CN217360382U - Ceramic ferrule turnover mechanism for optical fiber jumper wire dispensing and fiber penetrating machine - Google Patents

Ceramic ferrule turnover mechanism for optical fiber jumper wire dispensing and fiber penetrating machine Download PDF

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Publication number
CN217360382U
CN217360382U CN202221500670.6U CN202221500670U CN217360382U CN 217360382 U CN217360382 U CN 217360382U CN 202221500670 U CN202221500670 U CN 202221500670U CN 217360382 U CN217360382 U CN 217360382U
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plate
ferrule
dispensing
groove
fixed
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曹端庆
万梅玲
蔡卫卫
***
其他发明人请求不公开姓名
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Jiangsu Nuoxin Photoelectric Technology Co ltd
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Jiangsu Nuoxin Photoelectric Technology Co ltd
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Abstract

The utility model provides a ceramic ferrule turnover mechanism for fiber threading machine is glued to optic fibre wire jumper point, which relates to the field of optic fibre wire jumper, and comprises a ceramic ferrule and a turnover component, wherein the turnover component comprises a dispensing plate, an upper fixing transverse plate, a lower fixing vertical plate, a fixing hole, a positioning hole and a supporting groove, a clamping block is arranged at the center of two opposite sides of the dispensing plate, a cutting strip is fixed at the bottom end of the dispensing plate, a clamping groove block matched with the clamping block is arranged on the side surface of the upper fixing transverse plate in a matching way, a slot matched with the cutting strip is arranged at the top end of the lower fixing vertical plate, after the fiber threading is finished by dispensing, the upper fixing transverse plate is sequentially taken down, the ceramic ferrule after the fiber threading is dispensed at the moment is vertically placed on the lower fixing vertical plate, the lower fixing plate is horizontally placed, the horizontal placement of the ceramic ferrule can be realized, compared with the manual work of taking out the ceramic ferrules one by one for horizontal placement, the ceramic ferrules can be placed in batches, the efficiency is improved.

