Ergonomic plier
11685022 · 2023-06-27
Assignee
Inventors
Cpc classification
B25B13/481
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25B7/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention relates to an ergonomic plier tool. More specifically, the invention relates to a piston actuated ergonomic plier tool having a 360-degree rotative and exchangeable head. The tool includes a body, lever, head cylinder, piston and jaw assembly. The disclosed tool allows an operator to work in tight spaces with her hand in one plane, while cutting/manipulating an object in an infinite number of planes different from that of her hand.
Claims
1. A tool, comprising: a body defining a cavity and including a handle portion; a lever hingedly fixed to the body and including a piston engaging portion and a trigger portion, wherein the piston engaging portion is disposed within the cavity, and wherein the lever is movable between a first position wherein the trigger portion is distal from the handle portion and the piston engaging portion is proximal to the handle portion, and a second position wherein the trigger portion is proximal to the handle portion and the piston engaging portion is distal to the handle portion; a head cylinder at least partially disposed within the cavity having a body engaging portion and a jaw receiving portion, wherein the body engaging portion further defines a piston cavity that opens into the jaw receiving portion; a piston disposed within the piston cavity and including a lever engaging portion and a jaw engaging portion, and wherein said piston is movable between a retracted position, wherein the piston does not extend into the jaw receiving portion, and an advanced position, wherein the piston extends into the jaw receiving portion; a jaw assembly disposed in the jaw receiving portion and comprising a first jaw and second jaw rotatable coupled to one another at a fulcrum, and wherein each of the first and second jaws include a working portion and a piston engaging portion, and wherein the jaw assembly is movable between an open position, wherein the respective working portions are spaced apart from one another and the piston engaging portions are adjacent one another, and a closed position, wherein the respective working portions are adjacent one another and the piston engaging portions are spaced apart; and characterised in that the head cylinder is freely rotatable within the cavity and further characterised in that the piston engaging portion of the lever is in communication with the lever engaging portion of the piston, and the jaw engaging portion of the piston is in communication with the piston engaging portions of the jaws, such that when the lever is moved from the lever's first position to the lever's second position, the piston is moved from the piston's retracted position to the piston's advanced position, and the jaw assembly is moved from the jaw assembly's open position to the law assembly's closed position.
2. The lever is moved from its first position distal from the hand port.
3. The tool according to claim 1, wherein the jaw assembly further includes a jaw spring configured to bias the jaw assembly toward the jaw's open position.
4. A tool according to claim 3, further comprising a grub screw configured to limit the axial movement of the piston toward its first position by engaging both the body and a piston groove in the lever engaging portion of the piston.
5. The tool of claim 1, wherein the head cylinder and jaw assembly are configured to be removable and replaceable.
6. A tool according to claim 4, further comprising a locking axle configured to secure the head cylinder to the body by engaging both the body and an axle groove formed on the body engaging portion of the head cylinder.
7. The tool of claim 5, wherein the axle groove is circumferential about the body engaging portion of the head cylinder.
8. A tool according to claim 1, wherein the working portions are cutting edges.
9. A tool according to claim 1, wherein the working portions are pliers.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Features of the tool in accordance with one or more embodiments are shown in the drawings, in which like reference numerals designate like elements. The drawings form part of this original disclosure in which:
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DETAILED DESCRIPTION OF THE ILLUSTRATED EMBODIMENT(S)
(9)
(10) As shown in
(11) Lever 18 is hingedly secured to the body 12 such that the piston engaging portion 20 is disposed within the cavity 14. Lever 18 is free to move about pivot axis 58 between a first and second position. In the first position the trigger portion 22 of the lever 18 is distal from the handle portion 16 of the body 12, and the piston engaging portion 20 of the lever 18 is proximal to the handle portion 16 of the body 12. In the second position, the trigger portion 22 of the lever 18 is proximal to the handle portion 16 of the body and the piston engaging portion 20 of the lever 18 is distal to the handle portion 16 of the body 12.
(12) The head cylinder 24 of the tool 10 includes a body engaging portion 26 and a jaw receiving portion 28. As best seen in
(13) The body engaging portion 26 of the head cylinder 24 is also configured to be disposed within the cavity 14 of the body. An axle lock 50 may secure the body engaging portion within the cavity 14. In a preferred embodiment, axle lock 50 is disposed in an axle cavity 76 defined by the body 12. Axle cavity 76 is oriented along Axis C, which, similar to Axis B, is fixed in the same plane as Axis A but substantially perpendicular thereto. Additionally, axle cavity 76 is positioned such that when axle lock 50 is disposed therein, at least a portion of the axle lock 50 extends into the cavity 14. In operation, the axle lock 50 secures the head cylinder 24 to the body 12, by engaging an axle groove 52 in the body engaging portion 26 of the head cylinder 24. Preferably, the axle groove 52 is circumferential about the body engaging portion 26. The engagement of the axle lock 50 to the axle groove 52, secures the head cylinder 24 to the body 12 by limiting axial movement of the head cylinder along Axis A. At the same time, the engagement, between the axle lock 50 and the axle groove 52, permits the free rotation of the head cylinder 24 about Axis A.
