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10.1 Martensite Transformations 10.1.1 Characteristics 10.1.2 Thermodynamics 10.1.3 Crystallographic Theory 10.1.4 Kinetics 10.2 Martensite Transformations in Steels 10.2.1 Crystal structure of martensite in steels 10.2.2 Microstructure of martensite in steels 10.2.3 Stabilization of austenite 10.2.4 Mechanical properties 10.3 Bainite Transformations 10.3.1 Characteristics and Microstructures 10.3.2 Transformation Mechanism 10.3.3 Kinetics and influencing factors 10.3.4 Mechanical properties
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9.1 Reverse Eutectoid Transformations 9.1.1 Intro to austenite in Fe-C system 9.1.2 Formation mechanism of austenite 9.1.3 Kinetics of austenitization 9.1.4 Austenite grain growth and its control 9.2 Eutectoid Transformations 9.2.1 Intro to Pearlite in Fe-C system 9.2.2 Formation mechanism of pearlite 9.2.3 Kinetics of pearlite formation 9.2.4 Mechanical properties
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9.1 Reverse Eutectoid Transformations 9.1.1 Intro to austenite in Fe-C system 9.1.2 Formation mechanism of austenite 9.1.3 Kinetics of austenitization 9.1.4 Austenite grain growth and its control 9.2 Eutectoid Transformations
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上海交通大学:《材料加工原理 Principles of Materials Processing》教学资源(课程讲稿)金属材料热处理原理 Heat Treatment Principles of Metals Chapter 9 Eutectoid and Reverse Eutectoid
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9.1 Reverse Eutectoid Transformations 9.1.1 Intro to austenite in Fe-C system 9.1.2 Formation mechanism of austenite 9.1.3 Kinetics of austenitization 9.1.4 Austenite grain growth and its control 9.2 Eutectoid Transformations
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8.1 Classification of Phase Transformations in Solids 8.2 Features of Phase Transformations in Solids 8.3 Thermodynamics for Phase Transformation in Solids 8.4 Kinetics for Phase Transformation in Solids
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8.1 Classification of Phase Transformations in Solids 8.2 Features of Phase Transformations in Solids 8.3 Thermodynamics for Phase Transformation in Solids 8.4 Kinetics for Phase Transformation in Solids
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控制系统的校正方法 • 概述 • 超前校正和滞后校正 • PID调节器 本章基本要求: 理解串联校正的含义; 掌握超前校正原理; 掌握滞后校正原理; 掌握比例、积分、微分、比例积分、比例微分、比例积分; 微分控制规律;
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一、概述 高水平的工艺良品率是生产性能可靠的芯 片并获得收益的关键所在。本章将简单介绍影 响良品率的主要工艺及材料要素,并对良品率 测量点做出阐述。 维持及提高良品率对半导体工业至关重要 ,因为半导体制造工艺的复杂性,以及生产一 个完整封装器件所需要经历的庞大工艺制程, 是导致这种对良品率超乎寻常关注的基本原因 。这两方面的原因使得通常只有20%至80%的芯 片能够完成生产线全过程,成为成品出货
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