This application relates to hole punchers. More particularly, the present invention relates to a compact, flat design punch with improved construction for punching a desired shape into sheet material.
A common scrapbooking accessory is the manual punch for punching sheet material so that a desired shape may be punched in a sheet material.
An improvement in the field of craft punches are mold pressing devices used to speed the task of punching shapes from paper sheets. Such devices include lever punches, which typically have a pressing lever that is pivotally disposed on a seat body for pressing a mold block, or palm punches, which typically rely on a user's palm to push down in an axial direction on the block in order to create a desired shape on a sheet of paper. With either of these two types of punches, a paper or a sheet can be inserted into or positioned within the fissure of the punch, and then a pressing action is applied, either by pushing the lever with a user's thumb or hand or directly to the block with the user's palm. This causes a mold block to be forced downward, resulting in the die punching a corresponding shape on the paper or the sheet placed in the fissure.
Using these prior art devices, many products with the shape, as that of the die, can be formed with a typical user having to store each mold pressing device so that when a suitable shape is desired, the appropriate mold pressing device is located and utilized. However, a drawback to a large collection of mold pressing devices, including both lever and palm type punch devices, is their relative bulkiness, leading to a disorganized and disheveled collection of both lever and palm mold pressing devices.
The present invention looks to overcome the drawbacks associated with the prior art by providing an improved flat lever punch design.
A first aspect is a compact mold punch design in which the internal components of the punch are configured so that the lever of the punch can be positioned in a closed position that is substantially parallel to the fissure.
Another aspect is a locking assembly that, when the lever is in a closed position, the locking assembly can retain the lever in a closed locked position, allowing the punch to be stored in a convenient and efficient manner, while simultaneously allowing the user to quickly recognize and locate a desired punch within a large group of similar punches.
A further aspect is a punch that can be stored in an upright manner on a flattened nose surface so that the punch rests in a substantially vertical orientation.
Such an arrangement includes a punch for punching designs into a sheet media, where the profile of the punch is substantially flat. This reduces the size of the punch, making it easier to store. A locking assembly maintains the flat shape of the punch when the punch is not in use.
In one arrangement, the nose of the punch is flattened, so that when not in use, the punch may be punch may be stored vertically—on a work surface, for example—so that a user may easily store and identify the shapes (punched by the punch) by viewing the indicia on the housing.
In another arrangement, the punch block of the punch that presses through the punch body to form the punched shape is fashioned with three shoulders for housing three springs for connecting the punch block to the punch body in a spring biased relationship. This provides a more stable punch block arrangement and prevents the springs from getting in the way of the punch body and the lever so that the punch may retain its flat profile.
To this end, a punch for punching a sheet of material according to this disclosure includes a punch body formed with a fissure for receiving the sheet of material and a pivot coupling defining a pivot point. A lever is pivotably mounted about the pivot point of the pivot coupling so that a punch block may be positionable between the lever and the punch body. The punch block is provided with a die movable along a first axis, with the punch block having first, second, and third shoulders. These shoulders respectively engage first, second, and third resilient members, springs, compression fittings, or biasing devices with the resilient members being disposed adjacent to the die and disposed between the first, second, and third shoulders of the punch block and the punch body. When the punch block is positioned between the lever and the punch body, and when the lever is pivoted about the pivot point between an open position and a punching position, the lever engages the punch block with the axially moveable die to punch the sheet of material.
Embodiments of the disclosure can be understood through the following description and accompanying drawings, wherein:
In one embodiment of the present invention as shown in
The lower portion 20 of the punch body 10 forms the primary platform for the punch device 2, providing a substantially flat surface 21 to rest the punch device 2 on a table or the like. Referring to
The upper portion 30 of the punch body 10 also includes an upper opening 32 capable of receiving and supporting a block support element 34. The upper opening 32 and the block support element 34 are substantially aligned over the lower opening 22 and the shaped die 24, supported by the lower opening 22 of the lower portion 20 of the punch body 10. The block support element 34, which may be made of a metal material, has a shaped opening 36 and three openings 38A, 38B and 38C, each for supporting a resilient member 39 (such as a spring). A pair of structural longitudinal edges 37A and 37B run along the length of the upper portion 30 and form the side boundaries of this portion. In one embodiment, the pair of structural longitudinal edges 37A and 37B are spaced apart in this embodiment, approximately 4 centimeters.
As shown in
The other opening 38C is located at the position distal to the front surface of the upper and lower portions 30 and 20 of the punch body 10. In one arrangement, the opening 38C is substantially 150 degrees separated from both opening 38A and opening 38B.
As shown in
In one embodiment of the present invention as shown in
As shown in
As shown in
As shown in
The bottoms of the central longitudinal ridge pair 64A and 64B, at the point where they are close together, rest on flattened top 54 of punch block 50 and form the portion of lever 60, raised bump 61 that physically contacts upper surface 53 of flattened top 54 of punch block 50.
As shown in
In the closed position shown in
This application is a continuation of U.S. patent application Ser. No. 14/047,654 filed Oct. 7, 2013, now abandoned, which is a continuation of U.S. patent application Ser. No. 13/399,723 filed Feb. 17, 2012, now U.S. Pat. No. 8,549,972, which is a continuation of U.S. patent application Ser. No. 12/291,666 filed Nov. 12, 2008, now abandoned, each of which is incorporated herein by reference in its entirety.
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Number | Date | Country | |
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Number | Date | Country | |
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Parent | 14047654 | Oct 2013 | US |
Child | 15203291 | US | |
Parent | 13399723 | Feb 2012 | US |
Child | 14047654 | US | |
Parent | 12291666 | Nov 2008 | US |
Child | 13399723 | US |