US10385930B2 - Ball coupling assembly for steering column assembly - Google Patents
Ball coupling assembly for steering column assembly Download PDFInfo
- Publication number
- US10385930B2 US10385930B2 US15/438,109 US201715438109A US10385930B2 US 10385930 B2 US10385930 B2 US 10385930B2 US 201715438109 A US201715438109 A US 201715438109A US 10385930 B2 US10385930 B2 US 10385930B2
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- steering
- column
- balls
- steering shaft
- assembly
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- 230000008878 coupling Effects 0.000 title claims abstract description 25
- 238000010168 coupling process Methods 0.000 title claims abstract description 25
- 238000005859 coupling reaction Methods 0.000 title claims abstract description 25
- 230000000717 retained effect Effects 0.000 claims abstract description 9
- 230000007246 mechanism Effects 0.000 claims description 15
- 230000001419 dependent effect Effects 0.000 description 4
- 238000005516 engineering process Methods 0.000 description 4
- 230000004044 response Effects 0.000 description 4
- 230000007704 transition Effects 0.000 description 4
- 230000000712 assembly Effects 0.000 description 2
- 238000000429 assembly Methods 0.000 description 2
- 230000005540 biological transmission Effects 0.000 description 2
- 230000013011 mating Effects 0.000 description 2
- 230000004075 alteration Effects 0.000 description 1
- 238000006243 chemical reaction Methods 0.000 description 1
- 230000036316 preload Effects 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
Images
Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16D—COUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
- F16D15/00—Clutches with wedging balls or rollers or with other wedgeable separate clutching members
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B62—LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
- B62D—MOTOR VEHICLES; TRAILERS
- B62D1/00—Steering controls, i.e. means for initiating a change of direction of the vehicle
- B62D1/02—Steering controls, i.e. means for initiating a change of direction of the vehicle vehicle-mounted
- B62D1/16—Steering columns
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B62—LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
- B62D—MOTOR VEHICLES; TRAILERS
- B62D1/00—Steering controls, i.e. means for initiating a change of direction of the vehicle
- B62D1/02—Steering controls, i.e. means for initiating a change of direction of the vehicle vehicle-mounted
- B62D1/16—Steering columns
- B62D1/18—Steering columns yieldable or adjustable, e.g. tiltable
- B62D1/181—Steering columns yieldable or adjustable, e.g. tiltable with power actuated adjustment, e.g. with position memory
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B62—LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
- B62D—MOTOR VEHICLES; TRAILERS
- B62D1/00—Steering controls, i.e. means for initiating a change of direction of the vehicle
- B62D1/02—Steering controls, i.e. means for initiating a change of direction of the vehicle vehicle-mounted
- B62D1/16—Steering columns
- B62D1/18—Steering columns yieldable or adjustable, e.g. tiltable
- B62D1/183—Steering columns yieldable or adjustable, e.g. tiltable adjustable between in-use and out-of-use positions, e.g. to improve access
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16D—COUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
- F16D11/00—Clutches in which the members have interengaging parts
- F16D11/16—Clutches in which the members have interengaging parts with clutching members movable otherwise than only axially
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16D—COUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
- F16D23/00—Details of mechanically-actuated clutches not specific for one distinct type
- F16D23/12—Mechanical clutch-actuating mechanisms arranged outside the clutch as such
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16D—COUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
- F16D28/00—Electrically-actuated clutches
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60R—VEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
- B60R25/00—Fittings or systems for preventing or indicating unauthorised use or theft of vehicles
- B60R25/01—Fittings or systems for preventing or indicating unauthorised use or theft of vehicles operating on vehicle systems or fittings, e.g. on doors, seats or windscreens
- B60R25/02—Fittings or systems for preventing or indicating unauthorised use or theft of vehicles operating on vehicle systems or fittings, e.g. on doors, seats or windscreens operating on the steering mechanism
- B60R25/022—Fittings or systems for preventing or indicating unauthorised use or theft of vehicles operating on vehicle systems or fittings, e.g. on doors, seats or windscreens operating on the steering mechanism operating on the steering wheel, e.g. bars locked to the steering wheel rim
- B60R25/0222—Fittings or systems for preventing or indicating unauthorised use or theft of vehicles operating on vehicle systems or fittings, e.g. on doors, seats or windscreens operating on the steering mechanism operating on the steering wheel, e.g. bars locked to the steering wheel rim by disjoining steering wheel and column
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16D—COUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
- F16D2300/00—Special features for couplings or clutches
- F16D2300/24—Concentric actuation rods, e.g. actuation rods extending concentrically through a shaft
Definitions
- the invention described herein relates to steering column assemblies and, more particularly, to a ball coupling assembly for steering column assemblies implemented in autonomous or semi-autonomous vehicles.
