Zinke
Arthur Zinke, Pomerode BR
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20150093277 | Submersible Pump Assembly For Use In A Borehole - A submersible pump assembly for use in a borehole, including a screw pump and/or an eccentric screw pump with a longitudinal axis. The submersible assembly further includes a drive and a bearing arrangement for taking up and diverting the axial and/or radial forces arising during the operation of the screw pump andor eccentric screw pump. The drive is disposed, via a first coupling rod, at one end of the screw pump and/or eccentric screw pump and the bearing arrangement is assigned, via a second coupling rod, to the opposite end of the screw pump and/or eccentric screw pump along the longitudinal axis. | 04-02-2015 |
Arthur Zinke, Pomerode/sc BR
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20150369239 | Screw Pump With At Least Two Parts - A screw spindle pump constituted by at least two parts is disclosed. The first part includes a housing and at least one spindle system disposed in the housing and capable of being driven in a rotational manner. Furthermore, a pressure region disposed downstream of the spindle system and at least one outlet opening which is connected to the pressure region, the outlet opening discharging the delivery medium out of the pressure region. The second part includes at least one low-pressure chamber disposed upstream of the spindle system and at least one inlet opening for the delivery medium into the low-pressure chamber. The first part and the second part are coupled together, preferably in a rotational manner, so that they can assume at least two different relative positions. | 12-24-2015 |
20150369241 | Screw Pump - A screw spindle pump for the delivery of fluid media with a pump housing having an inlet channel with a first longitudinal axis, an outlet channel with a second longitudinal axis, a first drive spindle with a third longitudinal axis, and a second driven spindle. The spindles each include a profiled section between the inlet channel and the outlet channel, wherein the profiled sections of the spindles are engaged at least partially with one another and form, with the pump housing between the inlet channel and the outlet channel, a delivery section parallel to the longitudinal axis of the drive spindle with delivery chambers for the fluid medium. The second longitudinal axis of the outlet channel is disposed at an obtuse angle to the delivery section in the pump housing. The invention also relates to a method for operating a screw spindle pump. | 12-24-2015 |
Christophe Zinke, Grenoble FR
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20160065162 | ADVANCED THERMALLY COMPENSATED SURFACE ACOUSTIC WAVE DEVICE AND FABRICATION - This disclosure relates to a method of fabrication of a surface acoustic wave device comprising the step (a) of providing a piezoelectric structure, the step (b) of providing a dielectric structure, wherein the step (b) comprises a step (b1) of metalizing the dielectric structure, and the method further comprising the step (c) of bonding the metalized dielectric structure to the piezoelectric structure. | 03-03-2016 |
Jan-Arild Zinke, Porsgrunn NO
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20130341171 | Switching Device And A Switchgear - A switching device for electric power distribution, electrically connectable to an electrical conductor, the switching device including a breaker electrically connectable to the electrical conductor, and an electrically conductive housing to which the breaker is mounted, the switching device providing a current path between the breaker and the electrical conductor, and the housing houses a guiding member for operating the breaker, the guiding member being movable in relation to the housing, the housing having an outer surface, wherein the housing has a smooth outer shape to distribute the electric field generated by the voltage of the current through the switching device. A switchgear including such a switching device. | 12-26-2013 |
Kady Maxwell Zinke, Denver, CO US
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20140259737 | Traction-Configurable Foot Covering - A foot covering including a sleeve having a leading end and a trailing end, and the sleeve further having a bottom surface; a band flippably coupled to the sleeve, and having at least one surface of the band with a traction surface, wherein the foot covering has a first structural configuration in which the band and the sleeve are arranged to provide a certain level of traction, and a second configuration in which the band and the sleeve are arranged to provide another level of traction; wherein the band is selectively flappable between the first and second configuration. | 09-18-2014 |
Sandra Zinke, Vienna AT
