(a) Field of the Invention
The present invention relates to a boring machine, and more particularly to a boring machine with a headstock unit having a power design of shifting speed to high, medium or low gear, such that the boring machine can be used broadly in general machining.
(b) Description of the Prior Art
Machine equipment, especially a lathe, milling machine, boring machine, planing machine or grinding machine, has taken a leading role in all kinds of machine processing. Currently, a CNC (Computer Numerically Controlled) machine has shown up for the processing automation and the improvement of processing speed and precision. Among the abovementioned machine equipment, the milling machine is utilized to process planar parts and the boring machine is used primarily to perform precision machining for holes; the plane processing and the hole processing are often used in the machine processing.
For the ordinary boring machine, a motor is primarily used to drive a machining shaft to rotate in high speed, so as to lead a cutting tool that is connected to the machining shaft to implement a pre-determined processing procedure on a workpiece, thereby accomplishing the processing of the workpiece.
However, in an actual operation, this kind of processing machine does not perform the processing in a single mode on a single product; therefore, the processing tool should be replaced depending upon the object of processing and the processing procedure. In addition, the operating speed of the machining shaft will not be the same according to the object of processing and the processing procedure. Accordingly, the operation mode of machining shaft in single speed is unable to comply with the actual need of operation.
Accordingly, the primary object of the present invention is to provide a boring machine with a headstock unit having a power design of shifting speed to high, medium or low gear, such that the boring machine can be used broadly in general machining.
To achieve the abovementioned object, the present invention discloses a boring machine which includes primarily a table, a headstock unit installed on the table, a drive unit that drives the headstock unit to displace linearly along a first axis, a seat, and a power unit. The seat provides for the combination of the headstock unit and the drive unit, enabling the drive unit to drive the headstock unit to displace linearly along the first axis. The power unit drives the headstock unit to rotate and changes the rotational speed by a gnawing relation among main gears and speed-change gears in various sizes, so that the headstock unit can rotate at different speed to cope with all kinds of machine processing.
Accordingly, the headstock unit of the present invention is provided with the power design of shifting speed to high, medium or low gear, such that the present invention can be used broadly in general machining. Therefore, the requirement of processing in high, medium or low speed can be satisfied at a same time with a single boring machine, and all kinds of machine processing can be dealt with.
To enable a further understanding of the said objectives and the technological methods of the invention herein, the brief description of the drawings below is followed by the detailed description of the preferred embodiments.
The headstock unit 20 is installed in the table 10 and is sheathed with at least a gnawing tooth member 21; a link rod 22 is sheathed inside the headstock unit 20 and a front end of the link rod 22 is provided with a blade barrel clip 23 which provides for clipping a blade (not shown in the drawings).
The drive unit 30 drives the headstock unit 20 to displace linearly along a first axis X, so that a processing blade can be fed in or discharged out of an end of the blade barrel clip 23 that clips the processing blade. The drive unit 30 is provided with a first power part 31 and a lead screw 32. The lead screw 32 is driven by the first power part 31 and is provided axially on the table 10. The first power part 31, for example, can be a motor which drives a belt, with the belt driving the lead screw 32 to rotate.
The seat 40 is provided with a fixing base 41 for installing and positioning the headstock unit 20, and an assembly part 42 which is connected at a bottom of the fixing base 41 and is assembled with the lead screw 32. In the present embodiment, the fixing base 41 can be a nut base and is installed at an end of the headstock unit 20 away from the blade barrel clip 23; whereas, the assembly part 42 can be a nut which is connected integrally with the nut base.
The power unit 50 drives the headstock unit 20 to rotate. Referring to
The power unit 50 is provided with a first lever set 55 and a second lever set 56. The first lever set 55 is provided with a third power part (not shown in the drawings), a first shaft 551 driven by the third power part, and a first lever plate 552 which is sheathed at the first shaft 551 to lever the first speed-change shaft 53. The second lever set 56 is provided with a fourth power part (not shown in the drawings), a second shaft 561 driven by the fourth power part, and a second lever plate 562 which is sheathed at the second shaft 561 to lever the second speed-change shaft 54.
When the boring process is being performed, as shown in
When the rotational speed is to be changed, the lever set can be used to lever one of the speed-change shafts to displace linearly along the first axis, so as to change the gnawing relation among the main gears and the speed-change gears, thereby arriving at the different rotational speed. For example, the first lever plate 552 levers the first speed-change shaft 53 to displace linearly along the first axis X to change to the gnawing between the second speed-change gear 532 and the sixth speed-change gear 544 (as shown in
Moreover, the boring machine is further provided with a link device 60 which displaces the link rod 22 to drive the blade barrel clip 23 to protrude out of or retract into the headstock unit 20. As shown in
In addition, the table 10 is disposed in an upright column 70, as shown in
It is to be understood that the above description and drawings are only used for illustrating some embodiments of the present invention, not intended to limit the scope thereof. Any variation and deviation from the above description and drawings should be included in the scope of the present invention.