1. Field of the Invention
This invention relates to a machine tool, and more particularly to a CNC (Computer-Numerical-Controlled) machine tool.
2. Description of the Related Art
Referring to
The spindle seat 5 holds a cutter (not shown) for performing a cutting operation on the workpiece. When a first cutting operation is completed, a first cutter is removed from the workpiece, and is moved upwardly from a cutting position adjacent to the workpiece to a safety position by a first distance. Next, the first cutter is further moved upwardly to a cutter-exchanging position by a second distance. In the cutter-exchanging position, an automatic cutter-changing device (not shown) is operated to first remove the first cutter from the spindle seat 5 and subsequently move a second cutter onto the spindle seat 5. When the cutter-exchanging operation is completed, the second cutter is moved downwardly to the safety position by the second distance, and subsequently is further moved downwardly to the cutting position by the first distance for performing a subsequent cutting operation on the workpiece. Since the first and second cutters are moved on the post member 102 by only the spindle seat 5, a significant amount of time is necessary for such a cutter exchange operation, thereby reducing the production capacity of the CNC machine tool. Furthermore, the length of the threaded rod 402 and the height of the post member 102 are substantial due to such sole reliance on the spindle seat 5 for movement of the first and second cutters. As a result, the volume and the fabrication costs of the CNC machine tool are increased.
The object of this invention is to provide a CNC machine tool that can overcome the above-mentioned drawbacks associated with the prior art.
According to this invention, a machine tool includes a machine body, a first driving unit, a first sliding member driven by the first driving unit to move on the machine body along a direction, a second driving unit disposed on the first sliding member, and a second sliding member driven by the second driving unit to move on the first sliding member along the direction.
If a spindle unit is mounted on the second sliding member, when the first and second sliding members are driven respectively and simultaneously by the first and second driving units, the spindle unit will move on the machine body at a high speed. Thus, the production capability of the CNC machine tool can be increased.
These and other features and advantages of this invention will become apparent in the following detailed description of the preferred embodiments of this invention, with reference to the accompanying drawings, in which:
Before the present invention is described in greater detail in connection with the preferred embodiments, it should be noted that similar elements and structures are designated by like reference numerals throughout the entire disclosure.
Referring to
The machine body 10 includes a bottom seat 11 and a post member 12 fixed on and extending upwardly from the bottom seat 11 along a Z-axis direction. In this embodiment, the Z-axis direction is a vertical direction. An automatic cutter-changing device 100 (see
The worktable unit 20 includes a Y-direction driving unit 21 disposed on the bottom seat 11, a Y-direction sliding member 22 movable on the bottom seat 11 along a Y-axis direction, a Y-direction linear rail unit 23 disposed between the bottom seat 11 and the Y-direction sliding member 22, an X-direction driving unit 24 disposed on the Y-direction sliding member 22, a worktable 25 disposed on the Y-direction sliding member 22, and an X-direction linear rail unit 26 disposed between the Y-direction sliding member 22 and the worktable 25. The Y-direction driving unit 21 includes a servomotor 211 and a Y-direction threaded rod 212 journalled on a top portion of the bottom seat 11 and driven by the servomotor 211 to rotate. The Y-direction threaded rod 212 extends along the Y-axis direction. The X-direction driving unit 24 includes a servomotor 241 and an X-direction threaded rod 242 journalled on a top portion of the Y-direction sliding member 22 and driven by the servomotor 241 to rotate. The servomotor 211 is operable to rotate the Y-direction threaded rod 212 to thereby move the worktable 25 forwardly and rearwardly relative to the post member 12 along the Y-axis direction. The servomotor 241 is operable to rotate the X-direction threaded rod 242 to thereby move the worktable 25 leftwardly and rightwardly relative to the post member 12 along an X-axis direction.
The first driving unit 30 includes a first servomotor 31 and a first threaded rod 32 journalled on the post member 12 and driven by the first servomotor 31 to rotate. The first threaded rod 32 extends along the Z-axis direction.
The first sliding member 40 is disposed on a front surface of the post member 12, and includes a fixed first internal thread member 41 engaging the first threaded rod 32. The first sliding member 40 is driven by the first driving unit 30 to move vertically relative to the post member 12 along the Z-axis direction.
The first linear rail unit 50 includes two parallel first slide rails 51 disposed fixedly on the front surface of the post member 12 and extending along the Z-axis direction, and two first sliding block units disposed fixedly on a rear surface of the first sliding member 40 and slidable respectively along the first slide rails 51. In this embodiment, each of the first sliding block units consists of two first sliding blocks 52, each of which is connected to the corresponding slide rail 51 by a dovetail tongue and groove engagement.
The second driving unit 60 includes a second servomotor 61 and a second threaded rod 62 journalled on a front surface of the first sliding member 40 and driven by the second servomotor 61 to rotate. The second threaded rod 62 extends along the Z-axis direction. The first and second driving units 30, 60 are capable of being operated simultaneously.
The second sliding member 70 includes a second internal thread member 71 engaging the second threaded rod 62. Upon simultaneous operation of the first and second driving units 30, 60, the first sliding member 40 is moved on the post member 12, and the second sliding member 70 is moved on the first sliding member 40. Hence, the spindle unit 90 can move relative to the worktable 25 along the Z-axis direction at a high speed.
The second linear rail unit 80 includes two parallel second slide rails 81 fixed on a rear surface of the second sliding member 70 and extending along the Z-axis direction, and two second sliding block units disposed fixedly on a front surface of the first sliding member 40 and slidable respectively along the second slide rails 81. In this embodiment, each of the second sliding block units consists of two second sliding blocks 82.
The spindle unit 90 extends along the Z-axis direction, and has a bottom portion mounted with a cutter 91 for performing a cutting operation on a workpiece (not shown) held on the worktable 25.
As such, with particular reference to
In view of the above, the CNC machine tool of this invention has the following advantages:
With reference to
When the first and second driving units 30, 60 are operated simultaneously, the first sliding member 40 is moved on the bottom seat 11 along the X-axis direction at a first speed, and the second sliding member 70 is moved on the first sliding member 40 along the X-axis direction at the first speed. Stated differently, the second sliding member 70 is moved relative to the bottom seat 11 along the X-axis direction at a high, second speed that is double the first speed.
With this invention thus explained, it is apparent that numerous modifications and variations can be made without departing from the scope and spirit of this invention. It is therefore intended that this invention be limited only as indicated by the appended claims.
Number | Date | Country | Kind |
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096123781 | Jun 2007 | TW | national |