期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于G指令的电极联动加工研究
1
作者 王阳 《中小企业管理与科技》 2012年第19期270-271,共2页
电极加工在现代模具制造业中,与磨削、铣削、车削和线割具有同等地位。电极加工是非接触加工,具有加工精度高,无切削力,无噪音污染,自动化程度高等优点。但随着电极应用越来越广泛,电极加工的精度和效率成为制约模具发展的一个重要因素... 电极加工在现代模具制造业中,与磨削、铣削、车削和线割具有同等地位。电极加工是非接触加工,具有加工精度高,无切削力,无噪音污染,自动化程度高等优点。但随着电极应用越来越广泛,电极加工的精度和效率成为制约模具发展的一个重要因素。文章着重介绍了基于G指令电极联动加工的软件开发和自动化工装夹具的应用,提出了电极自动化加工的方式和策略。 展开更多
关键词 电极 自动化加工 联程软件 G指令
下载PDF
Angle-dependent discoloration structures in wing scales of Morpho menelaus butterfly 被引量:4
2
作者 NIU ShiChao LI Bo +4 位作者 YE JunFeng MU ZhengZhi ZHANG JunQiu LIU Yan HAN ZhiWu 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第5期749-755,共7页
The Morpho butterfly is famous for its typical structural color and has increasingly attracted the interest of scholars in a wide variety of research fields. Herein, it was found that the color of Morpho menelaus butt... The Morpho butterfly is famous for its typical structural color and has increasingly attracted the interest of scholars in a wide variety of research fields. Herein, it was found that the color of Morpho menelaus butterfly wings is not only structure-based but also viewing-angle-dependent. Firstly, the discoloration effect of this typical butterfly was confirmed by a series of experiments. Then, the general form, arrangements, and geometrical dimensions of the scales were observed using a stereomicroscope. Scanning electron microscopy was also used to examine the two-dimensional morphologies and structures of a single scale. Afterwards, one model with the optimized three-dimensional profile of the structure was described using Pro-engineer software. The associate model was then analyzed to reconstruct the process between the incident light and the model surface. Finally, the mechanism of the angle-dependent discoloration effect was analyzed by theoretical calculation and optical simulation. Different light propagation paths and the length of the incident light at different angles caused destructive or constructive interference between the light reflected from the different layers. The different spectra of the reflected light make the wings appear with different structural colors, thereby endowing the angle-dependent discoloration effect. The consistency of the calculation and simulation results confirms that these structures possess an excellent angle-dependent discoloration effect. This functional "biomimetic structure" would not only be of great scientific interest but could also have a great impact in a wide range of applications such as reflective displays, credit card security, and military stealth technology. 展开更多
关键词 angle-dependent DISCOLORATION structural color BUTTERFLY wing scales BIONICS translight
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部