The field relates to a magnetic coupling device attached to both ends of a string body such as an accessory such as a necklace and a bracelet, a waist belt, and other removable belts for coupling both the ends of the string body or releasing the connection.
The patent document 1 discloses a coupling device in which a tenon 113 (or dovetail) and a mortise 115 (or dovetail groove) are formed on one and the other of facing surfaces of magnets 111 and 121 in a direction perpendicular to a direction in which pulling force is applied illustrated in
Although the above-described conventional coupling device has an effect to prevent separation when the pulling force is applied in a longitudinal direction of the string body, this is significantly inconvenient when it is tried to release the connection. As understood from
A magnetic coupling device according to one example of the invention according to claim 1 (hereinafter, appropriately referred to as the “coupling device according to claim 1”) is provided with a pair of coupling pieces, wherein each of the coupling pieces is provided with each of a pair of coupling piece main bodies including joint surfaces capable of joining each other, at least one (one or a plurality of) magnet piece(s) embedded in each of the joint surfaces such that the coupling piece main bodies attract to join each other, and an attaching piece for attaching a string body provided on each of the coupling pieces, and is provided with a slide guide structure formed on a side of the joint surface of each of the coupling piece main bodies for slidingly guiding the other in a predetermined direction with respect thereto and preventing relative movement of each of the coupling piece main bodies in a string body pulling direction when being pressed to be released. As far as the one magnet piece and the other magnet piece may attract each other, a material and a shape thereof are not limited. A polarity is not limited either, and monopole such that the polarity appearing on one of attracting surfaces is the north pole and the other is the south pole is possible, for example, and multipole such that a plurality of north poles and a plurality of south poles appear is also possible. Further, if a plurality of (for example, two) monopolar magnets in which the north pole and the south pole appear in a thickness direction are prepared and they are arranged such that the polarity on the attracting surface of one magnet is opposed to the polarity on the attracting surface of the adjacent magnets, the same effect as the multipolar magnet may be obtained.
According to the coupling device according to claim 1, a pair of coupling devices are composed of one coupling piece and the other coupling piece, and each of the coupling pieces is provided with the coupling piece main body and the attaching piece. The joint surface of the one coupling piece main body and the joint surface of the other coupling piece main body may join each other and joint of both of them is realized by attraction of the one magnet piece and the other magnet piece embedded in both of them. The pulling force is applied to the one coupling piece main body and the other coupling piece main body through the attaching piece attached to each of them and the string body attached to the attaching pieces. Although the pulling force acts in a direction to move the one coupling piece main body with respect to the other coupling piece main body, the movement is prevented by the slide guide structure. The slide guide structure further guides to slide the one coupling piece main body with respect to the other coupling piece main body in a predetermined direction different from the pulling direction. If the other coupling piece main body is moved in a direction to be separated from the one coupling piece, both the hands are required to hold the one and separate the other, but it is configured to move the same in a contacting state, that is to say, to slide, so that only one hand is required.
A problem to be solved by the present invention is for solving the previously described disadvantage of the conventional coupling device, and for providing the magnetic coupling device in which one of the magnets attracting each other may be separated from the other only by picking the same with the thumb and the index finger, for example, of one hand without using both the hands, while the magnets are not easily separated in the direction in which the pulling force is applied.
For solving the above-described problem, in order to enable slide of one of the coupling pieces attracting each other with respect to the other by the fingers of only one hand for separating the one from the other, it is devised in the present invention a structure to allow such slide but prevent easy separation in the pulling direction. Detailed contents are, described in a following paragraph. Meanwhile, definition and the like of a term for describing the invention according to any one of claims is also applied to the invention according to another claim within an available scope in the nature irrespective of the order of description.
The magnetic coupling device according to the invention according to claim 2 (hereinafter, appropriately referred to as the “coupling device according to claim 2”) is the coupling device according to claim 1, wherein the slide guide structure includes a projected wall projected from the joint surface of each of the coupling piece main bodies and a retreated wall retreated from the joint surface, and is configured that one of the projected walls and the other of the retreated walls, and the other of the projected walls and one of the retreated walls are brought into slide contact with each other in the slide direction, and the relative movement in the string body pulling direction is prevented.
According to the coupling device according to claim 2, the projected wall of the one coupling piece main body and the retreated wall of the other coupling piece main body, and the projected wall of the other coupling piece main body and the retreated wall of the one coupling piece main body are brought into slide contact with each other, and according to this, the other coupling piece main body slides in the predetermined direction with respect to the one coupling piece main body. On the other hand, the slide contact prevents the relative movement of each of the coupling piece main bodies in the string body pulling direction. From above, a function effect of the slide guide structure of claim 1 is generated.
