REG NASA-LLIS-0663-2000 Lessons Learned Welding Practices for 2219 Aluminum and Inconel 718.pdf
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1、Best Practices Entry: Best Practice Info:a71 Committee Approval Date: 2000-03-06a71 Center Point of Contact: MSFCa71 Submitted by: Wil HarkinsSubject: Welding Practices for 2219 Aluminum and Inconel 718 Practice: Gas Tungsten Arc Welding and Variable Polarity Plasma Arc Welding are preferred for joi
2、ning 2219 Aluminum, and Electron Beam Welding is preferred for joining Inconel 718 in critical aerospace flight applications.Programs that Certify Usage: Programs That Certified Usage: Saturn I, Saturn V, Space Shuttle External Tank, and Space Shuttle Main Engine.Center to Contact for Information: M
3、SFCImplementation Method: This Lessons Learned is based on Reliability Practice No. PD-ED-1205; from NASA Technical Memorandum 4322A, NASA Reliability Preferred Practices for Design and Test.Benefit:Adhering to proven design practices and processing techniques for 2219 Aluminum and Inconel 718 will
4、result in high performance joints, reduced weld defects, reduced weld repair costs, and reduced inspection costs. These practices, if conscientiously applied, will reduce the potential for galvanic corrosion, hot cracking, imperfect bead shape, inclusions, lack of fusion, lack of penetration, microf
5、issuring, mismatch, peaking, porosity, residual stresses, start/stop defects, and stress corrosion Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-cracking.Implementation Method:Three types of welding for two commonly used materials have been used pr
6、edominantly at NASA/MSFC for the welding of aerospace hardware: (1) Gas Tungsten Arc Welding (GTAW) for 2219 aluminum; (2) Variable Polarity Plasma Arc Welding (VPPAW) for 2219 aluminum; and (3) Electron Beam Welding (EBW) for Inconel 718. In Gas Tungsten Arc Welding for 2219 aluminum, heat required
7、 to join the aluminum is generated through an electrical arc applied at the joint. An inert atmosphere of helium surrounds the arc to prevent oxidation during the welding process. The type of GTAW covered in this practice is direct current, straight polarity (DCSP) in which the torch serves as the n
8、egative electrode (cathode) and the work piece as the positive electrode (anode). In Variable Polarity Plasma Arc Welding for 2219 aluminum, an arc gas (argon) is constricted by an orifice in the torch so that it forms a narrow column of high density gas that carries the arc current. Current is reve
9、rsed up to 20 percent of the time in a 20 to 25 microsecond cycle to provide a cleaning action to the work piece. Electron Beam Welding is performed in a vacuum and generates heat for fusing adjoining metals by impacting high kinetic energy electrons upon the work piece surface. Definitions of selec
10、ted welding terms applicable to the three types of welding are provided at the end of this section.The three types of welding, along with distinguishing recommended practices for each, are shown in Table 1. Among the important practices that will aid in ensuring high reliability welds are welding in
11、 the proper position, use of high purity shield and plasma gasses, proper cleaning of the joint prior to welding, operator certification, and computer control of the welding process. The use of 2-percent thoriated tungsten electrodes for GTAW and VPPAW provides arc stability and increases electrode
12、service life over that of standard tungsten electrodes. Important additional precautions for all three types of welding are use of rigid tooling to reduce weld joint deformation, nonmagnetic tooling to prevent skewing of the arc due to magnetic deflection, and correct and properly marked weld rod an
13、d wire. Automation is highly desirable for all three methods to maintain weld uniformity. If tack welds are used to temporarily hold adjoining parts in place, they should be consumed during the welding process. Specific characteristics, parameters, precautions, and criteria for each type of welding
14、are described in the following three paragraphs:1. Gas Tungsten Arc Welding (GTAW) (DCSP) for 2219 AluminumAs shown in Table 1, the flat (downhand) position is preferred for the best weld uniformity and penetration. Welding in the direct current, straight polarity (DCSP) mode while using high purity
15、 helium shield gas provides deep penetration without oxidation or contamination. (Welding in the alternating current mode is particularly suitable for welding thin aluminum as it produces less heat and provides good cathodic cleaning.) Pulsing of the weld current can be used to provide better contro
16、l for some out-of-position welds. Minimizing the number of weld passes will decrease the tendency for distortion. A pointed tip electrode is used in GTAW. A positive torch “lead angle“ is Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-desirable for
17、GTAW (DCSP) to provide preheating and more uniform melting.Lower energy inputs generally increase weld strength. GTAW (DCSP) is a preferred process for tack welding of aluminum. GTAW (DCSP) also can be used for welding steels (including stainless steel), titanium, magnesium (with care), and refracto
18、ry metals. The 2219 aluminum is an excellent alloy for maximum strength in cryogenic applications with good weldability.Table 1. Weld Characteristics/Parameter/Criteria for Three Types of Welding CHARACTERISTIC OR PARAMETER RECOMMEND OR STANDARD PRACTICES GAS TUNGSTEN ARC WELDING (2219 Al) VARIABLE
19、POLARITY PLASMA ARC WELDING (2219 Al) ELECTRON BEAM WELDING (INCONEL 718) Preferred Position Flat Vertical Flat Shield GasHelium (99.999% Purity) Helium (99.999% Purity) Vacuum Plasma Gas N/A Argon (99.999% Purity) N/A Backing Required No No In Some Instances (1) Preferred Electrode2% Thoriated Tung
20、sten 2% Thoriated Tungsten (Tungsten Filament) Appropriate for Repair Yes Not Usually (2) Yes Cleaning RequirementsMechanical Removal of Oxide, Free of Hydrocarbons Mechanical Cleaning Not Required, Degrease Only Special Cleaning for Vacuum Requirements Used for Tack Welding Yes No Yes Computer Cont
21、rol Desirable Essential Desirable Most Prominent Potential DefectsOxide and Tungsten Porosity, Lack of Penetration or Fusion Undercut, Lack of Fusion Improper Seam Tracking, Microfissuring Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-N/A: Not Appl
22、icableNotes: 1. Backing bars are used for EBW in some instances to ensure full penentration without overshooting or to eliminate excessive spatter.2. VPPAW usually is employed in an initial manufacturing process since it is the most sophisticated method and the most adaptable to automation. Repair o
23、f larger seam welds may be appropriate for jobs of sufficient size warranting setup.refer to D descriptionProvided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-D 2. Variable Polarity Plasma Arc Welding (VPPAW) for 2219 AluminumFigure 1 shows three variatio
24、ns of plasma arc welding: (1) Straight Polarity; (2) Reverse Polarity; and (3) Variable Polarity. Variable Polarity Plasma Arc Welding retains the high heating capacity of the straight polarity process while offering the part cleaning feature of reverse polarity. A flat-tipped electrode is used in V
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