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爆破圆管管壁内分界面形成规律初探 被引量:1
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作者 李树奎 杨卓越 +1 位作者 王富耻 才鸿年 《兵器材料科学与工程》 CAS CSCD 2002年第4期28-32,共5页
采用约束爆破和自由膨胀爆破两种实验方法 ,研究了工业纯铁 ,Mn -B系空冷贝氏体钢等五种材料在爆破加载条件下管壁变形、开裂特征和破片形成规律。依据宏观断口特征和破片金相组织分析的结果 ,将管壁组织演化及裂纹形成划分为四种不同... 采用约束爆破和自由膨胀爆破两种实验方法 ,研究了工业纯铁 ,Mn -B系空冷贝氏体钢等五种材料在爆破加载条件下管壁变形、开裂特征和破片形成规律。依据宏观断口特征和破片金相组织分析的结果 ,将管壁组织演化及裂纹形成划分为四种不同的类型 ,它们对应着四种不同的变形破坏机制。不同机制形成的变形破坏区之间存在“分界面” ,共发现四种分界面。采用“三层结构模型”分析了受力状态与分界面的形成之间的关系。探讨了炸药、材料性能。 展开更多
关键词 圆管爆破试验 破片型战斗部 约束爆破 自由膨胀爆破 三层结构模型 分界面
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保温层下涂层耐腐蚀性能测试与评定方法研究
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作者 于慧文 李晓炜 +3 位作者 方瑶婧 骆惠 张雷 段永锋 《涂料工业》 CAS CSCD 北大核心 2023年第6期16-21,共6页
在实验室模拟保温层下腐蚀环境,针对不同的配套涂层体系开展了横置式方管和竖立式圆管循环腐蚀试验,筛选了不同涂层的保温层下耐腐蚀性,并对方管和圆管试验评价方法进行了对比和分析。结果表明:普通环氧酚醛漆、玻璃鳞片增强环氧酚醛漆... 在实验室模拟保温层下腐蚀环境,针对不同的配套涂层体系开展了横置式方管和竖立式圆管循环腐蚀试验,筛选了不同涂层的保温层下耐腐蚀性,并对方管和圆管试验评价方法进行了对比和分析。结果表明:普通环氧酚醛漆、玻璃鳞片增强环氧酚醛漆以及惰性无机共聚物漆具备良好的耐保温层下腐蚀性能,含有机硅铝粉的涂层体系由于较薄的干膜厚度未通过测试。此外,相比于圆管试验,方管试验的试验条件更为苛刻,对不同涂层的筛选性更佳。 展开更多
关键词 保温层下腐蚀 方管循环腐蚀试验 圆管试验 涂层体系
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Optimizing Hot Forging Process Parameters of Hollow Parts Using Tubular and Cylindrical Workpiece: Numerical Analysis and Experimental Validation
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作者 Angela Selau Marques Luana DeLuccade Costa +3 位作者 Rafael Luciano Dalcin Alberto Moreira Guerreiro Brito Lirio Schaeffer Alexandre da Silva Rocha 《Journal of Mechanics Engineering and Automation》 2018年第2期60-70,共11页
CAE (computer aided engineering) evaluates the forging process virtually to optimize the industrial production. The numerical and experimental investigations of forging process of a hollow part are important in ind... CAE (computer aided engineering) evaluates the forging process virtually to optimize the industrial production. The numerical and experimental investigations of forging process of a hollow part are important in industrial point of view. This study has been focused on the development of a 3D elastic-plastic FEM (finite element model) of hot forging to evaluate the forming process of hollow parts. The validity of this method was verified through a laboratory experiment using aluminum alloy (AA6351) with medium geometric complexity. The distributions of effective strain, temperature, metal flow and strength were analyzed for two different initial workpieces (tubular and cylindrical). It was observed that both initial workpieces can be used to produce the final hollow part using the numerical simulation model. The results showed that the numerical analyses predict, filling cavity, calculated strength, work temperature and material flow were in agreement with the experimental results. However, some problems such as air trapping in the die causing incomplete filling could not be predicted and this problem was resolved experimentally by drilling small holes for air release in the dies. 展开更多
关键词 Hot forging FEM hollow parts AA6351.
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