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CN203965884U - The electric control system of numerical control curve edge milling machines - Google Patents

The electric control system of numerical control curve edge milling machines Download PDF

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Publication number
CN203965884U
CN203965884U CN201420381876.0U CN201420381876U CN203965884U CN 203965884 U CN203965884 U CN 203965884U CN 201420381876 U CN201420381876 U CN 201420381876U CN 203965884 U CN203965884 U CN 203965884U
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CN
China
Prior art keywords
control system
terminal
numerical control
driver
motor driver
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Expired - Lifetime
Application number
CN201420381876.0U
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Chinese (zh)
Inventor
何培鎏
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Vad Guangdong Power Machinery Industry Co Ltd
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Vad Guangdong Power Machinery Industry Co Ltd
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Priority to CN201420381876.0U priority Critical patent/CN203965884U/en
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Publication of CN203965884U publication Critical patent/CN203965884U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model discloses a kind of electric control system of numerical control curve edge milling machines, the electric control system of the utility model numerical control curve edge milling machines, comprise numerically controlled control system, numerical control man-machine operating device for multistage and motor driver, multiple IO interface are set on described numerically controlled control system, described numerically controlled control system is connected with described numerical control man-machine operating device for multistage and motor driver by IO interface, described motor driver comprises X-axis servo-driver, Y-axis servo-driver, spindle motor driver; The output terminal of above-mentioned X-axis servo-driver connects X-axis servomotor, and the output terminal of Y-axis servo-driver connects Y-axis servomotor, and the output terminal of spindle motor driver connects spindle motor.Use that this control system is can be reliably convenient realizes X and Y-axis interlock accurately, realize various machining locus, finally realize the curve milling limit processing that main shaft is fixed a cutting tool.

Description

The electric control system of numerical control curve edge milling machines
Technical field
The control field of the utility model woodworking machinery, is specifically applied to the control of numerical control curve edge milling machines.
Background technology
At present wood-milling machine equipment is generally by the mode processing work of copying, and labour intensity is large, and production efficiency is low, the simple and function singleness of electrical control; If the workpiece of processing is complex-shaped, such as carrying out the milling limit work of curved side, traditional electrical control is difficult to meet the demands, and need bed die and pattern, bed die and pattern manufacturing expense are high, process different workpiece and need to manufacture different moulds, mould has been used of a specified duration can produce wearing and tearing, affects machining precision.
Utility model content
Technical problem to be solved in the utility model is for above-mentioned deficiency of the prior art, a kind of electric control system of numerical control curve edge milling machines is provided, use that this control system is can be reliably convenient realizes X and Y-axis interlock accurately, realize various machining locus, finally realize the curve milling limit processing that main shaft is fixed a cutting tool.
The utility model solves the technical scheme that its technical matters adopts: the electric control system of numerical control curve edge milling machines, carry out the operation of milling limit for controlling the cutter of installing on main shaft, comprise numerically controlled control system, numerical control man-machine operating device for multistage and motor driver, multiple IO interface are set on described numerically controlled control system, described numerically controlled control system is connected with described numerical control man-machine operating device for multistage and motor driver by IO interface, described motor driver comprises X-axis servo-driver, Y-axis servo-driver, spindle motor driver;
The output terminal of above-mentioned X-axis servo-driver connects X-axis servomotor, and the output terminal of Y-axis servo-driver connects Y-axis servomotor, and the output terminal of spindle motor driver connects spindle motor.
Further: above-mentioned X-axis servomotor has the main shaft of cutter to realize the movement of directions X for drive installation, described Y-axis servomotor has the main shaft of cutter to realize the movement of Y-direction for drive installation, and described spindle motor is used for driving cutter rotation.
Further: above-mentioned spindle motor driver is V/F frequency converter.
Further: above-mentioned numerical control man-machine operating device for multistage is can touching display screen.
Further: above-mentioned motor driver all includes U terminal, V terminal, W terminal, PE terminal, R terminal, S terminal and T terminal; Wherein, U terminal, V terminal and W connecting terminals are connected to the corresponding terminal of motor, and PE terminal passes through capacity earth.
Further: above-mentioned numerically controlled control system comprises PLC.
The course of work of the electric control system of above-mentioned numerical control curve edge milling machines comprises following steps:
(1) step of input Processing Curve data is inputted the tool sharpening curve data of workpiece to be processed in numerical control man-machine operating device for multistage;
(2) step of drive motor driver, numerically controlled control system is changed the tool sharpening curve data importing in numerical control human-machine device, generates control signal, controls in order X-axis servo-driver, Y-axis servo-driver and spindle motor driver;
(3) step of processing, the motion of X-axis servo driver drives X-axis servomotor, the directions X of realizing main shaft moves, the motion of Y-axis servo driver drives Y-axis servomotor, the Y-direction that realizes main shaft moves, the motion of spindle motor driver drives spindle motor, realizes the rotation of main shaft, drives cutter to complete machining locus.
In above-mentioned steps (1), be that the Processing Curve G code that graphical programming software is generated automatically imports numerical control man-machine operating device for multistage.
The beneficial effects of the utility model are as follows:
The electric control system of the utility model numerical control curve edge milling machines adopts an X-axis servo drive motor and a Y-axis servo drive motor, realize the movement of X and Y direction, this moving process, owing to having adopted man-machine operating device for multistage, numerically controlled control system and motor driver, make the whole process can intelligent Precise control, and control procedure is very simple, only need to input process data and can realize the curve milling limit processing that becomes more meticulous, therefore whole control system has alleviated labour intensity, has improved production efficiency.
Brief description of the drawings
Fig. 1 is the structural representation of the electric control system of the utility model numerical control curve edge milling machines.
Embodiment
Below in conjunction with drawings and Examples, the utility model embodiment is described:
The control system of the utility model numerical control curve edge milling machines is carried out the operation of milling limit for controlling the cutter of installing on main shaft, it is characterized in that: comprise numerically controlled control system, numerical control man-machine operating device for multistage and motor driver, multiple IO interface are set on described numerically controlled control system, described numerically controlled control system is connected with described numerical control man-machine operating device for multistage and motor driver by IO interface, described motor driver comprises X-axis servo-driver, Y-axis servo-driver, spindle motor driver;
The output terminal of above-mentioned X-axis servo-driver connects X-axis servomotor, and the output terminal of Y-axis servo-driver connects Y-axis servomotor, and the output terminal of spindle motor driver connects spindle motor.
General, above-mentioned X-axis servomotor has the main shaft of cutter to realize the movement of directions X for drive installation, and described Y-axis servomotor has the main shaft of cutter to realize the movement of Y-direction for drive installation, and described spindle motor is used for driving cutter rotation.
Preferably, above-mentioned spindle motor driver is V/F frequency converter.
Preferably, above-mentioned numerical control man-machine operating device for multistage is can touching display screen.
General, above-mentioned motor driver all includes U terminal, V terminal, W terminal, PE terminal, R terminal, S terminal and T terminal; Wherein, U terminal, V terminal and W connecting terminals are connected to the corresponding terminal of motor, and PE terminal passes through capacity earth.
Preferably, above-mentioned numerically controlled control system comprises PLC.
The course of work of the electric control system of above-mentioned numerical control curve edge milling machines comprises following steps:
(1) step of input Processing Curve data is inputted the tool sharpening curve data of workpiece to be processed in numerical control man-machine operating device for multistage;
(2) step of drive motor driver, numerically controlled control system is changed the tool sharpening curve data importing in numerical control human-machine device, generates control signal, controls in order X-axis servo-driver, Y-axis servo-driver and spindle motor driver;
(3) step of processing, the motion of X-axis servo driver drives X-axis servomotor, the directions X of realizing main shaft moves, the motion of Y-axis servo driver drives Y-axis servomotor, the Y-direction that realizes main shaft moves, the motion of spindle motor driver drives spindle motor, realizes the rotation of main shaft, drives cutter to complete machining locus.
In above-mentioned steps (1), be that the Processing Curve G code that graphical programming software is generated automatically imports numerical control man-machine operating device for multistage.
By reference to the accompanying drawings the utility model preferred implementation is explained in detail above, but the utility model is not limited to above-mentioned embodiment, in the ken possessing those of ordinary skill in the art, can also under the prerequisite that does not depart from the utility model aim, make a variety of changes.
Do not depart from design of the present utility model and scope and can make many other changes and remodeling.Should be appreciated that the utility model is not limited to specific embodiment, scope of the present utility model is defined by the following claims.

