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    • 2. 发明授权
    • Apparatus for manufacturing containers with thickened flanges
    • 用于制造具有加厚法兰的容器的装置
    • US5253996A
    • 1993-10-19
    • US792930
    • 1991-11-15
    • Richard L. Moore
    • Richard L. Moore
    • B29C49/04B29C49/48B29C49/54B29C53/34B29C57/12B29C49/20
    • B29C49/54B29C49/4802B29C57/12B29C2049/4807B29C2049/4812B29C2049/546B29C49/04B29C53/34
    • An apparatus for producing blow-molded containers having thickened flanges. The apparatus utilizes major mold halves and a plurality of minor mold components disposed within the mold halves to form containers having thickened flanges. The minor mold components allows formation of flanges which are turned down relative to the longitudinal axis of the container. By allowing the mold halves to remain substantially still during the blow-molding process, the tab of material formed at the junction of the mold halves opposite to the feed end of the blow-molding chamber is preserved, thereby facilitating post-processing handling of the container. The thickened flange is formed by pressing together and fusing two layers of blow-molded material. The two layers of the thickened flange may enclose void space, thereby reducing the weight and manufacturing cost of the containers.
    • 一种用于生产具有加厚凸缘的吹塑容器的设备。 该设备利用主要半模和设置在半模内的多个次要模具部件来形成具有加厚凸缘的容器。 次要模具部件允许形成相对于容器的纵向轴线向下转动的凸缘。 通过在吹塑过程中允许半模保持基本上静止,形成在模具半部的与吹塑室的进料端相对的接合处的材料的突片被保留,从而便于后处理 容器。 加厚的法兰通过压在一起并熔化两层吹塑材料而形成。 增厚法兰的两层可以封闭空隙,从而减小容器的重量和制造成本。
    • 3. 发明授权
    • Apparatus for dispensing containers
    • 用于分配容器的装置
    • US5024048A
    • 1991-06-18
    • US538907
    • 1990-06-15
    • Richard L. Moore
    • Richard L. Moore
    • B65B5/10B65B43/44
    • B65B5/101B65B43/44
    • An apparatus for dispensing individual containers, for example flower pots, from a nested stack of containers. The apparatus may be used to dispense rows of individual containers into a larger container, for example, a tray. The apparatus includes a first extendable arm for holding the stack of containers in an elevated position within a hollow column adapted to hold the stack of containers vertical, a second extendable arm for wedging the stack of containers, with the exception of the bottom container in the stack, against the side of the column and a third extendable arm for contacting the bottom container in the stack, thereby causing the bottom container to separate from the stack and fall into the tray. The apparatus also includes a wedge disposed within the column, opposite to the second extendable arm for facilitating the exposure of the lip of the bottom container. The wedge does not extend all of the way to the bottom of the column, and therefore, when the second extendable arm pushes the stack of containers laterally against the wedge, the bottom container does not contact the wedge, but rather extends towards the third extendable arm further than the other containers.
    • 用于从嵌套的容器堆中分配单个容器(例如花盆)的装置。 该装置可以用于将单个容器的行分配到更大的容器中,例如托盘中。 该装置包括第一可延伸臂,用于将堆叠的容器保持在适于保持容器堆叠的中空塔内的升高位置,第二可伸缩臂用于楔住堆叠的容器,但底部容器在 堆叠在柱的侧面,第三可伸展臂用于接触堆叠中的底部容器,从而使底部容器与堆叠分离并落入托盘中。 设备还包括设置在柱内的与第二可延伸臂相对的楔形件,以便于底部容器的唇缘的暴露。 楔形件不会一直延伸到塔的底部,因此当第二可伸臂将横向堆叠的容器堆叠推向楔形物时,底部容器不接触楔形件,而是朝向第三可伸展臂 手臂比其他容器更远。
    • 4. 发明授权
    • Dryer densifier
    • 干燥机增稠器
    • US5465503A
    • 1995-11-14
    • US89626
    • 1993-07-12
    • Ira O. L. Oates
    • Ira O. L. Oates
    • F26B17/20F26B11/12
    • F26B17/20
    • A dryer densifier includes a hopper for receiving wet, dry and/or flaky thermoplastic waste material. The hopper feeds an auger barrel which is heated and insulated whereby material passing therethrough may be dried and fused together with other material. The auger barrel and screw are configured to leave sufficient space therebetween whereby heated vapors may pass along the length of the auger and exit to the atmosphere at the discharge end, and whereby the heated vapor may be collected by a vapor collecting hood. The material is discharged from the auger onto a shaker screen table where the fused and unfused materials are separated by the vibrating screen conveyor of the table. The unfused material is returned to the receiving hopper for further densification and the fused material is conveyed to a granulator, whereupon the dried and densified material is granulated.
