Micro/nano Indentation and Single Grit Diamond Grinding Mechanism on Ultra Pure Fused Silica

来源 :Chinese Journal of Mechanical Engineering | 被引量 : 0次 | 上传用户:chlo16105
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
The existing research about ductile grinding of fused silica glass was mainly focused on how to carry out ductile regime material removal for generating very “smoothed” surface and investigate the machining-induced damage in the grinding in order to reduce or eliminate the subsurface damage.The brittle/ductile transition behavior of optical glass materials and the wear of diamond wheel are the most important factors for ductile grinding of optical glass.In this paper,the critical brittle/ductile depth,the influence factors on brittle/ductile transition behavior,the wear of diamond grits in diamond grinding of ultra pure fused silica(UPFS) are investigated by means of micro/nano indentation technique,as well as single grit diamond grinding on an ultra-stiff machine tool,Tetraform “C”.The single grit grinding processes are in-process monitored using acoustic emission(AE) and force dynamometer simultaneously.The wear of diamond grits,morphology and subsurface integrity of the machined groves are examined with atomic force microscope(AFM) and scanning electron microscope(SEM).The critical brittle/ductile depth of more than 0.5 μm is achieved.When compared to the using roof-like grits,by using pyramidal diamonds leads to higher critical depths of scratch with identical grinding parameters.However,the influence of grit shapes on the critical depth is not significant as supposed.The grinding force increased linearly with depth of cut in the ductile removal regime,but in brittle removal regime,there are large fluctuations instead of forces increase.The SEM photographs of the cross-section profile show that the median cracks dominate the crack patterns beneath the single grooves.Furthermore,The SEM photographs show multi worn patterns of diamond grits,indicating an inhomogeneous wear mechanism of diamond grits in grinding of fused silica with diamond grinding wheels.The proposed research provides the basal technical theory for improving the ultra-precision grinding of UPFS. The existing research about ductile grinding of fused silica glass was mainly focused on how to carry out ductile regime material removal for generating very “smoothed ” surface and investigate the machining-induced damage in the grinding in order to reduce or eliminate the subsurface damage The brittle / ductile transition behavior of optical glass materials and the wear of diamond wheel are the most important factors for ductile grinding of optical glass. In this paper, the critical brittle / ductile depth, the influence factors on brittle / ductile transition behavior, the wear of diamond grits in diamond grinding of ultra pure fused silica (UPFS) are investigated by means of micro / nano indentation technique, as well as single grit diamond grinding on an ultra-stiff machine tool, Tetraform “C”. single grit grinding processes are in-process monitored using acoustic emission (AE) and force dynamometer simultaneously. The wear of diamond grits, morphology and subsurface integrity of the machined groves are examined with atomic force microscope (AFM) and scanning electron microscope (SEM). The critical brittle / ductile depth of more than 0.5 μm is achieved. When compared to the using roof-like grits, by using pyramidal diamonds leads to higher critical depths of scratch with identical grinding parameters. However, the influence of grit shapes on the critical depth is not significant as the. The grinding force increased linearly with depth of cut in the ductile removal regime, but but in brittle removal regime, there are very large fluctuations instead of forces increase.The SEM photographs of the median-cracks dominate the crack patterns beneath the single grooves. Morerther, The SEM photographs show multi-worn patterns of diamond grits, indicating an inhomogeneous wear mechanism of diamond grits in grinding of fused silica with diamond grinding wheels. The proposed research provides the basal technical theory for improving the ultra-precision grinding of U. PFS.
其他文献
一、个案背景幼儿姓名:浩浩(化名)班级:中三班二、个案描述早晨,孩子们做完操,在活动场地上自由玩耍。我在人群中寻找浩浩的身影,原来他蹲在大树下,正玩着泥土。这时,一个孩
期刊
摘要:土木工程及建筑工程的可持续发展,是主导中国能源可持续发展的主要矛盾,减少对环境的污染,提高人们的生活质量最有效的办法之一就是开展可持续发展的保护措施。土建施工的可持续发展战略具有非常重要的现实意义,因此本文作者结合自身的经验与感悟,结合土木工程的过程,以及可持续发展的重要作用,探讨了土木工程建设项目中的可持续发展。  关键字:土木工程 可持续发展   中图分类号:S969.1文献标识码:A 
摘要: 随着我国社会经济的发展,人民生活水平的极大提高,各类家用电器逐渐增多,一旦发生火灾,损失巨大。改善居住环境,完善住宅使用功能,提高人民生活水平是当前社会可持续发展倡导的主题。因此,要求电气设计在完善住宅电气设备使用功能的同时,也要考虑到以人为本的安全设计理念。文章从对电气火灾分析入手,剖析了家庭电气火灾的原因和紧迫性,探讨了居民住宅的电气设计,并提出了自己的看法。   关键词:插座系统,照
摘要:文章在总结中国农村工业化实践经验的基础上,理性分析了农村工业化的实践模式、重要作用与现实矛盾;对农村工业化发展趋势进行了前瞻性研究和预测;为解决农村工业化的现实矛盾,提出了发展与改革统筹实施的策略与建议。  关键词:农村工业化;城镇化;启示;趋势;建议  中图分类号: S238 文献标识码:A  基金项目:本文是中国管理科学研究院“十二五”重点课题《中国百强村经济转型与制度创新研究》的阶段性