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Side-surface Shape Optimization of Heavy Plate by Large Temperature Gradient Rolling

机译:大温度梯度轧制厚板侧面形状的优化

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In order to decrease widthwise trimming loss of heavy plate, the metal deformation in width direction has to be controlled to ensure that the side-surface shape of plate is close to flatness. A method called large temperature gradient rolling (LTGR), which combines rolling with water cooling at the slab surface, is suggested to improve side shape of heavy plate. The process is studied by means of both simulations and experiments. LTGR process can correct the double bulge deformation effectively so as to avoid metal overlaps on the edge of plate by comparing with conventional rolling (CVR) process. The temperature gradient can result in deformation resistance gradient through the thickness of slab. The degree of width spread in the central region of the rolling piece increases under the condition of temperature gradient. It indicates that the deformation penetration deepens into the core area of the plate and the internal metal flow enhances. These results provided guidelines for further investigation and application on side-surface shape control of heavy plate.
机译:为了减少厚板的横向修整损失,必须控制宽度方向的金属变形以确保板的侧面形状接近平坦度。为了改善厚板的侧面形状,建议采用一种称为大温度梯度轧制(LTGR)的方法,该方法将轧制与板坯表面的水冷相结合。通过模拟和实验研究了该过程。与传统的轧制(CVR)工艺相比,LTGR工艺可以有效地矫正双凸部变形,从而避免金属在板边缘重叠。温度梯度会导致贯穿板坯厚度的变形阻力梯度。在温度梯度的条件下,在轧制件的中心区域中的宽度扩展程度增加。这表明形变穿透深度加深到板的核心区域,内部金属流动增强。这些结果为进一步研究和应用在厚板侧面形状控制中提供了指导。

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