Patents by Inventor Thomas J. Strey

Thomas J. Strey 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).

  • Publication number: 20250229419
    Abstract: A dual mounted end-effector system mounted on a motive robot arm for preparing an object surface is described. The system includes a first tool configured to contact and prepare the object surface and a second tool configured to contact and prepare the object surface. The system also includes a force control. The force control is configured to align, in a first state, with the first tool in position to contact and prepare the object surface and, in a second state, with the second tool in a position to contact and prepare the object surface.
    Type: Application
    Filed: April 7, 2025
    Publication date: July 17, 2025
    Inventors: Aaron K. Nienaber, Brett R. Hemes, Thomas J. Strey, Christie L. Vitale, Nathan J. Herbst, Johathan B. Arthur
  • Publication number: 20250147496
    Abstract: A defect detection and ranking system for a vehicle assembly line is provided. The system includes an image capture device that captures a plurality of images of a vehicle on the vehicle assembly line. The system also includes a defect detector that analyzes the plurality of captured images and, based on the analysis, detects a plurality of defects on the surface of the vehicle. Each of the plurality of defects has an associated x-y-z coordinate location, a defect type, and a defect severity. The system also includes a datastore containing a vehicle specification, for the vehicle on the vehicle assembly line, and a defect priority based on the vehicle specification. The system also includes a defect prioritization generator configured to: receive the plurality of defects from the defect detector, retrieve the vehicle specification and the defect priority, and apply the defect priority to the plurality of defects, and output a prioritized list of defects, wherein the prioritized list of defects.
    Type: Application
    Filed: November 21, 2024
    Publication date: May 8, 2025
    Inventors: Jonathan B. Arthur, Brett R. Hemes, Thomas J. Strey, John J. Schmidt
  • Patent number: 12285867
    Abstract: A dual mounted end-effector system mounted on a motive robot arm for preparing an object surface is described. The system includes a first tool configured to contact and prepare the object surface and a second tool configured to contact and prepare the object surface. The system also includes a force control. The force control is configured to align, in a first state, with the first tool in position to contact and prepare the object surface and, in a second state, with the second tool in a position to contact and prepare the object surface.
    Type: Grant
    Filed: November 24, 2020
    Date of Patent: April 29, 2025
    Assignee: 3M Innovative Properties Company
    Inventors: Aaron K. Nienaber, Brett R. Hemes, Thomas J. Strey, Christie L. Vitale, Nathan J. Herbst, Jonathan B. Arthur
  • Patent number: 12275115
    Abstract: A disc changing system for a robotic defect repair system is presented. The system has a first abrasive disc and a second abrasive disc. The first and second abrasive discs are coupled to a liner. The system includes an abrasive disc placement device configured to automatically: remove the first abrasive disc from the liner, transport the first abrasive disc to a robotic tool of the robotic defect repair system, and place the first abrasive disc on a backup pad coupled to the robotic tool. The system also includes an abrasive disc remover configured to automatically remove the first abrasive disc after receiving a removal signal. The system also includes a controller configured to send an instruction to the disc placement device to remove, transport and place the first abrasive disc, instruct the robotic tool to conduct an abrasive operation. The controller is also configured to send the removal signal.
    Type: Grant
    Filed: November 9, 2023
    Date of Patent: April 15, 2025
    Assignee: 3M Innovative Properties Company
    Inventors: Aaron K. Nienaber, Mark W. Orlando, Nathan J. Herbst, Christie L. Vitale, Marc Eberwein, Brett R. Hemes, Jonathan B. Arthur, Thomas J. Strey
  • Publication number: 20250036112
    Abstract: Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for optimizing a process of manufacturing a product. In one aspect, the method comprises repeatedly performing the following: i) selecting a configuration of input settings for manufacturing a product, based on a causal model that measures causal relationships between input settings and a measure of a quality of the product; ii) determining the measure of the quality of the product manufactured using the configuration of input settings; and iii) adjusting, based on the measure of the quality of the product manufactured using the configuration of input settings, the causal model.
