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    • 1. 发明授权
    • Apparatus and method for blending particulate materials
    • 用于混合颗粒材料的装置和方法
    • US4869594A
    • 1989-09-26
    • US165547
    • 1988-03-08
    • William J. Mahoney, Jr.
    • William J. Mahoney, Jr.
    • B01F5/24
    • B01F5/245
    • An apparatus for blending particulate materials comprising means defining an upper chamber for holding a supply of material to be blended, the material holding means having at least one wall, the wall of the material holding means having at least two outlet ports spaced vertically and about a perimeter of the material holding means for reeiving therethrough particulate material from the upper chamber by gravity flow, means defining a lower chamber for blending particulate material, the material blending means having at least one wall, the wall of the material blending means having at least two inlet ports, means intercommunicating each of the outlet ports with one of the inlet ports for guiding material from the upper chamber to the lower chamber, flow diverting means disposed in the lower chamber, the flow diverting means having means positioned to intercept the flow of material through each of the inlet ports for dividing the flow of material into separate streams, each of the material flow intercepting means including a set of surfaces disposed in diverging relation relative to the direction of material flow.
    • 一种用于混合颗粒材料的装置,包括限定用于保持要混合的材料供应的上部室的装置,所述材料保持装置具有至少一个壁,所述材料保持装置的壁具有至少两个垂直间隔开的出口端口, 材料保持装置的周边,用于通过重力流将来自上部腔室的颗粒材料排出,限定用于混合颗粒材料的下部室的装置,所述材料混合装置具有至少一个壁,所述材料混合装置的壁具有至少两个 入口端口,用于将每个出口端口与其中一个入口端口相互连通,用于将材料从上部腔室引导到下部腔室,设置在下部腔室中的分流装置,该分流装置具有定位成拦截材料流动的装置 通过每个入口端口将物料流分成分离的流,每个物质 流动拦截装置包括相对于材料流动方向以发散关系设置的一组表面。
    • 4. 发明授权
    • Apparatus for blending particulate solids
    • 用于混合颗粒固体的装置
    • US4632565A
    • 1986-12-30
    • US665645
    • 1984-10-29
    • William J. Mahoney, Jr.
    • William J. Mahoney, Jr.
    • B01F5/24B01F5/00B01F15/02
    • B01F5/242
    • A single-pass blending apparatus for blending particulate solids including a blending bin having a bin wall, an upper bin end, a lower bin end, a first bin opening passing through the bin wall, and a second bin opening passing through the bin wall and spaced vertically and horizontally from the first bin opening. The bin wall defines a bin chamber. A plurality of flow openings pass through the lower bin end. A blending chamber is positioned beneath the bin chamber and communicates with the bin chamber through the flow openings. A first external blending tube is positioned outside of the blending bin and has an upper tube end communicating with the first bin opening and a lower tube end external of the bin chamber and communicating with the blending chamber. A second external blending tube is positioned outside of the blending bin and has an upper tube end communicating with the second bin opening and a lower tube end external of the bin chamber and communicating with the blending chamber. A diffuser cone control valve closes off the lower tube ends of the first and second external blending tubes and the flow openings, and, after the external blending tubes and the bin chamber have been filled, opens the lower tube ends and the flow openings to simultaneously allow the material in the lower tube ends and adjacent the flow openings to flow together into the blending chamber.
    • 一种用于混合颗粒固体的单通道混合装置,包括具有箱壁,上箱端,下箱端,通过箱壁的第一箱体开口和通过箱壁的第二箱口的混合箱, 与第一仓开口垂直和水平地间隔开。 箱壁定义了仓室。 多个流动开口穿过下部仓端。 混合室位于仓室下方,并通过流动开口与箱室连通。 第一外部混合管位于混合箱的外部,并且具有与第一仓开口连通的上管端和箱室外部的下管端并与混合室连通。 第二外部混合管位于混合箱的外部,并且具有与第二仓开口连通的上管端和箱室外部的下管端并与混合室连通。 扩散器锥形控制阀封闭第一和第二外部共混管的下管端和流动开口,并且在外部混合管和仓室已经填充之后,同时打开下管端和流动开口 允许下管端部和邻近流动开口的材料一起流入混合室。
    • 8. 发明授权
    • Material conveying system with flow rate control
    • 具有流量控制的物料输送系统
    • US5722801A
    • 1998-03-03
    • US576642
    • 1995-12-21
    • William J. Mahoney, Jr.
    • William J. Mahoney, Jr.
    • B65G53/66B65G53/04
    • B65G53/66
    • Particulate material is conveyed in a dense phase in either a batch mode of conveyance or a continuous mode. In either mode, during the conveyance cycle, the flow rate of compressed gas to the transporter vessel is adjusted to control material conveyance. During start-up the flow rate is decreased to allow material to build in the vessel, then the rate is increased to a normal conveyance value. At the end of the cycle, the flow rate is again decreased to avoid surges and high velocity flow. During the normal conveyance cycle, the flow rate is decreased if the material level in the vessel falls below a minimum value and increased if it rises above a maximum value. The flow rate is adjusted by opening and closing the throat in a venturi tube in an adjustable valve in the gas flow line connected to the vessel.
    • 颗粒材料以分批运送模式或连续模式以密相方式输送。 在任一模式下,在输送循环期间,调节​​压缩气体到输送器容器的流量,以控制材料输送。 在启动期间,流量减少以允许材料在容器中建立,然后速率增加到正常的输送值。 在循环结束时,再次降低流量以避免浪涌和高速流动。 在正常运输循环期间,如果容器中的物料含量低于最小值,则流量降低,如果其升高到最大值以上则流量增加。 通过在连接到容器的气体流动管线中的可调节阀中的文丘里管中打开和关闭喉管来调节流量。