The present invention relates to a cutter and, more particularly, to a tube cutter for cutting a tube.
A conventional tube cutter comprises a substantially U-shaped main body having a first end provided with a screw hole, a cutting wheel mounted on a second end of the main body, a slide movably mounted on the main body, two rollers mounted on the slide and aligning with the cutting wheel, and a threaded rod screwed through the screw hole of the main body and having a first end resting on the two rollers, and a control knob secured on a second end of the threaded rod. In operation, when the threaded rod is rotated by the control knob, the threaded rod is moved axially relative to the main body to drive the two rollers which drive the slide to move on the main body, so that the two rollers are moved relative to the cutting wheel. Thus, when the tube cutter is mounted on a tube or pipe, the two rollers rest on the tube. Then, the threaded rod is rotated by the control knob, and the two rollers are moved toward the cutting wheel, so that the tube is clamped between the two rollers and the cutting wheel. Then, the main body is held by the user's hand and is rotated relative to the tube, so that the cutting wheel is revolved on the tube so as to shear the tube gradually and successively until the tube is cut. However, the conventional tube cutter does not have an automatically feeding function so that the user has to rotate the control knob successively to move the two rollers to press the tube during the shearing process, thereby causing inconvenience to the user, and thereby wasting the energy and working time. In addition, the conventional tube cutter has a small torque so that the user has to apply a large force on the main body to rotate the main body is held by the user's hand and is rotated relative to the tube, so that the cutting wheel is revolved on the tube so as to shear the tube relative to the tube so as to shear the tube, thereby wasting the user's energy and time.
A conventional automatically feeding tube cutter in accordance with the prior art shown in
The primary objective of the present invention is to provide a tube cutter with a roller lubricating function.
In accordance with the present invention, there is provided a tube cutter comprising a main body, a holder slidably mounted on a first side of the main body, a guide bolt rotatably mounted on the main body and driving and moving the holder, two rollers pivotally mounted on a second side of the main body, a cutting wheel rotatably mounted on the holder and corresponding to the two rollers, and two pivot shafts extending through the main body and the two rollers.
In accordance with a first embodiment of the present invention, each of the two pivot shafts has a periphery provided with at least one oil storage groove, and each of the two rollers is radially provided with an oil filling hole corresponding to the at least one oil storage groove of each of the two pivot shafts.
In accordance with a second embodiment of the present invention, each of the two rollers has an inner diameter provided with at least one oil storage groove, and each of the two rollers is radially provided with an oil filling hole corresponding to the at least one oil storage groove.
In accordance with a third embodiment of the present invention, each of the two pivot shafts has a surface provided with at least one oil storage groove, and each of the two pivot shafts has an end provided with an oil filling hole corresponding to the oil storage groove.
According to the primary advantage of the present invention, the lubricating oil is filled between each of the two rollers and each of the two pivot shafts to provide a lubricating function, so as to reduce the friction between each of the two rollers and each of the two pivot shafts, such that the two rollers are rolled smoothly, thereby preventing the two rollers from leaving pressed indentations on the tube during operation.
Further benefits and advantages of the present invention will become apparent after a careful reading of the detailed description with appropriate reference to the accompanying drawings.
Referring to the drawings and initially to
The main body 10 is provided with a first through hole 16 corresponding to the holder 20 and allowing passage of the guide bolt 30. The holder 20 is provided with a receiving space 22 corresponding to the guide bolt 30. The holder 20 is provided with two second through holes 23 located at two sidewalls of the receiving space 22 and aligning with the first through hole 16 of the main body 10. The two second through holes 23 of the holder 20 allow passage of the guide bolt 30. The two rollers 40 are rotatably mounted on the main body 10 by the two pivot shafts 50. The slide 33 is received in the receiving space 22 of the holder 20 and has a height flush with that of the receiving space 22 as shown in
In practice, the slide 33 is driven by rotation of the guide bolt 30 to drive and move the holder 20 forward or backward, while the holder 20 is pushed by an elastic force of the elastic members “S”, so that the cutting wheel 25 is fed toward the two rollers 40 automatically during a cutting process. In the preferred embodiment of the present invention, the main body 10 is provided with two slideways 15, and the holder 20 is provided with two slides 21 slidably mounted in the two slideways 15 of the main body 10 so that the holder 20 is moved forward or backward.
In the preferred embodiment of the present invention, the main body 10 has a substantially L-shaped profile and includes a horizontal portion 11 and a vertical portion 12 located at a side of the horizontal portion 11. The horizontal portion 11 of the main body 10 is provided with a horizontal receiving channel 13, and the vertical portion 12 of the main body 10 is provided with a vertical receiving channel 14. The two slideways 15 are formed in the horizontal portion 11 of the main body 10 and connected to the horizontal receiving channel 13. The first through hole 16 is formed in the vertical portion 12 of the main body 10. The holder 20 is slidably mounted in the horizontal receiving channel 13 of the main body 10 so that the holder 20 is moved forward or backward in the horizontal receiving channel 13 of the main body 10. The two rollers 40 are pivotally mounted in the vertical receiving channel 14 of the main body 10.
