Pliers Comprising a Toggle Lever Drive
20170239788 · 2017-08-24
Inventors
Cpc classification
B25B7/22
PERFORMING OPERATIONS; TRANSPORTING
B25B7/123
PERFORMING OPERATIONS; TRANSPORTING
B25B7/12
PERFORMING OPERATIONS; TRANSPORTING
B26B17/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25B7/12
PERFORMING OPERATIONS; TRANSPORTING
B25B7/22
PERFORMING OPERATIONS; TRANSPORTING
B26B17/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to pliers (1). The pliers might be embodied as crimping pliers (2), cutting pliers or pipe crimping pliers. In the pliers (1) pliers jaws (3, 4) are driven by hand levers (8, 9) via a toggle lever drive (13). The toggle lever drive (13) is not formed by toggle lever rods or toggle lever bars. Instead, imaginary toggle levers are formed by a plurality of toggle lever components (35) which are movable along contact contours (30, 37; 33, 38) relative to each other.
Claims
1. Pliers comprising a) a first pliers jaw and a second pliers jaw, said second pliers jaw comprising a first contact contour and said first pliers jaw and said second pliers jaw being supported in a first swivel joint for a relative pivoting movement, b) an actuation element being supported in a second swivel joint for a pivoting movement relative to the first pliers jaw, said actuation element comprising a second contact contour, c) a pressure body having a third contact contour and a fourth contact contour, said third contact contour contacting the first contact contour of the second pliers jaw and said fourth contact contour contacting the second contact contour of the actuation element, d) wherein the second pliers jaw, the pressure body and the actuation element are movable relative to each other along the contact contours, e) wherein the second pliers jaw, the pressure body and the actuation element form a toggle lever drive by which the second pliers jaw is actuated, and f) wherein the second pliers jaw, the pressure body and the actuation element each form a toggle lever component of a first toggle lever of the toggle lever drive wherein the length of the first toggle lever depends on the relative position of the second pliers jaw, the pressure body and the actuation element.
2. The pliers of claim 1, wherein a) the actuation element comprises a movable hand lever, b) the pliers comprise a fixed hand lever, and c) a protrusion of the actuation element forms the second contact contour.
3. The pliers of claim 1, wherein the toggle lever component of the first toggle lever formed by the actuation element also forms a second toggle lever and wherein an imaginary toggle joint corresponds to the center of curvature of the second contact contour of the actuation element at its contact surface with the fourth contact contour of the pressure body.
4. The pliers of claim 1, wherein at least one contact contour of the toggle lever components is produced by punching.
5. The pliers of claim 1, wherein the contact contours have the shape of a circular arc.
6. The pliers of claim 2, wherein a) a pliers body comprises the first pliers jaw and the fixed hand lever and b) the second pliers jaw is pivotably linked to the pliers body by the first swivel joint which is located in the region of the fixed hand lever.
7. The pliers of claim 2, wherein the pressure body biases an opening spring.
8. The pliers of claim 7, wherein the opening spring is a leaf spring or bending spring which extends approximately parallel one of the hand levers.
9. The pliers of claim 1, wherein one of the toggle lever components integrally forms an opening spring.
10. The pliers of claim 2, wherein a) one of the toggle lever components is rigidly connected to the movable hand lever and/or b) one of the toggle lever components is rigidly or rotatably connected to the fixed hand lever.
11. The pliers of claim 1, wherein a pliers body forming the movable hand lever integrally comprises a) the second toggle lever of the toggle lever drive, b) a toothing of a forced locking unit, c) a stop for defining a closed position of the pliers and/or d) a contact contour.
12. The pliers of claim 2, wherein the toggle lever drive is arranged between the hand levers and dies, said dies being associated to the pliers jaws.
13. The pliers of claim 1, wherein a) the angle of the pliers jaws changes over the working stroke by less than 5°, b) the length of the pliers is less than 250 mm, c) the height of the pliers is less than 60 mm and/or d) the thickness of the pliers is less than 15 mm.
14. The pliers of claim 1 embodied as pipe crimping pliers, crimping pliers or cutting pliers.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In the following, the invention is further explained and described with respect to preferred exemplary embodiments illustrated in the drawings.
