CN217097999U - Positioning device for optical fiber production automatic cutting system - Google Patents
Positioning device for optical fiber production automatic cutting system Download PDFInfo
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- CN217097999U CN217097999U CN202123166562.8U CN202123166562U CN217097999U CN 217097999 U CN217097999 U CN 217097999U CN 202123166562 U CN202123166562 U CN 202123166562U CN 217097999 U CN217097999 U CN 217097999U
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Abstract
The utility model discloses an optical fiber production is positioner for automatic cutting system, the on-line screen storage device comprises a base, the both sides fixedly connected with transmission device at base top, transmission device's top fixedly connected with limiting mechanism, the middle part through connection of limiting mechanism bottom has location cutting mechanism, reciprocating gear has all been cup jointed at the both ends of pivot, one side meshing of reciprocating gear has reciprocal tooth pole, the top fixedly connected with locating piece of reciprocal tooth pole one side, location cutting mechanism includes the cutting knife, location cutting mechanism's both sides all through connection has the stopper, one side and the location cutting mechanism fixed connection of spring A. The transmission wheel makes the fine line of lightning produce the removal through the friction of transmission wheel surface and optic fibre line after rotatory to reach automatic transmission's effect, stopper and locating piece separation simultaneously utilize spring B's elasticity to release the location cutting mechanism fast after the separation, thereby reach the effect of location cutting.
Description
Technical Field
The utility model relates to a cutting system technical field specifically is an optic fibre production positioner for automatic cutout system.
Background
The optical fiber line is made by adopting a multi-core optical fiber inner core and a specially-made micro convex lens technology, so that the light beams are highly focused, the reflection of the light beams on the inner wall of the optical fiber is greatly reduced, the transmission stroke is shortened, the transmission time difference can be reduced after the light beams are focused, the digital time difference distortion is effectively reduced, and the optical fiber line is the most reliable digital transmission medium.
Among the prior art at present, traditional cutting mode is that the people cuts with the cutter, and the cutting is not only troublesome but also time, and cutting device cutting efficiency is slow and cutting accuracy is low.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an optic fibre production automatic cutout is positioner for system to solve traditional cutting mode among the above-mentioned background art and be the human cutter cutting, the cutting is not only troublesome moreover time, the problem that cutting device cutting efficiency is slow and cutting accuracy is low.
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: the utility model provides an optic fibre production positioner for automatic cutout system, includes the base, the both sides fixedly connected with transmission device at base top, transmission device's top fixedly connected with limiting mechanism, the middle part through connection of limiting mechanism bottom has location cutting mechanism, one side fixedly connected with motor of transmission device.
Optionally, transmission device includes the pivot, reciprocating gear has all been cup jointed at the both ends of pivot, transmission wheel has been cup jointed at the middle part of pivot, reciprocating gear's one side meshing has reciprocating tooth pole, reciprocating tooth pole one side's top fixedly connected with locating piece, location cutting mechanism includes the cutting knife, location cutting mechanism's both sides all through connection has the stopper, one side fixedly connected with spring A of stopper, one side and the location cutting mechanism fixed connection of spring A, limiting mechanism includes the restriction pole, the middle part fixedly connected with spring B at the inside top of limiting mechanism, spring B's bottom and location cutting mechanism fixed connection.
Optionally, both sides of the bottom of the limiting mechanism are provided with sliding groove holes, and the insides of the sliding groove holes are in through connection with the reciprocating tooth rods.
Optionally, bearings are sleeved at two ends of the transmission mechanism, and the outer sides of the bearings are connected with the inner wall of the support frame through interference fit.
Optionally, the bottom of the base is fixedly connected with the supporting legs, and the two supporting legs are parallel to each other.
Optionally, the front and the back of the positioning and cutting mechanism are both fixedly connected with sliding blocks, and the outer sides of the sliding blocks are in sliding connection with the limiting mechanism.
Optionally, the back of the reciprocating tooth rod is fixedly connected with an auxiliary block, and the outer side of the auxiliary block is slidably connected with the limiting mechanism.
The utility model discloses a technological effect and advantage:
1. the positioning device for the automatic cutting system for optical fiber production drives the rotation through the rotation of the output end of the motor, simultaneously drives the transmission wheel to rotate, and enables the electro-optic fiber line to move through the friction between the surface of the transmission wheel and the optical fiber line after the rotation, thereby achieving the effect of automatic transmission.
2. Positioning device for optical fiber production automatic cutting system, will drive reciprocal tooth pole mountain when transmission device and reciprocating gear are rotatory and remove, in the time of upwards to a certain position, will make locating piece and stopper contact, thereby promote the whole rebound of location cutting mechanism, the restriction pole will contact with the stopper when removing a certain position, extrude the stopper, thereby make stopper and locating piece separation, utilize spring B's elasticity to release location cutting mechanism fast after the separation, thereby reach the effect of location cutting.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is an enlarged schematic view of the structure at A of FIG. 1 according to the present invention;
fig. 3 is a schematic view of the three-dimensional structure of the reciprocating gear of the present invention.
In the figure: the device comprises a base 1, a motor 2, a transmission mechanism 3, a reciprocating gear 301, a reciprocating tooth rod 302, a positioning block 303, a transmission wheel 304, a rotating shaft 305, a positioning and cutting mechanism 4, a spring A401, a limiting block 402, a cutting knife 403, a limiting mechanism 5, a limiting rod 501 and a spring B502.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
The utility model provides a positioner for optic fibre production automatic cutting system as shown in fig. 1-3, including base 1, the both sides at base 1 top carry out fixed stay to restriction mechanism 5 through two transmission device 3, and the cutting cut has been seted up at the middle part of restriction mechanism 5 bottom, and the inside through connection of cutting cut has location cutting mechanism 4, can cut the optic fibre line through the cutting of location cutting mechanism 4, motor 2 is installed to one side of transmission device 3.
