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    • 1. 发明公开
    • Gravitational separation
    • Abtrennung nach Dichte
    • EP0253720A2
    • 1988-01-20
    • EP87401603.3
    • 1987-07-08
    • Fletcher, John Maurice
    • Fletcher, John Maurice
    • B03B5/04
    • B03B5/04
    • A shaking table for ore-dressing, having riffles (50) on its deck (10), has circular orbital motion imposed on it to cause the riffles to oscillate, and for a standing wave (71) to be created between the riffles. The continued circular motion acting on the standing waves causes sharp separation of the material fractions which are discharged continuously from the deck.
      The slope of the deck (10) and riffles (50) and the configuration of the riffles are critical. The slope of the deck is set empirically by estimating the approximate slope appropriate to the parameters of the material being treated and of the motion imparted to the deck; and the final adjustment is made by slewing the deck in its own plane to obtain an optimum result.
      For a frusto-conical deck (69), the adjustment is made on a flat deck and the frusto-conical deck is constructed accordingly.
      The deck may have rectilinear or curvilinear motion imparted to it, superimposed upon the circular motion.
    • 在其甲板(10)上具有震动(50)的用于选矿的振动台具有施加在其上的圆周轨道运动,以引起震动振荡,并在步骤之间产生驻波(71)。 作用在驻波上的连续圆周运动导致从甲板连续排放的材料部分的尖锐分离。 甲板(10)和排档(50)的斜坡和排档的配置至关重要。 通过估计适合于被处理材料的参数和施加给甲板的运动的近似斜率,经验性地设定甲板的斜率; 并且通过在其飞机上旋转甲板来获得最佳结果来进行最终调整。 对于截头圆锥甲板(69),调整是在平坦的甲板上进行的,截头圆锥形甲板是相应的。 甲板可能具有直线或曲线运动,叠加在圆周运动上。
    • 2. 发明公开
    • Gravitational separation
    • 灰度分离
    • EP0253720A3
    • 1989-05-10
    • EP87401603.3
    • 1987-07-08
    • Fletcher, John Maurice
    • Fletcher, John Maurice
    • B03B5/04
    • B03B5/04
    • A shaking table for ore-dressing, having riffles (50) on its deck (10), has circular orbital motion imposed on it to cause the riffles to oscillate, and for a standing wave (71) to be created between the riffles. The continued circular motion acting on the standing waves causes sharp separation of the material fractions which are discharged continuously from the deck. The slope of the deck (10) and riffles (50) and the configuration of the riffles are critical. The slope of the deck is set empirically by estimating the approximate slope appropriate to the parameters of the material being treated and of the motion imparted to the deck; and the final adjustment is made by slewing the deck in its own plane to obtain an optimum result. For a frusto-conical deck (69), the adjustment is made on a flat deck and the frusto-conical deck is constructed accordingly. The deck may have rectilinear or curvilinear motion imparted to it, superimposed upon the circular motion.