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    • 16. 发明授权
    • Method of processing polymers using a single screw
    • 聚合物加工系统包括螺丝
    • US07615170B2
    • 2009-11-10
    • US11027191
    • 2004-12-30
    • Jingyi XuJuan C. CardonaLevi A. Kishbaugh
    • Jingyi XuJuan C. CardonaLevi A. Kishbaugh
    • B29C44/38
    • B29C44/3446B29C47/6018B29C47/6025B29C47/6062B29C47/6087B29C2045/1722Y10T29/49716
    • Injection molding and blow molding systems that include screws having low L:D ratios are provided. The systems are capable of producing microcellular polymeric materials. In some cases, the systems may be formed by retrofitting conventional polymer processing systems. Retrofitting may involve changing (e.g., machining or replacing) existing components of the conventional system, as well as, adding new components to the system. For example, retrofitting generally involves replacing the conventional polymer processing screw with a new screw designed to satisfy conditions needed for processing microcellular materials. In other cases, the systems may be newly manufactured. The retrofitted or newly manufactured systems of the invention are considerably less expensive than newly manufactured microcellular processing systems having higher L:D ratios.
    • 提供了具有低L:D比率的螺杆的注塑和吹塑系统。 该系统能够生产微孔聚合材料。 在一些情况下,可以通过改进常规聚合物处理系统来形成系统。 改装可能涉及改变(例如,加工或更换)常规系统的现有组件,以及向系统添加新组件。 例如,改装通常包括用设计成满足加工微孔材料所需条件的新螺杆来代替传统的聚合物加工螺杆。 在其他情况下,可以新制造系统。 本发明的改进或新制造的系统比具有较高L:D比的新制造的微孔处理系统便宜得多。
    • 17. 发明授权
    • High capacity extrusion die assembly
    • 大容量挤出模具组装
    • US07588789B1
    • 2009-09-15
    • US12420677
    • 2009-04-08
    • Joseph P. KearnsGalen J. RokeyPhilip B. WiltzAnthony L. BruningLafe N. Bailey
    • Joseph P. KearnsGalen J. RokeyPhilip B. WiltzAnthony L. BruningLafe N. Bailey
    • A23P1/12
    • B29C47/6012A23N17/005A23P30/20B29C47/0014B29C47/0016B29C47/0066B29C47/30B29C47/38B29C47/402B29C47/406B29C47/6018B29C47/6056B29C47/6087B29C47/668
    • High-capacity extrusion die assemblies (20, 90, 130, 140, 180, 252) each having a tubular sections (44, 146, 162, 268) and an elongated, axially rotatable, helically flighted screw section (56, 56a, 152, 168, 276, 278) which cooperatively define frustoconical, outwardly diverging material flow paths (75, 160, 291) at constant or differing divergence angles of from about 1-11°. The use of diverging tubular sections (44, 146, 162, 268) and screw sections (56, 56a, 152, 168, 276, 278) permits the use of larger die plates (76, 118, 292) with an increased number of die openings (80, 124, 296). This allows significant increases in extrusion production rates. The die assemblies (20, 90, 130, 140, 180, 252) can be used in the production of a wide number of human foods or animal feeds, and particularly aquatic feeds of the floating or sinking variety. In another aspect of the invention, an extruder (210) is provided having diverging and converging sections (212, 214) along the length thereof and defining corresponding flow paths (230, 246).
    • 每个具有管状部分(44,146,162,268)和细长的,可轴向旋转的螺旋螺旋部分(56,56a,152)的大容量挤出模头组件(20,90,130,140,​​180,252) ,168,276,278),其以约1-11°的恒定或不同的发散角协作地限定截头圆锥形的向外发散的材料流动路径(75,160,291)。 使用发散的管状部分(44,146,162,268)和螺旋部分(56,56a,152,168,276,278)允许使用较大的模板(76,118,292),其具有增加数量的 模具开口(80,124,296)。 这样可以显着提高挤出生产率。 模具组件(20,90,130,140,​​180,252)可以用于生产大量人类食物或动物饲料,特别是浮动或下沉品种的水生饲料。 在本发明的另一方面,提供一种挤出机(210),其具有沿其长度的发散和会聚部分(212,214),并限定相应的流动路径(230,246)。