Patents by Inventor Sigrid Hessel-Geldmann

Sigrid Hessel-Geldmann 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: 11285662
    Abstract: A process for melting/sintering powder particles for layer-by-layer production of three-dimensional objects is performed by a) applying a layer of a powder material solidifiable under the action of electromagnetic radiation, b) heating the powder material to not more than 10 K below the melting point according to DIN 53765 by a radiation from a heat-radiating element whose maximum radiation intensity is at a wavelength of 5000 nm or at longer wavelengths, c) selective melting/sintering of at least a region of the powder material which corresponds to the cross section of the three-dimensional object, d) repeating steps a) to c) until the three-dimensional object is obtained.
    Type: Grant
    Filed: February 27, 2020
    Date of Patent: March 29, 2022
    Assignee: Evonik Operations GmbH
    Inventors: Maik Grebe, Wolfgang Diekmann, Sigrid Hessel-Geldmann, Jürgen Kreutz
  • Patent number: 10787559
    Abstract: Composite particles comprising core particles completely or partially coated with a precipitated polymer, where the d50 median diameter of the core particles is from 3 to 100 ?m and wherein the glass core particle material is at least one selected from the group consisting of a solid glass bead, a hollow glass bead, a porous glass bead, and a foamed glass particle. A method to prepare the particles includes dissolution of a polymer in a solvent and precipitation of the polymer in the presence of a suspension of the core glass particles. Further provided is a layer by layer moulding process employing the composite particles and mouldings obtained therefrom.
    Type: Grant
    Filed: July 3, 2012
    Date of Patent: September 29, 2020
    Assignee: Evonik Operations GmbH
    Inventors: Sylvia Monsheimer, Wolfgang Diekmann, Franz-Erich Baumann, Sigrid Hessel-Geldmann, Kristiane Warnke, Heike Stemmer, Stefan Altkemper
  • Publication number: 20200230937
    Abstract: A process for melting/sintering powder particles for layer-by-layer production of three-dimensional objects is performed by a) applying a layer of a powder material solidifiable under the action of electromagnetic radiation, b) heating the powder material to not more than 10 K below the melting point according to DIN 53765 by a radiation from a heat-radiating element whose maximum radiation intensity is at a wavelength of 5000 nm or at longer wavelengths, c) selective melting/sintering of at least a region of the powder material which corresponds to the cross section of the three-dimensional object, d) repeating steps a) to c) until the three-dimensional object is obtained.
    Type: Application
    Filed: February 27, 2020
    Publication date: July 23, 2020
    Applicant: Evonik Operations GmbH
    Inventors: Maik GREBE, Wolfgang Diekmann, Sigrid Hessel-Geldmann, Juergen Kreutz
  • Patent number: 10632730
    Abstract: A process for melting/sintering powder particles for layer-by-layer production of three-dimensional objects is performed by a)applying a layer of a powder material solidifiable under the action of electromagnetic radiation, b) heating the powder material to not more than 10 K below the melting point according to DIN 53765 by a radiation from a heat-radiating element whose maximum radiation intensity is at a wavelength of 5000 nm or at longer wavelengths, c) selective melting/sintering of at least a region of the powder material which corresponds to the cross section of the three-dimensional object, d)repeating steps a) to c) until the three-dimensional object is obtained.
    Type: Grant
    Filed: March 24, 2017
    Date of Patent: April 28, 2020
    Assignee: Evonik Operations GmbH
    Inventors: Maik Grebe, Wolfgang Diekmann, Sigrid Hessel-Geldmann, Juergen Kreutz
  • Publication number: 20170274591
    Abstract: A process for melting/sintering powder particles for layer-by-layer production of three-dimensional objects is performed by a)applying a layer of a powder material solidifiable under the action of electromagnetic radiation, b) heating the powder material to not more than 10 K below the melting point according to DIN 53765 by a radiation from a heat-radiating element whose maximum radiation intensity is at a wavelength of 5000 nm or at longer wavelengths, c) selective melting/sintering of at least a region of the powder material which corresponds to the cross section of the three-dimensional object, d)repeating steps a) to c) until the three-dimensional object is obtained.
    Type: Application
    Filed: March 24, 2017
    Publication date: September 28, 2017
    Applicant: Evonik Degussa GmbH
    Inventors: Maik GREBE, Wolfgang DIEKMANN, Sigrid HESSEL-GELDMANN, Juergen KREUTZ
  • Patent number: 9272446
    Abstract: A process for melting/sintering powder particles for layer-by-layer production of three-dimensional objects wherein a layer of powder particles is irradiated by a nonlinear path of an electromagnetic radiation is provided. Also provided are an apparatus to conduct the process and three dimensional objects obtained by the process.
    Type: Grant
    Filed: February 14, 2013
    Date of Patent: March 1, 2016
    Assignee: EVONIK DEGUSSA GmbH
    Inventors: Maik Grebe, Wolfgang Diekmann, Sigrid Hessel-Geldmann, Juergen Kreutz
  • Patent number: 9162392
    Abstract: The present invention provides a process and an apparatus for the layer-by-layer production of three-dimensional objects, wherein material vapors formed during processing in the construction chamber are prevented from deposition on apparatus components by exposing the gases to deposition surfaces where the materials condense and deposit.
