ABS 186-2011 GUIDE FOR THE APPROVAL OF FRICTION STIR WELDING IN ALUMINUM《铝的搅拌摩擦焊接批准指南》.pdf
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1、 Guide for the Approval of Friction Stir Welding in Aluminum GUIDE FOR THE APPROVAL OF FRICTION STIR WELDING IN ALUMINUM OCTOBER 2011 American Bureau of Shipping Incorporated by Act of Legislature of the State of New York 1862 Copyright 2011 American Bureau of Shipping ABS Plaza 16855 Northchase Dri
2、ve Houston, TX 77060 USA ii ABSGUIDE FOR THE APPROVAL OF FRICTION STIR WELDING IN ALUMINUM .2011 Foreword Foreword This Guide provides the guidelines for the approval of friction stir welding procedures, operators and the nondestructive testing requirements for production friction stir welding of al
3、uminum. These guidelines are based on the current knowledge and may be updated as practical experience is gained. The latest knowledge will be considered in approval tests and may require the test program or the range of approval to be adapted accordingly. This Guide becomes effective on the first d
4、ay of the month of publication. Users are advised to check periodically on the ABS website www.eagle.org to verify that this version of this Guide is the most current. We welcome your feedback. Comments or suggestions can be sent electronically by email to 0rsdeagle.org. ABSGUIDE FOR THE APPROVAL OF
5、 FRICTION STIR WELDING IN ALUMINUM .2011 iii Table of Contents GUIDE FOR THE APPROVAL OF FRICTION STIR WELDING IN ALUMINUM CONTENTS SECTION 1 General 1 1 Scope and Application 1 2 References . 1 3 Definitions. 1 SECTION 2 Weld Procedure Qualification . 3 1 General Considerations 3 1.1 Procedure Qual
6、ification Limits.3 1.2 Test Assembly Size .3 1.3 Rejection of Test Assembly .3 1.4 Transfer of Qualification 3 1.5 Transverse Tensile Test Specimens and Transverse Bend Specimens.3 1.6 Fixturing.3 2 Qualification of Weld Repair Procedures . 5 3 Operator Qualification 5 4 FSW Weld Procedure Specifica
7、tion (WPS) and Welder Performance Qualification Record Requirements (WPQR) . 6 TABLE 1 Essential Elements of a Friction Stir Welding Procedure. 6 TABLE 2 Weld Procedure Qualification Test Requirements . 9 TABLE 3 Operator Qualification Test Requirements. 10 FIGURE 1 Butt Joint Test Assembly 4 FIGURE
8、 2 Location of Test Specimens . 4 SECTION 3 FSW Production Quality Control and NDT Requirements 11 1 Records 11 2 Inspection Before Production FSW 11 2.1 Verification Before Welding .11 2.2 Joint Setup Variability11 3 Inspection During Production FSW 11 iv ABSGUIDE FOR THE APPROVAL OF FRICTION STIR
9、WELDING IN ALUMINUM .2011 4 Inspection After Production FSW Visual Inspection (VT) 11 4.1 Exit Hole Uniformity.12 4.2 Herring Bone or Chevron Marking.12 4.3 Flash12 4.4 Dimensional Requirements12 4.5 Butt Joint Alignment.12 4.6 Irregular Width.12 4.7 Root Reinforcement.12 4.8 Cracks, Porosity, Lack
10、of Penetration12 4.9 Visual Examination Records12 5 Other Inspection After FSW . 13 5.1 Macroetch13 5.2 Penetrant Testing (PT) 13 5.3 Ultrasonic Testing (UT)13 5.4 Radiographic Testing (RT) 13 5.5 Batch Testing Alternative.13 6 FSW NDT Acceptance Requirements 13 6.1 Visual Inspection (VT) .13 6.2 Pe
11、netrant Testing 13 6.3 Ultrasonic Testing (UT)14 6.4 Radiographic Testing (RT) 14 ABSGUIDE FOR THE APPROVAL OF FRICTION STIR WELDING IN ALUMINUM .2011 1 Section 1: General SECTION 1 General 1 Scope and Application This Guide has been developed with the objective of setting out the requirements for t
12、he qualification of friction stir welding (FSW) procedures and operators. This Guide also provides guidelines for the production quality control of FSW and the nondestructive testing (NDT) requirements. FSW produces a weld between two abutting workpieces by the frictional heating and plastic materia
