Dual release buckle assemblies and associated systems and methods

Information

  • Patent Grant
  • 9277788
  • Patent Number
    9,277,788
  • Date Filed
    Tuesday, February 18, 2014
    10 years ago
  • Date Issued
    Tuesday, March 8, 2016
    8 years ago
Abstract
Buckle assemblies with dual release features and associated systems and methods are disclosed herein. In one embodiment, a buckle assembly is configured to detachably engage latch plates. The buckle assembly can include a top cover and a bottom housing collectively defining an operation space; a load plate having a plurality of apertures, an actuator configured to connect with the top cover, a plurality of pawls configured to operably enter the corresponding apertures so as to secure a plurality of latch plates, a release ring positioned adjacent to the pawls and connected with a release cord. The latch plates can be released by rotating the top cover or pulling the release cord.
Description
TECHNICAL FIELD

The following disclosure relates generally to personal restraint systems for use in vehicles and, more particularly, to buckle assemblies having dual release features and associated methods and systems.


BACKGROUND

There are many types of personal restraint systems for use in automobiles, aircraft, all-terrain vehicles, and other vehicles. Such systems include, for example, seat belts for use by adults and children of sufficient sizes, and child seats with associated restraints for use by toddlers and small children. Methods of securing seat belts or webs around an occupant on a vehicle or an aircraft include releasably attaching an end portion of each of the belts or webs to a buckle assembly. The buckle assembly retains the belts or webs around the occupant so as to secure the occupant on a seat of the vehicle or aircraft. The occupant can release the belts or webs from the buckle assembly when he or she wants to leave the seat.


Conventional buckle assemblies for use in personal restraint systems typically connect with one or more webs or belts to restrain occupants or passengers in their seats. For example, a “three-point” harness system, as typically found in conventional automobiles, can include a shoulder web and a lap web that are releasably secured to a buckle assembly positioned proximate to the occupant's lower body. A “five-point” harness system can include a crotch web, first and second shoulder webs, and first and second lap webs that are releasably secured to a buckle assembly positioned proximate to the occupant's mid-section. Conventional buckle assemblies for such five-point harnesses include a push button or rotary-style release feature to disengage the webs from the buckle assembly. However, especially under certain emergency circumstances, releasing the buckle assembly by rotation or pushing buttons can be difficult for some occupants.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is an isometric view of a portion of a personal restraint system having a buckle assembly configured in accordance with an embodiment of the present disclosure.



FIG. 2 is a top view of the buckle assembly of FIG. 1.



FIG. 3 is a side view of the buckle assembly FIG. 1.



FIG. 4 is an exploded isometric view of the buckle assembly shown in FIG. 1.





DETAILED DESCRIPTION

The following disclosure describes dual release buckle assemblies and associated systems and methods. Advantages of embodiments of the buckle assemblies described in the present disclosure include improving safety for occupants in vehicles by providing more than one way to release the buckle assemblies. Other advantages of embodiments of the present disclosure include providing a relatively easy and quick way to release the buckle assembly by a simple action of the occupant.


As described in greater detail below, a personal restraint system configured in accordance with one aspect of the disclosure can include a secondary or dual release buckle assembly. Certain details are set forth in the following description and in FIGS. 1-4 to provide a thorough understanding of various embodiments of the present disclosure. However, other details describing well-known structures and systems often associated with buckle assemblies and/or other aspects of personal restraint systems are not set forth below to avoid unnecessarily obscuring the description of various embodiments of the present disclosure.


Many of the details, dimensions, angles, and other features shown in the Figures are merely illustrative of particular embodiments of the disclosure. Accordingly, other embodiments can have other details, dimensions, angles, and features without departing from the scope of the present disclosure. In addition, those of ordinary skill in the art will appreciate that further embodiments of the present disclosure can be practiced without several of the details described below. In the Figures, identical reference numbers identify identical or at least generally similar elements.



FIG. 1 is an isometric view of a portion of a personal restraint system 100 in accordance with an embodiment of the present disclosure. As shown in FIG. 1, the personal restraint system 100 includes a buckle assembly 102 and a plurality of (e.g., five) latch plates (or seat belt connectors) 11, 12, 13, 14, and 15. The buckle assembly 102 can further include a release cord 104, a cable 106, a top cover 108, and a bottom housing 110. In the illustrated embodiment, the buckle assembly 102 can receive and releasably engaged the latch plates 11-15, which further connect with suitable belts or webs of the personal restraint system 100. In other embodiments, the buckle assembly 102 can accommodate a different number of latch plates, depending on various designs and arrangements. One of ordinary skill in the art would know that the latch plates 11-15 can be inserted into the buckle assembly 102 in random order. In addition, the latch plates 11-15 can function independently without interfering with one another.


In the illustrated embodiment, the buckle assembly 102 includes a dual release feature. For example, an occupant in a vehicle can release the latch plates 11-15 from the buckle assembly 102 by either rotating the top cover 108 or by pulling the release cord 104 (see FIG. 4 below). In other embodiments, an occupant can release the latch plates 11-15 by either pushing a button located on the top cover 108 or by pulling the release cord 104. In the illustrated embodiment, the release cord 104 can include a gripping surface 1041 which provides sufficient contact area for the occupant to grasp and pull the release cord 104 during operation. In other embodiments, the release cord 104 can be formed in other suitable shapes, handles, features etc. or have certain surface treatments (e.g., increasing the surface friction), depending on the occupant's capability (e.g., a toddler occupant) or personal preference of holding the release cord 104.



FIG. 2 is a top view of the buckle assembly 102 of FIG. 1. The buckle assembly 102 can include a receiving component 202 to accommodate the cable 106, or more specifically the cable housing or sleeve. In the illustrated embodiment, the receiving component 202 can be formed as a part of the top cover 108. In other embodiments, the receiving component 202 can be independently formed and subsequently attached to the top cover 108. In certain embodiments, the receiving component 202 can be formed as a part of the bottom housing 110. When an occupant pulls the release cord 104 to release one or more of the latch plates 11-15 inserted in the buckle assembly 102, the cable 106 can move smoothly outward from the receiving component 202.



