CN212128549U - Integrated selvedge tracking device of setting machine - Google Patents
Integrated selvedge tracking device of setting machine Download PDFInfo
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- CN212128549U CN212128549U CN202020751443.5U CN202020751443U CN212128549U CN 212128549 U CN212128549 U CN 212128549U CN 202020751443 U CN202020751443 U CN 202020751443U CN 212128549 U CN212128549 U CN 212128549U
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Abstract
The integrated selvedge tracking device of the setting machine comprises a fixed component, a rotating component and an input component, wherein the fixed component is arranged at the left end of the input component, and the rotating component is arranged at the right end of the input component; the input assembly comprises an input/output board and a central processor, the input/output board is arranged on the surface of the input assembly, and the central processor is arranged in the input assembly; the fixing component comprises a driving device, and the driving device is arranged at the lower end of the fixing component; the driving device is connected with the central processor through a connecting piece. The utility model has the advantages of the installation is convenient, detect that the precision is high, long service life and interference killing feature are strong.
Description
Technical Field
The utility model relates to a selvedge forming machine field, in particular to forming machine integral type selvedge tracer.
Background
Present selvedge tracer, input/output board and central processor often are connected through the cable with drive arrangement, this just leads to the circuit miscellaneous and can cause stronger interfering signal, influence selvedge tracer's accuracy, also inconvenient subsequent dismantlement and maintenance simultaneously, there is detection precision low, the life-span is short, shortcomings such as troublesome installation, so an installation is convenient, it is high to detect the precision, long service life and forming machine integral type selvedge tracer that the interference killing feature is strong need to be developed urgently.
SUMMERY OF THE UTILITY MODEL
To the above defect, the utility model aims to provide a forming machine integral type selvedge tracer solves the problem that current selvedge tracer detects that the precision is low, the life-span is short, the installation is troublesome and the interference killing feature is weak.
To achieve the purpose, the utility model adopts the following technical proposal:
the integrated selvedge tracking device of the setting machine comprises a fixed component, a rotating component and an input component, wherein the fixed component is arranged at the left end of the input component, and the rotating component is arranged at the right end of the input component;
the input assembly comprises an input/output board and a central processor, the input/output board is arranged on the surface of the input assembly, and the central processor is arranged in the input assembly;
the fixing component comprises a driving device, and the driving device is arranged at the lower end of the fixing component; the driving device is connected with the central processor through a connecting piece.
Preferably, the fixing assembly further comprises a fixing seat and a support frame, the fixing seat is installed at the upper end of the support frame, and the lower end of the support frame is connected with the upper end of the driving device.
Preferably, the fixing assembly further comprises a speed reducer, the upper end of the speed reducer is connected with the fixing seat, the lower end of the speed reducer is connected with an output shaft of the driving device, and the speed reducer is arranged in the supporting frame.
Preferably, the fixing assembly further comprises an encoder, the encoder is rotatably mounted at the lower end of the driving device, and the central axis of the encoder coincides with the central axis of the driving device.
Preferably, the rotating assembly includes a center pillar, a fixing ring and a housing, the center pillar penetrates the housing, the fixing ring is installed at a lower end of the housing, and the fixing ring is connected to one side of the input assembly.
Preferably, the fixing ring is of a hollow structure, and the inner diameter of the fixing ring is smaller than the outer diameter of the center pillar.
Preferably, the material of the fixing ring is an elastic material.
Preferably, the rotating assembly further comprises a dust cover, the dust cover is mounted at the upper end of the shell and is of a hollow structure, and the inner diameter of the dust cover is smaller than the outer diameter of the center pillar.
Preferably, the dustproof cover material is an elastic material.
Preferably, the input and output board is provided with at least four interfaces.
The utility model has the advantages that:
1. the driving device, the input/output board and the central processor are connected through the connecting piece without cable connection, so that the interference caused by lines is avoided, the interference to the device is reduced, and the stability and the accuracy of the device are improved.
2. Unnecessary line connection is reduced, and the installation and the disassembly of the selvedge tracking device are more convenient and simpler.
3. The dustproof cover is arranged, so that external dust can be well reduced from entering the device, the failure rate of the device is greatly reduced, and the service life of the device is prolonged.
Drawings
FIG. 1 is a schematic structural diagram of one embodiment of the present invention;
fig. 2 is a schematic perspective view of one embodiment of the present invention;
fig. 3 is a schematic structural view of a fixing assembly according to an embodiment of the present invention;
wherein: the device comprises a fixed assembly 1, a rotating assembly 2, an input assembly 3, an input/output board 4, a central processor 5, a driving device 6, a speed reducer 7, an encoder 8, a fixed seat 11, a support frame 12, a center post 21, a fixed ring 22, a shell 23 and a dust cover 24.