- ADAS Advanced Driver Assist Systems
- ADAS Advanced Driver Assist Systems
- ADAS Advanced Driver Assist Systems
- Implementing steering on ADAS vehicles may include decoupling the driver interface (e.g., steering wheel) from the steering actuator.
- a rotating driver interface may cause confusion, inconvenience or even harm to the driver during an autonomous driving mode. Addressing the issue of a moving interface will assist with the overall development of autonomous vehicle technology and feasibility.
- a steering column assembly for an autonomous or semi-autonomous vehicle includes a steering wheel. Also included is an upper column steering shaft rigidly coupled to the steering wheel. Further included is a lower column steering shaft operatively coupled to the upper column steering shaft. Yet further included is a ball coupling assembly for switching the upper column steering shaft and the lower column steering shaft between a coupled condition and a decoupled condition.
- the ball coupling assembly includes a plurality of balls retained within the upper column steering shaft.
- the ball coupling assembly also includes a plurality of pockets circumferentially spaced from each other and defined by the lower steering shaft, each of the pockets sized to receive a portion of one of the plurality of balls.
- the ball coupling assembly further includes a collar surrounding the balls, the collar having an angled portion of an inner wall disposed in contact with the balls.
- the ball coupling assembly yet further includes a collar actuating mechanism for selectively axially translating the collar between a coupled condition and a decoupled condition.
- a steering column assembly for an autonomous or semi-autonomous vehicle includes a steering wheel. Also included is an upper column steering shaft rigidly coupled to the steering wheel. Further included is a lower column steering shaft operatively coupled to the upper column steering shaft. Yet further included is a ball coupling assembly for switching the upper column steering shaft and the lower column steering shaft between a coupled condition and a decoupled condition.
- the ball coupling assembly includes a plurality of balls retained within respective holes defined by the lower column steering shaft in a single axial plane.
- the ball coupling assembly also includes a central pin disposed within a bore of the lower column steering shaft and axially translatable therein.
- the ball coupling assembly further includes an annular recess defined by the central pin.
- the ball coupling assembly yet further includes a central pin actuating mechanism for axially translating the central pin, the balls disposed at a first radial position that disposes the balls within the annular recess to place the upper and lower column steering shafts in a decoupled condition, the balls disposed at a second radial position that disposes the balls in abutment with a radially outer surface of the central pin and within the holes of the lower column steering shaft and holes of the upper column steering shaft to place the upper and lower column steering shafts in a coupled condition, the coupled condition providing common rotation of the upper and lower column steering shafts and the decoupled condition permitting independent rotation of the upper and lower column steering shafts.
- a steering column assembly for an autonomous or semi-autonomous vehicle includes a steering wheel. Also included is an upper column steering shaft rigidly coupled to the steering wheel. Further included is a lower column steering shaft operatively coupled to the upper column steering shaft. Yet further included is a ball coupling assembly comprising a plurality of balls retained within the upper column steering shaft, the balls disposed in a first radial position that engages the balls with the upper column steering shaft and the lower column steering shaft to place the upper and lower column steering shafts in a coupled condition, the balls disposed in a second radial position that disengages the balls from at least one of the upper column steering shaft and the lower column steering shaft to place the upper and lower column steering shafts in a decoupled condition.
- FIG. 1 is a partial cross-sectional view of a steering column assembly in a coupled condition according to an aspect of the disclosure
- FIG. 2 is a partial cross-sectional view of the steering column assembly of FIG. 1 in a decoupled condition
- FIG. 3 is a partial cross-sectional view of a steering column assembly in a coupled condition according to another aspect of the disclosure.
- FIG. 4 is a partial cross-sectional view of the steering column assembly of FIG. 3 in a decoupled condition.
- the embodiments provide a reliable and efficient assembly that allows a driver to decouple a steering wheel from a lower steering shaft for use of the vehicle in an autonomous mode, while maintaining the steering wheel in a stationary position.
- the steering column assembly is part of an advanced driver assist system (ADAS) that is able to steer as well as control other parameters of the vehicle to operate it without direct driver involvement.
- ADAS advanced driver assist system
- Autonomous or semi-autonomous driving refers to vehicles that are configured to perform operations without continuous input from a driver (e.g., steering, accelerating, braking etc.) and may be equipped with technology that allows the vehicle to be autonomously or semi-autonomously controlled using sensing, steering, and/or braking technology.
