NACE TM0208-2013 Laboratory Test to Evaluate the Vapor-Inhibiting Ability of Volatile Corrosion Inhibitor Materials for Temporary Protection of Ferrous Metal Surfaces (Item No 2125.pdf
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1、 Standard Test Method Laboratory Test to Evaluate the Vapor-Inhibiting Ability of Volatile Corrosion Inhibitor Materials for Temporary Protection of Ferrous Metal Surfaces This NACE International standard represents a consensus of those individual members who have reviewed this document, its scope,
2、and provisions. Its acceptance does not in any respect preclude anyone, whether he or she has adopted the standard or not, from manufacturing, marketing, purchasing, or using products, processes, or procedures not in conformance with this standard. Nothing contained in this NACE standard is to be co
3、nstrued as granting any right, by implication or otherwise, to manufacture, sell, or use in connection with any method, apparatus, or product covered by letters patent, or as indemnifying or protecting anyone against liability for infringement of letters patent. This standard represents minimum requ
4、irements and should in no way be interpreted as a restriction on the use of better procedures or materials. Neither is this standard intended to apply in all cases relating to the subject. Unpredictable circumstances may negate the usefulness of this standard in specific instances. NACE assumes no r
5、esponsibility for the interpretation or use of this standard by other parties and accepts responsibility for only those official NACE interpretations issued by NACE in accordance with its governing procedures and policies which preclude the issuance of interpretations by individual volunteers. Users
6、 of this NACE standard are responsible for reviewing appropriate health, safety, environmental, and regulatory documents and for determining their applicability in relation to this standard prior to its use. This NACE standard may not necessarily address all potential health and safety problems or e
7、nvironmental hazards associated with the use of materials, equipment, and/or operations detailed or referred to within this standard. Users of this NACE standard are also responsible for establishing appropriate health, safety, and environmental protection practices, in consultation with appropriate
8、 regulatory authorities if necessary, to achieve compliance with any existing applicable regulatory requirements prior to the use of this standard. CAUTIONARY NOTICE: NACE standards are subject to periodic review, and may be revised or withdrawn at any time in accordance with NACE technical committe
9、e procedures. NACE requires that action be taken to reaffirm, revise, or withdraw this standard no later than five years from the date of initial publication and subsequently from the date of each reaffirmation or revision. The user is cautioned to obtain the latest edition. Purchasers of NACE stand
10、ards may receive current information on all standards and other NACE publications by contacting the NACE FirstService Department, 1440 South Creek Dr., Houston, TX 77084-4906 (telephone +1 281-228-6200). Revised 2013-03-16 Approved 2008-03-15 NACE International 1440 South Creek Drive Houston, Texas
11、77084-4906 +1 281-228-6200 ISBN 1-5790-217-6 2013, NACE International NACE TM0208-2013 Item No. 21253 TM0208-2013 NACE International i _ Foreword Volatile corrosion inhibitor (VCI) materials are widely used to provide temporary corrosion protection for the surfaces of ferrous and nonferrous metal pa
12、rts. “Temporary” refers to conditioning the environment enclosing the metal parts for a period, usually months to years, before the parts are put to their ultimate use, or before a “permanent” coating such as paint is applied. VCI materials compete with alternative temporary corrosion protection met
13、hods that include oils, greases, and waxes sometimes called rust preventives or corrosion preventive compounds; various aqueous solutions and coatings; and combinations of these coatings with desiccants and “barrier” packaging. Some of these alternatives may incorporate a VCI function, and others cl
14、aim or imply VCI function in a name, but may function primarily by contact-inhibiting properties. A test of VCI efficacy must reasonably separate VCI effects (the combination of vapor transport and corrosion protection) from other mechanisms. This standard test method evaluates the vapor-inhibiting
15、ability (VIA) of various forms of VCI materials for temporary corrosion protection of ferrous metal surfaces, which is subsequently herein called the “VIA-Ferrous” test. It can be performed reproducibly with relatively simple and low-cost apparatus. The VIA-Ferrous test provides for standard conditi
16、ons in a test jar of water-saturated, warm air without the presence of accelerating contaminants. This test method evaluates the combination of (1) vapor transport across a gap containing air, water vapor, and VCI, and (2) corrosion protection. Two options are included to discern the possible desicc
17、ating effects of some types of VCI materials, such as VCI paper, as a refinement of this test method. This test method uses one of two standard low-carbon steels as representative of the broad class of ferrous metals. An optional compatibility check that can be performed to determine whether a VCI-t
18、reated barrier material (e.g., film, paper) that is intended for temporary protection of ferrous metals causes corrosion of copper is included. The test method is based largely on U.S. MIL-STD-3010, Test Method 4031,1 with modifications and options from related standards and practices of members of
19、Technology Exchange Group (TEG) 093X.25 These practices included details of preparation of VCI material samples and steel specimens and interpretation of results. Similar VIA test methods are currently in wide use for basic qualification of VCI materials.68 This standard test method is intended for
20、use by VCI material manufacturers and users. It can be used for basic pass/fail qualification tests by production, quality assurance, user, or corrosion specialist laboratories to determine the VIA of VCI materials to protect ferrous metal surfaces from corrosion (rusting), including the component o
21、f ferrous metal protection afforded by multimetal VCI materials. This VIA-Ferrous test is the first of a planned sequence of three standard test methods to evaluate the VIA of VCI materials. Completion and approval of this standard is a prerequisite for developing a standard test method to evaluate
22、the VIA of VCI materials to protect representative nonferrous metal surfaces from corrosion (VIA-Nonferrous test), and another test method to include the presence of atmospheric contaminants that can accelerate corrosion of the metals. This standard was originally prepared in 2008 by Task Group (TG)
23、 215, “Volatile Corrosion Inhibitors (VCIs),” which is administered by Specific Technology Group (STG) 61, “Inhibition: Corrosion and Scaling,” and sponsored by STG 46, “Building Systems.” It was revised by TG 215 in 2012. It is published by NACE International under the auspices of STG 61. In NACE s
24、tandards, the terms shall, must, should, and may are used in accordance with the definitions of these terms in the NACE Publications Style Manual. The terms shall and must are used to state a requirement, and are considered mandatory. The term should is used to state something good and is recommende
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