The present invention relates to a cutting mechanism, and more particularly to a cutting mechanism having a single lead screw.
A cutting mechanism is used for cutting sheet articles such as papers. In views of expanded functions and cost-effectiveness, a variety of cutting mechanisms have been developed in order to meet the diversified demand.
Take a common receipt cutting mechanism having lead screws for example.
Please refer to
The first guiding shaft 14 penetrates through the first cutter assembly 10. The second guiding shaft 15 penetrates through the second cutter assembly 11. The first cutter assembly sheath 12 and the second cutter assembly sheath 13 are used for clamping the first cutter assembly 10 and the second cutter assembly 11, respectively. As such, the first cutter assembly 10 and the second cutter assembly 11 are permitted to move along the first guiding shaft 14 and the second guiding shaft 15, respectively. Moreover, the first lead screw sheath 16 is connected to the first cutter assembly sheath 12, and the first lead screw 18 penetrates through the first lead screw sheath 16. The second lead screw sheath 17 is connected to the second cutter assembly sheath 13, and the second lead screw 19 penetrates through the second lead screw sheath 17.
Before the sheet-like article is introduced into the inlet of the cutting mechanism 1, the first cutter assembly sheath 12 and the second cutter assembly sheath 13 are respectively moved along the first lead screw 18 and the second lead screw 19 upon rotation of the first lead screw 18 and the second lead screw 19. As such, the first cutter assembly sheath 12 and the second cutter assembly sheath 13 are simultaneously moved to a cutting position where a desired width of the receipt is determined. Next, as the first guiding shaft 14 and the second guiding shaft 15 are rotated, the first cutter assembly 10 and the second cutter assembly 11 are simultaneously driven to rotate. Consequently, the sheet-like article is cut to a receipt having a desired width by the first blade 102 on the first cutter frame 101 and the second blade 112 on the second cutter frame 111.
The conventional cutting mechanism shown in
Therefore, there is a need of providing an improved cutting mechanism so as to obviate the drawbacks encountered from the prior art.
It is an object of the present invention to provide a cutting mechanism having a single lead screw for cutting sheet-like articles.
In accordance with an aspect of the present invention, there is provided a cutting mechanism for cutting a sheet-like article. The cutting mechanism includes a first cutter assembly, a first cutter assembly sheath, a first guiding shaft, a second cutter assembly, a second cutter assembly sheath, a second guiding shaft, a connecting element, a lead screw sheath, and a lead screw. The first cutter assembly is used for cutting the sheet-like article. The first cutter assembly sheath is for clamping the first cutter assembly. The first guiding shaft penetrates through the first cutter assembly. The first cutter assembly is movable along the first guiding shaft. The second cutter assembly is used for cutting the sheet-like article. The second cutter assembly sheath is used for clamping the second cutter assembly. The second guiding shaft penetrates through the second cutter assembly. The second cutter assembly is movable along the second guiding shaft. The connecting element has both ends respectively connected to the first cutter assembly sheath and the second cutter assembly sheath, so that the first cutter assembly sheath and the second cutter assembly sheath are simultaneously moved. The lead screw sheath is connected to the first cutter assembly sheath. The lead screw penetrates through the lead screw sheath. The lead screw sheath is moved along the lead screw upon rotation of the lead screw, so that the first cutter assembly sheath and the second cutter assembly sheath are simultaneously moved to a cutting position, and the sheet-like article at the cutting position is cut by the first cutter assembly and the second cutter assembly.
In an embodiment, the first cutter assembly includes a first cutter frame and a first blade, and the second cutter assembly includes a second cutter frame and a second blade.
In an embodiment, the first blade is disposed on the first cutter frame, and the second blade is disposed on the second cutter frame.
In an embodiment, the connecting element is arranged behind the first blade and the second blade, and the connecting element has a tapering protrusion for guiding the shredded sheet-like article to be ejected along an exit path.
In an embodiment, a protruding edge is further circumferentially arranged on a periphery of the first cutter frame.
In an embodiment, the cutting mechanism further includes a spring sheathed around the first cutter frame. An end of the spring is sustained against the protruding edge, so that the first blade is sustained against the second blade.
In an embodiment, the first guiding shaft and the second guiding shaft are square-section shafts.
The above objects and advantages of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
The first guiding shaft 24 penetrates through the first cutter assembly 20. The second guiding shaft 25 penetrates through the second cutter assembly 21. The first cutter assembly sheath 22 and the second cutter assembly sheath 23 are used for clamping the first cutter assembly 20 and the second cutter assembly 21, respectively. As such, the first cutter assembly 20 and the second cutter assembly 21 are permitted to move along the first guiding shaft 24 and the second guiding shaft 25, respectively.
The spring 29 is sheathed around the first cutter frame 201 and arranged between the second protruding edge 31 and the first cutter assembly sheath 22. An end of the spring 29 is sustained against the second protruding edge 31. Due to the elastic force offered by the spring 29, the first blade 202 is sustained against the second blade 212.
Moreover, the first cutter assembly 20 has a square-section channel 32. The first guiding shaft 24 penetrates through the square-section channel 32. For complying with the square-section channel 32, the first guiding shaft 24 is a square-section shaft, so that the first cutter assembly 20 is movable along the first guiding shaft 24. In addition, the first cutter assembly 20 is simultaneously rotated with the rotation of the first guiding shaft 24.
Please refer to
Hereinafter, the operations of the cutting mechanism 2 will be illustrated with
From the above description, since the connecting element 28 are connected to the first cutter assembly sheath 22 and the second cutter assembly sheath 23, the first cutter assembly sheath 22 and the second cutter assembly sheath 23 could be simultaneously rotated even if the cutting mechanism 2 of the present invention has only a lead screw. The use of a single lead screw reduces the fabricating cost of the cutting mechanism. In addition, the method for controlling simultaneous movement of the first blade 202 and the second blade 212 is simplified.
While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
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098116107 | May 2009 | TW | national |