Patents by Inventor James W. Wells

James W. Wells 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: 20220250262
    Abstract: An electromechanical system operates in part through physical interaction with an operator, and includes a multi-axis robot, a controller, and a counterbalance mechanism connected to the robot. The counterbalance mechanism includes a base structure connected to a set of linkages, a pneumatic cylinder, a spring-loaded cam assembly, and an optional constant force spring. The linkages form a four-bar parallelogram assembly connectable to a load. The cylinder and cam assembly, and optional constant force spring, each impart respective vertical forces to the parallelogram assembly. The forces combine to provide gravity compensation and self-centering functions or behaviors to the load, enabling the load to move with a vertical degree of freedom when manually acted upon by the operator, and to return the load to a nominal center position.
    Type: Application
    Filed: February 9, 2021
    Publication date: August 11, 2022
    Applicant: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Muhammad E. Abdallah, James W. Wells, Peter Kresmery
  • Patent number: 11364623
    Abstract: A component assembly system comprises a first robot arm having a first end-of-arm tool mounted thereon and adapted to grasp a first subcomponent; a second robot arm having a second end of arm tool mounted thereon and adapted to grasp a second subcomponent. A system controller is adapted to control the first and second robot arms and first and second end-of-arm tools to position the first and second subcomponents relative to one another. A first interlocking mechanism is mounted onto the first end-of-arm tool and a second interlocking mechanism is mounted onto the second end-of-arm tool, wherein the first and second interlocking mechanisms engage one another and lock the first end-of-arm tool to the second end-of arm tool, thereby locking the first and second subcomponents into an initial position relative to one another.
    Type: Grant
    Filed: February 15, 2019
    Date of Patent: June 21, 2022
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Miguel A. Saez, John P. Spicer, James W. Wells, Jeffrey A. Abell, Muhammad E. Abdallah
  • Patent number: 11358330
    Abstract: A fused filament deposition head is employed for depositing filament materials on workpieces to join the workpieces together. The workpieces can be of an automotive application, aerospace application, or something else. The fused filament deposition head, in an example, has a feed end, a dispensing end, and a heater. The feed end introduces more than one filament in the fused filament deposition head, as demanded in the larger application. The dispensing end delivers materials of the filaments to the underlying workpieces. The materials are delivered together. The heater serves to heat the filaments as they travel through the fused filament deposition head. The filaments can include a filament having a core portion of liquid-crystal polymer material.
    Type: Grant
    Filed: March 15, 2019
    Date of Patent: June 14, 2022
    Assignee: GM Global Technology Operations LLC
    Inventors: Blair E. Carlson, Ryan Gergely, David A. Okonski, William R. Rodgers, James W. Wells
  • Publication number: 20220176564
    Abstract: A part manufacturing system and a method of manufacturing are provided. The system includes one or more part-moving robots, each having an end effector that grips a part. An operation robot performs an operation on the part while the part-moving robot holds the part. A fixed vision system is located apart from the robots and has at least one fixed vision sensor that senses an absolute location of the part and/or the end effector and generates a fixed vision signal representative of the absolute location. A controller collects the fixed vision signal and compares the absolute location with a predetermined desired location of the part and/or the end effector. The controller sends a repositioning signal to the part-moving robot if the absolute location varies from the predetermined desired location by at least a predetermined threshold, and the part-moving robot is configured to move the part upon receiving the repositioning signal.
    Type: Application
    Filed: December 4, 2020
    Publication date: June 9, 2022
    Inventors: Miguel A. Saez, John P. Spicer, James W. Wells
  • Patent number: 11318585
    Abstract: An insertion system includes an insertion device including a body defining a longitudinal axis, the body including a wall having an outer surface and an inner surface defining a cylindrical opening through the body, the body having a first body portion and a second body portion formed by separating the body along the longitudinal axis, an effector configured to interface with the insertion device, the effector having an effector body, a first mechanism coupled to the effector body and coupled to the first body portion of the insertion device, and a second mechanism coupled to the effector body and coupled to the second body portion of the insertion device, and an insertion mechanism coupled with the effector body. The insertion mechanism enables a force application at a position offset from the insertion device.
