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Effects of microstructure and environment on room-temperature tensile properties of B2-type polycrystalline CoTi intermetallic compound

机译:B2型多晶CoTi金属间化合物的微观结构和环境对室温拉伸性能的影响

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摘要

Room-temperature tensile property and fracture mode of B2-type polycrystalline CoTi intermetallic compound was studied as functions of microstructure and environment. Using a hot-rolled CoTi sheet, various microstructures were prepared by different heat treatments and pre-straining. Tensile elongation as well as ultimate tensile strength (UTS) of specimens deformed in vacuum (i.e. intrinsic tensile elongation and strength) depended on microstructure. The hot-rolled and recovered specimens showed higher elongation and tensile strength than the fully-annealed and aged specimens. Also, the pre-strained specimen showed the improved elongation and UTS in comparison with the fully-annealed specimen. On the other hand, tensile elongation and UTS of the specimens deformed in air were lower than those of the specimens deformed in vacuum, irrespective of microstructure. The extent of embrittlement was lower in the hot-rolled, recovered and pre-strained specimens than in the fully-annealed and aged specimens. SEM observation for the hot-rolled and recovered specimens showed that the quasi-cleavage fracture mode was dominant irrespective of testing environment. However, the fully-annealed, aged and pre-strained specimens consisting of recrystallized grains exhibited quasi-cleavage fracture mode mixed with intergranular fracture mode. The results showed that not only the intrinsic room-temperature tensile properties but also the environmental embrittlement of CoTi intermetallic compound depended upon lattice defects (such as dislocations and vacancies) in addition to grain size and morphology.
机译:研究了B2型多晶CoTi金属间化合物的室温拉伸性能和断裂方式,作为微观结构和环境的函数。使用热轧的CoTi板,通过不同的热处理和预应变制备了各种微结构。在真空中变形的样品的拉伸伸长率和极限拉伸强度(UTS)(即固有拉伸伸长率和强度)取决于微观结构。与完全退火和时效的试样相比,热轧和回收的试样显示出更高的伸长率和拉伸强度。此外,与完全退火的试样相比,预​​应变试样​​的伸长率和UTS有所改善。另一方面,在空气中变形的样品的拉伸伸长率和UTS均比在真空中变形的样品的拉伸伸长率和UTS低,而与微观结构无关。热轧,恢复和预应变试样​​的脆化程度低于完全退火和时效的试样。 SEM对热轧和回收试样的观察表明,无论测试环境如何,准解理断裂模式都是主要的。然而,由重结晶晶粒组成的完全退火,时效和预应变的试样显示出准裂解断裂模式与晶间断裂模式混合。结果表明,CoTi金属间化合物的固有室温拉伸性能以及环境脆性都取决于晶格缺陷(例如位错和空位),以及晶粒尺寸和形貌。

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  • 来源
    《Journal of Materials Science》 |2003年第5期|869-876|共8页
  • 作者单位

    Department of Metallurgy and Materials Science Graduate School of Engineering Osaka Prefecture University;

    Department of Metallurgy and Materials Science Graduate School of Engineering Osaka Prefecture University;

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