Luggage-retention device
10486604 ยท 2019-11-26
Assignee
Inventors
- Mohammad Omar Faruque (Ann Arbor, MI, US)
- S. M. Iskander Farooq (Novi, MI, US)
- Dean M. Jaradi (Macomb, MI, US)
Cpc classification
B60P7/04
PERFORMING OPERATIONS; TRANSPORTING
B60R7/02
PERFORMING OPERATIONS; TRANSPORTING
B60R7/04
PERFORMING OPERATIONS; TRANSPORTING
B60R21/026
PERFORMING OPERATIONS; TRANSPORTING
B60R21/06
PERFORMING OPERATIONS; TRANSPORTING
B60P7/0876
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60R5/00
PERFORMING OPERATIONS; TRANSPORTING
B60P7/04
PERFORMING OPERATIONS; TRANSPORTING
B60R21/02
PERFORMING OPERATIONS; TRANSPORTING
B60R7/08
PERFORMING OPERATIONS; TRANSPORTING
B60R7/02
PERFORMING OPERATIONS; TRANSPORTING
B60P7/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A vehicle compartment includes a first track and a second track spaced from each other, a first beam elongated transverse to and slidable along the first track, a second beam elongated transverse to and slidable along the second track, and a net extending from the first beam to the second beam.
Claims
1. A vehicle compartment comprising: a first track and a second track spaced from each other; a first beam elongated transverse to and slidable along the first track; a second beam elongated transverse to and slidable along the second track, wherein the first and second beams each extend from a slidable end slidable along the corresponding track to a free end spaced from the corresponding track; a net extending from the first beam to the second beam; a third beam rotatably coupled to the free end of the first beam; and a fourth beam rotatably coupled to the free end of the second beam.
2. The vehicle compartment of claim 1, wherein the first beam is cantilevered from the first track, and the second beam is cantilevered from the second track.
3. The vehicle compartment of claim 1, wherein the first beam and the second beam are parallel.
4. The vehicle compartment of claim 1, wherein the net is a first net, the vehicle compartment further comprising a second net extending from the third beam to the fourth beam.
5. The vehicle compartment of claim 1, further comprising a door positioned between the tracks.
6. The vehicle compartment of claim 1, wherein the third and fourth beams are rotatable between a retracted position and an extended position.
7. The vehicle compartment of claim 6, wherein the third beam in the retracted position extends from the free end of the first beam parallel to the first beam toward the first track, and the fourth beam in the retracted position extends from the free end of the second beam parallel to the second beam toward the second track.
8. The vehicle compartment of claim 6, wherein the third beam in the extended position extends from the free end of the first beam transverse to the first beam away from the first track, and the fourth beam in the extended position extends from the free end of the second beam transverse to the second beam away from the second track.
9. The vehicle compartment of claim 1, further comprising a first rotary actuator coupling the first beam and the third beam, and a second rotary actuator coupling the second beam and the fourth beam.
10. The vehicle compartment of claim 9, further comprising a controller in communication with the rotary actuators and programmed to instruct the rotary actuators to move the third and fourth beams from a retracted position to an extended position in response to the first and second beams descending relative to the first and second tracks.
11. The vehicle compartment of claim 9, further comprising a controller in communication with the rotary actuators and programmed to instruct the rotary actuators to move the third and fourth beams from an extended position to a retracted position in response to the first and second beams ascending above a height threshold relative to the first and second tracks.
12. A vehicle compartment comprising: a first track and a second track spaced from each other; a first beam elongated transverse to and slidable along the first track; a second beam elongated transverse to and slidable along the second track; a net extending from the first beam to the second beam; a motor fixed to one of the first track and the first beam and movably coupled to the other of the first track and the first beam; and a pressure switch coupled to the motor, the pressure switch positioned to deactivate the motor in response to the pressure exceeding a pressure threshold.
13. The vehicle compartment of claim 12, further comprising a worm gear rotatably coupled to the motor, extending parallel to the first track, and engaged with the first beam.
14. The vehicle compartment of claim 12, further comprising a first pulley wheel rotatably coupled to the motor, and a first belt extending around the first pulley wheel, the first beam fixed to the first belt.
15. The vehicle compartment of claim 14, further comprising a second pulley wheel coupled to the motor; and a second belt extending around the second pulley wheel, the second beam fixed to the second belt.
