AWS PHB-6-2004 The Everyday Pocket Handbook for Visual Inspection of AWS D1 1 Structural Welding Code s Fabtication and Welding Requirements《聚羟基丁酸酯-日常手册 AWSD1 1焊接结构代码的Fabtication和焊.pdf
《AWS PHB-6-2004 The Everyday Pocket Handbook for Visual Inspection of AWS D1 1 Structural Welding Code s Fabtication and Welding Requirements《聚羟基丁酸酯-日常手册 AWSD1 1焊接结构代码的Fabtication和焊.pdf》由会员分享,可在线阅读,更多相关《AWS PHB-6-2004 The Everyday Pocket Handbook for Visual Inspection of AWS D1 1 Structural Welding Code s Fabtication and Welding Requirements《聚羟基丁酸酯-日常手册 AWSD1 1焊接结构代码的Fabtication和焊.pdf(40页珍藏版)》请在麦多课文档分享上搜索。
1、12NOTE: Although care was taken in choosing and presenting the data in this guide, AWS cannot guarantee that it iserror free. Further, this guide is not intended to be an exhaustive treatment of the topic and therefore may not include allavailable information, including with respect to safety and he
2、alth issues. By publishing this guide, AWS does not insureanyone using the information it contains against any liability or injury to property or persons arising from that use. 2004 by American Welding Society. All rights reserved.Printed in the United States of America3The inspection requirements f
3、or the fabrication and welding of steel structures are very extensive. This PocketHandbook has been developed to provide a useful tool for inspectors to carry in their pockets or tool kits sothat selected pertinent portions of the AWS Structural Welding CodeSteel, D1.1/D1.1M:2004, can be easilyrefer
4、enced at the job site. Underlining is as shown in the code.This publication is not to be considered as a substitute for the D1.1 code book. Rather, the Handbook is providedas a supplemental aid for the “deckplate” inspector. Only the complete code should be considered as the officialdocument to ensu
5、re that all of the quality attributes required for structural fabrication are performed correctlyand completely.To assist the inspector, or other user, in verifying conformance to D1.1, the paragraph references, the table num-bers, and the figure numbers contained in this book are directly from the
6、D1.1/D1.1M:2004 code. In addition,page numbering in this handbook is cross-referenced to reflect both the current page and the corresponding pagefrom the D1.1/D1.1M:2004 code, separated by a “/.” This will provide an easy cross reference for the user toensure that the complete requirements are under
7、stood when questions develop during the course of any inspection.Introduction4Requirements for Transitions Between Materials of Unequal Thickness 5Thermal Cutting and Access Hole Requirements 9Tolerance of Joint Dimensions. 13Dimensional Tolerances of Welded Structural Members. 19Base Material Surfa
8、ce Requirements . 25Weld Profile Requirements 26Acceptance Criteria for Visual Inspection of Welds 32Index. 37Table of Contents5Figure 2.21Transition of Thickness of Butt Joints in Parts ofUnequal Thickness (Tubular) (see 2.25 pg. 22)Requirements for Transitions Between Materials of Unequal Thicknes
9、s5/pg. 556Figure 2.21 (Contd)Transition of Thickness of Butt Joints in Parts ofUnequal Thickness (Tubular) (see 2.25 pg. 22)Requirements for Transitions Between Materials of Unequal Thickness6/pg. 557Figure 2.2Transition of Butt Joints in Parts of Unequal Thickness (Nontubular)(see 2.7.1 pg. 10 and
10、2.16.1.1 pg. 14)Requirements for Transitions Between Materials of Unequal Thickness7/pg. 428Figure 2.12Transition of Width (Cyclically Loaded Nontubular) (see 2.16.1.2 pg. 14)Requirements for Transitions Between Materials of Unequal Thickness8/pg. 4895.15.4.3 Roughness Requirements. In thermalcuttin
11、g, the equipment shall be so adjusted andmanipulated as to avoid cutting beyond (inside) theprescribed lines. The roughness of all thermal cutsurfaces shall be no greater than that defined by theAmerican National Standards Institute surface rough-ness value of 1000 in. 25 m for material up to4 in. 1
