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    • 1. 发明授权
    • Hot runner manifold system
    • 热流道歧管系统
    • US07287977B2
    • 2007-10-30
    • US10542737
    • 2003-02-04
    • Nicholas SerniuckJohn KnappAbdeslam BoutiEdward J. Jenko
    • Nicholas SerniuckJohn KnappAbdeslam BoutiEdward J. Jenko
    • B29C45/22
    • B29C45/2725B29C45/2738B29C45/2806B29C2045/273B29C2045/2762B29C2045/308
    • A manifold system (50) comprising a main manifold (56) with a plurality of arms (64), a plurality of sub-manifolds (52) spaced from the main manifold (56) and communicating with the main manifold (56) through a plurality of melt transfer bushings (68) disposed between the main manifold (56) and the sub-manifolds (52). The melt transfer bushings (68) may include static mixers (140) to homogenize the melt. An air plate (70) is disposed between a backing plate (58) preferably housing the main manifold (56) and a manifold plate (54) preferably housing the sub-manifolds (52). The air plate (70) has a plurality of air channels (74) that communicate with valve gate nozzle actuators (90), which are received in actuator cavities (72) in the air plate (70). The air plate (70) is bolted to the manifold plate (54), and the backing plate (58) is bolted to the air plate (70) with bolting patterns not constrained by location of the main manifold (56) or sub-manifolds (52). The manifold system (50), as shown in FIG. 5, has better thermal and geometric balance, closer nozzle spacing, and better bolting for less plate bowing.
    • 一种歧管系统(50),包括具有多个臂(64)的主歧管(56),与所述主歧管(56)间隔开并与所述主歧管(56)连通的多个子歧管(52) 设置在主歧管(56)和子歧管(52)之间的多个熔体传输衬套(68)。 熔体传送衬套(68)可以包括静态混合器(140)以使熔体均质化。 空气板(70)设置在优选地容纳主歧管(56)的背板(58)和优选地容纳子歧管(52)的歧管板(54)之间。 空气板(70)具有与阀门喷嘴致动器(90)连通的多个空气通道(74),它们被容纳在空气板(70)中的致动器空腔(72)中。 空气板(70)被螺栓连接到歧管板(54),并且背板(58)用不受主歧管(56)或子歧管(56)的位置约束的螺栓图案螺栓连接到空气板(70) (52)。 歧管系统(50),如图1所示。 5,具有更好的热和几何平衡,更紧密的喷嘴间距,更好的螺栓连接减少板弯。
    • 5. 发明申请
    • Hot runner manifold system
    • 热流道歧管系统
    • US20060204611A1
    • 2006-09-14
    • US10542737
    • 2003-02-04
    • Nicholas SerniukJohn KnappAbdeslam BoutiEdward Jenko
    • Nicholas SerniukJohn KnappAbdeslam BoutiEdward Jenko
    • B29C35/00
    • B29C45/2725B29C45/2738B29C45/2806B29C2045/273B29C2045/2762B29C2045/308
    • A manifold system (50) comprising a main manifold (56) with a plurality of arms (64), a plurality of sub-manifolds (52) spaced from the main manifold (56) and communicating with the main manifold (56) through a plurality of melt transfer bushings (68) disposed between the main manifold (56) and the sub-manifolds (52). The melt transfer bushings (68) may include static mixers (140) to homogenize the melt. An air plate (70) is disposed between a backing plate (58) preferably housing the main manifold (56) and a manifold plate (54) preferably housing the sub-manifolds (52). The air plate (70) has a plurality of air channels (74) that communicate with valve gate nozzle actuators (90), which are received in actuator cavities (72) in the air plate (70). The air plate (70) is bolted to the manifold plate (54), and the backing plate (58) is bolted to the air plate (70) with bolting patterns not constrained by location of the main manifold (56) or sub-manifolds (52). The manifold system (50), as shown in FIG. 5, has better thermal and geometric balance, closer nozzle spacing, and better bolting for less plate bowing.
    • 一种歧管系统(50),包括具有多个臂(64)的主歧管(56),与所述主歧管(56)间隔开并与所述主歧管(56)连通的多个子歧管(52) 设置在主歧管(56)和子歧管(52)之间的多个熔体传输衬套(68)。 熔体传送衬套(68)可以包括静态混合器(140)以使熔体均质化。 空气板(70)设置在优选地容纳主歧管(56)的背板(58)和优选地容纳子歧管(52)的歧管板(54)之间。 空气板(70)具有与阀门喷嘴致动器(90)连通的多个空气通道(74),它们被容纳在空气板(70)中的致动器空腔(72)中。 空气板(70)被螺栓连接到歧管板(54),并且背板(58)用不受主歧管(56)或子歧管(56)的位置约束的螺栓图案螺栓连接到空气板(70) (52)。 歧管系统(50),如图1所示。 5,具有更好的热和几何平衡,更紧密的喷嘴间距,更好的螺栓连接减少板弯。
    • 8. 发明申请
    • Composite Nozzle Tip Method
    • 复合喷嘴方法
    • US20080206394A1
    • 2008-08-28
    • US11679248
    • 2007-02-27
    • Abdeslam Bouti
    • Abdeslam Bouti
    • B29C45/20
    • C22C9/06B29C45/278B29C2045/2783B29C2045/2785B29C2045/2787C21D9/00
    • A composite nozzle tip for an injection molding assembly includes a body, having a bore extending therethrough, adapted for connection to the injection molding assembly. The body is formed of a precipitation hardened, high thermal conductivity material and a precipitation hardened, high strength material, which are integrally joined together to form the body. The thermal conductivity of the high thermal conductivity material is greater than the thermal conductivity of the high strength material, and the strength of the high strength material is greater than the strength of the high thermal conductivity material. The high thermal conductivity material and the high strength material can be precipitation hardened together under the same precipitation hardening conditions to achieve increases in the value of at least one strength aspect of the high thermal conductivity material and the value of at least one strength aspect of the high strength material, relative to their respective unhardened conditions.
    • 用于注射成型组件的复合喷嘴尖端包括具有延伸穿过其中的孔的主体,其适于连接到注射成型组件。 身体由沉淀硬化,高导热性材料和沉淀硬化的高强度材料形成,其一体地结合在一起以形成身体。 高导热性材料的导热率大于高强度材料的导热率,高强度材料的强度大于高导热性材料的强度。 高导热性材料和高强度材料可以在相同的沉淀硬化条件下在一起沉淀硬化,以实现高导热材料的至少一个强度方面的值的增加和至少一个强度方面的值 高强度材料,相对于它们各自的未硬化条件。