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    • 5. 发明申请
    • Insulated and Refrigerated Beverage Transport Line
    • 绝缘和制冷饮料运输线
    • US20080264093A1
    • 2008-10-30
    • US11741586
    • 2007-04-27
    • Kevin Winters
    • Kevin Winters
    • B67D5/62
    • B67D1/0867B67D1/04
    • An insulated and refrigerated beverage transport line provides enhanced temperature control of one or more beverages conveyed through the transport line. A plurality of coolant lines carrying a re-circulated coolant makes contact with the one or more product lines. One or more empty lines, referred to as packers, may be placed between the coolant lines and the product lines to provide a dimensionally stable and tight group of lines that are bundled together. An external insulation is provided over the bundle of lines to further enhance insulation for the beverage being transported through the product lines. At least one dedicated coolant return line may be placed remote from the other lines. The dedicated coolant return line carries the highest temperature coolant found in a beverage transport system. Independent and separate insulation of this dedicated coolant return line prevents inadvertent heat transfer to the one or more product lines.
    • 绝缘和冷藏的饮料输送线路提供通过输送线路输送的一种或多种饮料的增强的温度控制。 携带再循环冷却剂的多个冷却剂管线与一个或多个产品线接触。 称为封隔器的一个或多个空线可以放置在冷却剂管线和产品管线之间,以提供捆绑在一起的尺寸稳定且紧密的管线组。 在管束上提供外部绝缘,以进一步增强通过产品线输送的饮料的绝缘。 至少一个专用冷却剂返回管线可以远离其它管线放置。 专用的冷却液回流管路携带饮料输送系统中最高温度的冷却剂。 专用冷却液回流管路独立和分离的绝缘可以防止意外的热传递到一个或多个产品线。
    • 6. 发明授权
    • Method for inspecting translucent objects using imaging techniques
    • 使用成像技术检查半透明物体的方法
    • US6049379A
    • 2000-04-11
    • US808
    • 1997-12-30
    • Philip J. Lucas
    • Philip J. Lucas
    • G01N21/90G01N21/00C03B9/00
    • G01N21/9054G01N21/9036G01N2021/9063
    • A method is disclosed for detecting flaws in translucent objects. An image generating device is used to form an image of the object. A target area and a control area of the image are then compared to determine the relative brightness of each. If the relative brightness is not within an acceptable range, then this indicates that a defect exists in the target area and the object may be rejected. The acceptable range may be determined by performing the above method on an object known to be non-defective, thus producing a relative brightness between the target and control areas which is indicative of a non-defective condition. Also disclosed is a method for detecting flaws in translucent objects in which two images of the object are obtained from differing perspectives. The two images are then compared pixel by pixel to determine if any variation in image brightness exists between the two images.
    • 公开了一种用于检测半透明物体中的缺陷的方法。 图像生成装置用于形成对象的图像。 然后比较图像的目标区域和控制区域以确定每个的相对亮度。 如果相对亮度不在可接受范围内,则表示目标区域存在缺陷,物体可能被拒绝。 可以通过对已知无缺陷的物体执行上述方法来确定可接受的范围,从而产生指示无缺陷状况的目标和控制区域之间的相对亮度。 还公开了一种用于检测半透明物体中的缺陷的方法,其中从不同的角度获得物体的两个图像。 然后将这两个图像逐个比较,以确定两个图像之间是否存在图像亮度的任何变化。
    • 9. 发明授权
    • Multi-function self-cleaning fluid treatment system and method for using
the same
    • 多功能自清洁液处理系统及其使用方法
    • US5670043A
    • 1997-09-23
    • US649183
    • 1996-05-17
    • Sun Y. Lee
    • Sun Y. Lee
    • B01D29/11B01D29/33B01D29/92B01D33/067B01F3/04B01F7/00B01F7/28B01D33/073
    • B01F7/285B01D33/067B01F3/04539B01D2201/287B01D29/111B01D29/33B01D29/925B01F7/00508
    • A multi-function fluid treatment system which can filter fluids or diffuse gases into liquids. To achieve filtration, the system includes a housing with multiple filter cartridges therein. The cartridges are connected to a drive system which rotates them in unison. Fluids to be filtered enter the housing and surround the cartridges. Cartridge rotation scrubs solids from the cartridges and promotes fluid flow therein. A separate cleaning system is also provided which involves a cartridge wiping assembly having multiple wiping members thereon. The wiping members directly contact the cartridges to remove collected debris and preferably involve multiple bristles secured to a vertical support member. The support member may consist of dual wires secured together with the bristles therebetween. The bristles can also be arranged in elongate rows (one row per cartridge) on the support member. In either embodiment, the wiping assembly improves filtration efficiency and reduces maintenance requirements.