FIG. 3 is a side view of the buckle assembly 102 of FIG. 1. In the illustrated embodiment, the buckle assembly 102 can be formed with five openings 302 (not all openings are shown in FIG. 3) for receiving the inserted latch plates 11-15. In other embodiments, the buckle assembly 102 can have a different number of openings, for example, depending on the number of latch plates to be inserted. In the illustrated embodiment, the openings 302 can be defined collectively by the top cover 108 and the bottom housing 110. In certain embodiments, the openings 302 can be formed and located in the top cover 108. In other embodiments, the openings 302 can be formed and located in the bottom housing 110.



FIG. 4 is an exploded isometric view of the buckle assembly 102 shown in FIG. 1. In the illustrated embodiment, the buckle assembly 102 includes an upper plate 401, a load plate 402, an actuator 404, a release ring 406, a cable spring 408, latch pawls 410, a pawl spring 412, a shoulder nut 414, a center screw 416, and a bushing 418. The top cover 108, the load plate 402, and the bottom housing 110 can be coupled together and secured by the center screw 416. The bushing 418 can be positioned between the center screw 416 and the top cover 108 and function as a cushion. In certain embodiments, the bushing 418 can be positioned at other suitable places. In the illustrated embodiment, the upper plate 401 can be used to couple the load plate 402 to other components, such as the bottom housing 110 or the top cover 108, by bolts/screws and nuts, glue, wedges, or other suitable means.


As shown in FIG. 4, the load plate 402 can be formed with multiple load-plate apertures 4021 for receiving the pawls 410. In the illustrated embodiment, the latch plates 11-15 can include latch openings or apertures 420 for receiving and engaging the paws 410. When occupants want to be secured in their seats, they can insert the latch plates 11-15 to the openings 302 (FIG. 3), and then the latch apertures 420 will be aligned with the corresponding load-plate apertures 4021 respectively. Then the pawl spring (or springs) 412 can provide resilient forces to push or bias the paws 410 upwardly through the corresponding latch apertures 420 and load-plate apertures 4021 respectively, to engage and secure the latch plates 11-15. As a result, the occupants can be restrained or secured on their seats. In the illustrated embodiment, the paw spring 412 can be spring steel and can be supported by the shoulder nut 414, which can be positioned between the pawl spring 412 and the bottom housing 110.


When occupants want to be released from their seats, the buckle assembly 102 of the present disclosure offers them two options. The first option is that the occupants can rotate the top cover 108, which is operably coupled to the actuator 404 (e.g., via the center screw 416). As shown in FIG. 4, the actuator 404 includes at least one protrusion 4041 configured to extend through a corresponding opening 4022 in the load plate 402 and cooperate with the top cover 108. When the occupant rotates the top cover 108, the actuator 404 pushes the pawls 410 back toward the bottom housing 110. As a result, the pawls 410 move out of the corresponding latch apertures 420 and load-plate apertures 4021, releasing the latch plates 11-15 and allowing them to be withdrawn from the buckle assembly 102. In other embodiments, the occupants in vehicles can push a bottom (not shown) on the top cover 108 to cause the same effect as discussed above to release the inserted latch plates 11-15.


The second option for releasing the latch plates is that the occupant can pull or move the release cord 104 away from the buckle assembly 102. As shown in FIG. 4, the release cord 104 is attached to the release ring 406 via the cable 106 and the cable spring 408. In the illustrated embodiment, the release ring 406 can include multiple angled cam surfaces on protrusions 4061 corresponding to individual pawls 410. When the occupants pull the release cord 104, the release ring 406 rotates so that the protrusions 4061 push all the pawls 410 back toward the bottom housing 110 at the same time. As a result, the pawls 410 retreat from the corresponding latch apertures 420 and load-plate apertures 4021, releasing the inserted latch plates 11-15. Once the occupant is released from his seat and lets go of the release cord 104, the cable spring 408 can provide a resilient force to bias the release cord 104 back to its initial position (as shown in FIGS. 1-3).


In the illustrated embodiment, the release ring 406 can include an attaching portion 4062 configured to attach to an end portion of the cable spring 408. In certain embodiments, the attaching portion 4062 can attach with the cable 106 directly. As shown in FIG. 4, the attaching portion 4062 can connect to the cable spring 408 by a bolt/screw and a nut. In other embodiments, the attaching component 4062 and the cable spring 408 can be connected by any other suitable means.


In the illustrated embodiment, the receiving component 202 receives the cable spring 408 and the cable 106 and protects the same from damages caused by accidental impacts. The receiving component 202 also provides a guide for the cable 106 and the cable spring 408 during their movement. In certain embodiments, the receiving component 202 can be attached to the bottom housing 110 by a bolt/screw and a nut. In other embodiments, the receiving component 202 can be formed as an integral with the bottom housing 110. In certain embodiments, the receiving component 202 can be attached to or integrally formed with the top cover 108.


The buckle assembly 102 described in the present disclosure can be connected with a computer system (not shown) of a vehicle. In certain embodiments, the computer system of the vehicle can monitor the status of the buckle assembly 102 (e.g., whether the inserted latch plates are secured properly) and takes actions accordingly. For example, when the computer system detects an abnormal situation (e.g., an unexpected impact), the system can notify the occupant who is currently using the buckle assembly, or alternatively, the system can automatically lock or release the buckle assembly. The computer system described in the present disclosure can include a center processing unit (CPU) configured to process a set of computer readable instructions, a memory configured to temporarily store the same instructions, and a storage device configured to store the same instructions and other related information.


From the foregoing, it will be appreciated that specific embodiments of the disclosure have been described herein for purposes of illustration, but that various modifications may be made without deviating from the spirit and scope of the various embodiments of the disclosure. Further, while various advantages associated with certain embodiments of the disclosure have been described above in the context of those embodiments, other embodiments may also exhibit such advantages, and not all embodiments need necessarily exhibit such advantages to fall within the scope of the invention. The following examples are directed to embodiments of the present disclosure.

