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Microstructure and tensile property of Zn-Al alloy reinforced with titanium produced by electrolysis

机译:电解制备钛增强锌铝合金的组织和拉伸性能

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In this study, some low-titanium aluminum alloys produced by electrolysis were prepared and the effect of various titanium contents on microstructure and tensile property of Zn-Al alloy was investigated. The test results showed that addition of titanium by electrolysis is an effective way to refine the grain size of Zn-Al alloy. As the titanium content is 0.04 wt%, the grain size becomes to be a minimum value and the tensile property of the alloy reaches to the maximum. Electrolysis showed that titanium atoms are to be some inherent particles in low-titanium aluminum alloy. These titanium atoms enter into the aluminum melt liquid and spread to the whole melt rapidly under stirring action of electromagnetic field of the electric current. The heterogeneous α phase nuclei are high melting TiC and TiAl3 particles formed from in-situ precipitating trace C and Ti during cooling process. These in-situ precipitating heterogeneous nucleation sites with small dimension, high dispersity, cleaning interface and fine soakage with melt, have better capacity of heterogeneous nucleation than of exotic particles. It may inhibit grain growth faster and more effective in pinning dislocations, grain boundaries or sub-boundaries.
机译:本研究制备了一些电解生产的低钛铝合金,并研究了各种钛含量对Zn-Al合金组织和拉伸性能的影响。试验结果表明,电解添加钛是细化Zn-Al合金晶粒尺寸的有效方法。当钛含量为0.04wt%时,晶粒尺寸变为最小值,并且合金的拉伸性能达到最大值。电解表明钛原子是低钛铝合金中某些固有的颗粒。这些钛原子进入铝熔液并在电流的电磁场的搅拌作用下迅速扩散到整个熔液。异质α相核是高熔点TiC和TiAl3颗粒,由冷却过程中原位沉淀的痕量C和Ti形成。这些原位沉淀的异相形核位点尺寸小,分散度高,清洁界面和熔体细密浸入,比异质颗粒具有更好的异相形核能力。它可以更快,更有效地抑制晶粒长大,以固定位错,晶粒边界或子边界。

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