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- W2697373325 abstract "It is known that material structure affects twinning in metallic alloys. The influences of local chemical ordering on twinning tendencies have been examined in cubic systems but not HCP systems. In cubic metals arbitrary changes in shape can be completely accommodated by easy slip, and twins form as a result of glide processes. This is not the case in HCP metals. Easy slip along does not provide for deformation along [0001]-often twinning mechanisms allow for this in HCP alloys. In this study, tensile twins were found to form in an α-Ti-6wt% Al alloy subjected to static and quasi-static compressive loading at room temperature. Twinning was found to be dependent on the level of plastic strain imposed, the extent of local chemical ordering (SRO), and the distribution of crystallite orientations relative to the deformation axis." @default.
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- W2697373325 date "2016-05-02" @default.
- W2697373325 modified "2023-09-25" @default.
- W2697373325 title "Twinning in a Single-Phase α-Titanium Alloy: Relationships Between Deformation, Ordering, And Texture" @default.
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- W2697373325 doi "https://doi.org/10.1002/9781119296126.ch177" @default.
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