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Weldability of Al_4C_3-Al composites via diffusion welding technique

机译:扩散焊接技术对Al_4C_3-Al复合材料的焊接性

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摘要

In this study, Al-Al_4C_3 composites, produced by powder metallurgy in situ techniques, were joined by diffusion welding technique at 250 MPa pressure with various welding temperatures and durations. Microstructures and shear strengths of the joined areas were determined. Al powders were mixed with 2 percent carbon black and milled in a high energy ball mill (mechanical alloying) for up to 20 h. In order to obtain cylindrical blanks with 10 mm in diameter and 15 mm in height, powders were compacted in a single action press at 1000 MPa. Samples were sintered in Ar atmosphere at 650 deg C and metal matrix composite (MMC) containing 8 percent Al_4C_3 particles were produced. Products were then joined to each other by using diffusion welding techniques. Scanning electron microscopy examination was carried out on the welded interfaces and shear tests were conducted to the sample interfaces to find out the effect of welding temperatures and duration on the weldability properties. It was found that high welding temperatures resulted in increase of both joined strength and shear properties. However, increase in welding duration did not make any detectable changes. Results indicated that MMC could be joined by diffusion welding technique successfully with the 88 percent strength of base material.
机译:在这项研究中,通过扩散焊接技术在250 MPa压力和不同的焊接温度和持续时间下,通过粉末冶金原位技术生产的Al-Al_4C_3复合材料被连接起来。确定了连接区域的微观结构和剪切强度。将铝粉与2%的炭黑混合,并在高能球磨机(机械合金化)中研磨长达20小时。为了获得直径为10毫米,高度为15毫米的圆柱形毛坯,将粉末在单动作压机中以1000 MPa的压力压实。将样品在650摄氏度的Ar气氛中烧结,并生产出含8%Al_4C_3颗粒的金属基复合材料(MMC)。然后使用扩散焊接技术将产品彼此接合。在焊接界面上进行了扫描电子显微镜检查,并对样品界面进行了剪切测试,以了解焊接温度和焊接时间对焊接性能的影响。发现高焊接温度导致结合强度和剪切性能的增加。但是,增加焊接时间并没有进行任何可检测的变化。结果表明,MMC可以通过扩散焊接技术成功地连接到88%的基材强度。

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