CN218659225U - Processing apparatus is collected to abandonment optic fibre - Google Patents

Processing apparatus is collected to abandonment optic fibre Download PDF

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Publication number
CN218659225U
CN218659225U CN202222278229.4U CN202222278229U CN218659225U CN 218659225 U CN218659225 U CN 218659225U CN 202222278229 U CN202222278229 U CN 202222278229U CN 218659225 U CN218659225 U CN 218659225U
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China
Prior art keywords
optical fiber
fiber sheath
support
sheath
centre gripping
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CN202222278229.4U
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Chinese (zh)
Inventor
赵妤辉
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Henan Suhui Photoelectric Technology Co ltd
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Henan Suhui Photoelectric Technology Co ltd
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Priority to CN202222278229.4U priority Critical patent/CN218659225U/en
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Abstract

The utility model discloses a processing apparatus is collected to abandonment optic fibre, including the left socle, right branch frame and elasticity adjustment mechanism, left socle and right branch frame set up on the slide rail, the symmetry is provided with multiunit fixture on left socle and the right branch frame, fixture includes motor and centre gripping runner, motor drive centre gripping runner rotates, be provided with a plurality of convex archs on the outer circumference of centre gripping runner, and the common centre gripping optical fiber sheath of the arch of every group fixture, elasticity adjustment mechanism includes the screw rod, two nuts, two springs and two supporting shoes, the optical fiber sheath top sets up cutting tool, cutting tool sets up between multiunit fixture, cutting tool's cutting edge extensible to in the optical fiber sheath. The utility model discloses can be applicable to not unidimensional optical fiber sheath, set up the spring and provide elasticity, fixture provides certain centre gripping pretightning force when centre gripping optical fiber sheath, grasps optical fiber sheath better, prevents to drop, has reduced the fault rate, has improved work efficiency.

