Locking ring metal
09815315 · 2017-11-14
Assignee
Inventors
Cpc classification
B42F13/36
PERFORMING OPERATIONS; TRANSPORTING
International classification
B42F3/02
PERFORMING OPERATIONS; TRANSPORTING
B42F13/00
PERFORMING OPERATIONS; TRANSPORTING
B42F13/02
PERFORMING OPERATIONS; TRANSPORTING
B42F13/26
PERFORMING OPERATIONS; TRANSPORTING
B42F13/36
PERFORMING OPERATIONS; TRANSPORTING
B42F13/20
PERFORMING OPERATIONS; TRANSPORTING
B42F3/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A locking ring metal includes binder rings each formed by a pair of complementary shaped binder ring halves. The binder rings are of a gap free construction. Each ring half has an end attached a frame. The frames are movable relative to each other to open and close the binder rings and are installed in a housing at one end of which a trigger is mounted. A travel bar installed within the housing above the frames and not connected to the trigger includes blocking elements which fit into respective brackets formed on the underside of the frames when the binder rings are closed to lock the binder rings in their closed position. A coil spring attached to the travel bar and the housing biases the travel bar in the direction to open the binder rings.
Claims
1. A locking ring metal for a loose leaf binder comprising: at least one binder ring formed by a pair of complementary shaped binder ring halves; a pair of frames, one end of each ring half being attached to a respective one of the frames, the frames being movable relative to each other to move the other ends of the ring halves out of and into contact with each other so as to open and close the at least one binder ring; a bracket formed on an underside of the frames; a housing in which the frames are installed; a trigger mounted on one end of the housing for moving the frames to open and close the binder ring; a travel bar positioned within the housing above the frames, the travel bar contacting the trigger but not connected to the trigger or any other element intermediate the travel bar and the trigger and with no portion of the travel bar being received into any portion of the trigger, the travel bar adapted to move between a first position in which the at least one binder ring is opened and a second position in which the at least one binder ring is closed, the travel bar including a blocking element configured to fit into the bracket when the binder ring is closed and, when in its closed position, prevents movement of the frames in a direction to open the at least one binder ring so as to lock the at least one binder ring in its closed position; and, a compression spring directly attached to the travel bar, said spring adapted to bias the travel bar only to said first position that allows the frames to move relative to each other so as to open the at least one binder ring for said spring to bias the travel bar to open the ring metal.
2. The locking ring metal of claim 1 in which movement of the trigger to open the binder ring brings the trigger into contact with the travel bar with continued movement of the trigger to open the binder ring moving the travel bar to a position in which the blocking element is withdrawn from the bracket and no longer prevents movement of the frames, for the frames to then move in the direction to open the at least one binder ring.
3. The locking ring metal of claim 2 in which the frames extend longitudinally of the housing in a side-by-side arrangement and, when the ring metal is closed, the blocking element fits into the bracket to prevent movement of the frames in a direction to open the at least one binder ring.
4. The locking ring metal of claim 3 in which corresponding sections of an opening are formed in each frame with the blocking element spaced from the opening when the at least one binder ring is closed, movement of the travel bar by the trigger to open the at least one binder ring withdrawing the blocking element from the bracket and into the opening thereby allowing the frames to move to open the at least one binder ring.
5. The locking ring metal of claim 1 including a plurality of spaced binder rings each formed by complementary binder ring halves one end of each of which is attached to one of the frames for movement of a lever to effect opening of all the binder rings.
6. The locking ring metal of claim 5 in which an outer end of one of the ring halves of each binder ring has a post formed on it and the outer end of the other ring half has a socket formed in it in which the post fits when the binder ring is closed, thereby to form a gap free binder ring construction.
7. The locking ring metal of claim 6 in which the travel bar has a plurality of blocking elements located along a length of the travel bar and fitting into a corresponding bracket formed on an underside of the frames so as to prevent movement of the frames when the binder rings are closed.
8. The locking ring metal of claim 7 in which the blocking elements are located adjacent a location of the respective binder rings when the binder rings are closed.
9. The locking ring metal of claim 8 in which corresponding sections of openings are formed in each frame with each blocking element spaced from one end of one of the openings when the binder ring is closed, movement of the travel bar by the trigger to open the binder rings withdrawing each blocking element from its corresponding bracket and into a corresponding opening so as to allow the frames to move to open the binder rings.
10. The locking ring metal of claim 9 in which each blocking element and its corresponding bracket are L-shaped.
11. The locking ring metal of claim 4 in which the trigger includes a projection which extends over one end of the frames and a tongue which extends beneath said end of the frames, the tongue bearing against an underside of the frames, at one end thereof, to facilitate opening the at least one binder ring, and the projection bearing against a top of the frames to facilitate closing the at least one binder ring.
