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控制铸轧板面水波纹缺陷的工艺研究
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作者 孙旺明 范江平 张晓洲 《中国有色金属》 2018年第A01期341-343,共3页
阐述分析了铸轧生产过程中板面易出现水波纹缺陷的产生原因,通过优化铸轧速度、改变铸轧设备工装、减小嘴辊间隙处液面波动等一系列措施,改善铸轧板面横波纹缺陷对后续轧制的影响。
关键词 水波纹 嘴辊间隙 铸轧板面
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Interfacial pressure distribution and bonding characteristics in twin-roll casting of Cu/Al clad strip 被引量:1
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作者 Jun-peng ZHANG Hua-gui HUANG +2 位作者 Jing-na SUN Ri-dong ZHAO Miao FENG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第9期2965-2978,共14页
The mechanical properties and product thickness specifications of bimetallic clad strip prepared by twin-roll casting are tightly related to the mechanical behavior of bonding interface interaction.The thermal−flow co... The mechanical properties and product thickness specifications of bimetallic clad strip prepared by twin-roll casting are tightly related to the mechanical behavior of bonding interface interaction.The thermal−flow coupled simulation and the interface pressure calculation models are established with the cast-rolling velocity as the variable.The results show that the interface temperature decreases,the interface pressure and the proportion of the thickness of the Al side increase with the decrease in cast-rolling velocity.The thinning of Cu strip mainly occurs in the backward slip zone.The higher pressure and longer solid/semi-solid contact time make the interface bonded fully,which provides favorable conditions for atomic diffusion.The inter-diffusion zone with a width of 4.9μm is attained at a cast-rolling velocity of 2.4 m/min,and the Cu side surface is nearly completely covered by aluminum.Therefore,the ductile fracture occurs on the Al side,which prevents the propagation of interface delamination cracks effectively.Meanwhile,shear effect becomes more significant at high interfacial pressure and large plastic strain,and the microstructure on Al side is composed of slender columnar crystals.Thus,the metallurgical bonding and refinement of grains on the Al side can result in higher bonding strength and tensile properties of the clad strip. 展开更多
关键词 Cu/Al clad strip cast-rolling velocity bonding interface twin-roll casting
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