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先进金属材料的多尺度力学
报告人:张旭教授,西南交通大学
时间:10月23日(周三) 下午15:30
地点:西区力学一楼603会议室
物理信息核函数计算方法
报告人:傅卓佳教授,河海大学
时间:10月23日(周三) 下午15:30
地点:西区力学一楼603会议室
活性材料多尺度力学
报告人:徐光魁教授,西安交通大学
时间:10月23日(周三) 下午15:30
地点:西区力学一楼603会议室

Architectured Metamaterials: from Tunable Thermal Expansion to Microvascular Tissue Scaffolding

( 2017-10-09 )

报告题目: Architectured Metamaterials: from Tunable Thermal Expansion to Microvascular Tissue Scaffolding
 报告人:Nicholas X. Fang教授,MIT
 时间:20171018(周三)下午16:00
 地点:中科大西区力二楼215多媒体教室

  摘要:

  Three-dimensional lightweight material building blocks, through the combination of molecular design of material behavior and microscale geometric patterning, show promise to revolutionize the ability to dissipate energy and manipulate wave propagation. Such materials are desirable for a broad array of applications such as structural components, catalysts supports and energy efficient materials.
   In this seminar, I will present our development of three dimensional micro/nanofabrication technique, projection microstereolithography (PuSL), to enable design and exploration of digitally coded multifunctional and multimaterial lightweight metastructures at unprecedented dimensions. The ultra-high resolution and multi-material capabilities of the 3D printing system and the modeling tools developed can be used to design and fabricate architected materials for combined functions, including energy absorption, actuation/morphing, and micro-scale bioreactors for tissue engineering. These structures show promise on focusing and rerouting acoustic waves through broadband and highly transparent metamaterials. I will also discuss the development of engineered, three dimensional arrays of copolymer fibers that serve as mimetics of neuronal axons, using a combination of materials engineering and high resolution 3D microfabrication, which enable study of OPC engagement and subsequent myelination in vitro.



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  • Architectured Metamaterials: from Tunable Thermal Expansion to Microvascular Tissue Scaffolding


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