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    • 11. 发明申请
    • Apparatus and method for adding a coloring agent to a material for brick making
    • 将着色剂添加到制砖用材料的装置和方法
    • US20030146534A1
    • 2003-08-07
    • US10072007
    • 2002-02-07
    • Mark W. ChutichDouglas Leon PrinceJames W. KruegerSteven K. Hitt
    • B29C045/76
    • B28B13/0205B28B3/2636B28B17/0081
    • An apparatus for adding a coloring agent to a material used to manufacture brick includes an extrusion container having an opening defined in the sidewall thereof A coloring agent supply communicates with the opening for delivery of the coloring agent to the interior of the container as brick making material passes through the container. A storage device stores the coloring agent supply amount data corresponding to a supply amount for each of a plurality of brick types, each of the plurality of brick types having a different appearance. A controller is adapted to control a supply of a coloring agent from said coloring agent supply into said extrusion container in accordance with a selected brick type. A computer can be connected to the controller for data transfer. Accordingly, the computer can be used as an interface between a user and the apparatus.
    • 用于在用于制造砖的材料中添加着色剂的装置包括具有限定在其侧壁中的开口的挤出容器。着色剂供给件与用于将着色剂输送到容器内部的开口连通,作为制砖材料 通过容器。 存储装置存储与多个砖类型中的每一种的供给量对应的着色剂供给量数据,所述多个砖型中的每一种具有不同的外观。 控制器适于根据所选择的砖型控制着色剂从所述着色剂供应供应到所述挤压容器中。 计算机可以连接到控制器进行数据传输。 因此,计算机可以用作用户和装置之间的接口。
    • 13. 发明申请
    • Process for the control of an injection-moulding machine
    • 注射成型机的控制过程
    • US20030075818A1
    • 2003-04-24
    • US10268126
    • 2002-10-10
    • Rupert MorwaldEngelbert KastnerWalter Eglseer
    • B29C045/76B29C045/84
    • G05B19/409B29C45/76B29C45/84B29C2037/906B29C2045/1796B29C2045/7606G05B2219/32128G05B2219/35283G05B2219/36133G05B2219/45244
    • Process for the control of an injection-moulding machine and optionally at least one handling apparatus allocated to same in which, in a form guiding the operator, the operating parameters required for an injection cycle to run are entered via an input unit into a data processing unit storing these operating parameters and then one or more injection cycles are carried out according to the stored operating parameters, safety conditions for the protection of machine parts by means of which certain movement sequences of the injection-moulding machine or the handling device are forbidden or allowed, being specified prior to the start of injection, there being provided on a screen an input mask on which one of several, preferably graphically displayed, basic movement modules is selected in each case and on which then, for every selected basic movement module, a safety condition in the form of logical, preferably Boolean operations is adjusted or adopted from the state of one or more different basic movement modules and finally stored.
    • 用于控制注塑机的方法和可选地分配给其的至少一个操作装置,其中以指导操作者的形式,运行喷射循环所需的操作参数经由输入单元输入到数据处理 存储这些操作参数的单元,然后根据存储的操作参数执行一个或多个喷射循环,用于保护机器部件的安全条件,通过该安全条件,注射成型机或处理装置的某些运动顺序被禁止或 允许在注射开始之前被指定,在屏幕上提供输入掩模,在每个情况下选择几个,优选图形显示的基本移动模块中的一个,并且然后,对于每个所选择的基本移动模块, 以逻辑,优选布尔运算的形式的安全条件从一个或多个不同的状态调整或采用 nt基本运动模块,最后存储。
    • 15. 发明申请
    • APPARATUS FOR ALTERING THE PHYSICAL PROPERTIES OF FLUIDS
    • 改变流体物理性质的装置
    • US20020060379A1
    • 2002-05-23
    • US09294220
    • 1999-04-16
    • COACH WEITHOMAS LI LIANG
    • B06B001/02B29C045/76
    • B63H1/18B29C45/568B29C45/7646B29C2945/76538B29C2945/76759B29C2945/76859Y10S416/50
    • A system for fluid processing is provided to control shear, point velocity and pressure in either a Newtonian or non-Newtonian fluid which includes creation of three fields, namely a dynamic microshear field, a dynamic velocity field and a dynamic pressure field, with the fields being created by the injection of energy between 1 KHz and 10 MHz into the fluid. Control is achieved by control of the angle at which mechanical energy is delivered, steering and/or focusing of the energy, control of the amplitude of the energy waveform, of the energy, and control of the frequency of the energy in one embodiment to eliminate standing waves. By controlling the three fields, the system is able to control overall fluid behavior. In one embodiment, energy is injected into a fluid at any angle to the direction of flow assuming the fluid is flowing, with the injected energy providing a predetermined controllable zone of energy in the fluid at the region of energy injection. In another embodiment, the container itself is a transducer that acts as a processor, where the energy comes from the container itself. In a further embodiment, a phased array is used for electronically steering and focusing energy to any point within the fluid volume to provide for the desired shear, velocity and pressure distributions. Note that the direction and focusing of the injection of energy is turnable by physically moving a transducer or by the use of a phased array.
    • 提供用于流体处理的系统以控制牛顿或非牛顿流体中的剪切,点速度和压力,包括创建三个场,即动态微锯齿场,动态速度场和动态压力场,其中场 通过在1KHz和10MHz之间的能量注入到流体中而产生。 控制是通过控制机械能量传递的角度,能量的转向和/或聚焦,能量波形的幅度的控制以及能量的频率的控制来实现的,以消除 驻波。 通过控制三个场,系统能够控制整体流体行为。 在一个实施例中,假定流体流动,能量以与流动方向成任意角度注入流体中,注入的能量在能量注入区域中在流体中提供预定的可控的能量区。 在另一个实施例中,容器本身是用作处理器的换能器,其中能量来自容器本身。 在另一个实施例中,相控阵列用于电子转向和将能量聚焦到流体体积内的任何点以提供期望的剪切,速度和压力分布。 注意,通过物理移动换能器或通过使用相控阵列,可以转换能量注入的方向和聚焦。
    • 20. 发明申请
    • METHOD FOR INJECTION MOLDING OF PLASTIC MATERIALS USING GAS HOLDING PRESSURE IN MOLD
    • 使用气体保持压力在模具中注塑塑料材料的方法
    • US20040099978A1
    • 2004-05-27
    • US10306118
    • 2002-11-27
    • James W. Hendry
    • B29C045/00B29C045/34B29C045/42B29C045/76
    • B29C45/1704B29C2045/1707
    • A system and process for gas-assisted injection molding of plastic materials using gas holding pressure in the mold cavity. An infinitely controlled gas pressure valve is utilized to provide initial pressure in a sealed mold and the gas is vented to a prespecified pressure when plastic is injected into the mold cavity. Additional gas is injected into the plastic material from a gas pin assembly in order to force the plastic to completely fill the mold cavity and to provide a hollow cavity in the completed part. Once the injection molding process has been completed and the part has cooled and solidified, the mold is opened, and the completed plastic molded component or part is removed or ejected.
    • 在模具腔中使用气体保持压力的塑料材料的气体辅助注射成型的系统和方法。 使用无级控制的气体压力阀来在密封模具中提供初始压力,并且当将塑料注入到模腔中时,气体被排出到预定的压力。 额外的气体从气体针组件被注入到塑料材料中,以迫使塑料完全填充模腔并在完成的部分中提供中空腔。 一旦注射成型过程完成并且部件已经冷却和固化,则模具被打开,并且完成的塑料模制部件或部件被去除或排出。