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1. Field of the Invention
The present invention relates generally to a circle-cutting tool, and more particularly to an innovative one which is designed to maintain optimum torque and flexible cutting functions.
2. Description of Related Art Including Information Disclosed Under 37 CFR 1.97 and 37 CFR 1.98
According to common circle-cutting methods, some circular lines are drawn on the surface of soft flat objects (e.g.: paper and plastic plate) by using a compass or circular items, which are then tailored linearly by utility knives or scissors. So, a special circle-cutting tool has been designed in response to the time-consuming method that affects the circular degree.
A common circle-cutting tool comprises a turnplate and a cutter, of which the turnplate is provided with a plurality of through holes, so the cutter could be inserted to rotate the turnplate for cutting. However, the following shortcomings are observed during actual applications:
First, as the torque of force applied by common circle-cutting tool refers to the distance between through hole and center of the turnplate, a smaller torque may lead to difficulty in application of force if a circle of smaller radius is to be cut.
Second, as the depth of through hole in the turnplate is shallow, this may give rise to hazards in case disengagement of the cutter occurs due to improper application of force by the users. Furthermore, precise coordination shall be required between through hole and cutter, otherwise the operation of cutting is prone to deviation, thus affecting the circular degree of circle.
Third, as manual insertion is adopted for said cutter, it is difficult to control the strength of force to be applied, and deep insertion may cause difficulty in application of force when cutting items of certain thickness.
Thus, to overcome the aforementioned problems of the prior art, it would be an advancement if the art to provide an improved structure that can significantly improve the efficacy.
Therefore, the inventor has provided the present invention of practicability after deliberate design and evaluation based on years of experience in the production, development and design of related products.
The enhanced efficacy of the present invention is as follows:
Based on the unique structural design of the present invention wherein the “improved structure of circle-cutting tool” mainly comprises: an outer ring seat, rotary disc, elongated through groove and adjustable elastic cutting assembly, when the circle-cutting tool is used to cut circles, the adjustable elastic cutting assembly allows to slidably adjust the size of circles, and the rotary disc could be rotated through its outer ring portion, such that optimum torque could be maintained in cutting big or small circles. Moreover, the adjustable elastic cutting assembly enables flexible cutting in line with the thickness of the objects by consistent and uniform force, thus realizing more easier and smooth cutting process.
Based on the characteristics that the adjustable elastic cutting assembly is set into the elongated through groove of the rotary disc and the cutter could be retracted into the base body, the present invention could be used more flexibly without the possibility of being damaged by the cutter, thus improving dramatically its safety with better applicability.
Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
The circle-cutting tool A comprises an outer ring seat 10, comprising of a round hollow groove 11 and a placing surface 12. The outer ring seat 10 could prevent the sliding of the objects from interfering with the cutting process by pressing the targeted objects with the placing surface 12.
A rotary disc 20 is pivoted into the round hollow groove 11 of the outer ring seat 10 for rotation in relation to the outer ring seat 10. It comprises of a top surface 21, a bottom surface 22, outer ring portion 23 and central portion 24. Of which the height of the bottom surface 22 of the rotary disc 20 is equal to that of the placing surface 12 of the outer ring seat 10, so that the placing surface 12 of the outer ring seat 10 could press the objects. Referring to
An elongated through groove 30 penetrates through the top surface 21 and bottom surface 22 of the rotary disc 20 in an elongated shape. The elongated through groove 30 is set in a way to be extended from the central portion 24 of the rotary disc 20 to the outer ring portion 23 (shown in
An adjustable elastic cutting assembly 40 is pivoted into the elongated through groove 30 in slidable state in relation to the elongated through groove 30. Said adjustable elastic cutting assembly 40 comprises a holding base 50, a cutter 41, an elastic element 44 and an adjusting part 45. The holding base 50 comprises of a holding space 51. The cutter 41 is set into the holding space 51 of the holding base 50, and composed of a blade 42 and a cutting base 43. Said elastic element 44 is set into the holding space 51 of the holding base 50, thus generating an elastic force for the cutting base 43 of the cutter 41. Said adjusting part 45 is set into the holding space 51 of the holding base 50, so that the cutter 41 could slide in relation to the holding base 50.
Of which, the holding base 50 comprises of a base body 52 and a driven tube 53 set into the base body 521. Said holding space 51 is formed in the driven tube 53, and said driven tube 53 comprises of an actuating end 54 and a regulating end 55. Said cutter 41 is set at the actuating end 54 of the driven tube 53, while the actuating end 54 is provided with a through-hole 541 from which the blade 42 of the cutter 41 can be protruded. The adjusting part 45 is set at the regulating end 55 of the driven tube 53, while the elastic element 44 is set between the adjusting part 45 and the cutter 41. Moreover, the driven tube 53 can slide in relation to the base body 52 via a first radial spacing part 60, whilst the cutter 41 can slide in relation to the driven tube 53 via a second radial spacing part 70. Referring to
Referring to
Referring to
Based on above-specified structural design, the present invention is operated as follows.
Referring to
Referring to
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