CN203019437U - Double-blade block cutting automatic control system - Google Patents

Double-blade block cutting automatic control system Download PDF

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Publication number
CN203019437U
CN203019437U CN 201220579278 CN201220579278U CN203019437U CN 203019437 U CN203019437 U CN 203019437U CN 201220579278 CN201220579278 CN 201220579278 CN 201220579278 U CN201220579278 U CN 201220579278U CN 203019437 U CN203019437 U CN 203019437U
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CN
China
Prior art keywords
double
control system
drive unit
slicing
stripping
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Withdrawn - After Issue
Application number
CN 201220579278
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Chinese (zh)
Inventor
石静波
薛振国
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XI'AN JOINTPOWER TECHNOLOGY Co Ltd
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XI'AN JOINTPOWER TECHNOLOGY Co Ltd
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Priority to CN 201220579278 priority Critical patent/CN203019437U/en
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Publication of CN203019437U publication Critical patent/CN203019437U/en
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Abstract

The utility model provides a double-blade block cutting automatic control system which comprises a motive power control system, a feeding driving device and a double-blade block cutting device. The motive power control system is a frequency converter which is provided with an operation module and an insulated gate bipolar transistor (IGBT) module. The IGBT module is respectively connected with the feeding driving device and the double-blade block cutting device. The double-blade block cutting automatic control system further comprises an external encoder, an output end of the external encoder is connected with the operation module, and a feeding speed and lengths of materials are collected through a pulse signal. Non-grade control is conducted on lengths of cut blocks and the feeding speed through logic operation of the motive power control system, fixed-length or random-length double-blade blocking cutting without shutting down is achieved, production efficiency and an automation degree of a whole device are greatly improved, flexibility of the device is improved, partial cost of prior machinery is reduced, and meanwhile due to the fact that closed-loop control is conducted on the feeding speed, accuracy of block cutting and quality of products are improved.

