Patents by Inventor Bryler Collins

Bryler Collins 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: 12722334
    Abstract: Systems and approaches for controlling a molding machine having a mold forming a mold cavity, a nozzle, and a screw that moves from a first position to a second position toward the nozzle and being controlled according to a mold cycle. Injecting a molten polymer into the mold cavity and obtaining a first measurement of a variable during the injection cycle using a first sensor positioned at or near the screw. A second sensor positioned at or near the nozzle is used to obtain a second measurement of the variable during the injection cycle. A measured compressibility ratio value is determined in the form of a difference between the measured variable obtained by the first sensor and the measured variable obtained by the second sensor. The measured compressibility ratio value is compared with a reference compressibility ratio value and at least one control parameter is adjusted based on a difference between the reference compressibility ratio value and the measured compressibility ratio value.
    Type: Grant
    Filed: June 15, 2023
    Date of Patent: September 1, 2026
    Assignee: The Procter & Gamble Company
    Inventors: Bryler Collins, Gene Michael Altonen
  • Publication number: 20250153408
    Abstract: Systems and approaches for controlling a molding machine having a mold forming a mold cavity, a nozzle, and a screw that moves from a first position to a second position toward the nozzle and being controlled according to a mold cycle. Injecting a molten polymer into the mold cavity and obtaining a first measurement of a variable during the injection cycle using a first sensor positioned at or near the screw. A second sensor positioned at or near the nozzle is used to obtain a second measurement of the variable during the injection cycle. A measured compressibility ratio value is determined in the form of a difference between the measured variable obtained by the first sensor and the measured variable obtained by the second sensor. The measured compressibility ratio value is compared with a reference compressibility ratio value and at least one control parameter is adjusted based on a difference between the reference compressibility ratio value and the measured compressibility ratio value.
    Type: Application
    Filed: June 15, 2023
    Publication date: May 15, 2025
    Inventors: Bryler Collins, Gene Michael Altonen
  • Patent number: 12151417
    Abstract: In order to improve the consistency of molded products as viscosity shifts throughout a run, a controller of an injection molding machine executes a calibration cycle in accordance with a mold cycle. The controller analyzes a plurality of sensed melt pressure values during the calibration cycle to determine one or more calibration metrics. The controller then uses the calibration metrics when executing each mold cycle of the run. More particularly, during each mold cycle of the run, the controller detects a plurality of sensed melt pressures prior to and during a fill phase of the mold cycle and compares the plurality of sensed melt pressures to the one or more calibration metrics to predict cavity pressure for a pack and hold phase of the mold cycle. The controller then adjusts a set point pressure for the pack and hold phase based on the predicted cavity pressure.
    Type: Grant
    Filed: May 11, 2022
    Date of Patent: November 26, 2024
    Assignee: THE PROCTER & GAMBLE COMPANY
    Inventors: Bryler Collins, Gene Michael Altonen, Chow-Chi Huang, Brandon Michael Birchmeier, Brian Matthew Burns
  • Publication number: 20240308123
    Abstract: Systems and approaches for controlling a molding machine having a mold forming a mold cavity and being controlled according to a mold cycle include injecting a molten polymer into the mold cavity. A first and a second sensor are used to obtain first measurements of respective first and second variables during the injection cycle. The second sensor is positioned downstream from the first sensor. The first and second sensors are used to obtain second measurements of the respective first and second variables during the injection cycle. A first difference value is determined between the first measurements of the first and second variables. A second difference value is determined between the second measurements of the first and second variables. The first and second difference values are compared, and at least one control parameter is adjusted based on a difference between the first and the second difference values.
    Type: Application
    Filed: June 15, 2022
    Publication date: September 19, 2024
    Inventors: Rick Alan Pollard, Bryler Collins, Darien Rian Stancell, Brandon Michael Birchmeier, Gene Michael Altonen, William Francis Lawless, III
  • Patent number: 12090697
    Abstract: A method of detecting and compensating for a non-operational mold cavity in an injection molding apparatus having a plurality of mold cavities and an injection molding screw or ram includes injecting, via the injection molding screw or ram, a molten thermoplastic material into the plurality of mold cavities. The method includes measuring a first process parameter of the injection molding apparatus at a pre-determined time during or after the injecting. The method also includes determining, based on the first process parameter, whether one or more mold cavities of the plurality of mold cavities are non-operational. Then, when it is determined that one or more mold cavities are non-operational, the method includes automatically adjusting the first process parameter or a second process parameter of the injection molding apparatus.
