CN105353741A - Automatic processing method and apparatus for on-line perforating during tubular product production - Google Patents

Automatic processing method and apparatus for on-line perforating during tubular product production Download PDF

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Publication number
CN105353741A
CN105353741A CN201510805517.2A CN201510805517A CN105353741A CN 105353741 A CN105353741 A CN 105353741A CN 201510805517 A CN201510805517 A CN 201510805517A CN 105353741 A CN105353741 A CN 105353741A
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main frame
hole
length
pipe
signal
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CN105353741B (en
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廖宝闰
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS], computer integrated manufacturing [CIM]
    • G05B19/4183Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS], computer integrated manufacturing [CIM] characterised by data acquisition, e.g. workpiece identification
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS], computer integrated manufacturing [CIM]
    • G05B19/41875Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS], computer integrated manufacturing [CIM] characterised by quality surveillance of production
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

Abstract

The invention relates to an automatic processing method and apparatus for on-line perforating during tubular product production. The method comprises: a host collets a starting signal, which is obtained when perforating is started, and an end signal, which is obtained when perforating is ended, of each hole in a tubular product; the host collects a marching length of the tubular product from the starting signal to the end signal of each hole in the tubular product; a plurality of control levels for processing on hole-contained tubes by the host are preset in the host; corresponding processing measures to holes with different lengths are preset at different control levels, wherein the measures contains automatic punching, automatic tube selection, sudden-stop shutdown, and alarming; a control level on a hole-contained tube by the host is selected; when the host collects the length of the hole, the length of the hole is compared with the preset processing measures corresponding to holes with different lengths in the host according to the selected control level; and then the corresponding processing measure is outputted. According to the invention, problems that the hole size can not be identical automatically, automatic punching can not be carried out, and holed-contained tubes can not be screened automatically in the prior art can be solved.

Description

A kind of method and device perforation online in tubing production being carried out to process automatically
Technical field
The present invention relates to tubulation apparatus field, in particular to a kind of method and the device that perforation online in tubing production are carried out to process automatically.
Technical background
Existing have stainless steel tubulation apparatus, when tubing is bored a hole, general by manually carrying out naked eyes identification to the size in hole, accurately can not judge the size in hole, time porose, only have and manually cut by operative's cutting bed, by upper for pipe porose cutaway, labor intensity is added to workman, once workman's energy is not concentrated or do not found the hole on pipe, the hole on pipe can not be cut away in time, upper porose owing to managing, cause whole arm defective, waste is serious; Meanwhile, porose pipe, can only by workman's artificial screening out, once do not pick out in time, the pipe of perforation the and not have pipe of boring a hole to mix, is not easily distinguishable and comes, cause in underproof perforated pipe inflow production tube, have impact on the quality of product.
For the size that accurately can not judge hole in prior art, the hole on pipe can not be cut automatically, porose pipe can not screened problem out automatically, not yet proposes effective solution at present.
Summary of the invention
Fundamental purpose of the present invention is to provide a kind of method and the device that perforation online in tubing production are carried out to process automatically, can not the size of identifying hole automatically to solve in prior art, can not automatic cut hole be carried out, can not automatically by problem that porose pipe screens.
