Patents by Inventor Doyle R. Downey

Doyle R. Downey 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: 6866276
    Abstract: A vehicle suspension is provided that includes a frame supporting a pair of laterally spaced apart suspension members pivotally supported on the frame and movable in a vertical direction. A pair of wheel ends is each supported respectively on one of the suspension members. A stabilizer bar is supported on the frame laterally between the suspension members. The stabilizer bar includes opposing ends each respectively proximate to one of the suspension members. A pair of resilient stabilizer bar links each respectively interconnect one of the ends and one of the suspension members and transmit torsional force to the stabilizer bar in response to movement of the suspension members in the vertical direction during roll conditions. The links have first and second deflection rates during the roll condition with the first rate being less than the second deflection rate.
    Type: Grant
    Filed: May 10, 2002
    Date of Patent: March 15, 2005
    Assignee: Meritor Light Vehicle Technology, LLC
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Jr., Monte G. Williams
  • Patent number: 6854750
    Abstract: A variable rate bushing passively controls the stiffness of a stabilizer bar. During normal vehicle operation, the stabilizer bar is compliant. As twist increase, the resistance increases. In one embodiment, the variable rate bushing includes at least one void which compresses as the vehicle turns. As the stabilizer bar axially twists, the void compresses and the rate of the bushing increases, reducing axial twist and increasing stiffness of the stabilizer bar. In one embodiment, the voids are teardrop shaped, arc shaped, or bone shaped. Alternatively, the bushing includes an inner layer of softer material and an outer layer of harder material to control stabilizer bar stiffness. Also, the bushing may include a molded insert made of a hard material inserted into a softer material to control the stiffness of the stabilizer bar.
    Type: Grant
    Filed: December 14, 2001
    Date of Patent: February 15, 2005
    Assignee: Meritor Light Vehicle Technology, LLC
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams
  • Patent number: 6851679
    Abstract: An adaptive suspension system for a motor vehicle varies suspension parameters in response to steering input. The system includes a sensor to measure changes in the power assist steering mechanism that indicate a change in vehicle direction and a shock variable suspension member changed in response to a change in vehicle direction. The sensor measures pressure changes in the power assist steering system such that the suspension system is optimized to accommodate specific vehicle maneuvering. In another embodiment, the variable suspension member is in hydraulic communication with the hydraulic circuit of the power assist steering mechanism such that pressure changes caused by steering input triggers changes in the suspension system to accommodate vehicle maneuvering.
    Type: Grant
    Filed: May 1, 2002
    Date of Patent: February 8, 2005
    Assignee: Meritor Light Vehicle Technology, LLC
    Inventors: Doyle R. Downey, Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Joseph Cubalchini, Jr., Monte G. Williams
  • Patent number: 6811166
    Abstract: A clutch device for use with a vehicle suspension system to vary the stiffness of a stabilizer bar. A plurality of dampers connected to the clutch body alternate with a plurality of dampers connected to the stabilizer bar. The dampers are coated with a friction material and surrounded by a fluid. When a load is applied on the walls of clutch body, the friction material comes into contact, dampening the rotation action of the stabilizer bar. A sensor senses the parameters of the ride and generates a signal based on these parameters. The signal activates a power source controller which applies the load to the walls.
    Type: Grant
    Filed: December 18, 2001
    Date of Patent: November 2, 2004
    Assignee: Meritor Light Vehicle Technology, LLC
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams
  • Patent number: 6793234
    Abstract: A steering system comprises a steering wheel and a feedback mechanism in communication with the steering wheel. A control unit communicates with a sensor and controls the feedback mechanism based on the signal from the sensor. The feedback mechanism may cause tactile feedback in the steering wheel. The feedback mechanism is most preferably incorporated by controlling a solenoid valve in a power steering circuit for the vehicle. By repeatedly actuating the solenoid valve, vibration can be caused in the steering wheel.
    Type: Grant
    Filed: October 17, 2001
    Date of Patent: September 21, 2004
    Assignee: Meritor Light Vehicle Technology, LLC
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Jr., Monte G. Williams
  • Patent number: 6736419
    Abstract: A pair of tension cables are positioned around cams attached to the lower control arms of a vehicle suspension. Each tension cable includes a tension damper responsive to tension in the tension cables. Each tension damper includes a cylinder containing a fluid and a piston including at least one orifice attached to a rod. The piston divides the cylinder into a first and second compartment. The rod in connected to the tension cable. When the tension cable pulls on one end of the rod, the piston is pulled towards the tension cable. The fluid creates resistance in the tension damper as the fluid moves through the orifice from one compartment to the other compartment, damping vehicle roll. Control of the tension dampers can be passive, semi-active, or active.
