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10.1 热处理炉温度控制系统 10.2 反重力铸造液态成形控制系统 10.3 激光熔覆及再制造系统 10.4 机器人材料加工系统 10.5 基于视觉的焊缝质量离线检测系统
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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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一、塑化过程 二、注射过程流体的流动 三、模塑过程压力的变化 四、注射成型过程中聚合物的取向、结晶及内应力
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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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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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1.1 光的波动理论与光子学说 1.2 热辐射的一般概念 1.3 黑体辐射 1.4 自发辐射、受激辐射和受激吸收 1.5 谱线形状与宽度 1.6 均匀加宽与非均匀加宽
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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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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
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◼ 概述 ◼ 热原 ◼ 注射剂的溶剂 ◼ 注射剂的附加剂 ◼ 注射剂的制备 ◼ 质量控制 ◼ 其他 ◼ 输液剂与血浆代用液 ◼ 粉针剂 ◼ 眼用溶液
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