The magnetic coupling device according to the invention according to claim 3 (hereinafter, appropriately referred to as the “coupling device according to claim 3”) is the coupling device according to claim 1 or 2, wherein the predetermined direction is inclined with respect to the string body pulling direction. Herein, the term “incline” is intended to mean that, when the pulling direction of the coupling piece main body in a planar view is in a direction of 12 o'clock (6 o'clock), an angle between the same and the predetermined direction is an acute angle, further, when the pulling direction of the coupling piece main body in a side view is in a direction of 3 o'clock (9 o'clock), an angle between the same and the predetermined direction is an acute angle, and further, when the pulling direction is in the direction other than the above-described two directions, an angle between the same and the predetermined direction is an acute angle.
According to the coupling device according to claim 3, it is possible to press to release in a direction inclined with respect to the pulling direction, so that although depending on a size and a shape of the coupling device, press to release becomes easy in general. That is to say, although it is not prevented to be at a right angle with respect to the pulling direction, operation of the press to release at the acute angle performed on a palm is easier in general than that at the right angle.
The magnetic coupling device according to the invention according to claim 4 (hereinafter, appropriately referred to as the “coupling device according to claim 4”) is the coupling device according to any one of claims 1 to 3, wherein the magnet piece is provided with at least a pair (or two or more pairs) of the north pole and the south pole arranged in the slide direction on an attracting surface thereof, and positions of the north pole and the south pole in one magnet piece and the other magnet piece are reversed. That is to say, if the north pole and the south pole are arranged in the slide direction on the attracting surface of the one magnet piece, the south pole and the north pole are arranged in the same direction on the attracting surface of the other magnet piece.
According to the coupling device according to claim 4, in addition to the function effect of the coupling device according to claims 1 to 3, both of the magnet pieces attract each other such that the north pole of the one and the south pole of the other are opposed to each other, and the south pole of the other and the north pole of the one are opposed to each other at the time of connection. When there are a plurality of pairs of magnet pieces, each pair of magnet pieces attract each other in the same mode. On the other hand, when the coupling device is pressed in a releasing direction, the relative movement is generated between the magnet pieces attracting each other and the above-described opposing relationship disappears, and the same poles are opposed to each other between the magnet pieces such as the north pole and the north pole or the south pole and the south pole. When the same poles are opposed to each other, repelling force is generated between both the magnet pieces, and according to this, the one coupling piece main body (coupling piece) and the other coupling piece main body (coupling piece) are separated from each other and the connection is released. Since the repelling force of the magnets acts, the connection of the magnet pieces may be easily released.
The magnetic coupling device according to the invention according to claim 5 (hereinafter, appropriately referred to as the “coupling device according to claim 5”) is the coupling device according to any one of claims 1 to 4, wherein at least one or a plurality of laminated yoke pieces are arranged on a side opposite to the attracting surface of the magnet piece.
According to the coupling device according to claim 5, in addition to the function effect of the coupling device according to any one of claims 1 to 4, a magnetic circuit is configured by arranging the yoke piece, and as a result, leakage of a magnetic flux from the magnet piece decreases and attraction (repulsion) of the magnet pieces (coupling pieces) becomes efficient by a decreased amount.
The magnetic coupling device according to the invention according to claim 6 (hereinafter, appropriately referred to as the “coupling device according to claim 6”) is the coupling device according to any one of claims 1 to 5, wherein the slide guide structure is further configured to slidingly guide the coupling piece main bodies in directions away from each other when being pressed to release magnetic joint of the coupling piece main bodies or assist the release.
According to the coupling device according to claim 6, in addition to the function effect of the coupling device according to any one of claims 1 to 5, release of the connection of the one coupling piece main body from the other coupling piece main body may be easily performed by the release or assistance of the release of the slide guide structure. That is to say, the farther it is, the more the magnetic force is attenuated, so that while it is in a sliding state, the connection may be released with smaller force as a distance between the one coupling piece and the other coupling piece (space deposition formed therebetween) increases.
The magnetic coupling device according to the invention according to claim 7 (hereinafter, appropriately referred to as the “coupling device according to claim 7”) is the coupling device according to any one of claims 1 to 6, wherein each of the coupling piece main bodies is such that an open end of one coupling piece main body is projected from a close end of the other coupling piece main body and the open'end of the other coupling piece main body is projected from the close end of the one coupling piece main body in a slide direction in a state of attracting to join each other, and is configured to release the magnetic joint of the coupling piece main bodies or to assist the release when the open end of the one coupling piece main body and the open end of the other coupling piece main body are pressed in directions to be brought closer to each other.