In the preferred embodiment of the present invention, the holder 20 is provided with an arcuate slot 24 corresponding between the two rollers 40, and the cutting wheel 25 is rotatably mounted in the slot 24 of the holder 20. The holder 20 is provided with two coaxial through bores 26 located at two sidewalls of the slot 24. The cutting wheel 25 is provided with an axial bore 27. A screw “P” extends through the two through bores 26 of the holder 20 and the axial bore 27 of the cutting wheel 25, and a snap ring “E1” is mounted on the screw “P”. Thus, the cutting wheel 25 is rotatable freely on the screw “P”.
In the preferred embodiment of the present invention, each of the two rollers 40 has a periphery provided with a receiving groove 42 to receive or avoid a protruding edge of a workpiece, such as a tube 1, to be cut.
In the preferred embodiment of the present invention, the guide bolt 30 has a mediate position provided with a retaining groove 35, and a snap ring “E2” is mounted in the retaining groove 35 to prevent the guide bolt 30 from being detached from the main body 10.
In the preferred embodiment of the present invention, the vertical receiving channel 14 of the main body 10 has two sidewalls each provided with two pivot holes 17. Each of the two rollers 40 is provided with a shaft hole 41. The two pivot shafts 50 extend through the pivot holes 17 of the main body 10 and the shaft holes 41 of the two rollers 40, so that the two rollers 40 are rotatable freely in the vertical receiving channel 14 of the main body 10.
In the preferred embodiment of the present invention, each of the two pivot shafts 50 has an end provided with a toothed portion 51 engaging an inner wall of one of the pivot holes 17 of the main body 10.
In the preferred embodiment of the present invention, each of the two pivot shafts 50 has a periphery provided with two oil storage grooves 52. Each of the two rollers 40 is radially provided with an oil filling hole 43 corresponding to the two oil storage grooves 52 of each of the two pivot shafts 50. The oil filling hole 43 of each of the two rollers 40 is connected to the shaft hole 41 and the two oil storage grooves 52 of each of the two pivot shafts 50. The two oil storage grooves 52 of each of the two pivot shafts 50 is connected to and fully received in the shaft hole 41 of each of the two rollers 40. Preferably, each of the two oil storage grooves 52 of each of the two pivot shafts 50 has an annular shape, a straight shape, an oblique shape or a helical shape.
Thus, lubricating oil is filled through the oil filling hole 43 of each of the two rollers 40 into the two oil storage grooves 52 of each of the two pivot shafts 50 to provide a lubricating function, and to reduce a friction between each of the two rollers 40 and each of the two pivot shafts 50, such that the two rollers 40 are rolled smoothly, thereby preventing the two rollers 40 from forming a pressed indentation on the tube 1 to be cut.
In operation, referring to
It is appreciated that, the external thread 32 of the guide bolt 30 is screwed into the screw hole 34 of the slide 33, so that when the guide bolt 30 is rotated by the rotation portion 31, the slide 33 is displaced in the receiving space 22 of the holder 20, and is moved forward or backward to compress or loosen the elastic members “S”, so as to regulate the tension and restore the elastic force of the elastic members “S”. In such a manner, the elastic force of the elastic members “S” is regulated by rotation of the guide bolt 30 so as to correspond to and match the thickness of the tube 1, so that the cutting wheel 25 engages the tube 1 closely and tightly. For example, when the rotation portion 31 of the guide bolt 30 is rotated clockwise, the slide 33 is moved forward to compress the elastic members “S”, so as to increase the elastic force of the elastic members “S”, and when the rotation portion 31 of the guide bolt 30 is rotated anticlockwise, the slide 33 is moved backward to loosen the elastic members “S”, so as to decrease the elastic force of the elastic members “S”.
Accordingly, the holder 20 is pushed by the elastic force of the elastic members “S”, so that the cutting wheel 25 is fed toward the tube 50 automatically during the cutting process, so as to shear the tube 50 successively until the tube 50 is cut, thereby facilitating the user operating the tube cutter when cutting the tube 50. In addition, the lubricating oil is filled between each of the two rollers 40 and each of the two pivot shafts 50 to provide a lubricating function, so as to reduce the friction between each of the two rollers 40 and each of the two pivot shafts 50, such that the two rollers 40 are rolled smoothly, thereby preventing the two rollers 40 from leaving pressed indentations on the tube 1 during operation.
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Although the invention has been explained in relation to its preferred embodiment(s) as mentioned above, it is to be understood that many other possible modifications and variations can be made without departing from the scope of the present invention. It is, therefore, contemplated that the appended claim or claims will cover such modifications and variations that fall within the scope of the invention.
Number | Date | Country | Kind |
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108211588 | Aug 2019 | TW | national |