    Type: Grant
    Filed: October 23, 2012
    Date of Patent: October 20, 2015
    Assignee: Evonik Industries AG
    Inventors: Maik Grebe, Sigrid Hessel-Geldmann, Wolfgang Diekmann
  • Publication number: 20140079916
    Abstract: An apparatus for the simultaneous layer-by-layer production of three-dimensional objects, containing a construction chamber with a height-adjustable construction platform, an apparatus for applying, to the construction platform, a layer of a material that can be hardened by exposure to electromagnetic radiation, and irradiation equipment. The irradiation equipment contains a radiation source emitting electromagnetic radiation, a control unit and a lens located in a beam path of the electromagnetic radiation, for irradiating sites within the layer that correspond to an object, in which a cooling element can be produced at the same time as the object. A process for the layer-by-layer production of a three-dimensional object in the apparatus, involves producing an object and a cooling element at the same time.
    Type: Application
    Filed: September 17, 2013
    Publication date: March 20, 2014
    Applicant: Evonik Industries AG
    Inventors: Maik GREBE, Wolfgang Diekmann, Sigrid Hessel-Geldmann, Juergen Kreutz
  • Patent number: 8591797
    Abstract: A task often encountered in very recent times is the rapid provision of prototypes. Particularly suitable processes are those based on pulverulent materials and in which the desired structures are produced layer-by-layer through selective melting and solidification. The invention provides the constitution, production and use of a copolyamide powder which was produced using the following monomer units: a) laurolactam or ?-aminoundecanoic acid, and also b) dodecanedioic acid, and either c) decanediamine or dodecanediamine, in shaping processes, and also to moldings produced through a layer-by-layer process which selectively melts regions of a powder layer, using this specific powder. Once the regions previously melted layer-by-layer have been cooled and solidified, the molding can be removed from the powder bed. The moldless layer-by-layer processes for the production of components using the copolyamide powder result in simplified and more reliable conduct of the process and better recyclability.
    Type: Grant
    Filed: March 19, 2009
    Date of Patent: November 26, 2013
    Assignee: Evonik Degussa GmbH
    Inventors: Sylvia Monsheimer, Maik Grebe, Stefan Altkemper, Sigrid Hessel-Geldmann, Franz-Erich Baumann, Kristiane Warnke, Heike Stemmer, Joachim Muegge, Michael Tuerke, Ulrich Simon
  • Publication number: 20130216836
    Abstract: A process for melting/sintering powder particles for layer-by-layer production of three-dimensional objects wherein a layer of powder particles is irradiated by a nonlinear path of an electromagnetic radiation is provided. Also provided are an apparatus to conduct the process and three dimensional objects obtained by the process.
    Type: Application
    Filed: February 14, 2013
    Publication date: August 22, 2013
    Inventors: Maik GREBE, Wolfgang Diekmann, Sigrid Hessel-Geldmann, Juergen Kreutz
  • Publication number: 20130177766
    Abstract: The present invention relates to an apparatus for the layer-by-layer production of three-dimensional objects, to processes for layer-by-layer production, and also to corresponding shaped articles.
    Type: Application
    Filed: December 20, 2012
    Publication date: July 11, 2013
    Inventors: Maik GREBE, Wolfgang DIEKMANN, Sigrid HESSEL-GELDMANN
  • Publication number: 20130101803
    Abstract: The present invention provides a process and an apparatus for the layer-by-layer production of three-dimensional objects, wherein material vapours formed during processing in the construction chamber are prevented from deposition on apparatus components by exposing the gases to deposition surfaces where the materials condense and deposit.
    Type: Application
    Filed: October 23, 2012
    Publication date: April 25, 2013
    Inventors: Maik GREBE, Sigrid Hessel-Geldmann, Wolfgang Diekmann
  • Publication number: 20130012643
    Abstract: Composite particles comprising core particles completely or partially coated with a precipitated polymer, where the d50 median diameter of the core particles is from 3 to 100 ?m and wherein the glass core particle material is at least one selected from the group consisting of a solid glass bead, a hollow glass bead, a porous glass bead, and a foamed glass particle. A method to prepare the particles includes dissolution of a polymer in a solvent and precipitation of the polymer in the presence of a suspension of the core glass particles. Further provided is a layer by layer moulding process employing the composite particles and mouldings obtained therefrom.
    Type: Application
    Filed: July 3, 2012
    Publication date: January 10, 2013
    Applicant: Evonik Degussa GmbH
    Inventors: Sylvia MONSHEIMER, Wolfgang Diekmann, Franz-Erich Baumann, Sigrid Hessel-Geldmann, Kristiane Warnke, Heike Stemmer, Stefan Altkemper
  • Publication number: 20090236775
    Abstract: A task often encountered in very recent times is the rapid provision of prototypes. Particularly suitable processes are those based on pulverulent materials and in which the desired structures are produced layer-by-layer through selective melting and solidification. The invention provides the constitution, production and use of a copolyamide powder which was produced using the following monomer units: a) laurolactam or ?-aminoundecanoic acid, and also b) dodecanedioic acid, and either c) decanediamine or dodecanediamine, in shaping processes, and also to mouldings produced through a layer-by-layer process which selectively melts regions of a powder layer, using this specific powder. Once the regions previously melted layer-by-layer have been cooled and solidified, the moulding can be removed from the powder bed. The mouldless layer-by-layer processes for the production of components using the copolyamide powder result in simplified and more reliable conduct of the process and better recyclability.
    Type: Application
    Filed: March 19, 2009
    Publication date: September 24, 2009
    Applicant: EVONIK DEGUSSA GmbH
    Inventors: Sylvia Monsheimer, Maik Grebe, Stefan Altkemper, Sigrid Hessel-Geldmann, Franz-Erich Baumann, Kristiane Warnke, Heike Stemmer, Joachim Muegge, Michael Tuerke, Ulrich Simon