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    • 5. 发明申请
    • Selective Positioning of Nozzle Tip Relative to Mold-Side of Runner System
    • 喷嘴相对于跑道系统模具侧的选择性定位
    • US20140127348A1
    • 2014-05-08
    • US14127556
    • 2012-06-12
    • HUSKY INJECTION MOLDING SYSTEMS LTD.
    • Martin BaumannJohn KnappSarah Kathleen Overfield
    • B29C45/07
    • B29C45/07B29C45/278B29C2045/2796
    • The inventors have researched a problem associated with known molding systems that inadvertently manufacture bad-quality molded articles or parts. After much study, the inventors believe they have arrived at an understanding of the problem and its solution, which are stated below, and the inventors believe this understanding is not known to the public. During operation, the gate orifice and nozzle tip position are fixed. The inventors believe that there appears to be no known mechanism that allows optimization of the tip to gate relationship. Known methods of adjusting position of a nozzle tip, such as shimming between a cavity plate and a manifold plate, or replacing nozzle stack components, may be time consuming and difficult. The known hot runner assembly often must be removed from the molding machine to make the desired adjustments.
    • 本发明人研究了与已知的模制系统相关的问题,该问题不经意地制造不良品质的模制品或部件。 经过深入研究,发明人相信他们已经了解了以下所述的问题及其解决方案,发明人认为,这种理解是公众不了解的。 在操作期间,闸口和喷嘴尖端位置是固定的。 发明人认为,似乎没有允许使尖端与栅极关系最优化的已知机制。 已知的调节喷嘴尖端的位置的方法,例如在腔板和歧管板之间的垫片,或者替换喷嘴堆叠部件,可能是耗时且困难的。 已知的热流道组件通常必须从成型机上移除以进行所需的调整。
    • 8. 发明授权
    • Injection-moulding unit for a machine for the injection moulding of
plastics
    • 塑料注射成型机的注塑机
    • US5968563A
    • 1999-10-19
    • US29406
    • 1997-02-25
    • Karl Hehl
    • Karl Hehl
    • B29C45/07B29C45/50B29C45/46
    • B29C45/07B29C45/5008B29C2045/5084B29C2045/7271
    • An injection molding unit for a plastics injection molding machine for processing plastifiable materials includes a plasticizing unit for supplying plastifiable material to a mold via a nozzle along an injection axis. The plasticizing unit receives a feeding mechanism and the plasticizing unit is detachably received in a carrier block. The feeding mechanism is mounted at an injection bridge which is movable toward and away from the carrier block for movement of the feeding mechanism relative to the plasticizing unit. A plurality of electromechanical drive units are arranged symmetrically to the injection axis for displacement of the injection molding unit along the injection axis for attachment of the nozzle to the mold. A plurality of electromechanical injection units are arranged symmetrically to the injection axis for movement of the injection bridge relative to the carrier block. The carrier block and injection bridge are displaceable along linear guiding elements. The linear guiding elements are arranged symmetrically to the injection axis and the drive units, the injection units and the linear guiding elements lie in different planes each of which include the injection axis.
    • PCT No.PCT / DE96 / 01532 Sec。 371日期:1998年2月25日 102(e)1998年2月25日PCT PCT 1996年8月13日PCT公布。 公开号WO97 / 07971 日期1997年3月6日用于加工可塑性材料的塑料注射成型机的注塑单元包括用于通过喷嘴沿注射轴向模具提供可塑性材料的增塑单元。 塑化单元接收进给机构,并且塑化单元可拆卸地接收在承载块中。 供给机构安装在注射桥上,该注入桥可以移动和移出承载块,以使供给机构相对于塑化单元移动。 多个机电驱动单元对称地布置在注射轴线上,用于使注射成型单元沿着注射轴线移位,以将喷嘴附接到模具。 多个机电注射单元对称地布置在喷射轴线上,用于喷射桥相对于载体块的移动。 载体块和注射桥可沿线性引导元件移位。 线性引导元件对称地设置在喷射轴上,驱动单元,喷射单元和线性引导元件位于不同的平面中,每个平面包括喷射轴。
    • 9. 发明授权
    • Injection molding machine and method with integrated carriage assembly
    • 注塑机和一体化车架组装方法
    • US5902611A
    • 1999-05-11
    • US095280
    • 1998-06-10
    • Truman J. Stegmaier
    • Truman J. Stegmaier
    • B29C45/07B29C45/50B29C45/77
    • B29C45/5008B29C45/07
    • This invention relates to injection molding machines and, more particularly, to an injection molding machine having an integrated carriage assembly for injection of a material into a mold. The carriage assembly includes an integral injection cylinder and carriage cylinder housing having an outer injection cylindrical wall and a pair of outer carriage cylindrical walls. An injection cylinder assembly is connected to the outer injection cylindrical wall forming a hydraulic chamber, and a motor is mounted on the carriage assembly to form a combined rotary reciprocating hydraulic cylinder. The outer carriage cylindrical walls receive transport rails to form hydraulic carriage cylinders to move the carriage assembly. The mold material density, temperature, pressure, and flow rate are closely controlled by axially controlling the force applied to the injection screw with the combined rotary reciprocating hydraulic cylinder.
    • 本发明涉及注射成型机,更具体地说,涉及一种具有用于将材料注入模具中的一体式托架组件的注塑机。 托架组件包括具有外部注射圆柱形壁和一对外部托架圆柱形壁的整体注射缸和托架缸壳体。 注射缸组件连接到形成液压室的外部注射圆柱形壁,并且马达安装在滑架组件上以形成组合的旋转往复式液压缸。 外部托架圆柱形壁接收运输轨道以形成液压托架筒以移动托架组件。 通过使用组合的旋转往复式液压缸轴向控制施加到注射螺杆的力,密切地控制模具材料的密度,温度,压力和流速。
    • 10. 发明授权
    • Plasticizing and injection unit for use in an injection molding machine
    • 注射成型机使用的注塑单元
    • US5129816A
    • 1992-07-14
    • US694908
    • 1991-05-02
    • Karl Hehl
    • Karl Hehl
    • B29C45/03B29C45/07B29C45/17B29C45/46B29C45/50
    • B29C45/07B29C45/17B29C45/5008
    • The plasticizing and injecting unit comprises at least one hydraulic advance-retract actuator that is provided with external screw threads, which are screwed into internal screw threads of a bore formed in a carrier and supply block. Means for locking the advance-retract actuator in the bore in that the interengaging screw threads are wedged against each other comprise a plurality of lock screws, which are parallel to the injection axis and disposed on a circle that surrounds the bore in which the actuator is received. The screws can be tightened to different degrees so that the carrier and supply block and the advance-retract actuator are biased in mutually opposite senses and any deviations from a coaxial arrangement of the interengaging screw threads can thus arbitrarily be changed in its magnitude and direction. As a result, the stresses which result in the overall structure from a deviation from a coaxial arrangement can be minimized by a simple manipulation.
    • 塑化和注射单元包括至少一个液压前进退出致动器,该致动器设置有外螺纹,螺纹拧入形成在载体和供应块中的孔的内螺纹中。 用于将推进回缩致动器锁定在孔中的装置是因为互相啮合的螺纹彼此楔合在一起,包括多个锁定螺钉,它们与注射轴线平行并且设置在围绕孔的圆周上,致动器 收到了 螺钉可以被拧紧到不同程度,使得托架和供给块和推进回缩致动器以相互相反的方向被偏置,并且与相互接合的螺纹的同轴布置的任何偏离因此可以随意地在其大小和方向上改变。 结果,可以通过简单的操作来最小化从总体结构偏离同轴布置导致整体结构的应力。