The present invention relates to a hand-held pressable and rotary cutting device, and especially relates to a plastic tube cutter with four rolling-wheels which can be operated with one hand and used for cutting a plastic tube body.
Generally, when the plumber technician or the decoration worker repairs at the job site, he will carry a plastic tube cutter to carry out the work of cutting the pipe.
Since the thickness and material properties of the plastic tube are different, both of the conventional scissor-type plastic tube cutter or the rolling-wheel knife-type plastic tube cutter have their disadvantages. When the scissor-type tube cutter is used to cut the thin tube, it will depress-flat the plastic tube and result in an uneven cutting surface. On the other hand, the cutting speed of the rolling-wheel knife-type tube cutter is too slow for cutting the thick tube.
Therefore, the conventional tube cutter still has the necessity of improvement.
In view of the above disadvantages, the plastic tube cutter of the present invention comprises: a shell-body; a cutting-unit; and a pressing-arm; wherein the cutting-unit is pivotally set in the shell-body, and the shell-body has a semicircular concave-arc end-face set at one end thereof; wherein four rolling-wheels corresponding to each other are spacedly set on two sides between the concave-arc end-face and the opening, and the other end of the shell-body has a gripping-arm; wherein the pressing-arm is pivotally set at the bottom of the shell-body and spaced apart from the gripping-arm to face with each other; wherein the four rolling-wheels of the semicircular concave-arc end-face are provided for accommodating a plastic tube body.
When cutting, the user presses the pressing-arm to drive the cutting-unit to pivot, and so as to achieve the purposes of maintaining the cutting freedom and the flat-smooth cutting surface.
In addition, a hooking-piece and a rod-body are respectively set on opposite sides of the gripping-arm and the pressing-arm to hook the hooking-piece and the rod-body. And, the four rolling-wheels are used to guide correctly, and so as to achieve the purposes of cutting the high-thickness plastic tube body in a rotation way and maintaining the flat-smooth cutting surface.
The following descriptions are exemplary embodiments only, and are not intended to limit the scope, applicability or configuration of the invention in any way. Rather, the following detailed description provides a convenient illustration for implementing exemplary embodiments of the invention. Various changes to the described embodiments may be made in the function and arrangement of the elements described without departing from the scope of the invention as set forth in the appended claims.
The foregoing and other aspects, features, and utilities of the present invention will be best understood from the following detailed description of the preferred embodiments when read in conjunction with the accompanying drawings.
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The cutting-unit 20 is pivotally set in the shell-body 10, and a pivot-hole 21 is set in the center of the cutting-unit 20 for providing pivotal connection inside the shell-body 10; wherein the blade-portion 22 has a protruding concave-portion 221, and the other side of the pivot-hole 21 is set with a concave-portion 211; wherein the concave-portion 211 is stopped and blocked by the interior of the shell-body 10; wherein the bottom of the cutting-unit 20 is set with a hook-portion 23; wherein the hook-portion 23 is set with a first elastic-element 24, and the other end of the first elastic-element 24 is coupled within the shell-body 10; wherein the cutting-unit 20 is pivoted in a clockwise direction by the elastic force of the first elastic-element 24, and the concave-portion 211 is used to stop and block the cutting-unit 20 from pivoting; wherein one side of the cutting-unit 20 is set with a ratchet-portion 25 having a plurality of ratchet tooth 251, and one end of the ratchet-portion 25 is adjacent to the hook-portion 23; wherein the stopping-piece of the first pushing-piece 12 is located between each of the ratchet teeth 251 to stop and block the cutting-unit 20 from pivoting.
The pressing arm 30 is pivotally set at the bottom of the shell-body 10 and spaced apart from the gripping-arm 13 to face with each other; wherein the pressing-arm 30 is set with a stopping-element 31 and a hollow second pushing-piece 32; wherein one side of the stopping-element 31 is in contact with the toggling-portion 122, and the first pushing-piece 12 is accommodated in the second pushing-piece 32; wherein the second pushing-piece 32 has a length greater than the first pushing-piece 12, so that the front end of the second pushing-piece 32 is engaged between the ratchet tooth 251.
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The plastic tube cutter 1 of the invention is provided to cut a plastic tube body, and the semicircular concave-arc end-face 11 of the shell-body 10 is provided for accommodating the plastic tube body. The plastic tube body is supported by the four rolling-wheels 112 to facilitate the plastic tube body to maintain the freedom of the cutting and pressing during the cutting process. When cutting, the user simultaneously holds the pressing-arm 30 and the gripping-arm 13 and presses the pressing-arm 30 to pivot the pressing arm 30 toward the gripping-arm 13. At the same time, the second pushing-piece 12 pushes and butts between the ratchet tooth 251, so that the cutting-unit 20 rotates counterclockwise to move the distance of one ratchet teeth 251. After continuous pressing of the pressing arm 30, the blade-portion 22 of the cutting-unit 20 is gradually cut into the plastic tube body to achieve the purpose of complete cutting the plastic tube body. The stopping-piece 121 of the first pushing-piece 12 is engaged between the ratchet tooth 251 to prevent the cutting-unit 20 from being rotated in a clockwise rotation to restore position during cutting.
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