Claims (6)

1. the electric control system of numerical control curve edge milling machines, carry out the operation of milling limit for controlling the cutter of installing on main shaft, it is characterized in that: comprise numerically controlled control system, numerical control man-machine operating device for multistage and motor driver, multiple IO interface are set on described numerically controlled control system, and described numerically controlled control system is connected with described numerical control man-machine operating device for multistage and motor driver by IO interface, and described motor driver comprises X-axis servo-driver, Y-axis servo-driver, spindle motor driver;
The output terminal of above-mentioned X-axis servo-driver connects X-axis servomotor, and the output terminal of Y-axis servo-driver connects Y-axis servomotor, and the output terminal of spindle motor driver connects spindle motor.
2. the electric control system of numerical control curve edge milling machines as claimed in claim 1, it is characterized in that: described X-axis servomotor has the main shaft of cutter to realize the movement of directions X for drive installation, described Y-axis servomotor has the main shaft of cutter to realize the movement of Y-direction for drive installation, and described spindle motor is used for driving cutter rotation.
3. the electric control system of numerical control curve edge milling machines as claimed in claim 1, is characterized in that: described spindle motor driver is V/F frequency converter.
4. the electric control system of numerical control curve edge milling machines as claimed in claim 1, is characterized in that: described numerical control man-machine operating device for multistage is can touching display screen.
5. the electric control system of numerical control curve edge milling machines as claimed in claim 1, is characterized in that: described motor driver all includes U terminal, V terminal, W terminal, PE terminal, R terminal, S terminal and T terminal; Wherein, U terminal, V terminal and W connecting terminals are connected to the corresponding terminal of motor, and PE terminal passes through capacity earth.
6. the electric control system of numerical control curve edge milling machines as claimed in claim 1, is characterized in that: described numerically controlled control system comprises PLC.
CN201420381876.0U 2014-07-08 2014-07-08 The electric control system of numerical control curve edge milling machines Expired - Lifetime CN203965884U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420381876.0U CN203965884U (en) 2014-07-08 2014-07-08 The electric control system of numerical control curve edge milling machines

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420381876.0U CN203965884U (en) 2014-07-08 2014-07-08 The electric control system of numerical control curve edge milling machines

Publications (1)

Publication Number Publication Date
CN203965884U true CN203965884U (en) 2014-11-26

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Application Number Title Priority Date Filing Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105302073A (en) * 2014-07-08 2016-02-03 广东威德力机械实业股份有限公司 Electrical control system of numerical-control curve edge milling machine and control method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105302073A (en) * 2014-07-08 2016-02-03 广东威德力机械实业股份有限公司 Electrical control system of numerical-control curve edge milling machine and control method thereof

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Granted publication date: 20141126

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