Material Processing

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课程主页: https://www.coursera.org/archive/material-science-engineering

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课程简介

Georgia Institute of Technology

课程大纲

This course picks up with an overview of basic thermodynamics and kinetics as they pertain to the processing of crystalline materials. The first module deals with phase diagrams - charts that tell us how a material will behave given a certain set of variables such as temperature, pressure, and composition. You will learn how to interpret common and complex phase diagrams and how to extract useful information from them.

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Have you ever wondered why ceramics are hard and brittle while metals tend to be ductile? Why some materials conduct heat or electricity while others are insulators? Why adding just a small amount of carbon to iron results in an alloy that is so much stronger than the base metal? In this course, you will learn how a material’s properties are determined by the microstructure of the material, which is in turn determined by composition and the processing that the material has undergone. This is the second of three Coursera courses that mirror the Introduction to Materials Science class that is taken by most engineering undergrads at Georgia Tech. The aim of the course is to help students better understand the engineering materials that are used in the world around them. This first section covers the fundamentals of materials science including atomic structure and bonding, crystal structure, atomic and microscopic defects, and noncrystalline materials such as glasses, rubbers, and polymers.

材料加工:您是否曾经想过为什么陶瓷坚硬易碎而金属易延展?为什么有些材料导热或导电,而另一些则是绝缘体?为什么仅向铁中添加少量碳会导致合金比基础金属坚固得多?在本课程中,您将学习如何通过材料的微观结构来确定材料的特性,而微观结构又由材料的组成和所经历的加工过程决定。 这是Coursera的三门课程中的第二门课程,反映了佐治亚理工学院大多数工程学专业开设的材料科学导论课。本课程的目的是帮助学生更好地了解周围世界所使用的工程材料。第一部分涵盖了材料科学的基础知识,包括原子结构和键合,晶体结构,原子和微观缺陷以及非晶态材料(例如玻璃,橡胶和聚合物)。

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