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    • 3. 发明授权
    • Method and apparatus for cleaning drilling fluids
    • 钻井液清洗方法和设备
    • US4459207A
    • 1984-07-10
    • US339533
    • 1982-01-15
    • Grant A. Young
    • Grant A. Young
    • B01D35/20B03B9/00B07B1/00B07B1/55E21B21/06B07B1/28B07B1/50
    • E21B21/065B01D35/20B03B9/00B07B1/00B07B1/55B07B2230/01
    • Method and apparatus for making a sharp separation of solids into components which are finer than the screen mesh and coarser then the screen mesh. The solids ladened fluid is introduced onto a screen to separate coarse solids from fine solids. A tray containing a body of aqueous liquid is vibrated causing the aqueous liquid to repeatedly contact the solids while on the screen to provide the needed mobility for fine particles to pass through the screen with the liquid. The aqueous liquid returns to the tray and the vibration of the tray aids in removal of the fine solids which have passed through the screen from the tray. Aqueous liquid is continuously added to the tray or sprayed above the screen to keep accumulated solids from increasing the viscosity of the aqueous liquid in the tray.
    • 用于将固体急剧分离成与丝网相比更细的组分的筛分网格的方法和装置。 将固体填充的流体引入筛网以从粗固体中分离粗固体。 含有水性液体的托盘振动,使得水性液体在屏幕上反复接触固体,以提供细小颗粒通过液体通过筛网所需的移动性。 水性液体返回到托盘,并且托盘的振动有助于从托盘中去除已经通过筛网的细小固体。 将水性液体连续添加到托盘中或喷洒在筛网上方以保持积聚的固体不增加托盘中水性液体的粘度。
    • 4. 发明授权
    • Shipping strap assembly for a vibratory screening machine
    • 用于振动筛分机的运输带组件
    • US09493296B1
    • 2016-11-15
    • US14728736
    • 2015-06-02
    • Grant A. YoungThomas Ray Young
    • Grant A. YoungThomas Ray Young
    • F16M13/00B65D85/68B65D67/02F16B1/00
    • B65D85/68B60P7/16B65D67/02B65D81/07B65D2585/6897F16B1/00F16B1/04F16M7/00F16M2200/025
    • A shipping strap assembly protects the isolator mechanism of a vibratory screening machine against exceeding its elastic limits. The isolator mechanism is pivotally connected between shafts on the machine frame and the machine basket. The protective assembly includes a distally narrowing boss on at least one of the shafts. A rigid strap has two apertures, one contoured to receive and ride on the boss and the other contoured to receive the other shaft, spaced to maintain the distance between the shaft axes within an elastic limit of the isolator mechanism. The narrowing boss provides leeway for easy manual alignment of the mechanism shafts with the strap apertures, and the narrowing boss and contour of the other aperture facilitate restoration toward its normal load length, of an elastically distorted mechanism.
    • 运输带组件保护振动筛分机的隔离机构不超过其弹性极限。 隔离器机构枢转连接在机架和机架上的轴之间。 保护组件包括至少一个轴上的远端变窄凸台。 刚性带具有两个孔,其一个成形为接收和骑在凸台上,另一个成形轮廓以接收另一轴,间隔开以将轴轴线之间的距离保持在隔离器机构的弹性极限内。 狭窄的凸台提供了容易地机械轴与带孔的手动对准的余地,并且另一个孔的变窄凸台和轮廓有助于恢复其正常的负载长度,弹性变形的机构。
    • 5. 发明授权
    • Recessed vibrator for an elliptical motion screen separator
    • 椭圆运动屏幕分离器的嵌入式振动器
    • US6029823A
    • 2000-02-29
    • US189674
    • 1998-11-11
    • Grant A. YoungThomas R. Young
    • Grant A. YoungThomas R. Young
    • B07B1/42B07B1/49
    • B07B1/42
    • A structural mount for a vibrator of a screen separator is provided in which the vibrator mounting plate is secured at an angle directly to the basket side wall structure or to a load bearing structure which is parallel and fixed to the basket side wall structure. In a preferred embodiment of the invention, an opening or pocket is provided in the basket side wall to accommodate protrusion of the inward end of the vibrator into or even through the basket side wall. Access to and removal of the cap from the inward end of the vibrator is accomplished in the former case from the inside of the basket and in the latter case from the outside of the basket. The basket side wall reinforcing structure preferably includes a Y-shaped yoke with the mounting plate being fixed proximate the Y-connection point. Transverse reinforcing members of the basket have their ends fixed to the extremities of the Y-shaped yoke. Thus a modest reinforcement of the basket side wall structure to accommodate reduced displacement of the vibrator from the basket side wall results in a significant reduction in the overall structural requirements of the separator basket.
