磷酸铁锂和炭黑的电泳沉积:利用田口设计探索纵向趋势的数值研究

IF 7.6 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Materials & Design Pub Date : 2024-11-01 DOI:10.1016/j.matdes.2024.113446
Stefano Russo , Marzio Grasso , Jian Huang , Stevin S. Pramana , Francesco Gucci , Christopher Shaw , Glenn J. Leighton
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引用次数: 0

摘要

开发用于复合结构电池(CSB)的电泳沉积(EPD)技术可彻底改变能源存储技术。CSB 将电池无缝集成到结构中,有效减轻了重量,减少了空间限制,从而提供了一种创新的解决方案。尽管 EPD 方法在各个领域得到了成功应用,但由于涉及的变量较多,人们对其背后的物理和化学过程仍然缺乏全面的了解。本研究采用有限元和分析耦合方法研究了与工艺相关的关键参数的影响,以找到与沉积工艺的相关性。在使用乙醇悬浮液中的磷酸铁锂和炭黑颗粒时,采用了包含五个参数(即电压、浓度、磷酸铁锂和炭黑颗粒的相对重量比、电极的长度和周长)的田口实验设计,以确定与沉积质量、涂层厚度和成品率之间的相关性。为了捕捉随时间的变化,在六个不同的沉积时间对每个参数进行了研究。最终确定了一种浓度,该浓度可优化厚度和质量沉积的产出率。悬浮液的电阻率决定了产率的动态变化,因此可以在特定范围内进行设计,以满足不同应用的要求。
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Electrophoretic deposition of LiFePO4 and carbon black: A numerical study to explore longitudinal trends using Taguchi design
Developing Electrophoretic Deposition (EPD) for Composite Structural Batteries (CSBs) could revolutionise energy storage technology. CSBs offer an innovative solution by seamlessly integrating batteries into structures and effectively reducing weight and space constraints. Despite its successful implementation across various fields, EPD method still lacks comprehensive understanding of the underlying physical and chemical processes due to the number of variables involved. In this study the effects of key parameters associated with the process are investigated with a coupled FEM and analytical approach to find correlations with the deposition process. A Taguchi Design of Experiment with five parameters, namely voltage, concentration, relative weight ratio of LiFePO4 – carbon black particles, length and perimeter of the electrodes is implemented to identify the correlations with mass deposited, thickness of the coating and yield rate when LiFePO4 and Carbon Black particles in ethanol suspension are used. In order to capture the variation over time, each parameter is studied at six different time of deposition. A concentration that optimises yield rate resulting in thickness and mass deposition is identified. The resistivity of the suspension dictates the yield rate dynamics, allowing it to be designed within a specific range to meet requirements of different applications.
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来源期刊
Materials & Design
Materials & Design Engineering-Mechanical Engineering
CiteScore
14.30
自引率
7.10%
发文量
1028
审稿时长
85 days
期刊介绍: Materials and Design is a multi-disciplinary journal that publishes original research reports, review articles, and express communications. The journal focuses on studying the structure and properties of inorganic and organic materials, advancements in synthesis, processing, characterization, and testing, the design of materials and engineering systems, and their applications in technology. It aims to bring together various aspects of materials science, engineering, physics, and chemistry. The journal explores themes ranging from materials to design and aims to reveal the connections between natural and artificial materials, as well as experiment and modeling. Manuscripts submitted to Materials and Design should contain elements of discovery and surprise, as they often contribute new insights into the architecture and function of matter.
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