Description

Processing apparatus is collected to abandonment optic fibre
Technical Field
The utility model belongs to the technical field of the optic fibre recovery technique and specifically relates to a processing apparatus is collected to abandonment optic fibre is related to.
Background
The optical fiber is a shorthand of an optical fiber, is a fiber made of glass or plastic and can be used as a light conduction tool, the diameter of a single-mode fiber core is 8-10 micrometers, and a superfine optical fiber is packaged in a plastic sheath so that the fiber can be bent and cannot be broken.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at prior art not enough, provide a processing apparatus is collected to abandonment optic fibre, can be applicable to not unidimensional optical fiber sheath, set up the spring and provide elasticity, fixture provides certain centre gripping pretightning force when centre gripping optical fiber sheath, grasps optical fiber sheath better, prevents to drop, has reduced the fault rate, has improved work efficiency.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a waste optical fiber collecting and processing device comprises a left support, a right support and an elastic adjusting mechanism, wherein the left support and the right support are arranged on a slide rail, a plurality of groups of clamping mechanisms are symmetrically arranged on the left support and the right support, each clamping mechanism comprises a motor and a clamping rotating wheel, the motors drive the clamping rotating wheels to rotate, a plurality of circular arc-shaped bulges are arranged on the outer circumferences of the clamping rotating wheels, and the bulges of each group of clamping mechanisms clamp an optical fiber sheath together;
the elastic adjusting mechanism comprises a screw, two nuts, two springs and two supporting blocks, through holes are formed in the left support and the right support, the screw penetrates through the through holes in the left support and the right support to be in clearance fit with the through holes, the two supporting blocks are arranged at two ends of the screw respectively, the two springs are arranged between the left end supporting block and the left support and between the right end supporting block and the right support respectively, and the two nuts are in threaded connection with the screw and are positioned between the left support and the right support;
and a cutting tool is arranged above the optical fiber sheath and arranged among the plurality of groups of clamping mechanisms, and the cutting edge of the cutting tool can extend into the optical fiber sheath.
Further, left socle and right branch frame the place ahead set up guiding mechanism, and guiding mechanism includes support and a plurality of direction ring, and a plurality of direction rings all set up on the support, and a plurality of direction ring axis collineations, and the optical fiber sheath passes a plurality of direction rings in proper order.
Furthermore, a conveyor belt is arranged below the optical fiber sheath, and the surface of the conveyor belt is of a circular arc structure.
Furthermore, winding mechanisms are arranged behind the left support and the right support, and optical fibers in the optical fiber sheaths are wound through the winding mechanisms.
Further, cutting tool includes the mount, removes the frame, the screw, pin and tool bit, and the mount setting is on left socle or right branch frame, removes the frame and slides and set up in the mount, and the tool bit setting is on removing the frame, and the cutting edge extensible of tool bit is to the optic fibre sheath in, and the screw passes the mount and removes frame threaded connection, has seted up annular spacing groove on the screw, and the pin passes the mount and extends to spacing inslot, and the screw passes the cooperation of pin, spacing groove and is connected with the mount rotation.
The utility model has the advantages that:
1. the utility model provides a processing apparatus is collected to abandonment optic fibre, including left socle, right branch frame and elastic adjustment mechanism, the symmetry is provided with multiunit fixture on left socle and the right branch frame, grasps the optical fiber sheath through fixture, and fixture uses the motor to drive the centre gripping runner, lets the protruding centre gripping optical fiber sheath on the multiunit centre gripping runner make it remove to the predetermined direction, sets up cutting tool at the top, lets the sword stretch into in the optical fiber sheath and cuts the shell open, takes out inside optic fibre recycle. Set up elasticity adjustment mechanism on left socle and right branch frame, according to the distance between the diameter adjustment left socle and the right branch frame of fiber sheath, and then adjust the distance between every group fixture and be applicable to not unidimensional fiber sheath, set up the spring and provide elasticity, fixture provides certain centre gripping pretightning force when centre gripping fiber sheath, grasps fiber sheath better, prevents to drop.
2. The utility model discloses left socle and right branch frame the place ahead set up guiding mechanism, make the optical fiber sheath be in linear state in advance, prevent that the phenomenon of knoing from damaging equipment. The conveyer belt is arranged below the optical fiber sheath and provides supporting force for the cutting tool to cut the optical fiber sheath, and the surface of the conveyer belt is of a circular arc-shaped structure and used for limiting the position of the optical fiber sheath. Winding mechanisms are arranged behind the left support and the right support, optical fibers in the optical fiber sheaths are wound through the winding mechanisms, and the optical fibers are directly collected into coils and are convenient to arrange and transport.
Drawings
Fig. 1 is a top view of the present invention;
fig. 2 is a side view of the present invention;
FIG. 3 is a schematic structural view of the elastic adjustment mechanism of the present invention;
FIG. 4 is a schematic structural view of the conveyor belt of the present invention;
fig. 5 is a top view of the cutting tool of the present invention;
fig. 6 is a schematic view of the internal structure of the cutting tool of the present invention.