    • 提供了一种用于屏幕分离器的振动器的结构安装件,其中振动器安装板与篮式侧壁结构直接固定在一起,或者平行并固定在篮式侧壁结构上的承载结构。 在本发明的优选实施例中,在篮子侧壁中设置开口或口袋以容纳振动器的内端突出到篮子侧壁中或甚至穿过篮子侧壁。 在前一种情况下,从振动器的内端进入和取出盖子,并且在后一种情况下从篮子的外部进行。 篮侧壁加强结构优选地包括Y形轭,其安装板固定在Y连接点附近。 筐的横向加强件的端部固定在Y形轭的末端。 因此,篮子侧壁结构的适度加强以适应振动器从篮子侧壁的减小的位移导致分离器篮的总体结构要求的显着降低。
    • 6. 发明授权
    • Nonuniform forward elliptical motion end feed separator
    • 非均匀前向椭圆运动末端进料分离器
    • US5683580A
    • 1997-11-04
    • US656397
    • 1996-05-31
    • Grant A. Young
    • Grant A. Young
    • B01D33/03B07B1/28B07B1/42B01D33/00B01D35/20B07B1/36
    • B07B1/284B01D33/0346B07B1/42
    • A vibratory deck of an end feed separator transfers material in a linear direction from the feed end to the discharge end of a screen mounted on the separator frame. A pair of rotary eccentric vibrators is independently mounted in mirror relationship on opposite sides of the frame. The eccentric vibrator shafts are centered on axes at an alpha angle to the direction of horizontal motion of the material, canted at an epsilon angle from the alpha angle and tilted about the epsilon angle from the vertical in a plane normal to the epsilon axes at opposite beta angles. The centers of the eccentric vibrator shafts are offset from the center of vibratory mass of the frame by a rho distance. The alpha, epsilon, beta and rho factors are coordinated so that the aspect ratios of the elliptical patterns of motion from the feed to the discharge ends of the screen sequentially increase or decrease. Alternatively, these factors can be coordinated so that the major axis angles of the elliptical patterns of motion from the feed to the discharge end of the screen sequentially increase or decrease in a range of from greater than 0 degrees to less than 90 degrees. In either alternative, the upper side of all of the elliptical patterns have directions of rotation extending upwardly and forwardly from the feed end toward the discharge end of the screen so that forward conveyance occurs at all points along the screen. Moreover, both alternatives can be simultaneously achieved.
    • 末端进料分离器的振动台板将材料从安装在分离器框架上的筛网的进料端向排出端的直线方向转移。 一对旋转偏心振动器以镜面关系独立地安装在框架的两侧。 偏心振子轴以相对于材料的水平运动方向为α角的轴为中心,以与α角成ε角倾斜并围绕垂直于垂直于ε轴的平面的ε角倾斜 β角。 偏心振动轴的中心距离框架振动质量的中心偏移了一个距离。 协调α,ε,β和rho因子,使得从进料到排出端的运动的椭圆形图案的纵横比依次增加或减小。 或者,可以协调这些因素,使得从进给到屏幕的排出端的运动的椭圆形图案的主轴角度在大于0度至小于90度的范围内依次增加或减小。 在任一替代方案中,所有椭圆形图案的上侧具有从进给端向屏幕的排出端向上和向前延伸的旋转方向,从而沿着屏幕的所有点向前传送。 此外,可以同时实现两种替代方案。
    • 7. 发明授权
    • Hydrocyclone separation system
    • 水力旋流分离系统
    • US4927536A
    • 1990-05-22
    • US326351
    • 1989-03-21
    • J. Robert WorrellWilliam D. WakleyGrant A. Young
    • J. Robert WorrellWilliam D. WakleyGrant A. Young
    • B01D17/02B01D17/038B04C5/26
    • B01D17/0217B04C5/26
    • A hydrocyclone separation system is disclosed for separating a fluid mixture into at least two separate density components and for precluding remixing of semi-separated higher density components. A first and second hydrocyclone separators each has a central overflow outlet, a tangential fluid inlet, and a central overflow outlet. The first and second hydrocyclone separators are oppositely disposed such that a curved flow direction conduit extends from the underflow outlet of the first hydrocyclone separator to the tangential fluid inlet of the second hydrocyclone separator. Thereby, rotating fluid exiting the underflow of the first hydrocyclone separator is tangentially passed into the inlet of the second hydrocyclone separator precluding remixing of semi-separated higher density components and increasing the overall separation efficiency of the system.
    • 公开了一种用于将流体混合物分离成至少两个分开的密度组分并用于排除半分离的较高密度组分的再混合的水力旋流分离系统。 第一和第二水力旋流分离器各自具有中央溢流出口,切向流体入口和中央溢流出口。 第一和第二水力旋流分离器相对地设置成使得弯曲的流动方向导管从第一水力旋流分离器的底流出口延伸到第二水力旋流分离器的切向流体入口。 因此,离开第一水力旋流分离器底流的旋转流体切向地进入第二水力旋流分离器的入口,排除了半分离的较高密度组分的再混合,并提高了系统的整体分离效率。
    • 10. 发明授权
    • System for preventing oil droplet size reduction
    • 防止油滴尺寸减小的系统
    • US4948517A
    • 1990-08-14
    • US326350
    • 1989-03-21
    • Grant A. YoungWilliam D. Wakley
    • Grant A. YoungWilliam D. Wakley
    • B01D17/02B01D17/025B01D17/038B04C5/26B04C9/00B04C11/00
    • B04C11/00B01D17/02B01D17/0214B04C5/26B04C9/00
    • A system is disclosed for preventing oil droplet size reduction when introducing an oil/water stream into an oil-from-water separation unit. The system includes a conduit extending from a source of the oil/water stream to an inlet of the oil-from-water separation unit, which can be one or more hydrocyclone separators, centrifuges, settling tanks and the like. A throttling device is operatively connected to the conduit for regulating the quantity of the oil/water stream passing therethrough. The throttling device eliminates the shearing of the fluid, thereby preventing oil droplet size reduction. The throttling device can include a progressive cavity motor with a rotation control mechanism connected to the rotor of the motor to control the rpm of the rotor, and thus the quantity and pressure of the fluid passing therethrough.
    • 公开了一种用于在将油/水流引入到油水分离单元中时防止油滴尺寸减小的系统。 该系统包括从油/水流的源延伸到油水分离单元的入口的管道,其可以是一个或多个水力旋流分离器,离心机,沉降池等。 节流装置可操作地连接到导管,用于调节通过其中的油/水流量。 节流装置消除了流体的剪切,从而防止油滴尺寸减小。 节流装置可以包括具有连接到电动机的转子的旋转控制机构的渐进式电机,以控制转子的转速,并因此控制流过其中的流体的数量和压力。