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    • 4. 发明授权
    • Apparatus for portioning flowable materials
    • 用于分配可流动材料的装置
    • US07521077B2
    • 2009-04-21
    • US11335603
    • 2006-01-20
    • James Douglas Azzar
    • James Douglas Azzar
    • B29C45/40A23P1/10
    • G01F11/16A22C7/00A23P30/10G01F11/30G01F13/003G01F13/005
    • The invention relates to a portioning apparatus and a method. The apparatus includes a hopper and augers to push flowable material to a rotor. Retractable vanes on the rotor push the flowable material toward a fill slot as the rotor rotates. Below the fill slot, there is a mold plate with front and back mold cavities. In a front fill position, the mold plate is positioned so the front mold cavities are filled with flowable material from the fill slot while flowable material in the back mold cavities are pushed out by back knockouts. In a back fill position, the flowable material in the front mold cavities are pushed out by front knockouts while the back mold cavities are filled with flowable material from the fill slot. The mold plate reciprocatively oscillates between the front fill position and the back fill position for high output of portioned material.
    • 本发明涉及分割装置和方法。 该装置包括料斗和螺旋推运器,以将可流动材料推向转子。 当转子旋转时,转子上的可伸缩叶片将可流动材料推向填充槽。 在填充槽下方有一个具有前后模腔的模板。 在前填充位置,模板被定位成使得前模腔从填充槽填充有可流动的材料,而后模腔中的可流动材料被后敲模推出。 在后填充位置中,前模腔中的可流动材料被前敲口推出,而后模腔从填充槽填充有可流动的材料。 模具板在前部填充位置和后部填充位置之间往复摆动,用于高分散材料的输出。
    • 7. 发明申请
    • Fluid dispensing solenoid valve
    • 流体分配电磁阀
    • US20020148529A1
    • 2002-10-17
    • US09827091
    • 2001-04-05
    • Axel H. BerndorferIvan Rafael Samalot
    • B65B001/08
    • G01F11/14F01M9/02G01F11/16
    • A fluid dispensing solenoid valve includes a plunger tube that forms an inlet orifice and an outlet orifice. A plunger that forms a fluid chamber is slidably disposed within the plunger tube. The plunger is movable between a fluid fill configuration, wherein the fluid chamber communicates with the inlet orifice to allow the fluid chamber to be filled and a fluid dump configuration, wherein the fluid chamber communicates with the outlet orifice to allow the fluid chamber to be emptied. The fluid dispensing solenoid valve is used to dispense a very accurate quantity of fluid in very controllable manner.
    • 流体分配电磁阀包括形成入口孔和出口孔的柱塞管。 形成流体室的柱塞可滑动地设置在柱塞管内。 柱塞可在流体填充构型之间移动,其中流体室与入口孔连通以允许流体室被填充和流体排放构型,其中流体室与出口孔连通以允许流体室被排空 。 流体分配电磁阀用于以非常可控的方式分配非常精确的流体量。
    • 8. 发明授权
    • Apparatus and method for dispensing a product
    • 用于分配产品的装置和方法
    • US06415961B2
    • 2002-07-09
    • US09866832
    • 2001-05-30
    • Philippe Bonningue
    • Philippe Bonningue
    • G01F1104
    • G01F11/16G01F11/04G01F11/082
    • A dispensing member for a container may comprise a piston configured to slide between a first position and a second position inside the body of the dispensing member in response to pressure of a product exerted on the piston. A variable volume chamber may be at least partially defined by the piston and configured to communicate with a container. The first position of the piston may maximize a volume of the variable volume chamber, and the second position of the piston may minimize the volume of the variable volume chamber. A difference between the maximum volume and the minimum volume may comprise a first volume. The dispensing member may also include an outlet for passing product from the variable volume chamber as the piston moves from the first position to the second position. The dispensing member may be configured to dispense a first amount of product up to the first volume and, depending on a manner in which pressure of a product is exerted on the piston, a second amount of product.
    • 用于容器的分配构件可以包括构造成响应于施加在活塞上的产品的压力而在分配构件的主体内部的第一位置和第二位置之间滑动的活塞。 可变体积腔室可以至少部分地由活塞限定并且构造成与容器连通。 活塞的第一位置可以使可变容积室的体积最大化,并且活塞的第二位置可以使可变容积室的体积最小化。 最大体积和最小体积之间的差可以包括第一体积。 当活塞从第一位置移动到第二位置时,分配构件还可以包括用于使产品从可变容积室通过的出口。 分配构件可以被配置为分配第一量的产品直到第一容积,并且取决于产品的压力施加在活塞上的方式第二量的产品。
    • 10. 发明授权
    • Valve for sampling a liquid specimen
    • 用于取样液体样品的阀
    • US5390552A
    • 1995-02-21
    • US969574
    • 1992-10-30
    • Takashi DemachiToshiaki Kuroda
    • Takashi DemachiToshiaki Kuroda
    • F16K3/314G01F11/16G01F11/22G01N1/00G01N1/10
    • G01N35/1097G01F11/16G01F11/22
    • A sampling valve comprises two fixed elements, and a movable element held between these fixed elements, in which a flow-in passage (Q) is provided at one fixed element so as to communicate with at least one of the metering passages (P1) , . . . . Plural flow-out passages (R1), (R2), . . . are provided at the other or one fixed element so as to communicate with different metering passages individually. Relay passages (S1), . . . are also provided at the one or other fixed element so as to mutually connect the metering passages (P1), (P2), . . . in specified combinations. In such a construction, plural sampling routes are formed in the sampling valve. In the sampling valve for aspirating and pushing liquid specimens such as blood in cylindrical shape and removing it quantitatively, only the portion necessary for measurement may be selected and sampled.
    • 采样阀包括两个固定元件和一个固定在这些固定元件之间的可移动元件,其中流入通道(Q)设置在一个固定元件上,以与至少一个计量通道(P1)连通, 。 。 。 。 多个流出通道(R1),(R2),。 。 。 设置在另一个或一个固定元件上,以便分别与不同的计量通道连通。 继电器通道(S1),。 。 。 还设置在一个或另一个固定元件上,以便相互连接计量通道(P1),(P2)。 。 。 以指定的组合。 在这种结构中,在采样阀中形成多个采样路线。 在用于抽吸和推压诸如血液的液体样品的取样阀中,并定量除去,只能选择和取样测量所需的部分。