Temperature Dependence of Embrittlement of Cu[001] Symmetrical Tilt Boundaries Induced by Bi Segregation
Hiromi Miura, Hiroshi Nakata, Taku Sakai, Masaharu Kato, Tsutomu Mori
Abstract
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Hiromi Miura, Hiroshi Nakata, Taku Sakai, Masaharu Kato, Tsutomu Mori
Abstract
Open-access reader
**Dの伽雁% げ物渉爾αZs So纏。θ朋4Eπ9珈θ7勿8;丁加G彫4%α云6 S6勿oZα !>捻8拡翻まα, To勿。動∫ 吻 θ(ゾπC伽0 08y,脇認07ゴー肋, y漉0加吻α Cu bicrystals with various[001]symmetric tilt boundaries doped with Bi were tensile tested at several temper-atures. The fracture behavior depended strongly on the misorientation angle, Bi doping time, aging conditions and testing temperature. Grain boundaries were more embrittled with increase in the Bi doping time and by the aging treatment depending on misorientation. As the testing temperature increases, the difference in the de彗ree of embrittlement among different grain boundaries became more significant. These observations could be understood reasonably by considering the grain-boundary energy. The grain boundaries are more brittle and fracture more easily at lower tensile stresses with increasing grain-boundary energy. (
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**Dの伽雁% げ物渉爾αZs So纏。θ朋4Eπ9珈θ7勿8;丁加G彫4%α云6 S6勿oZα !>捻8拡翻まα, To勿。動∫ 吻 θ(ゾπC伽0 08y,脇認07ゴー肋, y漉0加吻α Cu bicrystals with various[001]symmetric tilt boundaries doped with Bi were tensile tested at several temper-atures. The fracture behavior depended strongly on the misorientation angle, Bi doping time, aging conditions and testing temperature. Grain boundaries were more embrittled with increase in the Bi doping time and by the aging treatment depending on misorientation. As the testing temperature increases, the difference in the de彗ree of embrittlement among different grain boundaries became more significant. These observations could be understood reasonably by considering the grain-boundary energy. The grain boundaries are more brittle and fracture more easily at lower tensile stresses with increasing grain-boundary energy. (
Key concepts: Misorientation, Embrittlement, Materials science, Grain boundary, Tilt (camera), Grain boundary strengthening, Ultimate tensile strength, Metallurgy