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§11-1 轮齿的失效形式 §11-2 齿轮材料及热处理 §11-3 齿轮传动的精度 §11-4 直齿圆柱齿轮传动的作用力及计算载荷 §11-5 直齿圆柱齿轮传动的齿面接触强度计算 §11-6 直齿圆柱齿轮传动的轮齿弯曲强度计算 §11-7 斜齿圆柱齿轮传动 §11-8 直齿圆锥齿轮传动 §11-9 齿轮的构造 §11-10 齿轮传动的润滑和效率
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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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对无缝钢管产品水压实验过程中发生的9例典型爆裂事故产生原因进行了宏观和微观综合分析.结果表明:引发钢管产品水压实验爆裂均与管体局部存在某种缺陷有关.连铸坯缺陷包括表面裂纹、表面存在保护渣和增碳、表面渗铜、中心偏析和内部夹杂物偏聚等;轧管缺陷包括表面划伤、壁厚不均和偏薄等;管加工缺陷包括表面淬火裂纹、热处理组织异常、屈服强度偏低、管端螺纹加工精度差等.针对分析结果,提出了改进措施
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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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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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