    Type: Grant
    Filed: June 20, 2023
    Date of Patent: September 17, 2024
    Assignee: IMFLUX INC.
    Inventors: Bryler Collins, Brian Matthew Burns, Gene Michael Altonen, Brandon Michael Birchmeier, Matthew Craver
  • Publication number: 20230330906
    Abstract: A method of detecting and compensating for a non-operational mold cavity in an injection molding apparatus having a plurality of mold cavities and an injection molding screw or ram includes injecting, via the injection molding screw or ram, a molten thermoplastic material into the plurality of mold cavities. The method includes measuring a first process parameter of the injection molding apparatus at a pre-determined time during or after the injecting. The method also includes determining, based on the first process parameter, whether one or more mold cavities of the plurality of mold cavities are non-operational. Then, when it is determined that one or more mold cavities are non-operational, the method includes automatically adjusting the first process parameter or a second process parameter of the injection molding apparatus.
    Type: Application
    Filed: June 20, 2023
    Publication date: October 19, 2023
    Inventors: Bryler Collins, Brian Matthew Burns, Gene Michael Altonen, Brandon Michael Birchmeier, Matthew Craver
  • Patent number: 11718008
    Abstract: A method of detecting and compensating for a non-operational mold cavity in an injection molding apparatus having a plurality of mold cavities and an injection molding screw or ram includes injecting, via the injection molding screw or ram, a molten thermoplastic material into the plurality of mold cavities. The method includes measuring a first process parameter of the injection molding apparatus at a pre-determined time during or after the injecting. The method also includes determining, based on the first process parameter, whether one or more mold cavities of the plurality of mold cavities are non-operational. Then, when it is determined that one or more mold cavities are non-operational, the method includes automatically adjusting the first process parameter or a second process parameter of the injection molding apparatus.
    Type: Grant
    Filed: May 19, 2021
    Date of Patent: August 8, 2023
    Assignee: IMFLUX INC.
    Inventors: Bryler Collins, Brian Matthew Burns, Gene Michael Altonen, Brandon Michael Birchmeier, Matthew Craver
  • Publication number: 20230041317
    Abstract: Systems and approaches for controlling an injection molding machine having a first configuration and a mold forming a mold cavity and being controlled according to an injection cycle include obtaining a pattern for a portion of an injection cycle of an injection molding machine having a second configuration and operating the injection molding machine having the first configuration to inject a molten material into the mold cavity. While operating the injection molding machine having the first configuration, the obtained pattern is used to control a portion of the injection cycle.
    Type: Application
    Filed: October 20, 2022
    Publication date: February 9, 2023
    Inventors: Bryler Collins, Ethan David Stiefel, Gene Michael Altonen, Brandon Michael Birchmeier, Brian Matthew Burns
  • Publication number: 20230031650
    Abstract: Systems and approaches for controlling an injection molding machine having a mold forming a mold cavity and being controlled according to an injection cycle include obtaining a pattern for the injection cycle, operating the injection molding machine to inject a molten material into the mold cavity , and measuring a cavity pressure value of the mold cavity during the mold cycle. Upon measuring a nominal cavity pressure value, a pattern recognition portion of the injection cycle that is at least partially dependent on the obtained pattern commences where a driving force being exerted on the molten material is adjusted such that the measured cavity pressure matches the obtained pattern for the injection cycle.
    Type: Application
    Filed: October 5, 2022
    Publication date: February 2, 2023
    Inventors: Ethan David Stiefel, Bryler Collins, Gene Michael Altonen, Brian Matthew Burns, Brandon Michael Birchmeier
  • Patent number: 11498253
    Abstract: Systems and approaches for controlling an injection molding machine having a first configuration and a mold forming a mold cavity and being controlled according to an injection cycle include obtaining a pattern for a portion of an injection cycle of an injection molding machine having a second configuration and operating the injection molding machine having the first configuration to inject a molten material into the mold cavity. While operating the injection molding machine having the first configuration, the obtained pattern is used to control a portion of the injection cycle.
    Type: Grant
    Filed: June 11, 2019
    Date of Patent: November 15, 2022
    Assignee: IMFLUX INC.
