CN204585342U - The conveying mechanism of corrugated pipe cut-off machine - Google Patents
The conveying mechanism of corrugated pipe cut-off machine Download PDFInfo
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- CN204585342U CN204585342U CN201520048925.3U CN201520048925U CN204585342U CN 204585342 U CN204585342 U CN 204585342U CN 201520048925 U CN201520048925 U CN 201520048925U CN 204585342 U CN204585342 U CN 204585342U
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Abstract
The utility model relates to a kind of pipe fitting cutting equipment, particularly relate to the conveying mechanism of corrugated pipe cut-off machine, comprise pedestal, be arranged on the first delivery wheel on described pedestal and the second delivery wheel, described first delivery wheel and the second delivery wheel is oppositely arranged and direction of rotation is contrary, the outer circumference surface of described first delivery wheel and the second delivery wheel is provided with the clamping block mutually engaged with the pipe fitting be transferred, the conveying mechanism of the corrugated pipe cut-off machine that the utility model provides, make stressed evenly stable in course of conveying of pipe fitting, even if feed end has larger pulling force also not easily to skid.
Description
Technical field
The utility model relates to a kind of pipe fitting cutting equipment, particularly relates to the conveying mechanism of corrugated pipe cut-off machine.
Background technology
The tubing of bellows to be a kind of profile be regular wave, common plastic film capicitor is generally applied to the fields such as automotive wire bundle, electronics, mechanical wire harness, is a kind of purposes wire harness sheath product widely.In bellows process, it is needed to cut into certain length as required, traditional bellows cutting mode is that pipe fitting is delivered to cutting tool place and cuts off by staff, artificial conveyance easily causes rocking of pipe fitting to cause cutting inaccurate, cutting efficiency is lower simultaneously, at substantial manpower.
Through research and development, existing commercially also occurred some pipe fitting transmitting devices for cutting equipment, this type of mechanism uses lower pressure wheel or belt clamping pipe fitting to carry usually, when feed end has larger pulling force, easily cause skidding, affect delivery precision, cause follow-up cutting to be forbidden.
Because above-mentioned defect, the design people, actively in addition research and innovation, to founding the conveying mechanism of corrugated pipe cut-off machine, make it have more value in industry.
Utility model content
For solving the problems of the technologies described above, the purpose of this utility model is to provide a kind of conveying mechanism of corrugated pipe cut-off machine, makes stressed evenly stable in course of conveying of pipe fitting, even if feed end has larger pulling force also not easily to skid.
The conveying mechanism of a kind of corrugated pipe cut-off machine that the utility model proposes, comprise pedestal, be arranged on the first delivery wheel on described pedestal and the second delivery wheel, described first delivery wheel and the second delivery wheel are oppositely arranged and direction of rotation is contrary, and the outer circumference surface of described first delivery wheel and the second delivery wheel is provided with the clamping block mutually engaged with the pipe fitting be transferred.
Further, described clamping block is the gear teeth.
Adopt technique scheme, the outer circumference surface of the first delivery wheel and the second delivery wheel is provided with the gear teeth mutually engaged with the pipe fitting be transferred, when carrying, the gear teeth directly snap in the trough groove of bellows, increase the stressed of the pipe fitting be transferred, make course of conveying more stable, feed end has during larger pulling force and also can not skid, and ensures delivery precision.
Further, described conveying mechanism also comprise the feed-throughs part of feed end and the discharge end being separately positioned on described first delivery wheel and the second delivery wheel and go out material through hole part, be arranged on described in go out the carrier pipe of material through hole part discharge end.
Adopt technique scheme, feed-throughs part, go out the effect that material through hole part and carrier pipe serve support in pipe fitting course of conveying, to ensure the stability that pipe fitting is carried.
Further, described feed-throughs part, go out material through hole part and carrier pipe axis overlapping.
Further, described feed-throughs part, the first delivery wheel, the second delivery wheel, go out material through hole part and carrier pipe and described pedestal and removably connect.
Adopt technique scheme, increase the versatility of the conveying mechanism of this corrugated pipe cut-off machine, in actual processing process, usually within one day, need the bellows of processing multiple types, the bellows of different model has different calibers, wavelength between Wave crest and wave trough and wave height are also different, therefore the feed-throughs part with the use of different pore size is needed, go out material through hole part, the delivery wheel that carrier pipe and gear teeth size are mated with the Wave crest and wave trough of bellows, above-mentioned design facilitates staff when cutting dissimilar pipe fitting, quick-detachment and assembling conveying mechanism, and this simplicity of design, easy to operate, improve production efficiency.
Further, in described first delivery wheel and the second delivery wheel, at least one can bidirectional rotation.
Further, described second delivery wheel is provided with the control device controlling its bidirectional rotation.
Further, described control device is one-way clutch.