- the steering column assembly 10 includes a lower column steering shaft 12 (also referred to herein as a lower steering shaft) that is operatively coupled to road wheel control structures (not shown), thereby allowing a driver to input road wheel controls and to receive feedback in response to road wheel movement.
- a column jacket surrounds a portion of the lower steering shaft 12 .
- a steering input device such as the illustrated steering wheel 16 , is operatively coupled to the lower steering shaft 12 via an upper column steering shaft 17 (also referred to herein as an upper steering shaft) to allow the user to control the vehicle in a manual driving mode.
- the upper steering shaft 17 is rigidly fixed to the steering wheel 16 with a splined connection, or the like, to ensure common rotation of the steering wheel 16 and the upper steering shaft 17 .
- the steering column assembly 10 is shown in the manual driving mode in FIG. 1 .
- the upper steering shaft 17 is coupled to the lower steering shaft 12 , also referred to as being rotationally coupled.
- the coupled (or rotationally coupled) condition of the upper steering shaft 17 and the lower steering shaft 12 results in common rotation of the steering wheel 16 and the lower steering shaft 12 , such that rotation of the components is dependent upon each other.
- a decoupled condition ( FIG. 2 ) of the upper steering shaft 17 and the lower steering shaft 12 may be present during an autonomous driving mode.
- the decoupled (or rotationally decoupled) condition results in independent rotation of the steering wheel 16 and the lower steering shaft 12 , such that rotation of the lower steering shaft 12 in response to road wheel angular movement does not require or result in rotation of the steering wheel 16 .
- the steering column assembly 10 disclosed herein provides a driver the ability to switch between the coupled and decoupled condition in conjunction with switching between manual and autonomous driving modes.
- the embodiments described herein employ at least one, but typically a plurality of balls 18 to establish the coupled or decoupled conditions.
- the plurality of balls 18 are part of a ball coupling assembly and are fixed within a ball retaining structure, such as a plurality of respective holes 19 , defined by the upper steering shaft 17 in a one-to-one relationship.
- the holes 19 are circumferentially spaced from each other and are each sized to axially and circumferentially retain one of the balls 18 therein.
- the lower steering shaft 12 defines a plurality of pockets 20 disposed in a common axial plane and that are circumferentially spaced from each other.
- the plurality of pockets 20 extend to a radial depth of the lower steering shaft 12 that allows the balls to be partially disposed therein, but with a portion of the balls 18 protruding radially outwardly therefrom.
- the balls 18 are positioned within the pockets 20 in the coupled condition of the lower steering shaft 12 with the upper steering shaft 17 and the steering wheel 16 .
- the balls protrude radially from the pockets 20 to engage both the pocket surfaces and the walls defining the holes 19 of the upper steering shaft 17 . Therefore, when the balls 18 are positioned with the pockets 20 of the lower steering shaft 12 , torque transmission between the steering wheel 16 and the lower steering shaft 12 is established.
- an inner wall 26 of a collar 30 is disposed in contact with the balls 18 . More specifically, an innermost location of an angled portion 32 of the inner wall 26 is in contact with the balls 18 .
- the collar 30 is disposed between the upper steering shaft 17 and a column housing structure 23 . Due to the angled portion 32 of the inner wall 26 , a portion of the inner wall 26 is spaced from the balls 18 to allow the balls 18 to move radially outwardly in some conditions, as described in detail herein.
- a collar actuating mechanism 40 is provided to selectively axially translate the collar 30 in order to control the portion of the angled portion 32 that is adjacent the balls 18 , as this positioning determines whether the balls 18 are radially retained within the pockets 20 or free to move radially outwardly.
- a driving structure 42 such as a pin or shift fork is engaged with the collar 30 .
- the driving structure 42 extends through an aperture 44 of the column housing structure 23 in the illustrated embodiment.
- the aperture 44 is large enough to accommodate axial travel by the driving structure 42 .
- a linkage 46 is coupled to the driving structure 42 at one end and to the column housing structure 23 at an opposing end. Different positioning of the linkage 46 axially translates the driving structure 42 and therefore the collar 30 between two axial positions. Manipulation of the linkage 46 may be accomplished with any suitable actuator, such as an electric solenoid 48 having a pin engageable with the linkage 46 .
