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Surface modification of TiAl alloy via current heating technique

机译:电流加热技术对TiAl合金的表面改性

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Surface of Ti-52 at% Al alloy was modified via current heating technique. The Ti-52 at% Al alloy with 20 mm diameter × 1.5 mm thick disks was placed in graphitic powder in a glass tube and pressed against it. During the coating process, the direct current was applied across the samples at electrical power of 100-200 W for 10 min. By using X-ray diffraction (XRD), TiC was detected on the alloy treated at 180 W and above. Scanning electron microscopy (SEM) micrographs show the different morphologies, after treatment under different conditions. Energy dispersive X-ray spectroscopy (EDS), SEM and hardness tester show that the carbon concentration, particle size, void size and the hardness of the alloy were increased with the increasing of the applying electrical power, due to the formation of the carbide on the alloy surface.
机译:通过电流加热技术对Ti-52 at%Al合金的表面进行了改性。将直径为20毫米×厚度为1.5毫米的圆盘的Ti-52原子百分比的铝合金置于石墨粉末的玻璃管中,并压在其上。在涂覆过程中,将直流电以100-200 W的功率施加在样品上10分钟。通过使用X射线衍射(XRD),在经180 W及更高功率处理的合金上检测到TiC。扫描电子显微镜(SEM)显微照片显示了在不同条件下处理后的不同形态。能量色散X射线光谱(EDS),SEM和硬度测试仪表明,由于施加的电功率的增加,合金中的碳浓度,粒度,空隙尺寸和硬度随施加电功率的增加而增加。合金表面。

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