Microstructure features of the steel side in TA2-Q235B explosive clad plates
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摘要: 借助光學顯微鏡、電子背散射衍射和掃描電子顯微鏡等測試技術和手段,系統地研究熱處理溫度對TA2-Q235B爆炸復合板鋼側組織轉變的影響,并分析了其形成機理.結果表明:在熱處理過程中,鋼側界面組織發生脫碳,形成完全由鐵素體組織組成的脫碳層,這些鐵素體沒有織構特征;當熱處理溫度在850℃及以下時,鋼側界面組織在靠近波頭漩渦的地方發生異常長大,形成粗大的鐵素體;當熱處理溫度在900℃及以上時,鋼側界面組織在鈦鋼復合界面上發生異常長大,產生柱狀的鐵素體組織.這些組織的形成受到碳元素的擴散和鋼側基體組織相變的共同作用.熱處理過程中,界面產生的TiC在界面上分布不均,隨溫度升高,在界面局部富集,從而加速了碳元素向界面的擴散.Abstract: The effect of heat treatment temperature on the microstructure transformation of the steel side in TA2-Q235B explosive clad plates was studied by optical microscopy (OM), electron backscatter diffraction (EBSD) and scanning electron microscopy (SEM), and the formation mechanism was also analyzed. During the heat treatment process, the interface structure of the steel side decarburized, and a decarburized layer which is comprised of ferrite without structure characters formed. At 850℃ and below, the interface structure of the steel side near the swirl of the wave tip developed abnormally into big ferrite. At 900℃ and above, the interface structure of the steel side unusually grew into a columnar-structure ferrite structure. These aforesaid structures are influenced by both carbon diffusion and the phase transformation of matrix microstructure in the steel side. During the heat treatment process, TiC generated on the interface unevenly distributed on the interface, and locally accumulated on the interface with the increase of temperature, which accelerates the diffusion of carbon to the interface.
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Key words:
- titanium /
- carbon steel /
- metal cladding /
- explosive bonding /
- interface structure /
- heat treatment /
- temperature
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