According to the coupling piece according to claim 7, in addition to the function effect of the coupling device according to any one of claims 1 to 6, since the open end of each is projected from the close end, the finger is put on the portion, but the finger is not put on the close end. That is to say, the force to press them in the directions to bring them closer to each other is applied only to the open end and is not applied to the close end. The pressing forces are applied in the directions to bring them closer to each other, that is to say, in opposite directions, so that they may be applied by one hand and it is not necessary to use the other hand. If the force is applied to the other close end simultaneously with the one open end, it is not possible to move both of them in the opposite directions, so that the above-described release of the connection is not realized.
The coupling device according to claim 8 is the coupling device according to claim 6, wherein each of the open ends is composed of an extended open end formed of a projected piece projected from each of the coupling piece main bodies.
According to the coupling device according to claim 8, in addition to the function effect of the coupling device according to claim 6, the open end is projected than the other close end by a projected amount of the extended open end, and the pressing force applied through the extended open end is in the directions in which the coupling piece main bodies are brought closer to each other, that is to say, in the opposite directions, so that the connection may be released by one hand.
The coupling device according to claim 9 is the coupling device according to claim 8, wherein the one projected piece and the other projected piece are arranged such that a direction of a virtual straight line passing through both of them intersects the slide direction.
According to the coupling device according to claim 9, in addition to the function effect of the coupling device according to claim 8, since the direction of the virtual straight line intersects the slide direction, when it is tried to bring the one projected piece and the other projected piece closer to each other, the fingers put on them are moved in the direction different from the slide direction. When the fingers are moved in the same direction as the slide direction, the coupling pieces slide with respect to each other, and although depending on the size and the shape of the coupling device, there is a case in which the coupling piece, which slides, hits, against the finger to obstruct the release operation. Therefore, by moving the fingers in the direction different from the slide direction, it is configured that the coupling piece does not easily hit against the finger, thereby making the release operation easy.
The magnetic coupling device according to the invention according to claim 10 (hereinafter, appropriately referred to as the “coupling device according to claim 10”) is the coupling device according to any one of claims 1 to 8, wherein the string body is a necklace.
According to the coupling device according to claim 10, the function effect of the coupling device according to any one of claims 1 to 9 preferably acts on the necklace. Although depending on a length, the connection of the necklace and the release thereof are often performed out of eyeshot of the user (for example, just below a chin or behind a neck), so that advantage of the release of the connection with one hand is large. It goes without saying that application of the present invention is not limited only to the necklace but the string body includes other than the necklace such as the bracelet and the waist belt.
In order to enable the slide of one of the coupling pieces attracting each other with respect to the other with the fingers of only one hand so as to separate the one from the other, such slide is allowed and easy separation in the pulling direction may be prevented.
a) is a planar view of one coupling piece, which composes the coupling device illustrated in
a) is a planar view of a reverse side of the other coupling piece, which composes the coupling device illustrated in
a) is a planar view of the coupling device illustrated in
a) is a planar view of one coupling piece, which composes the coupling device illustrated in
a) to 19(e) are front views of examples in which the number and a shape of slide projected pieces and slide grooves of the coupling device illustrated in
a) and 21(b) are exploded perspective views of the coupling device illustrated in
The examples and drawings provided in the detailed description are merely examples, which should not be used to limit the scope of the claims in any claim construction or interpretation.
An embodiment for carrying out the present invention (hereinafter, referred to as “this embodiment”) is described with reference to the drawings. A magnetic coupling device (hereinafter, simply referred to as a “coupling device”) according to this embodiment is applied to a necklace as illustrated in
As illustrated in
As illustrated in
The joint surface 15 is formed so as to be substantially planar and is capable of sliding with respect to the joint surface 15′, which joins the same. On the joint surface 15, a plurality of (herein two, and may also be at least one) embedded holes 25 arranged in a longitudinal direction are formed. Each of the embedded holes 25 is formed into a substantially circular shape of which two opposed portions are linear, and fixing claws 27 and 27 are formed on two portions of a peripheral edge thereof. The embedded hole 25 is a hole in which the magnet piece 31 and a yoke 33 are embedded to be adhered with an adhesive, and this is formed into the above-described shape so as to prevent the magnet piece 31 from rotating in a direction parallel to the joint surface 15 with respect to the coupling piece 11. The fixing claws 27 and 27 are formed by cutting column shapes from a peripheral wall of the embedded hole 25 with only lower ends left, and they are bent inward to serve to hold the magnet piece 31 in the coupling piece 11 within the embedded hole 25 and fix the same, thereby preventing the rotation thereof. That is to say, it is configured that the magnet piece 31 is fixed by a shape of the embedded hole 25 and by the fixing claws 27 and the rotation thereof is prevented. Meanwhile, the embedded magnet pieces 31 and 31′ have substantially circular shapes and it is required that they are provided with the polarity and magnetic force such that the joint surface 15 (coupling piece 11) and the joint surface 15 (coupling piece 11′) attract to join each other by attraction of the magnet pieces 31 and 31′. Further, it is also required that embeddedness does not prevent slide of the joint surface 15 with respect to the joint surface 15′. Meanwhile, the above-described yoke 33 is used to inhibit leakage of a magnetic flux from the magnet piece 31.
