金刚石/碳化硅复合材料在空气和动态水环境下的飞秒激光烧蚀行为

IF 8.1 2区 材料科学 Q1 ENGINEERING, MANUFACTURING
Qiaosheng Feng , Mingkang Zhang , Qilin Li , Weiwei Xu , Liyu Wang , Xiaojin Shi , Yutao Wang , Songmei Yuan
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引用次数: 0

摘要

金刚石/SiC复合材料具有优异的导热性,机械强度和耐磨性,使其具有高性能应用前景。然而,其固有的高硬度和脆性在加工过程中提出了重大挑战。飞秒激光加工,特别是在液体辅助下,能够以最小的热影响区实现高质量的加工。然而,具有不同热性能的增强相和基体相共存使得它们的烧蚀行为非常复杂。为了阐明不同环境条件下的机理,分别在空气和动态水中进行了飞秒激光烧蚀实验。在此,系统地分析了温度演变、槽型、表面形貌和元素组成。结果表明,动态水介质有效地抑制了SiC基体的局部过热,减轻了坑状损伤。此外,动态水不断去除烧蚀副产物,减少等离子体屏蔽,提高激光能量传输。因此,在水辅助条件下,可以获得更深更清洁的凹槽。这项工作提供了对环境依赖的激光材料相互作用的见解,并支持陶瓷复合材料的优化加工。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Femtosecond laser ablation behavior of diamond/SiC composites in different environments: air and dynamic water
Diamond/SiC composites exhibit excellent thermal conductivity, mechanical strength, and wear resistance, making them promising for high-performance applications. However, their inherent high hardness and brittleness present significant challenges during machining. Femtosecond laser processing, particularly with liquid assistance, enables high-quality machining with minimal heat-affected zones. Nonetheless, the coexistence of reinforcement and matrix phases with distinct thermal properties makes their ablation behavior highly complex. To clarify the mechanisms in different environmental conditions, femtosecond laser ablation experiments were performed in air and dynamic water. Herein, temperature evolution, groove profiles, surface morphology, and elemental composition were systematically analyzed. Results indicate that the dynamic water medium effectively suppresses local overheating of the SiC matrix, mitigating pit-like damage. Furthermore, dynamic water continuously removes ablation byproducts, reducing plasma shielding and improving laser energy transmission. As a result, deeper and cleaner grooves are achieved under water-assisted conditions. This work provides insights into environment-dependent laser–material interactions and supports optimized machining of ceramic composites.
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来源期刊
Composites Part A: Applied Science and Manufacturing
Composites Part A: Applied Science and Manufacturing 工程技术-材料科学:复合
CiteScore
15.20
自引率
5.70%
发文量
492
审稿时长
30 days
期刊介绍: Composites Part A: Applied Science and Manufacturing is a comprehensive journal that publishes original research papers, review articles, case studies, short communications, and letters covering various aspects of composite materials science and technology. This includes fibrous and particulate reinforcements in polymeric, metallic, and ceramic matrices, as well as 'natural' composites like wood and biological materials. The journal addresses topics such as properties, design, and manufacture of reinforcing fibers and particles, novel architectures and concepts, multifunctional composites, advancements in fabrication and processing, manufacturing science, process modeling, experimental mechanics, microstructural characterization, interfaces, prediction and measurement of mechanical, physical, and chemical behavior, and performance in service. Additionally, articles on economic and commercial aspects, design, and case studies are welcomed. All submissions undergo rigorous peer review to ensure they contribute significantly and innovatively, maintaining high standards for content and presentation. The editorial team aims to expedite the review process for prompt publication.
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