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Influence of aluminum content on the microstructure and properties of the in-situ TiC reinforced Al_xFeCoNiCu high entropy alloy matrix composites

机译:铝含量对原位TiC增强Al_xFeCoNiCu高熵合金基复合材料组织和性能的影响

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摘要

TiC particles reinforced AlxFeCoNiCu multi-principal elements alloys matrix metallic composites AlxFeCoNiCu/TiC with different content aluminum were fabricated in-situ from Al-Fe-Co-Ni-Cu-Ti-C system through vacuum inductive melting method. The microstructure and properties of AlxFeCoNiCu/TiC composite has been analyzed. In-situ TiC reinforcements particles were uniformly distributed in the matrix and their interfaces with the matrix are very clean and no reaction layer at the interfaces. With the increase of aluminum content, the structure of matrix changed from FCC structure to BCC and FCC bi-phase structure, the ultensile fracture strength increases to a maxmium and then decreases. When the content of aluminum mole rate (x) increases from 0.2 to 0.6, the ultensile fracture strength of the composites increases from 502 MPa to a maxmium of 675 MPa. And then with the further increase of x to 1.0, the ultensile fracture strength decreases to 595 MPa.
机译:采用真空感应熔炼法从Al-Fe-Co-Ni-Cu-Ti-C体系中原位制备了TiC颗粒增强的AlxFeCoNiCu多元素铝合金基体金属复合材料AlxFeCoNiCu / TiC。分析了AlxFeCoNiCu / TiC复合材料的组织和性能。原位TiC增强颗粒均匀地分布在基体中,它们与基体的界面非常干净,界面处没有反应层。随着铝含量的增加,基体结构由FCC结构转变为BCC和FCC两相结构,抗拉断裂强度先增大后减小。当铝摩尔比(x)的含量从0.2增加到0.6时,复合材料的抗拉断裂强度从502 MPa增加到最大675 MPa。然后,随着x进一步增加到1.0,抗拉断裂强度降低到595 MPa。

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