To achieve these goals, according to an aspect of the present invention, a kind of method of perforation online in tubing production being carried out to process is automatically provided.According to of the present invention a kind of tubing is produced in the online perforation method of carrying out process automatically comprise:
First, end signal when each hole on tubing starts commencing signal when boring a hole and punch off is gathered;
Secondly, the length that between the commencing signal in each hole on tubing and end signal, tubing advances is gathered, the length in this length and hole;
Further, in main frame, preset main frame carries out process automatically several ranks to porose pipe, in each rank, the degree varies sample that main frame controls automatically to porose pipe, described several ranks comprise:
Manual rank, during manual rank, when tubing has perforation, the size of whether apertures, main frame does not all process automatically to it, does not export any treatment measures;
Monitoring rank, during monitoring rank, when tubing is porose, main frame only carries out the automatic process of part to hole, comprises output alarm signal, selects pipe signal;
Automatic rank, during automatic rank, when tubing is porose, main frame carries out comprehensively process automatically to hole, except wanting output alarm signal, selecting pipe signal, also will export different treatment measures according to the length in hole;
Further, be set in advance in the treatment measures that the hole of different length during different automatic process ranks is corresponding in main frame, these treatment measures comprise output alarm signal and remind workman to note; Pipe signal is selected in output, by porose pipe with do not have the pipe in hole to be discharged at different positions, thus is screened by pipe; Export cut hole signal, the hole on pipe is cut away automatically; During serious perforation, export and suddenly stop off signal, by tuber and welding machine shutdown;
Further, workman selects main frame to carry out the rank of process automatically to porose pipe by input media in main frame;
Further, when main frame collects during tubing is produced the length of boring a hole online, according to the rank of the automatic process that workman has selected, the treatment measures that length is corresponding with the hole of the different length preset in main frame are compared, and export corresponding treatment measures;
Further, when automatic rank, when tubing is porose, main frame carries out comprehensively process automatically to hole, and except wanting output alarm signal, selecting pipe signal, also will export different treatment measures according to the length in hole, these treatment measures comprise further:
When the length in hole is within L1, hole is very little, main frame output alarm signal and select pipe signal;
When the length in hole is L1 to L2, hole is very large, needs to cut away porose part, main frame output alarm signal, cut hole signal, selects pipe signal;
When the length in hole is for during more than L2, seriously bore a hole, need the control circuit turning off tuber and welding machine, main frame output alarm signal, urgency are stopped off signal and are selected pipe signal;
Further, when automatic rank, when the length in hole is L1 to L2, hole is very large, need to cut away porose part, main frame exports cut hole signal, and the treatment measures of being cut away in hole comprise the following steps: in main frame, pre-enter parameter L3, and L3 is the actual range length that cut point is put in the detecting of perforation detecting sensor; In main frame, pre-enter parameter L4, L4 is cut hole length in reserve, when Kong Suiguan advances, the end point in hole first through cut point, with the distance length of cut point after cut point; When the length in hole is L1 to L2, the length that the end signal point that main frame gathers hole advances, when length equal that L3 and L4 is added and time, main frame output cut hole signal, is cut away hole by cutting bed;
Further, when monitoring or automatic rank, when pipe is above porose, main frame all exports and selects pipe signal, porose pipe is screened, exporting selects pipe signal the treatment measures that porose pipe screens to be comprised: the pipe presetting no perforation in main frame unloads the length parameter L5 of pipe, and L5 is the physical length of unloading pipe point of cut point to normal pipe; The pipe being preset with perforation in main frame unloads the length parameter L6 of pipe, L6 is the physical length of unloading pipe point of Pipe Cutting saw blade cut point to perforated pipe, L6 is not equal to L5, when cutting bed cuts, hole is not had above the tubing cut, the pipe tail of main frame collection tubing leaves the length of cut point, and when length equals L5, main frame exports and unloads pipe signal; When cut, porose above the tubing cut, the pipe tail that main frame gathers tubing equally leaves the length of cut point, and when length equals L6, main frame exports and unloads pipe signal; Porose pipe being discharged at different positions from not having the pipe in hole, two kinds of areas under control being separated, thus porose pipe is screened.