Detailed Description
The technical solution of the present invention is further explained by the following embodiments with reference to the accompanying drawings.
As shown in fig. 1-3, the integrated selvedge tracking device of the setting machine comprises a fixed component 1, a rotating component 2 and an input component 3, wherein the fixed component 1 is installed at the left end of the input component 3, and the rotating component 2 is installed at the right end of the input component 3;
the input assembly 3 comprises an input/output board 4 and a central processor 5, the input/output board 4 is mounted on the surface of the input assembly 3, and the central processor 5 is mounted in the input assembly 3;
the fixing component 1 comprises a driving device 6, and the driving device 6 is arranged at the lower end of the fixing component 1; the driving device 6 is connected with the central processor 5 through a connecting piece.
The fixed assembly 1 is used for fixing the device on one side of a production line, moving a swing arm of the rotating assembly 2, enabling the edge of cloth to enter a needle plate, keeping a certain edge distance, the input assembly 3 is used for connecting the fixed assembly 1 and the rotating assembly 2, and meanwhile, the input assembly 3 is used for connecting an external input signal and transmitting the signal to the fixed assembly 1.
Present selvedge tracer, input/output board 4 and central processor 5 often are connected through the cable with drive arrangement 6, and this just leads to the circuit numerous and diverse and can cause stronger interference signal, influences selvedge tracer's accuracy, also convenient subsequent dismantlement and maintenance simultaneously, the utility model discloses a selvedge tracer then has input/output board 4 and central processor 5 and drive arrangement 6 line weak point, and the interference killing feature is strong, the advantage that the precision is high.
In a further description, the fixing assembly 1 further includes a fixing seat 11 and a supporting frame 12, the fixing seat 11 is installed at an upper end of the supporting frame 12, and a lower end of the supporting frame 12 is connected with an upper end of the driving device 6.
The fixing seat 11 is used for fixing the selvedge device on the production line, the rows of teeth on the production line are matched, the support frame 12 is the connecting piece, on one hand, the support frame is used for connecting the central processor 5, the input/output board 4 and the driving device 6, on the other hand, the support frame also plays a role in supporting the fixing seat 11, and the fixing seat 11 is prevented from being directly connected with the driving device 6.
In a further description, the fixing assembly 1 further includes a speed reducer 7, an upper end of the speed reducer 7 is connected to the fixing seat 11, a lower end of the speed reducer 7 is connected to an output shaft of the driving device 6, and the speed reducer 7 is disposed in the supporting frame 12.
The drive means 6 is decelerated by a decelerator 7 and transmitted to a gear to drive the rail. The reducer 7 is directly connected with the driving device 6 and is entirely hidden in the support frame 12. The planetary transmission mechanism is designed by adopting a small-tooth-difference planetary transmission principle, and has the characteristics of compact structure, small volume, light weight, large transmission ratio range, high transmission efficiency, strong bearing capacity, stable transmission, less heat generation, low noise, high precision, high rigidity and the like.
In a further description, the fixing assembly 1 further includes an encoder 8, the encoder 8 is rotatably installed at the lower end of the driving device 6, and a central axis of the encoder 8 coincides with a central axis of the driving device 6.
The encoder 8 is used for detecting the rotation speed of the rotating assembly 2, and when the rotating assembly 2 rotates too fast or too slow, the encoder 8 can send out a signal to promote the rotating assembly 2 to rotate more rapidly or to slow down the rotation speed. The encoder 8 is rotatably mounted at the lower end of the drive unit 6 for better detection speed and subsequent maintenance and disassembly.
To explain further, the rotating assembly 2 includes a center pillar 21, a fixing ring 22 and a housing 23, the center pillar 21 penetrates the housing 23, the fixing ring 22 is installed at a lower end of the housing 23, and the fixing ring 22 is connected to one side of the input assembly 3.
The center post 21 is used for supporting and connecting with the infrared tracking device, the fixing ring 22 is used for fixing the outer shell 23 on the center post 21 to prevent the outer shell 23 from falling off, and the outer shell 23 is used for connecting the rotating assembly 2 and the input assembly 3. One end of the fixed ring 22 is connected to the input unit 3, and further connects the rotating unit 2 and the input unit 3 together.
In a further description, the fixing ring 22 is a hollow structure, and the inner diameter of the fixing ring 22 is smaller than the outer diameter of the center pillar 21.
The fixing ring 22 is of a hollow structure, so that the center pillar 21 can be inserted into the fixing ring 22, the inner diameter of the fixing ring 22 is smaller than the outer diameter of the center pillar 21, the center pillar 21 can be firmly clamped by the fixing ring 22, the phenomenon that the center pillar 21 falls off cannot occur, and the center pillar 21 is well protected.
More specifically, the fixing ring 22 is made of an elastic material.
