铸态及退火态高Cu含量CuNiCrMnAl合金的组织和拉伸性能研究

    Study on Microstructure and Tensile Properties of High Cu Content CuNiCrMnAl Alloys in Cast and Annealed States

    • 摘要: 研究了(Cu75Ni10Cr10Mn5)95Al5多主元合金的组织和拉伸性能的关系。研究发现,铸态合金由面心立方结构(FCC)和体心立方结构(BCC)双相组成,经过900℃/1 h退火后,合金的抗拉强度为516 MPa,总伸长率也达到了22%。退火态合金宏观上具有FCC以及BCC结构的双相组织,而FCC结构区域的组织从细观上又析出了微米级BCC结构相,使得合金具备一定的强度,说明该合金微观组织具有一定的稳定性。

       

      Abstract: The relationship between the microstructure and tensile properties of (Cu75Ni10Cr10Mn5)95Al5 multi-principal alloy was studied. It is found that the microstructure of the as-cast alloy is composed of a phase with face-centered cubic(FCC) structure and phase with body-centered cubic(BCC) structure. After 900 ℃/1 h annealing, the tensile strength of the alloy attains 516 MPa, and the total elongation reaches 22%. The as-annealed alloy macroscopically has dual-phase microstructure of FCC and BCC structure, while some micron-scale phase with BCC structure is also precipitated from the phase with FCC structure. Therefore, the alloy can exhibit superior strength, indicating that the microstructure of the alloy is stable to some extent.

       

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