    Type: Grant
    Filed: April 6, 2020
    Date of Patent: May 3, 2022
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Muhammad E. Abdallah, James W. Wells, Clement Gosselin, Thierry Laliberte, Jerome Landure
  • Publication number: 20220097607
    Abstract: A bracket for mounting a vehicle running board to a vehicle. The bracket includes an L-shaped main body having a bottom support panel adapted to receive and fixedly retain the running board, a top support panel adapted to be fixedly attached to an inboard surface of a vehicle rocker panel, and intermediate support panel adapted to be fixedly attached to a pinch weld formed as part of the rocker panel.
    Type: Application
    Filed: September 27, 2021
    Publication date: March 31, 2022
    Inventors: Farshid SANJABI, James W. WELLS, Richard Louis HAMILTON, Peter BOLLMANN, Michael Kurt PROFYT, Jarek R. GORECKI
  • Patent number: 11247332
    Abstract: A jointed mechanism includes a passive pendulum system attached to and suspended from the multi-axis robot. The system includes one or more position sensors configured to measure a joint angle on the pendulum system, at least one arm, and an end-effector attached to a distal end of the pendulum system. A controller implements a method to selectively control motion of the robot in a plurality of control modes. The control modes include a Cooperative Mode and an Autonomous Mode. The controller is configured to detect contact with the end-effector when operating in the Autonomous Mode, and to automatically initiate a control action in response to the contact. The pendulum system may be a parallelogram arrangement.
    Type: Grant
    Filed: January 27, 2020
    Date of Patent: February 15, 2022
    Assignees: GM Global Technology Operations LLC, Universite Laval
    Inventors: Muhammad E. Abdallah, James W. Wells, Pascal Labrecque, Clement Gosselin, Thierry Laliberte
  • Patent number: 11167381
    Abstract: A clamp system and method for measurement and control of welding a first substrate to a second substrate is provided. The system comprises a squeeze clamp having to a first end and a second end. The system further comprises a motor connected to the squeeze clamp such that the first and second ends are movable to clamp the first substrate to the second substrate. The system further comprises at least one of an electromagnetic flux sensor, a current sensor, a position sensor, and a gap sensor disposed on one of the first and second ends for determining a first measured variable between the first and second substrates. The system further comprises a controller to control the motor to clamp the first substrate to the second substrate based on the first measured variable. The controller is in communication with the electromagnetic flux sensor, the current sensor, and the gap sensor.
    Type: Grant
    Filed: January 31, 2020
    Date of Patent: November 9, 2021
    Assignee: GM Global Technology Operations LLC
    Inventors: Miguel A Saez, John P. Spicer, Spyros P Mellas, Richard J Skurkis, Pei-chung Wang, James W Wells, Wayne Cai, Dooil Hwang
  • Publication number: 20210308839
    Abstract: An insertion system includes an insertion device including a body defining a longitudinal axis, the body including a wall having an outer surface and an inner surface defining a cylindrical opening through the body, the body having a first body portion and a second body portion formed by separating the body along the longitudinal axis, an effector configured to interface with the insertion device, the effector having an effector body, a first mechanism coupled to the effector body and coupled to the first body portion of the insertion device, and a second mechanism coupled to the effector body and coupled to the second body portion of the insertion device, and an insertion mechanism coupled with the effector body. The insertion mechanism enables a force application at a position offset from the insertion device.
    Type: Application
    Filed: April 6, 2020
    Publication date: October 7, 2021
    Applicants: GM GLOBAL TECHNOLOGY OPERATIONS LLC, Université Laval
    Inventors: Muhammad E. Abdallah, James W. Wells, Clement Gosselin, Thierry Laliberte, Jerome Landure
  • Publication number: 20210237211
    Abstract: A clamp system and method for measurement and control of welding a first substrate to a second substrate is provided. The system comprises a squeeze clamp having to a first end and a second end. The system further comprises a motor connected to the squeeze clamp such that the first and second ends are movable to clamp the first substrate to the second substrate. The system further comprises at least one of an electromagnetic flux sensor, a current sensor, a position sensor, and a gap sensor disposed on one of the first and second ends for determining a first measured variable between the first and second substrates. The system further comprises a controller to control the motor to clamp the first substrate to the second substrate based on the first measured variable. The controller is in communication with the electromagnetic flux sensor, the current sensor, and the gap sensor.
