ANSI HPS N43.9-2015 For Gamma Radiography - Specifications for the Design Testing and Performance Requirements for Industrial Gamma Radiography System Equipment Using Radiation Emi.pdf
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1、 American National Standard ANSI/HPS N43.9-2015 For Gamma Radiography Specifications for the Design, Testing, and Performance Requirements for Industrial Gamma Radiography System Equipment Using Radiation Emitted by a Sealed Radioactive Source Approved 17 April 2015 American National Standards Insti
2、tute, Inc. Published by Health Physics Society 1313 Dolley Madison Blvd. Suite 402 McLean, VA 22101 Copyright 2015 by the Health Physics Society. All rights reserved. No part of this publication may be reproduced in any form, in an electronic retrieval system or otherwise, without prior written perm
3、ission of the publisher. Printed in the United States of America ANSI/HPS N43.9-2015 The N43-3.5 subcommittee members were: R. D. “Donny” Dicharry, Chair Source Production initially ISO-3999-1-2000 and then ISO-3999-2004 later in the process. The subcommittee sought to harmonize with ISO-3999 as muc
4、h as practical. This edition cancels and replaces ANSI N43.9-1991. There was parity among stakeholders in the revision process with manufacturers, users and government regulators involved and consensus agreement among the subcommittee members for approval of the revision was achieved. After the draf
5、t revision was submitted to N43 for approval numerous comments, primarily editorial, were returned to the subcommittee. The comments were addressed without the need for substantive revisions. The draft was resubmitted to N43 for approval and additional comments, including a negative vote, were retur
6、ned. All comments were addressed and the negative vote was reversed. AMERICAN NATIONAL STANDARD ANSI/HPS N43.9-2015 1 For Gamma RadiographySpecifications for the Design, Testing, and Performance Requirements for Industrial Gamma Radiography System Equipment Using Radiation Emitted by a Sealed Radioa
7、ctive Source 1.0 Scope This standard specifies the design, testing, and performance requirements for industrial gamma radiography system equipment and source changers using radiation emitted by a sealed radioactive source. The standard includes the qualification requirements for those who engage in
8、the design, fabrication, assembly, testing, repair, or modification of industrial gamma radiography system equipment or source changers. The operational use of such equipment is not covered by this standard.1 Those provisions containing the word “shall” identify requirements that are necessary to me
9、et the standards of protection in this document. Those using the word “should” indicate advisory recommendations that are to be applied when practical. 2.0 Normative References The following standards contain provisions that are referenced in this standard. At the time of publication the editions in
10、dicated were valid, yet all standards are subject to revision. Users of this standard should evaluate the applicability of revisions to those standards. Health Physics Society. American national standard: Radiation symbol. McLean, VA; ANSI N2.1-2011; 2011. Health Physics Society. American national s
11、tandard: Sealed radioactive 1 If exposure devices are to be used as radioactive material transport packages, they shall also comply with current applicable transport regulations. sourcesclassification. McLean, VA; ANSI/HPS N43.6-2007 (R2013); 2013. 3.0 Definitions and Abbreviations The definitions,
12、terms, and abbreviations contained in this standard, or in other Amer-ican national standards referred to in this document, are not intended to embrace all legitimate meanings of the terms. They are applicable only to the subject treated in this standard. Commonly used industry terms are in brackets
13、. 3.1 Definitions Associated equipment: Equipment that is used in conjunction with an exposure device that drives, guides, or comes into contact with the source assembly. This includes, but is not necessarily limited to, control assem-blies, source guide tubes, and collimators when used as source st
14、ops. Automatic securing mechanism (ASM): A feature of an exposure device that automati-cally secures the source assembly when it is cranked back into the fully shielded position within the device. The ASM may only be released by means of a deliberate operation on the exposure device or control assem
15、bly. Capacity: The maximum output activity in becquerels (curies) specified for a given ra-dionuclide that may be contained in an ex-posure device or source changer. Category: Type of exposure device based upon its intended use and the location of the sealed source when it is in the exposed po-sitio
16、n. Class: Type of exposure device based upon its mobility. Collimator (beam limiter): A shielding component used to limit the size, shape, or direction of the primary radiation beam. Control adaptor: A component of the con-trol assembly that attaches the control as-sembly to the exposure device. Con
17、trol assembly (remote control): An assembly that enables the sealed source(s) to be moved to the exposed position by ANSI/HPS N43.9-2015 2 operation at a distance away from the expo-sure device. For crank-out devices the con-trol assembly includes the control drive mechanism, control assembly condui
18、t, drive cable, and control adaptor, as applicable. Control assembly conduit (drive cable housing, control tube, control-cable sheath): A component of the control as-sembly that connects the control drive mechanism to the control adaptor whose purpose is to guide the drive cable from the control dri
19、ve mechanism to the exposure device. Control drive mechanism (crank): A com-ponent of the control assembly that mechan-ically engages and moves the drive cable. Critical components of associated equipment: Those components that are essential for the safe operation of the expo-sure device to prevent
20、a misconnect or dis-connect. For a crank-out device these in-clude the source guide tube connector, con-trol adaptor, drive cable, drive cable con-nector, and source assembly. Disconnect: A condition in which the source assembly is inadvertently released from the drive cable. Drive cable: An assembl
21、y consisting of a cable and a drive cable connector used to move the source assembly in and out of the fully shielded position. Drive cable connector: A component used to attach the drive cable to the source as-sembly. Exposed position: Condition of the expo-sure device and source assembly in which
22、the sealed source is unshielded for the per-formance of radiography. Exposure device (camera, projector): A shielded device employing one or more sealed sources designed to allow the con-trolled use of gamma radiation for the pur-pose of making a radiographic exposure. Exposure device source path: A
23、 hollow tunnel inside the shield (commonly called an S-tube) in Category II (crank-out) exposure devices. Fully shielded position: The position within the exposure device or source changer where the sealed source is designed to re-turn after use, to remain when not in use, and in which the sealed so
24、urce is designed to be acceptably shielded.2 Gamma constant: The exposure rate of the sealed source per unit activity (also called the specific exposure rate constant). Industrial gamma radiography system: All integral components necessary to perform industrial radiography, including the expo-sure d
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