The present invention relates to a drill bit, and more particular to a drill bit with a chamfering function that may drill a through hole and extend through the through hole by rotation and contraction of a chamfering blade of the drill bit to chamfer two ends of the through hole.
In general, when a metal workpiece is drilled to form a through hole, sharp burrs or burrs are generated at two ends of the through hole. Usually, a chamfering tool is used to cut the burrs to provide a chamfering effect.
However, such a machining method requires the metal workpieces to be clamped on different machine tables for drilling and chamfering respectively, which makes the machining process time-consuming, and an outer diameter of a chamfering tool needs to be larger than that of the metal workpiece. Then, the chamfering effect can be achieved. Therefore, when the chamfering tool and the metal workpiece are clamped on the machine tool for machining, the chamfering tool can only cut the burrs on an upper end of the through hole of the metal workpiece and cannot extend through the through hole to cut the burns on a lower end of the through hole. That is, after the chamfering tool cutting the burns on the upper end of the through hole of the metal workpiece, and then the metal workpiece is turned and re-clamped, so that the burns on the lower end of the through hole can be chamfered by the chamfering tool. Then, the angular processing procedures are complicated and time-consuming, and the production efficiency is naturally low.
In addition, when the shape of the metal workpiece is special or irregular, it will also increase the difficulty of chamfering, and then extend the processing time, or even unable to complete the chamfering action. With reference to
To overcome the shortcomings, the present invention provides a drill bit with a chamfering function to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a drill bit with a chamfering function that may drill a through hole and extend through the through hole by rotation and contraction of a chamfering blade of the drill bit to chamfer two ends of the through hole.
The drill bit with a chamfering function in accordance with the present invention has a body, a chamfering blade, an abutting rod, an elastic element, an adjusting element, and a drill bit. The body is a hollow tube, and has an internal space, a blade opening, a pivot segment, and a connecting end. The chamfering blade is pivotally connected to the body, selectively extends out of the blade opening, and has a blade portion, a blade pivot portion, and an abutting portion. The abutting rod is disposed in the internal space and abuts against the abutting portion. The elastic element is disposed in the internal space and is compressed between the abutting rod and the adjusting element. The adjusting element is disposed in the internal space for adjusting a amount of compression of the elastic element. The drill bit is securely connected to the connecting end of the body.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The body 10 is a hollow tube, and has a bottom, an external surface, an internal space 11, a blade opening 12, a pivot segment 13, and a connecting end 15. The internal space 11 is formed in the body 10. The blade opening 12 is formed through the external surface of the body 10 adjacent to the bottom of the body 10, and communicates with the internal space 11. The pivot segment 13 is disposed on the external surface of the body 10 adjacent to the blade opening 12, and extends through the internal space 11. The connecting end 15 of the body 10 is disposed on the bottom of the body 10.
The chamfering blade 20 is pivotally connected to the body 10 in the internal space 11, selectively extends out of the blade opening 12 of the body 10, and has a front end, a rear end, a blade portion 21, a blade pivot portion 22, and an abutting portion 23. The front end of the chamfering blade 20 selectively extends out of the blade opening 12 of the body 10. The blade portion 21 is disposed on the front end of the chamfering blade 20, and has a first blade edge 211, a second blade edge 212, and a rounded portion 213. The first blade edge 211 is obliquely disposed on the front end of the chamfering blade 20. The second blade edge 212 is obliquely disposed on the chamfering blade 20 toward the first blade edge 211 to form an angle between the two blade edges 211, 212. The rounded portion 213 is arc spherical and is disposed on the chamfering blade 20 between the first blade edge 211 and the second blade edge 212.
The blade pivot portion 22 is disposed on the chamfering blade 20 between the blade portion 21 and the rear end of the chamfering blade 20, is pivotally disposed on the pivot segment 13 to enable the chamfering blade 20 to rotate relative to the body 10 by the pivot segment 13 and having a cutting position P1 and a non-cutting position P2. When the chamfering blade 20 is located on the cutting position P1, the blade portion 21 extends out of the body 10 via the blade opening 12, and when the chamfering blade 20 is located on the non-cutting position P2, the blade portion 21 is disposed in the internal space 11 of the body 10 as shown in
The abutting rod 30 is disposed in the internal space 11 of the body 10 via the top of the body 10, and has a front end and a pushing cone 31. The pushing cone 31 is disposed on the front end of the abutting rod 30 and abuts against the abutting portion 23 of the chamfering blade 20.