    Type: Application
    Filed: January 31, 2020
    Publication date: August 5, 2021
    Inventors: Miguel A. Saez, John P. Spicer, Spyros P. Mellas, Richard J. Skurkis, Pei-chung Wang, James W. Wells, Wayne Cai, Dooil Hwang
  • Publication number: 20210157135
    Abstract: A HUD image acquisition and correction apparatus and method for a vehicle includes a HUD patch defined upon a reflective surface of a windshield of the vehicle, a virtual image generator for projecting images within the HUD patch, and a virtual image sensor assembly located within a HUD eyebox region of the vehicle and having a field of view including the HUD patch. A controller is configured to control projection of a predetermined test image within the HUD patch, receive from the virtual image sensor assembly a HUD patch image, determine a compensation function based upon the predetermined test image and the HUD patch image, and provide to the virtual image generator the compensation function for application to raw images prior to projection.
    Type: Application
    Filed: November 26, 2019
    Publication date: May 27, 2021
    Inventors: James W. Wells, Jinglin Li, Todd H. Barnes
  • Publication number: 20210149207
    Abstract: A HUD apparatus for a vehicle includes a HUD patch defined upon a reflective surface of a windshield of the vehicle. A virtual image generator projects a virtual image within the HUD patch. An image sensor is coaligned with the virtual image generator and has a field of view including the HUD patch. A controller is configured to receive, from the image sensor, a HUD patch image, and to adjust the projected virtual image based upon the HUD patch image.
    Type: Application
    Filed: November 19, 2019
    Publication date: May 20, 2021
    Inventors: James W. Wells, Jinglin Li, Kai-Han Chang, Thomas A. Seder
  • Patent number: 10996481
    Abstract: A HUD apparatus for a vehicle includes a HUD patch defined upon a reflective surface of a windshield of the vehicle. A virtual image generator projects a virtual image within the HUD patch. An image sensor is coaligned with the virtual image generator and has a field of view including the HUD patch. A controller is configured to receive, from the image sensor, a HUD patch image, and to adjust the projected virtual image based upon the HUD patch image.
    Type: Grant
    Filed: November 19, 2019
    Date of Patent: May 4, 2021
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: James W. Wells, Jinglin Li, Kai-Han Chang, Thomas A. Seder
  • Publication number: 20210078540
    Abstract: A wiper system for use with a windshield includes a track guide, a wiper assembly, a drive mechanism and a wipe mechanism. The wiper assembly has a wiper arm attached at a first end thereof to a rotor rotatably disposed on a wiper carrier, wherein the wiper carrier is engaged with the track guide and is configured for translation therealong. The drive mechanism is connected with the wiper carrier and is configured for positioning the wiper carrier along the track guide. The wipe mechanism is connected with at least one of the rotor and the wiper carrier and is configured to cause the rotor to rotate, thereby causing the wiper arm to produce a wiping motion.
    Type: Application
    Filed: September 17, 2019
    Publication date: March 18, 2021
    Applicant: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: James W. Wells, Jeff E. Nasca, Charles W. Wampler, Muhammad E. Abdallah, Nagarajan Sivashanmugam, Richard Nietz, Patrick Kroner, Bryan T. Campbell
  • Patent number: 10933933
    Abstract: An autonomous vehicle guidance system enables a partially assembled battery-electric vehicle (BEV) to be guided through an assembly process with the temporary addition of a sensor skid. The partially assembled BEV includes a vehicle body, a vehicle controller coupled to the vehicle body, a battery electrically coupled to the vehicle controller, a sensor skid configured to be coupled under the vehicle body of the BEV. The sensor skid is configured to guide the BEV through an assembly process. The sensor skid includes a skid body configured to be coupled under the vehicle body of the BEV and a plurality of sensors coupled to the skid body. The sensor skid includes a skid controller in communication with the sensors and the vehicle controller. The skid controller is coupled to the sensor skid.