To achieve these goals, according to a further aspect in the invention, provide a kind of device perforation online in tubing production being carried out to process automatically, comprise tuber and welding machine, cutting bed, pipe discharging device, also comprise perforation detection device, device for detecting length, main frame, input media, warning device;
Perforation detection device is connected with main frame, device for detecting length is connected with main frame, when the starting point in the hole above managing arrives the detecting point of perforation detection device, perforation detection device sends the commencing signal in hole, and upload to main frame, when main frame collects commencing signal, the length of register hole is started by the device for detecting length be connected, when the terminal in the hole above managing arrives the detecting point of perforation detection device, perforation detection device sends the end signal in hole, and uploading to main frame, main frame stops the length of record, and the length value now recorded is the length value in hole;
Further, input media is connected with main frame, presets main frame carry out to porose pipe the treatment measures that the hole of different length is corresponding under the rank of automatically process and often kind of rank by input media in main frame;
Further, after main frame collects the length in hole by perforation detection device and device for detecting length, the treatment measures corresponding according to the hole of different length under different automatic process ranks, export different automatic processing signals;
Further, main frame is connected with the control circuit of welding machine with tuber, and when hole needs suddenly to stop shutdown, main frame sends anxious processing signals of stopping shutting down, and is closed by the control circuit of tuber and welding machine, realizes suddenly stopping;
Further, main frame is connected with the control circuit of cutting bed, and when hole needs to cut away, main frame sends cutoff signal, and cutting bed starts, and is cut away in hole;
Further, main frame is connected with pipe discharging device, and when main frame unloads pipe signal to pipe discharging device output, pipe discharging device completes and unloads pipe;
Further, main frame is connected with warning device, and when the control signal of main frame is transferred to warning device, warning device sends alarm signal.
Compare present technology, the present invention can find perforated pipe fast, and can carry out classification process to the perforated pipe of different size under different control hierarchy, greatly reduces waste product, alleviates the labour intensity of work.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, the present invention is described in further detail, the accompanying drawing forming a application's part is used to provide a further understanding of the present invention, schematic description and description of the present invention, for explaining the present invention, does not form inappropriate limitation of the present invention.
Fig. 1 is the process flow diagram of a kind of the present invention's " method of perforation online in tubing production being carried out to process automatically ".
Fig. 2 is the schematic diagram of the present invention's " a kind of device perforation online in tubing production being carried out to process automatically ".
Fig. 3 is position, the hole schematic diagram according to the present invention's " a kind of device perforation online in tubing production being carried out to process automatically ".
In figure, mark instruction illustrates:
1-main frame, 2-perforation detection device, 3-device for detecting length, 4-input media, 5-warning device, 6-tuber and welding machine, 7-cutting bed, 8-pipe discharging device, 9-hole, 10-manages, the starting point in 11-hole, the terminal in 12-hole, the pipe that 13-does not bore a hole, 14-has the pipe of perforation, the detecting point of A-punching machine, the cut point of B-cutting bed, C-no perforation pipe unload pipe point, E, cutting anchor point
It should be noted that, when not conflicting, the embodiment in the application and the feature in embodiment can combine mutually.Below with reference to the accompanying drawings and describe the present invention in detail in conjunction with the embodiments.
The application's scheme is understood better in order to make those skilled in the art person, below in conjunction with the accompanying drawing in the embodiment of the present application, technical scheme in the embodiment of the present application is clearly and completely described, obviously, described embodiment is only the embodiment of the application's part, instead of whole embodiments.Based on the embodiment in the application, those of ordinary skill in the art are not making the every other embodiment obtained under creative work prerequisite, all should belong to the scope of the application's protection.
It should be noted that, term " step S1 ", " step S2 " etc. in the instructions of the application and claims and above-mentioned accompanying drawing are for distinguishing similar object, and need not be used for describing specific order or precedence.Should be appreciated that the data used like this can be exchanged, in the appropriate case so that the embodiment of the application described herein.In addition, term " comprises " and " having " and their any distortion, and intention is to cover not exclusive comprising.
Embodiment
Embodiment 1: a kind of method (see figure 1) of the online perforation of tubing production being carried out to process automatically
Tubing is produced to a method for the automatic process of online perforation, comprises the step of S1 to S7:
Step S1: gather end signal when each hole on tubing starts commencing signal when boring a hole and punch off, each hole has one to start and terminates, when hole starts, main frame gathers the commencing signal in hole, hole moves on, until hole is terminated, main frame collects the end signal in hole.