Description

Double-pole stripping and slicing automatic control system
Technical field
The utility model relates to mechanical stripping and slicing technical field, relates in particular to a kind of double-pole stripping and slicing automatic control system.
Background technology
At present, mechanical stripping and slicing equipment all adopts the stripping and slicing of hilted broadsword mechanical type.Control by mechanical cam; necessary fixedly stripping and slicing length and charging rate; but because stripping and slicing length and the charging rate of different product are all inconsistent; so often need to change stripping and slicing length or charging rate when stripping and slicing; just must change the mechanical cam control system this moment; this system is mechanical system; can only change mechanical cam by shutdown realizes; operation is very inconvenient; and the mechanical cam control system need in advance by material speed and stripping and slicing length computation and fixing, can't realize controlling without the rank stripping and slicing.
The utility model content
The technical problem that (one) will solve
The purpose of this utility model is, a kind of double-pole stripping and slicing automatic control system is provided, and controls without the rank stripping and slicing realizing, can be at any time carry out self according to stripping and slicing length and charging rate and adjust, and the stripping and slicing of not stopping.
(2) technical scheme
In order to solve the problems of the technologies described above, the utility model provides a kind of double-pole stripping and slicing automatic control system, comprise power control system, charging drive unit and double-pole stripping and slicing device, described power control system is the frequency converter that is provided with computing module and IGBT module, and described IGBT module is connected with double-pole stripping and slicing device with the charging drive unit respectively.
Preferably, the built-in operation program of described computing module, described operation program carries out computing according to stripping and slicing length and the charging rate of input, by IGBT module controls charging drive unit and the double-pole stripping and slicing device of frequency converter.
Preferably, described double-pole stripping and slicing automatic control system comprises external encoder, and its output is connected with computing module.
Preferably, described external encoder is by pulse signal acquisition charging rate and material length.
Preferably, the built-in operation program of described computing module, described operation program is proofreaied and correct according to the charging rate of input and the charging rate of external encoder collection, by the IBGT module controls charging drive unit of frequency converter, external encoder, power control system and charging drive unit consist of the closed-loop control to charging rate.
Preferably, the built-in operation program of described computing module, described operation program carries out computing according to the stripping and slicing length of input and charging rate and the material length of external encoder collection, by the IGBT module controls double-pole stripping and slicing device of frequency converter.
Preferably, described charging drive unit comprises servomotor and conveyer belt.
Preferably, described double-pole stripping and slicing device comprises the first drive unit, connecting rod, two cutting knifes and two the second drive units, described the first drive unit be connected drive unit and all be connected with the IGBT module of frequency converter, the center of the first drive unit and connecting rod is rotatably connected, and described two cutting knifes are fixed on respectively the two ends of connecting rod by two the second drive units.
Preferably, described cutting knife and the second drive unit are rotatably connected, and described cutting knife keeps vertical downward direction by the control of the second drive unit.
Preferably, described the first drive unit and the second drive unit are servomotor.
(3) beneficial effect
The utility model carries out controlling without rank to stripping and slicing length and charging rate by the logical operation of power control system, realize the stripping and slicing of not stopping of fixed length or random length double-pole, greatly improved the automaticity of production efficiency and complete equipment, improved the flexibility of equipment, reduced original mechanical part cost, due to charging rate is adopted closed-loop control, stripping and slicing precision and product quality have been improved simultaneously.
Description of drawings
Fig. 1 is the structure chart of the utility model double-pole stripping and slicing automatic control system;
Fig. 2 is the structure chart of the double-pole stripping and slicing device of the utility model double-pole stripping and slicing automatic control system.
In figure, 1: frequency converter; 11: computing module; The 12:IGBT module; 2: the charging drive unit; 3: double-pole stripping and slicing device; 31: the first drive units; 32: the second drive units; 33: cutting knife; 34: connecting rod; 4: external encoder; 5: raw material; 6: finished product.
The specific embodiment
Below in conjunction with drawings and Examples, embodiment of the present utility model is described in further detail.Following examples are used for explanation the utility model, but can not be used for limiting scope of the present utility model.
Embodiment 1
as shown in Fig. 1-2, double-pole stripping and slicing automatic control system of the present utility model, comprise power control system, charging drive unit 2 and double-pole stripping and slicing device 3, power control system is the frequency converter 1 that is provided with computing module 11 and IGBT module 12, feeding control system 2 comprises servomotor and conveyer belt, double-pole stripping and slicing device 3 comprises the first drive unit 31, connecting rod 34, two the second drive units 32 and two cutting knifes 33, the first drive unit 31 is rotatably connected with the center of connecting rod 34, two cutting knifes 33 are fixed on respectively the two ends of connecting rod 34 by two the second drive units 32, the first drive unit 31 and the second drive unit 32 are servomotor, the IGBT module 12 of frequency converter is connected with double-pole stripping and slicing device with charging drive unit 2 respectively and is connected.
the built-in operation program of arithmetic system 11, described operation program carries out computing according to stripping and slicing length and the charging rate of input, control charging rate and the first drive unit 31 of double-pole stripping and slicing device 3 and the rotating speed of the second drive unit 32 of charging drive unit by the IGBT module 12 of frequency converter 1, make the connecting rod 34 in double-pole stripping and slicing device 3 do the speed change circular motion, and the speed that moves horizontally of cutting knife 33 is identical with charging rate, cutting knife 33 keeps vertical downward direction to carry out stripping and slicing by the control of the second drive unit 32, when cutting knife 33 moves to the lowermost end of circumference, just cut raw material 5, two cutting knifes 33 have been realized the stripping and slicing of double-pole rotation circumference by the speed change circular motion of connecting rod 34.
Embodiment 2
as shown in Fig. 1-2, double-pole stripping and slicing automatic control system of the present utility model, comprise power control system, charging drive unit 2, double-pole stripping and slicing device 3 and external encoder 4, power control system is the frequency converter 1 that is provided with computing module 11 and IGBT module 12, feeding control system 2 comprises servomotor and conveyer belt, double-pole stripping and slicing device 3 comprises connecting rod 34, the first drive unit 31, two the second drive units 32 and two cutting knifes 33, the first drive unit 31 is rotatably connected with the center of connecting rod 34, two cutting knifes 33 are fixed on respectively the two ends of connecting rod 34 by two the second drive units 32, the first drive unit 31 and the second drive unit 32 are servomotor, the output of external encoder 4 is connected with computing module 11, the IGBT module of frequency converter is connected with double-pole stripping and slicing device with charging drive unit 2 respectively and is connected.
external encoder 4 is by pulse signal acquisition charging rate and material length, the built-in operation program of computing module 11, proofread and correct according to the charging rate of input and the charging rate of external encoder 4 collections, control the charging rate of charging drive unit by the IBGT module 12 of frequency converter 1, realized external encoder 4, the closed-loop control of power control system and 2 pairs of charging rates of charging drive unit, again according to the stripping and slicing length of inputting, the material length that charging rate and external encoder 4 gather is carried out computing, calculate stripping and slicing position accurately, thereby obtain descending accurately cutter position, IGBT module 12 by frequency converter 1 is controlled the first drive unit 31 of double-pole stripping and slicing device 3 and the rotating speed of the second drive unit 32, make the connecting rod 34 in double-pole stripping and slicing device 3 do the speed change circular motion, and the speed that moves horizontally of cutting knife 33 is identical with charging rate, cutting knife 33 keeps vertical downward direction to carry out stripping and slicing by the control of the second drive unit 32, when cutting knife 33 moves to the lowermost end of circumference, just cut raw material 5, two cutting knifes 33 are realized the stripping and slicing of double-pole rotation circumference by the speed change circular motion of connecting rod 34, whole system has realized electric cam control technique.
Embodiment of the present utility model provides for example with for the purpose of describing, and is not exhaustively or with the utility model to be limited to disclosed form.Many modifications and variations are apparent for the ordinary skill in the art.Selecting and describing embodiment is for better explanation principle of the present utility model and practical application, thereby and makes those of ordinary skill in the art can understand the various embodiment with various modifications that the utility model design is suitable for special-purpose.