    Type: Grant
    Filed: November 2, 2018
    Date of Patent: March 2, 2021
    Assignee: GM Global Technology Operations LLC
    Inventors: James W. Wells, Neil D. McKay, Seog-Chan Oh
  • Publication number: 20210017002
    Abstract: An overhead system assists an operator in moving an object when the operator imparts a manual force to the object in a shared workspace characterized by overlapping ranges of motion of the robot and operator. The system includes an articulated serial robot, a cable, sensors, and a control system. One end of the cable connects to a distal end link of the robot. Another end of the cable connects to the object to suspend the object. The sensors measure a cable force and/or angle. The control system regulates operation of the robot by translating vertically and horizontally in response to the cable force and/or angle. The control system limits the position and/or velocity of the end link according to corresponding work space rules, including respective position and velocity limits, such that the system is immune to a single-point failure.
    Type: Application
    Filed: July 19, 2019
    Publication date: January 21, 2021
    Applicant: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Muhammad E. Abdallah, James W. Wells
  • Publication number: 20200290271
    Abstract: A fused filament deposition head is employed for depositing filament materials on workpieces to join the workpieces together. The workpieces can be of an automotive application, aerospace application, or something else. The fused filament deposition head, in an example, has a feed end, a dispensing end, and a heater. The feed end introduces more than one filament in the fused filament deposition head, as demanded in the larger application. The dispensing end delivers materials of the filaments to the underlying workpieces. The materials are delivered together. The heater serves to heat the filaments as they travel through the fused filament deposition head. The filaments can include a filament having a core portion of liquid-crystal polymer material.
    Type: Application
    Filed: March 15, 2019
    Publication date: September 17, 2020
    Inventors: Blair E. Carlson, Ryan Gergely, David A. Okonski, William R. Rodgers, James W. Wells
  • Patent number: 10759634
    Abstract: An electromechanical system operates through physical interaction with an operator, and includes a plurality of joints providing multiple degrees of freedom (DOF), including actuated joints and unactuated joints. The unactuated joints are distal with respect to the actuated joints and are in redundant DOF to the actuated joints. The system includes a plurality of actuators each configured to actuate one or more of the actuated joints, and a plurality of sensors each positioned with respect to a respective one of the actuated and unactuated joints. Each sensor is configured to measure corresponding joint data indicative of a position or angle of the respective actuated or unactuated joints. A controller in communication with the sensors receives the measured joint data as feedback signals, generates control signals using the feedback signals, and transmits the control signals to the actuators to thereby control an actuation state of the actuators.
    Type: Grant
    Filed: November 3, 2017
    Date of Patent: September 1, 2020
    Assignees: GM Global Technology Operations LLC, Université Laval
    Inventors: Muhammad E. Abdallah, Clement Gosselin, Thierry Laliberte, Simon Foucault, Pascal Labrecque, James W. Wells, Jerome Landure
  • Publication number: 20200262057
    Abstract: A component assembly system comprises a first robot arm having a first end-of-arm tool mounted thereon and adapted to grasp a first subcomponent; a second robot arm having a second end of arm tool mounted thereon and adapted to grasp a second subcomponent. A system controller is adapted to control the first and second robot arms and first and second end-of-arm tools to position the first and second subcomponents relative to one another. A first interlocking mechanism is mounted onto the first end-of-arm tool and a second interlocking mechanism is mounted onto the second end-of-arm tool, wherein the first and second interlocking mechanisms engage one another and lock the first end-of-arm tool to the second end-of arm tool, thereby locking the first and second subcomponents into an initial position relative to one another.
    Type: Application
    Filed: February 15, 2019
    Publication date: August 20, 2020
    Inventors: Miguel A. Saez, John P. Spicer, James W. Wells, Jeffrey A. Abell, Muhammad E. Abdallah
  • Publication number: 20200156245
    Abstract: A jointed mechanism includes a passive pendulum system attached to and suspended from the multi-axis robot. The system includes one or more position sensors configured to measure a joint angle on the pendulum system, at least one arm, and an end-effector attached to a distal end of the pendulum system. A controller implements a method to selectively control motion of the robot in a plurality of control modes. The control modes include a Cooperative Mode and an Autonomous Mode. The controller is configured to detect contact with the end-effector when operating in the Autonomous Mode, and to automatically initiate a control action in response to the contact. The pendulum system may be a parallelogram arrangement.
    Type: Application
    Filed: January 27, 2020
    Publication date: May 21, 2020
    Applicant: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Muhammad E. Abdallah, James W. Wells