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一种新型六角形编织机器的构建与应用 被引量:3
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作者 高彦涛 Frank Ko +1 位作者 heejae yang 胡红 《纺织导报》 CAS 北大核心 2013年第4期80-84,共5页
文章首先简单地回顾了传统编织技术,然后阐述新型的六角形编织基本原理,并从编织运动实现原理以及编织控制方面详细讲述基于Labview计算机控制的六角形编织机器的构建方法。最后,通过举例方式展示这种六角形编织的初步应用。可以看出,... 文章首先简单地回顾了传统编织技术,然后阐述新型的六角形编织基本原理,并从编织运动实现原理以及编织控制方面详细讲述基于Labview计算机控制的六角形编织机器的构建方法。最后,通过举例方式展示这种六角形编织的初步应用。可以看出,这种新颖的六角形编织机器的开发,对未来利用精细化微观编织产品的新兴领域来说具有重大意义。 展开更多
关键词 六角形编织 编织原理 LABVIEW
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Substructure imaging of heterogeneous nanomaterials with enhanced refractive index contrast by using a functionalized tip in photoinduced force microscopy
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作者 Junghoon Jahng heejae yang Eun Seong Lee 《Light(Science & Applications)》 SCIE EI CAS CSCD 2018年第1期322-330,共9页
The opto-mechanical force response from light-illuminated nanoscale materials has been exploited in many tip-based imaging applications to characterize various heterogeneous nanostructures.Such a force can have two or... The opto-mechanical force response from light-illuminated nanoscale materials has been exploited in many tip-based imaging applications to characterize various heterogeneous nanostructures.Such a force can have two origins:thermal expansion and induced dipoles.The thermal expansion reflects the absorption of the material,which enables one to chemically characterize a material at the absorption resonance.The induced dipole interaction reflects the local refractive indices of the material underneath the tip,which is useful to characterize a material in the spectral region where no absorption resonance occurs,as in the infrared(IR)-inactive region.Unfortunately,the dipole force is relatively small,and the contrast is rarely discernible for most organic materials and biomaterials,which only show a small difference in refractive indices for their components.In this letter,we demonstrate that refractive index contrast can be greatly enhanced with the assistance of a functionalized tip.With the enhanced contrast,we can visualize the substructure of heterogeneous biomaterials,such as a polyacrylonitrile-nanocrystalline cellulose(PAN-NCC)nanofiber.From substructural visualization,we address the issue of the tensile strength of PAN-NCC fibers fabricated by several different mixing methods.Our understanding from the present study will open up a new opportunity to provide enhanced sensitivity for substructure mapping of nanobiomaterials,as well as local field mapping of photonic devices,such as surface polaritons on semiconductors,metals and van der Waals materials. 展开更多
关键词 refractive BIOMATERIALS functional
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