    • 干燥机加密器包括用于接收湿,干和/或片状热塑性废料的料斗。 料斗供给加热和绝缘的螺旋钻筒,由此通过其中的材料可以被干燥并与其它材料熔合在一起。 螺旋钻筒和螺杆被构造成在其间留有足够的空间,由此加热的蒸汽可以沿着螺旋推运器的长度通过并在排出端处排出到大气,并且由此可以通过蒸气收集罩收集加热的蒸汽。 材料从螺旋钻被排放到振动筛筛台上,其中熔融和未熔化的材料由工作台的振动筛输送机分离。 将未熔化的材料返回到接收料斗以进一步致密化,并将熔融材料输送到造粒机,然后将干燥和致密的材料造粒。
    • 6. 发明授权
    • Process for manufacturing containers with thickened flanges
    • 制造具有加厚法兰的容器的方法
    • US5227114A
    • 1993-07-13
    • US914543
    • 1992-07-16
    • Richard L. Moore
    • Richard L. Moore
    • B29C49/04B29C49/48
    • B29C49/4802B29C2049/4807B29C2049/4812B29C49/04
    • A process for producing blow-molded containers having thickened flanges. The process utilizes movable mold halves having separable side and end components and a stationary central mold element disposed between the movable mold halves to form containers having thickened radial flanges. The movable mold halves and stationary central mold elements together enclose a mold chamber. After the parison of thermoplastic material has been blow-molded to conform to the mold chamber but while the material is still moldable, the movable mold halves simultaneously move together along the axis of the mold chamber to press the material against the stationary central mold element and thereby fold and bond the material onto itself, forming a thickened radial flange on each container. The flanges are each substantially twice as thick as a single layer of blow-molded material. The thickened flanges may also be formed to each include a thickened axial lip of material extending down from the respective radial flanges. After the thermoplastic material has cooled sufficiently to retain its shape, the side components of the mold halves are axially moved apart so that the mold chamber can be opened along its longitudinal axis without damaging the thickened radial flanges or axial lips. By keeping the end components of the mold halves substantially still during the retraction of the side components of the mold halves, the tail of material formed at the junction of the halves of the molding apparatus opposite to the feed end of the blow-molding chamber is preserved, thereby facilitating post-processing handling of the containers.
    • 一种用于生产具有加厚凸缘的吹塑容器的方法。 该方法利用具有可分离侧面和端部部件的可移动半模以及设置在可移动半模之间的固定中心模具元件,以形成具有增厚的径向凸缘的容器。 可移动半模和固定中心模具元件一起封闭模具室。 在热塑性材料的型坯已经被吹塑成型以符合模具室之后,但是当材料仍然可模制时,可移动半模同时沿着模具室的轴线移动,以将材料压靠在固定的中心模具元件上, 从而将材料折叠并粘合到其自身上,在每个容器上形成增厚的径向凸缘。 凸缘的厚度基本上是单层吹塑材料的两倍。 加厚的凸缘也可以形成为各自包括从相应的径向凸缘向下延伸的材料的增厚的轴向唇缘。 在热塑性材料已经充分冷却以保持其形状之后,半模的侧面部件被轴向地移动分开,使得模具室可以沿其纵向轴线打开,而不损坏加厚的径向凸缘或轴向唇缘。 通过在半模的侧面部件的缩回期间保持半模的端部部分基本上保持不变,形成在模制设备的与吹塑室的进料端相对的两半的接合处的材料的尾部是 保存,从而便于后处理处理容器。
    • 8. 发明授权
    • Method and apparatus for controlling root growth
    • 控制根生长的方法和装置
    • US6038813A
    • 2000-03-21
    • US803084
    • 1997-02-20
    • Richard L. MooreMichael G. RobsonWarren E. Lockeby, Jr.Billy E. Kaylor
    • Richard L. MooreMichael G. RobsonWarren E. Lockeby, Jr.Billy E. Kaylor
    • A01G9/10A01G23/04
    • A01G9/10Y10S47/901
    • A first outer container is formed with a side wall and a bottom wall. The bottom of the first container has a support structure or raised area to define a water reservoir in the bottom of the container. An overflow drain is provided in the container and preferably in the raised area to limit the depth of the water reservoir. A second inner container including a drain hole and having a live plant is placed in the first container at or above the water level in the first container. The water in the first container has a depth to inhibit excessive root growth from the drain hole of the second container. Roots which grow through the drain of the second inner container contact the standing water in the reservoir and die and rot at the point where the roots contact the water to limit growth in the first container. The water in the first container is particularly effective in controlling root growth from the inner container through the drain holes in the first outer container.
