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    • 11. 发明授权
    • Filter for coolant oils for cutting tools
    • 用于切割工具的冷却油过滤器
    • US3596769A
    • 1971-08-03
    • US3596769D
    • 1970-05-04
    • THERMEL INC
    • BALDWIN DAN D
    • B01D21/00C10M175/04B01D21/26
    • C10M175/04B01D21/0006B01D21/0012B01D21/04B01D21/2488B01D21/26B01D21/267B01D21/30B01D21/34
    • Recirculating filter for coolant oils for cutting tools including a main coolant tank having a liquid-separating tank disposed within and extending across the main tank to separate the first tank into an active zone along a dirty coolant inlet into the main tank on one side of the liquid separating tank and a settling zone on the opposite side of the liquid-separating tank. The liquid-separating tank has a dirty coolant area in communication with the active zone of the main tank and a clean coolant area separated from the dirty coolant area by a partition. A cyclone discharges clean liquid from its top into the clean coolant area of the liquid-separating tank and discharges solid particles and entrained oil into a barometric leg having communication with the settling zone of the main tank. An air inlet leads onto the barometric leg behind the apex of the cyclone. The Venturi action of the liquid and solid particles discharging through the apex of the cyclone, draws air through the air inlet to balance the liquid and solids discharging from the cyclone, and prevent the solid particles and liquid from building up into the cyclone. Swarf-controlled grates cooperate with a drag conveyor in the active zone of the main tank to reduce the floating swarf and cause it to be carried away by the drag conveyor.
    • 16. 发明授权
    • Method for conditioning metal cutting fluids
    • 金属切削液调理方法
    • US6110386A
    • 2000-08-29
    • US458210
    • 1999-12-09
    • Jasper Underhill
    • Jasper Underhill
    • B01D17/02B01D17/032B23Q11/10C10M175/04B01D37/04
    • B23Q11/1069B01D17/0202C10M175/04
    • Apparatus for maintaining the condition of cutting fluids in a machine tool sump and for the removal of tramp oil from the cutting fluid has a pump to draw cutting fluid from the machine tool sump and transfer the fluid to an auxiliary tank where the fluid outlet is directed to drive a turbine wheel for rotation of a shaft and simultaneously aerate the cutting fluid. Drums on the shaft are partially submerged so as to be wetted by the tramp oil content. Wiper blades bear against the drum surfaces to strip the tramp oil from the drums as they rotate. A collecting trough is positioned below the wiper contact line to receive the tramp oil as it is stripped from the drum and drain it off to a waste container. In this manner, the cutting fluid is in constant circulation, even when the machine tool is idle.
    • 用于维持在机床贮槽中切割流体和从切削液中除去流浪油的状态的装置具有泵,用于从机床贮槽抽取切削液并将流体传送到辅助罐,在该辅助罐处,流体出口被定向 以驱动涡轮机轮旋转轴并同时使切削液充气。 轴上的鼓部分被浸没,以便被流油含量润湿。 刮水器叶片承受滚筒表面,以便在滚筒旋转时从滚筒上除去流浪油。 收集槽定位在刮水器接触线下方,以便在从滚筒上剥离并将其排出到废物容器时接收流质油。 以这种方式,即使机床空转,切削液也处于恒定循环中。
    • 19. 发明授权
    • Oil-water separation apparatus
    • 油水分离装置
    • US5494586A
    • 1996-02-27
    • US189129
    • 1994-01-31
    • Noboru Inoue
    • Noboru Inoue
    • B01D17/028B01D17/00B01D17/02B01D17/025B01D17/032B01D17/04B01D17/06B01D17/12C10M175/04C02F1/48
    • C10M175/04B01D17/0208B01D17/06Y10S210/05
    • The present invention relates to an oil-water separation apparatus which permits oil-water separation of heavily polluted oil-water mixed liquids or mixed liquids of high viscosity oil and water, etc., to be efficiently made. The present invention consists in an oil-water separation apparatus characterized in that in a top-opened separator tank into which oil-water mixed liquid is fed from a source liquid tank in which the oil-water mixed liquid of the source liquid, being the object of treatment, is contained, the inside-tank space is disected into an oil-water separation space and a separated water containing space, a partition plate is hung in the tank, forming under its bottom a communication route for enabling circulation between these two spaces, and while an oil outlet is opened through the part of the tank wall where the separated oil accumulates, a plural number of charged plates on which a voltage is applied are arranged, each two of them vis-a-vis, in the aforementioned oil-water separation space, said source liquid to be fed through the aforementioned oil-water separation space on which the electric filed acts.
    • 油水分离装置技术领域本发明涉及一种油水分离装置,其能够高效地制造重油污水分离液,高粘度油水混合液等的油水分离装置。 本发明涉及一种油水分离装置,其特征在于,在从开始液体容器供给油水混合液的开放式分离罐中,将源液体的油水混合液作为源液体 被处理的物体,容器内的空间被分解成油水分离空间和分离的含水空间,分隔板悬挂在罐中,在其底部形成有使这两者之间循环的通信路径 并且当通过分离的油积聚的罐壁的部分打开出油口时,在上述各个中相对于它们彼此相对配置多个带有电压的带电板, 油水分离空间,所述源液体通过上述电场作用的油水分离空间供给。
    • 20. 发明授权
    • Water clarification method and apparatus
    • 水净化方法及装置
    • US4824579A
    • 1989-04-25
    • US39974
    • 1987-04-20
    • Albert L. George
    • Albert L. George
    • B01D17/02C10M175/04C02F1/24C02F1/40
    • C10M175/04B01D17/0205
    • A primary separation vessel is separated into a plurality of chambers having fluid communication therethrough; in each of the chambers there is further included a downwardly depending eductor system having a coaxial bore wherein fluid induces air into the eductor system where the educted air in the fluid being projected downward into the flow of fluid and the bubbles rising along the curved wall of the tank and carrying contaminants through a centrally located collection trough, which through gravity the contaminants collect in the trough and move to a circulation collected in the trough. The contaminants then move via gravity to a separation zone within the vessel, wherein the oil that is collected is allowed to spill over in an oil collection zone for recovery, and the level of the water is monitored to draw off any water collected within the zone. There is further provided means within the vessel for allowing the initial introduction of fluid through the vessel to release a certain quantity of the oil within the initial fluid, so that a portion of the oil entrained in the fluid is removed from the fluid as it enters the vessel. Of the fluid flowing through the vessel as it undergoes cleaning through the gas eduction system, a portion is recycled back through the vessel to be educted into the flow of fluid, a portion is used to create two phase fluid flow, and a portion is recovered exterior to the vessel.
    • 主分离容器被分离成具有流体连通的多个室; 在每个室中,还包括具有同轴孔的向下依赖的喷射器系统,其中流体将空气引入喷射器系统中,其中流体中的喷射空气向下突出到流体流中,气泡沿着弯曲壁上升 并通过中心位置收集槽携带污染物,通过重力将污染物收集在槽中并移动到收集在槽中的循环中。 污染物然后通过重力移动到容器内的分离区域,其中收集的油被允许溢出在油收集区域中用于回收,并且监测水位以抽出在区域内收集的任何水 。 在容器内还提供了用于允许流体通过容器初始引入以释放初始流体中的一定量的油的装置,使得夹带在流体中的一部分油在流入时被从流体中除去 船只。 在通过气体排出系统进行清洁时流过容器的流体中,一部分通过容器再循环回流体流动,一部分用于产生两相流体流,并且部分被回收 船外。