- a first state (i.e., powered or unpowered) of the electric solenoid 48 the linkage 46 positions the driving structure 42 , and therefore the collar 30 , in an orientation that disposes the balls 18 in the pockets 20 .
- This provides the coupled condition ( FIG. 1 ), with the innermost location of the angled portion 32 in contact with, or in close proximity to, the balls 18 to radially retain the balls 18 within the pockets 20 .
- second state (i.e., powered or unpowered) of the electric solenoid 48 the driving structure 42 is biased with a spring 50 to move the collar 30 to a position that locates a radially outer region of the angled portion 32 , thereby allowing the balls 18 to move radially outwardly.
- the lower steering shaft 12 defines an annular recess 54 that is located at the same axial position as the pockets 20 , but the annular recess 54 extends to a radial depth that is less than the radial depth of the pockets 20 . This provides a continuous track for the balls to travel through when the balls 18 are at the outer radial position (i.e., decoupled condition), thereby rotationally decoupling the steering wheel from the lower steering shaft 12 .
- the steering column assembly 10 also facilitates autonomous mode for the steering wheel 16 when the assembly in the decoupled condition.
- An autonomous mode refers to a rotationally stationary position and condition of the steering wheel 16 . Maintaining the steering wheel 16 in a stationary position reduces the likelihood of driver confusion, inconvenience and/or harm.
- an electric solenoid 56 includes a pin 58 extending therefrom.
- the electric solenoid 56 is switchable between a first state (i.e., powered or unpowered) and a second state (i.e., powered or unpowered), with one state disposing the pin 58 in a retracted position ( FIG. 1 ) and the other state disposing the pin 58 in an extended position ( FIG. 2 ).
- the extended position of the pin 58 engages the pin 58 with a receiving hole 60 defined by the upper steering shaft 17 to rotationally lock the steering wheel 16 when the upper and lower steering shafts 12 , 17 are in the decoupled condition.
- the preceding example is merely illustrative of how the steering wheel 16 may be locked in the “quiet wheel” mode. Although the steering wheel 16 is rotationally locked, the lower steering shaft 12 is free to rotate due to the balls 18 being disposed in the outward radial position.
- a user interacts with a user input device that switches the states of both electric solenoids 48 , 56 .
- the user input device may be a button, toggle switch, voice activated command, etc. These types of input devices are merely illustrative of the devices that may be employed to switch the states of the solenoids.
- the steering column assembly 110 includes a lower column steering shaft 112 (also referred to herein as a lower steering shaft) that is operatively coupled to road wheel control structures (not shown), thereby allowing a driver to input road wheel controls and to receive feedback in response to road wheel movement.
- a column jacket surrounds a portion of the lower steering shaft 112 .
- a steering input device such as the illustrated steering wheel 116 , is operatively coupled to the lower steering shaft 112 via an upper column steering shaft 117 (also referred to herein as an upper steering shaft) to allow the user to control the vehicle in a manual driving mode.
- the upper steering shaft 117 is rigidly fixed to the steering wheel 116 with a splined connection, or the like, to ensure common rotation of the steering wheel 116 and the upper steering shaft 117 .
- the steering column assembly 110 is shown in the manual driving mode in FIG. 3 .
- the upper steering shaft 117 is coupled to the lower steering shaft 112 , also referred to as being rotationally coupled.
- the coupled (or rotationally coupled) condition of the upper steering shaft 117 and the lower steering shaft 112 results in common rotation of the steering wheel 116 and the lower steering shaft 112 , such that rotation of the components is dependent upon each other.
- a decoupled condition ( FIG. 4 ) of the upper steering shaft 117 and the lower steering shaft 112 may be present during an autonomous driving mode.
- the decoupled (or rotationally decoupled) condition results in independent rotation of the steering wheel 116 and the lower steering shaft 112 , such that rotation of the lower steering shaft 112 in response to road wheel angular movement does not require or result in rotation of the steering wheel 116 .
- the steering column assembly 110 disclosed herein provides a driver the ability to switch between the coupled and decoupled condition in conjunction with switching between manual and autonomous driving modes.
- the embodiments described herein employ at least one, but typically a plurality of balls 118 to establish the coupled or decoupled conditions.
- the plurality of balls 118 are part of a ball coupling assembly and are fixed within ball retaining structure, such as a plurality of respective holes 119 defined by the lower steering shaft 112 in a one-to-one relationship.
- the holes 119 are circumferentially spaced from each other and are each sized to axially and circumferentially retain one of the balls 118 therein.
