CN206057945U - A kind of thermal deformation of machine tool error artificial intelligence's compensator - Google Patents
A kind of thermal deformation of machine tool error artificial intelligence's compensator Download PDFInfo
- Publication number
- CN206057945U CN206057945U CN201620055823.9U CN201620055823U CN206057945U CN 206057945 U CN206057945 U CN 206057945U CN 201620055823 U CN201620055823 U CN 201620055823U CN 206057945 U CN206057945 U CN 206057945U
- Authority
- CN
- China
- Prior art keywords
- compensator
- button
- display lamp
- temperature sensor
- group
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
Landscapes
- Numerical Control (AREA)
- Automatic Control Of Machine Tools (AREA)
Abstract
This utility model discloses a kind of thermal deformation of machine tool error artificial intelligence's compensator, including housing, rear board, LCDs, temperature sensor interface group, display lamp group, compensator button group, microprocessor and bin, the rear board is installed on the trailing flank of the housing, the LCDs are installed on the front of the housing, the housing is located above the LCDs and is provided with the display lamp group, lower section is provided with the compensator button group, the temperature sensor interface group is provided with the rear board, the temperature sensor interface group, the display lamp group, the compensator button group and the bin are connected with the microprocessor respectively.This utility model is made up of STM32 model microprocessors, is gathered the temperature data and displacement data of lathe, is produced offset data, send lathe to by network interface, reach the purpose of compensation;This utility model has the advantages that simple structure, stable performance and service life are longer.
Description
Technical field
This utility model is related to compensator technical field, more particularly to a kind of thermal deformation of machine tool error artificial intelligence compensation
Device.
Background technology
Modern manufacturing industry requires high-precision Digit Control Machine Tool, high-quality, high efficiency.Yet with lathe radiating it is unequal other
Reason causes machining accuracy not enough, produces error, causes the workpiece for processing not to be durable or even can not use.Therefore to lathe
Error compensation is critically important.
At present, abroad, the large batch of example applied in the industry of NC Machine Error real-Time Compensation technology
And it is few, also do not reach the degree of commercialization of maturation.At home, real-time error compensation technology major part also rests on laboratory model
In enclosing, the report of the application error real-Time Compensation technology on manufacturer's batch Digit Control Machine Tool is yet there are no.
Utility model content
The purpose of this utility model is to overcome the deficiencies in the prior art, there is provided a kind of thermal deformation of machine tool error artificial intelligence mends
Repay device.
The technical solution of the utility model is as follows:This utility model provides a kind of thermal deformation of machine tool error artificial intelligence compensation
Device, including housing, rear board, LCDs, temperature sensor interface group, display lamp group, compensator button group, microprocessor
And bin, the rear board is installed on the trailing flank of the housing, and the LCDs are just being installed on the housing
Face, the housing are located above the LCDs and are provided with the display lamp group, lower section be provided with the compensator by
Key group, is provided with the temperature sensor interface group, the temperature sensor interface group, the display lamp on the rear board
Group, the compensator button group and the bin are connected with the microprocessor respectively.
This utility model is preferred, the display lamp group include the first display lamp, the second display lamp, the 3rd display lamp, the
Four display lamps and the 5th display lamp, first display lamp, second display lamp, the 3rd display lamp, the described 4th refer to
Show lamp and the 5th display lamp be mounted on the housing positioned at the LCDs top, and with the microprocessor
The signal output part connection of device.
This utility model is preferred, the compensator button group include the first compensator button, the second compensator button, the
Three compensator buttons, the 4th compensator button and the 5th compensator button, the first compensator button, second compensator
Button, the 3rd compensator button, the 4th compensator button and the 5th compensator button are mounted on the shell
Body is located at the lower section of the LCDs, and is connected with the signal input part of the microprocessor, first display lamp,
Second display lamp, the 3rd display lamp, the 4th display lamp and the 5th display lamp are mended by described first respectively
Repay device button, the second compensator button, the 3rd compensator button, the 4th compensator button and the 5th benefit
Device is repaid by key control start and stop.