    Type: Application
    Filed: October 16, 2024
    Publication date: January 30, 2025
    Inventors: Brian E. Brooks, Gilles J. Benoit, Peter O. Olson, Tyler W. Olson, Himanshu Nayar, Frederick J. Arsenault, Nicholas A. Johnson, Brett R. Hemes, Thomas J. Strey, Jonathan B. Arthur, Nathan J. Herbst, Aaron K. Nienaber, Sarah M. Mullins, Mark W. Orlando, Cory D. Sauer, Timothy J. Clemens, Scott L. Barnett, Zachary M. Schaeffer, Patrick G. Zimmerman, Gregory P. Moriarty, Jeffrey P. Adolf, Steven P. Floeder, Andreas Backes, Peter J. Schneider, Maureen A. Kavanagh, Glenn E. Casner, Miaoding Dai, Christopher M. Brown, Lori A. Sjolund, Jon A. Kirschhoffer, Carter C. Hughes
  • Patent number: 12181862
    Abstract: A defect detection and ranking system for a vehicle assembly line is provided. The system includes an image capture device that captures a plurality of images of a vehicle on the vehicle assembly line. The system also includes a defect detector that analyzes the plurality of captured images and, based on the analysis, detects a plurality of defects on the surface of the vehicle. Each of the plurality of defects has an associated x-y-z coordinate location, a defect type, and a defect severity. The system also includes a datastore containing a vehicle specification, for the vehicle on the vehicle assembly line, and a defect priority based on the vehicle specification. The system also includes a defect prioritization generator configured to: receive the plurality of defects from the defect detector, retrieve the vehicle specification and the defect priority, and apply the defect priority to the plurality of defects, and output a prioritized list of defects, wherein the prioritized list of defects.
    Type: Grant
    Filed: October 20, 2020
    Date of Patent: December 31, 2024
    Assignee: 3M Innovative Properties Company
    Inventors: Jonathan B. Arthur, Brett R. Hemes, Thomas J. Strey, John J. Schmidt
  • Patent number: 12140938
    Abstract: Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for optimizing a process of manufacturing a product. In one aspect, the method comprises repeatedly performing the following: i) selecting a configuration of input settings for manufacturing a product, based on a causal model that measures causal relationships between input settings and a measure of a quality of the product; ii) determining the measure of the quality of the product manufactured using the configuration of input settings; and iii) adjusting, based on the measure of the quality of the product manufactured using the configuration of input settings, the causal model.
    Type: Grant
    Filed: October 3, 2019
    Date of Patent: November 12, 2024
    Assignee: 3M Innovative Properties Company
    Inventors: Brian E. Brooks, Gilles J. Benoit, Peter O. Olson, Tyler W. Olson, Himanshu Nayar, Frederick J. Arsenault, Nicholas A. Johnson, Brett R. Hemes, Thomas J. Strey, Jonathan B. Arthur, Nathan J. Herbst, Aaron K. Nienaber, Sarah M. Mullins, Mark W. Orlando, Cory D. Sauer, Timothy J. Clemens, Scott L. Barnett, Zachary M. Schaeffer, Patrick G. Zimmerman, Gregory P. Moriarty, Jeffrey P. Adolf, Steven P. Floeder, Andreas Backes, Peter J. Schneider, Maureen A. Kavanagh, Glenn E. Casner, Miaoding Dai, Christopher M. Brown, Lori A. Sjolund, Jon A. Kirschhoffer, Carter C. Hughes
  • Patent number: 12123700
    Abstract: Methods and systems of measurement for blown film lines are provided. The sensing system includes a terahertz (THz) sensor positioned adjacent to a film bubble extruded from a blown film die, and a sensor support configured to guide the THz sensor around the circumference of the film bubble to measure its film thickness.
    Type: Grant
    Filed: September 24, 2020
    Date of Patent: October 22, 2024
    Assignee: 3M Innovative Properties Company
    Inventors: Thomas J. Strey, David L. Hofeldt, Gregory J. McGill, Jay M. Krieger, Christopher J. Rother, Paul C. Thomas
  • Patent number: 12097528
    Abstract: A repaired area on a work surface is presented. The repaired area includes a repairboundary. Within the repairboundary, the work surface has a repair texture and, outside of the repair boundary, the work surface has a work surface texture. The repaired area also includes a repair depth distribution within the repair boundary and a concealing feature. The repaired area is a result of a robotic repair executed on the work surface to remove a defect.