Step S2: gather the length that between the commencing signal in each hole on tubing and end signal, tubing advances, the length in this length and hole, when main frame receives the commencing signal in hole, the length of synchronous acquisition hole advance immediately, when main frame receives the end signal in hole, main frame stops acquisition length, and now the length value that gathered of main frame, is namely the length in hole.
Step S3: preset several control hierarchies that main frame processes porose pipe in main frame, under each control hierarchy, main frame is to the automatic control of tuber or intervene degree varies sample, during Non-follow control rank, the intervention degree of main frame to perforation is minimum, when monitoring control hierarchy, main frame only carries out the intervention of part to perforation, the degree that main frame is intervened boring a hole when automatic control hierarchy is the highest, this classification can be divided into 3 grades, also can be divided into more multistage, the controlling extent that under each rank, main frame is bored a hole to tubing is different.
Step S4: in main frame, is set in advance in the treatment measures that the hole of different length during different control hierarchy is corresponding, during Non-follow control rank, when tubing has perforation, and the size of whether apertures, main frame does not all process it, does not export any treatment measures; When monitoring control hierarchy, when tubing is porose, main frame only carries out the automatic process of part to hole, such as: output alarm signal, select pipe signal; Automatic control hierarchy, when tubing is porose, main frame carries out comprehensively process automatically to hole, and except wanting output alarm signal, selecting pipe signal, also will export different treatment measures according to the length in hole, these treatment measures comprise:
When the length in hole is within L1, hole is very little, main frame only output alarm signal and select pipe signal;
When the length in hole is L1 to L2, hole is very large, needs to cut away porose part, and main frame, except wanting output alarm signal and selecting pipe signal, also will export cut hole signal;
When the length in hole is for during more than L2, seriously bore a hole, need the control circuit turning off tuber and welding machine, main frame, except wanting output alarm signal and selecting pipe signal, also will export and suddenly stop off signal, shuts down, tuber and anxious the stopping of welding machine in order to avoid cause more wastes.
Step S5: select main frame to the control hierarchy of porose pipe on main frame, when workman starts shooting, according to the working condition at scene, selects main frame to need what control hierarchy to porose pipe.
Step S6: when main frame collects during tubing is produced the length of boring a hole online, the control hierarchy selected by step S5, the treatment measures that length is corresponding with the hole of the different length preset in main frame are compared;
Step S7: the result according to comparison exports corresponding treatment measures, automatically processes hole.
Embodiment 2: a kind of device (see Fig. 2, Fig. 3) the online perforation of tubing production being carried out to process automatically
In producing tubing, a device for process automatically is carried out in online perforation, comprises tuber and welding machine (6), cutting bed (7), pipe discharging device (8), perforation detection device (2), device for detecting length (3), main frame (1), input media (4), warning device (5), perforation detection device (2) is connected with main frame (1), device for detecting length (3) is connected with main frame (1), when the detecting point (A) that the starting point (11) of managing the hole (9) above (10) arrives perforation detection device (2) is put, perforation detection device (2) sends the commencing signal of hole (9), and upload to main frame (1), when main frame (1) collects commencing signal, the length of register hole is started by the device for detecting length (3) be connected with main frame, when the detecting point (A) that the terminal (12) of managing the hole (9) above (10) arrives perforation detection device (2) is put, perforation detection device (2) sends the end signal of hole (9), and upload to main frame (1), main frame stops the length of record, the length value now recorded is the length value of hole (9), input media (4) is connected with main frame (1), and workman presets main frame by input media (4) and carries out to porose pipe the treatment measures that the hole of different length is corresponding under the rank of automatically process and often kind of rank in main frame, after main frame (1) collects the length of hole (9) by perforation detection device (2) and device for detecting length (3), the treatment measures corresponding according to the hole of different length under different automatic process ranks, export different automatic processing signals, main frame (1) is connected with the control circuit of tuber with welding machine (6), when hole (9) need suddenly to stop shutdown, main frame (1) sends anxious control signal of stopping shutting down, and is closed by the control circuit of tuber and welding machine (6), realizes anxious stopping.
