Tool equipped with a locking device in at least one position of a mobile portion of the tool
10710253 ยท 2020-07-14
Inventors
Cpc classification
B26B1/042
PERFORMING OPERATIONS; TRANSPORTING
B26B1/044
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A tool having a first portion defining a housing for receiving a second portion mobile in rotation between a first inactive position and a second active position, said tool equipped with at least one locking device in at least one position of said second portion, said device having a portion pivoting about a shaft perpendicular to its largest dimension between at least one position where one end of the second portion is engaged in a notch formed in the end of the first portion, and another position where it is disengaged from said notch, said part being configured for a return to the inactive position by at least one return member, at least the elongated part, its pivot shaft and the at least one return member being cutout in the first portion.
Claims
1. A tool (2) comprising a first portion (1; 101) defining a receiving housing (16) of at least a second portion (3), said second portion (3) rotatably mounted (F1) about a rotation shaft (A17) fixed on the first portion (1; 101) between an inactive position in which the second portion (3) is housed in the first portion (1, 16; 101) and an active position in which the second portion (3) is out of its housing (16), said tool (2) equipped with at least one locking device in at least one position of said second portion (3), said device comprising an elongated part (8), fixed on the first portion (1; 101) and mobile (F) by pivoting about a shaft (R; R1; R2) perpendicular to a largest dimension (161) between at least one position where an end (19, 22) of the second portion (3) is engaged in a notch (7; 107) provided in an end of the first portion (1; 101) and another position where the end (19, 24) of the second portion (3) is disengaged from said notch (7; 107), the elongated part (8) configured for a return to the inactive position by at least one return member (18, 19; 118; 218), the first portion (1; 101) made at least by folding of a metal plate and in that at least the elongated part (8), its pivot shaft (R; R1; R2) and the at least one return member (18, 19; 118; 218) constituting the locking device integrally formed, by cutting, with the first portion (1; 101), wherein the pivot shaft (R; R1; R2) is defined by the center of a circle determined by a circular cutting line (15; 115), the return member comprising at least one leaf spring type tab (18, 19; 118; 218).
2. The tool according to claim 1, wherein the end (19) of the second portion (3) is provided with at least one relief (22) having a face adapted to be engaged with a notch (7; 107) formed in an end of the elongated part (8) of the first portion (1; 101) when the second portion (3) is in the active position.
3. The tool according to claim 2, wherein the end (19) of the second portion (3) comprises at least one other relief (24) adapted to be engaged with a notch (6; 106) formed in the end of the elongated part (8) of the first portion (1; 101) when the second portion is in the inactive position.
4. The tool according to claim 1, further comprising two return members formed by two tabs (18, 19; 118) of the leaf spring type arranged angularly.
5. The tool according to claim 1, wherein the first portion (1; 101) is formed by longitudinal folding and bending along an axis (AA) of symmetry of a metal plate.
6. The tool according to claim 1, wherein the elongated part (8) of the first portion (1; 101) is provided with a support zone (23; 123; 223) adapted to allow pivoting (F3) of the elongated part (8) around the pivot shaft (R; R1; R2).
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) The invention will be better understood and other advantages thereof will appear more clearly on reading the following description of several embodiments of the invention, given by way of non-limiting example and with reference to the following drawings in which:
(2)
(3)
(4)
(5)
(6)
(7)
DETAILED DESCRIPTION OF THE INVENTION
(8)
(9) It is readily conceivable that in other embodiments, the knife, or more generally the tool, comprises more than one blade or, more generally, more than a second active portion. Similarly, the tool can be different from a knife. By way of non-limiting examples, mention may be made of a folding saw, a folding shovel, pliers with foldable handles, handles with adjustable length, tripods, folding step ladders, folding ladders or other tools known per se and having a folding portion.
(10) Here, the first portion 1 is made of stainless steel. Alternatively, it is made of another metal or metal alloy. According to other embodiments, this first portion is made of another material, for example a polymer-based composite material provided that this material has physicochemical and mechanical characteristics similar to those of a metal or a metal alloy. Similarly, this first portion 1 can be painted, heat-lacquered, coated, galvanized or, more generally, covered with a protective and/or decorative coating. Here, the portion 1 is of raw appearance, the metal being simply polished.
(11) The first portion 1 is generally rectangular in shape. Here, the first portion also has the function, once folded, of forming a handle to the tool 2. In other words, the first portion 1 also forms the handle of the folding knife 2.
(12) When looking at
(13) Beyond the notches 4, on the right side of the first portion 1 when looking at FIG. 1, cutouts of complex geometric shapes define the elements of the locking device, according to one embodiment of the invention. These cutouts are made symmetrically with respect to an axis of symmetry coinciding with the longitudinal axis AA of the first portion 1.
(14) In central position on the axis of symmetry AA, and in the vicinity of one of the small sides 5 of the first portion 1, a square cutout 6 is present. Another cutout 7, generally in the form of a square connected to a rectangular portion, is formed between the first cutout 6 and the notches 4. These two cutouts 6 and 7 form, after folding of the first portion 1, receiving housings formed on a long side 8 of the first portion 1 which is folded, for reliefs of complementary shapes and located on the end or heel 9 of the second active and mobile portion, or blade 3 of the tool 2, as will be detailed in
(15) The long side 8 thus defines an elongated portion which is formed in the first portion and is mobile, as will be detailed later.
