The present invention refers to a stop device usable in any application wherein it is necessary to arrange a deactivable stop device for avoiding the movement, at least in one direction, of a first moving structure with respect to a second structure.
The object of the invention is to carry out a stop device which shows a simple structure, with reduced hindrance, economical to produce and at the same time is effective in the functioning.
In view of attaining this purpose, the object of the invention is a stop device having the features defined in the enclosed claim 1. Further advantageous features of the invention are defined in the remaining dependent claims.
The invention will be now described with reference to the enclosed drawings, which are given as not limitative example, wherein:
With reference to the drawings, numeral 1 generally shows a fixed support structure comprising a box shaped body of a metal sheet 2 with two end flanges 3, 4 for allowing the mounting of the structure 1 on any structure which is designed to receive the same.
Within the box shaped body 2, two stop elements 5 are slidably mounted, which are movable between a mutual distant position, that can be seen in
By mere way of example, the stop device-carrying structure can be a retractable bumper of a motor vehicle.
At each of the stop elements 5 a first and a second coil springs 6 are associated (one of which is partially visible in
As it is clearly evident in
Still with reference to
In order to return the two stop elements 5 towards their mutual close position, a shape memory actuator, generally referred with the numeral 12, is arranged, which in the illustrated example includes a shape memory wire 13 arranged according to a general U-shaped configuration, with two branches 14 substantially parallel, and an intermediate joining portion 13a engaged around a curved groove of a guide element 7b fixed to the wedge-shaped element 7 (see
The two opposite and adjacent ends of the shape memory wire 13 are rigidly connected with the fixed support structure 1. This is obtained by using two metal rigid tubes 15, each having one end fixed to the bracket 10 with the opposite end having a metal bushing 16 with a H-shaped section, within which a block 17, fixed to the respective end of the flexible cable 13, is mounted.
The cable 13 is formed by extrusion of a shape memory metal alloy. By applying a co-extrusion method, along with the cable 13, a synthetic material coating 18 is obtained, like the one which is the object of the previous patent application (still confidential) of the Applicant No. TO2003A000045. The function of this coating will result apparent in the following. The whole of the wire 13 with its co-extruded sheath 18 is arranged through a sheath 19 (
Means (not illustrated) for supplying an electric current through the wire 13 are also provided. As a result of the electric current passage, the wire 13 becomes warm and, due to the shape memory, it undergoes a length reduction. Since the two opposite ends of the wire are fixed to the bushings 16, which are rigidly connected to the fixed support structure 1, the shortening of the wire causes a displacement of the intermediate joining portion 13a of the wire in the direction of the two adjacent ends of the wire, namely a displacement of the wedge-shaped element 7 (see
Obviously, without prejudice for the principle of the invention, construction details and embodiments could widely vary with respect to what has been described and shown by mere way of example, however without leaving the scope of the present invention.
For example, instead of one single U-shaped wire, two wires, e.g. in parallel, could be used, as well as one single wire corresponding to only one of the two wire branches illustrated herein. Moreover, the shape memory element could also be a rigid elengated element.
Number | Date | Country | Kind |
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TO2003A0366 | May 2003 | IT | national |
Number | Name | Date | Kind |
---|---|---|---|
4559512 | Yaeger et al. | Dec 1985 | A |
4753465 | Dalby | Jun 1988 | A |
4829843 | Suzuki | May 1989 | A |
4944169 | Labelle et al. | Jul 1990 | A |
5722709 | Lortz et al. | Mar 1998 | A |
6008992 | Kawakami | Dec 1999 | A |
6404098 | Kayama et al. | Jun 2002 | B1 |
6450725 | Roth et al. | Sep 2002 | B1 |
6732516 | Butera et al. | May 2004 | B1 |
6762669 | Alacqua et al. | Jul 2004 | B1 |
6851260 | Mernøe | Feb 2005 | B1 |
20040035108 | Szilagyi | Feb 2004 | A1 |
20050183479 | Alacqua et al. | Aug 2005 | A1 |
Number | Date | Country |
---|---|---|
2 140 554 | Feb 1973 | DE |
195 29 712 | Feb 1997 | DE |
2 820 174 | Aug 2002 | FR |
WO 0179107 | Oct 2001 | WO |
Number | Date | Country | |
---|---|---|---|
20040231950 A1 | Nov 2004 | US |