This invention relates to vehicle seat belts that include a material that is configured to vary in size and shape in response to an activation signal.
Prior art vehicles typically include seat belts. Seat belts in use in most passenger vehicles are three point seat belts, with webbing that forms a lap belt portion and a shoulder belt portion.
A seat belt system for use by an occupant of a vehicle seat is provided. The seat belt system includes seat belt webbing that has a solid material sufficiently configured to selectively effect a shape or dimensional change in the webbing in response to activation signals. The dimensional change may include an increase in webbing thickness so that the webbing acts as a pretensioner, reducing any gap that may exist between the belt and the occupant. The dimensional change may also result in an increased surface area in contact with the occupant. The solid material is preferably a shape memory material or a contractile polymer that exhibits abrupt volume changes in response to variations in external conditions, such as mechanical, chemical or electrical stimuli.
In an exemplary embodiment, the webbing includes a first segment and a second segment, each having a wide end and a narrow end. The first segment includes a buckle and the second segment includes a tongue member, and the first segment and the second segment are sufficiently configured so that when the buckle and the tongue member are engaged with one another, the webbing is positioned across the occupant between the occupant's neck and the occupant's pelvis. The action of the webbing on the occupant is thus similar to hands holding an infant.
A method is also provided that includes monitoring a state or condition, and causing the size of seat belt webbing to change in response to a change in the monitored state or condition. Thus, the size of the seat belt is variable to accommodate, or compensate for, changes in vehicle conditions such as vehicle acceleration, occupant size, occupant position with respect to a vehicle seat, force exerted by an occupant against the seat belt webbing, etc.
The above features and advantages and other features and advantages of the present invention are readily apparent from the following detailed description of the best modes for carrying out the invention when taken in connection with the accompanying drawings.
Referring to
A buckle 44 is connected to the narrow end 38A of segment 30A, and a tongue member 48 is connected to the narrow end 38B of segment 30B. The tongue member 48 is releasably engageable with the buckle 44 to operatively connect the two webbing segments 30A, 30B. Referring to
Referring to
Referring again to
Referring to
With specific reference to
The first material 60 is depicted expanding radially. However, the material may also be configured to expand axially to effect a length change in the webbing 26 within the scope of the claimed invention. Furthermore, the interconnecting third material 62 is optional, and webbing may or may not be substantially entirely comprised of the first material within the scope of the claimed invention.
A sensor 78 on the webbing 26 is configured to transmit sensor signals 82 indicative of the size of occupant 50. More specifically, sensor 78 is configured to measure the force exerted on the webbing 26 by occupant 50, and transmit signals 82 indicative thereof to the controller. Referring again to
In the embodiment depicted, the first material 60 is a solid material in a form that enables the webbing to be flexible. For example, the first material 60 may be in the form of fibers or wires. In a preferred embodiment, the first material 60 is a shape memory material that changes shape or size in response to an activation signal, such as a shape memory alloy. In another preferred embodiment, the first material 60 is a contractile polymer, such as artificial muscle fibers, which reversibly contracts and expands in response to chemical or electrical stimuli. Exemplary contractile polymers include polyaniline, polyacrylonitrile-polypyrrole (PAN-PPY), and polyvinylachohol (PVA) gel fibers. In the embodiment depicted, the stimulus is an electrical activation signal. Contractile polymers may also be characterized by abrupt volume changes in response to variations in external loading conditions. Advantageously, seat belt webbing comprising such a contractile polymer will contract with an equal and opposite response to a force exerted by an occupant against the webbing, with attendant pretensioning effects.
Alternatively, within the scope of the claimed invention, the ribs may be hollow, and configured for inflation with air or other fluids, in response to the controller transmitting an activation signal.
Referring again to
While the best modes for carrying out the invention have been described in detail, those familiar with the art to which this invention relates will recognize various alternative designs and embodiments for practicing the invention within the scope of the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
3146460 | Henderson | Sep 1964 | A |
3218103 | Boyce | Nov 1965 | A |
3430979 | Terry et al. | Mar 1969 | A |
3499681 | O'Neal | Mar 1970 | A |
3560048 | Flint | Feb 1971 | A |
3827716 | Vaughn et al. | Aug 1974 | A |
3841654 | Lewis | Oct 1974 | A |
3865398 | Woll | Feb 1975 | A |
3866940 | Lewis | Feb 1975 | A |
3888503 | Hamilton | Jun 1975 | A |
3905615 | Schulman | Sep 1975 | A |
3948541 | Schulman | Apr 1976 | A |
3953049 | Surace et al. | Apr 1976 | A |
3953640 | Takada | Apr 1976 | A |
4437628 | Schwartz | Mar 1984 | A |
4508294 | Lorch | Apr 1985 | A |
5282648 | Peterson | Feb 1994 | A |
5393091 | Tanaka et al. | Feb 1995 | A |
5839753 | Yaniv et al. | Nov 1998 | A |
6135563 | Yoshioka | Oct 2000 | A |
6237945 | Aboud et al. | May 2001 | B1 |
6439601 | Iseki | Aug 2002 | B1 |
6572148 | Wittenberg | Jun 2003 | B2 |
6581968 | Grace et al. | Jun 2003 | B1 |
6598899 | Stonich et al. | Jul 2003 | B2 |
6805380 | Namiki | Oct 2004 | B2 |
6911764 | Pelrine et al. | Jun 2005 | B2 |
20040036345 | Herberg et al. | Feb 2004 | A1 |
20050067826 | McFalls et al. | Mar 2005 | A1 |
Number | Date | Country |
---|---|---|
101 14 392 | Oct 2002 | DE |
03079448 | Apr 1991 | JP |
06025936 | Feb 1994 | JP |
Number | Date | Country | |
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20050236209 A1 | Oct 2005 | US |