Weldability and microstructural evolution of single crystal PWA 1484

Canadian Institute of Mining, Metallurgy and Petroleum
H. Saari A. Merati P. C. Patnaik M. Pates
Organization:
Canadian Institute of Mining, Metallurgy and Petroleum
Pages:
12
File Size:
3130 KB
Publication Date:
Jan 1, 2004

Abstract

Single crystal nickel-base superalloys such as PWA1484 exhibit superior performance compared to conventional superalloys, and are used extensively in turbine blade applications requiring good high temperature properties. The life of these blades is typically limited by cracks and erosion. Due to the high cost of these blades, welding techniques are being considered to weld/repair worn components, extending their useful lives and delaying the need for expensive replacement components. However, the sensitivities for solidification cracking and post weld heat treatment cracking are relatively high in these alloys. Electron beam (EB) welding can deliver concentrated heat sources and has the potential to address these issues. Numerous welding trials and structural tests must be conducted to identify the optimum method and welding parameters. Weldability is studied over a range of material conditions, welding parameters, and directions. The influence of welding parameters on the fusion zone microstructure and resultant weldability is investigated using combination of microscopic examination and micro-hardness testing. This paper summarizes some of the results of a feasibility study conducted to understand the effects of welding parameters on localized microstructural features, cracking sensitivity, and mechanical properties of autogenously EB welded coupons of single crystal PWA1484.
Citation

APA: H. Saari A. Merati P. C. Patnaik M. Pates  (2004)  Weldability and microstructural evolution of single crystal PWA 1484

MLA: H. Saari A. Merati P. C. Patnaik M. Pates Weldability and microstructural evolution of single crystal PWA 1484. Canadian Institute of Mining, Metallurgy and Petroleum, 2004.

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