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材料四面体有一个“数字孪生体”。

The materials tetrahedron has a "digital twin".

作者信息

Deagen Michael E, Brinson L Catherine, Vaia Richard A, Schadler Linda S

机构信息

Department of Mechanical Engineering, The University of Vermont, Burlington, VT 05405 USA.

Department of Mechanical Engineering and Materials Science, Duke University, Durham, NC 27708 USA.

出版信息

MRS Bull. 2022;47(4):379-388. doi: 10.1557/s43577-021-00214-0. Epub 2022 Feb 1.

Abstract

ABSTRACT

For over three decades, the materials tetrahedron has captured the essence of materials science and engineering with its interdependent elements of processing, structure, properties, and performance. As modern computational and statistical techniques usher in a new paradigm of data-intensive scientific research and discovery, the rate at which the field of materials science and engineering capitalizes on these advances hinges on collaboration between numerous stakeholders. Here, we provide a contemporary extension to the classic materials tetrahedron with a dual framework-adapted from the concept of a "digital twin"-which offers a nexus joining materials science and information science. We believe this high-level framework, the materials-information twin tetrahedra (MITT), will provide stakeholders with a platform to contextualize, translate, and direct efforts in the pursuit of propelling materials science and technology forward.

IMPACT STATEMENT

This article provides a contemporary reimagination of the classic materials tetrahedron by augmenting it with parallel notions from information science. Since the materials tetrahedron (processing, structure, properties, performance) made its first debut, advances in computational and informational tools have transformed the landscape and outlook of materials research and development. Drawing inspiration from the notion of a digital twin, the materials-information twin tetrahedra (MITT) framework captures a holistic perspective of materials science and engineering in the presence of modern digital tools and infrastructures. This high-level framework incorporates sustainability and FAIR data principles (Findable, Accessible, Interoperable, Reusable)-factors that recognize how systems impact and interact with other systems-in addition to the data and information flows that play a pivotal role in knowledge generation. The goal of the MITT framework is to give stakeholders from academia, industry, and government a communication tool for focusing efforts around the design, development, and deployment of materials in the years ahead.

摘要

摘要

三十多年来,材料四面体以其相互依存的加工、结构、性能和表现等要素,抓住了材料科学与工程的本质。随着现代计算和统计技术开启了数据密集型科研与发现的新范式,材料科学与工程领域利用这些进展的速度取决于众多利益相关者之间的合作。在此,我们对经典的材料四面体进行了当代扩展,采用了一个从“数字孪生”概念改编而来的双重框架,它提供了一个连接材料科学与信息科学的纽带。我们相信这个高层次框架,即材料 - 信息孪生四面体(MITT),将为利益相关者提供一个平台,以便在推动材料科学与技术发展的过程中,对各项工作进行情境化、转化和指导。

影响声明

本文通过用信息科学的并行概念对经典材料四面体进行扩充,提供了一种当代的重新构想。自从材料四面体(加工、结构、性能、表现)首次亮相以来,计算和信息工具的进步改变了材料研发的格局和前景。从数字孪生的概念中汲取灵感,材料 - 信息孪生四面体(MITT)框架在现代数字工具和基础设施的背景下,捕捉了材料科学与工程的整体视角。这个高层次框架纳入了可持续性和FAIR数据原则(可查找、可访问、可互操作、可重用)——这些因素认识到系统如何影响其他系统以及与其他系统相互作用——此外还纳入了在知识生成中起关键作用的数据和信息流。MITT框架的目标是为学术界、工业界和政府的利益相关者提供一种沟通工具,以便在未来几年围绕材料的设计、开发和部署集中力量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab16/9365726/370daecd73dc/43577_2021_214_Fig1_HTML.jpg

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