This utility model is preferred, and the temperature sensor interface group includes the first temperature sensor interface, second temperature
Sensor interface, three-temperature sensor interface and the 4th temperature sensor interface, it is first temperature sensor interface, described
Second temperature sensor interface, the three-temperature sensor interface and the 4th temperature sensor interface with micro- place
Reason device communication connection.
This utility model is preferred, and main switch is provided with the front plate of the housing, is located at described total on the housing
Power port is provided with below switch, the power port is connected with the power input of the microprocessor, is gone here and there between which
Join the main switch.
This utility model is preferred, is provided with network interface and communication interface on the rear board, the network interface and
The communication interface is connected with the microprocessor communications.
This utility model is preferred, model STM32 of the microprocessor.
The beneficial effects of the utility model are as follows:
Using such scheme, this utility model is made up of STM32 model microprocessors, gathers temperature data and the position of lathe
Data are moved, offset data is produced, lathe is sent to by network interface, the purpose of compensation is reached;This utility model has structure
Simply, the longer advantage of stable performance and service life.
Description of the drawings
Fig. 1 is a kind of system structure diagram of thermal deformation of machine tool error artificial intelligence's compensator described in the utility model;
Fig. 2 is a kind of dimensional structure diagram of thermal deformation of machine tool error artificial intelligence's compensator described in the utility model;
Fig. 3 is a kind of backsight structural representation of thermal deformation of machine tool error artificial intelligence's compensator described in the utility model.
Specific embodiment
Below in conjunction with the drawings and specific embodiments, this utility model is described in detail.
Fig. 1, Fig. 2 and Fig. 3 are referred to, this utility model provides thermal deformation of machine tool error artificial intelligence's compensator, including shell
Body 6, rear board 21, LCDs 7, temperature sensor interface group, display lamp group, compensator button group, microprocessor and storage
Storage, rear board 21 are installed on the trailing flank of housing 6, and LCDs 7 are installed on the front of housing 6, and housing 6 is located at liquid crystal
The top of display screen 7 is provided with display lamp group, and lower section is provided with compensator button group, is provided with temperature sensor on rear board 21
Interface group, temperature sensor interface group, display lamp group, compensator button group and bin are connected with microprocessor respectively, micro- place
Model STM32 of reason device.
As shown in Fig. 2 display lamp group includes the first display lamp 1, the second display lamp 2, the 3rd display lamp 3, the 4th display lamp 4
With the 5th display lamp 5, the first display lamp 1, the second display lamp 2, the 3rd display lamp 3, the 4th display lamp 4 and the 5th display lamp 5 are equal
Housing 6 is installed on positioned at the top of LCDs 7, and is connected with the signal output part of microprocessor.
As shown in Fig. 2 compensator button group includes the first compensator button 9, the second compensator button 10, the 3rd compensator
Button 11, the 4th compensator button 12 and the 5th compensator button 13, the first compensator button 9, the second compensator button 10,
Three compensator buttons 11, the 4th compensator button 12 and the 5th compensator button 13 are mounted on housing 6 positioned at LCDs 7
Lower section, and be connected with the signal input part of microprocessor, the first display lamp 1, the second display lamp 2, the 3rd display lamp 3,
Four display lamps 4 and the 5th display lamp 5 are respectively by the first compensator button 9, the second compensator button 10, the 3rd compensator button
11st, the 4th compensator button 12 and the control start and stop of the 5th compensator button 13.
As shown in figure 3, temperature sensor interface group includes the first temperature sensor interface 15, second temperature sensor interface
16th, three-temperature sensor interface 17 and the 4th temperature sensor interface 18, the first temperature sensor interface 15, second temperature are passed
Sensor interface 16, three-temperature sensor interface 17 and the 4th temperature sensor interface 18 are connected with microprocessor communications.
