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Rheological behavior of semi-solid TiB2/7075 composites and simulation of their rheocasting processes

机译:半固态TiB2 / 7075复合材料的流变行为及其流变过程的模拟

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In the present study, in-situ TiB2 particle-reinforced 7075 aluminum alloy was produced by adding a mixture of K2TiF6 and KBF4 to the molten base alloy. The effects of the addition of 4.5wt.% and 9wt.%TiB2 on the apparent viscosity and microstructure were investigated. The results showed that adding TiB2 is effective for optimizing primary α-Al, but compared with the 4.5wt.%TiB2/7075 composite, the addition of 9wt.%TiB2 had no further significant refinement role in the 9wt.%TiB2/7075 composite due to particle aggregation. The viscosities of semi-solid 7075 alloy and TiB2/7075 composite slurries increased with an increase in solid fraction, but decreased with an increase in shear rate. The viscosity of 4.5wt.% TiB2/7075 was the lowest among the three samples, and that of 7075 alloy was the highest under the same conditions. The primary α-Al grain size was decreased, and the dendritic grains grew into spherical shapes after shearing. Based on the experimental results, viscosity models of the semi-solid 7075 alloy and 4.5wt.% and 9wt.%TiB2/7075 composites were formulated. According to the simulation results, the shrinkage porosity of the 4.5wt.%TiB2/7075 wheel was lower than those of the 7075 alloy and 9wt.%TiB2/7075 wheels.
机译:在本研究中,通过向熔融基础合金中添加K2TiF6和KBF4的混合物来生产原位TiB2颗粒增强的7075铝合金。研究了添加4.5wt。%和9wt。%的TiB2对表观粘度和微观结构的影响。结果表明,添加TiB2可以有效地优化初生α-Al,但与4.5wt。%TiB2 / 7075复合材料相比,添加9wt。%TiB2对9wt。%TiB2 / 7075复合材料没有进一步的细化作用。由于粒子聚集。半固态7075合金和TiB2 / 7075复合浆料的粘度随固体分数的增加而增加,但随剪切速率的增加而减小。在相同条件下,TiB2 / 7075的粘度为4.5wt。%最低,而7075合金的粘度最高。剪切后,初生α-Al晶粒尺寸减小,树枝状晶粒长大为球形。根据实验结果,建立了半固态7075合金和4.5wt。%和9wt。%TiB2 / 7075复合材料的粘度模型。根据模拟结果,4.5wt。%TiB2 / 7075车轮的收缩孔隙率低于7075合金和9wt。%TiB2 / 7075车轮的收缩孔隙率。

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