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    • 7. 发明授权
    • Emptying station for bulk bags, and process of emptying bulk bags in the station
    • 散装袋排空站,以及在车站内排空散装袋的过程
    • US06293318B1
    • 2001-09-25
    • US09635394
    • 2000-08-10
    • Manfred SchmidtJurgen OhlemacherJohannes Ehrlich
    • Manfred SchmidtJurgen OhlemacherJohannes Ehrlich
    • B65B104
    • B65B69/0008
    • This emptying station is suited for emptying contents from bulk bags, especially bulk bags containing particulate hazardous materials as their contents. The emptying station includes a bulk-bag receptacle body having a top opening and bottom outlet, a bulk-bag cutting subassembly in the receptacle body, a raisable and lowerable top closure, and a sealing structure. The cutting subassembly includes at least three cutters each having an associated blade facing upwards, with the cutters collectively arranged to define a pyramid having an apex, and puncture pin positioned at the apex to point upwardly. In operation, a bulk bag is suspended from the top closure, then lowered with the top closure to pass the bulk bag into the receptacle body and cause the substantially flat bottom of the bulk bag to be pieced by the puncture pin and cut by the blades of the cutters to start emptying contents from the bulk bags to the bottom outlet. The sealing structure seals gaps formed between inner surfaces of the side walls and the bulk bag to prevent dust from escaping through the top opening. As the bulk bag is emptied, the top closure continues to lower until the top closure is positioned in a closed state in the top opening. Spray nozzles are preferably arranged in the receptacle body for external and/or internal rinsing of the emptied bulk bag.
    • 这个排空台适用于从散装袋中排放内容物,特别是含有颗粒状危险物质的散装袋作为其内容物。 排空站包括具有顶部开口和底部出口的散装袋容器主体,容器主体中的散装袋切割子组件,可升高和可下降的顶部封闭件以及密封结构。 切割子组件包括至少三个切割器,每个刀具具有面向上的相关联的刀片,其中刀具共同设置为限定具有顶点的金字塔,以及定位在顶点处的针刺针向上指向。 在操作中,散装袋从顶盖悬挂下来,然后与顶盖一起降低,以使散装袋通过容器体,并使散装袋的基本上平坦的底部被穿刺针拼接并被刀片切割 的切割器开始将内容物从散装袋排出到底部出口。 密封结构密封形成在侧壁和散装袋的内表面之间的间隙,以防止灰尘从顶部开口逸出。 当散装袋被排空时,顶盖继续下降,直到顶盖在顶部开口中处于关闭状态。 喷嘴优选地布置在容器主体中用于排空的散装袋的外部和/或内部漂洗。
    • 8. 发明申请
    • Magnetorheological Force Transmission Device
    • 磁流变力传动装置
    • US20090133976A1
    • 2009-05-28
    • US12276883
    • 2008-11-24
    • Holger BoseJohannes EhrlichPatrick MeneroudGregory Magnac
    • Holger BoseJohannes EhrlichPatrick MeneroudGregory Magnac
    • F16F9/53H01F1/44
    • F16F9/535
    • The present invention discloses a magnetorheological force transmission device which comprises at least two solid body parts 1a, 1b adapted to be moved in a substantially translational manner against each other, and an MRF gap 2, which is at least partially fillable and/or filled with a magnetorheological material 2MRF, the MRF gap 2 being arranged at least partially inside one of or both of the two parts and/or being arranged at least partially in-between the two parts, and which is characterized in that the magnetic circuit system of the magnetorheological force transmission device being designed and/or disposed to generate a magnetic flux within at least part of the MRF gap comprises at least one electromagnet 3, at least one permanent magnet 4 and at least one magnetic-field-balancing insert 5, 5a, 5b and/or magnetic isolator 7, 7a, 7b.
