Patents by Inventor Jurgen Pfister
Jurgen Pfister has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
-
Patent number: 8637789Abstract: The present invention relates to a process for producing a metallized textile surface having one or more articles needing or generating electric current. A formulation having at least one metal powder is applied as a component atop a textile surface patternedly or uniformly. At least one article needing or generating electric current is fixed in at least two locations where formulation was applied. A further metal is deposited on the textile surface.Type: GrantFiled: February 19, 2008Date of Patent: January 28, 2014Assignee: BASF SEInventors: Rene Lochtman, Norbert Wagner, Jürgen Kaczun, Jürgen Pfister, Antonino Raffaele Addamo, Ralf Nörenberg
-
Patent number: 8633270Abstract: The present invention relates to a dispersion for the application of a metal layer on a non-electrically-conductive substrate comprising an organic binder component, a metal component, and also a solvent component. The invention further relates to processes for the production of the dispersion, processes for the production of a non-structured or structured metal layer with the aid of the dispersion, and also to the resultant substrate surfaces and their use.Type: GrantFiled: June 8, 2009Date of Patent: January 21, 2014Assignee: BASF SEInventors: Rene Lochtman, Norbert Wagner, Jürgen Kaczun, Jürgen Pfister
-
Patent number: 8486292Abstract: Magnetorheological formulations, processes for preparing the same and uses therefor, the formulations comprising: (a) an ionic liquid comprising anions and cations, and (b) dispersed magnetizable particles having a mean diameter of 0.Type: GrantFiled: September 18, 2007Date of Patent: July 16, 2013Assignee: BASF SEInventors: Christoffer Kieburg, Jürgen Pfister, Claus Gabriel, Günter Oetter, Martin Laun, Rene Lochtman
-
Patent number: 8247320Abstract: The invention relates to a process for producing electrodes for solar cells, the electrode being configured as an electrically conductive layer on a substrate for solar cells, in which, in a first step, a dispersion comprising electrically conductive particles is transferred from a carrier to the substrate by irradiating the dispersion with a laser and, in a second step, the dispersion transferred to the substrate is dried and/or hardened to form the electrically conductive layer.Type: GrantFiled: June 9, 2009Date of Patent: August 21, 2012Assignee: BASF SEInventors: Rene Lochtman, Norbert Wagner, Jürgen Kaczun, Jürgen Pfister
-
Patent number: 8132445Abstract: The invention relates to a rheometer having a rotatable shaft (1) on which a rotor plate (2) is fastened, and having a measuring instrument (10) for measuring torques exerted on the rotor plate (2) by a substance (6) to be studied during rotation of the shaft (1), a first measurement gap (5) for holding the substance (6) to be studied being formed between a first side (3) of the rotor plate (2) and a first shear face (4) and a second measurement gap (9) for holding the substance (6) to be studied being formed between a second side (7) of the rotor plate (2), opposite the first side, and a second shear face (8). The rheometer contains a magnet for generating a magnetic field in the first and second measurement gaps (5, 9).Type: GrantFiled: August 16, 2007Date of Patent: March 13, 2012Assignee: BASF SEInventors: Martin Laun, Jürgen Pfister, Rene Lochtman, Günter Oetter, Claus Gabriel
-
Publication number: 20110086231Abstract: The present invention relates to a dispersion for the application of a metal layer on a non-electrically-conductive substrate comprising an organic binder component, a metal component, and also a solvent component. The invention further relates to processes for the production of the dispersion, processes for the production of a non-structured or structured metal layer with the aid of the dispersion, and also to the resultant substrate surfaces and their use.Type: ApplicationFiled: June 8, 2009Publication date: April 14, 2011Inventors: Rene Lochtman, Norbert Wagner, Jürgen Kaczun, Jürgen Pfister
-
Publication number: 20110062134Abstract: Processes for producing a metalized textile surface for one or more articles needing or generating electric current. The process comprises (A) applying a formulation comprising at least one metal powder (a) as a component to a textile surface in a patterned or uniform manner; (B) fixing the one or more articles needing or generating electric current in at least two locations of the textile surface where the formulation was applied in step (A); and (C) depositing a further metal on the textile surface. The formulation may comprise a metal powder, a binder, an emulsifier and, if appropriate, a rheology modifier.Type: ApplicationFiled: February 19, 2008Publication date: March 17, 2011Applicant: BASF SEInventors: Rene Lochtman, Norbert Wagner, Jürgen Kaczun, Jürgen Pfister, Antonino Raffaele Addamo, Ralf Nörenberg
-
Publication number: 20110030454Abstract: The invention relates to a rheometer having a rotatable shaft (1) on which a rotor plate (2) is fastened, and having a measuring instrument (10) for measuring torques exerted on the rotor plate (2) by a substance (6) to be studied during rotation of the shaft (1), a first measurement gap (5) for holding the substance (6) to be studied being formed between a first side (3) of the rotor plate (2) and a first shear face (4) and a second measurement gap (9) for holding the substance (6) to be studied being formed between a second side (7) of the rotor plate (2), opposite the first side, and a second shear face (8). The rheometer contains a magnet for generating a magnetic field in the first and second measurement gaps (5, 9).Type: ApplicationFiled: August 16, 2007Publication date: February 10, 2011Inventors: Martin Laun, Jürgen Pfister, Rene Lochtman, Günter Oetter, Claus Gabriel