As shown in Fig. 2 main switch 14 is provided with the front plate of housing 6, arrange positioned at the lower section of main switch 14 on housing 6
There is power port 8, power port 8 is connected with the power input of microprocessor, main switch 14 of connecting between which.
As shown in figure 3, network interface 19 and communication interface 20, network interface 19 and communication interface are provided with rear board 21
20 are connected with microprocessor communications.
Will be the first temperature sensor, second temperature sensor, three-temperature sensor and the 4th temperature sensor right respectively
Answer motor housing, top chock, four points of cross slide seat and workbench to be installed, and correspondence is connect with the first temperature sensor
Mouth 15, second temperature sensor interface 16, three-temperature sensor interface 17 and the 4th temperature sensor interface 18 connect, numerical control
Lathe, compensator and computer are connected by netting twine, realize data conversion by router, and compensator does server, calculate and
, used as customer side, in a section, i.e. last three number of IP is or not router, computer, compensator and lathe IP for Digit Control Machine Tool
Together, other are all identical, first open compensator, open Digit Control Machine Tool afterwards during work, finally open the upper computer software on computer,
Upper computer software is exe files, directly runs, such as need to model again, can pass through laser interferometer Acquisition Error temperature movement
Data, generate excel forms, by training interface training, will generate during excel copied in SD card, and restart compensator, you can
It is automatically performed modeling.
In sum, this utility model is made up of STM32 model microprocessors, gathers the temperature data and displacement number of lathe
According to generation offset data sends lathe to by network interface, reaches the purpose of compensation;This utility model have simple structure,
The longer advantage of stable performance and service life.
Preferred embodiment of the present utility model is these are only, this utility model is not limited to, it is all in this practicality
Any modification, equivalent and improvement for being made within new spirit and principle etc., should be included in guarantor of the present utility model
Within the scope of shield.
Claims (7)
1. a kind of thermal deformation of machine tool error artificial intelligence's compensator, it is characterised in that including housing, rear board, LCDs,
Temperature sensor interface group, display lamp group, compensator button group, microprocessor and bin, the rear board are installed on described
On the trailing flank of housing, the LCDs are installed on the front of the housing, and the housing is located at the LCDs
Top be provided with the display lamp group, lower section is provided with the compensator button group, the temperature is provided with the rear board
Degree sensor interface group, the temperature sensor interface group, the display lamp group, the compensator button group and the bin
It is connected with the microprocessor respectively.
2. a kind of thermal deformation of machine tool error artificial intelligence's compensator according to claim 1, it is characterised in that the instruction
Lamp group includes the first display lamp, the second display lamp, the 3rd display lamp, the 4th display lamp and the 5th display lamp, and described first indicates
Lamp, second display lamp, the 3rd display lamp, the 4th display lamp and the 5th display lamp are mounted on the shell
Body is located at the top of the LCDs, and is connected with the signal output part of the microprocessor.
3. a kind of thermal deformation of machine tool error artificial intelligence's compensator according to claim 2, it is characterised in that the compensation
Device button group includes the first compensator button, the second compensator button, the 3rd compensator button, the 4th compensator button and the 5th
Compensator button, the first compensator button, the second compensator button, the 3rd compensator button, the described 4th
Compensator button and the 5th compensator button be mounted on the housing positioned at the LCDs lower section, and with
The signal input part connection of the microprocessor, first display lamp, second display lamp, the 3rd display lamp, institute
The 4th display lamp and the 5th display lamp are stated respectively by the first compensator button, the second compensator button, described
3rd compensator button, the 4th compensator button and the 5th compensator press key control start and stop.
4. a kind of thermal deformation of machine tool error artificial intelligence's compensator according to claim 1, it is characterised in that the temperature
Sensor interface group includes the first temperature sensor interface, second temperature sensor interface, three-temperature sensor interface and
Four temperature sensor interfaces, first temperature sensor interface, the second temperature sensor interface, the 3rd temperature are passed
Sensor interface and the 4th temperature sensor interface are connected with the microprocessor communications.