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(15) Piston 32 is also configured to move along Axis A between a retracted position and an advanced position. In the retracted position, piston 32 (and more specifically surface 70) does not extend into the jaw receiving portion 28 of the head cylinder 24. In the advanced position, piston 32 (and more specifically, surface 70) extends into the jaw receiving portion 28 of the head cylinder.
(16) In a preferred embodiment, the tool may also include a piston spring 48 that is disposed about the jaw engaging portion 36 of the piston 32. As best seen in
(17) Tool 10 also includes a jaw assembly 38 disposed in the jaw receiving portion 28 of the head cylinder 24. The jaw assembly 38 preferably includes a first jaw 40 and a second jaw 42 coupled together at a fulcrum 44. Each of the first and second jaws include a working portion 40a, 42a and a piston engaging portion 40b, 42b. Jaws 40, 42, which may be mirror images of one another, are configured to operate by rotating around the fulcrum 44. In operation, fulcrum 44 may be a jaw pivot axle which not only facilitates the rotational movement of the jaws, it also secures the jaws to the head cylinder 24.
(18) In a preferred embodiment, each of the tines 64, 66 of the head cylinder 24 define jaw stirrups 72. Similarly, each of the jaws 40, 42 also define a jaw cavity 74. The jaws are secured within the head cylinder 24 by disposing the fulcrum (or jaw axle pivot) 44 through both the jaw stirrups 72 and the jaw cavities 74.
(19) The jaws 40, 42 of the jaw assembly 38 are configured to rotate about the fulcrum 44, such that the opposing working portions 40a, 42a come together as the jaw engaging portions 40b, 42b are moved away from one another. This is considered to be the closed position of the jaw assembly. Conversely, the jaw assembly is in the open position when the working portions 40a, 42a are spaced apart and the jaw engaging portions 40b, 42b are adjacent one another.
(20) The jaw assembly 38 may further include a jaw spring 46 that is configured to bias the jaw assembly in its open position. In a preferable embodiment, the jaw spring 46 may be a circular spring having first and second tines 46a, 46b. These tines 46a, 46b are configured to be disposed in spring grooves 40c, 42c of jaws 40, 42. Spring grooves 40c, 42c are positioned such that when tines 46a, 46b are in position, the piston engaging portions 40b, 42b of jaws 40, 42 are biased together, which in turn biases the working portions 40a, 40b away from each other. As explained above, this is defined as the open position of the jaw assembly.
(21) The functionality of the tool will now be discussed. The piston engaging portion 20 of the lever 18 is in communication with the lever engaging portion 34 of the piston 32 such that when the lever 18 is moved from its first position to its second position, the piston 32 moves from its retracted position to its advanced position. The jaw engaging portion 36 of the piston 32 is in selective communication with the piston engaging portions 40b, 42b of the jaws 40, 42. When the piston 32 is in its retracted position, the jaw engaging portion 36 and the piston engaging portions 40b, 42b are not in communication and the jaw assembly 38 is in the its open position. Conversely, when the piston 32 is in its advanced position, the jaw engaging portion 36 is in communication with the jaw engaging portions 40b, 42b and the jaw assembly 38 is moved to its closed position.
INDUSTRIAL APPLICABILITY
(22) The tool of the present disclosure provides the advantage of providing a user the comfort of a trigger type activation, and the versatility of being able to work in tight spaces through an infinite number of planes. In operation, the handle portion of the body is configured to rest comfortably in the palm of the hand. The trigger portion of the lever is configured to be engaged by the tips of one or more fingers. Thus, by using a natural squeezing or “gun-like” trigger action, a user can selectively operate the tool as needed. Ergonomically, this action is more comfortable for a user.
(23) In addition to the ergonomic comfort, the present tool also has the advantage of being able to operate in tight spaces through an infinite number for planes. This is achieved through the free rotation of the head cylinder 24. It is not uncommon for a user to need to cut or manipulate an object that is in a plane different from that of the hand. If this is the case, the user can simply rotate the head cylinder 24 (and jaw assembly 38) to the desired plane while keeping the hand in its original plane. A simple squeeze of the trigger action lever will allow the user to cut or manipulate the object in this different plane as desired.
(24) The presently disclosed tool is also versatile in its applicability. Although the figures depict a tool with jaw working portions 40a, 42a as being cutting edges for snips, the working portions could also be opposing tines of pliers, forceps, needle nose, scissors or any other tool that operates with a first arm and second arm coupled together at a fixed fulcrum.
(25) Although aspects of the invention have been described in detail for the purpose of illustration based on what is currently considered to be the most practical and preferred embodiments, it is to be understood that such detail is solely for that purpose and that the invention is not limited to the disclosed embodiments, but, on the contrary, is intended to cover modifications and equivalent arrangements that are within the spirit and scope of the appended claims. For example, it is to be understood that the present invention contemplates that, to the extent possible, one or more features of any embodiment can be combined with one or more features of any other embodiment.