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
DETAILED DESCRIPTION
[0035]
[0036] The pliers 1 comprise a fixed hand lever 8 fixedly connected to a fixed pliers jaw 3 as well as a movable hand lever 9 connected by a driving connection to a movable pliers jaw 4. The hand lever 9 forms an actuation element 70. If the pliers 1 are (differing from the shown embodiment) not manually actuated, a corresponding actuation element is actuated by the pneumatic, hydraulic or electric drive. In this case, instead of the fixed hand lever 8 a supporting element mounted to the housing of the drive might be used.
[0037] The hand levers 8, 9 comprise handles 10, 11 made of plastic. The pliers 1 comprise a pliers head 12. The dies 5, 6 and a driving mechanism including a toggle lever drive 13 are arranged in the region of the pliers head 12. The pliers 1 also comprise an actuation part 14. The hand levers 8, 9 are arranged in the region of the actuation part 14. The pliers head 12 and the actuation part 14 follow up to each other when seen along a longitudinal axis of the pliers 1.
[0038] The fixed pliers jaw 3 and the fixed hand lever 8 are formed by a pliers body 15. The pliers body 15 comprises two cover plates 16a, 16b extending parallel to each other under the build-up of an intermediate space. The driving mechanism and the toggle lever drive 13 are arranged in the intermediate space. In a corresponding way the pliers jaw 4 is formed with two pliers jaw plates 17a, 17b. The die 6 extends in an intermediate space between the pliers jaw plates 17a, 17b.
[0039]
[0040] The toggle lever component 28 on the one hand serves for stiffening the pliers body 29 against the large forces being present. Furthermore, the toggle lever component 28 forms a (first) contact contour 30. Here, the contact contour 30 has the shape of a circular arc and the contact contour 30 is arranged concentrically to the mounting bore 27.
[0041] The pliers body 21 pivoted about the swivel joint 20 on the one hand forms a hand lever plate 31. The pliers body 29 is cranked comprising a protrusion 32 which is cranked relative to the hand lever plate 31. The longitudinal axis of the protrusion 32 forms a reflex angle or an angle of more than 90° relative to the longitudinal axis of the hand lever plate 31. The swivel joint 20 is located in the region of the cranking of the pliers body 29. The end region of the protrusion 32 facing away from the swivel joint 20 forms a (second) contact contour 33. Here, also the contact contour 33 is formed with the shape of a circular arc. The radius of this contact contour 33 is preferably larger than the radius of the contact contour 30. However, the center of curvature 34 of the contact contour 33 is not arranged in the region of the pivot axis of the swivel joint 20 but arranged between the pivot axis of the swivel joint 20 and the contact contour 33.
[0042] A toggle lever component 35 is effective between the protrusion 32 of the pliers body 21 and the toggle lever component 28. The toggle lever component 35 forms a pressure body 36 (cp. also
[0043] In a circumferential region around the swivel joint 20 the pliers body 21 forms a toothing 39. A spring-biased latching element 40 of a forced locking unit 41 engages with the toothing 39. By means of the forced locking unit 41, in a generally known fashion it is provided that an intermediate position once reached during the working stroke is secured and a reopening of the pliers is only possible if the whole working stroke has been passed.
[0044] Adjacent to the bearing bore 22 the cover plates 16 comprise a mounting bore 42. An opening spring 43 (here a leaf spring of bending spring 44 (cp.
[0045] The cover plates 16 and the pliers jaw plates 17 have a thickness of e.g. 3 mm. The distance of the cover plates 16 and the pliers jaw plates 17 is 6 mm. In the intermediate space defined in this way the dies 5, 6 (having a thickness of 6 mm) extend. The toggle lever component 28, the toggle lever component 35, the leaf spring or bending spring 44 and the pliers body 21 are arranged in the same pliers plane and comprise the same thicknesses, namely a thickness of 2 mm. On both sides from these planes the pliers jaw supporting plates 24 extend. The pliers jaw supporting plates 24 each have a thickness of 2 mm.
[0046] The mode of operation of the pliers 1 of
[0047] If the pliers 1 are in the open position of
[0048]
[0049]
[0050]
[0054] Instead, the toggle lever 39 is formed by the material of the protrusion 32 between the center of curvature 34 and the swivel axis 46.
