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    • 3. 发明公开
    • Aseptic flexible walled container
    • ASEPTIC柔性门窗容器
    • EP0101613A3
    • 1985-05-15
    • EP83108150
    • 1983-08-17
    • FranRica Mfg. Inc.CONTAINER TECHNOLOGIES, INC.
    • Davis, John C.Reiss, Ronald J.Rica, Albert F.
    • B65D37/00
    • B65D37/00Y10T428/1341Y10T428/1379Y10T428/1383
    • @ There is disclosed an aseptic flexible walled container having a rigid fitment member cooperative with an associated aseptic filling apparatus. The container includes a neck, outer flanges surrounding the neck, a frangible membrane and an outer end rim receptive of an hermetically sealed lid. The neck is formed with an internal chamferred seating shoulder for fluid-tight engagement with a fill tube. One outer flange cooperates with clamping jaws of the aseptic filling apparatus for detachably sealing the fitment to a sterilizing chamber and placing it in position for insertion of the filling tube which ruptures the membrane and permits the aseptic introduction of product to the container's interior. The other outer flange is secured to an opening in a wall of the flexible container. The joined fitment and container are presterilized prior to filling. Selected materials I for the multi-ply container walls and the fitment permit the container to withstand gamma ray and other sterilization treatment, heat and pressure while maintaining required strength. After the container is aseptically filled, such as with flowable food product, the fill tube is withdrawn and a lid is hermetically sealed onto the rim of the fitment. A heat f shield adjacent a container wall surrounds the fitment to protect the container from excessive heat generated by the associated filling apparatus during filling.
    • 公开了一种无菌柔性壁容器,其具有与无菌填充装置协作的刚性配件,并且包括颈部,围绕颈部的外凸缘,易碎膜​​和容纳密封盖的外端缘。 颈部形成有内部倒角的座肩,用于与填充管流体密封接合。 一个外部凸缘与无菌填充设备的夹爪配合,用于将配件可拆卸地密封到灭菌室并将其放置在适当位置,以插入破裂膜的填充管,并允许将产品无菌地引入容器的内部。 另一个外凸缘固定在柔性容器的壁的开口处。 接合的配件和容器在填充之前被预灭灭。 用于多层容器壁和配件的所选材料允许容器在保持所需强度的同时容许伽马射线和其它灭菌处理,热和压力。 在容器无菌填充之后,例如用可流动的食品,将填充管取出并将盖密封地密封在配件的边缘上。 邻近容器壁的隔热罩围绕着配件,以保护容器免受在填充期间相关联的填充设备产生的过多的热量。
    • 4. 发明公开
    • Aseptic flexible walled container
    • Mit Mit。len。。。。。。。。。。。。。
    • EP0101613A2
    • 1984-02-29
    • EP83108150.0
    • 1983-08-17
    • FranRica Mfg. Inc.CONTAINER TECHNOLOGIES, INC.
    • Davis, John C.Reiss, Ronald J.Rica, Albert F.
    • B65D37/00
    • B65D37/00Y10T428/1341Y10T428/1379Y10T428/1383
    • @ There is disclosed an aseptic flexible walled container having a rigid fitment member cooperative with an associated aseptic filling apparatus. The container includes a neck, outer flanges surrounding the neck, a frangible membrane and an outer end rim receptive of an hermetically sealed lid. The neck is formed with an internal chamferred seating shoulder for fluid-tight engagement with a fill tube. One outer flange cooperates with clamping jaws of the aseptic filling apparatus for detachably sealing the fitment to a sterilizing chamber and placing it in position for insertion of the filling tube which ruptures the membrane and permits the aseptic introduction of product to the container's interior. The other outer flange is secured to an opening in a wall of the flexible container. The joined fitment and container are presterilized prior to filling. Selected materials I for the multi-ply container walls and the fitment permit the container to withstand gamma ray and other sterilization treatment, heat and pressure while maintaining required strength. After the container is aseptically filled, such as with flowable food product, the fill tube is withdrawn and a lid is hermetically sealed onto the rim of the fitment. A heat f shield adjacent a container wall surrounds the fitment to protect the container from excessive heat generated by the associated filling apparatus during filling.