13、l displacement caused by a rotating tool that traverses along the weld joint. This Guide is for the application of FSW for aluminum groove welds. No other joint configuration is considered in this Guide. Weld procedure and operator qualification requirements apply for FSW of aluminum alloys identifi
14、ed in Ref. 1. 2 References The following documents form a part of this overall Guide to the extent they are referenced. Reference Number Reference Description 1 ABS Rules for Welding and Materials (Part 2) 2 AWS A3.0 Standard Welding Terms and Definitions 3 ABS Guide for Nondestructive Inspection of
15、 Hull Welds 4 AWS D1.2/D1.2M Structural Welding Code Aluminum 5 AWS D17.3/17.3M Specification for Friction Stir Welding of Aluminum Alloys for Aerospace Applications 6 NASA document PRC-5010C, Process Specification for Pickling, Etching, and Descaling of Metals 3 Definitions Adjustable Probe (Retrac
16、table Pin) Tool Tool probe length, rotation speed, direction of probe rotation are adjustable. Advancing Side of Weld Side of the weld where the direction of tool rotation is the same as the direction of welding. Direction of Tool Rotation Rotation as viewed from the spindle that is rotating the too
17、l. Exit Hole Hole remaining at the end of a weld after the withdrawal of the tool. Flash Material expelled along the weld toe during FSW. Friction Stir Re-weld FSW pass upon FSW pass from one side only. Friction Stir Welding Methods Methods include, but are not limited to, robotic, single spindle, m
18、ultiple spindles, adjustable probe (retractable probe) tool, self-reacting (bobbin) tool, and simultaneous two-sided welding. Heel Part of the tool shoulder that is at the rear of the tool relative to its forward motion. Heel Plunge Depth Distance the heel extends into the workpiece. Joint Line Remn
19、ant Unmixed and distorted layer of Aluminum Oxide, occurring at the root of the joint faying surfaces, when the joint is welded from one side using anvil backing. Section 1 General 2 ABSGUIDE FOR THE APPROVAL OF FRICTION STIR WELDING IN ALUMINUM .2011 Probe Part of the welding tool that extends into
20、 the workpiece to make the weld. Retreating Side of Weld Side of the weld where the direction of tool rotation is opposite to the welding direction. Self-reacting (Bobbin) Tool Tool with two shoulders separated by a fixed length probe or an adjustable length probe. Sweep Denotes a curve in the horiz
21、ontal plane. Tool Offset The shortest distance from the tool axis to the joint. Tool Shoulder Surface of the tool that contacts the workpiece surface during welding. Tool Rotation Speed Angular speed of the welding tool in revolutions per minute. Welding Tool Rotating component that passes entirely
22、through or partially through the workpiece, and may or may not have a shoulder. ABSGUIDE FOR THE APPROVAL OF FRICTION STIR WELDING IN ALUMINUM .2011 3 Section 3: Weld Procedure Qualification SECTION 2 Weld Procedure Qualification 1 General Considerations Prior to production welding, the manufacturer
23、 or contractor shall develop and qualify FSW procedures. A welding procedure qualification test plate schematic with locations for removal of test specimens is shown in Section 2, Figures 1 and 2. The FSW fabricator shall document the essential elements of Section 2, Table 1 when developing a FSW pr
24、ocedure. Section 2, Table 2 provides the required destructive and nondestructive tests for FSW qualification test assemblies. Each FSW manufacturer or contractor is responsible for the FSW done by their organization and shall conduct the qualification tests required in this Section. Every weld proce
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