microstructure & performance of joints in high temperature alloys

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Microstructure & Performance of Joints in High Temperature Alloys

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Page 1: Microstructure & Performance of Joints in High Temperature Alloys

Microstructure & Performance of Joints in High Temperature Alloys

Page 2: Microstructure & Performance of Joints in High Temperature Alloys

Microstructure & Performance of Joints in

Superalloys www.msm.cam.ac.uk/phase-

trans

Page 3: Microstructure & Performance of Joints in High Temperature Alloys

Shirzadi, Saindrenan & Wallach, 2003

Minimal gallium

Diffusion Bonding

Pure aluminium

Page 4: Microstructure & Performance of Joints in High Temperature Alloys

Diffusion Bonding of Gallium -Treated Superalloy Surfaces

3-10 MPa pressure900-1250 oC1 h10-7 bar1 mg cm-2 gallium

Page 5: Microstructure & Performance of Joints in High Temperature Alloys

Co-23Cr-10 Ni-7W0.2Ti-0.6C-0.5Zr wt%

100 µm

Shirzadi & Wallach

Page 6: Microstructure & Performance of Joints in High Temperature Alloys

Ni-15Cr-10Co-9.5Mo4.2Al-3.6Ti-0.006B wt%

50 µm

Shirzadi & Wallach

Page 7: Microstructure & Performance of Joints in High Temperature Alloys

Superalloy Cr Co Mo W Al Ti B C Si Zr Others

Inconel 718 18.3 0.1 2.85 0.5 0.92 0.003 0.02 0.08 0.01 0.08Mn, 0.0004SInconel 738 16 8.5 1.75 2.6 3.4 3.4 0.01 0.17 0.1 1.75Ta, 0.9Nb

C1023 15 10 8.5 4.2 3.6 0.006DSR142 8.3 13 1.5 6 3.4 7Ta, 1.8HfPWA647 23 Bal. 0 0 0.2 0 0.6 0 0.5 10Ni, 7W, 3.5 Ta

Page 8: Microstructure & Performance of Joints in High Temperature Alloys

Directionally solidified nickel

superalloy

Single-crystal nickel superalloy

Shirzadi & Wallach

Page 9: Microstructure & Performance of Joints in High Temperature Alloys

Shirzadi & WallachBonding completed in 1 hour

Page 10: Microstructure & Performance of Joints in High Temperature Alloys

Kurz

Single-Crystal Repair

Melt shallow layer of SX substrate using laser.

Feed melt pool with alloy powder.

Epitaxial columnar growth.

Repeat to build thicker layers.

Page 11: Microstructure & Performance of Joints in High Temperature Alloys
Page 12: Microstructure & Performance of Joints in High Temperature Alloys

Kurz

Single-Crystal Repair

Page 13: Microstructure & Performance of Joints in High Temperature Alloys

Kurz

Page 14: Microstructure & Performance of Joints in High Temperature Alloys

Lowering Cr improves properties.

Polycrystalline coatings such as NiCrAlY.

Ni is anisotropic.

Single-Crystal Surface Engineering

Page 15: Microstructure & Performance of Joints in High Temperature Alloys

E100 = 125 GPa E111 = 310 GPa

Sieborger et al.

Page 16: Microstructure & Performance of Joints in High Temperature Alloys

Kurz

Dendrites grow along <100>.

Variant selected is closest to heat flux.

Page 17: Microstructure & Performance of Joints in High Temperature Alloys

high aluminium MCrAlY

primary

low aluminium MCrAlY

primary

Page 18: Microstructure & Performance of Joints in High Temperature Alloys

MCrAlY

CMSX-4

Page 19: Microstructure & Performance of Joints in High Temperature Alloys

Transient liquid-phase bonding

Page 20: Microstructure & Performance of Joints in High Temperature Alloys

Shirzadi & Wallach, 1999

Al-Li

TLP

TG-TLP

Page 21: Microstructure & Performance of Joints in High Temperature Alloys
Page 22: Microstructure & Performance of Joints in High Temperature Alloys
Page 23: Microstructure & Performance of Joints in High Temperature Alloys

Shirzadi & Wallach, 1999

TG-TLP

Alloy 6082

Large gradient

Small gradient

Page 24: Microstructure & Performance of Joints in High Temperature Alloys

Inertia Welding Process

No liquid phase

Can join dissimilar metals

Powder metallurgical alloy RR1000

Residual stressBaxter, Preuss, Withers

Page 25: Microstructure & Performance of Joints in High Temperature Alloys

Rolls-Royce

Nottingham

Page 26: Microstructure & Performance of Joints in High Temperature Alloys

Mechanically Alloyed

Oxide Dispersion Strengthened Metals

Page 27: Microstructure & Performance of Joints in High Temperature Alloys

Fine dispersion of yttria particles

Page 28: Microstructure & Performance of Joints in High Temperature Alloys
Page 29: Microstructure & Performance of Joints in High Temperature Alloys

screw

shoulder

termination

Page 30: Microstructure & Performance of Joints in High Temperature Alloys

2D Mixing Animation

Colegrove & Shercliff, 2002

Page 31: Microstructure & Performance of Joints in High Temperature Alloys

Microstructure & Performance of Joints in

Superalloys www.msm.cam.ac.uk/phase-

trans