Claims
  • 1. A buckle assembly, comprising: a top cover;a bottom housing connected to the top cover, wherein the top cover and the bottom housing collectively define an internal space;an actuator positioned in the internal space and operably coupled to the top cover;a load plate positioned in the internal space and having a plurality of apertures;a plurality of pawls, wherein each of the pawls is configured to operably extend through a corresponding one of the apertures so as to secure a corresponding latch plate coupled to a web of a personal restraint system;a release ring rotatably positioned in the internal space adjacent to the pawls; anda release cord positioned outside the internal space and coupled to the release ring, wherein the release cord includes a gripping surface providing a contact area for an occupant to grasp and pull the release cord;wherein, when the top cover is rotated, the actuator moves the pawls out from the corresponding apertures, so as to release the corresponding latch plates, andwherein, when the release ring is rotated, the release ring moves the pawls out from the corresponding apertures, so as to release the corresponding latch plates.
  • 2. A buckle assembly, comprising: a top cover;a bottom housing connected to the top cover, wherein the top cover and the bottom housing collectively define an internal space;an actuator positioned in the internal space and operably coupled to the top cover;a load plate positioned in the internal space and having a plurality of apertures;a plurality of pawls, wherein each of the pawls is configured to operably extend through a corresponding one of the apertures so as to secure a corresponding latch plate coupled to a web of a personal restraint system;a release ring rotatably positioned in the internal space adjacent to the pawls; anda pawl spring including a base portion and a plurality of end portions, wherein the end portions extend radially outward from the base portion, and wherein each of the end portions biases a corresponding one of the pawls toward the corresponding one of the apertures;wherein, when the top cover is rotated, the actuator moves the pawls out from the corresponding apertures, so as to release the corresponding latch plates; andwherein, when the release ring is rotated, the release ring moves the pawls out from the corresponding apertures, so as to release the corresponding latch plates.
  • 3. The buckle assembly of claim 2, wherein the actuator includes a protrusion, and wherein the load plate includes an opening configured to operably receive at least a portion of the protrusion.
  • 4. The buckle assembly of claim 2, wherein the release ring includes an attaching portion configured to attach to a release cord positioned outside the internal space.
  • 5. The buckle assembly of claim 4, wherein the attaching portion is attached to the release cord via a cable spring and a cable.
  • 6. A buckle assembly, comprising: a top cover;a bottom housing connected to the top cover, wherein the top cover and the bottom housing collectively define an internal space;a load plate positioned in the internal space and having a plurality of apertures;a plurality of pawls positioned in the internal space, wherein each of the pawls is configured to operably extend through a corresponding one of the apertures so as to secure a corresponding latch plate coupled to a web of a personal restraint system;a release ring rotatably positioned in the internal space adjacent to the pawls; anda release cord positioned outside the internal space and coupled to the release ring;wherein, when the top cover is rotated, the pawls are moved out from the corresponding apertures, so as to release the corresponding latch plates; andwherein, when the release cord is pulled, the release ring moves the pawls out from the corresponding apertures, so as to release the corresponding latch plates.
  • 7. The buckle assembly of claim 6, wherein the apertures are positioned circumferentially around the load plate.
  • 8. The buckle assembly of claim 6, further comprising: a receiving component positioned adjacent to the bottom housing and configured to receive a cable; anda cable spring positioned inside the receiving component and coupled to the cable, wherein the cable spring provides a biasing force to maintain the release cord at an initial position.
  • 9. The buckle assembly of claim 8, wherein the cable spring includes an end portion, and wherein the release ring includes an attaching portion configured to couple to the end portion.
  • 10. The buckle assembly of claim 8, wherein the receiving component is formed as a part of the top cover.
  • 11. The buckle assembly of claim 8, wherein the receiving component is independently formed and attached to the top cover.
  • 12. The buckle assembly of claim 6, wherein the release ring includes a plurality of protrusions corresponding to the pawls, wherein the protrusions are configured to operably push the pawls toward the bottom housing when the top cover is rotated or when the release cord is pulled.
CROSS-REFERENCE TO RELATED APPLICATION

The present application claims the benefit under 35 U.S.C. §119(e) of U.S. Provisional Patent Application No. 61/766,683 filed Feb. 19, 2013, titled “DUAL RELEASE BUCKLE ASSEMBLIES AND ASSOCIATED SYSTEMS AND METHODS.” The above mentioned application is incorporated herein by reference in its entirety.

