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- W4328103184 abstract "The advantages of stainless steel/carbon steel clad plates include corrosion resistance, low cost, good ductility, etc., which are usually used as chief load-bearing components. But the low bonding strength and bearing capacity of clad plates severely limit their wide application. 316 L/Q235B/ 316 L clad plates are prepared by the longitudinal corrugated rolling (LCR) method. The deformation characteristic, mechanical property and microstructure evolution of the LCR plates are investigated by combining finite element method (FEM) and experiments. The effects of LCR and traditional flat rolling (FR) processes on the performance of clad plates are compared and analyzed. The results show that the LCR plates’ shear strength is increased up to 14%, 16% and 19% at the peak, waist and trough, and the tensile and bending strengths of LCR plates are increased by 7.1% and 16.2% compared with FR plates, respectively. The grains are equiaxed at the peak and lamellar at the trough in the 316 L layer in the LCR process. The grains are equiaxed at the peak and trough of LCR plates in the Q235B layer in the LCR process. The deformation mechanisms of the LCR and FR processes are illustrated according to FEM results. The grain state and metal flow of LCR plates can be changed by the fluctuant effective strain and temperature distributions caused by the special roll shape. In the LCR process, the opposite shear stresses in the rolling direction (RD) and the transverse direction (TD) can form cross shear zones, which improves the clad plates’ bonding strength." @default.
- W4328103184 created "2023-03-22" @default.
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- W4328103184 date "2023-07-01" @default.
- W4328103184 modified "2023-10-18" @default.
- W4328103184 title "Deformation mechanism and microstructure evolution in stainless steel clad plate of longitudinal corrugated hot rolling" @default.
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- W4328103184 doi "https://doi.org/10.1016/j.jmatprotec.2023.117957" @default.
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