会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明公开
    • MATERIAL HANDLING
    • 材料处理
    • EP1809088A1
    • 2007-07-25
    • EP05791841.9
    • 2005-10-07
    • Larrington, Richard
    • Larrington, Richard
    • A01D33/10B65G41/00B65G47/19
    • B65G69/16A01D33/10
    • Apparatus for the control of the flow of material through the a flexible guide is in response to the weight of material delivered to the flexible guide, the arrangement being such that the material is constrained/prevented from being discharged from the flexible guide until the weight of the material attains a predetermined amount means being provided for displacing opposed walls of the flexible chute like guide for material to be at a predetermined location thereof with respect to the inlet of the a flexible chute like guide chute towards each other sufficiently to prevent material passing through the chute at said location, there being arrangements for enabling/allowing the said opposed walls at said location to move apart when the amount of material delivered to the inlet of the chute attains a predetermined level.
    • 用于控制通过柔性引导件的材料流动的装置响应于传送到柔性引导件的材料的重量,该布置使得材料被约束/防止从柔性引导件排出,直到重量 材料达到预定量的装置,该装置被设置用于移动柔性滑道状导向件的相对壁,以使材料处于其预定位置,相对于柔性滑道状导向滑道的入口朝向彼此足以防止材料穿过 在所述位置处的滑槽处,当输送到滑槽入口的材料的量达到预定水平时,允许/允许所述位置处的所述相对的壁移动分开。
    • 5. 发明公开
    • Robotic parison handling method and apparatus
    • Verfahren und Vorrichtung zur robotischen Handhabung von Vorformlingen
    • EP1312457A1
    • 2003-05-21
    • EP02257831.4
    • 2002-11-12
    • Wentworth Mold, Inc., Electra Form Industries, Div.
    • Knepper, Carl L.Meiering, David P.
    • B29C45/33B29C45/42B29C45/72
    • B29C45/7207B29C45/332B29C45/4225B29C2045/334B29C2045/336B29C2045/7221B29K2105/253Y10S425/005
    • A release mechanism operating to release molded articles (21) from a third mold portion (18) includes a guide coupled to the second mold portion (12) forming a cam track (42). A cam follower (41) coupled to the surfaces (22a,22b) of the third mold portion, which are holding the molded articles, is engaged in the cam track (42) when the second and third mold portions (12,18) are within a pre-selected distance of each other. The cam follower (41) interacts with the cam track (42) to cause some initial movement of the surfaces holding the molded articles to a pre-release position for the holding surfaces (22a,22b) so that the molded articles are loosely retained by the holding surfaces. A power operator (44), carried by the third mold portion (18) and coupled to the article holding surfaces, is responsive to a signal to move the article holding surfaces from the pre-release position to a full release position when a molded article receiver (22) is suitably positioned to receive the molded articles. The molded article receiver (22) includes receiver tubes (73) for receiving the molded articles. The receiver tubes (73) have an open forward end configured to receive a molded article, a closed rearward end including a surface contact element (82) movably situated with respect to the forward end. The surface contact element (82) is configured to conform to a portion of the surface of the molded article. A vacuum duct (83) couples the closed rearward end to a source of vacuum for assisting in the retention of the molded articles within the receiver tubes (73). An air cylinder is coupled to each surface contact element (82), and a pressure duct couples to each air cylinder to a source of air pressure for controlling the position of the surface contact element (82) with respect to the forward end of the receiving tube.
    • 操作以从第三模具部分(18)释放模制品(21)的释放机构包括联接到形成凸轮轨道(42)的第二模具部分(12)的引导件。 当第二模具部分(13)和第三模具部分(12,18)是第二模具部分(12,18)时,联接到保持模制品的第三模具部分的表面(22a,22b)上的凸轮从动件(41)接合在凸轮轨道 在彼此之间的预选距离内。 凸轮从动件(41)与凸轮轨道(42)相互作用,以使保持模制品的表面的一些初始移动保持在用于保持表面(22a,22b)的预释放位置,使得模制品被松动地保持 保持表面。 由第三模具部分(18)承载并联接到物品保持表面的动力操作器(44)响应于将物品保持表面从预释放位置移动到完全释放位置的信号,当模制品 接收器(22)适当地定位成接收模制品。 模制品接收器(22)包括用于接收模制品的接收管(73)。 接收器管(73)具有构造成接收模制品的敞开的前端,封闭的后端包括相对于前端可移动地定位的表面接触元件(82)。 表面接触元件(82)构造成符合模制品的表面的一部分。 真空管道(83)将封闭的后端连接到真空源,以帮助将模制品保持在接收管(73)内。 气缸联接到每个表面接触元件(82),并且压力管道将每个气缸连接到气压源,以控制表面接触元件(82)相对于接收器的前端的位置 管。
    • 6. 发明公开
    • Apparatus for cryogenic stretch blow molding
    • Vorrichtung zum kryogenischen Streckblasformen
    • EP0916473A2
    • 1999-05-19
    • EP98308820.4
    • 1998-10-28
    • Electra Form, Inc.
