolerance properties obtained are particular to the type, geometry and location of damage inflicted upon the plate.

1.3The properties generated by this test method are highly dependent upon several factors, which include specimen geometry, layup, damage type, damage size, damage location, and boundary conditions. Thus, results are generally not scalable to other configurations, and are particular to the combination of geometric and physical conditions tested.

1.4This test method can be used to test undamaged polymer matrix composite plates, but historically such tests have demonstrated a relatively high incidence of undesirable failure modes (such as end crushing). Test Method D6641/D6641M is recommended for obtaining compressive properties of undamaged polymer matrix composites.

1.5The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in each system may not be exact equivalents; therefore, each system shall be used independently of the other. Combining values from the two systems may result in non-conformance with the standard.

1.5.1Within the text the inch-pound units are shown in brackets.

1.6This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use.

1.7This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

ASTM D 7136/D7136M : 2020 Standard Test Method for Measuring the Damage Resistance of a Fiber-Reinforced Polymer Matrix Composite to a Drop-Weight Impact Event
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ASTM D 6264/D6264M : 2023 Standard Test Method for Measuring the Damage Resistance of a Fiber-Reinforced Polymer-Matrix Composite to a Concentrated Quasi-Static Indentation Force
ASTM D 7956/D7956M : 2016 Standard Practice for Compressive Testing of Thin Damaged Laminates Using a Sandwich Long Beam Flexure Specimen

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ASTM D 3878 : 2019 : REV A Standard Terminology for Composite Materials
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ASTM D 3878 : 1998 Standard Terminology Composite Materials
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ASTM D 3878 : 2018 Standard Terminology for Composite Materials
ASTM D 6641/D6641M : 2016 : EDT 2 Standard Test Method for Compressive Properties of Polymer Matrix Composite Materials Using a Combined Loading Compression (CLC) Test Fixture
ASTM D 3171 : 2009 Standard Test Methods for Constituent Content of Composite Materials
ASTM D 3878 : 2002 Standard Terminology for Composite Materials
ASTM E 6 : 2015 : EDT 3 Standard Terminology Relating to Methods of Mechanical Testing
ASTM E 6 : 2023 : REV A Standard Terminology Relating to Methods of Mechanical Testing
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ASTM D 3878 : 2003 Standard Terminology for Composite Materials
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ASTM D 6641/D6641M : 2016 : EDT 1 Standard Test Method for Compressive Properties of Polymer Matrix Composite Materials Using a Combined Loading Compression (CLC) Test Fixture
ASTM D 3878 : 2007 Standard Terminology for Composite Materials
ASTM D 6264/D6264M : 2023 Standard Test Method for Measuring the Damage Resistance of a Fiber-Reinforced Polymer-Matrix Composite to a Concentrated Quasi-Static Indentation Force
ASTM D 3171 : 1999 : R2004 Standard Test Methods for Constituent Content of Composite Materials
ASTM E 6 : 2015 : EDT 4 Standard Terminology Relating to Methods of Mechanical Testing
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ASTM E 6 : 2023 Standard Terminology Relating to Methods of Mechanical Testing
ASTM E 456 : 2013 : REV A : R2017 : EDT 4 Standard Terminology Relating to Quality and Statistics
ASTM E 456 : 2013 : REV A : R2017 : EDT 6 Standard Terminology Relating to Quality and Statistics
ASTM D 3878 : 2004 : REV A Standard Terminology for Composite Materials
ASTM D 3171 : 2006 Standard Test Methods for Constituent Content of Composite Materials
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