Adopt technique scheme, in two delivery wheels, at least one adopts one-way clutch to form unidirectional active-feeding structure, also can reversely rotate and carry out adjusting tooth of upper and lower two delivery wheel gear teeth, convenient and swift to tooth process.
Further, described pedestal is also provided with spindle gear, described spindle gear drives described first delivery wheel and the second delivery wheel relative movement.
Further, the motor that described spindle gear comprises screw mandrel, drive described screw mandrel to rotate and the first movable plate fixing described first delivery wheel and the second delivery wheel respectively and the second movable plate, described screw mandrel comprises the first contrary thread segment of the hand of spiral and the second thread segment, and described first thread segment and the second thread segment are threaded with described first movable plate and the second movable plate respectively.
Adopt technique scheme, by the rotation of screw mandrel, drive the first movable plate and the second movable plate Relative sliding in the vertical direction, the spacing realized between the first delivery wheel and the second delivery wheel regulates, to adapt to the conveying of the pipe fitting of various outer diameter, this spindle gear is reasonable in design, and structure is simple, and spacing regulates precisely simple.
By such scheme, the utility model at least has the following advantages, the outer circumference surface of the first delivery wheel and the second delivery wheel is provided with the clamping block producing with the pipe fitting be transferred and mutually engage, when carrying, increase the stressed of the pipe fitting be transferred, make course of conveying more stable, feed end has during larger pulling force and also can not skid, and ensures delivery precision.
Above-mentioned explanation is only the general introduction of technical solutions of the utility model, in order to better understand technological means of the present utility model, and can be implemented according to the content of description, coordinates accompanying drawing to be described in detail as follows below with preferred embodiment of the present utility model.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the structural representation at another visual angle of the present utility model.
Detailed description of the invention
Below in conjunction with drawings and Examples, detailed description of the invention of the present utility model is described in further detail.Following examples for illustration of the utility model, but are not used for limiting scope of the present utility model.
Shown in Fig. 1 and Fig. 2, the conveying mechanism of a kind of corrugated pipe cut-off machine described in the utility model one preferred embodiment, comprise pedestal 1, be arranged on the first bearing 2 in order to load bearing component on pedestal 1, first bearing 2 comprises the support 21 vertically arranged, be arranged on the base 22 of also forward end extension bottom support 21, base 22 is fixed on pedestal 1, conveying mechanism also comprises and is positioned at above base 22, the first delivery wheel 3 and the second delivery wheel 4 be oppositely arranged up and down, the outer circumference surface of the first delivery wheel 3 and the second delivery wheel 4 is provided with the gear teeth mutually engaged with the trough of bellows, when carrying bellows, pipe fitting is clamped in the middle of two delivery wheels, while first delivery wheel 3 rotates counterclockwise, the second delivery wheel 4 rotates clockwise, two delivery wheels reversely rotate promotion pipe fitting and advance, when delivery wheel rotates, the gear teeth are fastened in the trough of bellows, increase stressed in course of conveying of pipe fitting, make course of conveying more stable, feed end has during larger pulling force and also can not skid, ensure delivery precision.
Be disposed with the first feed-throughs part 5 and the second feed-throughs part 6 at the feed end of the first delivery wheel 3 and the second delivery wheel 4, be disposed with out material through hole part 7 at discharge end and the pipe fitting after cutting be delivered to the carrier pipe 8 of next station.First feed-throughs part 5, second feed-throughs part 6 and go out material through hole part 7 and fix respectively and be vertically fixed on the first charging gripper shoe 9 on pedestal 1, be vertically fixed on the second charging gripper shoe 10 on the first bearing 2 base 22 and be fixed in the discharging gripper shoe 11 on the first bearing 2 support 21, carrier pipe 8 is erected in the carrier pipe gripper shoe 12 that is vertically fixed on pedestal 1.First feed-throughs part 5, second feed-throughs part 6, go out the effect that material through hole part 7 and carrier pipe 8 serve support in the course of conveying of bellows, to ensure the stability that pipe fitting is carried, and above-mentioned parts are the structural design of quick dispatch, in actual processing process, usually within one day, need the bellows of processing multiple types, the bellows of different model has different calibers, wavelength between Wave crest and wave trough and wave height are also different, therefore the feed-throughs part with the use of different pore size is needed, go out material through hole part 7, the delivery wheel that carrier pipe 8 and gear teeth size are mated with Wave crest and wave trough, above-mentioned design facilitates staff when cutting dissimilar pipe fitting, quick-detachment and assembling conveying mechanism, and structure is simple, easy to operate, improve production efficiency, expand the scope of application of this corrugated pipe cut-off machine.
In the present embodiment, the second delivery wheel 4 is provided with one-way clutch to form unidirectional active-feeding structure, when not carrying, also can reversely rotate and carrying adjusting tooth of the gear teeth up and down, convenient and swift to tooth process.