    Type: Grant
    Filed: November 24, 2020
    Date of Patent: September 24, 2024
    Assignee: 3M Innovative Properties Company
    Inventors: Brett R. Hemes, Mark W. Orlando, Daniel M. Bodily, Jonathan B. Arthur, Nathan J. Herbst, Thomas J. Strey, Aaron K. Nienaber
  • Publication number: 20240075578
    Abstract: A disc changing system for a robotic defect repair system is presented. The system has a first abrasive disc and a second abrasive disc. The first and second abrasive discs are coupled to a liner. The system includes an abrasive disc placement device configured to automatically: remove the first abrasive disc from the liner, transport the first abrasive disc to a robotic tool of the robotic defect repair system, and place the first abrasive disc on a backup pad coupled to the robotic tool. The system also includes an abrasive disc remover configured to automatically remove the first abrasive disc after receiving a removal signal. The system also includes a controller configured to send an instruction to the disc placement device to remove, transport and place the first abrasive disc, instruct the robotic tool to conduct an abrasive operation. The controller is also configured to send the removal signal.
    Type: Application
    Filed: November 9, 2023
    Publication date: March 7, 2024
    Inventors: Aaron K. Nienaber, Mark W. Orlando, Nathan J. Herbst, Christie L. Vitale, Marc Eberwein, Brett R. Hemes, Jonathan B. Arthur, Thomas J. Strey
  • Publication number: 20240017377
    Abstract: A method of tuning the contact pressure across an abrasive disc is presented. The method includes coupling the abrasive disc to a backup pad comprising a pressure tuning feature that causes an experienced pressure by a worksurface, across a radius of the abrasive disc, to be uniform. The method also includes abrading a worksurface by contacting the abrasive disc to the worksurface. The backup pad causes the abrasive disc to have a cut rate that is substantially uniform across the surface of the abrasive disc when compared to the abrasive disc on a backup pad with no pressure tuning feature.
    Type: Application
    Filed: November 1, 2021
    Publication date: January 18, 2024
    Inventors: Samad Javid, Jonathan B. Arthur, Justin A. Riddle, Joseph B. Farley, Brett R. Hemes, Thomas J. Strey
  • Patent number: 11850695
    Abstract: A disc changing system for a robotic defect repair system is presented. The system has a first abrasive disc and a second abrasive disc. The first and second abrasive discs are coupled to a liner. The system includes an abrasive disc placement device configured to automatically: remove the first abrasive disc from the liner, transport the first abrasive disc to a robotic tool of the robotic defect repair system, and place the first abrasive disc on a backup pad coupled to the robotic tool. The system also includes an abrasive disc remover configured to automatically remove the first abrasive disc after receiving a removal signal. The system also includes a controller configured to send an instruction to the disc placement device to remove, transport and place the first abrasive disc, instruct the robotic tool to conduct an abrasive operation. The controller is also configured to send the removal signal.
    Type: Grant
    Filed: November 24, 2020
    Date of Patent: December 26, 2023
    Assignee: 3M Innovative Properties Company
    Inventors: Aaron K. Nienaber, Mark W. Orlando, Nathan J. Herbst, Christie L. Vitale, Marc Eberwein, Brett R. Hemes, Jonathan B. Arthur, Thomas J. Strey
  • Publication number: 20230321687
    Abstract: An imaging and repair system (100) is presented that includes a first imaging system (110) configured to image and detect a defect on a worksurface. The first imaging system comprises a first camera configured to capture a plurality of first images of the worksurface. The plurality of first images are stored in a data source. The system also includes a second imaging system (110) configured to image and characterize an orange peel of the worksurface in an area proximate the defect. Characterizing the worksurface comprises identifying a delta value of orange peel. The system also includes a defect repair processor configured to select a repair strategy based on a defect type. The system also includes a defect modifier configured to modify the selected repair strategy based on the orange peel characterization of the worksurface. The system also includes a defect repair tool (120) configured to automatically effect the modified repair strategy.
    Type: Application
    Filed: August 16, 2021
    Publication date: October 12, 2023
    Inventors: Jonathan B. Arthur, Aaron K. Nienaber, Nicholas G. Amell, Thomas J. Strey, Erich A. Mielke, Talha Ahsan, Vincent J.L. Chevrier, Thaine W. Fuller, Brett R. Hemes
  • Publication number: 20230109976
    Abstract: A robotic repair unit (400) is presented that includes a removal tool (330, 425) coupled tot he robotic repair unit (400). The removal tool (330, 425) is configured to remove fluid or debris from a worksurface (130). The repair unit (400) also includes a controller (150) configured to control the robotic repair unit (400).
