A fastening clip configured to secure a first panel to a second panel may include a base supporting a plurality of resilient beams, and a plurality of tangs outwardly extending from an outer surface of each of the resilient beams. The plurality of tangs are configured to securely engage the first an
A fastening clip configured to secure a first panel to a second panel may include a base supporting a plurality of resilient beams, and a plurality of tangs outwardly extending from an outer surface of each of the resilient beams. The plurality of tangs are configured to securely engage the first and/or second panels. The fastening clip may also include stabilizing flaps on either side.
대표청구항▼
The invention claimed is: 1. A fastening clip configured to secure a first panel to a second panel, the fastening clip comprising: a base supporting a plurality of resilient beams, said base being integrally connected to said plurality of resilient beams through a reduced panel securing portion def
The invention claimed is: 1. A fastening clip configured to secure a first panel to a second panel, the fastening clip comprising: a base supporting a plurality of resilient beams, said base being integrally connected to said plurality of resilient beams through a reduced panel securing portion defining a notch, such that the first panel is configured to snapably secure into said notch, wherein each of said plurality of resilient beams comprises a flap on either side thereof, each flap extending over at least a portion of a length of each associated plurality of resilient beams, and wherein each of said plurality of resilient beams comprises a distal tip, such that said plurality of resilient beams are configured to be spaced apart by a gap extending from said base through said distal tips so that said plurality of resilient beams are arranged in a non-overlapping manner; and a plurality of tangs outwardly extending from an outer surface of each of said plurality of resilient beams, said plurality of tangs configured to securely engage the second panel, said tangs being spaced apart from and distinctly separate from said notch so that when the first panel is secured in said notch, none of said tangs engage the first panel. 2. The fastening clip of claim 1, wherein each of said plurality of resilient beams comprises a chamfered distal tip. 3. The fastening clip of claim 1, wherein said plurality of tangs extend over at least a portion of a length of each of said plurality of resilient beams. 4. The fastening clip of claim 1, wherein said plurality of resilient beams comprises two opposed resilient beams. 5. The fastening clip of claim 1, wherein each of said plurality of tangs comprises a ramped surface integrally connected to an edge. 6. An assembly, comprising a first panel having a first hole formed therethrough; a second panel having a second hole formed therethrough; and a one-piece fastening clip positioned through said first and second holes and securing said first panel to said second panel, said fastening clip comprising: a base supporting resilient beams, said base being integrally connected to said resilient beams through a reduced panel securing portion defining a notch, such that said first panel is configured to snapably secure into said notch, wherein each of said resilient beams comprises a flap on either side thereof to stabilize said fastening clip, each flap extending over at least a portion of a length of each associated resilient beam, and wherein each of said resilient beams comprises a distal tip, such that said resilient beams are configured to be spaced apart by a gap extending from said base through said distal tips so that said resilient beams are arranged in a non-overlapping manner; and a plurality of tangs outwardly extending from an outer surface of each of said resilient beams, said plurality of tangs configured to securely engage the second panel, said tangs being spaced apart from and distinctly separate from said notch so that when the first panel is secured in said notch, none of said tangs engage the first panel. 7. The assembly of claim 6, wherein each of said resilient beams comprises a chamfered distal tip. 8. The assembly of claim 6, wherein said plurality of tangs extend over at least a portion of a length of each of said resilient beams. 9. The assembly of claim 6, wherein said resilient beams comprise two opposed resilient beams. 10. A fastening clip configured to secure a first panel to a second panel, the fastening clip comprising: a base supporting two opposed resilient beams, said base being integrally connected to said resilient beams through a reduced panel securing portion defining a notch, wherein the first panel is configured to snapably secure into said notch; an inwardly angled flap on each side of said resilient beams, said inwardly angled flaps providing stability to said resilient beams, each of said inwardly angled flaps extending from a inwardly chamfered distal tip of each said resilient beam over at least a portion of a length of each said resilient beam, such that said resilient beams are configured to be spaced apart by a gap extending from said base through said inwardly chamfered distal tips so that said resilient beams are arranged in a non-overlapping manner; and a plurality of tangs outwardly extending from an outer surface of each said resilient beam, said plurality of tangs configured to securely engage the second panel, wherein said plurality of tangs extend over at least a portion of a length of each said resilient beam, said tangs being spaced apart from and distinctly separate from said notch so that when the first panel is secured in said notch, none of said tangs engage the first panel.
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Forcina John (7209 Myrtle Ave. Glendale NY 11227), Anchoring nail.
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