Main frame (1) is connected with the control circuit of cutting bed (7), when hole (9) need to cut away, and the length that main frame is advanced by the terminal (12) of coupled device for detecting length (3) register hole (9); Workman is by input media (4)
In main frame, pre-enter parameter L3, L3 be the detecting point (A) of perforation detecting sensor to the actual range length of the cut point (B) of cutting bed (7), i.e. the distance of AB 2 in Fig. 3; Workman pre-enters parameter L4 by input media (4) in main frame, L4 is cut hole length in reserve, and when preventing cut hole, distance is too near, and cut hole is not thorough, L4 is the distance between the cut point (B) of cutting bed (7) and cutting anchor point (E), the distance namely in Fig. 3 between BE; When hole (9) are front with pipe (10), the length that the end signal point (12) that main frame gathers hole (9) advances, when length equal L3 and L4 be added and time, when namely equaling the distance of AE in Fig. 3, main frame exports cut hole signal, cutting bed (7) starts, and hole (9) is cut away from cut point (B) point.
Further, when monitoring or automatic rank, when pipe is above porose, main frame all exports and selects pipe signal, is screened by porose pipe, exports and selects pipe signal the treatment measures that porose pipe screens to be comprised:
Main frame (1) is connected with pipe discharging device (8), when managing (10) cut platform (7) and cutting from cut point (B), and the distance that the afterbody that main frame (1) starts the pipe recording cutout advances from cut point (B); Workman unloads the length parameter L5 of pipe by the pipe that input media (4) presets no perforation in main frame (1), and L5 is the cut point (B) of cutting bed (7) unloads pipe point (C) physical length to normal pipe; Workman unloads the length parameter L6 of pipe by the pipe that input media (4) is preset with perforation in main frame (1), L6 is the cut point (B) of cutting bed (7) unloads pipe point (D) physical length to perforated pipe, L6 is not equal to L5, can be greater than L5 and also can be less than L5; When cutting bed (7) does not have hole above the tubing that cut point (B) cuts, the pipe tail of main frame collection tubing leaves the length of cut point (B), and when length equals L5, main frame (1) exports and unloads pipe signal; The pipe (13) of no perforation is unloaded pipe point (C) from normal pipe unload, when cutting bed (7) is porose above the tubing that cut point (B) cuts, the pipe tail of main frame collection tubing leaves the length of cut point (B), and when length equals L6, main frame (1) exports and unloads pipe signal; The pipe (14) of perforation is unloaded pipe point (D) from perforated pipe unload, two kinds of pipes are discharged at different positions, thus porose pipe is screened.
Main frame (1) is connected with warning device (5), and when the control signal of main frame is transferred to warning device (5), warning device sends alarm signal.
Above better embodiment of the present invention is illustrated, but the invention is not limited to described embodiment, those of ordinary skill in the art also can make all equivalent modifications or replacement under the prerequisite without prejudice to spirit of the present invention, and these equivalent modification or replacement are all included in the application's claim limited range.

Claims (7)

1. in producing tubing, a method for process automatically is carried out in online perforation, it is characterized in that, comprising:
Step S1: main frame gathers end signal when each hole on tubing starts commencing signal when boring a hole and punch off;
Step S2: main frame gathers the length that between the commencing signal in each hole on tubing and end signal, tubing advances, the length in this length and hole;
Step S3: preset several control hierarchies that main frame processes porose pipe in main frame, under each control hierarchy, main frame is to the automatic control of tuber or intervene degree varies sample;
Step S4: in main frame, is set in advance in the treatment measures that the hole of different length during different control hierarchy is corresponding;
Step S5: workman selects main frame to the control hierarchy of porose pipe on main frame;
Step S6: when main frame collects during tubing is produced the length of boring a hole online, the control hierarchy selected by workman, the treatment measures that length is corresponding with the hole of the different length preset in main frame are compared;
Step S7: the result according to comparison exports corresponding treatment measures, automatically processes hole.
