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Composite Materials. Resistance Welding . Learning Activities View Slides; Read Notes, Listen to lecture Do on-line workbook. Lesson Objectives When you finish this lesson you will understand:. Keywords. Matrix Materials. Magnesium Lowest density (37% lighter than aluminum)
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Resistance Welding • Learning Activities • View Slides; • Read Notes, • Listen to lecture • Do on-line workbook • Lesson Objectives • When you finish this lesson you will understand: Keywords
Matrix Materials • Magnesium • Lowest density (37% lighter than aluminum) • Aerospace applications • Creeps at low temp • Relatively low strength • Prone to variety of corrosion problems • Aluminum • Easy to process, inexpensive • Density only 35% of Steel • Can be alloyed to fairly high strengths • 57% stiffer than Magnesium • Excellent corrosion resistance • Most widely used material
Matrix Materials • Titanium • Twice as strong as aerospace aluminum • 65% heavier than aluminum, but 65% stiffer • Temp & corrosion resistant = use in demanding environments • Copper, Iron, Nickel, Tungsten • Special use alloys • Electronic Circuits • Metal forming dies • Jet engines • Military applications
Reinforcements • Other • Graphite (C) • Titanium Diboride (TiB2) • Ceramics • Silicon Carbide (SiC) • Aluminum Oxide (Al2O3) • Titanium Carbide (TiC) • Boron Carbide (B4C) • Metal Filaments • Boron • Steel • Tungsten • Choice of matrix and reinforcement depends on: • Desired properties of composite • Compatibility between matrix and reinforcement • MMC Processing route
Designation for MMC Matrix + Reinforcement / Volume % Form • Matrix = metal or alloy designation of matrix • Reinforcement = chemical formula of reinforcement • Volume % = Volume percent without the % sign • Form = Form of the reinforcement • f, fiber or filament • c, chopped fiber • w, whisker • p, particulate Example: 6061 + SiC/20w
Particulate Composite Short-Fiber Composite Long-Fiber Composite Laminated Composite Manufacturing Processes Welding Handbook, AWS
Processing Methods Solid State Semi-solid Liquid
Solid State Processing • Bonding of continuous fibers between metal foils to make panels • Aerospace Applications • Ti/Sic; Al/B Laminated Composite • Powder Metallurgy • Mix particles of matrix with reinforcement • Vacuum hot press (near solidus) • Extrude or roll • Al/B4C; Al/SiC
Semi-Solid Processing Spray Deposition Chilled Plate ……….. MMC Build Up Flame Spray Matrix Flame Spray Reinforcement • Rheocasting • Mix reinforcement into matrix held between solidus and liquidus x
Liquid Processing • Infiltration • Interfacial reactions can be a problem
Applications - From Ukraine Krivov, Optimization of design-production…, Welding in the World, Nov-Dec 1994
Applications Krivov, Optimization of design-production…, Welding in the World, Nov-Dec 1994
Krivov, Optimization of design-production…, Welding in the World, Nov-Dec 1994
Detrimental Weld Pool Chemical Reactions [l] indicates liquid phase [s] indicates solid phase [All] indicates in solution with liquid aluminum
Time-Temp Effect of Chem Reaction Arc Welding Resistance Welding Welding Handbook, AWS
Capacitor Discharge • Stud Welding • Solid State • Fusion Weld • Brazing
Capacitor Discharge Stud Welding • MMC Materials Welded • 6061, 2024, 6061/SiC/40p, 6061/SiC/48f, 6061/B4C/30p, AZ61/B4C/40p • Studs = 0.25 in; Sheet=0.13 in • Time = 0.4 ms • Solidification rate = 106 C/s
Stud Welding Welding Handbook, AWS
Capacitor Discharge - Solid State Welding • Ti-6Al-4V/SiC Sheets • Ti-6Al-4V/SCS-6 SCS-6 is a complex fiber with SiC vapor deposited onto a graphite carbon core Diffusion (solid state) Bond No Melting Failure Occurred Upon Loading Remote from Weld Interface Baeslack & Froes, Joining Similar & Dissimilar……, JOM March 1995
Increase in Welding Current (Voltage) Causes Change From Solid State to Fusion Weld Cox et al, Capacitor Discharge RSW of SiC Fiber… Welding Journal, Oct 1993
SCS-6 Fiber Capacitor Discharge Solid State Weld No liquid - Weld Strength 80% of Monolithic Cox et al, Capacitor Discharge RSW of SiC Fiber… Welding Journal, Oct 1993
Solid State Weld with no Fiber degradation Cox et al, Capacitor Discharge RSW of SiC Fiber… Welding Journal, Oct 1993
Partial Melting Fusion Weld Cox et al, Capacitor Discharge RSW of SiC Fiber… Welding Journal, Oct 1993
Solidified Liquid around fiber, Property degradation Cox et al, Capacitor Discharge RSW of SiC Fiber… Welding Journal, Oct 1993
Spot Brazing Continuous C Fiber MMC Al-7Zn/C BAlSi-4 Brazing Foil Low force = expulsion > 400 lb = fiber packing at weld center (see next slide)
Brazing Welding Handbook, AWS
Spot Brazing Continuous SiC Fiber MMC Ti-22Al-23Nb/SiC Ti-Cu-Ni Braze Foil Baeslack & Froes, Joining Similar & Dissimilar……, JOM March 1995
Baeslack & Froes, Joining Similar & Dissimilar……, JOM March 1995
Time-Temp Effect of Chem Reaction Arc Welding Resistance Welding Welding Handbook, AWS
Resistance Spot Welding • Solid State • With Melting/Solidification
Spot Welding Welding Handbook, AWS
Adjusting Welding Force Welding Time To Avoid Fiber Crushing in Al/B MMC (Continuous Fiber) Welding Handbook, AWS
Aluminum/Boron Continuous Fiber Hersh, Resistance Spot Weld MMC, Welding Journal, June 1970
Aluminum/Boron Continuous Fiber Hersh, Resistance Spot Weld MMC, Welding Journal, June 1970
Aluminum/Boron Continuous Fiber Hersh, Resistance Spot Weld MMC, Welding Journal, June 1970
Aluminum/Boron Continuous Fiber Hersh, Resistance Spot Weld MMC, Welding Journal, June 1970
Aluminum/Boron Continuous Fiber Hersh, Resistance Spot Weld MMC, Welding Journal, June 1970
Spot Welding Discontinuous Fibers Segregation of reinforcement (see next slide)