首页> 外文期刊>The Physics of Metals and Metallography >The Effect of Backpressure on the Structure and Mechanical Properties of the Al-5 wt percent Fe Alloy Produced by Equal-Channel Angular Pressing
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The Effect of Backpressure on the Structure and Mechanical Properties of the Al-5 wt percent Fe Alloy Produced by Equal-Channel Angular Pressing

机译:背压对等通道角挤压Al-5wt%Fe合金组织和力学性能的影响

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摘要

The role of backpressure (from 40 to 275 MPa) and the number of passes upon severe plastic deformation (SPD) by the method of equal-channel angular (ECA) pressing using the brittle cast Al-5 wt percent Fe alloy unhardenable by heat treatment. ECA pressing at room temperature made it possible to obtain an ultrafine-grained (UFG) structure with grain sizes of 325--450 nm and to enhance the strength properties of the cast alloy by a factor of 2-3. It has been shown that the increase in the magnitude of the backpressure to 275 MPa leads to a decrease in the grain size and a refinement of intermetallic particles, the formation of a supersaturated solid solution of iron in the Al matrix, and an enhancement of thermal stability, microhardness, strength, and plasticity of the deformed alloy. ECA pressing shifts the alloy unhardenable by heat treatment into the class of aging alloys, and the artificial aging at 175 deg C enhances the strength properties of the alloy due to the precipitation strengthening. The increase in backpressure slows down crack formation in intermetallic particles and increases deformability in the process of ECA pressing.
机译:背压的作用(从40到275 MPa)和严重通道的塑性变形(SPD)的次数是通过等通道角钢(ECA)压制方法而进行的,采用的脆性铸造Al-5 wt%Fe合金无法通过热处理进行硬化。在室温下进行ECA压制,可以获得晶粒度为325--450 nm的超细晶粒(UFG)结构,并将铸造合金的强度性能提高2-3倍。已经表明,背压的大小增加到275 MPa会导致晶粒尺寸减小和金属间化合物细化,Al基体中铁的过饱和固溶体的形成以及热的增强。变形合金的稳定性,显微硬度,强度和可塑性。 ECA压制将无法通过热处理硬化的合金转变为时效合金,而在175℃下的人工时效由于析出强化而增强了合金的强度性能。背压的增加减慢了金属间颗粒中的裂纹形成,并增加了ECA压制过程中的变形能力。

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