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原位Al-Si/CuAl₂金属基复合材料的制备:微观结构、硬度及磨损行为

Development of in-Situ Al-Si/CuAl₂ Metal Matrix Composites: Microstructure, Hardness, and Wear Behavior.

作者信息

Tash Mahmoud M, Mahmoud Essam R I

机构信息

Department of Mechanical Engineering, University of Prince Sattam bin Abdulaziz, AlKharj 11942, Saudi Arabia.

Mining, Petroleum and Metallurgical Engineering Department, Cairo University, Giza 12613, Egypt.

出版信息

Materials (Basel). 2016 Jun 2;9(6):442. doi: 10.3390/ma9060442.

Abstract

In the present work, metal matrix composites were fabricated through squeeze casting. The copper particles were dispersed with different weight percentages (3%, 6%, 10%, and 15%) into Al-12% Si piston alloy. Also, heat treatments were performed at 380 °C and 450 °C for holding times of 6 and 18 h. The microstructures, X-ray diffractometer (XRD) pattern, hardness, and wear characteristics were evaluated. The results showed that these copper particles have reacted with the aluminum under all of the aforementioned processing conditions resulting in the formation of fine copper aluminide intermetallics. Most of the intermetallics were CuAl₂, while AlCu appeared in a small ratio. Additionally, these intermetallics were homogenously distributed within the alloy matrix with up to 6% Cu addition. The amounts of those intermetallics increased after performing heat treatment. Most of these intermetallics were CuAl₂ at 380 °C, while the Cu-rich intermetallics appeared at 450 °C. Increasing the holding time to 18 h, however, led to grain coarsening and resulted in the formation of some cracks. The hardness of the resulting composite materials was improved. The hardness value reached to about 170 HV after heat treating at 380 °C for 8 h. The wear resistance of the resulting composite materials was remarkably improved, especially at lower additions of Cu and at the lower heat treatment temperature.

摘要

在本研究中,通过挤压铸造制备了金属基复合材料。将不同重量百分比(3%、6%、10%和15%)的铜颗粒分散到Al-12%Si活塞合金中。此外,在380℃和450℃下进行了6小时和18小时的热处理。对微观结构、X射线衍射仪(XRD)图谱、硬度和磨损特性进行了评估。结果表明,在上述所有加工条件下,这些铜颗粒都与铝发生了反应,形成了细小的铜铝金属间化合物。大多数金属间化合物为CuAl₂,而AlCu的比例较小。此外,在铜添加量高达6%时,这些金属间化合物均匀分布在合金基体中。热处理后,这些金属间化合物的数量增加。在380℃时,大多数这些金属间化合物为CuAl₂,而在450℃时出现富铜金属间化合物。然而,将保温时间延长至18小时会导致晶粒粗化并产生一些裂纹。所得复合材料的硬度得到了提高。在380℃下热处理8小时后,硬度值达到约170HV。所得复合材料的耐磨性显著提高,尤其是在铜添加量较低和热处理温度较低时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cd0/5456778/f20d39fa9b39/materials-09-00442-g001.jpg

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