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    • 1. 发明授权
    • Intermitten motion bayonet handle attachment apparatus and process
    • INTERMITTEN运动BAYONET手柄附件装置和工艺
    • US5222931A
    • 1993-06-29
    • US682548
    • 1991-04-09
    • John T. RobertsClaude E. MonseesLarry J. MattsonRalph S. GoldsteinRonald H. WanlessRonald O. Simpson
    • John T. RobertsClaude E. MonseesLarry J. MattsonRalph S. GoldsteinRonald H. WanlessRonald O. Simpson
    • B65D5/46
    • B65D5/46024Y10S493/909Y10S493/926
    • An apparatus and process for the attachment of a bayonet handle having a barb head defining each end thereof to a carton blank. The apparatus comprises releasable clamping means for horizontally gripping the handles. Below the clamping means are support means for flatly maintaining carton blanks. A pair of blades, situated juxtaposed opposite sides of the clamping means, are retractable between an upward retracted position and a downward extended position near the support means. The clamping means are movable between an upper handle receiving position and a lower position near the support means by descending means.The process comprises first providing a bayonet handle. The handle is next bent in two places so that the barb heads are perpendicular to an interior section of the handle and are projecting toward respective apertures in the carton blank. Then, the handle is moved such that the barb heads are inserted into the respective apertures. Thus, barbs on the barb heads are engaged and the handle is attached to the blank.
    • 一种用于连接卡口把手的装置和方法,其具有将每个端部限定在纸箱上的倒钩头。 该装置包括用于水平夹持把手的可释放夹紧装置。 在夹紧装置下方是用于平坦地保持纸板坯的支撑装置。 位于夹持装置的相对侧的并列的一对叶片可在靠近支撑装置的向上缩回位置和向下延伸位置之间缩回。 夹紧装置可通过下降装置在上手柄接收位置和靠近支撑装置的较低位置之间移动。 该过程包括首先提供卡口手柄。 手柄接下来在两个位置弯曲,使得倒钩头垂直于手柄的内部部分并且朝向纸板箱中的相应孔突出。 然后,手柄被移动,使得倒钩头插入相应的孔中。 因此,倒钩头上的倒钩接合并且手柄附接到坯件。
    • 2. 发明授权
    • Continuous motion package assembling apparatus
    • 连续运动包装组装装置
    • US5095683A
    • 1992-03-17
    • US670723
    • 1991-03-18
    • John T. RobertsClaude E. MonseesLarry J. MattsonRalph S. GoldsteinRonald H. WanlessRonald O. Simpson
    • John T. RobertsClaude E. MonseesLarry J. MattsonRalph S. GoldsteinRonald H. WanlessRonald O. Simpson
    • B65D5/46
    • B65D5/46024B65B61/14Y10S493/909
    • An apparatus and process for the assembly of a bayonet handle package are provided. The apparatus comprises at least one handle gripping and insertion wheel mounted on a horizontal rotatable shaft and further comprises means for driving the shaft. The wheel carries a plurality of evenly-spaced, circumferentially mounted handle clamping and insertion assemblages. The assemblages operate cyclically--that is, depending upon the assemblage position in the 360 degree rotational cycle of the wheel--to grip, bend and release the handles.The process of the invention contemplates first providing an apparatus as described. Second, the wheel begins continuous rotation to effectuate the cyclical operation of the gripping and bending assemblages. A handle is then positioned at a first location near the wheel where it is gripped by one of the rotating assemblages. The further rotation of the wheel operates the rotating assemblage to bend the handle such that the barb heads are inserted into handle insertion apertures formed in an appropriately placed carton blank. Attachment of the handle to the carton blank is thereby accomplished, facilitating package assembly.