    • 本发明公开了一种磁流变力传递装置,其包括至少两个固体本体部分1a,1b,该固体本体部分1a,1b适于以基本平移的方式彼此移动;以及MRF间隙2,其至少部分地可填充和/或填充 磁流变材料2MRF,MRF间隙2至少部分地布置在两个部分之一或两者内部和/或至少部分地布置在两个部分之间,其特征在于,所述磁路系统 磁流变力传递装置被设计和/或设置成在MRF间隙的至少一部分内产生磁通量,包括至少一个电磁体3,至少一个永磁体4和至少一个磁场平衡插入件5,5a, 5b和/或磁隔离器7,7a,7b。
    • 9. 发明授权
    • Magnetorheological force transmission device
    • 磁流变力传动装置
    • US08205728B2
    • 2012-06-26
    • US12276883
    • 2008-11-24
    • Holger BöseJohannes EhrlichPatrick MeneroudGregory Magnac
    • Holger BöseJohannes EhrlichPatrick MeneroudGregory Magnac
    • F16F9/53
    • F16F9/535
    • The present invention discloses a magnetorheological force transmission device which comprises at least two solid body parts adapted to be moved in a substantially translational manner against each other, and an MRF gap, which is at least partially fillable and/or filled with a magnetorheological material 2MRF, the MRF gap being arranged at least partially inside one of or both of the two parts and/or being arranged at least partially in-between the two parts, and which is characterized in that the magnetic circuit system of the magnetorheological force transmission device being designed and/or disposed to generate a magnetic flux within at least part of the MRF gap comprises at least one electromagnet, at least one permanent magnet and at least one magnetic-field-balancing insert and/or magnetic isolator.
    • 本发明公开了一种磁流变力传递装置,其包括至少两个固体部分,其适于以基本上平移的方式彼此移动,以及MRF间隙,其至少部分地填充和/或填充有磁流变材料2MRF MRF间隙至少部分地布置在两个部分中的一个或两个部分内和/或至少部分地布置在两个部分之间,其特征在于,磁流变力传递装置的磁路系统为 设计和/或设置成在MRF间隙的至少部分内产生磁通量包括至少一个电磁体,至少一个永磁体和至少一个磁场平衡插入和/或磁隔离器。
    • 10. 发明申请
    • ACTIVE VIBRATION-EXTINGUISHER CONTAINING MAGNETO- OR ELECTRORHEOLOGICAL FLUIDS, METHOD FOR REDUCING VIBRATIONS AND USES THEREOF
    • 含有磁力或电磁流体的主动振动灭火器,减少振动的方法及其用途
    • US20100307877A1
    • 2010-12-09
    • US12395770
    • 2009-03-02
    • Holger BoseThomas GerlachJohannes EhrlichAngelo MerloIppolito Massimo
    • Holger BoseThomas GerlachJohannes EhrlichAngelo MerloIppolito Massimo
    • F16F15/03F16F7/00F16F9/53F16F7/10
    • F16F7/1005F16F2224/045
    • Present invention relates to a device for reducing vibrations of a vibrating object as well as a method for reducing vibrations, wherein the perturbing vibrations are reduced drastically by induction of counter-forces. In general, vibrations of equal frequency (counter-vibration) as the perturbing vibration are generated. The force generated by the counter-vibration acts onto the vibrating object, whose amplitude of vibration is to be reduced. The phasing of the counter-vibration is antipodal to the vibration to be reduced, preferably the force of the generated counter-vibration is greater than the force being necessary for compensation of the perturbing vibration. The transfer of the force of the counter-vibration onto the vibrating object is affected by means of a magnetorheological or electrorheological material, whereby the absolute value of the transmitted force is adjusted by the magnitude of an applied magnetical or electric field. With increasing strength of the magnetical or electric field, the magnetorheological or electrorheological material is stiffened increasingly. With optimal adjustments of the strength of the electric or magnetic field, the transmitted force equals the perturbing force and the perturbing vibration is compensated.
    • 本发明涉及一种用于减少振动物体的振动的装置以及减少振动的方法,其中通过引导反作用力使扰动振动急剧减小。 通常,产生相同频率(相对振动)作为扰动振动的振动。 由反作用力产生的力作用在振动的振动对象上,振动的振幅要减小。 相反振动的相位对于要减小的振动是对抗的,优选地,产生的反作用力的力大于补偿扰动振动所需的力。 通过磁流变或电流变材料影响反振动力到振动物体的转移,由此通过施加的磁场或电场的大小来调节透射力的绝对值。 随着磁场或电场强度的增加,磁流变或电流变材料逐渐变硬。 通过对电场或磁场的强度进行最佳调整,传递力等于扰动力并且补偿扰动振动。