    Type: Grant
    Filed: November 6, 2001
    Date of Patent: May 18, 2004
    Assignee: Meritor Light Vehicle Technology, LLC
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Jr., Monte G. Williams
  • Patent number: 6651991
    Abstract: A housing attaches a stabilizer bar to the body of a vehicle and includes pin stops which actively control the stiffness of the stabilizer bar. A spring positioned about each of the pins provide a retaining spring force on the head of the pin, preventing the pins from moving into an aperture in the housing. When a sensor detects that lateral acceleration or yaw rate exceeds a threshold value, an actuator drives pins to overcome the spring force, pushing the pins into the aperture. When the pins are actuated, a protrusion on the stabilizer bar is trapped between the pins. When the vehicle turns and the stabilizer bar axially twists, the protrusion eventually contacts one the pins, preventing further rotation and stiffening the stabilizer bar.
    Type: Grant
    Filed: December 18, 2001
    Date of Patent: November 25, 2003
    Assignee: Meritor Light Vehicle Technology, LLC
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Jr., Monte G. Williams
  • Publication number: 20030209870
    Abstract: A vehicle suspension is provided that includes a frame supporting a pair of laterally spaced apart suspension members pivotally supported on the frame and movable in a vertical direction. A pair of wheel ends is each supported respectively on one of the suspension members. A stabilizer bar is supported on the frame laterally between the suspension members. The stabilizer bar includes opposing ends each respectively proximate to one of the suspension members. A pair of resilient stabilizer bar links each respectively interconnect one of the ends and one of the suspension members and transmit torsional force to the stabilizer bar in response to movement of the suspension members in the vertical direction during roll conditions. The links have first and second deflection rates during the roll condition with the first rate being less than the second deflection rate.
    Type: Application
    Filed: May 10, 2002
    Publication date: November 13, 2003
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams
  • Publication number: 20030205868
    Abstract: An adaptive suspension system for a motor vehicle varies suspension parameters in response to steering input. The system includes a sensor to measure changes in the power assist steering mechanism that indicate a change in vehicle direction and a shock variable suspension member changed in response to a change in vehicle direction. The sensor measures pressure changes in the power assist steering system such that the suspension system is optimized to accommodate specific vehicle maneuvering. In another embodiment, the variable suspension member is in hydraulic communication with the hydraulic circuit of the power assist steering mechanism such that pressure changes caused by steering input triggers changes in the suspension system to accommodate vehicle maneuvering.
    Type: Application
    Filed: May 1, 2002
    Publication date: November 6, 2003
    Inventors: Doyle R. Downey, Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Joseph Cubalchini, Monte G. Williams
  • Patent number: 6585275
    Abstract: An assembly for use as part of a vehicle suspension system includes an adjustable roll rate that is automatically adjusted responsive to maneuvers of the vehicle. A stiffener element is coupled with a stabilizer bar. The stiffener element increases the roll rate responsive to the vehicle wheels being turned. In one example, the stiffener element is a metallic plate that rotates into various positions responsive to the vehicle wheel being turned. The further the wheel turns, the further the plate rotates and the greater the increase in the roll rate.
    Type: Grant
    Filed: December 17, 2001
    Date of Patent: July 1, 2003
    Assignee: Meritor Light Vehicle Technology, LLC
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams
  • Publication number: 20030111806
    Abstract: An assembly for use as part of a vehicle suspension system includes an adjustable roll rate that is automatically adjusted responsive to maneuvers of the vehicle. A stiffener element is coupled with a stabilizer bar. The stiffener element increases the roll rate responsive to the vehicle wheels being turned. In one example, the stiffener element is a metallic plate that rotates into various positions responsive to the vehicle wheel being turned. The further the wheel turns, the further the plate rotates and the greater the increase in the roll rate.
