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    • 11. 发明授权
    • Process for producing PPE resin composition
    • 生产PPE树脂组合物的方法
    • US07736565B2
    • 2010-06-15
    • US11126402
    • 2005-05-11
    • Yoshio Ota
    • Yoshio Ota
    • B29C47/60
    • B29C47/585B29C47/0009B29C47/1009B29C47/1027B29C47/1081B29C47/369B29C47/767B29K2071/12
    • The invention provides process for producing a PPE resin composition containing PPE powder using an extruder comprising: a vent pipe; a polyphenylene ether (herein after referred to as “PPE”) powder supplying pipe; an extruder supply hopper having an opening with a wall angle of 60° or more; and an extruder unit, wherein the vent pipe and the PPE powder supplying pipe each have an terminal orifice located in the opening of the extruder supply hopper, and wherein the PPE powder supplying pipe is disposed at a gear box-side portion of the extruder supply hopper, and the vent pipe is disposed at a die-side portion, relative to the PPE powder supplying pipe, of the extruder supply hopper, which process comprises the steps of: supplying the PPE powder to a gear box-side wall of the extruder supply hopper through the PPE powder supplying pipe; removing a gas accompanying the PPE powder in an effective amount through the vent pipe; and melt-kneading a mixture containing the degassed PPE powder with the extruder unit.
    • 本发明提供使用挤出机生产含有PPE粉末的PPE树脂组合物的方法,该挤出机包括:排气管; 聚苯醚(以下简称“PPE”)粉末供给管; 具有壁角为60°以上的开口的挤出机供给料斗; 以及挤出机单元,其中,所述通气管和所述PPE粉末供给管各自具有位于所述挤出机供给料斗的开口内的末端孔,并且其中所述PPE粉末供给管设置在所述挤出机供给口的齿轮箱侧部 料斗,排气管相对于PPE粉末供给管设置在挤出机供料斗的模侧部,该方法包括以下步骤:将PPE粉末供给到挤出机的齿轮箱侧壁 供料斗通过PPE粉末供料管; 通过排气管有效地除去伴随PPE粉末的气体; 并将含有脱气的PPE粉末的混合物与挤出机单元熔融捏合。
    • 13. 发明申请
    • Process for producing PPE resin composition
    • 生产PPE树脂组合物的方法
    • US20060255498A1
    • 2006-11-16
    • US11126402
    • 2005-05-11
    • Yoshio Ota
    • Yoshio Ota
    • B29C47/38
    • B29C47/585B29C47/0009B29C47/1009B29C47/1027B29C47/1081B29C47/369B29C47/767B29K2071/12
    • The invention provides process for producing a PPE resin composition containing PPE powder using an extruder comprising: a vent pipe; a polyphenylene ether (herein after referred to as “PPE”) powder supplying pipe; an extruder supply hopper having an opening with a wall angle of 60° or more; and an extruder unit, wherein the vent pipe and the PPE powder supplying pipe each have an terminal orifice located in the opening of the extruder supply hopper, and wherein the PPE powder supplying pipe is disposed at a gear box-side portion of the extruder supply hopper, and the vent pipe is disposed at a die-side portion, relative to the PPE powder supplying pipe, of the extruder supply hopper, which process comprises the steps of: supplying the PPE powder to a gear box-side wall of the extruder supply hopper through the PPE powder supplying pipe; removing a gas accompanying the PPE powder in an effective amount through the vent pipe; and melt-kneading a mixture containing the degassed PPE powder with the extruder unit.
