首页> 外文会议>Industrial Laser Applications Symposium >Development in laser peening of advanced ceramics
【24h】

Development in laser peening of advanced ceramics

机译:先进陶瓷激光喷丸的开发

获取原文

摘要

Laser peening is a well-known process applicable to surface treat metals and alloys in various industrial sectors. Research in the area of laser peening of ceramics is still scarce and a complete laser-ceramic interaction is still unreported. This paper focuses on laser peening of SiC ceramics employed for cutting tools, armor plating, dental and biomedical implants, with a view to elucidate the unreported work. A detailed investigation was conducted with 1064nm Nd:YAG ns pulse laser to first understand the surface effects, namely: the topography, hardness, K_(Ic) and the microstructure of SiC advanced ceramics. The results showed changes in surface roughness and microstructural modification after laser peening. An increase in surface hardness was found by almost 2 folds, as the diamond footprints and its flaws sizes were considerably reduced, thus, enhancing the resistance of SiC to better withstand mechanical impact. This inherently led to an enhancement in the K_(Ic) by about 42%. This is attributed to an induction of compressive residual stress and phase transformation. This work is a first-step towards the development of a 3-dimentional laser peening technique to surface treat many advanced ceramic components. This work has shown that upon tailoring the laser peening parameters may directly control ceramic topography, microstructure, hardness and the K_(Ic). This is useful for increasing the performance of ceramics used for demanding applications particularly where it matters such as in military. Upon successful peening of bullet proof vests could result to higher ballistic strength and resistance against higher sonic velocity, which would not only prevent serious injuries, but could also help to save lives of soldiers on the battle fields.
机译:激光喷丸是适用于表面处理的金属和合金在各工业部门的公知过程。研究在激光喷丸陶瓷的面积仍是稀缺和完整的激光 - 陶瓷相互作用仍然未报告。本文围绕激光喷丸为切削刀具,装甲板,牙科和生物医学植入物中使用的SiC的陶瓷,以阐明未报告的工作。了详细的调查用的1064nm的Nd进行:YAG纳秒脉冲激光先了解的表面效果,即:地形,硬度,K_(Ic)和SiC的微观结构先进陶瓷。结果表明激光喷丸后改变表面粗糙度和微观结构修饰。表面硬度的增加是由几乎2倍发现,作为金刚石脚印和它的缺陷尺寸被显着减小,从而,提高SiC的电阻,以更好地承受机械冲击。这在本质上由约42%导致了K_(Ic)中的增强。这归因于压缩残留应力和相变的诱导。这项工作是向3维激光喷丸技术进行表面处理许多先进的陶瓷组件的开发的第一步骤。这项工作表明,在剪裁激光喷丸参数可直接控制陶瓷地形,显微组织,硬度和K_(IC)。这是增加用于要求苛刻的应用特别是当它的事项,如军事陶瓷的性能非常有用。在防弹背心的成功喷丸可能会导致更高的弹道导弹实力和对高音速阻力,这不仅能防止严重的伤害,但也有助于挽救生命的士兵在战场。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号