    • 提供了一种用于组装卡口手柄包装件的装置和方法。 该装置包括安装在水平旋转轴上的至少一个手柄夹持和插入轮,并且还包括用于驱动轴的装置。 轮子承载多个均匀间隔的周向安装的手柄夹紧和插入组合。 组合件周期性地操作,即根据轮子夹持的360度旋转周期中的组合位置,弯曲和释放手柄。 本发明的方法设想首先提供如上所述的装置。 第二,车轮开始连续旋转以实现夹紧和弯曲组合的循环操作。 然后将手柄定位在靠近轮的第一位置处,其中一个旋转组合被夹持。 轮的进一步旋转操作旋转组合件以弯曲手柄,使得倒钩头插入形成在适当放置的纸板箱中的手柄插入孔中。 从而实现把手到纸箱坯件的附接,便于包装组装。
    • 3. 发明授权
    • Method and apparatus for compacting and winding flat stock
    • 用于压扁和卷绕扁平坯料的方法和装置
    • US5775059A
    • 1998-07-07
    • US785982
    • 1997-01-21
    • Marshall B. HamptonLarry J. MattsonRonald O. Simpson
    • Marshall B. HamptonLarry J. MattsonRonald O. Simpson
    • B65B63/02B29C43/14B65B61/20B65B63/04B65H45/20
    • B65B63/04B65B61/20B29C43/00B29C43/14
    • A method of compacting a bill from a flat state into a pleated and wound state for position the bill in a cavity of an associated closure includes providing a bill in a substantially flat state and pleating the bill in a first direction to provide a series of substantially similar pleats. The pleated bill is compacted to set the pleats therein and at least partially wound into a generally circular configuration. The wound bill is positioned within the cavity of the associated closure. An apparatus for compacting and winding the bill and positioning the bill in the closure cavity includes a pleating station for pleating the bill in a predetermined configuration and a compacting station for compacting the pleated bill into a compacted state. The apparatus further includes a winding station having a winding member adapted to engage the compacted bill and to wind the bill into a generally circular orientation. A discharge region is adapted to move the wound bill from the winding station and to position the bill in the closure cavity.
    • 将纸币从扁平状态压缩成打褶和卷绕状态以将纸币定位在相关封闭件的空腔中的方法包括提供基本上平坦的状态的纸币并且在第一方向上打褶纸币以提供一系列基本上 相似的褶皱。 折叠的纸币被压实以将褶皱设置在其中并且至少部分地卷绕成大致圆形的构造。 卷绕的纸币位于相关封闭件的腔内。 用于压紧和卷绕纸币并将纸币定位在封闭腔中的装置包括用于将预定构造的纸币打褶的打褶工位和用于将打褶纸条压实成压实状态的压实工位。 该设备还包括卷绕站,其具有适于接合压实的纸币并将纸币卷绕成大致圆形取向的卷绕构件。 放电区域适于将卷绕的纸币从卷绕台移动并将纸币定位在封闭空腔中。
    • 4. 发明授权
    • Apparatus for determining hemoglobin and white blood cell count in blood
    • 用于测定血液中血红蛋白和白细胞计数的装置
    • US4303337A
    • 1981-12-01
    • US23958
    • 1979-03-26
    • Bobby D. JamesRonald O. SimpsonJ. David Starling
    • Bobby D. JamesRonald O. SimpsonJ. David Starling
    • G01N15/12G01N21/85G01N21/01G01N27/04
    • G01N21/85G01N15/12
    • A single instrument for photometrically determining hemoglobin content and electronically determining white blood cell count of a single sample suspension of blood. The instrument is provided with a calibration mode of operation independent of the run or normal operational mode of the instrument.A vacuum system is described where vacuum is generated during the operating cycle only at periods when vacuum is required with an adjustable volume vacuum chamber interposed in the vacuum system to assure proper vacuum levels.Carryover of one liquid to a next introduced second liquid in the test vessel is reduced by successive draining of said second liquid and reintroduction into said vessel of a replacement amount of said second liquid. The second liquid can be a sample of rinse liquid.An hydraulic system is described as operating in conjunction with the pneumatic or vacuum system. The hydraulic system employs additional plural solenoid operated devices, each to perform a specific operational function during the operational cycle of the instrument.