[0055] For the embodiment of
[0056] As another option, another opening spring 54 is provided. The opening spring 54 is formed integrally by the toggle lever component 35 as a spring arm 55. When running through the working stroke and with the pivoting movement of the toggle lever component 35, the spring arm 55 abuts a stop (here not shown). With the further closing movement the spring arm 55 is elastically deformed. It is possible that the opening spring 34 is biased during the whole working stroke, whereas the opening spring 54 is only biased in the end region of the closing movement when approaching the closed position or the extended position of the toggle lever drive 13 and only serves for avoiding a clamping or blockage of the toggle lever drive 13 when reaching the closed position.
[0057] Furthermore, for the embodiment of
[0058] For the embodiment of
[0059] For the embodiment of
[0060]
[0061] Also according to
[0062]
[0063] Whereas
[0064]
[0065] It is possible that the pliers body 21 forms a stop 68 by which the closed position is defined. It is e.g. possible that in the closed position according to
[0066] Preferably, the pliers have a plate design with no bending form parts or milled parts. Instead, only punching parts are used. By the inventive design, in some cases it is also possible to reduce or minimize the number of punched parts. The punched parts required for the drive mechanic, in particular the toggle lever drive and the plates, are here preferably all located in one plane. Due to the comparatively large diameter of the contact contours, small surface pressures result in the contact areas despite of the large transferred forces. Accordingly, in some cases also thin plates (in particular with a thickness of less than 3.0 mm, 2.5 mm or even 2.0 mm) can be used for the force transfer.
[0067] The inventive toggle lever drive and further aspects of the invention can be used for pliers of any design. Accordingly, it is also possible to integrate the inventive measures into pliers according to the prior art mentioned in the beginning. In order to mention only some non-limiting examples, instead of the toggle lever drive of [0068] crimping pliers according to DE 100 56 900 C1 with an O-shaped pliers head frame and dies moved by a translational relative movement, [0069] cable cutting pliers according to DE 43 03 180 C1, [0070] pipe crimping pliers according to DE 103 46 241 B3 wherein a ratchet transmission is integrated into one hand lever so that a closure of the pliers jaws can be achieved by a plurality of closing strokes of the hand levers, [0071] crimping pliers with C-shaped pliers head frames, [0072] pipe crimping pliers with a hand lever comprising two hand lever parts which can be brought into two different angular positions, [0073] a spreading tool according to DE 10 2008 007 303 B4 or [0074] a crimping tool corresponding to DE 10 2008 012 011 B3 or EP 2 672 581 A1 or [0075] crimping pliers for crimping wire end sleeves with more than two dies which are actuated in radial direction and which are actuated by a pivot ring driven by the toggle lever drive
[0076] an inventive toggle lever drive 13 might be used.
[0077] It will be understood from the above specification that the toggle lever drive 13, the toggle levers 47, 49 and the toggle joint 48 do not build a common toggle lever drive, common toggle levers and a common toggle joint where the toggle levers are physically present real rod-like levers and the toggle joint is a physically present rotational joint of any type. Instead, the toggle lever drive 13 is an “imaginary” toggle lever drive with at least one toggle lever formed by a plurality of toggle lever components which can be moved relative to each other along contact contours. Furthermore, the “imaginary” toggle lever drive 13 comprises an “imaginary” toggle joint which results from the kinematic conditions (in particular the linkage of the toggle lever components to adjacent components as a crimping jaw or a hand lever and from the curvature of the contact contours) and which might be located within the body of one of the toggle lever components. An advantage of this design is that it is possible that the length of the toggle lever (and the position of the toggle joint) changes dependent on the toggle angle. For each single toggle angle (for an analogy observation) the kinematic, the force transfer and the transfer of the movements of the inventive pliers might also be provided by a real physical toggle lever drive with real toggle levers and a real toggle joint. However, in this case for any differing toggle angle it will be required to use at least one toggle lever having a differing length (which in praxis is not possible for real, physically present rod-like toggle levers but possible for the invention).
[0078] Many variations and modifications may be made to the preferred embodiments of the invention without departing substantially from the spirit and principles of the invention. All such modifications and variations are intended to be included herein within the scope of the present invention, as defined by the following claims.