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不同微观结构的α/β钛合金切削加工性的实验研究

Experimental Investigation on Machinability of α/β Titanium Alloys with Different Microstructures.

作者信息

El-Hadad Shimaa, Elsayed Ayman, Shi Bin, Attia Helmi

机构信息

Central Metallurgical Research and Development Institute, Helwan P.O. Box 87, Egypt.

National Research Council, Montreal, QC H4P 2R2, Canada.

出版信息

Materials (Basel). 2023 Nov 14;16(22):7157. doi: 10.3390/ma16227157.

Abstract

In the current study, Ti-6Al-4V (Ti64) and Ti-6Al-7Nb (Ti67) alloys were prepared by vacuum arc melting. The produced samples were then subjected to different heat treatment regimes. The evolved microstructures and their corresponding hardness were investigated. Computerized drilling tests using TiAlN-coated high-speed steel bits were performed to assess the machinability of the prepared specimen regarding cutting force, tool wear, and thickness of the deformed layer. It was observed that Ti64 specimens that were water quenched from either α/β or β range contained martensitic phase. In Ti67, samples showed martensite only when water quenched from the β-phase range (1070 °C). Formation of martensite resulted in higher hardness and hence led to higher cutting forces and increased tool wear during the drilling process. Machined samples with higher hardness formed a thicker subsurface deformation area (white layer) and increased burr heights. Surface roughness in Ti64 workpieces was generally higher compared to Ti67 specimens. The coat of the drilling bit was partially attacked in the as-cast specimens, which was evident by elemental N on the machining chips. The machining tool deteriorated further by increasing the workpiece hardness through martensitic formation, where elements such as Cr, V, Fe, etc. that came from the tool steel were detected.

摘要

在当前研究中,通过真空电弧熔炼制备了Ti-6Al-4V(Ti64)和Ti-6Al-7Nb(Ti67)合金。然后对所制备的样品进行不同的热处理制度。研究了所形成的微观结构及其相应的硬度。使用TiAlN涂层高速钢钻头进行了计算机控制的钻孔试验,以评估所制备试样在切削力、刀具磨损和变形层厚度方面的可加工性。观察到,从α/β或β范围水淬的Ti64试样含有马氏体相。在Ti67中,仅当从β相范围(1070°C)水淬时,样品才显示出马氏体。马氏体的形成导致硬度更高,因此在钻孔过程中导致更高的切削力和刀具磨损增加。硬度较高的加工样品形成了较厚的亚表面变形区域(白层)并增加了毛刺高度。与Ti67试样相比,Ti64工件的表面粗糙度通常更高。在铸态试样中,钻头涂层受到部分侵蚀,这在加工切屑上的元素N中很明显。通过马氏体形成增加工件硬度使得加工刀具进一步恶化,在其中检测到来自工具钢的诸如Cr、V、Fe等元素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6893/10673028/36a04cd47229/materials-16-07157-g001.jpg

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