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薄板坯连铸结晶器铜板厚度对传热行为影响
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作者 马硕 罗衍昭 +3 位作者 张聪聪 王皓 王胜东 季晨曦 《连铸》 2023年第3期42-46,54,共6页
基于薄板坯连铸产线的实际生产数据,研究了铜板厚度对结晶器热流密度以及生产稳定性的影响。结果表明,随着铜板厚度由44.2 mm减薄至39.2 mm,结晶器热流密度由2.65 MW/m^(2)增加至2.82 MW/m^(2),结晶器“冷齿”指数由0.4增加至17.5,生产... 基于薄板坯连铸产线的实际生产数据,研究了铜板厚度对结晶器热流密度以及生产稳定性的影响。结果表明,随着铜板厚度由44.2 mm减薄至39.2 mm,结晶器热流密度由2.65 MW/m^(2)增加至2.82 MW/m^(2),结晶器“冷齿”指数由0.4增加至17.5,生产稳定性受到极大影响。为提高传热稳定性,解决铜板厚度减薄造成结晶器热流密度增大的问题,对结晶器冷却水流量进行优化,建立了铜板厚度与冷却水流量之间的关系,结晶器铜板厚度由45 mm降至39 mm,冷却水流量由8500 L/min降低至7225 L/min,以5.3 m/min拉速生产低碳钢时,结晶器宽面热流密度可稳定控制在2.7~2.8 MW/m^(2)。同时,冷却水的最小流速为11 m/s,仍可确保铜板与冷却水之间为强制对流状态,保证了铜板的使用寿命,结晶器“冷齿”指数由3.85降至0.73,有效提高了铸坯质量和生产稳定性。 展开更多
关键词 薄板坯 结晶器 铜板厚度 冷却水流量 热流密度
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Stress-level dependency of creep ageing behavior for friction stir welded Al-Cu alloy 被引量:1
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作者 WANG Dong-yao ZHAN Li-hua +3 位作者 ZHONG Jue TANG Zhi-mao ZENG Quan-qing GAN Ke-fu 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第9期3030-3053,共24页
Creep ageing forming(CAF)has been widely used in the aerospace engineering,but how to optimize the processing conditions,especially under complex stress state of the CAF process for large-size components produced by f... Creep ageing forming(CAF)has been widely used in the aerospace engineering,but how to optimize the processing conditions,especially under complex stress state of the CAF process for large-size components produced by friction-stir welding is still a great challenge to now.In this work,the creep ageing behaviors and underlying microstructure evolution of a thick friction-stir welded Al-Cu alloy plate after CAF process under different stress levels are systematically investigated.The creep strain and the strength of the joint are both significantly increased when the stress is close to the average yield strength of the initial weld joint.The grain size reduces while the local strain and dislocation density increase from top to bottom of the NZ;hence,the bottom layer of the weld joint exhibits higher creep strain and steady-stage creep strain rate during the CAF process.The results reveal that the gradient microstructures sensitive to the stress level effectively govern the creep-ageing performance from the upper to the bottom layer in a thick friction stir welded Al-Cu alloy plate.Rationally increasing the initial dislocation density of the weld joint can both enhance the tensile properties and promote the creep deformation of the weld joint for CAF process. 展开更多
关键词 creep age forming friction stir welding inhomogeneous gradient microstructure thick Al-Cu alloy plate precipitation microstructure evolution mechanical property
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Effect of sub-layer thickness on magnetic and giant magnetoresistance properties of Ni–Fe/Cu/Co/Cu multilayered nanowire arrays 被引量:1
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作者 王宏智 黄波 +3 位作者 邓华权 李浩晨 张卫国 姚素薇 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第7期1231-1235,共5页
Ni-Fe/Cu/Co/Cu multilayered nanowire arrays were electrodeposited into anodic aluminum oxide template by using dual-bath method at room temperature. Scanning electron microscopy and transmission electron microscopy we... Ni-Fe/Cu/Co/Cu multilayered nanowire arrays were electrodeposited into anodic aluminum oxide template by using dual-bath method at room temperature. Scanning electron microscopy and transmission electron microscopy were used to characterize the morphology and structure of the multilayered nanowire arrays. Vibrating sample magnetometer and physical property measurement system were used to measure their magnetic and giant magnetoresistance (GMR) properties. The effect of sub-layer thickness on the magnetic and GMR properties was investigated. The results indicate that magnetic properties of electmdeposited nanowires are not affected obviously by Cu layer thickness, while magnetic layers (Ni-Fe and Co layers) have significant influence. In addition, GMR ratio presents an oscillatory behavior as Cu layer thickness changes. The magnetic and GMR properties of the multilayered nanowire arrays are optimum at room temperature for the material structure of Ni-Fe (25 nm)/Cu (15 nm)/Co (25 nm)/Cu (15 nm) with 30 deposition cycles. 展开更多
关键词 Electrochemistry Ni-Fe/Cu/Co/Cu multilayered nanowires Sub-layer thickness Magnetic property Giant magnetoresistance
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