Aluminium Nitride Surface Characterization by Grinding with Laser–Ultrasonic Coupling

材料科学 研磨 表征(材料科学) 超声波传感器 氮化物 激光器 冶金 联轴节(管道) 复合材料 光学 声学 纳米技术 图层(电子) 物理
作者
He Zhang,Cong Sun,Yuan Hong,Yansheng Deng,Liang Ma
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:17 (15): 3772-3772
标识
DOI:10.3390/ma17153772
摘要

Aluminium nitride (AlN) materials are widely used in heat-dissipation substrates and electronic device packages. However, the application of aluminium nitride ceramics is hindered by the obvious anisotropy and high brittleness of its crystals, leading to poor material surface integrity and high grinding force. With the rapid development of microelectronics, the requirements for the material's dimensional accuracy, machining efficiency, and surface accuracy are increasing. Therefore, a new machining process is proposed, combining laser and ultrasonic vibration with grinding. The laser-ultrasonic-assisted grinding (LUAG) of aluminium nitride is simulated by molecular dynamics (MD). Meanwhile, the effects of different processing techniques on grinding force, stress distribution, matrix damage mechanism, and subsurface damage depth are systematically investigated and verified by experiments. The results show that laser-ultrasonic-assisted grinding produces 50% lower grinding forces compared to traditional grinding (TG). The microhardness of AlN can reach more than 1200 HV, and the coefficient of friction and wear is reduced by 42.6%. The dislocation lines of the AlN substrate under this process are short but interlaced, making the material prone to phase transformation. Moreover, the subsurface damage depth is low, realising the substrate's material hardening and wear resistance. These studies not only enhance the comprehension of material build-up and stress damage under the synergistic impact of laser, ultrasonic, and abrasive processing but also indicate that the proposed method can facilitate and realise high-performance machining of aluminium nitride substrate surfaces.
最长约 10秒,即可获得该文献文件

科研通智能强力驱动
Strongly Powered by AbleSci AI
科研通是完全免费的文献互助平台,具备全网最快的应助速度,最高的求助完成率。 对每一个文献求助,科研通都将尽心尽力,给求助人一个满意的交代。
实时播报
傻傻的火车完成签到,获得积分10
刚刚
1秒前
yu发布了新的文献求助10
1秒前
CipherSage应助iui飞采纳,获得10
1秒前
2秒前
3秒前
英姑应助liangxianli采纳,获得30
4秒前
NICAI完成签到,获得积分10
4秒前
科研通AI2S应助yjy采纳,获得10
5秒前
霉凡脑发布了新的文献求助10
7秒前
lily发布了新的文献求助10
7秒前
所所应助小飞飞采纳,获得10
8秒前
打打应助dywen采纳,获得50
8秒前
火焰不聪明完成签到 ,获得积分10
10秒前
mangmang完成签到,获得积分10
10秒前
11秒前
DDGD发布了新的文献求助10
11秒前
12秒前
zhouzhou完成签到,获得积分10
13秒前
BOBO完成签到,获得积分10
14秒前
16秒前
17秒前
HJJHJH发布了新的文献求助10
18秒前
小飞飞完成签到,获得积分10
18秒前
完美世界应助lily采纳,获得30
19秒前
丰富的不惜完成签到,获得积分10
20秒前
无耻之徒关注了科研通微信公众号
20秒前
小飞飞发布了新的文献求助10
21秒前
我是老大应助邹芳清采纳,获得10
21秒前
22秒前
你好发布了新的文献求助10
23秒前
加油呀完成签到,获得积分10
25秒前
25秒前
Akim应助狗大王采纳,获得10
26秒前
chen举报summy求助涉嫌违规
26秒前
研友_89eRG8发布了新的文献求助10
27秒前
Lucas应助儒雅的冷松采纳,获得10
27秒前
29秒前
Nolan完成签到,获得积分10
30秒前
chen给summy的求助进行了留言
31秒前
高分求助中
Technologies supporting mass customization of apparel: A pilot project 600
Разработка метода ускоренного контроля качества электрохромных устройств 500
Chinesen in Europa – Europäer in China: Journalisten, Spione, Studenten 500
Arthur Ewert: A Life for the Comintern 500
China's Relations With Japan 1945-83: The Role of Liao Chengzhi // Kurt Werner Radtke 500
Two Years in Peking 1965-1966: Book 1: Living and Teaching in Mao's China // Reginald Hunt 500
Epigenetic Drug Discovery 500
热门求助领域 (近24小时)
化学 材料科学 医学 生物 工程类 有机化学 物理 生物化学 纳米技术 计算机科学 化学工程 内科学 复合材料 物理化学 电极 遗传学 量子力学 基因 冶金 催化作用
热门帖子
关注 科研通微信公众号,转发送积分 3818646
求助须知:如何正确求助?哪些是违规求助? 3361710
关于积分的说明 10413854
捐赠科研通 3079926
什么是DOI,文献DOI怎么找? 1693653
邀请新用户注册赠送积分活动 814550
科研通“疑难数据库(出版商)”最低求助积分说明 768248