The transmission mechanism 3 comprises a rotating shaft 305, a reciprocating gear 301 is fixedly connected to one end of the rotating shaft which is far away from the rotating shaft, the reciprocating gear 301 is provided with teeth on one side, a transmission wheel 304 is sleeved at the middle part of the rotating shaft 305, the electro-optical fiber line is moved by friction of the surface of the transmission wheel 304 and the optical fiber line after rotation, so that the automatic transmission effect is achieved, a reciprocating tooth rod 302 is meshed on one side of the reciprocating gear 301, teeth are fixedly connected to two sides of the inside of the reciprocating tooth rod 302 and meshed with the reciprocating gear 301 through the teeth, the teeth are arranged on only one side of the reciprocating gear 301, the reciprocating tooth rod 302 is enabled to have the up-down moving effect when the reciprocating gear 301 rotates, and a positioning block 303 is fixedly connected to the top of one side of the reciprocating tooth rod 302.
The positioning and cutting mechanism 4 comprises a cutting knife 403, a limiting block 402 slides in the middle of each of two sides of the positioning and cutting mechanism 4, one side of the limiting block 402 is triangular, one side of the limiting block 402 is fixedly connected with the positioning and cutting mechanism 4 through a spring A401, the limiting block 402 can automatically reset through the spring A401, the limiting mechanism 5 comprises two limiting rods 501, the limiting mechanism 5 is fixedly connected with the top of the positioning and cutting mechanism 4 through a spring B502, the reciprocating tooth rods 302 can be driven to move up and down when the rotating shaft 305 and the reciprocating gear 301 rotate, the positioning block 303 can be contacted with the limiting block 402 when the positioning mechanism 5 reaches a certain position, so that the positioning and cutting mechanism 4 is pushed to move up integrally, the limiting rods 501 can be contacted with the limiting block 402 when the positioning mechanism reaches a certain position, the limiting block 402 is squeezed, so that the limiting block 402 is separated from the positioning block 303, after separation, the positioning cutting mechanism 4 is pushed out quickly by the elasticity of the spring B502, so that the positioning cutting effect is achieved.
Claims (7)
1. The utility model provides an optic fibre production positioner for automatic cutout system, includes base (1), its characterized in that: the utility model discloses a motor, including base (1), both sides fixedly connected with transmission device (3) at base (1) top, the top fixedly connected with limiting mechanism (5) of transmission device (3), the middle part through connection of limiting mechanism (5) bottom has location cutting mechanism (4), motor (2) are installed to one side of transmission device (3).
2. The positioning device for the automatic cutting system in optical fiber production according to claim 1, wherein: the transmission mechanism (3) comprises a rotating shaft (305), two ends of the rotating shaft (305) are sleeved with reciprocating gears (301), a transmission wheel (304) is sleeved in the middle of the rotating shaft (305), one side of the reciprocating gear (301) is engaged with a reciprocating tooth rod (302), the top of one side of the reciprocating tooth rod (302) is fixedly connected with a positioning block (303), the positioning cutting mechanism (4) comprises a cutting knife (403), two sides of the positioning cutting mechanism (4) are respectively connected with a limiting block (402) in a penetrating way, one side of the limiting block (402) is fixedly connected with a spring A (401), one side of the spring A (401) is fixedly connected with a positioning cutting mechanism (4), the limiting mechanism (5) comprises a limiting rod (501), the middle part of the top part inside the limiting mechanism (5) is fixedly connected with a spring B (502), the bottom of the spring B (502) is fixedly connected with the positioning cutting mechanism (4).
3. The positioning device for the automatic cutting system in optical fiber production according to claim 1, wherein: and sliding groove holes are formed in two sides of the bottom of the limiting mechanism (5), and the insides of the sliding groove holes are in penetrating connection with the reciprocating tooth rods (302).
4. The positioning device for the automatic cutting system in optical fiber production according to claim 1, wherein: the bearings are sleeved at two ends of the transmission mechanism (3), and the outer sides of the bearings are connected with the inner wall of the support frame (6) through interference fit.
5. The positioning device for the automatic cutting system for optical fiber production according to claim 1, wherein: the bottom of the base (1) is fixedly connected with supporting legs, and the two supporting legs are parallel to each other.
6. The positioning device for the automatic cutting system in optical fiber production according to claim 1, wherein: the front and the back of the positioning cutting mechanism (4) are fixedly connected with sliding blocks, and the outer sides of the sliding blocks are connected with the limiting mechanism (5) in a sliding mode.
7. The positioning device for the automatic cutting system in optical fiber production according to claim 2, wherein: the back of the reciprocating tooth rod (302) is fixedly connected with an auxiliary block, and the outer side of the auxiliary block is connected with the limiting mechanism (5) in a sliding mode.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123166562.8U CN217097999U (en) | 2021-12-16 | 2021-12-16 | Positioning device for optical fiber production automatic cutting system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123166562.8U CN217097999U (en) | 2021-12-16 | 2021-12-16 | Positioning device for optical fiber production automatic cutting system |
Publications (1)
Publication Number | Publication Date |
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CN217097999U true CN217097999U (en) | 2022-08-02 |
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CN202123166562.8U Active CN217097999U (en) | 2021-12-16 | 2021-12-16 | Positioning device for optical fiber production automatic cutting system |
Country Status (1)
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CN (1) | CN217097999U (en) |
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2021
- 2021-12-16 CN CN202123166562.8U patent/CN217097999U/en active Active
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