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    • 2. 发明授权
    • Device and method for treating excavated material
    • 处理挖掘材料的装置及方法
    • US06953166B2
    • 2005-10-11
    • US10433157
    • 2001-11-29
    • Hans Jürgen Schenk
    • Hans Jürgen Schenk
    • B02C18/14B07B1/15B09C1/00B02C13/28
    • B09C1/00B02C18/142B02C2018/188B07B1/155
    • An apparatus suitable for treating mineral material, particularly excavated earth, has two rollers that rotate in opposite directions, on which a plurality of elements is disposed, the elements serving to transport and reduce the material in case its particle size is too large. Elements that are designed to exert a notch effect onto particle sizes larger than a minimum size are provided for reducing brittle and large-particle components of the mineral material, in particular. The reduction by means of the notch effect has been proven to save energy and subject machines to low wear. The elements that produce the notch effect can also reduce wood (tree stumps).
    • 适用于处理矿物材料,特别是挖掘土的装置具有两个相反方向旋转的辊,多个元件设置在该辊上,用于在颗粒尺寸太大的情况下运输和减少材料。 设计用于对大于最小尺寸的粒度施加切口效应的元件被提供用于减少矿物材料的脆性和大颗粒成分。 通过缺口效应的减少已经被证明可以节省能源和本机以降低磨损。 产生缺口效应的元素也可以减少木材(树桩)。
    • 5. 发明授权
    • Milling device for floors, rock, excavated material or other material
    • 地板,岩石,挖掘材料或其他材料的铣削装置
    • US07284345B2
    • 2007-10-23
    • US10472694
    • 2002-12-06
    • Jürgen Schenk
    • Jürgen Schenk
    • E02F3/96
    • E02F7/06E01C21/00E01C23/088E01C2301/50E02F3/407
    • The milling apparatus (1) has a bucket with a receiving chamber and has a milling unit with a milling rotor (14). The receiving chamber has a receiving opening (4) and is embodied as a bucket (2). On the bottom of the bucket (2), a through opening (19) is provided, which leads into a milling chamber (12). The milling rotor (14) can move material both into the receiving chamber and out of it again. To achieve both modes of operation, in a first embodiment a drive mechanism rotating in a predetermined direction (D) is provided; a beating arm (16) is associated with the first mode of operation, and a further beating arm (24) is associated with the second mode of operation. In another embodiment, which makes do with a single beating arm (16), the milling unit (54) can be operated in two different working positions via a turner. The positions differ from one another by a 180° rotation about a vertical axis that is perpendicular to the axis of rotation of the milling rotor (14).
    • 研磨装置(1)具有带有接收室的铲斗,并具有带有铣削转子(14)的铣削单元。 接收室具有接收开口(4)并被实施为桶(2)。 在铲斗(2)的底部设置有通向开口(19)的通孔(19),其通向研磨室(12)。 铣削转子(14)可以将材料两者都移动到接收室中并再次移出。 为了实现这两种操作模式,在第一实施例中,提供沿预定方向(D)旋转的驱动机构; 跳动臂(16)与第一操作模式相关联,并且另一跳动臂(24)与第二操作模式相关联。 在使用单个打浆臂(16)做出的另一个实施例中,铣削单元(54)可以经由转盘在两个不同的工作位置操作。 相对于垂直于铣削转子(14)的旋转轴线的垂直轴线,这些位置彼此相差180°旋转。
    • 6. 发明授权
    • Treatment method and device, in particular for excavation material
    • 处理方法和装置,特别是挖掘材料
    • US07182204B2
    • 2007-02-27
    • US10471008
    • 2002-03-08
    • Jürgen Schenk
    • Jürgen Schenk
    • B03B1/04
    • B01F13/0013B01F3/18B07B1/15
    • A method and an apparatus for processing mixtures of material which contain a coarse component (3) and a predominantly cohesive fine component (4). Both the mixture of material (2) and an added material (5) are delivered in continuous streams of material (11, 23) to a homogenizing and separating device (12). The homogenizing and separating device (12) serves to mix the added material (5) and the mixture of material (2) uniformly with one another, so as to put the fine component (4) of the mixture of material (2) into a state such that the fine components (4) can be separated from the coarse component (3). As a result of the continuous delivery of the mixture of material (2) and added material (5) to the homogenizing and separating device (12), intimate mixing of the added material (5) and fine component (4) is achieved so that the separation of the coarse component and fine component can take place directly in the same device. With this method, mixtures of material (2) can be processed without waste into two re-usable products.
    • 一种用于处理含有粗组分(3)和主要是内聚精细组分(4)的材料混合物的方法和装置。 材料(2)和添加材料(5)的混合物都以连续的材料流(11,23)输送到匀浆和分离装置(12)。 均化分离装置(12)用于将添加的材料(5)和材料(2)的混合物彼此均匀地混合,以将材料(2)的混合物的精细组分(4)放入 状态,使得精细组分(4)可以与粗组分(3)分离。 通过将材料(2)和添加材料(5)的混合物连续输送到匀浆和分离装置(12)的结果,实现了添加的材料(5)和精细组分(4)的紧密混合,使得 粗分量和精细分量的分离可以直接在相同的装置中进行。 通过这种方法,可以将材料(2)的混合物无浪费地加工成两个可重复使用的产品。
    • 9. 发明授权
    • Internal combustion engine with electronic components controlled from a central unit
    • 具有从中央单元控制的电子部件的内燃机
    • US06188954B1
    • 2001-02-13
    • US09113169
    • 1998-07-10
    • Gerhard HettichJürgen Schenk
    • Gerhard HettichJürgen Schenk
    • F02D4500
    • B60R16/0239F02F7/006
    • An internal combustion engine with electronic components controlled from a central unit, where electrical leads as conductive connection for power transmission and data transmission between the electronic components of the internal combustion engine are avoided completely wherever possible. The electronic components to be controlled from a central unit are arranged, together with the central unit, on the engine in a space that is fully enclosed by a metal housing part, power is supplied to at least some of the electronic components by high frequency electromagnetic waves generated and radiated without cables by a high frequency source arranged in the space enclosed by the metal housing part and the components to be supplied with power by the radiated electromagnetic waves from the high frequency source each have at least one receiving device for receiving the electromagnetic waves.
    • 具有从中央单元控制的电子部件的内燃机,其中尽可能避免电引线作为内燃机的电子部件之间的动力传递和数据传输的导电连接。 从中央单元控制的电子部件与中央单元一起在由金属壳体部分完全包围的空间中的发动机上布置,通过高频电磁供应至少一些电子部件 由金属壳体部分包围的空间中的高频源而不用电缆产生和辐射的波和由高频源的辐射电磁波供应的部件各自具有至少一个用于接收电磁波的接收装置 波浪。