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Inconel 713C offers outstanding resistance to thermal fatigue and good castability while offering exceptional rupture strength at 1700F (927C). Inconel 713C is a nickel-chromium alloy that is ideally suited for jet engine gas turbine blades.
Mechanical behaviour of Inconel 713LC at different strain rates and high temperatures. The testing set-up was designed to perform compression tests on prismatic specimens and tensile tests of cylindrical specimens. Low strain rate tests were performed using a servo-hydraulic Instron machine at a constant strain rate of 105 s1, corten steel pipe stock
Purpose: Aircraft industry often uses nickel super-alloys for blades of jet engine turbines. This paper summarises analysis of influence of heat treatment on structural characteristics of nickel super-alloy INCONEL 713LC. Design/methodology/approach: Experimental investigation castings made of commercially produced nickel super-alloy INCONEL 713LC.
Ni-based superalloy Inconel 713 LC. Nominal chemical composition of nickel-based superalloy IN 713LC. Microstructure: solid solution g + harden phase g + primary complex carbides of MC type (on Ta, Ti, Nb, Mo, Cr, Zr base) + secondary complex carbides of M23C6 type (on W, Ti, Cr, Nb base).
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The turbine blades, used in this study, were made from Inconel 713LC and were welded in their shrouds using EBW at Siemens Canada as illustrated in Fig. 1. EBW has high quality of the weld due to minimum chance of oxidation when welding is executed under vacuum  .