First delivery wheel 3 and the second delivery wheel 4 are separately positioned on the first relatively independent movable plate 13 and the second movable plate 14, first movable plate 13 is connected with a Bidirectional-screw 15 be vertically arranged on the first bearing 2 base 22 with the second movable plate 14, and be separately positioned on two contrary thread segments of Bidirectional-screw 15 hand of spiral, the guide pillar 16 that two support the first movable plate 13 and the second movable plate 14 is also provided with in the both sides of Bidirectional-screw 15, first movable plate 13 is connected with guide pillar 16 by guide pin bushing (not shown) with the second movable plate 14, first motor 17 drives Bidirectional-screw 15 to rotate to drive the first movable plate 13 and the second movable plate 14 slide in opposition, Bidirectional-screw 15, first motor 17, first movable plate 13 and the second movable plate 14 constitute spindle gear, for adapting to the change of different outside diameter of bel, regulate the spacing between two delivery wheels.
First motor 17 is by controller control action, the model of the bellows of each type and machining information are compiled into the numeric coding of a group 14 by staff, this numeric coding can manually input control device or the form being made into bar code by scanner scanning t test controller, by obtaining the model of bellows and machining information after converting and being stored in controller, controller controls the stroke of Bidirectional-screw 15 by these information, without the need to manual adjustments, save debug time, improve operating efficiency, as small adjustment need be done, can adjust at the fine setting interface of controller, parameter after adjustment also can be preserved, can directly call during processing this kind of bellows next time, adjust without the need to secondary.In addition, containing 2 bit flag check bit in this 14 bit value coding, when manually inputting, if any input error, controller can jump out code error alert interface, operating personnel are reminded to input wrong, reduce because operating personnel manually input the loss of slipping up and causing, according to the external diameter of bellows, controller controls the stroke of Bidirectional-screw 15 by the rotation number of turns controlling the first motor, realize the adjustment of the spacing between two delivery wheels, spacing adjustment accurately, adopt the adjustment form moved both vertically, long distance adjustment can be realized, adapt to the spacing adjustment of two delivery wheels when outside diameter of bel changes greatly, improve conveying accommodation, more conveniently can realize the exchange of delivery wheel mode of movement and Belt Conveying mode, bellows can be realized, flexible pipe, cable, plate, band material waits the conveying of medium, this mechanism design is reasonable, structure is simple, and spacing regulates precisely, expand the scope of application of this corrugated pipe cut-off machine.
The driving mechanism driving the first delivery wheel 3 and the second delivery wheel 4 to reversely rotate is arranged on support 21 rear end face of the first bearing 2, comprise the driving wheel 18 being arranged on support 21 rear end face upper middle position and the second motor 19 driving driving wheel 18 to rotate, be arranged on first locating wheel 20 in the support 21 rear end face upper left corner, be arranged on the second locating wheel 23 below the first locating wheel 20, be arranged on the first driven pulley 24 be connected with the first delivery wheel 3 below the second locating wheel 23 and by the first rotating shaft, be arranged on the second driven pulley 25 be connected with the second delivery wheel 4 below the first driven pulley 24 and by the second rotating shaft, be arranged on the 3rd locating wheel 26 in the support 21 rear end face lower left corner, be arranged on the 4th locating wheel 27 of the first driven pulley 24 and the second driven pulley 25 right middle position, to be arranged on the right side of the second driven pulley 25 and to be in the 3rd driven pulley 28 of same level height with it, be stacked in the 3rd driving wheel 29 on the 3rd driven pulley 28 and coaxial with it, be arranged on the first regulating wheel 30 in the middle of the second driven pulley 25 and the 3rd driving wheel 29, be arranged on the 5th locating wheel 31 above the 3rd driven pulley 28.Second driven pulley 25, 3rd driving wheel 29 and the first regulating wheel 30 are in same plane, and the second driven pulley 25 is connected by a driving-belt with the 3rd driving wheel 29, first regulating wheel 30 supports the outside at driving-belt, remaining drive is connected to be driven the first driven pulley 24 and the 3rd driven pulley 28 to rotate by the rotation of driving wheel 18 by Timing Belt, the second driven pulley 25 is driven to rotate with coaxial the 3rd driving wheel 29 be connected of the 3rd driven pulley 28 by driving-belt, achieve the reverse rotation of the first driven pulley 24 and the second driven pulley 25 in the process, first driven pulley 24 and the second driven pulley 25 are respectively by the first rotating shaft, second rotating shaft drives the first delivery wheel 3 and the second delivery wheel 4 to rotate.This driving mechanism uses a drive motors to drive the synchronous transport of upper and lower two delivery wheels, there is the advantages such as transmission accuracy is high, noise is low, use Maintenance free, and second motor 19 by controller control action, according to the delivered length of bellows, controller controls the rotation of driving wheel 18 by the rotation number of turns controlling the second motor 19, to realize the regulation and control to delivered length.
