Stress and Deformation caused by Insertion in Li Ion Batteries
Stress and Deformation caused by Insertion in Li Ion Batteries
批准号:
1031161
负责人:
Joost Vlassak
金额:
$37.11万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-15 至 2013-08-31
中文摘要
锂离子电池是各种应用的首选电池,特别是对于那些对尺寸和重量敏感的产品,如便携式电子产品和电动汽车。锂离子电池的核心是电化学和力学相结合的一个具有挑战性的问题。锂离子电池中的每个电极都是锂的宿主,在电池充电和放电时吸收或排出锂。反复的锂化和衰减会引起循环变形,甚至可能导致断裂,这是一种导致电池容量衰减的机制。锂化引起的变形和断裂是发展高容量电池的瓶颈。本计划将发展理论并进行实验,以研究各向异性插入、颗粒大小及变化率的影响。此外,该项目将制定非弹性宿主中耦合质量传递和变形的理论,并使用该理论研究应力,锂浓度和表面形态的共同演化,这是最近文献报道的现象。鉴于电池对社会的作用正在发生深刻的转变,其对环境和资源的态度,机械和电化学的整合是及时的。pi已经开始将电化学整合到力学课程中,并在网上发布了课程材料。这个项目的教育影响已经从pi小组中研究生的热情中得到了明显的体现。他们的想象力被这个独特的机会所捕获,将机械学科带入一项将改变社会的技术的核心。
英文摘要
Lithium-ion batteries are the batteries of choice for diverse applications, especially for those sensitive to size and weight, such as portable electronics and electric cars. At the heart of a Lithium-ion battery is a challenging problem that couples electrochemistry and mechanics. Each electrode in a Lithium-ion battery is a host for Lithium, absorbing or exuding Lithium when the battery is charged and discharged. Repeated lithiation and delithiation induce cyclic deformation and possibly fracture, a mechanism known to cause the capacity of the battery to fade. Lithiation-induced deformation and fracture is a bottleneck in developing batteries of high capacity. This project will develop theory and conduct experiments to study effects of anisotropic insertion, particle size and changing rate. Furthermore, the project will formulate a theory of coupled mass transport and deformation in inelastic hosts, and use the theory to study co-evolution of stress, Lithium concentration, and surface morphology, a phenomenon reported in recent literature. Given the role of batteries to the society undergoing a profound transformation in its attitude toward environment and resources, the integration of mechanics and electrochemistry is timely. The PIs have already begun to integrate electrochemistry into a course in mechanics, and posted course materials online. The educational impact of this project is already evident from the enthusiasm of the graduate students in the PIs' groups. Their imagination is captured by this unique opportunity to bring the discipline of mechanics to the heart of a technology that will transform society.
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