ASTM-E186 Historical Revision Information
Standard Reference Radiographs for Heavy-Walled (2 to 4 1/2-in. (51 to 114-mm)) Steel Castings

ASTM-E186 - 2010 EDITION - SUPERSEDED
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Standard Reference Radiographs for Heavy-Walled (2 to 412 in. (50.8 to 114 mm)) Steel Castings
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Scope

1.1 These reference radiographs illustrate various categories, types and severity levels of discontinuities occurring in steel castings that have section thicknesses of 2 to less than 4½ in. (50.8 to 114 mm). The reference radiograph films are an adjunct to this document and must be purchased separately from ASTM International, if needed (see 2.2). Categories and severity levels for each discontinuity type represented by these reference radiographs are described in 1.2.1. Note that the basis of application for these reference radiographs requires a prior purchaser/supplier agreement of radiographic examination attributes and classification criterion as described in Sections 4, 6, and 7 of this standard. Reference radiographs for other steel casting thicknesses may be found in Reference Radiograph standards E446 and E280. Reference Radiograph standards E446 and E280 provide some overlap of severity levels for similar discontinuity categories within the same energy level range (see 4.2, 5.1, and 6.3)

1.2 These reference radiographs consist of three separate volumes as follows:

1.2.1 Volume I: 1MV X Rays and Iridium 192 (called 1 to 2Mev X rays in previous editions)-Set of 28 plates (nominal 5 by 8 in. (127 by 203 mm) in a 15 by 17 in. (381 by 432 mm) ring binder).

1.2.2 Volume II: 2MV X Rays and Cobalt-60 (called gamma rays in previous editions). This includes cobalt-60 or equivalent isotope radiation and from 2MV up to 4MV X rays- Set of 28 plates (nominal 5 by 8 in.) in a 15 by 17 in. ring binder.

1.2.3 Volume III: 4MV to 30MV X rays (called 10 to 24 Mev X rays in previous editions)- Set of 28 plates (nominal 5 by 8 in.) in a 15 by 17 in. ring binder.

1.2.4 Unless otherwise specified in a purchaser supplier agreement (see 1.1), each volume is for comparison only with production radiographs produced with radiation energy levels within the thickness range covered by this standard. Each volume consists of three categories of graded discontinuities in increasing severity levels, and three categories of ungraded discontinuities. Reference radiographs containing ungraded discontinuities are provided as a guide for recognition of a specific casting discontinuity type where severity levels are not needed. Following is a list of discontinuity categories, types and severity levels for the adjunct reference radiographs of this standard:

1.2.4.1 Category AGas porosity; severity levels 1 through 5.

1.2.4.2 Category BSand and slag inclusions; severity levels 1 through 5.

1.2.4.3 Category CShrinkage; three types:

(1) Calinear shrinkageseverity levels 1 through 5. (Called Type 1 in previous revisions)

(2) Cbfeathery shrinkageSeverity levels 1 through 5. (Called Type 2 in previous revisions)

(3) Ccsponge shrinkageSeverity levels 1 through 5. (Called Type 3 in previous revisions)

1.2.4.4 Category DCrack; one illustration (D3 in pre-1972 documents).

1.2.4.5 Category EHot tear; one illustration in pre-1972 documents.

1.2.4.6 Category FInsert; one illustration (EB3 in pre-1972 documents).

1.3 The values stated in inch-pound units are to be regarded as the standard. SI values are shown for information only.

1.4 This 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.

Significance and Use

Graded reference radiographs are intended to provide a guide enabling recognition of specific casting discontinuity types and relative severity levels that may be encountered during typical fabrication processes. Reference radiographs containing ungraded discontinuities are provided as a guide for recognition of a specific casting discontinuity type where severity levels may not be needed. These reference radiographs are intended as a basis from which manufacturers and purchasers may, by mutual agreement, select particular discontinuity classes to serve as standards representing minimum levels of acceptability (see Sections 6 and 7).

Reference radiographs represented by this standard may be used, as agreed upon in a purchaser supplier agreement, for energy levels, thicknesses or both outside the range of this standard when determined applicable for the casting service application. Severity levels of similar discontinuity categories and energy level range of E446 or E280 reference radiographs may alternatively be used, as determined appropriate for the casting service application, if so agreed upon in a purchaser supplier agreement (see Section 1 and 5.1).

Procedures for evaluation of production radiographs using applicable reference radiographs of this standard are prescribed in Section 8; however, there may be manufacturing-purchaser issues involving specific casting service applications where it may be appropriate to modify or alter such requirements. Where such modifications may be appropriate for the casting application, all such changes shall be specifically called-out in the purchaser supplier agreement or contractual document. Section 9 addresses purchaser supplier requisites where weld repairs to castings may be required.

Keywords

discontinuity classification criterion; gamma-ray; reference radiographs; steel castings; X-ray; Heavy-walled steel castings; Reference radiographs--steel castings; Steel castings (reference radiographs)

To find similar documents by ASTM Volume:

03.03 (Nondestructive Testing)

To find similar documents by classification:

77.040.20 (Non-destructive testing of metals Non-destructive testing in general, see 19.100 Non-destructive testing of welded joints, see 25.160.40)

77.140.80 (Iron and steel castings)

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Document Number

ASTM-E186-10

Revision Level

2010 EDITION

Status

Superseded

Modification Type

Revision with Title Change

Publication Date

Jan. 1, 2010

Document Type

Specification

Page Count

4 pages

Committee Number

E07.02