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    • 1. 发明申请
    • Method and device for selling goods and for handling over the purchased goods
    • 销售商品和处理所购商品的方法和装置
    • US20050228537A1
    • 2005-10-13
    • US11101197
    • 2005-04-07
    • Karl-Heinz UnkelbachHans-Dieter Baumgart
    • Karl-Heinz UnkelbachHans-Dieter Baumgart
    • G07F7/00G07G1/00A63F9/02G06F17/00
    • G07F7/00G07G1/00
    • The invention relates to a logistics system and to a method for selling goods, wherein within a display area, goods are presented; an individual PIN is allocated to each customer; goods selected by customers are conveyed to at least one intermediate storage area by way of a transport device; the goods belonging to a particular customer are identified by verifying the PIN and are conveyed to at least one storage area which is reserved for this customer; and after payment and collection from the storage area in the intermediate storage area the goods are handed over to the customer in a goods collection area. Known methods are associated with the disadvantage in that the customer can only select generic goods. The invention avoids this in that at least some of the goods are offered to the customer for sale as concretely singled-out goods, wherein the customer marks these concretely singled-out goods with his or her PIN, hands them over to a transport device, and wherein subsequently the goods are conveyed from the sales space to the storage area by way of at least one transport device.
    • 本发明涉及一种物流系统和一种销售商品的方法,其中在显示区域内呈现货物; 个人PIN分配给每个客户; 客户选择的货物通过运输装置传送至至少一个中间仓储区域; 属于特定客户的货物通过验证PIN被识别并被传送到为该客户保留的至少一个存储区域; 在中间存储区域的存储区域的付款和收集之后,货物在货物收集区域中交给客户。 已知的方法与缺点在于,客户只能选择通用商品。 本发明避免了这一点,因为至少有一些货物被提供给客户作为具体单出货物,其中客户用他或她的PIN标记这些具体单独的货物,将其交给运输装置, 并且其中随后通过至少一个输送装置将货物从销售空间传送到存储区域。
    • 2. 发明授权
    • Magnet system
    • 磁铁系统
    • US5300910A
    • 1994-04-05
    • US804778
    • 1991-12-09
    • Karl-Heinz UnkelbachMarlene MarinescuNicolae Marinescu
    • Karl-Heinz UnkelbachMarlene MarinescuNicolae Marinescu
    • B03C1/02H01F7/02
    • H01F7/0284
    • In a known magnet system, specifically for magnetic separators, having homogeneously magnetized magnet blocks arranged in circular ring shape, the magnet blocks have their magnetization directions aligned differently from one to another and established in accordance with a predetermined mathematical formula. While a magnetic field running almost uniformly over the whole region of the magnet system is thus produced, the magnet blocks are made trapezoidal in cross section and, because of the many distinct magnetization directions, require separate fabrication. Both the fabrication and the assembly of these magnet blocks are therefore relatively complicated and time-consuming. In accordance with the invention, however, the fabrication and the assembly of the magnet blocks into a magnet system are quite substantially simplified and improved by virtue of the fact that the magnet blocks (1) are made square in cross section.
    • 在已知的具有磁性分离器的磁体系统中,具有排列成圆环形状的均匀磁化的磁体块,磁体块的磁化方向根据预定的数学公式不同地排列而不同。 虽然这样产生了几乎均匀地在磁体系统的整个区域上运行的磁场,但磁体块的横截面是梯形的,并且由于许多不同的磁化方向,需要单独的制造。 因此,这些磁体块的制造和组装都相对复杂和耗时。 然而,根据本发明,由于磁体块(1)的横截面为正方形,磁体块的制造和组装被大大简化和改进。
    • 4. 发明授权
    • Method and apparatus for the separation of magnetizable particles from a
finely-granular solid suspended in a carrier medium by means of intense
field-magnet separation
    • 用于通过强磁场分离从悬浮在载体介质中的细颗粒状固体分离可磁化颗粒的方法和装置
    • US4134829A
    • 1979-01-16
    • US730072
    • 1976-10-06
    • Hans BenderKarl-Heinz UnkelbachWolf Zabel
    • Hans BenderKarl-Heinz UnkelbachWolf Zabel
    • B03C1/035B03C1/22
    • B03C1/035
    • Magnetizable particles are separated from a sludge which includes fine-grained particles and the magnetizable particles suspended in a carrier by creating a laminar flow of the sludge over a surface which is disposed at an angle to the horizontal. The surface is included in a magnetic system which has a plurality of supra-conducting magnets with coils which are energizable to provide alternate north and south poles longitudinally and transversely of the surface. The supra-conducting magnets each have an end adjacent the surface and short-circuited opposite ends to amplify the magnetic force in the direction of the surface. Magnetic particles with greater susceptibility adhere to the surface near the end of the surface which receives the laminar flow and particles with lesser susceptibilities adhere to the surface at respective distances from that end so that the particles are classified with respect to magnetic susceptibility when they are removed by a plurality of scrapers which travel transversely of the surface. Advantageously, the scrapers are formed as an endless belt which carries a plurality of scraper blades.
