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Anti-fatigue in-situ aluminum-based composite material for heavy-load hubs and preparation method therefor

机译:用于重载轮毂的抗疲劳原位铝基复合材料及其制备方法

摘要

Provided are an anti-fatigue in-situ aluminum-based nanocomposite material for heavy-load automobile hubs and a preparation method therefor. By means of the fine adjustment of components and a forming process, in situ nano-compositing, micro-alloying and rapid compression moulding techniques are combined. That is, after the addition of Zr and B, an in-situ reaction occurs to form a nano ZrB2 ceramic reinforcement, which is distributed in aluminum crystals and crystal boundaries and bonded to a metallurgical interface kept firm with the matrix.
机译:提供了一种用于重载汽车轮毂的抗疲劳原位铝基纳米复合材料及其制备方法。通过对组件的精细调整和成型工艺,将原位纳米复合,微合金化和快速压缩成型技术相结合。也就是说,在添加Zr和B之后,发生原位反应以形成纳米ZrB 2 陶瓷增强材料,该增强材料分布在铝晶体和晶体边界中,并与保持牢固的冶金界面结合与矩阵。

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