US Referenced Citations (543)
Number Name Date Kind
906045 Miller Dec 1908 A
1079080 Ward Nov 1913 A
1369456 Meredith Feb 1922 A
1438898 Carpmill Dec 1922 A
1816262 Ritter Jul 1931 A
1930378 Beagan Oct 1933 A
2132556 Blackshaw Oct 1938 A
2372557 Dowd Mar 1945 A
2437585 Zimmern Mar 1948 A
2482693 Rogers et al. Sep 1949 A
2538641 Elsner Jan 1951 A
2549841 Morrow et al. Apr 1951 A
2639852 Sanders et al. May 1953 A
2641813 Loxham Jun 1953 A
2710999 Davis Jun 1955 A
2763451 Moran Sep 1956 A
2803864 Bishaf Aug 1957 A
2845233 Wrighton Jul 1958 A
2846745 Lathrop Aug 1958 A
2869200 Phillips et al. Jan 1959 A
2876516 Cummings Mar 1959 A
2892232 Quilter Jun 1959 A
2893088 Harper et al. Jul 1959 A
2899732 Cushman Aug 1959 A
2901794 Prete, Jr. Sep 1959 A
2921353 Cushman Jan 1960 A
2938254 Gaylord May 1960 A
2964815 Sereno Dec 1960 A
2965942 Carter Dec 1960 A
3029487 Asai Apr 1962 A
3034596 Twaits, Jr. May 1962 A
3084411 Lindblad Apr 1963 A
3091010 Davis May 1963 A
3104440 Davis Sep 1963 A
3110071 Higuchi Nov 1963 A
3118208 Wexler Jan 1964 A
3132399 Cooper May 1964 A
3137907 Unai Jun 1964 A
D198566 Holmberg et al. Jul 1964 S
3142103 Lindblad Jul 1964 A
3145442 Brown Aug 1964 A
3165805 Lower Jan 1965 A
3178226 Lorwin Apr 1965 A
3179992 Murphy, Sr. Apr 1965 A
3183568 Gaylord May 1965 A
3189963 Warner et al. Jun 1965 A
3218685 Atumi Nov 1965 A
3226791 Carter Jan 1966 A
3233941 Selzer Feb 1966 A
3256576 Klove, Jr. et al. Jun 1966 A
3262169 Jantzen Jul 1966 A
3287062 Board Nov 1966 A
3289261 Davis Dec 1966 A
3293713 Gaylord Dec 1966 A
3306662 Finnigan Feb 1967 A
3312502 Coe Apr 1967 A
3369842 Adams et al. Feb 1968 A
3380776 Dillender Apr 1968 A
3414947 Holmberg et al. Dec 1968 A
3428029 Klickstein Feb 1969 A
3451720 Makinen Jun 1969 A
3473201 Hopka et al. Oct 1969 A
3491414 Stoffel Jan 1970 A
3505711 Carter Apr 1970 A
3523342 Spires Aug 1970 A
D218589 Lohr et al. Sep 1970 S
3564672 McIntyre Feb 1971 A
3576056 Barcus Apr 1971 A
3591900 Brown Jul 1971 A
3605207 Glauser et al. Sep 1971 A
3605210 Lohr Sep 1971 A
3631571 Stoffel Jan 1972 A
3639948 Sherman Feb 1972 A
3644967 Romanzi, Jr. et al. Feb 1972 A
3648333 Stoffel Mar 1972 A
3658281 Gaylord Apr 1972 A
3673645 Burleigh et al. Jul 1972 A
3678542 Prete, Jr. Jul 1972 A
3695696 Lohr et al. Oct 1972 A
3714684 Gley Feb 1973 A
3744102 Gaylord Jul 1973 A
3744103 Gaylord Jul 1973 A
3747167 Pravaz Jul 1973 A
3760464 Higuchi Sep 1973 A
3766611 Gaylord Oct 1973 A
3766612 Hattori Oct 1973 A
3775813 Higuchi Dec 1973 A
3825979 Jakob Jul 1974 A
3827716 Vaughn et al. Aug 1974 A
3856351 Garveys Dec 1974 A
3879810 Prete, Jr. et al. Apr 1975 A
3898715 Balder et al. Aug 1975 A
3935618 Fohl et al. Feb 1976 A
3964138 Gaylord Jun 1976 A
3986234 Frost et al. Oct 1976 A
3995885 Plesniarski Dec 1976 A
4018399 Rex Apr 1977 A
4026245 Arthur May 1977 A
4051743 Gaylord Oct 1977 A
4095313 Piljay et al. Jun 1978 A
D248618 Anthony Jul 1978 S
4100657 Minolla et al. Jul 1978 A
4118833 Knox et al. Oct 1978 A
4128924 Happel et al. Dec 1978 A
4136422 Ivanov et al. Jan 1979 A
4148224 Craig Apr 1979 A
4181832 Ueda et al. Jan 1980 A
4184234 Anthony et al. Jan 1980 A
4185363 David Jan 1980 A
4196500 Happel et al. Apr 1980 A
4220294 DiPaola Sep 1980 A
4228567 Ikesue et al. Oct 1980 A
4239260 Hollowell Dec 1980 A
4253623 Steger et al. Mar 1981 A
4262396 Koike et al. Apr 1981 A
4273301 Frankila Jun 1981 A
4302049 Simpson Nov 1981 A
4317263 Fohl et al. Mar 1982 A
4321734 Gandelman Mar 1982 A
4334341 Krautz et al. Jun 1982 A
4336636 Ishiguro et al. Jun 1982 A
4366604 Anthony et al. Jan 1983 A
4385425 Tanaka et al. May 1983 A
4408374 Fohl et al. Oct 1983 A
4419874 Brentini et al. Dec 1983 A
4425688 Anthony et al. Jan 1984 A
4457052 Hauber Jul 1984 A
4487454 Biller Dec 1984 A
4491343 Fohl et al. Jan 1985 A
4525901 Krauss Jul 1985 A
4545097 Wier et al. Oct 1985 A
4549769 Pilarski Oct 1985 A
4555831 Otzen et al. Dec 1985 A
4569535 Haglund et al. Feb 1986 A
D285383 Anthony Sep 1986 S
4617705 Anthony et al. Oct 1986 A
4637102 Teder et al. Jan 1987 A
4638533 Gloomis et al. Jan 1987 A
4640550 Hakansson et al. Feb 1987 A
4644618 Holmberg et al. Feb 1987 A