    • Das, David C.
    • B29C49/66B29C49/58
    • B29C49/66B29C49/12B29C49/58B29C2035/0211B29C2035/1691B29C2049/1209B29C2049/4294
    • A cryogenic stretch blow molding apparatus (10) including a stretching rod (164) mounted to a blow mold rod seal assembly (14) for sliding movement therethrough, into and longitudinally stretching a plastic parison, the stretching rod including a cooling fluid tube defining a cooling fluid inlet port (176) for connection to a source of a cooling fluid and a cooling fluid outlet port (178) to introduce the cooling fluid within the container, and a heater (130,132) disposed in a cavity defined in the blow mold rod seal assembly for heating the blow mold rod seal assembly (14) so that at least a portion of the stretching rod (164) is maintained at a temperature above a preselected level to prevent accumulation thereon of ice sublimated from water vapor present in the blow air and portions of seals of the blow mold rod seal assembly are maintained at a temperature above a predetermined level to prevent seal failure.
    • 一种低温拉伸吹塑成型设备(10),其包括安装到吹塑模具杆密封组件(14)上的拉伸杆(164),用于滑动通过其移动并拉伸塑料型坯,拉伸杆包括冷却流体管,该冷却流体管限定 用于连接到冷却流体源的冷却流体入口(176)和用于将冷却流体引入容器内的冷却流体出口(178),以及设置在限定在吹塑模具杆中的空腔中的加热器(130,132) 用于加热吹塑模具杆密封组件(14)的密封组件,使得拉伸杆(164)的至少一部分保持在高于预选水平的温度以防止在存在于吹气中的水蒸气升华的冰上积聚 并且吹塑模杆密封组件的密封部分保持在高于预定水平的温度以防止密封失效。
    • 7. 发明公开
    • Drinking cup and cover with flow control elements
    • Trinkbecher und Deckel mitStrömungsregulierendenElementen
    • EP0838184A1
    • 1998-04-29
    • EP97308376.9
    • 1997-10-22
    • Robbins, Edward S. III
    • Robbins, Edward S., IIIBurcham, Gregory S.
    • A47G19/22
    • A47G19/2272
    • A drinking cup (10) having a body portion (12) and a removably attached cover (14) including an offset drinking spout (28) and an offset vent aperture (32). The drinking spout (28) and the vent aperture (32) are each surrounded by wall members (34,38) which depend generally away from an interior surface of the cover (14). An air inlet flow control valve (40) is coupled to the wall member (34) surrounding the vent aperture (32) while a liquid outlet flow control valve (42) is coupled to the wall member (38) surrounding the spout (28). Each flow control valve (40,42) includes a domed elastomeric member (48,50) containing a slit (49,51) allowing for passage of a selected fluid therethrough. The domed portions (48,50) are each surrounded by a generally circular isolating channel (60,62), and outside of each isolating channel is a perimetral portion (52) for connecting the flow control valve (40,42) to the depending wall (34,38) portion of the cover (14). Fluids passing through the slits (49,51) achieve substantially only a one-way passage as the domed curvature substantially prevents any backflow. Vacuum must be applied on the convex side of the domed portion (48,50) for sufficient elastomeric displacement to allow a fluid to pass through the slit. In the absence of such a vacuum, the sides of the slit (49,51) are maintained in contiguous contact thereby preventing any transfer of liquid or air across the respective flow control valve (40,42). Coupling means are provided for coupling the flow control valves (40,42) together, and may include handle portions (44,46) integrally attached to the perimetral portion and including joining means (54,56) for joining the handle portions (44,46) together.