    • 公开了一种无菌柔性壁容器,其具有与无菌填充装置协作的刚性配件,并且包括颈部,围绕颈部的外凸缘,易碎膜​​和容纳密封盖的外端缘。 颈部形成有内部倒角的座肩,用于与填充管流体密封接合。 一个外部凸缘与无菌填充设备的夹爪配合,用于将配件可拆卸地密封到灭菌室并将其放置在适当位置,以插入破裂膜的填充管,并允许将产品无菌地引入容器的内部。 另一个外凸缘固定在柔性容器的壁的开口处。 接合的配件和容器在填充之前被预灭灭。 用于多层容器壁和配件的所选材料允许容器在保持所需强度的同时容许伽马射线和其它灭菌处理,热和压力。 在容器无菌填充之后,例如用可流动的食品,将填充管取出并将盖密封地密封在配件的边缘上。 邻近容器壁的隔热罩围绕着配件,以保护容器免受在填充期间相关联的填充设备产生的过多的热量。
    • 9. 发明公开
    • Scraped surface heat exchanger
    • 切割表面热交换器
    • EP0036727A3
    • 1982-04-21
    • EP81301042
    • 1981-03-12
    • FranRica Mfg. Inc.
    • Hay, Lloyd F.Rica, Albert F.Webber, J. R.
    • F28F19/00F26B03/22F16J15/34
    • F28F19/008
    • A scraped surface heat exchanger is disclosed which includes a heat exchange cylinder (10) and a vertically disposed rotating drum (12) positioned within the cylinder having pivotal scraping elements (92) on the periphery thereof for scraping the cylinder interior surface. The cylinder and drum define an annular product flow chamber (16) through which product is pumped in heat transfer relationship to the cylinder. The heat transfer cylinder is surrounded by a thermally insulated jacket (14) which in combination with the cylinder (10) defines an annular flow chamber (32) for circulation of a heat transfer medium to facilitate cooling or heating of product passing through the product flow chamber (16). The drum (12) is mounted on a shaft (76) which is journalled in a bearing (110, 112) at only one end, requiring utilization of only a single seal (142) to seal the bearing (110, 112) from the product being heated or cooled. An indicator element (156) integral with a carrier (144) to which a rotating seal element (142) is attached, moves as the seal wears to provide a visual indication of seal wear. The carrier is designed such that the net product force acting on the carrier is in a direction tending to urge the relatively moving (142) and stationary (140) seal elements together. Rotary agitating elements (30) are preferably provided at the inlet to the annular product flow chamber (16) to distribute product, which is introduced at a single point, to the entirety of the inlet end (26) of the annular product flow chamber. A mixing chamber (70) located between the outlet end (20) of the annular product flow chamber (16) and the outlet (24a) of the heat exchanger, may be provided with co-operating stationary (78) and rotary (74) agitator elements to mix the product, thereby assuring uniform temperature distribution of product leaving the heat exchanger.
    • 10. 发明公开
    • Scraped surface heat exchanger
    • 换热器刮削器。
    • EP0036727A2
    • 1981-09-30
    • EP81301042.8
    • 1981-03-12
    • FranRica Mfg. Inc.
    • Hay, Lloyd F.Rica, Albert F.Webber, J. R.
    • F28F19/00F26B3/22F16J15/34
    • F28F19/008
    • A scraped surface heat exchanger is disclosed which includes a heat exchange cylinder (10) and a vertically disposed rotating drum (12) positioned within the cylinder having pivotal scraping elements (92) on the periphery thereof for scraping the cylinder interior surface. The cylinder and drum define an annular product flow chamber (16) through which product is pumped in heat transfer relationship to the cylinder. The heat transfer cylinder is surrounded by a thermally insulated jacket (14) which in combination with the cylinder (10) defines an annular flow chamber (32) for circulation of a heat transfer medium to facilitate cooling or heating of product passing through the product flow chamber (16). The drum (12) is mounted on a shaft (76) which is journalled in a bearing (110, 112) at only one end, requiring utilization of only a single seal (142) to seal the bearing (110, 112) from the product being heated or cooled. An indicator element (156) integral with a carrier (144) to which a rotating seal element (142) is attached, moves as the seal wears to provide a visual indication of seal wear. The carrier is designed such that the net product force acting on the carrier is in a direction tending to urge the relatively moving (142) and stationary (140) seal elements together. Rotary agitating elements (30) are preferably provided at the inlet to the annular product flow chamber (16) to distribute product, which is introduced at a single point, to the entirety of the inlet end (26) of the annular product flow chamber. A mixing chamber (70) located between the outlet end (20) of the annular product flow chamber (16) and the outlet (24a) of the heat exchanger, may be provided with co-operating stationary (78) and rotary (74) agitator elements to mix the product, thereby assuring uniform temperature distribution of product leaving the heat exchanger.