4646400 Tanaka et al. Mar 1987 A
4648483 Skyba Mar 1987 A
4650214 Higbee Mar 1987 A
4651946 Anthony et al. Mar 1987 A
4656700 Tanaka et al. Apr 1987 A
4660889 Anthony et al. Apr 1987 A
4679852 Anthony et al. Jul 1987 A
4682791 Ernst et al. Jul 1987 A
4685176 Burnside et al. Aug 1987 A
4692970 Anthony et al. Sep 1987 A
4711003 Gelula Dec 1987 A
4716630 Skyba Jan 1988 A
4720148 Anthony et al. Jan 1988 A
4726625 Bougher Feb 1988 A
4727628 Rudholm et al. Mar 1988 A
4733444 Takada Mar 1988 A
4738485 Rumpf Apr 1988 A
4741574 Weightman et al. May 1988 A
4742604 Mazelsky May 1988 A
D296678 Lortz et al. Jul 1988 S
4757579 Nishino et al. Jul 1988 A
4758048 Shuman Jul 1988 A
4766654 Sugimoto Aug 1988 A
4786078 Schreier et al. Nov 1988 A
4786080 Jay Nov 1988 A
4790597 Bauer et al. Dec 1988 A
4809409 Van Riesen et al. Mar 1989 A
4832410 Bougher May 1989 A
4843688 Ikeda et al. Jul 1989 A
4854607 Mandracchia et al. Aug 1989 A
4854608 Barral et al. Aug 1989 A
D303232 Lortz et al. Sep 1989 S
4876770 Bougher Oct 1989 A
4876772 Anthony et al. Oct 1989 A
4884652 Vollmer Dec 1989 A
4901407 Pandola et al. Feb 1990 A
4903377 Doty Feb 1990 A
4911377 Lortz et al. Mar 1990 A
4919484 Bougher et al. Apr 1990 A
4927211 Bolcerek May 1990 A
4934030 Spinosa et al. Jun 1990 A
4940254 Ueno et al. Jul 1990 A
4942649 Anthony et al. Jul 1990 A
4995640 Saito et al. Feb 1991 A
5015010 Homeier et al. May 1991 A
5023981 Anthony et al. Jun 1991 A
5026093 Nishikaji Jun 1991 A
5029369 Oberhardt et al. Jul 1991 A
5031962 Lee Jul 1991 A
5038446 Anthony et al. Aug 1991 A
5039169 Bougher et al. Aug 1991 A
5046687 Herndon Sep 1991 A
5050274 Staniszewski et al. Sep 1991 A
5054815 Gavagan Oct 1991 A
5058244 Fernandez Oct 1991 A
5067212 Ellis Nov 1991 A
5074011 Carlson Dec 1991 A
5074588 Huspen Dec 1991 A
5084946 Lee Feb 1992 A
5088160 Warrick Feb 1992 A
5088163 van Riesen et al. Feb 1992 A
5097572 Warrick Mar 1992 A
D327455 Blair Jun 1992 S
5119532 Tanaka et al. Jun 1992 A
5123147 Blair Jun 1992 A
5123673 Tame Jun 1992 A
5142748 Anthony et al. Sep 1992 A
5159732 Burke et al. Nov 1992 A
5160186 Lee Nov 1992 A
5165149 Nihei Nov 1992 A
5170539 Lundstedt et al. Dec 1992 A
D332433 Bougher Jan 1993 S
5176402 Coulon Jan 1993 A
5182837 Anthony et al. Feb 1993 A
5219206 Anthony et al. Jun 1993 A
5219207 Anthony et al. Jun 1993 A
5220713 Lane, Jr. et al. Jun 1993 A
D338119 Merrick Aug 1993 S
5234181 Schroth et al. Aug 1993 A
5236220 Mills Aug 1993 A
5248187 Harrison Sep 1993 A
D342465 Anthony et al. Dec 1993 S
5267377 Gillis et al. Dec 1993 A
5269051 McFalls Dec 1993 A
5272770 Allen et al. Dec 1993 A
5282672 Borlinghaus Feb 1994 A
5282706 Anthony et al. Feb 1994 A
5283933 Wiseman et al. Feb 1994 A
5286057 Forster Feb 1994 A
5286090 Templin et al. Feb 1994 A
5292181 Dybro Mar 1994 A
5301371 Chao Apr 1994 A
5308148 Peterson et al. May 1994 A
5311653 Merrick May 1994 A
5332968 Brown Jul 1994 A
5350195 Brown Sep 1994 A
5350196 Atkins Sep 1994 A
5369855 Tokugawa et al. Dec 1994 A
5370333 Lortz et al. Dec 1994 A
5375879 Williams et al. Dec 1994 A
5380066 Wiseman et al. Jan 1995 A
5392535 Van Noy et al. Feb 1995 A
5397171 Leach Mar 1995 A
5403038 McFalls Apr 1995 A
5406681 Olson et al. Apr 1995 A
5411292 Collins et al. May 1995 A
5416957 Renzi, Sr. et al. May 1995 A
D359710 Chinni et al. Jun 1995 S
5432987 Schroth Jul 1995 A
5435272 Epstein Jul 1995 A
5443302 Dybro Aug 1995 A
5451094 Templin et al. Sep 1995 A
D364124 Lortz et al. Nov 1995 S
5471714 Olson et al. Dec 1995 A
5495646 Scrutchfield et al. Mar 1996 A
5497956 Crook Mar 1996 A
5511856 Merrick et al. Apr 1996 A
5516199 Crook et al. May 1996 A
5526556 Czank Jun 1996 A
5540403 Standley Jul 1996 A
5560565 Merrick et al. Oct 1996 A
5561891 Hsieh et al. Oct 1996 A
5566431 Haglund Oct 1996 A
5568676 Freeman Oct 1996 A
5570933 Rouhana et al. Nov 1996 A
5579785 Bell Dec 1996 A
5584107 Koyanagi et al. Dec 1996 A
5588189 Gorman et al. Dec 1996 A
5606783 Gillis et al. Mar 1997 A
5622327 Heath et al. Apr 1997 A
5628548 Lacoste May 1997 A
5634664 Seki et al. Jun 1997 A
5640468 Hsu Jun 1997 A
5669572 Crook Sep 1997 A