16. The vehicle compartment of claim 14, wherein the motor is a first motor, the vehicle compartment further comprising a second motor fixed relative to the second track, a second pulley wheel coupled to the second motor, and a second belt extending around the second pulley wheel, the second beam fixed to the second belt.
17. The vehicle compartment of claim 12, further comprising an input switch having first, second, and third positions and in communication with the motor, the input switch being configured to instruct the motor to raise the first beam when the input switch is in the first position, to remain stationary when the input switch is in the second position, and to lower the first beam when the input switch is in the third position.
18. The vehicle compartment of claim 12, wherein the motor is a first motor, the vehicle compartment further comprising a second motor fixed relative to the second track and movably coupled to the second beam.
19. A vehicle compartment comprising: a first track and a second track spaced from each other; a first beam elongated transverse to and slidable along the first track; a second beam elongated transverse to and slidable along the second track; a net extending from the first beam to the second beam; a motor fixed to one of the first track and the first beam and movably coupled to the other of the first track and the first beam; and a worm gear rotatably coupled to the motor, extending parallel to the first track, and engaged with the first beam.
20. A vehicle compartment comprising: a first track and a second track spaced from each other; a first beam elongated transverse to and slidable along the first track; a second beam elongated transverse to and slidable along the second track; a net extending from the first beam to the second beam; a motor fixed to one of the first track and the first beam and movably coupled to the other of the first track and the first beam; and an input switch having first, second, and third positions and in communication with the motor, the input switch being configured to instruct the motor to raise the first beam when the input switch is in the first position, to remain stationary when the input switch is in the second position, and to lower the first beam when the input switch is in the third position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(12) A vehicle compartment includes a first track and a second track spaced from each other, a first beam elongated transverse to and slidable along the first track, a second beam elongated transverse to and slidable along the second track, and a net extending from the first beam to the second beam.
(13) The first beam may be cantilevered from the first track, and the second beam may be cantilevered from the second track.
(14) The first beam and the second beam may be parallel.
(15) The first and second beams may each extend from a slidable end slidable along the corresponding track to a free end spaced from the corresponding track; the vehicle compartment may further include a third beam rotatably coupled to the free end of the first beam, and a fourth beam rotatably coupled to the free end of the second beam. The net may be a first net, the vehicle compartment may further include a second net extending from the third beam to the fourth beam.
(16) The third and fourth beams may be rotatable between a retracted position and an extended position. The third beam in the retracted position may extend from the free end of the first beam parallel to the first beam toward the first track, and the fourth beam in the retracted position may extend from the free end of the second beam parallel to the second beam toward the second track.
(17) The third beam in the extended position may extend from the free end of the first beam transverse to the first beam away from the first track, and the fourth beam in the extended position may extend from the free end of the second beam transverse to the second beam away from the second track.
(18) The vehicle compartment may include a first rotary actuator coupling the first beam and the third beam, and a second rotary actuator coupling the second beam and the fourth beam. The vehicle compartment may include a controller in communication with the rotary actuators and programmed to instruct the rotary actuators to move the third and fourth beams from a retracted position to an extended position in response to the first and second beams descending relative to the first and second tracks.
(19) The vehicle compartment may include a controller in communication with the rotary actuators and programmed to instruct the rotary actuators to move the third and fourth beams from an extended position to a retracted position in response to the first and second beams ascending above a height threshold relative to the first and second tracks.
(20) The vehicle compartment may include a motor fixed to one of the first track and the first beam and movably coupled to the other of the first track and the first beam. The vehicle compartment may include a worm gear rotatably coupled to the motor, extending parallel to the first track, and engaged with the first beam.
(21) The vehicle compartment may include a first pulley wheel rotatably coupled to the motor, and a first belt extending around the first pulley wheel, and the first beam may be fixed to the first belt. The vehicle compartment may include a second pulley wheel coupled to the motor, and a second belt extending around the second pulley wheel, and the second beam may be fixed to the second belt.
(22) The motor may be a first motor, and the vehicle compartment may further include a second motor fixed relative to the second track, a second pulley wheel coupled to the second motor, and a second belt extending around the second pulley wheel, and the second beam may be fixed to the second belt.