- the upper steering shaft 117 also has a plurality of holes 121 that are circumferentially spaced from each other and are each sized to axially and circumferentially retain a portion of one of the balls 118 therein.
- the holes 121 of the upper steering shaft 117 and the holes 119 of the lower steering shaft 112 are equal in number and aligned in a common axial plane.
- a central pin 170 is disposed within an axially extending bore 131 of the lower steering shaft 112 .
- the central pin 170 includes a grooved surface leading from a radially outer surface 133 of the central pin 170 to an annular recess 138 defined by the central pin 170 .
- the balls 118 are in abutment with the radially outer surface 133 of the central pin 170 .
- the balls 118 protrude radially to engage the walls defining the holes 119 of the lower steering shaft 112 and the holes 121 of the upper steering shaft 117 . Therefore, when the balls 118 are positioned as such, torque transmission between the steering wheel 116 and the lower steering shaft 112 is established.
- an inner wall 126 of a collar 130 is disposed in contact with an outer radial surface of the balls 118 .
- the collar 130 is disposed between the upper steering shaft 117 and a column housing structure 123 .
- the collar 130 is operatively coupled to the central pin 170 and the elements are axially translatable in a dependent manner. Operative coupling of the collar 130 and the central pin 170 may be achieved with a pin 172 that is disposed in forced contact with the central pin 170 and the collar 130 as a result of a preload reaction of spring 150 against driving pin 142 .
- the spring 150 is provided in some embodiments, but is not necessary to bias the driving pin 142 in some embodiments.
- it is contemplated that the pin 172 and the central pin 170 are fixed to each other.
- the pin 172 extends through and axially moves within slots 199 defined by the upper steering shaft 117 .
- a collar actuating mechanism 140 is provided to axially translate the collar 130 in order to control the axial position of the central pin 170 , as this positioning determines whether the balls 118 are located at a first radial position or a second radial position.
- the balls 118 may be located at a first radial position when the balls 118 are disposed radially inwardly within the annular recess 138 and at a second radial position when the balls 118 are disposed in abutment with the radially outer surface 133 of the central pin 170 .
- the radial position of the balls 118 is dependent upon the axial position of the central pin 170 .
- the collar actuating mechanism 140 includes a driving structure 142 , such as a pin or shift fork is engaged with the collar 130 .
- the driving structure 142 extends through an aperture 144 of the column housing structure 123 in the illustrated embodiment.
- the aperture 144 is large enough to accommodate axial travel by the driving structure 142 .
- a linkage 146 is coupled to the driving structure 142 at one end and to the column housing structure 123 at an opposing end. Different positioning of the linkage 146 axially translates the driving structure 142 and therefore the collar 130 between two axial positions.
- Manipulation of the linkage 146 may be accomplished with any suitable actuator, such as an electric solenoid 148 having a pin engageable with the linkage 146 .
- the linkage 146 positions the driving structure 142 , and therefore the collar 130 , in an orientation that disposes the balls 118 in abutment with the radially outer surface 133 of the central pin 170 .
- This provides the coupled condition ( FIG. 3 .
- the driving structure 142 is biased with a spring 150 to move the collar 130 to a position that moves the balls 118 radially inwardly and out of contact with the wall defining the holes 121 of the upper steering shaft 117 .
- the balls 118 are located within the annular recess 138 which provides a continuous track for the balls 118 to travel through when the balls 118 are at the inner radial position (i.e., decoupled condition), thereby rotationally decoupling the steering wheel 116 from the lower steering shaft 112 .
- a spring 180 located within the bore 131 of the lower steering shaft 112 biases the central pin 170 to the axial position that disposes the balls 118 in the annular recess 138 .
- the steering column assembly 10 is also facilitates a rotationally stationary position and condition of the steering wheel 116 . Maintaining the steering wheel 116 in a stationary position reduces the likelihood of driver confusion, inconvenience and/or harm.
- an electric solenoid 156 includes a pin 158 extending therefrom.
- the electric solenoid 156 is switchable between a first state (i.e., powered or unpowered) and a second state (i.e., powered or unpowered), with one state disposing the pin 158 in a retracted position ( FIG. 3 ) and the other state disposing the pin 158 in an extended position ( FIG. 4 ).
- the extended position of the pin 158 engages the pin 158 with a receiving hole 160 defined by the upper steering shaft 117 to rotationally lock the steering wheel 116 when the upper and lower steering shafts 112 , 117 are in the decoupled condition.
