IP Library Granted Patent US 10,246,051
Granted Patent B2
US 10,246,051 · App. 15/616,443 · Granted Apr 2, 2019

Vehicle seatbelt assembly

Inventor: Jesse Tegen (Canton, MI)
Assignee: Nissan North America, Inc.
B60R22/4604B60R22/22B60R22/24B60R22/4628B60R22/4671B60R22/48B60R2022/1806B60R2022/4666B60R2022/4841
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Quick Facts
Patent No.
US 10,246,051
App. No.
15/616,443
Granted
Apr 2, 2019
Kind
B2
Abstract

A seatback portion has a tether passageway defined therein from proximate an upper section to proximate a lower section thereof. A seatbelt tether includes a tensioning mechanism, a tether ring and a connecting portion that extends from the tether ring to the tensioning mechanism. The connecting portion extends through the tether passageway with the tether ring located at the upper section outside the seatback portion. The tether ring is shaped and dimension to slide-ably receive a seatbelt. The tensioning mechanism selectively applies tension to the tether ring. In a non-tensioned state the tether ring is movable to an upper outboard side of the seatback portion. In a tensioned state the tether ring is pulled toward a headrest supporting section of the seatback portion inboard and away from the upper outboard side of the seatback portion.

Claims (51)

1. A vehicle seatbelt assembly, comprising:

a seat assembly having a seat cushion portion and a seatback portion, the seat cushion portion being configured to attach to a floor structure within a passenger compartment of a vehicle, the seatback portion being supported to the seat cushion portion and having a tether passageway defined therein extending from proximate an upper section downward toward a lower section of the seatback portion; and

a seatbelt tether having a tensioning mechanism that is non-movable relative to the seat assembly, a tether ring and an elongated connecting portion, the elongated connecting portion having a first end connected to the tensioning mechanism and a second end attached to the tether ring, the elongated connecting portion extending through the tether passageway of the seatback portion from the tensioning mechanism and out of the tether passageway to the tether ring, with the tether ring being located outside the tether passageway at the upper section of the seatback portion, the tether ring being shaped and dimension to receive a seatbelt such that the seatbelt can slidably move therethrough,

the tensioning mechanism being configured to selectively apply tension to the elongated connecting portion and the tether ring and move the elongated connecting portion and the tether ring a predetermined distance in response to detection of a tensioning event, such that in a non-tensioned state the tether ring is moveable to an upper outboard side of the seatback portion and in a tensioned state the tether ring is pulled in an inboard direction away from the upper outboard side of the seatback portion.

2. The vehicle seatbelt assembly according to claim 1 , wherein

the elongated connecting portion consists of one of the following: a cable, a metallic rod and a nylon strap.

3. The vehicle seatbelt assembly according to claim 1 , wherein

the tensioning mechanism is fixedly attached to one of the floor structure and the seat cushion portion.

4. The vehicle seatbelt assembly according to claim 1 , wherein

the tensioning mechanism is coupled to a motion sensor that detects the tensioning event, the tensioning event being any of the following: a rapid deceleration of the vehicle body structure, a hard-braking event and an impact event.

5. The vehicle seatbelt assembly according to claim 1 , wherein

the tensioning mechanism is configured to apply a predetermined level of tension to the elongated connecting portion and the tether ring in response to detection of the tensioning event.

6. The vehicle seatbelt assembly according to claim 1 , wherein

the tensioning mechanism is configured to operate in response to detection of the tensioning event and apply tension to the elongated connecting portion and the tether ring via a one-time usage of a pyrotechnic device.

7. The vehicle seatbelt assembly according to claim 1 , wherein

the tensioning mechanism includes an electric motor that is operated to apply tension to the elongated connecting portion and the tether ring in response to detection of the tensioning event and thereafter release the tension after a predetermined period of time.

8. The vehicle seatbelt assembly according to claim 1 , wherein

the tensioning mechanism includes spring loaded device that applies tension to the elongated connecting portion and the tether ring in response to detection of the tensioning event and release the tension in response to lack of subsequent acceleration.

9. The vehicle seatbelt assembly according to claim 1 , wherein

the seatback section includes a metallic frame covered by upholstery material, with an upper portion of the metallic frame includes a guide ring fixedly attached thereto with the elongated connecting portion of the seatbelt tether extending therethrough and through the upholstery material.