The fixing ring 22 is made of an elastic material, so that the fixing ring 22 has a certain elasticity to further fasten the center pillar 21, and meanwhile, the fixing ring 22 is prevented from being easily broken, and the service life of the fixing ring is prolonged.
More specifically, the rotating assembly 2 further includes a dust cap 24, the dust cap 24 is mounted on the upper end of the housing 23, the dust cap 24 is a hollow structure, and the inner diameter of the dust cap 24 is smaller than the outer diameter of the center pillar 21.
The shield 24 is used for protecting casing 23 can not get into the dust, because there is a large amount of dusts in the operational environment of selvedge device, the dust is easy to get into the shell from the junction of shell 23 and center pillar 21, in case the dust piles up too much in the shell, can lead to input assembly 3 to generate heat and scald, influence input assembly 3 and accept the signal, make the operation of device obstructed, so including shield 24 can be fine stop external dust entering device, thereby extension fixture's life.
More specifically, the dust cover 24 is made of an elastic material.
The dust cover 24 is made of an elastic material, so that the dust cover 24 has certain elasticity to further fasten the center post 21, and meanwhile, the dust cover 24 is prevented from being easily broken, and the service life of the dust cover is prolonged.
In a further description, the input/output board 4 is provided with at least four interfaces.
Input/output board 4 is equipped with four at least interfaces, and the interface is used for accepting external infrared probe's signal to give the central treater 5 at rear with signal transmission, thereby assign the order to drive device 6, drive selvedge device operation, be equipped with the interface more than four, can immediately use other interfaces when the interface damages, guarantee the normal operating of device.
The technical principle of the present invention is described above with reference to specific embodiments. The description is made for the purpose of illustrating the principles of the invention and should not be construed in any way as limiting the scope of the invention. Based on the explanations herein, those skilled in the art will be able to conceive of other embodiments of the present invention without any inventive effort, which would fall within the scope of the present invention.
Claims (10)
1. Forming machine integral type selvedge tracer, its characterized in that: the device comprises a fixed component, a rotating component and an input component, wherein the fixed component is arranged at the left end of the input component, and the rotating component is arranged at the right end of the input component;
the input assembly comprises an input/output board and a central processor, the input/output board is arranged on the surface of the input assembly, and the central processor is arranged in the input assembly;
the fixing component comprises a driving device, and the driving device is arranged at the lower end of the fixing component; the driving device is connected with the central processor through a connecting piece.
2. The setting machine integrated selvedge tracking device of claim 1, wherein: the fixing assembly further comprises a fixing seat and a supporting frame, the fixing seat is installed at the upper end of the supporting frame, and the lower end of the supporting frame is connected with the upper end of the driving device.
3. The setting machine integrated selvedge tracking device of claim 2, wherein: the fixing assembly further comprises a speed reducer, the upper end of the speed reducer is connected with the fixing seat, the lower end of the speed reducer is connected with an output shaft of the driving device, and the speed reducer is arranged in the supporting frame.
4. The setting machine integrated selvedge tracking device of claim 2, wherein: the fixed component further comprises an encoder, the encoder is rotatably installed at the lower end of the driving device, and the central axis of the encoder coincides with that of the driving device.
5. The setting machine integrated selvedge tracking device of claim 1, wherein: the rotating assembly comprises a center pillar, a fixing ring and a shell, the center pillar penetrates through the shell, the fixing ring is installed at the lower end of the shell, and the fixing ring is connected with one side of the input assembly.
6. The setting machine integrated selvedge tracking device of claim 5, wherein: the fixing ring is of a hollow structure, and the inner diameter of the fixing ring is smaller than the outer diameter of the center pillar.
7. The setting machine integrated selvedge tracking device of claim 5, wherein: the fixing ring is made of elastic material.
8. The setting machine integrated selvedge tracking device of claim 5, wherein: the rotating assembly further comprises a dustproof cover, the dustproof cover is installed at the upper end of the shell and is of a hollow structure, and the inner diameter of the dustproof cover is smaller than the outer diameter of the center pillar.
9. The setting machine integrated selvedge tracking device of claim 8, wherein: the dustproof cover material is an elastic material.
10. The setting machine integrated selvedge tracking device of claim 1, wherein: the input and output board is provided with at least four interfaces.
Priority Applications (1)
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CN202020751443.5U CN212128549U (en) | 2020-05-09 | 2020-05-09 | Integrated selvedge tracking device of setting machine |
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CN202020751443.5U CN212128549U (en) | 2020-05-09 | 2020-05-09 | Integrated selvedge tracking device of setting machine |
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CN212128549U true CN212128549U (en) | 2020-12-11 |
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CN202020751443.5U Active CN212128549U (en) | 2020-05-09 | 2020-05-09 | Integrated selvedge tracking device of setting machine |
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2020
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