    • 本发明提供使用挤出机生产含有PPE粉末的PPE树脂组合物的方法,该挤出机包括:排气管; 聚苯醚(以下简称“PPE”)粉末供给管; 具有壁角为60°以上的开口的挤出机供给料斗; 以及挤出机单元,其中,所述通气管和所述PPE粉末供给管各自具有位于所述挤出机供给料斗的开口内的末端孔,并且其中所述PPE粉末供给管设置在所述挤出机供给口的齿轮箱侧部 料斗,排气管相对于PPE粉末供给管设置在挤出机供料斗的模侧部,该方法包括以下步骤:将PPE粉末供给到挤出机的齿轮箱侧壁 供料斗通过PPE粉末供料管; 通过排气管有效地除去伴随PPE粉末的气体; 并将含有脱气的PPE粉末的混合物与挤出机单元熔融捏合。
    • 16. 发明授权
    • Bulk bag pre-conditioner
    • 散装袋预处理
    • US06312151B1
    • 2001-11-06
    • US09498432
    • 2000-02-04
    • Stevens P. Pendleton
    • Stevens P. Pendleton
    • B01F1100
    • B29C47/1009B01F11/0065B29C47/0009B65B1/24B65D88/1612B65D88/66
    • An apparatus is provided for pre-conditioning the materials in a bulk bag to effect easier unloading of the materials. A frame is provided with an open space for receiving the bulk bag. A series of spaced-apart, opposing breaker bars is provided for automatic thrusting against the sides of the bags to break up compacted material. The bars preferably have an angled profile. Parallel pairs of opposing horizontal bars are provided, evenly spaced from the bottom; and preferably a single opposing vertical pair is provided on the opposite sides. The pairs of bars are operated, by thrusting into the sides of the bag, in a timed sequence, to effect break up of the material. Additionally, a series of bars may be provided on the bottom of the frame, such that a break up effect is achieved against the material residing in the bottom of the bag.
    • 提供了一种用于对散装袋中的材料进行预处理以实现材料更容易卸载的装置。 框架设有用于接收散装袋的开放空间。 提供一系列间隔开的相对的断路器杆,用于自动推压袋的侧面以分解压实的材料。 棒优选地具有成角度的轮廓。 提供平行的相对的水平杆对,与底部均匀间隔开; 并且优选地,在相对侧上设置单个相对的垂直对。 通过以时间顺序推入袋的侧面来操作成对的条,以实现材料的分解。 此外,可以在框架的底部设置一系列杆,使得抵抗位于袋底部的材料的破裂效果。
    • 20. 发明授权
    • Hopper with moving wall and method of making and using the same
    • 带移动墙的料斗及其制作和使用方法
    • US5533650A
    • 1996-07-09
    • US95282
    • 1993-07-21
    • Peter E. ConradTimothy W. Saunders
    • Peter E. ConradTimothy W. Saunders
    • B65D88/66B65G65/40
    • B29C47/1009B65D88/66B29C47/0019B29C47/1027
    • An improved hopper includes a pair of opposed live walls and a pair of opposed fixed walls, wherein at least one live wall is moveable relative to at least one other wall. The hopper is suitable for controlling the flow of particulate material of the type which has a tendency to bridge during transportation. A device for imparting vibration is coupled to at least one of the live walls. The live walls are separated from the fixed walls by seams such that the live walls are free to move relative to the fixed walls. By the action of the vibration device, the live walls are moveable relative to each other and to the fixed walls to inhibit the formation of particle bridges and, thus, provide a significant improvement in the capability of controlling the flow of particulate material. This relative wall motion is capable of breaking up bridges of the material that are otherwise likely to form, and of preventing the adhesion and packing of particulate material to or on the walls, thereby allowing the material to flow uniformly through the hopper.
    • 改进的料斗包括一对相对的活壁和一对相对的固定壁,其中至少一个活壁相对于至少一个其它壁是可移动的。 料斗适用于控制在运输过程中具有桥接倾向的颗粒材料的流动。 用于施加振动的装置耦合到活壁中的至少一个。 活的墙壁通过接缝与固定墙分离,使得活壁相对于固定壁自由移动。 通过振动装置的作用,活壁可相对于彼此和固定壁移动以抑制颗粒桥的形成,从而提供了控制颗粒材料流动的能力的显着改进。 这种相对的壁面运动能够破坏否则可能形成的材料的桥梁,并且防止颗粒材料粘合和包装在壁上或壁上,从而允许材料均匀地流过料斗。