Claims (7)

1. double-pole stripping and slicing automatic control system, it is characterized in that: it comprises power control system, charging drive unit and double-pole stripping and slicing device, described power control system is the frequency converter that is provided with computing module and IGBT module, and described IGBT module is connected with double-pole stripping and slicing device with the charging drive unit respectively.
2. double-pole stripping and slicing automatic control system according to claim 1, it is characterized in that: described double-pole stripping and slicing automatic control system comprises external encoder, and its output is connected with computing module.
3. double-pole stripping and slicing automatic control system according to claim 2 is characterized in that: described external encoder is by pulse signal acquisition charging rate and material length.
4. any one described double-pole stripping and slicing automatic control system according to claim 1-3, it is characterized in that: described charging drive unit comprises servomotor and conveyer belt.
5. double-pole stripping and slicing automatic control system according to claim 4, it is characterized in that: described double-pole stripping and slicing device comprises the first drive unit, connecting rod, two cutting knifes and two the second drive units, described the first drive unit be connected drive unit and all be connected with the IGBT module of frequency converter, the center of the first drive unit and connecting rod is rotatably connected, and described two cutting knifes are fixed on respectively the two ends of connecting rod by two the second drive units.
6. double-pole stripping and slicing automatic control system according to claim 5, it is characterized in that: described cutting knife and the second drive unit are rotatably connected, and described cutting knife keeps vertical downward direction by the control of the second drive unit.
7. according to claim 4 or 5 described double-pole stripping and slicing automatic control systems, it is characterized in that: described the first drive unit and the second drive unit are servomotor.
CN 201220579278 2012-11-06 2012-11-06 Double-blade block cutting automatic control system Withdrawn - After Issue CN203019437U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220579278 CN203019437U (en) 2012-11-06 2012-11-06 Double-blade block cutting automatic control system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220579278 CN203019437U (en) 2012-11-06 2012-11-06 Double-blade block cutting automatic control system

Publications (1)

Publication Number Publication Date
CN203019437U true CN203019437U (en) 2013-06-26

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102975228A (en) * 2012-11-06 2013-03-20 西安合远能通科技有限公司 Automatic control system of double-tool block cutting

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102975228A (en) * 2012-11-06 2013-03-20 西安合远能通科技有限公司 Automatic control system of double-tool block cutting
CN102975228B (en) * 2012-11-06 2015-05-27 西安合远能通科技有限公司 Automatic control system of double-tool block cutting

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20130626

Effective date of abandoning: 20150527

RGAV Abandon patent right to avoid regrant