10. A vehicle seatbelt assembly, comprising:

a vehicle body structure having a floor structure and a pillar structure that at least partially define a passenger compartment;

a seat assembly having a seat cushion portion and a seatback portion, the seat cushion portion being attached to the floor structure, the seatback portion being supported to the seat cushion portion and having a tether passageway defined therein from proximate an upper section to proximate a lower section thereof;

a D-ring attached to the pillar structure within the passenger compartment above the seat cushion portion;

a seatbelt buckle assembly fixedly attached to one of the floor structure and the seat cushion portion;

a seatbelt tether having a tensioning mechanism, a tether ring and an elongated connecting portion having a first end coupled to the tensioning mechanism, the tensioning mechanism being fixed to one of the floor structure and the seat cushion portion, the elongated connecting portion extending through the tether passageway of the seatback portion with the tether ring located outside the tether passageway at the upper section of the seatback portion; and

a seatbelt coupled to the vehicle body structure such that the seatbelt extends through the D-ring, through the tether ring, and to a latch tongue that is configured to releasably attached to the seatbelt buckle assembly, with the tensioning mechanism being configured to selectively apply tension to the tether ring in response to a tensioning event, such that in an non-tensioned state the elongated connecting portion is extendable with the tether ring moveable to an upper outboard side of the seatback portion, and in a tensioned state the tether ring is pulled toward a headrest supporting section of the seatback portion inboard and away from the upper outboard side of the seatback portion.

11. The vehicle seatbelt assembly according to claim 10 , wherein

the tensioning mechanism is coupled to a motion sensor that detects tensioning events, the tensioning event being any of the following: a rapid deceleration of the vehicle body structure, a hard-braking event and an impact event.

12. The vehicle seatbelt assembly according to claim 10 , wherein

the tensioning mechanism is configured to apply a predetermined level of tension to the elongated connecting portion and the tether ring in response to detection of the tensioning event.

13. The vehicle seatbelt assembly according to claim 10 , wherein

the tensioning mechanism is configured to move the elongated connecting portion and the tether ring a predetermined distance in response to detection of the tensioning event.

14. The vehicle seatbelt assembly according to claim 10 , wherein

the tensioning mechanism is configured to operate in response to detection of the tensioning event and apply tension to the elongated connecting portion and the tether ring via a one-time usage of a pyrotechnic device.

15. The vehicle seatbelt assembly according to claim 10 , wherein

the tensioning mechanism includes an electric motor that is operated to apply tension to the elongated connecting portion and the tether ring in response to detection of the tensioning event and thereafter release the tension after a predetermined period of time.

16. The vehicle seatbelt assembly according to claim 10 , wherein

the tensioning mechanism includes spring loaded device that applies tension to the elongated connecting portion and the tether ring in response to detection of the tensioning event and release the tension in response to lack of subsequent acceleration.

17. The vehicle seatbelt assembly according to claim 10 , wherein

the elongated connecting portion consists of one of the following: a cable, a metallic rod and a nylon strap.

18. The vehicle seatbelt assembly according to claim 10 , wherein

the seatback portion includes a metallic frame covered by upholstery material, with an upper portion of the metallic frame includes a guide ring fixedly attached thereto with the elongated connecting portion of the seatbelt tether extending therethrough and through the upholstery material.

19. A vehicle seatbelt assembly, comprising:

a vehicle body structure having at least the floor structure and a pillar structure that partially define the passenger compartment;

a seat assembly having a seat cushion portion and a seatback portion, the seat cushion portion being configured to attach to a floor structure within a passenger compartment of a vehicle, the seatback portion being supported to the seat cushion portion and having a tether passageway defined therein extending from proximate an upper section downward toward a lower section of the seatback portion, with the seat cushion portion being attached to the floor structure;

a seatbelt tether having a tensioning mechanism that is non-movable relative to the seat assembly, a tether ring and an elongated connecting portion, the elongated connecting portion having a first end connected to the tensioning mechanism and a second end attached to the tether ring, the elongated connecting portion extending through the tether passageway of the seatback portion from the tensioning mechanism and out of the tether passageway to the tether ring, with the tether ring being located outside the tether passageway at the upper section of the seatback portion, the tether ring being shaped and dimension to receive a seatbelt such that the seatbelt can slidably move therethrough;

a D-ring attached to the pillar structure within the passenger compartment above the seat cushion portion;

a seatbelt buckle assembly fixedly attached to one of the floor structure and the seat cushion portion; and

a seatbelt having a first end coupled to the pillar structure of the vehicle body structure such that the seatbelt extends through the D-ring, through the tether ring, and to a latch tongue that is configured to releasably attached to the seatbelt buckle assembly,

the tensioning mechanism being configured to selectively apply tension to the elongated connecting portion and the tether ring in response to detection of a tensioning event, such that in a non-tensioned state the tether ring is moveable to an upper outboard side of the seatback portion and in a tensioned state the tether ring is pulled in an inboard direction away from the upper outboard side of the seatback portion.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2019
From: NISSAN NORTH AMERICA, INC.
To: NISSAN MOTOR CO., LTD.
Reel/Frame 050589/0642 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2017
From: TEGEN, JESSE
To: NISSAN NORTH AMERICA, INC.
Reel/Frame 042638/0120 →
Continuity (1)
Related Publication 20180354456A1 · Dec 13, 2018