Titanium micro addition in a centrifugally cast HPNb alloy: High temperature mechanical properties
The influence of titanium micro addition on the mechanical properties at high temperature of HPNb alloy has been investigated. Two seamless tubes were centrifugally cast with a Ti micro addition being the major difference between them. Hot tensile and creep rupture tests were performed in the range...
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Veröffentlicht in: | Materials science & engineering. A, Structural materials : properties, microstructure and processing Structural materials : properties, microstructure and processing, 2015-06, Vol.636, p.48-52 |
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container_title | Materials science & engineering. A, Structural materials : properties, microstructure and processing |
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creator | Andrade, A.R. Bolfarini, C. Ferreira, L.A.M. Souza Filho, C.D. Bonazzi, L.H.C. |
description | The influence of titanium micro addition on the mechanical properties at high temperature of HPNb alloy has been investigated. Two seamless tubes were centrifugally cast with a Ti micro addition being the major difference between them. Hot tensile and creep rupture tests were performed in the range of 900–1100°C combining different strain rates and stresses, respectively. The Ti micro addition in the HPNb alloy decreases the mechanical resistance in the hot tensile tests, but increases considerably the time to rupture and ductility in creep properties. Solid solution, carbide formation and precipitation play important roles controlling these properties. A change in the fracture mode associated with a change in the creep mechanism was reported for both alloys. |
doi_str_mv | 10.1016/j.msea.2015.03.085 |
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Two seamless tubes were centrifugally cast with a Ti micro addition being the major difference between them. Hot tensile and creep rupture tests were performed in the range of 900–1100°C combining different strain rates and stresses, respectively. The Ti micro addition in the HPNb alloy decreases the mechanical resistance in the hot tensile tests, but increases considerably the time to rupture and ductility in creep properties. Solid solution, carbide formation and precipitation play important roles controlling these properties. 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source | ScienceDirect Journals (5 years ago - present) |
subjects | Alloying additive Centrifugal cast Centrifugal casting Creep (materials) Heat resistant alloy High temperature mechanical properties HP alloy Materials science Mechanical properties Rupture tests Tensile tests Titanium Titanium addition |
title | Titanium micro addition in a centrifugally cast HPNb alloy: High temperature mechanical properties |
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