Thermal effects and deformation mechanisms in abrasive waterjet machining: insights from Ti-6Al-4V alloy for broader applications

IF 6.7 2区 材料科学 Q1 ENGINEERING, INDUSTRIAL Journal of Materials Processing Technology Pub Date : 2024-10-22 DOI:10.1016/j.jmatprotec.2024.118643
Shuaikang Chang , Wenchuan Liu , Jiren Tang , Yukun Lan , Haiyang Long
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Abstract

As a novel cold machining method, abrasive waterjet machining (AWJM) has significant potential for processing titanium-based materials such as Ti-6Al-4V alloy. However, the thermal effects and material deformation mechanisms of AWJM remain challenging to explain. This study introduces a six-colour blackbody radiation pyrometry method that successfully monitors transient high temperatures during AWJM. The results revealed that temperatures during AWJM were not negligible, reaching up to 3602.08 K, leading to material solidification and oxidation. The flash temperature exhibited transient and continuously oscillating characteristics at the microsecond scale. The combined mechanical and thermal loads created three distinct regions: the jet impact zone (elongated grains, oxide-based compositions, and material melting), the heat-affected zone (larger grains), and the base material zone. In the jet impact zone, a pronounced temperature gradient formed on the surface, promoting grain refinement. However, as the distance from the impact zone increases, the extent of grain refinement diminishes, leading to larger grain sizes. The higher kernel average misorientation values observed in and near the impact zone indicated that high-temperature conditions were insufficient for complete recrystallisation, either because of inadequate diffusion or the short duration of the elevated temperatures. This study reveals the thermal and material deformation mechanisms involved in the AWJM process. This establishes a foundational understanding of the processing of titanium-based and other heat-sensitive materials, ultimately contributing to enhanced overall material performance.
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加砂水刀加工中的热效应和变形机制:Ti-6Al-4V 合金在更广泛应用中的启示
作为一种新型冷加工方法,加砂水刀加工(AWJM)在加工钛基材料(如 Ti-6Al-4V 合金)方面具有巨大潜力。然而,AWJM 的热效应和材料变形机制仍难以解释。本研究介绍了一种六色黑体辐射测温方法,该方法可成功监测 AWJM 过程中的瞬态高温。结果表明,AWJM 过程中的温度不容忽视,最高可达 3602.08 K,导致材料凝固和氧化。闪蒸温度表现出微秒级的瞬态和连续振荡特性。机械和热负荷共同作用产生了三个不同的区域:射流冲击区(细长晶粒、氧化物成分和材料熔化)、热影响区(较大晶粒)和基体材料区。在射流冲击区,表面形成了明显的温度梯度,促进了晶粒细化。然而,随着与撞击区距离的增加,晶粒细化程度减弱,导致晶粒尺寸变大。在冲击区内和冲击区附近观察到的较高的晶核平均错向值表明,由于扩散不足或高温持续时间较短,高温条件不足以使晶粒完全再结晶。这项研究揭示了 AWJM 过程中涉及的热和材料变形机制。这为钛基材料和其他热敏材料的加工奠定了基础,最终有助于提高材料的整体性能。
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来源期刊
Journal of Materials Processing Technology
Journal of Materials Processing Technology 工程技术-材料科学:综合
CiteScore
12.60
自引率
4.80%
发文量
403
审稿时长
29 days
期刊介绍: The Journal of Materials Processing Technology covers the processing techniques used in manufacturing components from metals and other materials. The journal aims to publish full research papers of original, significant and rigorous work and so to contribute to increased production efficiency and improved component performance. Areas of interest to the journal include: • Casting, forming and machining • Additive processing and joining technologies • The evolution of material properties under the specific conditions met in manufacturing processes • Surface engineering when it relates specifically to a manufacturing process • Design and behavior of equipment and tools.
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