    Inventors: Bryler Collins, Ethan David Stiefel, Gene Michael Altonen, Brandon Michael Birchmeier, Brian Matthew Burns
  • Patent number: 11491694
    Abstract: Systems and approaches for controlling an injection molding machine having a mold forming a mold cavity and being controlled according to an injection cycle include obtaining a pattern for the injection cycle, operating the injection molding machine to inject a molten material into the mold cavity, and measuring a cavity pressure value of the mold cavity during the mold cycle. Upon measuring a nominal cavity pressure value, a pattern recognition portion of the injection cycle that is at least partially dependent on the obtained pattern commences where a driving force being exerted on the molten material is adjusted such that the measured cavity pressure matches the obtained pattern for the injection cycle.
    Type: Grant
    Filed: June 11, 2019
    Date of Patent: November 8, 2022
    Assignee: IMFLUX INC.
    Inventors: Ethan David Stiefel, Bryler Collins, Gene Michael Altonen, Brian Matthew Burns, Brandon Michael Birchmeier
  • Patent number: 11440230
    Abstract: A method of determining melt flow front travel in a molding apparatus includes setting a sensor threshold, receiving a sensor amount as an output from a sensor monitoring a nozzle of the molding apparatus, and determining that the sensor amount exceeds the sensor threshold. The method further includes receiving a screw location, calculating a travel distance of the screw from the screw location, and calculating melt flow front travel based on the travel distance of the screw. The method further includes receiving, via an interface, an operator generated value for the desired melt flow front travel to be reached, and sending, via an interface, an analog or digital output after the operator generated value has been reached. A method of detecting a leaking condition of a check valve is also included.
    Type: Grant
    Filed: March 26, 2019
    Date of Patent: September 13, 2022
    Assignee: IMFLUX INC.
    Inventors: William Francis Lawless, III, Brandon Michael Birchmeier, Brian Matthew Burns, Gene Michael Altonen, Ethan David Stiefel, Bryler Collins
  • Publication number: 20220266493
    Abstract: In order to improve the consistency of molded products as viscosity shifts throughout a run, a controller of an injection molding machine executes a calibration cycle in accordance with a mold cycle. The controller analyzes a plurality of sensed melt pressure values during the calibration cycle to determine one or more calibration metrics. The controller then uses the calibration metrics when executing each mold cycle of the run. More particularly, during each mold cycle of the run, the controller detects a plurality of sensed melt pressures prior to and during a fill phase of the mold cycle and compares the plurality of sensed melt pressures to the one or more calibration metrics to predict cavity pressure for a pack and hold phase of the mold cycle. The controller then adjusts a set point pressure for the pack and hold phase based on the predicted cavity pressure.
    Type: Application
    Filed: May 11, 2022
    Publication date: August 25, 2022
    Inventors: Bryler Collins, Gene Michael Altonen, Chow-Chi Huang, Brandon Michael Birchmeier, Brian Matthew Burns
  • Patent number: 11358317
    Abstract: In order to improve the consistency of molded products as viscosity shifts throughout a run, a controller of an injection molding machine executes a calibration cycle in accordance with a mold cycle. The controller analyzes a plurality of sensed melt pressure values during the calibration cycle to determine one or more calibration metrics. The controller then uses the calibration metrics when executing each mold cycle of the run. More particularly, during each mold cycle of the run, the controller detects a plurality of sensed melt pressures prior to and during a fill phase of the mold cycle and compares the plurality of sensed melt pressures to the one or more calibration metrics to predict cavity pressure for a pack and hold phase of the mold cycle. The controller then adjusts a set point pressure for the pack and hold phase based on the predicted cavity pressure.
    Type: Grant
    Filed: May 2, 2019
    Date of Patent: June 14, 2022
    Assignee: IMFLUX INC.
    Inventors: Bryler Collins, Gene Michael Altonen, Chow-Chi Huang, Brandon Michael Birchmeier, Brian Matthew Burns
  • Publication number: 20210387393
    Abstract: A method of detecting and compensating for a non-operational mold cavity in an injection molding apparatus having a plurality of mold cavities and an injection molding screw or ram includes injecting, via the injection molding screw or ram, a molten thermoplastic material into the plurality of mold cavities. The method includes measuring a first process parameter of the injection molding apparatus at a pre-determined time during or after the injecting. The method also includes determining, based on the first process parameter, whether one or more mold cavities of the plurality of mold cavities are non-operational. Then, when it is determined that one or more mold cavities are non-operational, the method includes automatically adjusting the first process parameter or a second process parameter of the injection molding apparatus.