(16) On either side of these two axially aligned cutouts 6 and 7, other cutouts of complex shapes are formed. These other cutouts are identical and symmetrical with respect to the axis AA.
(17) We are now describing a set of cutouts located on the same side of the axis of symmetry, it being understood that an identical set of cutouts is present on the other side. In order to facilitate reading, only one set of cutouts is referenced in
(18) A cutout 10, in acute triangle, is arranged closest to the notches 4 and oriented, according to the height of the triangle, parallel to the axis of symmetry AA. Another cutout 11, substantially in the shape of a narrow and elongated V, is formed in the first portion 1. This cutout 11 is oriented parallel to the axis of symmetry AA and opens through its base on the small side 5 of the first portion 1, in the vicinity of the square cutout 6.
(19) Between these two cutouts 10 and 11 and the long side 12 of the portion 1, two elongated cutouts 13 and 14, of a width much smaller than their length, are made on either side of a circular cutting line 15. The cutout 13 is oriented parallel to the axis of symmetry AA. The cutout 14 is angularly disposed with respect to the axis of symmetry AA. The cutting line 15 is positioned between the cutouts 13 and 14 and provide continuity between them.
(20) As is apparent from
(21) The cutouts 6 and 7, after folding and symmetrical longitudinal bending of the first portion 1, are located on the back, so on the large side 8 of the handle 16 of the tool 2 defined by the first folded portion 1, in the vicinity of the end of the handle 16 defined by the small folded side 5, which is intended to receive the active portion 3 of the tool 2. To mount the active portion 3, so the blade here, on the handle 16, an orifice 17 allows to insert a rotation shaft A17.
(22) The cutouts 10, 11, 13 and 14 of complex shapes delimit, for the cutouts 10 and 11, recess areas located in portions of a rotation shaft R delimited by the circular section line 15. The rotation shaft R is defined by the center of the circle determined by the section line 15. In this way, a physical rotation shaft, obtained by cutting, is defined. The pivoting of the movable portion 8 constituting the locking device in at least one position of the second portion 3 is performed solely by a rotation about the rotation shaft R.
(23) The cutouts 10, 11, 13 and 14 of complex shapes delimit, for the cutouts 10 and 11, recess areas located on either side of a rotation shaft R delimited by the circular cutting line 15. The rotation shaft R is defined by the center of the circle determined by the cutting line 15. In this way, a physical rotation shaft obtained by cutting is defined. The pivoting of the mobile part 8 constituting the locking device in at least one position of the second portion 3 is performed solely by a rotation about the rotation shaft R.
(24) The recess zones 10, 11 are positioned on one half of the width 160 of the handle 16, it being understood that the recess zones 10, 11 occupy substantially a half-length 161 of the handle 16.
(25) The elongated cutouts 13, 14, each having a circular end 20, 21, are located under the recess areas 10, 11. They define, with an edge of the recess areas 10, 11, two elongated tabs 18, 19 which form return members in leaf spring type position. Thus, once the first portion 1 is folded, a handle 16 is provided with a gripping zone, with the notches 4, and a mobile zone, with recesses 10, 11 in a limited pivoting movement and oriented perpendicularly to the longitudinal axis AA of the handle 16, according to the double arrow F.
(26)
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(28) For this it is necessary to release the relief 22 of the heel 9 of the blade 3 of the notch 6 of the handle 16. During this step, the user exerts pressure on a zone 23 of the back 8 of the handle 16 located closest to the notches 4, behind the rotation shaft R and above the recess 10 of larger area. This pressure, pointing downwards in
(29) The movement of the blade 3 continues until reaching the inactive configuration, shown in
(30) When the substantially straight face of the relief 24 is oriented towards the rotation shaft R, it is generally perpendicular to the axis AA, only a pressure of the user on the zone 23 of the back 8 of the handle, to disengage the relief 24 out of the notch 5, 6, allows to open the knife 2 and position the blade 3 in active configuration. In a variant, if the face is inclined angularly with respect to the axis AA, the release of the relief 24 out of the notch 6 is simply slowed.
(31)
(32) Here, the part 101 is devoid of cutouts similar to the cutouts 13. Therefore, if the pivoting around a pivot R1, defined by the circular cutting line 115, of a zone 123 induced by a pressure exerted by a user is similar to what is described for
(33) In other words, the return to position is obtained with a single leaf spring type member in
(34)
(35) In any case, whatever the embodiment, the rotation shaft R, R1 or R2 is defined by a circular cutout.
(36) In another embodiment, not shown, the movement of the mobile portion of the part is carried out in a guided manner, with a pullback located on the support zone of the back of the handle. In this case, the pressure exerted by the user is applied in a defined region, which makes it possible to optimize the movement. In other words, it limits the efforts of the user. Similarly, the one or more return member(s) may be of different shape from that illustrated. For example, they may be in the shape of an arc or a broken ring.
(37) Alternatively, a tool may be equipped with several locking devices in at least one position of several mobile portions of the tool.