Effect of rolling temperature on the properties of TA1/Q345 composite plates
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摘要: 相對于爆炸復合法和爆炸軋制復合法而言,采用真空-軋制生產鈦鋼復合板的方法更加適應大規模生產需要.本實驗將TA1鈦材置于兩塊Q345鋼材中間組成組合坯,組合坯經抽真空至0.1 Pa后密封,在840~930℃下進行加熱軋制,對軋制復合樣進行力學性能檢測,并利用掃描電鏡、X射線衍射分析及顯微硬度儀對組織與界面結合度進行分析.在該實驗條件下,鈦鋼復合板剪切強度在159 MPa以上,達到了1類復合板標準要求,870℃軋制復合板性能較優.900和930℃軋制時,鈦發生相變,同時在界面處生成了較多的金屬問化合物,鈦和鋼的變形抗力相差過大和變形不協調導致界面附近的內應力變大,這些因素都降低了界面的剪切強度.840℃軋制后剪切強度低的原因是由于溫度過低影響了界面附近元素的擴散.Abstract: Compared to the explosion cladding method and explosion-rolling cladding method, TA1/Q345 clad plates produced by the vacuum rolling method can better meet the demands of large-scale production. A TA1 titanium alloy sheet was packed between two Q345 steel plates to obtain a composite slab. The composite slab was vacuumized to 0.1 Pa and then sealed. At temperatures of 840 to 930℃ the composite slab was rolled to a cladding plate. The mechanical properties of the cladding plate were tested, and the interracial microstructure and bonding were analyzed by scanning electron microscopy, X-ray diffraction, and micro hardness tester. In the laboratory condition, the shear strength of the cladding plate is above 159 MPa, more than the standard requirement of Class 1 clad plates. The bonding mechanical properties are excellent when the rolling temperature is 870℃. During rolling at 900℃ and 930℃ there occur phase transitions in the titanium and a great deal of intermetallics form near the interface. Too much deformation resistance difference between the titanium and the steel brings about more uncoordinated deformation and internal stress near the interface, which decrease the shear strength of the interface. The lower shear strength at 840℃ is due to the low rolling temperature, which leads to slow element diffusion near the interface.
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Key words:
- metal cladding /
- rolling /
- temperature /
- mechanical properties /
- interfaces /
- intermetallics
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