    • 通过在与水平方向成一角度设置的表面上产生污泥的层流,将可磁化颗粒与包含细粒颗粒和可磁化颗粒悬浮在载体中的污泥分离。 该表面包括在磁性系统中,该磁性系统具有多个具有线圈的超导磁体,该磁体可激励以在该表面上纵向和横向地提供交替的北极和南极。 超导磁体各自具有邻近表面的端部和短路的相对端,以放大沿表面方向的磁力。 具有较大磁化率的磁性颗粒附着在接受层流的表面端部附近,表面附近具有较小磁化率的颗粒在与该端相距的距离处附着在表面上,使得颗粒在去除时相对于磁化率分类 通过横向于表面行进的多个刮刀。 有利地,刮板形成为携带多个刮刀的环形带。
    • 5. 发明授权
    • Process of separating mixed plastic waste into light and heavy plastic
phases
    • 将混合塑料废物分解成轻质和重质塑料相的工艺
    • US6095441A
    • 2000-08-01
    • US73454
    • 1998-05-06
    • Karl-Heinz UnkelbachJochen Neureither
    • Karl-Heinz UnkelbachJochen Neureither
    • B09B5/00B03B5/32B03B7/00B29B17/00B29B17/02B29K105/26B02C19/12
    • B29B17/02B03B5/32B29B2017/0244B29K2027/06B29K2105/065B29K2705/00Y02W30/524Y02W30/528Y02W30/622
    • According to the present invention, plastic waste mixture is first comminuted, and if required, subjected to magnetic separation and/or eddy-current separation, by which separable metals are removed. The comminuted plastic waste mixture is then mixed with a separation liquid in a mixing tank which has an outlet for heavy phase impurities. This suspension is directed to a hydrocyclone for a first separation procedure. The hydrocyclone is optimally adjusted in such a manner that any remaining unwanted heavy phase impurities together with the heavy phase undesirable plastics, such as the PVC fraction of the plastic waste mixture, is separated from the balance of the plastic waste materials as hydrocyclone underflow. The heavy underflow of the mixing tank and the hydrocyclone underflow may be further reprocessed separately or jointly. The hydrocyclone overflow now directly reaches a sorting centrifuge in which the remaining plastic waste mixture is subjected to further separation under the effect of centrifugal forces. The products discharged from that separating operation include a heavier phase plastic which can be well utilized for feedstock recycling, e.g. in a blast furnace and a fraction of light plastic waste (PO) which can be utilized for material recycling.
    • 根据本发明,首先粉碎塑料废弃物混合物,如果需要,进行磁选分离和/或涡流分离,通过该分离和/或涡流分离除去可分离的金属。 然后将粉碎的塑料废料混合物与具有用于重相杂质的出口的混合罐中的分离液混合。 该悬浮液指向用于第一分离程序的水力旋流器。 水力旋流器以如下方式进行最佳调节,使得任何剩余的不需要的重相杂质与重相不期望的塑料(例如塑料废料混合物的PVC部分)一起从塑料废料的余量与水力旋流器下溢分离。 混合罐和水力旋流器下溢的沉重下溢可以进一步单独地或联合地再处理。 水力旋流器溢流现在直接到达分选离心机,其中剩余的塑料废料混合物在离心力的作用下进行进一步分离。 从该分离操作排出的产品包括较重的相塑料,其可以很好地用于原料再循环。 在高炉和一小部分轻质塑料废料(PO)中,可用于材料回收利用。
    • 7. 发明授权
    • Apparatus and method for wet-mechanical processing of solids
    • 湿机械处理固体的装置和方法
    • US5342281A
    • 1994-08-30
    • US11287
    • 1993-01-29
    • Karl-Heinz UnkelbachGunther ArhelgerRolf Buettner
    • Karl-Heinz UnkelbachGunther ArhelgerRolf Buettner
    • D06M23/00B03B5/28B03B5/32B03B5/44B04B1/20B29B13/00B29B17/00B29B17/02
    • B03B5/32B03B5/44B04B1/20B29B17/02B04B2001/2041B29B2017/0203B29B2017/0231B29B2017/0244B29K2023/06B29K2023/12B29K2025/00B29K2027/06B29L2007/00B29L2031/3055B29L2031/3425Y02W30/524Y02W30/622
    • An apparatus is provided for the wet-mechanical separation of solids within a parting liquid into floats and sinks according to their density which includes a container rotatable about an axis provided with at least one opening for the admission of said solids to be separated and at least one separate opening for the discharge of the sinks, the floats and the parting liquid. A screw conveyor for separating the solids is arranged in the container. The screw conveyor is rotatable about the container axis with one set of helices for engaging the floats and another set of helices for engaging the sinks. A diaphragm plate is arranged axially on the screw conveyor between the admission opening for the solids to be separated and the discharge opening for the sinks such that one part of the screw conveyor conveys the sinks to the sinks discharge opening with its helices and another part of the screw conveyor conveys the floats to the floats discharge opening with its helices. The discharge opening for the parting liquid is arranged axially between the diaphragm plate and the discharge opening for the sinks. A radial dimension of an outside edge of the diaphragm plate from the axis of the rotatable container is greater than a radial spacing of the discharge opening from the axis.
    • 提供了一种装置,用于根据其密度将分离液体中的固体湿机械分离成浮体和水槽,该容器包括可绕轴线旋转的容器,该容器具有至少一个开口以允许待分离的固体,并且至少 一个独立的开口用于排放水槽,浮子和分离液体。 用于分离固体的螺旋输送机布置在容器中。 螺旋输送机可以围绕容器轴线旋转,具有用于接合浮子的一组螺旋和用于接合水槽的另一组螺旋。 隔膜板轴向地布置在螺旋输送机上,用于要分离的固体的进入口和用于水槽的排出口,使得螺旋输送机的一部分将水槽以其螺旋和另一部分的螺旋传送到水槽排放口 螺旋输送机将浮子传送到具有其螺旋的浮子排出口。 用于分离液体的排出口轴向地布置在隔膜板和用于水槽的排出口之间。 隔膜板的外边缘与可旋转容器的轴线的径向尺寸大于排出口与轴线的径向距离。