    • 一种具有主体部分(12)和可移除地附接的盖(14)的饮用杯(10),其包括偏置饮水口(28)和偏移通气孔(32)。 饮用水口(28)和通风孔(32)各自被壁构件(34,38)包围,该壁构件通常远离罩(14)的内表面。 空气入口流量控制阀(40)联接到围绕通气孔(32)的壁构件(34),而液体出口流量控制阀(42)联接到围绕喷口(28)的壁构件(38) 。 每个流量控制阀(40,42)包括穹顶弹性体构件(48,50),其包含允许选定流体通过的狭缝(49,51)。 圆顶部分(48,50)各自被一个大致圆形的隔离通道(60,62)围绕,每个隔离通道的外部是一个周边部分(52),用于将流量控制阀(40,42)连接到垂直 盖(14)的壁(34,38)部分。 通过狭缝(49,51)的液体基本上仅实现单向通道,因为圆顶曲率基本上防止任何回流。 必须在圆顶部分(48,50)的凸面上施加真空以获得足够的弹性体位移以允许流体通过狭缝。 在没有这种真空的情况下,狭缝(49,51)的侧面保持连续接触,从而防止液体或空气通过相应的流量控制阀(40,42)的任何传送。 提供用于将流量控制阀(40,42)联接在一起的联接装置,并且可以包括一体地附接到周边部分的手柄部分(44,46),并且包括用于连接手柄部分(44,56)的接合装置(54,56) 46)在一起
    • 9. 发明公开
    • Take-out and cooling apparatus
    • Entnahme- undKühlvorrichtung
    • EP0718084A2
    • 1996-06-26
    • EP95309205.3
    • 1995-12-18
    • Electra Form, Inc.
    • Hartman, Daniel A.Bright, Timothy L.Shroder, Terry A.
    • B29C45/42B29C45/72B29C45/17
    • B29C45/7207B29C31/00B29C45/1769B29C45/42B29C49/06B29C49/6427B29C2045/4241B29C2045/4283B29C2045/7214B29K2105/253
    • A molded parison handling apparatus (10) for removing hollow plastic parisons (88) used in the manufacture of oriented plastic bottles from an injection molding machine (12) includes a base (30) having an arm (32) coupled to the injection molding machine. A carriage (32) mounted on the arm (32) moves in a first dimension into and out of the space (19) between the molding elements of the molding machine (12). A frame cooling unit coupled to the carriage (32) engages the body portion of a set of parisons as they are released from the molding machine. A first motor (38) moves the cooling apparatus to any of three preselected positions along the first dimension ( X ) located outside the molding machine (12). A transfer assembly (40) includes three sets of grabbers (192) mounted on a gantry (42) for movement with respect to the base (30). One set of grabbers (192) grabs the finish portion ( F ) of the parisons (88) from the cooling apparatus. A second and third motor (44, 98) then translates the transfer assembly (40) to one of two remote locations where a stationary cooler (46) receives the parisons for additional cooling. The transfer assembly (40) then withdraws a fully cooled set of parisons (88) from one of the stationary coolers (46), deposits the fully cooled parisons on an exit conveyor (48), and returns to grab another set of newly released parisons (88) from the frame cooling unit (80).
    • 用于从注射成型机(12)制造用于制造定向塑料瓶的中空塑料型坯(88)的成型型坯处理装置(10)包括:底座(30),其具有连接到注射成型机 。 安装在臂(32)上的托架(32)在第一维度上移动到模制机器(12)的模制元件之间的空间(19)中。 联接到滑架(32)的框架冷却单元在从模制机器释放时接合一组型坯的主体部分。 第一马达(38)沿着位于模制机(12)外部的第一尺寸(X)将冷却装置移动到三个预定位置中的任何一个位置。 传送组件(40)包括安装在台架(42)上用于相对于基座(30)移动的三组抓取器(192)。 一组抓取器(192)从冷却装置抓住型坯(88)的端部(F)。 然后,第二和第三马达(44,98)将传送组件(40)平移到两个远程位置之一,其中固定式冷却器(46)接收型坯用于额外的冷却。 传送组件(40)然后从固定式冷却器(46)中的一个提取完全冷却的一组型坯(88),将完全冷却的型坯沉积在出口传送器(48)上,并返回以另一组新发布的型坯 (88)从框架冷却单元(80)移动。