12、00 mm thick and 2000 in. 50 m for mate-rial 4 in. to 8 in. 200 mm thick, with the followingexception: the ends of members not subject to calcu-lated stress at the ends shall not exceed a surfaceroughness value of 2000 in. ANSI/ASME B46.1,Surface Texture (Surface Roughness, Waviness, andLay) is the r
13、eference standard. AWS Surface Rough-ness Guide for Oxygen Cutting (AWS C4.1-77) maybe used as a guide for evaluating surface roughnessof these edges. For materials up to and including 4 in.100 mm thick, Sample No. 3 shall be used, andfor materials over 4 in. up to 8 in. 200 mm thick,Sample No. 2 sh
14、all be used.5.15.4.4 Gouge or Notch Limitations. Rough-ness exceeding these values and notches or gougesnot more than 3/16 in. 5 mm deep on other wisesatisfactory surfaces shall be removed by machiningor grinding. Notches or gouges exceeding 3/16 in.5 mm deep may be repaired by grinding if thenomina
15、l cross-sectional area is not reduced by morethan 2%. Ground or machined surfaces shall be faredto the original surface with a slope not exceeding onein ten. Cut surfaces and adjacent edges shall be leftfree of slag. In thermal-cut surfaces, occasionalnotches or gouges may, with approval of the Engi
16、-neer, be repaired by welding.5.16 Reentrant CornersReentrant corners of cut material shall be formedto provide a gradual transition with a radius of notless than 1 in. 25 mm. Adjacent surfaces shall meetwithout offset or cutting past the point of tangency.Thermal Cutting and Access Hole Requirement
17、s9/pg. 18510The reentrant corners may be formed by thermal cut-ting, followed by grinding, if necessary, to meet thesurface requirements of 5.15.4.3.5.17 Beam Copes and Weld Access HolesRadii of beam copes and weld access holesshall provide a smooth transition free of notches orcutting past the poin
18、ts of tangency between adjacentsurfaces and shall meet the surface requirements of5.15.4.3.5.17.1 Weld Access Hole Dimensions. All weld ac-cess holes required to facilitate welding operationsshall have a length (A) from the toe of the weldpreparation not less than 1-1/2 times the thickness ofthe mat
19、erial in which the hole is made. The height(h) of the access hole shall be adequate for depo-sition of sound weld metal in the adjacent plates andprovide clearance for weld tabs for the weld in thematerial in which the hole is made, but not less thanthe thickness of the material. In hot rolled shape
20、s andbuilt-up shapes, all beam copes and weld accessholes shall be shaped free of notches or sharp re-entrant corners except that when fillet web-to-flangewelds are used in built-up shapes, access holes mayterminate perpendicular to the flange. Fillet weldsshall not be returned through weld access h
21、oles (seeFigure 5.2).5.17.2 Group 4 and 5 Shapes. For ASTM A6Group 4 and 5 shapes and built-up shapes with webmaterial thickness greater than 1-1/2 in. 40 mm, thethermally cut surfaces of beam copes and weld accessholes shall be ground to bright metal and inspectedby either MT or PT. If the curved t
22、ransition portion ofweld access holes and beam copes are formed by pre-drilled or sawed holes, that portion of the access holeor cope need not be ground. Weld access holes andbeam copes in other shapes need not be ground norinspected by MT or PT.10/pg. 18511Figure 5.2Weld Access Hole Geometry (see 5
23、.17.1 pg. 185)11/pg. 19612General Notes:For ASTM A 6 Group 4 and 5 shapes and welded built-up shapes with web thickness more than 1-1/2 in. 40 mm, preheat to150F 65C prior to thermal cutting, grind and inspect thermally cut edges of access hole using MT or PT methods prior tomaking web and flange sp
24、lice groove welds.These are typical details for joints welded from one side against steel backing. Alternative joint designs should be considered.Notes:1. Radius shall provide smooth notch-free transition; R 3/8 in. 10 mm (Typical 1/2 in. 12 mm).2. Access hole made after welding web to flange.3. Acc
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