Collaborative Research: Modeling-Based Design of Freeze-Cast Hybrid Materials
Collaborative Research: Modeling-Based Design of Freeze-Cast Hybrid Materials
批准号:
1538094
负责人:
Ulrike G K Dr Wegst
金额:
$36.13万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-09-01 至 2019-08-31
中文摘要
冷冻铸造工艺是一种可以很容易地制造几立方厘米大小的散装材料和整个部件的工艺。该工艺基于水基溶液或浆料(悬浮液)的固化。要冷冻铸造支架,需要将溶液或浆料倒入模具中,然后定向固化。在冻结过程中,水以纯冰晶的形式凝固,溶解的聚合物和悬浮在这种液体载体中的颗粒集中在它们之间。一旦冷冻,样品被冷冻干燥,使冰相升华,露出材料支架;它的结构是以它为模板的冰晶的负值。细胞壁材料结构是自组装过程的结果。冷冻铸造或“冰模板”是一种相对便宜的程序,它提供了一种方法来模仿复杂、高效的自然材料,并在几个长度尺度上进行分层设计。该奖项支持建立模型、基本设计原则和工具的研究,使系统地设计和制造具有增强性能的冷冻铸造混杂材料成为可能。这些新材料将通过从能源产生和储存到组织修复和再生的应用,对个人和广大公众都有好处。本研究计划专注于冷冻铸造杂化材料的基础科学和建模驱动的设计。一个在建模、实验和表征方面具有专业知识的跨学科团队将解决当前的知识差距,并分析冷冻铸造过程产生的冰相和冰模化材料结构的形成和演变,试图揭示基本的物理化学原理,并确定基本的工艺-结构-性能相关性。三个研究目标是(1)确定基础材料科学,并建立一个现实的模型,用于冷冻铸造过程中在定义良好的衬底(石墨烯)上的冰晶成核和生长;(2)通过多尺度计算建模与实验方法相结合,揭示工艺-结构-性能之间的相关性;以及(3)开发预测模型,以确定最有希望的加工-添加剂组合,以便在模型材料系统中定制设计和优化结构形成和性能。
英文摘要
The freeze-casting process is one with which bulk materials and entire components of several cubic centimeters in size can be manufactured with ease. The process is based on the solidification of water-based solutions or slurries (suspensions). To freeze-cast a scaffold, a solution or slurry is poured into a mold and then directionally solidified. During freezing, the water solidifies in the form of pure ice crystals, and the polymer that was dissolved and the particles that were suspended in this liquid carrier are concentrated between them. Once frozen, the sample is freeze-dried to sublime the ice-phase and reveal the material scaffold; its architecture is the negative of the ice crystals which templated it. The cell wall material structure is the result of a self-assembly process. Freeze casting or "ice templating" is a relatively inexpensive procedure and provides a means to mimic complex, efficient natural materials with hierarchical designs over several length-scales. This award supports research to build models, basic design principles and tools that will enable a systematic approach for the design and manufacture of freeze-cast hybrid materials with enhanced performance. These new materials will be of benefit to both individuals and the general public at large through applications that range from energy generation and storage to tissue repair and regeneration.This research program focuses on the fundamental science and modeling-driven design of freeze-cast hybrid materials. An interdisciplinary team with expertise in modeling, experiment and characterization will address current knowledge gaps and analyze the formation and evolution of the ice phase and ice-templated material architectures generated by the freeze casting process in an attempt to uncover basic physicochemical principles and determine fundamental processing-structure-property correlations. The three research goals are to (1) determine the underlying fundamental materials science and establish a realistic model for ice-crystal nucleation and growth on a well-defined substrate (graphene) during freeze casting; (2) uncover processing-structure-property correlations by combining multiscale computational modeling with experimental approaches; and (3) develop predictive models to identify the most promising processing-additive combinations in order to custom-design and optimize structure formation and performance in the model material system.
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会议论文
Structure-Property-Processing Correlations in Ice-templated Materials
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批准号:1200408
-
项目类别:Standard Grant
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资助金额:$36.84万
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财政年份:2012
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负责人:Ulrike G K Dr Wegst
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依托单位:
国内基金
海外基金
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