12. A locking ring metal for a loose leaf binder comprising: a plurality of binder rings spaced along a length of the ring metal, each ring being formed by a pair of complementary shaped binder ring halves; a pair of frames, one end of each ring half being attached to a respective one of the frames, the frames being movable relative to each other to move the other ends of the ring halves out of and into contact with each other so as to open and close the binder rings; a housing in which the frames are installed; a trigger mounted on one end of the housing for moving the frames to open and close the binder rings; a travel bar positioned within the housing above the frames, the travel bar contacting the trigger but not connected to the trigger or any other element intermediate the travel bar and the trigger and with no portion of the travel bar being received into any portion of the trigger, the travel bar adapted to move between a first position in which the binder rings are opened and a second position in which the binder rings are closed; co-operating means formed on the travel bar and the frames and configured to prevent movement of the frames, when the binder rings are closed, to open the binder rings; and, a compression spring one end of which is directly attached to the travel bar and the other end of which is attached to the housing, said spring adapted to bias the travel bar only to said first position that allows the frames to move relative to each other so as to open the binder rings for said spring to bias the travel bar to open the ring metal.
13. The locking ring metal of claim 12 in which the co-operating means includes brackets formed on an underside of the frames at a location of each binder ring, and the travel bar includes a plurality of blocking elements each of which fits into a respective one of the brackets when the binder rings are closed.
14. The locking ring metal of claim 12 in which an outer end of one of the ring halves of each binder ring has a post formed on it and the outer end of the other ring half has a socket formed in it in which the post fits when the binder ring is closed, thereby to form a gap free binder ring construction.
15. The locking ring metal of claim 13 in which corresponding openings are formed in each frame with each blocking element spaced from one end of one of the openings when the binder ring is closed, movement of the travel bar by the trigger to open the binder rings withdrawing each blocking element from its corresponding bracket and into its corresponding opening so as to allow the frames to move to open the binder rings.
16. The locking ring metal of claim 15 in which the trigger includes a projection extending over one end of the frames when the ring metal is closed and a tongue which extends beneath said end of the frames, movement of the trigger when the ring metal is to be opened bringing the tongue into contact with an underside of the frames for continued movement of the trigger to move the frames in a direction to open the binder rings; and, when the ring metal is to be closed, movement of the trigger bringing the projection into contact with an upper surface of the frames for continued movement of the trigger to move the frames in an opposite direction to close the binder rings.
17. A locking ring metal for a loose leaf binder comprising: a plurality of binder rings spaced along a length of the ring metal, each ring being formed by a pair of complementary shaped binder ring halves; a pair of frames, one end of each ring half being attached to a respective one of the frames, the frames being movable relative to each other to move the other ends of the ring halves out of and into contact with each other so as to open and close the binder rings; a housing in which the frames are installed; a trigger mounted on one end of the housing for moving the frames to open and close the binder rings; a travel bar positioned within the housing above the frames, the travel bar contacting the trigger but not connected to the trigger or any other element intermediate the travel bar and the trigger and with no portion of the travel bar being received into any portion of the trigger, the travel bar adapted to move between a first position in which the binder rings are opened and a second position in which the binder rings are closed; co-operating means formed on the travel bar and the frames and configured to prevent movement of the frames, when the binder rings are closed, to open the binder rings; a compression spring one end of which is directly attached to the travel bar and the other end of which is attached to the housing, said spring adapted to bias the travel bar only to said first position that allows the frames to move relative to each other so as to open the binder rings for said spring to bias the travel bar to open the ring metal; and, an outer end of one of the ring halves of each binder ring having a post formed on it and the outer end of the other ring half having a socket formed in it in which the post fits when the binder ring is closed, thereby to form a gap free binder ring construction.
18. The locking ring metal of claim 17 in which the co-operating means includes a bracket formed on an underside of the frames at a location of each binder ring, and the travel bar includes a plurality of blocking elements each of which fits into a corresponding bracket when the binder rings are closed.
19. The locking ring metal of claim 18 in which corresponding openings are formed in each frame with each blocking element spaced from one end of one of the openings when the binder rings are closed, movement of the travel bar by the trigger to open the binder rings withdrawing each blocking element from its corresponding bracket and into its corresponding opening so as to allow the frames to move to open the binder rings.
20. The locking ring metal of claim 19 in which the trigger includes a projection extending over one end of the frames when the ring metal is closed and a tongue which extends beneath said end of the frames, movement of the trigger when the ring metal is to be opened bringing the tongue into contact with an underside of the frames for continued movement of the trigger to move the frames in a direction to open the binder rings; and, when the ring metal is to be closed, movement of the trigger bringing the projection into contact with an upper surface of the frames for continued movement of the trigger to move the frames in an opposite direction to close the binder rings.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) The objects of the invention are achieved as set forth in the illustrative embodiments shown in the drawings which form a part of the specification.
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(19) Corresponding reference characters indicate corresponding parts throughout the several views of the drawings.
DETAILED DESCRIPTION OF INVENTION
(20) The following detailed description illustrates the invention by way of example and not by way of limitation. This description clearly enables one skilled in the art to make and use the invention, and describes several embodiments, adaptations, variations, alternatives and uses of the invention, including what is presently believed to be the best mode of carrying out the invention. Additionally, it is to be understood that the invention is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the drawings. The invention is capable of other embodiments and of being practiced or carried out in various ways. Also, it will be understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting.
