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通过可控球磨和烧结实现铝合金的表面硬化。

Surface hardening of Al alloys through controlled ball-milling and sintering.

作者信息

Kim Seek Hyeoun, Kim Yong Jin, Ahn Jung-Ho

机构信息

School of Material Engineering, Andong National University, 388 Songchun-dong, Andong, Gyungbuk 760-010, South Korea.

出版信息

J Nanosci Nanotechnol. 2012 Jul;12(7):5514-8. doi: 10.1166/jnn.2012.6320.

Abstract

One of the drawbacks of aluminum and its alloys is the lack of proper heat-treatment for surface-hardening. In the present work, a new and simple method of hardening the surface of aluminum and its alloys was developed. Low-energy ball-milling using specific process control agents (PCAs) was employed, using subsequent sintering in a controlled atmosphere. The PCAs in the present work were very effective both for milling and the formation of hard nanocrystalline dispersoids during sintering. The residual oxygen in a sintering atmosphere also played an important role in the formation of AIN or Al-O-N dispersoids. Through the proper control of the processing atmosphere and PCAs, the hardness and thickness of the hardened layers could be adjusted. The results of the wear test showed that the present aluminum alloys can be effectively utilized as light-weight components with a good wear resistance. Furthermore, the present method involves a simple forming process of die-compaction and sintering.

摘要

铝及其合金的缺点之一是缺乏适当的用于表面硬化的热处理方法。在本研究中,开发了一种新的、简单的铝及其合金表面硬化方法。采用使用特定过程控制剂(PCA)的低能球磨,并在可控气氛中进行后续烧结。本研究中的PCA在球磨以及烧结过程中形成硬纳米晶弥散体方面都非常有效。烧结气氛中的残余氧在AIN或Al-O-N弥散体的形成中也起着重要作用。通过对加工气氛和PCA的适当控制,可以调整硬化层的硬度和厚度。磨损试验结果表明,本铝合金可有效地用作具有良好耐磨性的轻质部件。此外,本方法涉及模压和烧结的简单成型工艺。

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