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Research on Asymmetric and Negative offset Mechanism of Large-scale Steel Plate Rolling Shear

机译:大型钢板滚动剪切的不对称和负偏移机理研究

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According to revised Cailikefu's rolling shear force formula, motion path equation of spatial seven-bar path is built, and mechanical model, with such new structural features as asymmetric and negative offset, is thus successfully established for 2800 mm heavy shear of some Iron&Steel Company. Shear force and bar force of steel plate, before and after adoption of asymmetric and negative offset structure, are analyzed, as well as horizontal force component of mechanism that influences pure rolling shear and back-wall push force that keeps blade clearance. The discovery is that back-wall push force could be kept large enough at rolling start-up (i.e. the time that the maximum rolling shear produces), meanwhile, back-wall push force is the most approximate to side forces with adoption of 60mm~100mm offset. Theoretical results and on-site shear quality both indicate that new structural features such as asymmetric and negative offset plays an important role in ensuring pure rolling shear and keeping blade clearance constant, which provide an effective means to improve quality of steel plate.
机译:根据经修订的CailikeFu的滚动剪力配方,建造了空间七条路径的运动路程,而且机械模型,具有不对称和负偏移的新结构特征,因此成功地建立了一些钢铁公司的2800毫米重的剪切。分析了采用不对称和负偏移结构之前和之后的钢板的剪切力和条形,以及影响保持刀片间隙的纯轧制剪切和后壁推力的机构的水平力分量。该发现是背壁推力可以在滚动启动时保持足够大(即最大滚动剪切产生的时间),同时,背壁推力是通过采用60mm的侧部力最近似的近似100mm偏移。理论结果和现场剪切质量都表明,新的结构特征如不对称和负偏移,在确保纯轧制剪切和保持刀片间隙恒定方面发挥着重要作用,这提供了提高钢板质量的有效手段。

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