5695243 Anthony et al. Dec 1997 A
5699594 Czank et al. Dec 1997 A
D389426 Merrick et al. Jan 1998 S
5722689 Chen et al. Mar 1998 A
5743597 Jessup et al. Apr 1998 A
5765774 Maekawa et al. Jun 1998 A
5774947 Anscher Jul 1998 A
5779319 Merrick Jul 1998 A
D397063 Woellert et al. Aug 1998 S
5788281 Yanagi et al. Aug 1998 A
5788282 Lewis Aug 1998 A
5794878 Carpenter et al. Aug 1998 A
5806148 McFalls et al. Sep 1998 A
5813097 Woellert et al. Sep 1998 A
5839793 Merrick et al. Nov 1998 A
5857247 Warrick et al. Jan 1999 A
5873599 Bauer et al. Feb 1999 A
5873635 Merrick Feb 1999 A
5882084 Verellen et al. Mar 1999 A
D407667 Homeier Apr 1999 S
5908223 Miller Jun 1999 A
5915630 Step Jun 1999 A
5934760 Schroth et al. Aug 1999 A
D416827 Anthony et al. Nov 1999 S
5979026 Anthony Nov 1999 A
5979982 Nakagawa Nov 1999 A
5996192 Haines et al. Dec 1999 A
6003899 Chaney Dec 1999 A
6017087 Anthony et al. Jan 2000 A
6056320 Khalifa et al. May 2000 A
6065367 Schroth et al. May 2000 A
6065777 Merrick May 2000 A
6123388 Vits et al. Sep 2000 A
6182783 Bayley Feb 2001 B1
RE37123 Templin et al. Apr 2001 E
6224154 Stoki May 2001 B1
6230370 Nelsen May 2001 B1
6260884 Bittner et al. Jul 2001 B1
6295700 Plzak Oct 2001 B1
6309024 Busch Oct 2001 B1
6312015 Merrick et al. Nov 2001 B1
6315232 Merrick Nov 2001 B1
6322140 Jessup et al. Nov 2001 B1
6322149 Conforti et al. Nov 2001 B1
6325412 Pan et al. Dec 2001 B1
6328379 Merrick et al. Dec 2001 B1
6343841 Gregg et al. Feb 2002 B1
6351717 Lambrecht Feb 2002 B2
6357790 Swann et al. Mar 2002 B1
6358591 Smith Mar 2002 B1
6363591 Bell et al. Apr 2002 B1
6367882 Van Druff et al. Apr 2002 B1
6374168 Fujii Apr 2002 B1
6400145 Chamings et al. Jun 2002 B1
6412863 Merrick et al. Jul 2002 B1
6418596 Haas et al. Jul 2002 B2
6425632 Anthony et al. Jul 2002 B1
6442807 Adkisson Sep 2002 B1
6446272 Lee et al. Sep 2002 B1
6463638 Pontaoe Oct 2002 B1
6467849 Deptolla et al. Oct 2002 B1
6485057 Midorikawa et al. Nov 2002 B1
6485098 Vits et al. Nov 2002 B1
6508515 Vits et al. Jan 2003 B2
6513208 Sack et al. Feb 2003 B1
6520392 Thibodeau et al. Feb 2003 B2
6543101 Sack et al. Apr 2003 B2
6547273 Grace et al. Apr 2003 B2
6560825 Maciejczyk et al. May 2003 B2
6566869 Chamings et al. May 2003 B2
6588077 Katsuyama et al. Jul 2003 B2
6592149 Sessoms Jul 2003 B2
6606770 Badrenas Buscart Aug 2003 B1
6619753 Takayama Sep 2003 B2
6631926 Merrick et al. Oct 2003 B2
6665912 Turner et al. Dec 2003 B2
6694577 Di Perrero et al. Feb 2004 B2
6711790 Pontaoe Mar 2004 B2
6719233 Specht et al. Apr 2004 B2
6719326 Schroth et al. Apr 2004 B2
6722601 Kohlndorfer et al. Apr 2004 B2
6722697 Krauss et al. Apr 2004 B2
6733041 Arnold et al. May 2004 B2
6739541 Palliser et al. May 2004 B2
6749150 Kohlndorfer et al. Jun 2004 B2
6763557 Steiff et al. Jul 2004 B2
6769157 Meal Aug 2004 B1
6786294 Specht et al. Sep 2004 B2
6786510 Roychoudhury et al. Sep 2004 B2
6786511 Heckmayr et al. Sep 2004 B2
6793291 Kocher Sep 2004 B1
6796007 Anscher Sep 2004 B1
6802470 Smithson et al. Oct 2004 B2
6820310 Woodard et al. Nov 2004 B2
6820902 Kim Nov 2004 B2
6834822 Koning et al. Dec 2004 B2
6836754 Cooper Dec 2004 B2
6837519 Moskalik et al. Jan 2005 B2
6840544 Prentkowski Jan 2005 B2
6851160 Carver Feb 2005 B2
6857326 Specht et al. Feb 2005 B2
6860671 Schulz Mar 2005 B2
6863235 Koning et al. Mar 2005 B2
6863236 Kempf et al. Mar 2005 B2
6868585 Anthony et al. Mar 2005 B2
6868591 Dingman et al. Mar 2005 B2
6871876 Xu Mar 2005 B2
6874819 O'Neill Apr 2005 B2
6882914 Gioutsos et al. Apr 2005 B2
6886889 Vits et al. May 2005 B2
6896291 Peterson May 2005 B1
6902193 Kim et al. Jun 2005 B2
6913288 Schulz et al. Jul 2005 B2
6916045 Clancy, III et al. Jul 2005 B2
6921136 Bell et al. Jul 2005 B2
6922875 Sato et al. Aug 2005 B2
6931669 Ashline Aug 2005 B2
6935701 Arnold et al. Aug 2005 B1
6951350 Heidorn et al. Oct 2005 B2
6957789 Bowman et al. Oct 2005 B2
6959946 Desmarais et al. Nov 2005 B2
6962394 Anthony et al. Nov 2005 B2
6966518 Kohlndorfer et al. Nov 2005 B2
6969022 Bell et al. Nov 2005 B2
6969122 Sachs et al. Nov 2005 B2
6993436 Specht et al. Jan 2006 B2
6997474 Midorikawa et al. Feb 2006 B2
