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    • 4. 发明授权
    • Method and apparatus for joining materials
    • 用于连接材料的方法和装置
    • US4417753A
    • 1983-11-29
    • US265933
    • 1981-05-21
    • David BacehowskiPaul MeasellsKenneth Zabielski
    • David BacehowskiPaul MeasellsKenneth Zabielski
    • B32B1/02A61J1/05A61J1/10B29C35/02B29C65/00B29C65/02B29C65/04B29C65/50B32B37/00B32B43/00F16L47/02F16L13/02
    • A61J1/10B29C65/02B29C65/5021B29C65/5057B29C66/1122B29C66/5221B29C66/52298B29C66/5344B29C66/712B29C66/723B29C66/73116B29C66/73921F16L47/02B29C35/0227B29C65/04B29C65/4895B29C66/53262B29C66/71B29K2105/0085B29L2023/22B29L2031/7148
    • A method and apparatus for joining sealingly incompatible plastic materials is disclosed. A coextruded connector (10) with separate, telescopically related layers (12,14) is affixed to one of the materials. The outer layer (14) of connector (10) is composed of a polymer specifically selected to melt or deform at a temperature lower than that of inner layer (12). The connector is frictionally fit within a second material to be joined and the connection is heated to a temperature sufficient to melt or deform outer layer (14) without melting inner layer (12). Outer layer 14 is thereby securely fused to the second material or blood container.A secondary embodiment is disclosed for joining materials of similar composition. Two coextruded connectors (40,46), having telescopically related layers composed of different polymer materials, are formed, as above, but the layer sequence of each connector is opposite to the other. The connectors (40,46) are sized to frictionally fit one within the other and the layers (42,48) in facing contact are composed of a material selected to melt or deform at a temperature lower than the nonfacing layers (44,50). For joining, the connectors (40,46) are affixed to the materials to be joined and then fit one within the other. The connection is then heated to a temperature sufficient to cause the lower melting, facing layers (42,48) to fuse together.
    • 公开了一种用于接合密封不兼容的塑料材料的方法和装置。 具有单独的可伸缩相关层(12,14)的共挤出连接器(10)被固定到所述材料之一。 连接器(10)的外层(14)由特别选择为在比内层(12)的温度低的温度下熔化或变形的聚合物构成。 连接器摩擦配合在待接合的第二材料内,并将连接件加热到足以熔化或变形外层(14)而不熔化内层(12)的温度。 因此,外层14牢固地熔合到第二材料或血液容器。 公开了用于连接具有相似组成的材料的第二实施例。 如上所述,形成具有由不同聚合物材料构成的伸缩相关层的两个共挤出连接器(40,46),但是每个连接器的层序列彼此相反。 连接器(40,46)的尺寸被设计成摩擦地配合在另一个中,并且面对接触中的层(42,48)由选择成在低于非表面层(44,50)的温度下熔化或变形的材料构成, 。 为了接合,连接器(40,46)固定到待连接的材料上,然后将其连接在另一个中。 然后将连接件加热到足以使较低熔化的面层(42,48)熔合在一起的温度。
    • 5. 发明授权
    • Large volume flexible containers
    • 大容量柔性容器
    • US4968624A
    • 1990-11-06
    • US342915
    • 1989-04-25
    • David BacehowskiArnold BilstadMichael R. Keilman
    • David BacehowskiArnold BilstadMichael R. Keilman
    • C12M1/00C12M3/00
    • C12M23/14B65D77/065B65D81/107C12M29/06
    • The present invention provides a large volume flexible container capable of containing a fluid to be maintained under sterile conditions. The container comprises an inner liner constructed from a polyolefin that defines an interior of the container and an outer liner constructed from a three-layer laminate. The laminate includes an inner layer constructed from a polyolefin that will, upon the application of sufficient energy, bond to the polyolefin of the inner liner, a middle layer constructed from a barrier material, and an outer layer; the inner liner and outer liner being sealed together along edges of the container. At least one tube member, for accessing the container, extends from a face of the container, and includes an end that is secured to the container, a length of flexible tubing for defining a channel through which fluid can flow, and a connector at a second end. A structure for housing the container is also provided.
    • 本发明提供一种能够容纳要在无菌条件下保持的流体的大容积柔性容器。 容器包括由限定容器内部的聚烯烃构成的内衬层和由三层层压体构成的外衬垫。 层压体包括由聚烯烃构成的内层,其将在施加足够的能量时粘合到内衬的聚烯烃上,由阻挡材料构成的中间层和外层; 内衬和外衬层沿容器的边缘密封在一起。 用于接近容器的至少一个管构件从容器的表面延伸,并且包括固定到容器的端部,用于限定流体可以流过的通道的一段柔性管道,以及连接器 第二端 还提供了一种用于容纳容器的结构。