    Type: Application
    Filed: December 17, 2001
    Publication date: June 19, 2003
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams
  • Publication number: 20030111805
    Abstract: A housing attaches a stabilizer bar to the body of a vehicle and includes pin stops which actively control the stiffness of the stabilizer bar. A spring positioned about each of the pins provide a retaining spring force on the head of the pin, preventing the pins from moving into an aperture in the housing. When a sensor detects that lateral acceleration or yaw rate exceeds a threshold value, an actuator drives pins to overcome the spring force, pushing the pins into the aperture. When the pins are actuated, a protrusion on the stabilizer bar is trapped between the pins. When the vehicle turns and the stabilizer bar axially twists, the protrusion eventually contacts one the pins, preventing further rotation and stiffening the stabilizer bar.
    Type: Application
    Filed: December 18, 2001
    Publication date: June 19, 2003
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams
  • Publication number: 20030111818
    Abstract: A variable rate bushing passively controls the stiffness of a stabilizer bar. During normal vehicle operation, the stabilizer bar is compliant. As twist increase, the resistance increases. In one embodiment, the variable rate bushing includes at least one void which compresses as the vehicle turns. As the stabilizer bar axially twists, the void compresses and the rate of the bushing increases, reducing axial twist and increasing stiffness of the stabilizer bar. In one embodiment, the voids are teardrop shaped, arc shaped, or bone shaped. Alternatively, the bushing includes an inner layer of softer material and an outer layer of harder material to control stabilizer bar stiffness. Also, the bushing may include a molded insert made of a hard material inserted into a softer material to control the stiffness of the stabilizer bar.
    Type: Application
    Filed: December 14, 2001
    Publication date: June 19, 2003
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams
  • Publication number: 20030111816
    Abstract: A clutch device for use with a vehicle suspension system to vary the stiffness of a stabilizer bar. A plurality of dampers connected to the clutch body alternate with a plurality of dampers connected to the stabilizer bar. The dampers are coated with a friction material and surrounded by a fluid. When a load is applied on the walls of clutch body, the friction material comes into contact, dampening the rotation action of the stabilizer bar. A sensor senses the parameters of the ride and generates a signal based on these parameters. The signal activates a power source controller which applies the load to the walls.
    Type: Application
    Filed: December 18, 2001
    Publication date: June 19, 2003
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams
  • Publication number: 20030111812
    Abstract: A suspension assembly for a vehicle is provided that includes a frame supporting upper and lower control arms in spaced relation to one another that are pivotally connected to the frame. A steering knuckle is supported between the control arms and supports a wheel. The orientation of the knuckle defines the wheel attitude, which includes caster, camber, toe, and track. The knuckle is rotated about its axis in response to mechanical inputs from a steering wheel. First and second actuators may be supported on one of the control arms and connected to a portion of the knuckle. A third actuator may be supported on the other control arm and connected to another portion of the knuckle. At least one sensor detects vehicle ride conditions such as braking, vehicle yaw, and steering position. A controller is connected to the sensors and the actuators to command the actuators to adjust at least one of the caster, camber, toe, and track in response to the vehicle ride conditions.
    Type: Application
    Filed: December 19, 2001
    Publication date: June 19, 2003
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams
  • Publication number: 20030085542
    Abstract: A pair of tension cables are positioned around cams attached to the lower control arms of a vehicle suspension. Each tension cable includes a tension damper responsive to tension in the tension cables. Each tension damper includes a cylinder containing a fluid and a piston including at least one orifice attached to a rod. The piston divides the cylinder into a first and second compartment. The rod in connected to the tension cable. When the tension cable pulls on one end of the rod, the piston is pulled towards the tension cable. The fluid creates resistance in the tension damper as the fluid moves through the orifice from one compartment to the other compartment, damping vehicle roll. Control of the tension dampers can be passive, semi-active, or active.
    Type: Application
    Filed: November 6, 2001
    Publication date: May 8, 2003
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams
  • Publication number: 20030070863
    Abstract: A steering system comprises a steering wheel and a feedback mechanism in communication with the steering wheel. A control unit communicates with a sensor and controls the feedback mechanism based on the signal from the sensor. The feedback mechanism may cause tactile feedback in the steering wheel. The feedback mechanism is most preferably incorporated by controlling a solenoid valve in a power steering circuit for the vehicle. By repeatedly actuating the solenoid valve, vibration can be caused in the steering wheel.
    Type: Application
    Filed: October 17, 2001
    Publication date: April 17, 2003
    Inventors: Robert P. Carlstedt, James B. Chamberlin, Ragnar H. Ledesma, Nancy L. Saxon, Dennis A. Kramer, Doyle R. Downey, Joseph Cubalchini, Monte G. Williams