    • 第一外容器形成有侧壁和底壁。 第一容器的底部具有支撑结构或凸起区域,以在容器底部限定一个储水器。 在容器中优选地在升高的区域中设置溢流排水口以限制储水器的深度。 包括排水孔并具有活植物的第二内容器在第一容器中的水位处或上方放置在第一容器中。 第一容器中的水具有抑制从第二容器的排水孔过度生根的深度。 通过第二内部容器的排水沟生长的根接触储存器中的直立水,并在根接触水的位置处死亡并腐烂,以限制第一容器中的生长。 第一容器中的水特别有效地控制从内容器通过第一外容器中的排放孔的根生长。
    • 9. 发明授权
    • Molded article
    • 成型品
    • US5954223A
    • 1999-09-21
    • US962714
    • 1997-11-03
    • Richard L. Moore
    • Richard L. Moore
    • B65D1/46B65D25/22B65D41/00
    • B65D25/22B65D1/46
    • An article, such as a container, includes a bottom wall, a sidewall and rim around a top end to strengthen the sidewall and to provide a handle for lifting the article. The rim includes a first lip extending radially outward with respect to the container to provide strength and rigidity to the rim and sidewall. The first lip is formed by two substantially parallel layers of material that can be spaced apart or bonded together. A second flexible lip extends radially from the rim and is axially spaced from the first lip. The second lip forms a continuous open channel enabling the second lip to be gripped from the inside of the article. The second lip has a radial dimension greater than the first lip to limit contact of the first lip with an adjacent object. An article is made by a blow molding process and apparatus having moving segment molds. A thermoplastic parison is inflated to contact the mold surfaces. The moving mold segments then compress a portion of the plastic to form the first lip.
    • 诸如容器的物品包括围绕顶端的底壁,侧壁和边缘,以加强侧壁并提供用于提起物品的手柄。 边缘包括相对于容器径向向外延伸的第一唇缘,以向边缘和侧壁提供强度和刚性。 第一个唇缘由两个基本平行的材料层形成,可以间隔开或粘合在一起。 第二柔性唇缘从边缘径向延伸并且与第一唇缘轴向间隔开。 第二个唇形成一个连续的开放通道,使得第二个唇可以从制品的内部夹紧。 第二唇缘具有大于第一唇缘的径向尺寸,以限制第一唇缘与相邻物体的接触。 通过吹塑工艺和具有移动段模具的设备制造制品。 将热塑性型坯膨胀以与模具表面接触。 移动的模具段然后压缩塑料的一部分以形成第一唇缘。
    • 10. 发明授权
    • Apparatus for manufacturing containers with thickened flanges
    • 用于制造具有加厚法兰的容器的装置
    • US5282736A
    • 1994-02-01
    • US27636
    • 1993-03-08
    • Richard L. Moore
    • Richard L. Moore
    • B29C49/04B29C49/48B29C49/20
    • B29C49/4802B29C2049/4807B29C2049/4812B29C49/04
    • An apparatus for producing blow-molded containers having thickened flanges. The apparatus utilizes movable mold halves having separable side and end components and a stationary central mold element disposed between the movable mold halves to form containers having thickened radial flanges. The movable mold halves and stationary central mold elements together enclose a mold chamber. After the parison of thermoplastic material has been blow-molded to conform to the mold chamber but while the material is still moldable, the movable mold halves simultaneously move together along the axis of the mold chamber to press the material against the stationary central mold element and thereby fold and bond the material onto itself, forming a thickened radial flange on each container. The flanges are each substantially twice as thick as a single layer of blow-molded material. The thickened flanges may also be formed to each include a thickened axial lip of material extending down from the respective radial flanges. After the thermoplastic material has cooled sufficiently to retain its shape, the side components of the mold halves are axially moved apart so that the mold chamber can be opened along its longitudinal axis without damaging the thickened radial flanges or axial lips. By keeping the end components of the mold halves substantially still during the retraction of the side components of the mold halves, the tail of material formed at the junction of the halves of the molding apparatus opposite to the feed end of the blow-molding chamber is preserved, thereby facilitating post-processing handling of the containers.
    • 一种用于生产具有加厚凸缘的吹塑容器的设备。 该装置利用具有可分离侧面和端部部件的可移动半模以及设置在可移动半模之间的固定中心模具元件,以形成具有增厚的径向凸缘的容器。 可移动半模和固定中心模具元件一起封闭模具室。 在热塑性材料的型坯已经被吹塑成型以符合模具室之后,但是当材料仍然可模制时,可移动半模同时沿着模具室的轴线移动,以将材料压靠在固定的中心模具元件上, 从而将材料折叠并粘合到其自身上,在每个容器上形成增厚的径向凸缘。 凸缘的厚度基本上是单层吹塑材料的两倍。 加厚的凸缘也可以形成为各自包括从相应的径向凸缘向下延伸的材料的增厚的轴向唇缘。 在热塑性材料已经充分冷却以保持其形状之后,半模的侧面部件被轴向地移动分开,使得模具室可以沿其纵向轴线打开,而不损坏加厚的径向凸缘或轴向唇缘。 通过在半模的侧面部件的缩回期间保持半模的端部部分基本上保持不变,形成在模制设备的与吹塑室的进料端相对的两半的接合处的材料的尾部是 保存,从而便于后处理处理容器。