    Type: Application
    Filed: February 19, 2021
    Publication date: April 13, 2023
    Inventors: Aaron K. Nienaber, Christie L. Vitale, Nathan J. Herbst, Brett R. Hemes, Thomas J. Strey, Jonathan B. Arthur, Mark W. Orlando
  • Publication number: 20230108314
    Abstract: A fluid dispensing system for a robotic repair unit that includes a fluid container. The system also includes a fluid dispenser associated with a robotic repair unit. The system also contains a fluid coupler that connects the polish container to the polish dispenser. The system also contains a mounting mechanism configured to couple the polish container to a robotic repair unit.
    Type: Application
    Filed: February 19, 2021
    Publication date: April 6, 2023
    Inventors: Aaron K. Nienaber, Christie L. Vitale, Paul Larking, Jonathan B. Arthur, Nathan J. Herbst, Brett R. Hemes, Thomas J. Strey, Scott D. Gullicks
  • Publication number: 20230013731
    Abstract: A dual mounted end-effector system mounted on a motive robot arm for preparing an object surface is described. The system includes a first tool configured to contact and prepare the object surface and a second tool configured to contact and prepare the object surface. The system also includes a force control. The force control is configured to align, in a first state, with the first tool in position to contact and prepare the object surface and, in a second state, with the second tool in a position to contact and prepare the object surface.
    Type: Application
    Filed: November 24, 2020
    Publication date: January 19, 2023
    Inventors: Aaron K. Nienaber, Brett R. Hemes, Thomas J. Strey, Christie L. Vitale, Nathan J. Herbst, Jonathan B. Arthur
  • Publication number: 20230001535
    Abstract: A disc changing system for a robotic defect repair system is presented. The system has a first abrasive disc and a second abrasive disc. The first and second abrasive discs are coupled to a liner. The system includes an abrasive disc placement device configured to automatically: remove the first abrasive disc from the liner, transport the first abrasive disc to a robotic tool of the robotic defect repair system, and place the first abrasive disc on a backup pad coupled to the robotic tool. The system also includes an abrasive disc remover configured to automatically remove the first abrasive disc after receiving a removal signal. The system also includes a controller configured to send an instruction to the disc placement device to remove, transport and place the first abrasive disc, instruct the robotic tool to conduct an abrasive operation. The controller is also configured to send the removal signal.
    Type: Application
    Filed: November 24, 2020
    Publication date: January 5, 2023
    Inventors: Aaron K. Nienaber, Mark W. Orlando, Nathan J. Herbst, Christie L. Vitale, Marc Eberwein, Brett R. Hemes, Jonathan B. Arthur, Thomas J. Strey
  • Publication number: 20230001448
    Abstract: A repaired area on a work surface is presented. The repaired area includes a repairboundary. Within the repairboundary, the work surface has a repair texture and, outside of the repair boundary, the work surface has a work surface texture. The repaired area also includes a repair depth distribution within the repair boundary and a concealing feature. The repaired area is a result of a robotic repair executed on the work surface to remove a defect.
    Type: Application
    Filed: November 24, 2020
    Publication date: January 5, 2023
    Inventors: Brett R. Hemes, Mark W. Orlando, Daniel M. Bodily, Jonathan B. Arthur, Nathan J. Herbst, Thomas J. Strey, Aaron K. Nienaber
  • Publication number: 20220412723
    Abstract: Methods and systems of measurement for blown film lines are provided. The sensing system includes a terahertz (THz) sensor positioned adjacent to a film bubble extruded from a blown film die, and a sensor support configured to guide the THz sensor around the circumference of the film bubble to measure its film thickness.
    Type: Application
    Filed: September 24, 2020
    Publication date: December 29, 2022
    Inventors: Thomas J. Strey, David L. Hofeldt, Gregory J. McGill, Jay M. Krieger, Christopher J. Rother, Paul C. Thomas
  • Patent number: D1003959
    Type: Grant
    Filed: February 22, 2022
    Date of Patent: November 7, 2023
    Assignee: 3M Innovative Properties Company
    Inventors: Aaron K. Nienaber, Brett R. Hemes, Thomas J. Strey, Christie L. Vitale, Nathan J. Herbst, Jonathan B. Arthur