    Type: Application
    Filed: May 19, 2021
    Publication date: December 16, 2021
    Inventors: Bryler Collins, Brian Matthew Burns, Gene Michael Altonen, Brandon Michael Birchmeier, Matthew Craver
  • Publication number: 20210206041
    Abstract: A method and system for adjusting melt pressure in an injection molding material that allows calculating a melt pressure of a molten plastic material to be injected and based on the calculated melt pressure and a desired melt pressure adjusting operation of an injection molding machine. This control of an injection molding cycle using the method and system of plastic melt pressure determination allows production of parts of increased quality and consistency.
    Type: Application
    Filed: December 17, 2020
    Publication date: July 8, 2021
    Inventors: Gene Michael Altonen, Bryler Collins, Ethan David Stiefel, Herbert Kenneth Hanson, III, William Francis Lawless, III
  • Publication number: 20200086542
    Abstract: A method for controlling an injection molding process based upon an actual plastic melt pressure including identifying an optimal actual plastic melt pressure curve over time based on a baseline cycle, and adjusting in a subsequent cycle an injection pressure in order to cause a monitored pressure of the molten thermoplastic material to follow the optimal actual plastic melt pressure curve over time. A method for controlling an injection molding process based upon an plastic melt pressure setpoint adjusted using a cavity pressure, wherein the cavity pressure is multiplied by a process factor. Further, a method for controlling an injection molding process using real time cavity pressure including identifying an optimal cavity pressure curve over time based on a baseline cycle and adjusting, in a subsequent cycle, an injection pressure in order to cause a monitored cavity pressure to follow the optimal cavity pressure curve over time.
    Type: Application
    Filed: September 6, 2019
    Publication date: March 19, 2020
    Inventors: Bryler Collins, William Francis Lawless, III, Gene Michael Altonen, Chow-Chi Huang
  • Publication number: 20200078999
    Abstract: Systems and approaches for controlling an injection molding machine having a mold forming a mold cavity and being controlled according to an injection cycle include injecting a molten polymer into the mold cavity according to the injection cycle using a screw that moves from a first position to a second position. Upon completion of the injection cycle, a recovery profile commences where the screw is moved to the first position. Using a sensor, at least one variable is measured during the recovery profile. At least one operational parameter of the injection molding machine is adjusted based on the at least one measured variable during the recovery profile.
    Type: Application
    Filed: September 6, 2019
    Publication date: March 12, 2020
    Inventors: Bryler Collins, Ethan David Stiefel, Brandon Michael Birchmeier
  • Publication number: 20190389112
    Abstract: Systems and approaches for controlling an injection molding machine having a first configuration and a mold forming a mold cavity and being controlled according to an injection cycle include obtaining a pattern for a portion of an injection cycle of an injection molding machine having a second configuration and operating the injection molding machine having the first configuration to inject a molten material into the mold cavity. While operating the injection molding machine having the first configuration, the obtained pattern is used to control a portion of the injection cycle.
    Type: Application
    Filed: June 11, 2019
    Publication date: December 26, 2019
    Inventors: Bryler Collins, Ethan David Stiefel, Gene Michael Altonen, Brandon Michael Birchmeier, Brian Matthew Burns
  • Publication number: 20190389111
    Abstract: Systems and approaches for controlling an injection molding machine having a mold forming a mold cavity and being controlled according to an injection cycle include obtaining a pattern for the injection cycle, operating the injection molding machine to inject a molten material into the mold cavity, and measuring a cavity pressure value of the mold cavity during the mold cycle. Upon measuring a nominal cavity pressure value, a pattern recognition portion of the injection cycle that is at least partially dependent on the obtained pattern commences where a driving force being exerted on the molten material is adjusted such that the measured cavity pressure matches the obtained pattern for the injection cycle.
    Type: Application
    Filed: June 11, 2019
    Publication date: December 26, 2019
    Inventors: Ethan David Stiefel, Bryler Collins, Gene Michael Altonen, Brian Matthew Burns, Brandon Michael Birchmeier