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ASTM A 596/A596M : 2014 : REDLINE

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

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superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Standard Test Method for Direct-Current Magnetic Properties of Materials Using the Ballistic Method and Ring Specimens

Available format(s)

PDF

Superseded date

03-08-2021

Language(s)

English

Published date

05-01-2014

CONTAINED IN VOL. 03.07, 2017 Specifies dc ballistic testing for the determination of basic magnetic properties of materials in the form of ring, toroidal, link, double-lapped Epstein cores, or other standard shapes which may be cut, stamped, machined, or ground from cast, compacted, sintered, forged, or rolled materials.

1.1This test method covers dc ballistic testing for the determination of basic magnetic properties of materials in the form of ring, toroidal, link, double-lapped Epstein cores, or other standard shapes which may be cut, stamped, machined, or ground from cast, compacted, sintered, forged, or rolled materials. It includes tests for normal induction and hysteresis taken under conditions of steep wavefront reversals of the direct-current magnetic field strength.

1.2This test method shall be used in conjunction with Practice A34/A34M.

1.3This test method is suitable for a testing range from very low magnetic field strength up to 200 or more Oe [15.9 or more kA/m]. The lower limit is determined by integrator sensitivity and the upper limit by heat generation in the magnetizing winding. Special techniques and short duration testing may extend the upper limit of magnetic field strength.

1.4Testing under this test method is inherently more accurate than other methods. When specified dimensional or shape requirements are observed, the measurements are a good approximation to absolute properties. Test accuracy available is primarily limited by the accuracy of instrumentation. In most cases, equivalent results may be obtained using Test Method A773/A773M or the test methods of IEC Publication 60404-4.

1.5This test method permits a choice of test specimen to permit measurement of properties in any desired direction relative to the direction of crystallographic orientation without interference from external yoke systems.

1.6The symbols and abbreviated definitions used in this test method appear in Fig. 1 and Sections 5, 6, 9, and 10. For the official definitions see Terminology A340. Note that the term flux density used in this document is synonymous with the term magnetic induction.

1.7Warning—Mercury has been designated by EPA and many state agencies as a hazardous material that can cause central nervous system, kidney, and liver damage. Mercury, or its vapor, may be hazardous to health and corrosive to materials. Caution should be taken when handling mercury and mercury-containing products. See the applicable product Material Safety Data Sheet (MSDS) for details and EPA’s website (http://www.epa.gov/mercury/faq.htm ) for additional information. Users should be aware that selling mercury or mercury-containing products, or both, in your state may be prohibited by state law.

1.8The values stated in either customary (cgs-emu and inch-pound) units or SI units are to be regarded separately as standard. Within this test method, the SI units are shown in brackets except for the sections concerning calculations where there are separate sections for the respective unit systems. The values stated in each system are not exact equivalents; therefore, each system shall be used independently of the other. Combining values from the two systems may result in nonconformance with this method.

1.9This 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 and health practices and determine the applicability of regulatory limitations prior to use.

Committee
A 06
DevelopmentNote
Supersedes ASTM A 596. (01/2009)
DocumentType
Redline
Pages
10
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy

ASTM A 598/A598M : 2002 : R2015 Standard Test Method for Magnetic Properties of Magnetic Amplifier Cores
ASTM A 838 : 2002 : R2013 Standard Specification for Free-Machining Ferritic Stainless Soft Magnetic Alloy Bar for Relay Applications
SAE AMS7717E:2015(R2019) NICKEL-IRON ALLOY, MAGNETIC, SHEET AND STRIP, 50NI - 50FE, ANNEALED, FORMING GRADE
ASTM A 753 : 2008 : R2013 Standard Specification for Wrought Nickel-Iron Soft Magnetic Alloys (UNS K94490, K94840, N14076, N14080)
ASTM A 598/A598M : 2002 Standard Test Method for Magnetic Properties of Magnetic Amplifier Cores
ASTM A 867 : 2003 : R2013 Standard Specification for Iron-Silicon Relay Steels
ASTM A 341/A341M : 2016 : REDLINE Standard Test Method for Direct Current Magnetic Properties of Soft Magnetic Materials Using D-C Permeameters and the Point by Point (Ballistic) Test Methods
ASTM A 598/A598M : 2002 : R2007 Standard Test Method for Magnetic Properties of Magnetic Amplifier Cores
ASTM A 838 : 2002 Standard Specification for Free-Machining Ferritic Stainless Soft Magnetic Alloy Bar for Relay Applications
ASTM A 848 : 2017 : REDLINE Standard Specification for Low-Carbon Magnetic Iron
ASTM A 811 : 2015 : REDLINE Standard Specification for Soft Magnetic Iron Parts Fabricated by Powder Metallurgy Techniques
ASTM A 801 : 2014 : REDLINE Standard Specification for Wrought Iron-Cobalt High Magnetic Saturation Alloys (UNS R30005 and K92650)
ASTM A 904 : 2014 : REDLINE Standard Specification for 50 Nickel-50 Iron Powder Metallurgy Soft Magnetic Parts
SAE AMS 7719 : 2015 NICKEL-IRON ALLOY, MAGNETIC, SHEET AND STRIP, 50NI - 50FE, STAMPING QUALITY, HALF-HARD TEMPER
ASTM A 867 : 2003 Standard Specification for Iron-Silicon Relay Steels
ASTM A 839 : 2015 : REDLINE Standard Specification for Iron-Phosphorus Powder Metallurgy Parts for Soft Magnetic Applications
ASTM A 838 : 2002 : R2007 Standard Specification for Free-Machining Ferritic Stainless Soft Magnetic Alloy Bar for Relay Applications
SAE AMS 7718 : 2015 NICKEL-IRON ALLOY, MAGNETIC, BARS, RODS, TUBING, AND FORGINGS 50NI - 50FE
ASTM A 867 : 2003 : R2008 Standard Specification for Iron-Silicon Relay Steels
SAE AMS 7717 : 2015 NICKEL-IRON ALLOY, MAGNETIC, SHEET AND STRIP, 50NI - 50FE, ANNEALED, FORMING GRADE
ASTM A 773/A773M : 2014 : REDLINE Standard Test Method for Direct Current Magnetic Properties of Low Coercivity Magnetic Materials Using Hysteresigraphs
ASTM B 925 : 2015 : REDLINE Standard Practices for Production and Preparation of Powder Metallurgy (PM) Test Specimens
ASTM A 753 : 2008 Standard Specification for Wrought Nickel-Iron Soft Magnetic Alloys (UNS K94490, K94840, N14076, N14080)

ASTM A 341/A341M : 2016 : REDLINE Standard Test Method for Direct Current Magnetic Properties of Soft Magnetic Materials Using D-C Permeameters and the Point by Point (Ballistic) Test Methods
IEC 60404-4:1995+AMD1:2000+AMD2:2008 CSV Magnetic materials - Part 4: Methods of measurement of d.c. magnetic properties of magnetically soft materials
ASTM A 773/A773M : 2014 : REDLINE Standard Test Method for Direct Current Magnetic Properties of Low Coercivity Magnetic Materials Using Hysteresigraphs

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