6997479 Desmarais et al. Feb 2006 B2
7010836 Acton et al. Mar 2006 B2
D519406 Merrill et al. Apr 2006 S
7025297 Bell et al. Apr 2006 B2
7029067 Vits et al. Apr 2006 B2
7040696 Vits et al. May 2006 B2
7065843 Wu Jun 2006 B1
7073866 Berdahl Jul 2006 B1
7077475 Boyle Jul 2006 B2
7080856 Desmarais et al. Jul 2006 B2
7083147 Movsesian et al. Aug 2006 B2
7100991 Schroth et al. Sep 2006 B2
7108114 Mori et al. Sep 2006 B2
7118133 Bell et al. Oct 2006 B2
7131667 Bell et al. Nov 2006 B2
7137648 Schulz et al. Nov 2006 B2
7137650 Bell et al. Nov 2006 B2
7140571 Hishon et al. Nov 2006 B2
7144085 Vits et al. Dec 2006 B2
7147251 Bell et al. Dec 2006 B2
D535214 Kolasa Jan 2007 S
7159285 Karlsson et al. Jan 2007 B2
7180258 Specht et al. Feb 2007 B2
7182370 Arnold Feb 2007 B2
7210707 Schroth et al. May 2007 B2
7216827 Tanaka et al. May 2007 B2
7219929 Bell et al. May 2007 B2
7232154 Desmarais et al. Jun 2007 B2
7237741 Specht et al. Jul 2007 B2
7240405 Webber et al. Jul 2007 B2
7240924 Kohlndorfer et al. Jul 2007 B2
7246854 Dingman et al. Jul 2007 B2
7263750 Keene et al. Sep 2007 B2
7278684 Boyle Oct 2007 B2
D555358 King Nov 2007 S
7300013 Morgan et al. Nov 2007 B2
7341216 Heckmayr et al. Mar 2008 B2
7360287 Cerruti et al. Apr 2008 B2
7367590 Koning et al. May 2008 B2
7377464 Morgan May 2008 B2
7384014 Ver Hoven et al. Jun 2008 B2
7395585 Longley et al. Jul 2008 B2
7404239 Walton et al. Jul 2008 B1
7407193 Yamaguchi et al. Aug 2008 B2
D578931 Toltzman et al. Oct 2008 S
7452003 Bell Nov 2008 B2
7455256 Morgan Nov 2008 B2
7461866 Desmarais et al. Dec 2008 B2
7475840 Heckmayr Jan 2009 B2
7477139 Cuevas Jan 2009 B1
7481399 Nohren et al. Jan 2009 B2
7506413 Dingman et al. Mar 2009 B2
7516808 Tanaka Apr 2009 B2
7520036 Baldwin et al. Apr 2009 B1
D592543 Kolasa May 2009 S
D592830 Whiteside May 2009 S
7533902 Arnold et al. May 2009 B2
7547043 Kokeguchi et al. Jun 2009 B2
7614124 Keene et al. Nov 2009 B2
7631830 Boelstler et al. Dec 2009 B2
7669794 Boelstler et al. Mar 2010 B2
7673945 Riffel et al. Mar 2010 B1
7698791 Pezza Apr 2010 B2
7716794 Wu May 2010 B2
7722081 Van Druff et al. May 2010 B2
7739019 Robert et al. Jun 2010 B2
7753410 Coultrup Jul 2010 B2
7775557 Bostrom et al. Aug 2010 B2
RE41790 Stanley Oct 2010 E
7861341 Ayette et al. Jan 2011 B2
7862124 Dingman Jan 2011 B2
D632611 Buscart Feb 2011 S
D637518 Chen May 2011 S
7934775 Walker et al. May 2011 B2
7945975 Thomas et al. May 2011 B2
8011730 Greenwood Sep 2011 B2
8037581 Gray et al. Oct 2011 B2
8096027 Jung et al. Jan 2012 B2
8240012 Walega et al. Aug 2012 B2
8240767 Greenwood Aug 2012 B2
8387216 Martinson Mar 2013 B1
8468660 Holler Jun 2013 B2
8567022 Keene et al. Oct 2013 B2
8627554 Hagan et al. Jan 2014 B1
20020089163 Bedewi et al. Jul 2002 A1
20020135175 Schroth Sep 2002 A1
20020145279 Murray Oct 2002 A1
20030015863 Brown et al. Jan 2003 A1
20030027917 Namiki et al. Feb 2003 A1
20030085608 Girardin May 2003 A1
20040084953 Hansen May 2004 A1
20040169411 Murray Sep 2004 A1
20040174063 Kocher Sep 2004 A1
20040217583 Wang Nov 2004 A1
20040227390 Schroth Nov 2004 A1
20040251367 Suzuki et al. Dec 2004 A1
20050073187 Frank et al. Apr 2005 A1
20050107932 Bolz et al. May 2005 A1
20050127660 Liu Jun 2005 A1
20050175253 Li et al. Aug 2005 A1
20050179244 Schroth Aug 2005 A1
20050206151 Ashline Sep 2005 A1
20050284977 Specht et al. Dec 2005 A1
20060071535 Kim et al. Apr 2006 A1
20060075609 Dingman et al. Apr 2006 A1
20060097095 Boast May 2006 A1
20060237573 Boelstler et al. Oct 2006 A1
20060243070 Van Druff et al. Nov 2006 A1
20060267394 David et al. Nov 2006 A1
20060277727 Keene et al. Dec 2006 A1
20070080528 Itoga et al. Apr 2007 A1
20070241549 Boelstler et al. Oct 2007 A1
20070257480 Van Druff et al. Nov 2007 A1
20080018156 Hammarskjold et al. Jan 2008 A1
20080054615 Coultrup Mar 2008 A1
20080093833 Odate Apr 2008 A1
20080100051 Bell et al. May 2008 A1
20080100122 Bell et al. May 2008 A1
20080136246 Salter Jun 2008 A1
20080172847 Keene et al. Jul 2008 A1
20080224460 Erez Sep 2008 A1
20090014991 Smyth et al. Jan 2009 A1
20090069983 Humbert et al. Mar 2009 A1
20090179412 Gray et al. Jul 2009 A1