    • 用于光度测定血红蛋白含量的单一仪器,并以电子方式确定血液的单个样品悬浮液的白细胞计数。 该仪器具有独立于仪器运行或正常工作模式的校准操作模式。 描述了真空系统,其中仅在需要真空的时间期间在操作循环期间产生真空,并且在真空系统中插入可调节体积的真空室以确保适当的真空度。 通过连续排出所述第二液体并将所述第二液体的更换量重新引入所述容器来减少在测试容器中一个液体向下一个引入的第二液体的残留。 第二液体可以是漂洗液的样品。 液压系统被描述为与气动或真空系统一起操作。 液压系统采用额外的多个电磁操作装置,每个装置在仪器的操作循环期间执行特定的操作功能。
    • 5. 发明授权
    • Fiber optic stitching process and apparatus
    • 光纤拼接工艺及装置
    • US6021244A
    • 2000-02-01
    • US951716
    • 1997-10-16
    • Ronald O. Simpson
    • Ronald O. Simpson
    • G02B6/25G02B6/36G02B6/04
    • G02B6/3612G02B6/25G02B6/3644Y10S359/90
    • An apparatus for assembling fiber optic strands into sign components comprising a dispenser in continuous communication with a supply of fiber optic strand; a first positioner for moving the dispenser to a dispensing position adapted to be opposite a receiving aperture of a housing; engaging means in communication with the fiber optic strand for inserting a first end of the fiber optic strand through the dispenser and into one of the preselected housing apertures; a cutting apparatus for cutting the fiber optic strand at a predetermined location, thereby providing a first calculated length of a cut strand having a first end insertable into one of said housing apertures and a second cut end; a manipulator for grasping the second cut end of the cut strand; a second positioner for moving the manipulator to a predetermined position opposite a signage display panel; and an inserter, carried by the manipulator, for directing the second cut end of the cut strand a prescribed depth into the signage display panel.
    • 一种用于将光纤线束组装成符号部件的装置,包括与光纤链的供应源连续通信的分配器; 第一定位器,用于将分配器移动到适于与壳体的接收孔相对的分配位置; 与所述光纤线连通的接合装置,用于将所述光纤束的第一端插入所述分配器并进入所述预选的壳体孔之一; 切割装置,用于在预定位置切割光纤线,从而提供切割线的第一计算长度,其具有可插入到所述壳体孔中的一个中的第一端和第二切割端; 用于抓取切断股线的第二切割端的操纵器; 第二定位器,用于将所述操纵器移动到与标牌显示面板相对的预定位置; 以及由所述操纵器承载的用于将所述切割线的所述第二切割端指定到所述标牌显示面板中的预定深度的插入器。
    • 7. 发明授权
    • Backwash system for diluting apparatus
    • 反洗系统用于稀释装置
    • US4148859A
    • 1979-04-10
    • US906235
    • 1978-05-15
    • Ronald O. SimpsonPedro P. Cabrera
    • Ronald O. SimpsonPedro P. Cabrera
    • G01N1/38G01N1/14
    • G01N1/38
    • Improvements in a backwash system for diluting apparatus wherein a rinse solution is directed to the fluid transfer valve thereof and thence back to and through the sample pick-up probe to a receptacle and then to a waste depositary. The receptacle is mounted on a carrier, in turn mounted for movement in a track from a recessed condition, along a path directed first outward and then upward to engage the delivery end of the sample probe in a fluid tight sealed coupling. A plunger of an air cylinder effects the movement of the receptacle in the track. A vacuum operated switch is employed to assure that the rinse solution will not be dispensed as backwash unless the sealed coupling is made. Alternatively, a microswitch can be substituted for the vacuum operated switch and presented in the path of the carrier to be actuated when the carrier has moved sufficiently to establish the sealed coupling between the receptacle and the delivery end of the sample probe. In either instance, the switch is scanned to ascertain its state and unless actuated, backwash is prevented.
    • 用于稀释装置的反冲洗系统的改进,其中冲洗溶液被引导到其流体转移阀,然后返回并通过样品拾取器探针到容器,然后返回到废物储存器。 容器安装在载体上,然后安装成沿着凹槽状态的轨道移动,沿着首先向外指向的路径,然后以流体密封的联接器接合样品探针的输送端。 气缸的柱塞影响容器在轨道中的运动。 使用真空操作开关来确保冲洗溶液不会作为反冲洗分配,除非制成密封连接。 或者,当载体已经充分移动以建立插座和样品探针的输送端之间的密封耦合时,微动开关可以代替真空操作的开关并呈现在待致动载体的路径中。 在任一情况下,扫描开关以确定其状态,除非被启动,否则防止回洗。
    • 8. 发明授权
    • Backwash system for diluting apparatus
    • 反洗系统用于稀释装置
    • US4220621A
    • 1980-09-02
    • US14306
    • 1979-02-23
    • Ronald O. SimpsonPedro P. Cabrera
    • Ronald O. SimpsonPedro P. Cabrera
    • G01N1/38G01N1/14
    • G01N1/38
    • Improvements in a backwash system for diluting apparatus wherein a rinse solution is directed to and through a sample pick-up probe to a receptacle and therefrom to a waste depositary. Either the probe or the receptacle in turn is movable between a first uncoupled condition, along a predetermined or fixed path first to place the receptacle and the delivery end of the sample probe proximate, and second, to establish a fluid tight sealed coupling therebetween. The receptacle includes an entrance recess accommodating an apertured resilient insert which engages the delivery end of the probe to define the sealed coupling. A sensing switch is employed to assure that the rinse solution will not be dispensed as backwash unless the sealed coupling is known to have been established. The sensing switch can be presented in the path of the movable object, the switch being actuated when the movable object has completed its movement to establish the sealed coupling between the receptacle and the delivery end of the sample probe. The switch is scanned to ascertain its state and unless actuated, backwash is prevented.Either both, one or the other of said receptacle and probe are mounted for singular or cooperative combined translatory movement, simultaneously or sequentially.
