Automatic tool setting system and method based on spectral confocal displacement sensor
20220048151 · 2022-02-17
Inventors
- Ming Chen (Shanghai, CN)
- Qinglong AN (Shanghai, CN)
- Weiwei MING (Shanghai, CN)
- Xiaojiang CAI (Shanghai, CN)
- Ruhao ZHOU (Shanghai, CN)
- Xianghui HUANG (Shanghai, CN)
Cpc classification
B23Q17/2428
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23Q17/22
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention discloses an automatic tool aligning system based on a spectral confocal displacement sensor. The system comprises three-dimensional mobile platform, tool aligning component based on the spectral confocal displacement sensor, clamping device, machine tool and the control module. The three-dimensional mobile platform is fixed on the outer side of the machine tool, the tool aligning component is connected with the three-dimensional mobile platform, the clamping device used to clamp the workpiece is fixed on the center of the machine tool through mechanical connection, and the spectral confocal displacement sensor is connected with the control module. After judging the collected working condition data, the control module outputs a control instruction to the three-dimensional mobile platform.
Claims
1. An automatic tool aligning system based on a spectral confocal displacement sensor comprising a three-dimensional moving platform, a tool aligning component based on the spectral confocal displacement sensor, the clamping device, a machine tool and a control module, the three-dimensional moving platform is fixedly arranged on an outer side of the machine tool, the tool aligning component based on spectral confocal displacement sensor is connected with the three-dimensional moving platform, a clamping device is arranged between a fixed tip and a moving tip of the machine tool through a mechanical connection, the spectrum confocal displacement sensor is connected with the control module, and the control module outputs a control instruction to the three-dimensional moving platform after judging a collected working condition data.
2. The automatic tool aligning system based on the spectral confocal displacement sensor of claim 1, characterized in that, the three-dimensional mobile platform comprises three moving modules which is perpendicular to each other, a corresponding base and a first adapter plate, a base of X-axis motion module is fixedly arranged on the outer side of the machine tool, the X-axis motion module is connected with the base of X-axis motion module, a base of Y-axis motion module is connected with the X-axis motion module, the Y-axis motion module is connected with the base of the Y-axis motion module, a base of Z-axis motion module is fixedly arranged on the Y-axis motion module through the first adapter plate.
3. The automatic tool aligning system based on the spectral confocal displacement sensor of claim 2, wherein the three motion modules include a linear motor, a grating ruler and a track, the linear motor is connected with a control module and receives a control instruction to drive a crawler to move, and the grating ruler senses a motion position and feeds back a calibration information to the control module.
4. The automatic tool aligning system based on the spectral confocal displacement sensor of claim 1, characterized in that, the tool aligning component based on the spectral confocal displacement sensor comprises a diamond turning tool, the spectral confocal displacement sensor, a second transfer plate, fixed cover of the spectral confocal displacement sensor, a supporting seat of the spectral confocal displacement sensor and the turning tool, a second adapter plate is connected with a Z-axis moving module, the supporting seat of the spectral confocal displacement sensor and the turning tool is connected with the second connecting plate, the diamond turning tool is connected with the supporting seat of the spectral confocal displacement sensor and the turning tool, the spectral confocal displacement sensor is clamped and fixed through the fixed cover of the spectral confocal displacement sensor and the supporting seat of the spectral confocal displacement sensor and the turning tool.
5. The automatic tool aligning system based on the spectral confocal displacement sensor of claim 1, characterized in that, an axis of the spectral confocal displacement sensor is in the same plane with a diamond cutting edge, and an error range is within 0.1 mm.
6. The automatic tool aligning system based on the spectral confocal displacement sensor of claim 1, characterized in that, a workpiece clamping device comprises a machine tool fixed tip, a machine tool moving tip, a rotary limiting block, a clamping ring and a workpiece, the rotary limiting block is fixedly arranged on the machine tool through screws and the workpiece is fixedly arranged between the machine tool fixed tip and the machine tool moving tip, the clamping ring is clamped on a cylindrical workpiece through a screw and a handle of the clamping ring is in contact with the rotating limit block, when the machine tool rotates, the rotary limit block drives the clamping ring to rotate, and then drives the workpiece to rotate.