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20090081246 | METHOD FOR ISOLATING HEPATITIS C VIRUS PEPTIDES - Described are methods for isolating Hepatitis C Virus peptides (HPs) that have a binding capacity to a MHC/HLA molecule or a complex comprising the HCV-peptide and the MHC/HLA molecule. In one aspect, these methods include providing a pool of HCV-peptide, said pool containing HCV-peptides which bind to said MHC/HLA molecule and HCV-peptides which do not bind to said MHC/HLA molecule, contacting said MHC/HLA molecule with said pool of HCV-peptides whereby a HCV-peptide which has a binding capacity to said MHC/HLA molecule binds to said MHC/HLA molecule and a complex comprising said HCV-peptide and said MHC/HLA molecule is formed, detecting and optionally separating said complex from the HCV-peptide which do not bind to said MHC/HLA molecule and optionally isolating and characterizing the HCV-peptide from said complex. Also described are immunogenic compositions that stimulate a specific T cell response to hepatitis C virus when administered to a subject in an effective amount. | 03-26-2009 |
Sandra Zinke, Alpena, MI US
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20110141189 | METALLIC INK JET PRINTING SYSTEM FOR GRAPHICS APPLICATIONS - A multi-phase system for creating a metallic effect on a substrate, comprising applying to the substrate a first ink jet ink comprising a dispersion of reflective metallic particles in a suitable carrier system, to form a reflective coating layer; and applying a second ink jet ink over the reflective coating layer to form a protective coating layer. Optionally, an undercoat layer is printed on the substrate prior to applying the first ink jet ink. The second ink jet comprises at least one crosslinkable polymer or is otherwise energy curable. The second ink jet ink optionally imparts a color to the metallic image. | 06-16-2011 |
20110169888 | METALLIC INK JET PRINTING SYSTEM FOR GRAPHICS APPLICATIONS - A multi-phase system for creating a metallic effect on a substrate, comprising applying to the substrate a first ink jet ink comprising a dispersion of reflective metallic particles in a suitable carrier system, to form a reflective coating layer; and applying a second ink jet ink over the reflective coating layer to form a protective coating layer. Optionally, an undercoat layer is printed on the substrate prior to applying the first ink jet ink. The second ink jet comprises at least one crosslinkable polymer or is otherwise energy curable. The second ink jet ink optionally imparts a color to the metallic image. | 07-14-2011 |
20120244317 | METALLIC INK JET PRINTING SYSTEM AND METHOD FOR GRAPHICS APPLICATIONS - A multi-phase system for creating a metallic effect on a substrate, comprising applying to the substrate a first ink jet ink comprising a dispersion of reflective metallic particles in a suitable carrier system, to form a reflective coating layer; and applying a second ink jet ink over the reflective coating layer to form a protective coating layer. Optionally, an undercoat layer is printed on the substrate prior to applying the first ink jet ink. The second ink jet comprises at least one crosslinkable polymer or is otherwise energy curable. The second ink jet ink optionally imparts a color to the metallic image. | 09-27-2012 |
20130083119 | METALLIC INK JET PRINTING SYSTEM FOR GRAPHICS APPLICATIONS - A multi-phase system for creating a metallic effect on a substrate, comprising applying to the substrate a first ink jet ink comprising a dispersion of reflective metallic particles in a suitable carrier system, to form a reflective coating layer; and applying a second ink jet ink over the reflective coating layer to form a protective coating layer. Optionally, an undercoat layer is printed on the substrate prior to applying the first ink jet ink. The second ink jet comprises at least one crosslinkable polymer or is otherwise energy curable. The second ink jet ink optionally imparts a color to the metallic image. | 04-04-2013 |
20130242016 | METALLIC INK JET PRINTING SYSTEM AND METHOD FOR GRAPHICS APPLICATIONS - A multi-phase system for creating a metallic effect on a substrate, comprising applying to the substrate a first ink jet ink comprising a dispersion of reflective metallic particles in a suitable carrier system, to form a reflective coating layer; and applying a second ink jet ink over the reflective coating layer to form a protective coating layer. Optionally, an undercoat layer is printed on the substrate prior to applying the first ink jet ink. The second ink jet comprises at least one crosslinkable polymer or is otherwise energy curable. The second ink jet ink optionally imparts a color to the metallic image. | 09-19-2013 |
Stuart Zinke, Coeur D'Alene, ID US
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20130292925 | Collapsible Cart - Described is a collapsible cart that provides substantial stability when operated. A pair of enlarged wheels allow an operator to lift one end of the cart to traverse rough surfaces as needed. Enlarged wheels are mounted outside an overhead profile of the collapsible cart thereby providing lateral and other stability not previously possible. A first shelf, tray, bucket or working surface may be collapsed to contact or mate with a second such shelf to create an easily transportable or storable collapsed structure. A telescoping handle allows a collapsed cart to serve as a hand dolly. | 11-07-2013 |