The invention relates to a carabiner comprising:
The document EP 0606808 describes a carabiner wherein the gate pivoting towards the inside of the body is formed by an aluminium alloy bar having substantially the same diameter as the body. The gate is returned to the closed position by the action of a spring acting directly on the end of the gate. The spring can be a torsion spring or a leaf spring. The presence of a bar of similar diameter to the body of the carabiner does however limit the opening zone, as the end of the gate quickly comes up against a stop.
Carabiners also exist wherein the bar of the moving gate mobile is replaced by a steel wire shaped as a pin. The wire is elastically deformable and folded into an open loop. The ends are curved into the form of a bracket without being coaxial and are inserted in offset holes of the fixed body. The pin swivels on the body around its curved ends and is deformed when the swivelling opening movement takes place. The gate is then automatically returned by flexible biasing to the closed position. This type of carabiner presents a larger opening zone but has the drawback of presenting a hook at the end of the C-shaped body.
The object of the invention consists in providing a carabiner having a steel wire gate that is easy to handle under all conditions, that is inexpensive to manufacture, and has a flexural strength meeting the requirements of safety standards.
The carabiner according to the invention is characterized in that the gate is formed by a rigid metal wire having a smaller inside diameter than that of the body, said wire comprising a protuberance at one of the ends thereof to constitute the male latching element, and an articulation loop at the opposite end for passage of the swivel-pin.
The articulation loop rotates around the fixed swivel-pin when closing or opening of the gate are performed, and the protuberance at the opposite end is blocked by the female securing element of the body in the closed position. The wire is single-strand and easy to handle when opening.
According to a preferred embodiment, the articulation loop comprises a closed contour achieved by winding the end of the metal wire. The flexible return device of the gate comprises a compression spring operating in conjunction with an intermediate transfer stirrup inside a housing of the second end of the body. The articulation loop of the gate comprises two guiding flats on the opposite surfaces and a bulge in a non-flattened zone acting as blocking part operating in conjunction with a stop zone of the body. The female securing element at the top end of the body comprises a recess having a profile of conjugate shape to the male latching element.
Combination of the upline securing system of the gate with the downline blocking system enables the tensile strength of the carabiner to be improved.
The transfer stirrup comprises a centering pin designed to be inserted in the compression spring and two transmission branches in contact with the articulation loop to transmit a loading movement to the spring when the gate is opened and an opposite closing movement of the gate by rotation of the loop on the fixed swivel-pin when expansion of the spring takes place.
Other advantages and features of the invention will become more clearly apparent from the following description of an embodiment of the invention given for non-restrictive example purposes only and represented in the accompanying drawings in which:
With reference to
In
The wire of gate 12 can be straight or curved (see respectively right-hand wire and left-hand wire in
Female securing element 14 at top end E1 of body 11 comprises a recess 14A (see
In
Bottom second end E2 of body 11 is provided with two slightly convex opposite wings 22A, 22B (
In
With reference to
The steel wire of gate 12 and its protuberance 15A in the form of a head resembles: a nail the head of which has been replaced by articulation loop 17. Securing elements 14 and latching elements 15, and also flexible return device 16, are integrated in body 11 of carabiner 10 without requiring the cross-section of the latter to be increased.
Assembly of carabiner 10 according to the invention is performed in the following manner:
Spring 16A in first inserted in housing 21 of bottom second end E2 of body 11, and transfer stirrup 20 is then inserted by engaging pin 25 in helical spring 16A. Articulation loop 17 of gate 12 is then positioned in gap 23 between the two transmission branches 26A, 26B of transfer stirrup 20 so as to align hole 18 of loop 17 with the two holes 24 of wings 22A, 22B. Swivel-pin 13 can then be inserted in hole 18 and be secured by head riveting.
Swivel-pin 13 is fixed and articulation loop 17 rotates around swivel-pin 13 when closing or opening of carabiner 10 are performed. The presence of guiding flats 29A, 29B enables a good articulation to be had when rotation of gate 12 takes place. Bulge 30 of non-flattened zone operates in conjunction with a stop zone of body 11 to prevent any unwinding effect of the wound wire of loop 17. Combination of the upline securing system of the gate with the downline blocking system enables the tensile strength of the carabiner 10 to be improved.
The metal wire of moving gate 12 is preferably made from stainless steel or treated steel, but any other metal can be used.
In the alternative embodiment according to
Number | Date | Country | Kind |
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07 03188 | May 2007 | FR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/FR2008/000565 | 4/22/2008 | WO | 00 | 11/2/2009 |
Publishing Document | Publishing Date | Country | Kind |
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WO2008/148950 | 12/11/2008 | WO | A |
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195 39 587 | Apr 1997 | DE |
0 606 808 | Jul 1994 | EP |
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Entry |
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International Search Report for International Application No. PCT/FR2008/000565, filed Apr. 22, 2008. |
Number | Date | Country | |
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20100125984 A1 | May 2010 | US |