20090183348 Walton et al. Jul 2009 A1
20090212549 Jones Aug 2009 A1
20090241305 Buckingham Oct 2009 A1
20100046843 Ma et al. Feb 2010 A1
20100115737 Foubert May 2010 A1
20100125983 Keene et al. May 2010 A1
20100146749 Jung Jun 2010 A1
20100213753 Humbert Aug 2010 A1
20100219667 Merrill et al. Sep 2010 A1
20110010901 Holler Jan 2011 A1
20110043402 Sasakawa Feb 2011 A1
20110057500 Walker et al. Mar 2011 A1
20110162175 Gnesda et al. Jul 2011 A1
20120242134 Siegel Sep 2012 A1
20120284966 Greaves et al. Nov 2012 A1
20120292893 Baca et al. Nov 2012 A1
20130127229 Humbert May 2013 A1
20130212845 Ford et al. Aug 2013 A1
Foreign Referenced Citations (34)
Number Date Country
2038505 Sep 1991 CA
2091526 Oct 1993 CA
2112960 Jul 1994 CA
2450744 Feb 2003 CA
4019402 Dec 1991 DE
4421688 Dec 1995 DE
69019765 Feb 1996 DE
26564 Apr 1981 EP
0363062 Apr 1990 EP
0380442 Aug 1990 EP
0401455 Dec 1990 EP
0404730 Dec 1990 EP
0449772 Oct 1991 EP
0519296 Dec 1992 EP
0561274 Sep 1993 EP
0608564 Aug 1994 EP
1153789 Nov 2001 EP
1447021 Aug 2004 EP
1298012 Jul 1962 FR
888436 Jan 1962 GB
1047761 Nov 1966 GB
1582973 Jan 1981 GB
2055952 Mar 1981 GB
2356890 Jun 2001 GB
52055120 May 1977 JP
63141852 Sep 1988 JP
63247150 Oct 1988 JP
10119611 May 1998 JP
2001138858 May 2001 JP
WO-8603386 Jun 1986 WO
WO-03009717 Feb 2003 WO
WO-2004004507 Jan 2004 WO
WO-2006041859 Apr 2006 WO
WO-2010027853 Mar 2010 WO
Non-Patent Literature Citations (22)
Entry
Britax, “COMPAQ: Convertible Car Seats.” Buckle Image. Accessed Oct. 12, 2010. (2 pages). This has been publicly available for at least one year prior to this application's filing date.
Global Seating Systems LLC, “CCOPS,” Cobra: Soldier Survival System, 1 page, undated. [Color Copy].
Holmbergs, “Art.no. 63/4959-XX and 63-4958-XX GR.1 Buckle, 3/5 point.” Accessed Sep. 15, 2010. www.holmbergs.se. (2 pages).
Holmbergs, “Gr. 0+ 3-point buckle with plastic chassi and tongues.” Accessed Sep. 15, 2010. www. holmbergs.se. (1 page).
Holmbergs, “Gr. 1 Buckle, Viking.” Accessed Sep. 15, 2010. www.holmbergs.se. (1 page).
Holmbergs, “Group 1 Systems.” Accessed Sep. 15, 2010. www.holmbergs.se. (1 page).
Holmbergs, “Infant buckle with steel tongues.” Accessed Sep. 15, 2010. www.holmbergs.se. (1 page).
Holmbergs, “Infant buckle. 5-point with plastic chassi and plastic tongues.” Accessed Sep. 15, 2010. www.holmbergs.se. (1 page).
Novarace, “DL: Group 1 Buckle.” Accessed Sep. 15, 2010. www.novarace.com. (1 page).
Novarace, “GT 3: Group 0 Buckle.” Accessed Sep. 15, 2010. www. novarace.com (1 page).
Novarace, “GT 5: Group 0 Buckle.” Accessed Sep. 15, 2010. www.novarace.com (1 page).
Novarace, “GT: Group 1 Buckle.” Accessed Oct. 8, 2010. www.novarace.com. (1 page).
Novarace, “KMA 1: Group 1 Buckle.” Accessed Sep. 15, 2010. www.novarace.com. (1 page).
Sabelt Catalog, “SAB104: Standard tongue hole to facilitate webbing insert,” p. 23 (1 page).
Sabelt, “Daphne 0: Fiberglass-plastic buckle with metal pin latch.” Accessed Sep. 15, 2010. www.sabelt.com (1 page).
Sabelt, “RO1000: Fiberglass-plastic buckle with metal pin latch.” Accessed Sep. 15, 2010. www.sabelt.com (1 page).
Sabelt, “SAB004: Fiberglass-plastic buckle with metal pin latch.” Accessed Sep. 15, 2010. www. sabelt.com. (1 page).
Sabelt, “SABUSA004: Fiberglass-plastic buckle with metal pin latch.” Accessed Sep. 15, 2010. www.sabelt.com. (1 page).
Schroth Safety Products, Installation Instructions, HMMWV Gunner restraint, Single Lower with Swivel—M1151, Revision: A, Jul. 28, 2006, pp. 1-10.
Toltzman, Randall and Shaul, Rich; “Buckle Assembly”; U.S. Appl. No. 29/297,210, filed Nov. 6, 2007.
ExxonMObil Santoprene 221-55 Thermoplastic Elastomer materials sheet. Retrieved from http://www.matweb.com/search/datasheet.aspx?matguid=67de0de851854bb085afcfac35e294f5&ckck=1 on Jul. 8, 2013.
ASTM D395-03 (Reapproved 2008) “Standard Test Methods for Rubber Property—Compression Set”, Retreived from http://enterprise2.astm.org/DOWNLOAD/D395.1656713-1.pdf on Jul. 9, 2013.
Related Publications (1)
Number Date Country
20140230201 A1 Aug 2014 US
Provisional Applications (1)
Number Date Country
61766683 Feb 2013 US