The polarity of the magnet piece is described with reference to
The attaching piece 23 is formed into a flat O-shape obtained by flattening an alphabet “O” integrally formed with the supporting piece 22 on one short side of the coupling piece 11, which is rectangular (another member may be fixed). The attaching piece 23 is a part to which the string body 3 (refer to
As illustrated in
A slide groove 45 is a part of the slide guide structure 41 and forms a pair with the slide projected piece 43. The slide groove 45 is an elongated groove including a retreated wall 45c retreated from the joint surface 15 and extending in a direction along the short side on a side of the attaching piece 23 of the joint surface 15, that is to say, in the slide direction. The slide grooves 45 and 45′ are formed into shapes capable of receiving the slide projected pieces 43′ and 43, respectively, so as to be slidable in the slide direction. One projected wall 43a and the other retreated wall 45′c, and the other projected wall 43′a and one retreated wall 45c thus configured are brought into slide contact with each other in the slide direction and prevent the relative movement in the string body pulling direction.
On the other hand, a groove bottom 45a (refer to
In the slide in the direction parallel to the joint surface 15, by lateral slide of the attracting surfaces of the magnet pieces 31 and 31′ attracting each other, they are not subjected to a magnetic force effect, and according to this, the joint is released or the release is assisted. On the other hand, by sliding to separate the magnet pieces 31 and 31′, since the magnetic force acting therebetween is attenuated in inversely proportional to the square of a distance, it is possible to attenuate the magnetic force at once. Therefore, efficiency of the release of the connection is extremely excellent as compared to the above-described lateral slide in which the magnetic force is attenuated in proportion to decrease in opposed areas of the magnet pieces. Therefore, it is possible to easily release or assist the release. By simultaneously performing the lateral slide and the slide to separate, the release or assistance of the release becomes drastically easier.
The slide guide structure 41 also has a function to prevent relative movement of each of the coupling pieces 11 and 11′ in the pulling direction of the string body 3 (direction indicated by an arrow P1, refer to
As illustrated in
The above-described projection of the open ends 19 and 19′ means that a finger of a user is put only thereon and is not put on the close ends 21 and 21′. A thumb 100 and an index finger 102 indicated by a two-dotted line in
A first modified example of this embodiment is described with reference to
That is to say, a coupling piece 52 according to the coupling device 51 is provided with a coupling piece main body 53 and an attaching piece 54 and the coupling piece main body 53 is provided with a joint surface 55 (refer to
Reference signs 59 and 59′ in
A shape of the extended open end 59 may be composed of a projected piece projected from the coupling piece main body 53, for example. As illustrated in
A second modified example of this embodiment is described with reference to
A slide guide structure 66A of the coupling device 51A is composed of a slide projected piece 67A (slide projected piece 67A′) and a slide groove 68A′ (slide groove 68A). The slide projected piece 67A is formed into a triangular shape in cross section, which inclines upward from one end in the pulling direction inward and vertically drops from an apex (refer to
Further, it is also possible to freely change the number and a shape thereof as indicated by reference signs 91a to 91e in
A third modified example of this embodiment is described with reference to
Concave portions 67Bp and 68Bp being in egg-shapes, in a planar view are formed on a slide projected piece 67B and a slide groove 68B, which composes a slide guide structure 66B. As illustrated in
While the principles of the invention have been described herein, it is to be understood by those skilled in the art that this description is made only by way of example and not as a limitation as to the scope of the invention. Other embodiments are contemplated within the scope of the present invention in addition to the exemplary embodiments shown and described herein. Modifications and substitutions by one of ordinary skill in the art are considered to be within the scope Of the present invention, which is not to be limited except by the following claims.
Number | Date | Country | Kind |
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2010-185653 | Aug 2010 | JP | national |
2010-253830 | Nov 2010 | JP | national |