The present invention generally relates to the field of fasteners and in particular, to the field of fastening clips for attaching one or more components, such as airbag devices, to an external structure. More specifically, the present invention relates to an ergonomic fastening clip for attaching a side-impact airbag or curtain-type airbag to a vehicle structure.
Airbags are safety devices that are increasingly being used in the motor industry and which, in combination with other safety components, such as seatbelts, help to reduce fatal accidents in the case of collisions. The tests to which the vehicles have been subjected, as well as, mortality statistics, have clearly demonstrated that the use of airbags can considerably improve the safety of automobile occupants and, when combined with other forms of passive safety, such as seat belts, significantly (by about 30%) reduce mortality in the case of serious accidents.
Today, manufacturers produce frontal airbags, which are designed to protect the driver and/or passenger in the event of a head-on collision and, considering their positions, lateral airbags that are installed behind the posts and/or in the sides of the vehicle seats, along with curtain airbags.
Airbags of the curtain type are usually located in the part close to the roof on the sides of the automobile, e.g. situated above the front and rear doors. Such airbags have very rigorous requirements with regards to the goals set for them and the technical challenges that have to be overcome. Typical challenges may be their location in the vehicle and the way they are fastened, required deployment time and the time that the airbag is required to remain inflated. Other challenges may come from the fact that there is only a short distance between the body and the occupant and that there is little vehicle material between the occupant and an impacting vehicle. For example, it is essential that airbags are deployed in a fraction of a second, giving rise to an enormous snatch force on their attachment components, which then suffer the consequences of that impact.
Further, when installing new or restore previously deployed airbags, it is well known in the industry that the installation or restoration is tedious work, comprising steps, such as, (i) dismantling all the attachments of the airbag, (ii) replacing the airbag and installing a new one, and then again (iii) fitting all its attachments. The work involved generally requires the installer to at least partly manually assemble and install the airbag to the vehicle. During the assembly, the installer may have to push numerous fastening clips into a vehicle panel or structure to attach or operably couple the airbag to the vehicle. Such work steps can be very repetitive and potentially cause injuries to the installer if the component parts are not adequately designed for manual installation.
However, clip 10 is designed in such a way that the top region (or head portion) does not provide sufficient area for the installer to safely and efficiently push the clip into the attachment panel. There are also exposed sharp edges on this top region which can lead to an uncomfortable insertion of the clip, or even potentially injure the installer during such insertion, i.e. when pushing the clip into an attachment panel opening.
Another fastener clip 20 typically used to attach airbags to a vehicle structure is illustrated in
Also, even though clip 20 has a flat upper surface, sharp edges are exposed at the upper surface making it uncomfortable and even risk injuries to the installer when pushing the fastening clip 20 into the mounting aperture.
Therefore, it is an object of the present invention to provide an improved and ergonomic fastening clip, suitable for attaching airbags, such as side-impact or curtain airbags, that robust and efficient, as well as, ergonomic and safe so as to minimise any potential risk to the user during assembly.
According to a first aspect of the present invention, there is provided a fastening clip for mounting a component part, such as an airbag, to a support structure, comprising:
a body portion, extending between an upper end region and a lower end region along a longitudinal axis, comprising at least one elastically deflectable retaining member, projecting laterally from said lower end region of said body portion so as to fixingly engage when inserted into an orifice of the support structure;
a head portion, provided at said upper end region of said body portion, comprising a rectangularly shaped plate member, having a flat upper surface extending in a transverse plane relative to said longitudinal axis, and at least two opposing resilient spring members extending transversely away from opposing first and second edges of said plate member and folded towards said lower end region of said body portion.
The fastening clip of the present invention provides the advantage of an ergonomic pushing surface without any exposed sharp edges that may damage other components in the application or the user during assembly. Further, the fastening clip of the present invention provides the advantage of combining spring arms with an ergonomic pushing surface adapted, so as to prevent exposure of any sharp edges to the user or other components while the construction still allows the use of a single (uniaxial) folded (and punched) laminar sheet material (e.g. metal).
Advantageously, said plate member may be configured for push engagement by a digit of a user.
Advantageously, each one of the two opposing resilient spring members may be uniaxially folded about a respective first and second folding axis. Preferably, said first and second folding axis are perpendicular to said longitudinal axis. Even more preferably, said first and second folding axis are parallel to each other.
The plate member may further comprise a first fold extending from at least a centre portion of said first edge and folded towards said body portion. Preferably, said first fold may form a single fold about a first folding axis perpendicular to said longitudinal axis.
Advantageously, said plate member may further comprise a second fold extending from at least a centre portion of said second edge and folded towards said lower end region of said body portion. Preferably, said second fold may form a single fold about a second folding axis perpendicular to said longitudinal axis. Preferably, said second folding axis may be parallel to said first folding axis.
Advantageously, said plate member may further comprise at least one edge member extending from at least a central portion of each one of said first and second edges and folded towards said lower end region and said body portion. Preferably, said at least one edge member may extend from each one of said opposing first and second edges into forming said body portion.
Advantageously, at least one of said resilient spring members may be a flexion leg ending in a looped or folded end portion shaped, so as to minimise damage to the support structure and/or the user during assembly.
Advantageously, said resilient spring members may be provided at diagonally opposing corners of said plate member.
Advantageously, said body portion and said head portion may be formed from a single piece.
According to a second aspect of the present invention, there is provided a planar sheet material for forming a fastener clip, comprising a predetermined pattern of cut-outs, fold lines and apertures, configured to fold into a fastener clip according to the first aspect of the present invention.