In the figure: 1-left support, 2-right support, 3-elastic adjusting mechanism, 301-screw, 302-nut, 303-spring, 304-supporting block, 4-slide rail, 5-clamping mechanism, 501-motor, 502-clamping rotating wheel, 503-protrusion, 6-optical fiber sheath, 7-through hole, 8-cutting tool, 801-fixing frame, 802-moving frame, 803-screw, 804-pin, 805-tool bit, 806-limiting groove, 9-guiding mechanism, 901-support, 902-guiding ring, 10-conveyor belt and 11-winding mechanism.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention. It is to be understood that the embodiments described are only some embodiments of the invention, and not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-6, the utility model provides an abandonment optic fibre collection processing apparatus, including left socle 1, right branch frame 2 and elasticity adjustment mechanism 3, left socle 1 and right branch frame 2 set up on slide rail 4, the symmetry is provided with two sets of fixture 5 on left socle 1 and the right branch frame 2, grasp 6 fibre sheath through fixture 5, fixture 5 includes motor 501 and centre gripping runner 502, motor 501 drive centre gripping runner 502 rotates, be provided with a plurality of convex archs 503 on the outer circumference of centre gripping runner 502, and the common centre gripping of every group fixture 5 fibre sheath 6 of arch 503, starter motor 501 drives centre gripping runner 502 and rotates, let fibre sheath 6 remove according to the predetermined direction. The utility model discloses can firmly restrict optical fiber sheath 6 between fixture 5, can prevent the phenomenon that drops from appearing in the cutting process.
The elastic adjusting mechanism 3 comprises a screw 301, two nuts 302, two springs 303 and two supporting blocks 304, through holes 7 are formed in the left support 1 and the right support 2, the screw 301 penetrates through the through holes 7 in the left support 1 and the right support 2 and is in clearance fit with the screw 301, the two supporting blocks 304 are arranged at two ends of the screw 301 respectively, the two springs 303 are arranged between the left support block 304 and the left support 1 respectively, the right support block 304 and the right support 2 respectively, the two nuts 302 are in threaded connection with the screw 301 and are arranged between the left support 1 and the right support 2, the left support 1 and the right support 2 are controlled to move left and right on the slide rail 4 to be adjusted by twisting the two nuts 302, the distance between the left support 1 and the right support 2 is adjusted according to the diameter of the optical fiber sheath 6, further, the distance between each group of clamping mechanisms 5 is adjusted to be suitable for the optical fiber sheaths 6 of different sizes, the springs 303 are arranged to provide elastic force, the clamping mechanisms 5 provide a certain clamping force for clamping the optical fiber sheath 6 and prevent the optical fiber sheath 6 from falling off.
The cutting tool 8 is arranged above the optical fiber sheath 6, the cutting tool 8 is arranged among the multiple groups of clamping mechanisms 5, the cutting tool 8 comprises a fixed frame 801, a movable frame 802, screws 803, pins 804 and a tool bit 805, the fixed frame 801 is arranged on the left support 1 or the right support 2, the movable frame 802 is arranged in the fixed frame 801 in a sliding mode, the tool bit 805 is arranged on the movable frame 802, a cutting edge of the tool bit 805 can extend into the optical fiber sheath 6, the screws 803 penetrate through the fixed frame 801 to be in threaded connection with the movable frame 802, annular limiting grooves 806 are formed in the screws 803, the pins 804 penetrate through the fixed frame 801 to extend into the limiting grooves 806, the screws 803 are in rotating connection with the fixed frame 801 through matching of the pins 804 and the limiting grooves 806, and the screws 803 are rotated and cannot move back and forth due to the fact that the screws 803 are in rotating connection with the fixed frame 801, the movable frame 802 in threaded connection with the screws is forced to move back and forth, and back are used for helping the tool bit 805 to align with the middle of the optical fiber sheath 6.
Left socle 1 and right branch frame 2 the place ahead set up guiding mechanism 9, and guiding mechanism 9 includes support 901 and a plurality of direction ring 902, and a plurality of direction ring 902 all set up on support 901, and a plurality of direction ring 902 axes collineation, and optical fiber sheath 6 passes a plurality of direction rings 902 in proper order, makes optical fiber sheath 6 be in rectilinear state in advance, prevents to appear the phenomenon of knoing, will damage equipment when the department of knoing reachs fixture 5 department.
The conveying belt 10 is arranged below the optical fiber sheath 6 and provides supporting force for the cutting tool 8 to cut the optical fiber sheath 6, and the surface of the conveying belt 10 is of a circular arc-shaped structure and used for limiting the position of the optical fiber sheath 6 and preventing the optical fiber sheath from being disturbed.
The winding mechanism 11 is arranged behind the left support 1 and the right support 2, optical fibers in the optical fiber sheath 6 are wound through the winding mechanism 11, and the optical fibers are directly collected into coils so as to be convenient to arrange and transport.
The working principle of the utility model is as follows:
an opening is cut out of the optical fiber sheath 6 in advance, the optical fiber sheath 6 penetrates through the guide mechanism 9, then the optical fiber sheath 6 is clamped between the two groups of clamping mechanisms 5, the cutting edge of the cutter head 805 is aligned to the opening formed before the cutter head extends into the opening, the motor 501 is started, the clamping mechanisms 5 act to drive the optical fiber sheath 6 to move, the cutting edge of the cutter head 805 gradually elongates the opening above the optical fiber sheath 6, the internal optical fiber is taken out and wound on the winding mechanism 11, and the optical fiber is collected into a coil by the winding mechanism 11.
Finally, the above embodiments are only used for illustrating the technical solutions of the present invention and are not limited, and other modifications or equivalent replacements made by the technical solutions of the present invention by those of ordinary skill in the art should be covered within the scope of the claims of the present invention as long as they do not depart from the spirit and scope of the technical solutions of the present invention.