(23) The vehicle compartment may include a pressure switch coupled to the motor, and the pressure switch may be positioned to deactivate the motor in response to the pressure exceeding a pressure threshold.
(24) The vehicle compartment may include an input switch having first, second, and third positions and in communication with the motor, and the input switch may be configured to instruct the motor to raise the first beam when the input switch is in the first position, to remain stationary when the input switch is in the second position, and to lower the first beam when the input switch is in the third position.
(25) The motor may be a first motor, and the vehicle compartment may further include a second motor fixed relative to the second track and movably coupled to the second beam.
(26) The vehicle compartment may include a door positioned between the tracks.
(27) The vehicle compartment may provide occupants of a vehicle with access to their luggage, such as during travel if the vehicle is autonomous, by having the vehicle compartment accessible within a passenger cabin of the vehicle. The beams and nets may prevent the luggage from moving about and possibly injuring the occupants in the event of, e.g., an impact to the vehicle. The beams and nets may provide convenience by automatically taking a position based on signals from the occupants and/or from sensors.
(28) With reference to
(29) The vehicle 30 includes a vehicle compartment 32. The vehicle compartment 32 provides a space to place objects, e.g., luggage. The vehicle compartment 32 may be divided or partially divided from a passenger cabin 34, or the vehicle compartment 32 may be open with the passenger cabin 34, as shown in
(30) With continued reference to
(31) With reference to
(32) With reference to
(33) With reference to
(34) With reference to
(35) With reference to
(36) A third beam 60 is rotatably coupled to the free end 52 of the first beam 46, and a fourth beam 62 is rotatably coupled to the free end 52 of the second beam 48. The third and fourth beams 60, 62 are each elongated from the free ends 52 of the first and second beams 46, 48. The third beam 60 is rotatable relative to the first beam 46 about a first axis A extending perpendicular to first beam 46 at the free end 52, and the fourth beam 62 is rotatable relative to the second beam 48 about a second axis B extending perpendicular to the second beam 48 and the free end 52.
(37) With continued reference to
(38) With reference to
(39) A second net 68 extends from the third beam 60 to the fourth beam 62. The second net 68 is formed of a plurality of the cords 58 arranged in a gridlike pattern. The cords 58 may be spaced closely enough to hold down objects typically stored in the vehicle compartment 32; for example, the cords 58 may be two or three times closer together than a dimension of a smallest of typical objects stored in the storage space, e.g., a bag of groceries. The cords 58 may be formed of any suitably flexible material with a suitably high tensile strength, e.g., nylon.
(40) With reference to
(41) With reference to
(42) With reference to
(43) With reference to
(44) With continued reference to
(45) With reference to
(46) With reference to
(47) The controller 96 may be programmed to instruct the rotary actuators 64, 66. For example, the controller 96 may be programmed to instruct the first motor 70 or the motors 70, 72 to raise the first and second beams 46, 48 in response to a signal indicating that the door 36 has just been opened, and the controller 96 may be programmed to instruct the first motor 70 or the motors 70, 72 to lower the first and second beams 46, 48 in response to a signal indicating that the door 36 has just been closed. The door 36 may be equipped with a sensor (not shown) indicating whether the door 36 is open or closed that is in communication with the controller 96.
(48) With reference to
(49) With continued reference to
(50) In operation, the first and second beams 46, 48 may be raised in response to an occupant opening the door 36 or turning the input switch 94 to the first position until the first and second beams 46, 48 are sufficiently raised. As the first and second beams 46, 48 cross the height threshold, the third and fourth beams 60, 62 are rotated by the rotary actuators 64, 66 to the retracted position. The occupant may then place luggage in the vehicle compartment 32. The occupant may then close the door 36 or turn the input switch 94 to the third position, causing the first and second beams 46, 48 to lower and the third and fourth beams 60, 62 to rotate to the extended position. The first and second beams 46, 48 may cease lowering when the pressure switch 92 is triggered or when the occupant turns the input switch 94 to the second position.
(51) The disclosure has been described in an illustrative manner, and it is to be understood that the terminology which has been used is intended to be in the nature of words of description rather than of limitation. Many modifications and variations of the present disclosure are possible in light of the above teachings, and the disclosure may be practiced otherwise than as specifically described.