5. a kind of thermal deformation of machine tool error artificial intelligence's compensator according to claim 1, it is characterised in that the housing
Front plate on be provided with main switch, on the housing be located at the main switch below be provided with power port, the power supply
Port is connected with the power input of the microprocessor, main switch of connecting between which.
6. a kind of thermal deformation of machine tool error artificial intelligence's compensator according to claim 1, it is characterised in that behind described
Network interface and communication interface are provided with plate, the network interface and the communication interface are connected with the microprocessor communications
Connect.
7. a kind of thermal deformation of machine tool error artificial intelligence's compensator according to claim 1, it is characterised in that micro- place
Model STM32 of reason device.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620055823.9U CN206057945U (en) | 2016-01-20 | 2016-01-20 | A kind of thermal deformation of machine tool error artificial intelligence's compensator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620055823.9U CN206057945U (en) | 2016-01-20 | 2016-01-20 | A kind of thermal deformation of machine tool error artificial intelligence's compensator |
Publications (1)
Publication Number | Publication Date |
---|---|
CN206057945U true CN206057945U (en) | 2017-03-29 |
Family
ID=58371456
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201620055823.9U Expired - Fee Related CN206057945U (en) | 2016-01-20 | 2016-01-20 | A kind of thermal deformation of machine tool error artificial intelligence's compensator |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN206057945U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105589409A (en) * | 2016-01-20 | 2016-05-18 | 四川理工学院 | Artificial intelligence compensator of thermal deformation errors of machine tool and compensation method |
-
2016
- 2016-01-20 CN CN201620055823.9U patent/CN206057945U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105589409A (en) * | 2016-01-20 | 2016-05-18 | 四川理工学院 | Artificial intelligence compensator of thermal deformation errors of machine tool and compensation method |
CN105589409B (en) * | 2016-01-20 | 2019-01-25 | 四川理工学院 | A kind of thermal deformation of machine tool error artificial intelligence compensation method |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN101122791A (en) | Digital control machine tool positioning error real-time compensation device | |
CN104898576A (en) | Torsion synchronous intelligent numerical control bender numerical control system | |
CN206057945U (en) | A kind of thermal deformation of machine tool error artificial intelligence's compensator | |
CN102478820A (en) | Novel device for compensating positioning error of numerical control machine tool in real time | |
CN105589409B (en) | A kind of thermal deformation of machine tool error artificial intelligence compensation method | |
CN204825458U (en) | Cloth inspection machine companion | |
CN204194703U (en) | The vertical PIN tool for stitching of a kind of group | |
CN203370921U (en) | Copper bar connecting piece punching die | |
CN207535261U (en) | A kind of time sequence control device with position control | |
CN103580972A (en) | PROFIBUS-DP and MODBUS protocol conversion device and implementation method | |
CN206253907U (en) | Zero-point positioning system quick-changing mechanism | |
CN209175394U (en) | A kind of Parts on Machining-Center cleaning mechanism | |
CN203265438U (en) | Flaring machine for radiator | |
CN207900474U (en) | A kind of laser cutting machine that cutting accuracy is high | |
CN201435078Y (en) | Interface expansion device | |
CN207431802U (en) | A kind of crank milling hydraulically operated fixture | |
CN201471217U (en) | Numerical control machine tool capable of machining polyhedral parts | |
CN206930770U (en) | A kind of multiple-in-one Universal debugging equipment | |
CN205920483U (en) | A PDA for change of large user's electric energy meter | |
CN104579041A (en) | Control board used for excitation control over synchronous motor | |
CN209363857U (en) | Laser machine | |
CN207223420U (en) | A kind of joint of robot processing tool | |
CN204129484U (en) | Uniaxially self-adaptation milling drum control panel | |
CN204334390U (en) | A kind of control board controlled for synchronous motor excitation | |
CN204631523U (en) | A kind of handheld instrument based on CAN |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170329 Termination date: 20220120 |