2. method according to claim 1, it is characterized in that, according to step S3, several control hierarchies that main frame processes porose pipe are preset in main frame, under each control hierarchy, main frame is to the automatic control of tuber or intervene degree varies sample, and described several control hierarchies comprise further:
Non-follow control rank, when tubing has perforation, the size of whether apertures, main frame does not all process automatically to it, does not export any treatment measures;
Monitoring control hierarchy, when tubing is porose, main frame only carries out the automatic process of part to hole, comprises output alarm signal, selects pipe signal;
Automatic control hierarchy, when tubing is porose, main frame carries out comprehensively process automatically to hole, except wanting output alarm signal, selecting pipe signal, also will export different treatment measures according to the length in hole;
The control hierarchy of main frame to tuber comprises Non-follow control rank, monitoring control hierarchy, automatically control hierarchy three kinds, but is not limited only to these three kinds.
3. method according to claim 2, is characterized in that, when automatic control hierarchy, when tubing is porose, main frame is except wanting output alarm signal, selecting pipe signal, and also will export different treatment measures according to the length in hole, these treatment measures comprise:
When the length in hole is within L1, hole is very little, main frame output alarm signal and select pipe signal;
When the length in hole is L1 to L2, hole is very large, needs to cut away porose part, main frame output alarm signal, cut hole signal, selects pipe signal;
When the length in hole is more than L2, seriously bore a hole, need the control circuit turning off tuber and welding machine, main frame output alarm signal, urgency are stopped off signal and are selected pipe signal.
4. method according to claim 3, is characterized in that, when automatic rank, when the length in hole is L1 to L2, hole is very large, needs to cut away porose part, and main frame exports cut hole signal, and the treatment measures of being cut away in hole comprise:
In main frame, pre-enter parameter L3, L3 is the actual range length of check point to cut point of perforation detecting sensor;
In main frame, pre-enter parameter L4, L4 is cut hole length in reserve, is also the end point of cut hole hole when and the distance length of cut point;
When the length in hole is L1 to L2, when main frame collects the end signal in the hole on tubing, the length that the end point in main frame synchronous acquisition hole is immediately advanced, when length equal that L3 and L4 is added and time, main frame output cut hole signal, is cut away hole by cutting bed.
5. a kind of method of perforation online in tubing production being carried out to process automatically according to claim 2, it is characterized in that: when monitoring or automatic rank, when pipe is above porose, main frame all exports and selects pipe signal, porose pipe is screened, exports and select pipe signal the treatment measures that porose pipe screens to be comprised:
The pipe presetting no perforation in main frame unloads the length parameter L5 of pipe, and L5 is that Pipe Cutting saw blade cut point is to the physical length of unloading pipe point;
The pipe being preset with perforation in main frame unloads the length parameter L6 of pipe, L6 be the cut point of cutting bed to another physical length of unloading pipe point, L6 is not equal to L5;
When cutting bed cuts, do not have hole above the tubing cut, main frame gathers the length of pipe tail to cut point of tubing, and when length equals L5, main frame exports and unloads pipe signal;
When cutting bed cuts, porose above the tubing cut, main frame gathers the length of pipe tail to cut point of tubing, and when length equals L6, main frame exports and unloads pipe signal;
Porose pipe being discharged at different positions from not having the pipe in hole, two kinds of areas under control being separated, thus perforated pipe is screened.