- the preceding example is merely illustrative of how the steering wheel 116 may be locked in the “quiet wheel” mode. Although the steering wheel 116 is rotationally locked, the lower steering shaft 112 is free to rotate due to the balls 118 being disposed in the inward radial position.
- a user interacts with a user input device that switches the states of both electric solenoids 148 , 156 .
- the user input device may be a button, toggle switch, voice activated command, etc. These types of input devices are merely illustrative of the devices that may be employed to switch the states of the solenoids.
- the overall steering system is monitored with an absolute position sensor and the system only allows switching between the driving modes (autonomous and manual) when the steering system is in an “on-center position” (e.g., straight ahead driving position). This facilitates a smooth transition between the driving modes.
- the embodiments described herein provide a reliable and efficient way to transition between the coupled and decoupled conditions of the steering column assembly 10 . Additionally, the steering wheel 16 is desirably maintained in a stationary position (rotationally) while the assembly is in the decoupled condition and autonomous driving mode.
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- Mechanical Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Transportation (AREA)
- Physics & Mathematics (AREA)
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Abstract
Description
Claims (16)
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
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US15/438,109 US10385930B2 (en) | 2017-02-21 | 2017-02-21 | Ball coupling assembly for steering column assembly |
CN201810145928.7A CN108454690B (en) | 2017-02-21 | 2018-02-12 | Ball coupling assembly for a steering column assembly |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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US15/438,109 US10385930B2 (en) | 2017-02-21 | 2017-02-21 | Ball coupling assembly for steering column assembly |
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US20180238400A1 US20180238400A1 (en) | 2018-08-23 |
US10385930B2 true US10385930B2 (en) | 2019-08-20 |
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US15/438,109 Active 2037-10-22 US10385930B2 (en) | 2017-02-21 | 2017-02-21 | Ball coupling assembly for steering column assembly |
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US (1) | US10385930B2 (en) |
CN (1) | CN108454690B (en) |
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US20190226561A1 (en) * | 2015-06-25 | 2019-07-25 | Steering Solutions Ip Holding Corporation | Stationary steering wheel assembly and method |
US20190225254A1 (en) * | 2018-01-25 | 2019-07-25 | Jtekt Corporation | Steering system |
US11273860B2 (en) * | 2019-11-25 | 2022-03-15 | Steering Solutions Ip Holding Corporation | System, method and apparatus for a stowable steering column having a collapse-limited position |
US11459015B2 (en) * | 2017-12-15 | 2022-10-04 | Thyssenkrupp Presta Ag | Electrically adjustable steering column for a motor vehicle |
US11560169B2 (en) * | 2015-06-11 | 2023-01-24 | Steering Solutions Ip Holding Corporation | Retractable steering column system and method |
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US10457313B2 (en) | 2016-06-28 | 2019-10-29 | Steering Solutions Ip Holding Corporation | ADAS wheel locking device |
US10363958B2 (en) | 2016-07-26 | 2019-07-30 | Steering Solutions Ip Holding Corporation | Electric power steering mode determination and transitioning |
US10370022B2 (en) | 2017-02-13 | 2019-08-06 | Steering Solutions Ip Holding Corporation | Steering column assembly for autonomous vehicle |
US10759474B2 (en) * | 2018-04-09 | 2020-09-01 | Ford Global Technologies, Llc | Stowable steering wheel |
US10974756B2 (en) | 2018-07-31 | 2021-04-13 | Steering Solutions Ip Holding Corporation | Clutch device latching system and method |
CN109436083B (en) * | 2018-10-22 | 2024-08-13 | 湖南汽车工程职业学院 | Electromagnetic type semi-automatic clutch steering column for intelligent driving automobile |
CN109591759B (en) * | 2019-01-30 | 2020-04-17 | 德州职业技术学院(德州市技师学院) | Mechanical anti-theft lock for automobile |
FR3102742B1 (en) * | 2019-11-05 | 2022-05-27 | Renault Sas | AD steering wheel retraction and disengagement device with wheel angle recovery |
CN112874625B (en) * | 2019-11-29 | 2023-03-24 | 比亚迪股份有限公司 | Vehicle steering system and vehicle |
JP2021146841A (en) * | 2020-03-18 | 2021-09-27 | 株式会社アイシン | Vehicle anti-theft device |
CN112109679B (en) * | 2020-09-21 | 2022-08-16 | 重庆交通大学 | Device for preventing both hands from hurting steering wheel |
CN114312969A (en) * | 2020-09-30 | 2022-04-12 | 比亚迪股份有限公司 | Steering column assembly, steering column and vehicle |
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