Claims (5)

1. A processing apparatus is collected to abandonment optic fibre which characterized in that: the optical fiber sheath clamping device comprises a left support (1), a right support (2) and an elastic adjusting mechanism (3), wherein the left support (1) and the right support (2) are arranged on a sliding rail (4), a plurality of groups of clamping mechanisms (5) are symmetrically arranged on the left support (1) and the right support (2), each clamping mechanism (5) comprises a motor (501) and a clamping rotating wheel (502), the motor (501) drives the clamping rotating wheels (502) to rotate, a plurality of circular arc-shaped bulges (503) are arranged on the outer circumference of each clamping rotating wheel (502), and the bulges (503) of each group of clamping mechanisms (5) clamp an optical fiber sheath (6) together;
the elastic adjusting mechanism (3) comprises a screw rod (301), two nuts (302), two springs (303) and two supporting blocks (304), through holes (7) are formed in the left support (1) and the right support (2), the screw rod (301) penetrates through the through holes (7) in the left support (1) and the right support (2) to be in clearance fit with the screw rod, the two supporting blocks (304) are respectively arranged at two ends of the screw rod (301), the two springs (303) are respectively arranged between the left end supporting block (304) and the left support (1), the right end supporting block (304) and the right support (2), and the two nuts (302) are in threaded connection with the screw rod (301) and are located between the left support (1) and the right support (2);
the cutting tool (8) is arranged above the optical fiber sheath (6), the cutting tool (8) is arranged among the multiple groups of clamping mechanisms (5), and the cutting edge of the cutting tool (8) can extend into the optical fiber sheath (6).
2. The waste optical fiber collection and processing device according to claim 1, wherein: the optical fiber protection device is characterized in that a guide mechanism (9) is arranged in front of the left support (1) and the right support (2), the guide mechanism (9) comprises a support (901) and a plurality of guide rings (902), the guide rings (902) are all arranged on the support (901), the axes of the guide rings (902) are collinear, and the optical fiber sheath (6) sequentially penetrates through the guide rings (902).
3. The waste optical fiber collection and processing device according to claim 1, wherein: and a conveying belt (10) is arranged below the optical fiber sheath (6), and the surface of the conveying belt (10) is of a circular arc structure.
4. The waste optical fiber collection and processing device according to claim 1, wherein: winding mechanisms (11) are arranged behind the left support (1) and the right support (2), and optical fibers in the optical fiber sheath (6) are wound through the winding mechanisms (11).
5. The waste optical fiber collection and processing device according to claim 1, wherein: cutting tool (8) include mount (801), remove frame (802), screw (803), pin (804) and tool bit (805), mount (801) set up on left socle (1) or right branch frame (2), it sets up in mount (801) to remove frame (802) slip, tool bit (805) set up on removing frame (802), the cutting edge of tool bit (805) can extend to in optic fibre sheath (6), screw (803) pass mount (801) and remove frame (802) threaded connection, annular spacing groove (806) have been seted up on screw (803), pin (804) pass mount (801) and extend to in spacing groove (806), screw (803) are connected with mount (801) rotation through the cooperation of pin (804), spacing groove (806).
CN202222278229.4U 2022-08-29 2022-08-29 Processing apparatus is collected to abandonment optic fibre Active CN218659225U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222278229.4U CN218659225U (en) 2022-08-29 2022-08-29 Processing apparatus is collected to abandonment optic fibre

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222278229.4U CN218659225U (en) 2022-08-29 2022-08-29 Processing apparatus is collected to abandonment optic fibre

Publications (1)

Publication Number Publication Date
CN218659225U true CN218659225U (en) 2023-03-21

Family

ID=85555278

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222278229.4U Active CN218659225U (en) 2022-08-29 2022-08-29 Processing apparatus is collected to abandonment optic fibre

Country Status (1)

Country Link
CN (1) CN218659225U (en)

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