-
Publication number: 20100307601Abstract: Methods comprising: providing a suspension comprising magnetizable particles; and delivering the suspension through a gap (3), wherein a magnetic field is applied in the gap, such that the suspension is sheared in the gap in the presence of the magnetic field to form a conditioned suspension; and devices for conditioning suspensions containing magnetizable particles, the device comprising a gap (3) through which the suspension containing magnetizable particles flows and in which a shear force is applied to the suspension containing magnetizable particles, wherein the device furthermore contains a magnet for generating a magnetic field in the gap (3).Type: ApplicationFiled: November 25, 2008Publication date: December 9, 2010Inventors: Claus Gabriel, Günter Oetter, Christoffer Kieburg, Jürgen Pfister, Martin Laun
-
Publication number: 20100238760Abstract: The invention relates to a constant load shear cell and a method for constant loading of a magnetorheological fluid in a constant load shear cell. The constant load shear cell comprises a rotatable shaft (1), to which a rotor plate (2) is fixed. A first gap (5), for accommodating a magnetorheological fluid, is formed between a first side (3) of the rotor plate (2) and a first shear surface (4). A second gap (8), for accommodating the magnetorheological fluid, is formed between a second side (6) of the rotor plate (2) facing away from the first and a second shear surface (7). The constant load shear cell further comprises at least one magnet (9) for generating a magnetic field in the first and second gaps (5, 8).Type: ApplicationFiled: August 21, 2007Publication date: September 23, 2010Applicant: BASF SE Patents, Trademark and LicensesInventors: Martin Laun, Jürgen Pfister, Rene Lochtman, Günter Oetter, Claus Gabriel, Peter Schuler
-
Publication number: 20100176090Abstract: The invention relates to a method for producing metal-coated base laminates having a support (51) made of an electrically nonconductive material (37), which is coated on at least one side with a metal layer (25, 53). In a first step, a base layer (11) is applied onto a substrate (3) with a dispersion (5), which contains electrolessly and/or electrolytically coatable particles in a matrix material. The matrix material is at least partially cured and/or dried. A metal layer is subsequently formed on the base layer (11) by electroless and/or electrolytic coating. The support (51) made of the electrically nonconductive material (37) is laminated onto the metal layer (25). The support (51) laminated with the metal layer (25) and at least a part of the base layer (11) are subsequently removed from the substrate (3).Type: ApplicationFiled: May 20, 2008Publication date: July 15, 2010Inventors: Rene Lochtman, Jürgen Kaczun, Norbert Wagner, Jürgen Pfister, Deiter Hentschel
-
Publication number: 20100170626Abstract: The invention relates to a method for producing polymer-coated metal foils, comprising the following steps: (a) applying a base layer (7) onto a support foil (3), with a dispersion (5) which comprises electrolessly and/or electrolytically coatable particles in a matrix material, (b) at least partially drying and/or at least partially curing the matrix material, (c) forming a metal layer (19) on the base layer (7) by electroless and/or electrolytic coating of the base layer (7) comprising the electrolessly or electrolytically coatable particles, (d) applying a polymer (23) to the metal layer (19). Furthermore, the invention relates to a use of the polymer-coated metal foil for the production of printed circuit boards.Type: ApplicationFiled: May 20, 2008Publication date: July 8, 2010Applicant: BASF SEInventors: Rene Lochtman, Jürgen Kaczun, Norbert Wagner, Jürgen Pfister, Dieter Hentschel
-
Publication number: 20100021657Abstract: The invention relates to a method for producing electrically conductive surfaces on a nonconductive substrate, comprising the following steps: a) transferring a dispersion containing electrolessly and/or electrolytically coatable particles from a support onto the substrate by irradiating the support with a laser, b) at least partially drying and/or curing the dispersion transferred onto the substrate, so as to form a base layer, c) electrolessly and/or electrolytically coating the base layer.Type: ApplicationFiled: December 21, 2007Publication date: January 28, 2010Applicant: BASF SEInventors: Rene Lochtman, Jürgen Kaczun, Norbert Wagner, Jürgen Pfister
-
Publication number: 20100006442Abstract: The present invention relates to processes for application of a metal layer on a substrate via deposition of a metal from a metal salt solution by a chemical and/or electroplating method, a significant factor in these processes being that carbon nanotubes are present in the substrate surface. The present invention moreover relates to the use of carbon nanotubes for application of a metal layer on a substrate.Type: ApplicationFiled: July 27, 2007Publication date: January 14, 2010Applicant: BASF SEInventors: Rene Lochtman, Jürgen Kaczun, Norbert Schneider, Jürgen Pfister, Norbert Wagner, Christoffer Kieburg, Ketan Joshi