6. one kind is carried out the device of process automatically to perforation online in tubing production, comprise tuber and welding machine (6), cutting bed (7), pipe discharging device (8), it is characterized in that: also comprise perforation detection device (2), device for detecting length (3), main frame (1), input media (4), warning device (5);
Perforation detection device (2) is connected with main frame (1), device for detecting length (3) is connected with main frame (1), when the detecting point (A) that the starting point (11) of managing the hole (9) above (10) arrives perforation detection device (2) is put, perforation detection device (2) sends the commencing signal of hole (9), and upload to main frame (1), when main frame (1) collects commencing signal, the length of register hole is started by the device for detecting length (3) be connected, when the detecting point (A) that the terminal (12) of managing the hole (9) above (10) arrives perforation detection device (2) is put, perforation detection device (2) sends the end signal of hole (9), and upload to main frame (1), main frame stops the length of record, the length value now recorded is the length value of hole (9),
Input media (4), to be connected with main frame (1), in main frame, to preset main frame by input media (4) and the treatment measures that the hole of different length is corresponding under the rank of process automatically and often kind of rank are carried out to porose pipe;
After main frame (1) collects the length of hole (9) by perforation detection device (2) and device for detecting length (3), the treatment measures corresponding according to the hole of different length under different automatic process ranks, export different automatic processing signals;
Main frame (1) is connected with the control circuit of tuber with welding machine (6), when hole (9) need suddenly to stop shutdown, main frame (1) sends anxious processing signals of stopping shutting down, and is closed by the control circuit of tuber and welding machine (6), realizes anxious stopping;
Main frame (1) is connected with the control circuit of cutting bed (7), and when hole (9) need to cut away, main frame (1) sends cutoff signal, and cutting bed (7) starts, and is cut away in hole by saw blade;
Main frame (1) is connected with pipe discharging device (8), and when main frame goes out to unload pipe signal to pipe discharging device (8), pipe discharging device completes and unloads pipe;
Main frame (1) is connected with warning device (5), and when the control signal of main frame is transferred to warning device (5), warning device sends alarm signal.
7. device according to claim 6, is characterized in that, described host machine part is the circuit of PLC or computing machine or single-chip microcomputer composition.
CN201510805517.2A 2015-11-22 2015-11-22 It is a kind of tubing is produced in perforate online the method and device that is automatically processed Expired - Fee Related CN105353741B (en)

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CN201510805517.2A CN105353741B (en) 2015-11-22 2015-11-22 It is a kind of tubing is produced in perforate online the method and device that is automatically processed

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JPH0343136A (en) * 1989-07-10 1991-02-25 Toshiba Corp Automatic warehouse/product control system
CN101011769A (en) * 2007-02-13 2007-08-08 包钢钢威液压件有限责任公司 Method for controlling on-line self-centering perforation of seamless tube blank puncher
CN201514215U (en) * 2009-09-22 2010-06-23 丁忠 Machining accuracy on-line real-time detecting system of numerical control punching device
CN102328330A (en) * 2011-07-26 2012-01-25 广东联塑科技实业有限公司 Method for punching PE (Polyurethane) permeation tube
CN103921065A (en) * 2014-03-18 2014-07-16 泰州双羊精密无缝钢管有限公司 Manufacturing method of vehicle seamless steel tubes
CN203900219U (en) * 2014-06-05 2014-10-29 向伟 Efficient punching machine for high-speed stainless steel pipes

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0343136A (en) * 1989-07-10 1991-02-25 Toshiba Corp Automatic warehouse/product control system
CN101011769A (en) * 2007-02-13 2007-08-08 包钢钢威液压件有限责任公司 Method for controlling on-line self-centering perforation of seamless tube blank puncher
CN201514215U (en) * 2009-09-22 2010-06-23 丁忠 Machining accuracy on-line real-time detecting system of numerical control punching device
CN102328330A (en) * 2011-07-26 2012-01-25 广东联塑科技实业有限公司 Method for punching PE (Polyurethane) permeation tube
CN103921065A (en) * 2014-03-18 2014-07-16 泰州双羊精密无缝钢管有限公司 Manufacturing method of vehicle seamless steel tubes
CN203900219U (en) * 2014-06-05 2014-10-29 向伟 Efficient punching machine for high-speed stainless steel pipes

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