(21) Referring to the drawings, a locking ring metal of the present invention for use in a ring binder (not shown) holding hole-punched sheets of paper and the like is indicated generally 10 in
(22) Ring metal 10 includes at least one, and preferably a plurality of binder rings. As shown in the drawings, ring metal 10 includes three spaced apart rings 12, 14, and 16 each of which is comprised of two complementary curved ring segments 12a, 12b, 14a, 14b, and 16a, 16b respectively. The rings 12 and 16 are located adjacent each end of the ring metal with ring 14 located approximately midway the length thereof. Each ring segment has one end attached to a hinge plate or frame 18, 20 respectively. The frames are each a generally rectangular shaped plate and the frames extend side-by-side, parallel to each other, substantially the length of ring metal 10. When binder rings 12, 14, 16 are opened, as described herein, frames 18, 20 are flexed. Movement of frames 18, 20 in this regard causes the outer, mating ends of the respective rings to separate from each other and open the binder. Those skilled in the art will understand that ring metal 10 could have more or fewer rings than the rings 12, 14, 16 without departing from the scope of the invention.
(23) In one embodiment of the invention, a post 21P (see
(24) Referring to
(25) A cover, housing, or shield 22 extends the length of ring metal 10. Frames 18, 20 are installed within cover 22 and the cover has spaced openings 24 along each side through which the respective ring segments extend so to curve up and over the top of the housing. Shield 22 has a curved upper surface with flanks 22a, 22b that extend downwardly and inwardly from the sides of the shield. The outer edges of frames 18, 20 extend along the length of cover 20 between the upper, curved top surface of the housing and flanks 22a, 22b of the housing. Posts F located at each end of the cover extend from the underside of the cover and are used for fastening ring metal 10 to the binder spine using rivets or the like, all as is well-known in the art.
(26) Trigger mechanism 11, as previously noted, is located at one end of ring metal 10 and is rotatably secured to the ring metal housing. Referring to
(27) Trigger section 11b includes an upper horizontally extending projection 31, and a lower horizontally extending projection or tongue 32. When trigger 11 is mounted to housing 22, the ends of the frames 18, 20 at the one end of ring metal 10, are set between projection 31 and tongue 32. This is as shown in
(28) A travel bar indicated generally 34 in the drawings is installed in ring metal 10. Importantly, travel bar 34 is not connected to trigger 11, but rather overlays the frames 18, 20 with its end adjacent the trigger spatially separated from the trigger as shown in
(29) Referring to
(30) At least one, and preferably a plurality of spaced blocking elements B are formed on the underside of travel bar 34. Three blocking elements B are shown in the drawings. Each blocking element has an L shape including a base Bb which extends parallel to the travel bar and a vertical section By (see
(31) In addition to blocking elements B, a vertical plate 49 depends from the underside of the travel bar. Plate 49 is located midway along the length of travel bar 34, but spaced from opening 44 in the travel bar as shown in
(32) Referring to
(33) Now, as travel bar 34 moves toward trigger 11, when the trigger is pressed in the direction to open metal 10, the blocking elements B move with the travel bar. As the travel bar continues to move, two things happen. First, base Bb of each blocking element is drawn away from its associated bracket 50. Second, as part of this movement, the blocking elements are drawn into the cutout sections 18b, 18d, 18e of frame 18, and the corresponding cutout sections 20b, 20d, 20e of frame 20. When the base Bb of each blocking element B is completely withdrawn from its associated bracket 50, they are also fully moved into the cutout sections of frames 18, 20. I.e., the blocking elements are no longer positioned under the frames. This is shown in
(34) When the binder rings of ring metal 10 are to be closed, a user pushes trigger section 11a in the opposite direction. In doing so, projection 31 of the trigger now presses down against the upper surfaces of frames 18, 20 mechanically forcing (rotating) them in a downward direction. This action also mechanically forces travel bar 34 to move in the direction away from trigger 11, this movement being against the opening force provided by spring 48. Continued movement of the travel bar moves the base Bb of each blocking element back toward its original position in which the bases are again inserted into the space between the base of brackets 50 and the underside of frames 18, 20. This results in locking the frames in their binder ring closed position.
(35) Alternately, the user can press the separated sections of one of the rings 12, 14, 16 back together. This movement pivots frames 18, 20 back toward their original position. In doing so, the underside of the frames push downwardly against tongue 32 of trigger 11 forcing the trigger back toward its original metal ring 10 closed position. This action further forces travel bar 34 to move in the direction away from trigger 11 to close the ring metal; which force is against the opening force provided by spring 48. Continued movement of the travel bar moves the base portion of blocking elements B back toward their original positions in which they are again inserted into the space between the base of brackets 50 and the underside of frames 18, 20, locking the frames in the binder ring closed position.
(36) In view of the above, it will be seen that the several objects and advantages of the present disclosure have been achieved and other advantageous results have been obtained.