-
Publication number: 20100009094Abstract: Method for producing structured electrically conductive surfaces on a substrate, which comprises the following steps: a) structuring a base layer containing electrolessly and/or electrolytically coatable particles on the substrate by ablating the base layer according to a predetermined structure with a laser, b) activating the surface of the electrolessly and/or electrolytically coatable particles and c) applying an electrically conductive coating onto the structured base layer.Type: ApplicationFiled: January 17, 2008Publication date: January 14, 2010Applicant: BASF SE Patents, Trademarks and LicensesInventors: Rene Lochtman, Jürgen Kaczun, Norbert Wagner, Jürgen Pfister
-
Publication number: 20090321123Abstract: The invention relates to a method for producing structured, electrically-conductive surfaces (3, 11) on an electrically nonconductive support (1), in which the structured and/or full-area electrically-conductive surfaces (3) of a first plane are applied onto the support (1) in a first step, an insulating layer (9) is applied in a second step at the positions where structured and/or full-area electrically-conductive surfaces (11) of a second plane cross the structured and/or full-area electrically-conductive surfaces (3) of the first plane and no electrical contact is intended to take place between the structured and/or full-area electrically-conductive surfaces of the first plane (3) and of the second plane (11), in a third step the structured and/or full-area electrically-conductive surfaces (11) of the second plane are applied according to the first step, and the second and third steps are optionally repeated.Type: ApplicationFiled: July 31, 2007Publication date: December 31, 2009Applicant: BASF SE Patents, Trademarks and LincensesInventors: Rene Lochtman, Jürgen Kaczun, Norbert Schneider, Jürgen Pfister, Norbert Wagner, Dieter Hentschel
-
Publication number: 20090301891Abstract: The invention relates to a device for the electrolytic coating of a structured or full-surface base layer (9) on a surface of a substrate (7), which comprises at least one electrolyte bath (3) having at least one rotatably mounted roller (2) connectable as a cathode, which contacts the base layer (9) during the electrolytic coating, the base layer (9) being covered by an electrolyte solution (5) contained in the electrolyte bath (3) and being moved relative to the at least one roller (2) during the coating. The at least one roller (2) connectable as a cathode is connected cathodically during the contact with the base layer (9) and is connected neutrally or anodically as soon as there is no contact with the base layer (9).Type: ApplicationFiled: November 26, 2007Publication date: December 10, 2009Applicant: BASF SEInventors: Rene Locktman, Jürgen Kaczun, Norbert Wagner, Jürgen Pfister, Gert Pohl
-
Publication number: 20090289214Abstract: Magnetorheological formulations, processes for preparing the same and uses therefor, the formulations comprising: (a) an ionic liquid comprising anions and cations, and (b) dispersed magnetizable particles having a mean diameter of 0.Type: ApplicationFiled: September 18, 2007Publication date: November 26, 2009Applicant: BASF SEInventors: Christoffer Kieburg, Jürgen Pfister, Claus Gabriel, Günter Oetter, Martin Laun, Rene Lochtman
-
Publication number: 20090285976Abstract: Method for producing electrically conductive, structured or full-area surfaces on a support, in which a structured or full-area base layer onto the support in a first step by using a dispersion, which contains electrically conductive particles in a matrix material, the matrix material is at least partially cured and/or dried in a second step, the electrically conductive particles are exposed in a third step by at least partially breaking the matrix, and a metal layer is formed on the structured or full-area base layer in a fourth step by electroless and/or electrolytic coating.Type: ApplicationFiled: June 11, 2007Publication date: November 19, 2009Applicant: BASF SEInventors: Rene Lochtman, Jürgen Kaczun, Norbert Schneider, Jürgen Pfister, Norbert Wagner, Deiter Hentschel
-
Publication number: 20090178930Abstract: The invention relates to a device for the electrolytic coating of at least one electrically conductive substrate or a structured or full-surface electrically conductive surface on a nonconductive substrate, which comprises at least one bath, one anode and one cathode, the bath containing an electrolyte solution containing at least one metal salt, from which metal ions are deposited on electrically conductive surfaces of the substrate to form a metal layer while the cathode is brought in contact with the substrate's surface to be coated and the substrate is transported through the bath, wherein the cathode comprises at least two disks (2, 4, 10) mounted on a respective shaft (1, 5, 14) so that they can rotate, the disks (2, 4, 10) engaging in one another. The invention furthermore relates to a method for the electrolytic coating of at least one substrate, which is carried out in a device according to the invention.Type: ApplicationFiled: April 5, 2007Publication date: July 16, 2009Applicant: BASF SEInventors: Rene Lochtman, Jürgen Kaczun, Norbert Schneider, Jürgen Pfister, Gert Pohl, Norbert Wagner