The first movable plate 13 and the second movable plate about 14 mobile in opposite directions to regulate two delivery wheel spacing time, first driven pulley 24 and the 5th locating wheel 31 are synchronized with the movement, second driven pulley 25 and the 4th locating wheel 27, 3rd driven pulley 28, 3rd driving wheel 29, first regulating wheel 30 is synchronized with the movement, in the process, the tensioning degree of Timing Belt is constant, and Timing Belt is double cog structure, the driving-belt inner surface connecting the second driven pulley 25 and the 3rd driving wheel 29 is also provided with the gear teeth, the outer circumference surface of each drive above-mentioned is also provided with the gear teeth, in the process connecting each drive, the gear teeth of Timing Belt and driving-belt and the gear teeth meshing on each drive surface, effectively prevent in transmission process and skid, further increase transmission accuracy.
The above is only preferred embodiment of the present utility model; be not limited to the utility model; should be understood that; for those skilled in the art; under the prerequisite not departing from the utility model know-why; can also make some improvement and modification, these improve and modification also should be considered as protection domain of the present utility model.
Claims (10)
1. the conveying mechanism of a corrugated pipe cut-off machine, comprise pedestal, be arranged on the first delivery wheel on described pedestal and the second delivery wheel, described first delivery wheel and the second delivery wheel are oppositely arranged and direction of rotation is contrary, it is characterized in that: the outer circumference surface of described first delivery wheel and the second delivery wheel is provided with the clamping block mutually engaged with the pipe fitting be transferred.
2. the conveying mechanism of corrugated pipe cut-off machine according to claim 1, is characterized in that: described clamping block is the gear teeth.
3. the conveying mechanism of corrugated pipe cut-off machine according to claim 1, is characterized in that: described conveying mechanism also comprise the feed-throughs part of feed end and the discharge end being separately positioned on described first delivery wheel and the second delivery wheel and go out material through hole part, be arranged on described in go out the carrier pipe of material through hole part discharge end.
4. the conveying mechanism of corrugated pipe cut-off machine according to claim 3, is characterized in that: described feed-throughs part, the axis going out material through hole part and carrier pipe are overlapping.
5. the conveying mechanism of corrugated pipe cut-off machine according to claim 4, is characterized in that: described feed-throughs part, the first delivery wheel, the second delivery wheel, go out material through hole part and carrier pipe and described pedestal and removably connect.
6. the conveying mechanism of corrugated pipe cut-off machine according to claim 1, is characterized in that: in described first delivery wheel and the second delivery wheel, at least one can bidirectional rotation.
7. the conveying mechanism of corrugated pipe cut-off machine according to claim 6, is characterized in that: described second delivery wheel is provided with the control device controlling its bidirectional rotation.
8. the conveying mechanism of corrugated pipe cut-off machine according to claim 7, is characterized in that: described control device is one-way clutch.
9. the conveying mechanism of corrugated pipe cut-off machine according to claim 1, is characterized in that: described pedestal is also provided with spindle gear, and described spindle gear drives described first delivery wheel and the second delivery wheel relative movement.
10. the conveying mechanism of corrugated pipe cut-off machine according to claim 9, it is characterized in that: described spindle gear comprises screw mandrel, the motor that drives described screw mandrel to rotate and the first movable plate fixing described first delivery wheel and the second delivery wheel respectively and the second movable plate, described screw mandrel comprises the first contrary thread segment of the hand of spiral and the second thread segment, and described first thread segment and the second thread segment are threaded with described first movable plate and the second movable plate respectively.
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CN201520048925.3U CN204585342U (en) | 2015-01-23 | 2015-01-23 | The conveying mechanism of corrugated pipe cut-off machine |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104608180A (en) * | 2015-01-23 | 2015-05-13 | 苏州惠斯福自动化科技有限公司 | Conveying mechanism of corrugated pipe cut-off machine |
CN106737940A (en) * | 2017-01-23 | 2017-05-31 | 泉州泉港润美环保科技有限公司 | One kind is used for industrial smart-cut device |
CN107081803A (en) * | 2017-04-27 | 2017-08-22 | 农思宇 | Cylinder type pipe cutting machine |
-
2015
- 2015-01-23 CN CN201520048925.3U patent/CN204585342U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104608180A (en) * | 2015-01-23 | 2015-05-13 | 苏州惠斯福自动化科技有限公司 | Conveying mechanism of corrugated pipe cut-off machine |
CN106737940A (en) * | 2017-01-23 | 2017-05-31 | 泉州泉港润美环保科技有限公司 | One kind is used for industrial smart-cut device |
CN107081803A (en) * | 2017-04-27 | 2017-08-22 | 农思宇 | Cylinder type pipe cutting machine |
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