Advantageously, said predetermined pattern of cut-outs, fold lines and apertures may be fabricated by any one of punching, stamping, cutting and bending.
Example embodiments of the description will now be described, by way of example only, with reference to the accompanying drawings, in which:
The described example embodiment relates to a fastening clip suitable for securing paraphernalia and accessories. The embodiment(s) of the invention are normally applied in vehicles. Although the invention is described with respect to vehicles, the invention is not restricted to vehicles altogether, but may also be used in other structures requiring attachment of accessories or peripheral components to a structure.
Certain terminology is used in the following description for convenience only and is not limiting. The words ‘right’, ‘left’, ‘lower’, ‘upper’, ‘front’, ‘rear’, ‘upward’, ‘down’ and ‘downward’ designate directions in the drawings to which reference is made and are with respect to the described component when assembled and mounted. The words ‘inner’, ‘inwardly’ and ‘outer’, ‘outwardly’ refer to directions toward and away from, respectively, a designated centreline or a geometric centre of an element being described (e.g. central axis), the particular meaning being readily apparent from the context of the description.
Further, as used herein, the terms ‘connected’, ‘attached’, ‘coupled’, ‘mounted’ are intended to include direct connections between two members without any other members interposed therebetween, as well as, indirect connections between members in which one or more other members are interposed therebetween. The terminology includes the words specifically mentioned above, derivatives thereof, and words of similar import.
Further, unless otherwise specified, the use of ordinal adjectives, such as, “first”, “second”, “third” etc. merely indicate that different instances of like objects are being referred to and are not intended to imply that the objects so described must be in a given sequence, either temporally, spatially, in ranking or in any other manner.
Referring now to
Clips 100 for airbags such as those according to this invention are inserted into an opening made in the surface of the attachment panel 500. This surface effectively divides the clip 100 into an upper outer part, i.e. the head portion 102, which is not inserted into the opening and an inner lower part, i.e. the body portion 104, which is inserted into the opening (see
Tangs 110 have an inclination towards the central axis 128 of the clip and extend downwards from box 106 towards the centre of clip 100 to then form a loop and extend away from the centre of the clip 100 in the opposite direction as ascending side limbs 112. In the preferred construction of the invention and as illustrated in the drawings, the loops of tangs 110 may be in contact with each other. This contact provides strength to the clip against pull-out forces.
Tangs 110 may have an enlarged surface 116, almost in the form of a triangle, which allows its base to extend beyond the walls forming box 106. This obviously prevents box 106 from “descending” under pressure and passing beyond those stops represented by the enlarged surface 116.
Side limbs 112 are configured to emerge from the inner part of box 106 towards the exterior of the same, through a hollow space, opening or window 118 made in its surface, creating a bearing surface 132 that is approximately parallel to the flat upper surface of the head portion 102 and which is configured to engage with the panel 500 (whin in use).
The sides of window 118 may have lateral tabs 120 which provide a support for the bearing surfaces 132 of box 106 against the inner surface of the panel 500 in response to forces which tend to extract clip 100.
The upper part or head portion 102 of the clip 100 comprises a substantially rectangularly shaped plate 122 with a flat upper surface. The plate 122 is arranged transverse to a longitudinal axis 128 of the body portion 104. Resilient spring elements 114 (i.e. flexion leg) extend transversely away from opposing edges at diagonally opposing corners of the plate 122. Each spring element 114 is folded towards the body portion 104, so as to form an obtuse angle with the flat upper surface of the plate 122. Respective folds are uniaxial about a single axis 130 that is perpendicular to the longitudinal axis 128 of the clip 100. The fold of the spring elements 114 forms a rounded side edge 134 of the plate 122. Further, a distal end portion of each spring element 114 is looped back, so as to form a rounded spring element end (i.e. a tear-drop hem).
A central portion 124 of two opposing protruding side edges of the plate 122 is folded towards and merging into a respective side of the body portion 104 (i.e. forming the box 106), so as to form a rounded side edge (e.g. a closed or open hem).
In addition, the plate 122 may be provided with two centrally aligned apertures 126, so as to allow access to the inner part of box 106.
Referring now to
It is understood by the person skilled in the art, that the unique cut-out pattern of the sheet metal allows for a clip with two spring elements 114 extending directly from the plate 122 of the head portion 102 and uniaxially bent about a single axis 130 that is perpendicular to the longitudinal centre axis 128 of the clip 100, thus, minimising the material required to form the intended shape (and functionality) of the clip 100.
The laminar surface or sheet metal blank may be made from a metal, such as, for example, carbon steel which has been heat treated to impart improved strength qualities to it. Further, clip 100 may undergo treatment to prevent corrosion and/or receive a suitable coating in order to improve its service life and wear in relation to dust, moisture and other elements which might attack the clip.
During assembly, the user simply pushes the fastening clip 100 into the mounting aperture 502 of the attachment panel 500 thus fixingly engaging the side limbs 112 with an inner surface of the attachment panel 500. The flat surface and round edges of the plate 122 provide an ergonomic pushing surface adapted to minimise potential injuries to the user during assembly.
It will be appreciated by persons skilled in the art that the above embodiment(s) have been described by way of example only and not in any limitative sense, and that various alterations and modifications are possible without departing from the scope of the invention as defined by the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
P202130026 | Jan 2021 | ES | national |
21201530.9 | Oct 2021 | EP | regional |