    • 用于稀释装置的反冲洗系统的改进,其中冲洗溶液被引导并通过样品拾取探针到容器,并从其中到达废物保藏库。 探头或插座依次可以在第一非连接状态之间沿着预定或固定的路径移动,以将接收器和样品探针的输送端放置在靠近处,并且在第二非连接状态之间建立流体密封的耦合。 该容器包括容纳有弹性插入件的入口凹槽,其与探针的输送端接合以限定密封的联接件。 使用感测开关来确保冲洗溶液不会作为反冲洗分配,除非已知建立了密封联接。 感测开关可以呈现在可移动物体的路径中,当可移动物体已经完成其运动以建立容器和样品探测器的输送端之间的密封耦合时,开关被致动。 扫描开关以确定其状态,除非启动,否则防止反洗。 所述插座和探针中的一个或另一个安装成用于单一或协作的组合平移运动,同时或顺序地安装。
    • 9. 发明授权
    • Aperture module for use in particle testing apparatus
    • 孔径模块,用于粒子测试装置
    • US4014611A
    • 1977-03-29
    • US573265
    • 1975-04-30
    • Ronald O. SimpsonThomas J. Godin
    • Ronald O. SimpsonThomas J. Godin
    • G01N15/10G01N15/12G01N21/00G01N27/00
    • G01N15/12G01N15/1245G01N2015/1037
    • An aperture module for obtaining signals from microscopic particles suspended in a fluid which passes through a scanning aperture. A module housing including an aperture holder is mounted on a vessel or bath containing a body of the particulate liquid suspension to be tested. The aperture holder with aperture formed therein extends into the vessel to permit passage of the suspension through the aperture to an outlet chamber or passageway immediately behind the aperture. An inlet chamber or passageway in the module is connected to a source of clean electrolyte and in fluid communication with the outlet passageway. The outlet passageway is connected to a waste collecting container. A vacuum is applied to the collecting container to cause the clean electrolyte to be drawn through the inlet passageway and wash behind the aperture simultaneously with passage of the suspension through the aperture. A restriction in the path of flow of the clean electrolyte immediately behind the aperture causes the flow velocity thereof to increase behind the aperture and ensure that the zone behind the aperture continuously is washed or swept and that particles which have been tested or sensed are carried away from the aperture so that proper signals from the particles in the suspension are obtained.In a modified form of the aperture module a nozzle member is positioned between the bath and the aperture to form a sheath flow of electrolyte surrounding the particulate suspension to carry the suspension directly into and through the aperture into the passageway behind the aperture.
    • 用于从悬浮在通过扫描孔的流体中的微观颗粒获得信号的光圈模块。 包括孔保持器的模块壳体安装在容纳待测试的颗粒状液体悬浮体的容器或浴中。 其中形成有孔的孔保持​​器延伸到容器中,以允许悬架通过孔通过紧邻孔后面的出口室或通道。 模块中的入口室或通道连接到清洁电解质源并与出口通道流体连通。 出口通道连接到废物收集容器。 真空被施加到收集容器,以使洁净的电解质通过入口通道被抽出,同时在悬浮液通过该孔的同时洗涤孔的后面。 清洁电解质在孔后面的流动路径中的限制导致其流速增加到孔的后面,并且确保孔后面的区域被连续地洗涤或扫过,并且被测试或感测的颗粒被带走 从孔中获得来自悬浮液中的颗粒的适当信号。