NACE SP0198-2010 Control of Corrosion Under Thermal Insulation and Fireproofing Materials-A Systems Approach (Item No 21084)《在热绝缘和防火材料系统方法下的腐蚀控制 项目编号21084》.pdf
《NACE SP0198-2010 Control of Corrosion Under Thermal Insulation and Fireproofing Materials-A Systems Approach (Item No 21084)《在热绝缘和防火材料系统方法下的腐蚀控制 项目编号21084》.pdf》由会员分享,可在线阅读,更多相关《NACE SP0198-2010 Control of Corrosion Under Thermal Insulation and Fireproofing Materials-A Systems Approach (Item No 21084)《在热绝缘和防火材料系统方法下的腐蚀控制 项目编号21084》.pdf(44页珍藏版)》请在麦多课文档分享上搜索。
1、 NACE International 1 Standard Practice Control of Corrosion Under Thermal Insulation and Fireproofing MaterialsA Systems Approach This NACE International standard represents a consensus of those individual members who have reviewed this document, its scope, and provisions. Its acceptance does not i
2、n 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 International standard is to be construed as granting any rig
3、ht, 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 requirements and should in no w
4、ay 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 International assumes no responsibility
5、 for the interpretation or use of this standard by other parties and accepts responsibility for only those official NACE International interpretations issued by NACE International in accordance with its governing procedures and policies which preclude the issuance of interpretations by individual vo
6、lunteers. Users of this NACE International 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 International standard may not necessarily address al
7、l potential health and safety problems or environmental hazards associated with the use of materials, equipment, and/or operations detailed or referred to within this standard. Users of this NACE International standard are also responsible for establishing appropriate health, safety, and environment
8、al protection practices, in consultation with appropriate regulatory authorities if necessary, to achieve compliance with any existing applicable regulatory requirements prior to the use of this standard. CAUTIONARY NOTICE: NACE International standards are subject to periodic review, and may be revi
9、sed or withdrawn at any time in accordance with NACE technical committee procedures. NACE International 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 r
10、evision. The user is cautioned to obtain the latest edition. Purchasers of NACE International standards may receive current information on all standards and other NACE International publications by contacting the NACE International FirstService Department, 1440 South Creek Dr., Houston, TX 77084-490
11、6 (telephone +1 281-228-6200). Revised 2010-6-25 Reaffirmed 2004-3-31 Approved 1998-2-20 NACE International 1440 South Creek Drive Houston, Texas 77084-4906 +1 281-228-6200 ISBN 1-57590-049-1 2010, NACE International NACE SP0198-2010 (formerly RP0198) Item No. 21084 SP0198-2010 NACE International i
12、_ Foreword This NACE standard practice provides the current technology and industry practices for mitigating corrosion under thermal insulation and fireproofing materials, a problem termed corrosion under insulation (CUI) in this standard. Because this corrosion problem has many facets and impacts s
13、everal technologies, a systems approach has been adopted. This standard is intended for use by corrosion-control personnel and others concerned with corrosion under insulation and/or fireproofing of equipment. This standard is organized into sections by function. Each section was written by speciali
14、sts in that subject. These specialists are industry representatives from firms producing, specifying, designing, and/or using thermal insulation and fireproofing products on refinery and petrochemical equipment. This standard was originally prepared in 1998 by NACE Work Group T-5A-30a, “Corrosion Pr
15、otection Under Insulation,” with the assistance of Task Group (TG) T-6H-31, “Coatings for Carbon and Austenitic Stainless Steel Under Insulation,” and ASTM(1)Committee C16.40.3, “Corrosion Under Insulation.” Work Group T-5A-30a supported NACE TG T-5A-30, “Corrosion Under Thermal Insulation,” a compo
16、nent of NACE Unit Committee T-5A, “Corrosion in Chemical Processes.” The standard was reaffirmed in 2004 by Specific Technology Group (STG) 36, “Process Industry: Materials Performance in Chemicals.” It was revised in 2010 by TG 325, “CUI: Revision of NACE Standard RP0198, The Control of Corrosion U
17、nder Thermal Insulation and Fireproofing MaterialsA Systems Approach,” with the assistance of Technology Exchange Group (TEG) 255X, “Coatings, Thermal-Spray for Corrosion Protection.” TG 325 is sponsored by STG 03, “Coatings and Linings, ProtectiveImmersion and Buried Service,” and STG 04, “Coatings
18、 and Linings, ProtectiveSurface Preparation.” This standard is issued by NACE International under the auspices of STG 36. In NACE standards, 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 mu
19、st are used to state a requirement, and are considered mandatory. The term should is used to state something good and is recommended, but is not considered mandatory. The term may is used to state something considered optional. _ (1)ASTM International (ASTM), 100 Barr Harbor Dr., West Conshohocken,
20、PA 19428-2959. SP0198-2010 ii NACE International _ NACE International Standard Practice Control of Corrosion Under Thermal Insulation and Fireproofing MaterialsA Systems Approach Contents 1. General . 1 2. Corrosion Mechanisms 2 3. Mechanical Design . 9 4. Protective Coatings 20 5. Insulation, Firep
21、roofing, and Accessory Materials . 27 6. Inspection and Maintenance 31 References 37 Bibliography 39 FIGURES Figure 1: Effect of Temperature on Steel Corrosion in Water . 4 Figure 2: Typical Vessel Attachments Where Water May Bypass Insulation . 11 Figure 3: Attachment to Piping Where Water May Bypa
22、ss Insulation 12 Figure 4: Vessel Insulation Support Ringthe Problem (a) and the Solution (b). 13 Figure 5: Vertical Vessel Bottom Support Ring Minimizing Water Accumulation. 13 Figure 6: Vessel-Stiffening Ring Insulation Detail . 14 Figure 7: Center Nozzle at Top Head of Vessel. 14 Figure 8: Common
23、 Nameplate Insulation Detail. 15 Figure 9: Seal-Welded Cap on Insulation for Personnel Protection. 15 Figure 10: Double-Pipe Heat Exchanger Insulation Penetrated by C-Channel Support. . 16 Figure 11: Protrusions Through Jacketing. . 16 Figure 12: Pipe Supports Without Protrusions. . 17 Figure 13: Co
24、ld Service Pipe Support Without Continuous Vapor Barrier. 18 Figure 14: Cold Service Pipe Support with Continuous Vapor Barrier. 18 Figure 15: Pipe Insulation Penetrated by Column Fireproofing. . 19 TABLES Table 1: Typical Protective Coating Systems for Austenitic and Duplex Stainless Steels Under T
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