    • 多功能流体处理系统,可以将流体或扩散气体过滤到液体中。 为了实现过滤,该系统包括其中具有多个过滤器滤芯的壳体。 墨盒连接到驱动系统,使其一致旋转。 要过滤的流体进入外壳并围绕墨盒。 墨盒旋转从墨盒中清洗固体并促进其中的流体流动。 还提供了一种单独的清洁系统,其包括在其上具有多个擦拭构件的墨盒擦拭组件。 擦拭构件直接接触墨盒以除去收集的碎屑,并且优选地涉及固定到垂直支撑构件的多个刷毛。 支撑构件可以由其间的刷毛固定在一起的双线组成。 刷毛也可以在支撑构件上布置成细长的行(每个墨盒一行)。 在任一实施例中,擦拭组件提高了过滤效率并降低了维护要求。
    • 10. 发明授权
    • High efficiency liquid filtration system and method for using the same
    • 高效液体过滤系统及其使用方法
    • US5387339A
    • 1995-02-07
    • US168954
    • 1993-12-17
    • Sun Y. LeeEdward R. Lappin
    • Sun Y. LeeEdward R. Lappin
    • B01D29/11B01D29/33B01D29/92B01D33/067B01F3/04B01F7/00B01F7/28B01D33/073
    • B01F7/285B01D33/067B01F3/04539B01D2201/287B01D29/111B01D29/33B01D29/925B01F7/00508
    • A high efficiency, self-cleaning system for separating solid materials from liquids. The system includes a primary housing having at least one inlet and a plurality of cylindrical filter cartridges therein which are directly adjacent to and in close proximity with each other. The lower end of each cartridge is positioned on a spring-biased bearing member, with the upper end having an opening therein. Positioned within the opening and connected to each cartridge is a tubular shaft attached to a pulley-type motor drive system. The drive system is used to rotate the cartridges in a selected direction. In operation, fluids to be filtered enter the housing and come in direct contact with the rotating cartridges. Rotation of the multiple cartridges and close proximity of the cartridges to each other creates fluid turbulence within the housing. This turbulence scrubs collected solids from the cartridges and promotes fluid flow into the cartridges. Fluids collected within the cartridges pass into the tubular shafts and out of the system. As a result, the fluids are effectively filtered in a rapid and efficient manner while minimizing system down-time.
    • 用于将固体材料与液体分离的高效自清洁系统。 该系统包括主壳体,其中具有至少一个入口和多个圆柱形过滤器滤芯,它们彼此直接相邻并且彼此靠近。 每个盒的下端位于弹簧偏置的轴承构件上,上端在其中具有开口。 位于开口内并连接到每个筒的是连接到滑轮式电动机驱动系统的管状轴。 驱动系统用于沿所选方向旋转墨盒。 在操作中,待过滤的流体进入壳体并与旋转的墨盒直接接触。 多个墨盒的旋转和墨盒彼此靠近,从而在外壳内产生流体湍流。 这种湍流从墨盒中清除收集的固体,并促进流体进入墨盒。 在墨盒内收集的流体进入管状轴并离开系统。 结果,在最小化系统停机的同时,以快速有效的方式有效地过滤流体。