The elastic element 40 may be a spring that is generally available on the market, is disposed in the internal space 11 of the body 10, and is compressed between the abutting rod 30 and the adjusting element 50.
The adjusting element 50 is disposed in the internal space 11 of the body 10, is opposite to the connecting end 15, and is used for adjusting an amount of compression of the elastic element 40. With reference to
The drill bit 60 is securely connected to the body 10 at the connecting end 15 of the body 10, and has an outer diameter larger than an outer diameter of the body 10. In addition, the connecting end 15 of the body 10 has a connecting hole 151 axially formed through the connecting end 15 of the body 10 and communicating with the internal space 11 of the body 10. The drill bit 60 has a distal end facing the connecting end 15 of the body 10 and a connecting rod 61 formed on and axially protruding from the distal end of the drill bit 60 and mounted in the connecting hole 151 securely. Furthermore, the drill bit 60 can be formed with the body 10 as a single piece by means of sintering. Of course, in practice, the body 10 and the drill bit 60 can also be combined in other ways, such as welding.
In addition, since the connecting hole 151 is formed through the connecting end 15 to communicate with the internal space 11, when the drill bit 60 is broken and needs to replaced, it is only necessary to strike the connecting rod 61 in the connecting hole 151 via the internal space 11 to separate the broken drill bit 60 from the connecting end 15 of the body 10. Then, a connecting rod 61 of a new drill bit 60 is inserted into the connecting hole 151 of the connecting end 15 by means of sintering.
Therefore, with reference to
In the first embodiment of the present invention, the pushing cone 31 has a conical shape, and the abutting portion 23 has a first abutting section 231, a second abutting section 232, and an abutting recess 233. The first abutting section 231 and the second abutting section 232 extend outwardly from the abutting recess 233 respectively, forming a V-shaped included angle, so that the pushing cone 31 is limited to in the V-shaped angle and is not easily detached. Furthermore, the interlocking relationship with the abutting portion 23 is maintained. Furthermore, the abutting portion 23 may also be an arc-shaped groove or a different type of design.
In more detail, the drill bit with chamfering function 100 of the present invention is used to drill a through hole and to chamfer two ends of the through hole. The outer diameters of the body 10 and the drill bit 60 may be different according to different needs to produce different diameters of through holes and to chamfer the through holes.
In operation, when a metal workpiece 70 needs to drill a through hole 71 and two ends of the through hole 71 need to be chamfered, the drill bit with chamfering function 100 is firstly moved to above the metal workpiece 70 and driven to rotate. With reference to
Then, with reference to
With reference to
With reference to
Then, after operating the drill bit with chamfering function 100 to move downward and passing the blade portion 21 of the chamfering blade 20 through the lower end of the through hole 71, the chamfering blade 20 returns to the cutting position P1. With reference to
After the chamfering blade 20 is returned to the cutting position P1, the drill bit with the chamfering function 100 is operated to move upward, and the second blade 212 is contacted with the lower end of the through hole 71 to perform cutting as shown in
Finally, after chamfering the lower end of the through hole 71 completely, the drill bit with chamfering function 100 is continuously moved upward to exit the through hole 71 as shown in
Consequently, the drill bit with chamfering function 100 of the present invention is the same as the general cutting tool. It needs to be fixed on a cutter sleeve first, and then the cutter sleeve is clamped on a spindle of a machine tool. The drill bit with chamfering function 100 of the present invention is driven by the machine tool to rotate, and the metal workpiece 70 needs to be fixed on a clamping table of the machine tool. The clamping and fixing method of the machine tool is a common technology, and therefore omitted in the drawings of the present invention.
With reference to
In addition, the present invention takes metal workpieces as an example because it is easier for burrs to occur after metal workpieces are drilled. When the workpiece is made of other materials, the through holes also can be chamfered bi-directionally by the drill bit with chamfering function of the present invention.
In summary, the present invention not only can directly perform chamfering after drilling, but also utilizes the characteristics of the double-blade and shrinkable edge of the chamfering blade 20, and can work on the workpiece without turning the workpiece. The chamfering at both ends effectively reduces the time for workpiece clamping correction, thereby improving product productivity.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.