7. The automatic tool aligning system based on the spectral confocal displacement sensor of claim 1, characterized in that, the control module comprises a displacement data reading unit, a state decision unit and a motion execution unit, the displacement data reading unit is connected with the state decision unit, a position data read from the spectral confocal displacement sensor is transmitted to the state decision unit, the state decision unit is connected with the motion execution unit, and an acquired pose information is judged and sent to a three-axis motion platform.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0019] As shown in
[0020] The device is assembled in the following process. The base of X-axis motion model 5 is fixed on the machine tool body through bolts 16, the X-axis moving module 4 is fixed on the base of X-axis motion module 5, the base of Y-axis moving 1 is fixedly arranged on the X-axis moving module 4 by screws, the Y-axis motion module 2 is fixedly arranged on the base of Y-axis motion module 1, the base of Z-axis operation module 13 is fixedly arranged on the first adapter plate 22, the Z-axis motion module 14 is fixedly arranged on the base of Z-axis motion module 13, the second adapter plate 15 is fixedly arranged on the Z-axis motion module 14 by screws, and the support seat of spectral confocal displacement sensor and the turning tool 21 are fixedly arranged on the second adapter plate 15 through bolts. The diamond turning tool 20 is fixedly disposed on the supporting seat of spectral confocal displacement sensor and the turning tool 21, the spectral confocal displacement sensor 18 is placed on the supporting seat of spectral confocal displacement sensor and the turning tool 21, the fixing cover of spectral confocal sensor 17 fixes the spectral confocal displacement sensor 18 on the supporting seat of spectral confocal displacement sensor and the turning tool 21, the clamping ring 19 is clamped on the workpiece 9, the workpiece 9 is placed on the machine tool fixed tip 8 of the machine tool, the control handle of movable tip 12 rotate, and the machine tool moving tip 10 then move to the right to realize the clamping of the workpiece. The clamping ring 19 is placed on the rotating limit block 7, and the spectral confocal displacement sensor 18, X motion module, Y motion module and Z motion module are connected with the industrial computer.
[0021] The specific working process of the device is as follows. After the valve core is fixed on the outer circle grinding machine, the three-axis moving platform automatically returns to the zero position if the corresponding valve core model is pressed down. Then, the X axis moves forwards to the cylindrical surface of the valve core, and the Y axis moves forwards to the position where the spectral confocal displacement sensor can work (i.e. the focusing process is completed). After that, the Z-axis motion platform moves upward. If the number obtained from the confocal displacement sensor increases, you should move downward and the number of confocal displacement sensor reading will accordingly decrease. Once the number increases again, it means the Z-axis center high is in the proper position. The movement of Z-axis must be stopped immediately. The Y-axis motion module moves forward and it should be stopped when the confocal sensor reading is equal to the distance between the spectral confocal displacement sensor and the cutting edge. The X-axis motion module will move to the specified position according to the workpiece model to complete the tool alignment. The corresponding flow is shown in
[0022] According to the test result of the present case, the original tool aligning process for a skillful operator requires four minutes to achieve the micron-level tool precision. While even if a primary operator uses our device, the tool aligning operation can be completed at 20 seconds. Meanwhile, the precision is improved by 10 times, the speed is increased by 12 times, and the requirement for operators is reduced.
[0023] Compared with the prior technology, the present device adds the degree of freedom of Z-axis and the spectrum confocal displacement sensor as well as the corresponding control flow. The device can thus quickly achieve high-precision tool aligning function and reduce the operation requirements.
[0024] Those skilled in this field will readily observe that numerous modifications and alterations of the device and method may be made without departing from the spirit and scope of the invention as defined by the appended claims.