Description

Ceramic ferrule turnover mechanism for optical fiber jumper wire dispensing and fiber penetrating machine
Technical Field
The utility model relates to an optic fibre wire jumper field especially relates to an optic fibre wire jumper point is glued and is worn fine machine pottery lock pin tilting mechanism.
Background
The optical fiber jumper, also called optical fiber connector, is used for making the jumper connection from the equipment to the optical fiber wiring link, has thicker protective layer, is generally used in the connection between optical terminal machine and terminal box, the cylinder of accurate centering in the optical fiber connector plug is called the lock pin, the present lock pin is generally the ceramic body, is called the ceramic lock pin, there is a micropore in the center, is used for fixing the optic fibre. The connector is a detachable and classified optical fiber movable connector, so that the connection, conversion and scheduling of optical channels are more flexible, and the connector can be used for debugging and maintaining an optical communication system.
Optical fiber fixes and need pass through the fixed mode of point gluing in the pottery lock pin micropore, it is fixed that present most glue through manual operation point gluing and wear the fine machine to carry out the point gluing and wear the fibre, put ceramic lock pin neatly earlier, glue one bit by one to the lock pin terminal surface with the point gluing head, peel clean optic fibre insertion pottery lock pin micropore to optic fibre outsourcing layer again, after the lock pin is accomplished in the point gluing, still need bake and glue, for the convenience point gluing during the point gluing, ceramic lock pin is vertical to be placed, and need its level to place when baking to glue, avoid toasting the in-process and glue because of the action of gravity produces the overflow or glue and distribute inhomogeneously, after the completion of gluing, need the manual work to take out ceramic lock pin one by one and transversely place, the operating efficiency is low, lead to the tired effect of influence point gluing of personnel for a long time.
Therefore, the ceramic ferrule turnover mechanism for the optical fiber jumper wire dispensing and fiber penetrating machine is provided.
SUMMERY OF THE UTILITY MODEL
The utility model provides a technical problem provide an optic fibre wire jumper point is glued and is worn fine machine pottery lock pin tilting mechanism, solve the problem that the background proposed.
In order to solve the technical problem, the utility model provides a following technical scheme:
the utility model provides an optical fiber jumper wire point is glued and is worn fine machine lock pin tilting mechanism, is including lock pin and upset subassembly, the upset subassembly is including some offset plate, last fixed diaphragm, lower fixed riser, fixed orifices, locating hole and support groove, it installs above the offset plate to go up fixed diaphragm, lower fixed riser is installed in some offset plate below, the fixed orifices runs through evenly arranges at the offset plate center, the locating hole runs through evenly arranges at last fixed diaphragm center and cooperation fixed orifices setting, support the equidistant riser top of seting up under, the two opposite sides centers of offset plate installs the fixture block, the board bottom of gluing is fixed with the cutting, go up fixed diaphragm side cooperation and set up with fixture block complex draw-in groove piece, down fixed riser top seted up with cutting complex slot.
Furthermore, the positioning holes in the upper fixing transverse plate correspond to the fixing holes in the glue dispensing plate one by one, the lower fixing vertical plates are arranged at equal intervals along the long edges of the glue dispensing plate, the arrangement intervals are the same as the arrangement intervals of the fixing holes along the long edges of the glue dispensing plate, and the supporting grooves in the lower fixing vertical plates correspond to the fixing holes in the top end of the lower fixing vertical plates one by one.
Furthermore, the supporting groove penetrates through the side face of the lower fixing vertical plate, the sum of the depth of the supporting groove and the depth of the fixing hole is slightly smaller than the height of the ceramic ferrule, and the sum of the depth of the supporting groove, the depth of the fixing hole and the depth of the positioning hole is slightly larger than the height of the ceramic ferrule.
Furthermore, the side surfaces of the two most side lower fixing vertical plates are fixedly provided with connecting lugs, the side surfaces of the lower fixing vertical plates close to the lower parts are provided with through holes, and connecting rods are inserted into the through holes.
Furthermore, the length of the connecting rod is larger than the maximum vertical distance between the two most lateral lower fixed vertical plates, the side walls at the two ends of the connecting rod are provided with limiting threads, and the limiting threads are in threaded connection with limiting nuts.
Furthermore, the automatic glue-dropping device is characterized by further comprising a swing disc assembly, wherein the swing disc assembly comprises a swing disc frame, a groove, a leakage hole and a plugging piece, the length of the swing disc frame is equal to that of the glue-dropping plate, the groove is equidistantly distributed in the center of the swing disc frame, the leakage hole penetrates through the swing disc frame and is communicated with the groove, the plugging piece is installed at the end part of the leakage hole, the plugging piece comprises a plug, a plugging plate and a handle, the plug is equidistantly distributed on the plugging plate, and the handle is fixed at the center of the side face of the plugging plate.
Furthermore, the shape of the groove is matched with that of the ceramic inserting core, and the arrangement distance of the groove is the same as that of the fixing holes arranged along the long edge of the dispensing plate.
Furthermore, a leakage groove is formed in the side face of the swing disc frame, and a closed magnetic plate is magnetically fixed in the leakage groove.
When the device provided by the technical scheme of the utility model is used, the installation of the turnover component is carried out, firstly, the inserting and matching of the slot and the inserting strip is utilized, the lower fixed vertical plate is installed below the dispensing plate, the upper fixed transverse plate is installed at the top end of the dispensing plate, the ceramic ferrule is further positioned under the matching of the positioning hole, then two groups of connecting rods are connected with a plurality of groups of lower fixed vertical plates through the through holes, the lower fixed vertical plates are fixed under the matching of the limiting nut and the limiting thread, the device can be integrally moved to the lower part of the dispensing fiber threading machine through the connecting rods, the installation is carried out by utilizing the connecting lugs at the side surfaces of the lower fixed vertical plates at both sides, the dispensing and the fiber threading are realized, after the dispensing and the fiber threading are completed, the upper fixed transverse plate and the dispensing plate are sequentially taken down through the connecting rod moving-out device, the ceramic ferrule after the dispensing and the fiber threading is vertically placed on the lower fixed vertical plate, the connecting rod is taken out, the lower fixed plate is horizontally placed, can realize that the level of ceramic lock pin is placed, compare and take out ceramic lock pin one by one in the manual work and transversely place, can place in batches, improve efficiency.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the dispensing plate structure of the present invention;
FIG. 3 is a schematic view of the bottom structure of the dispensing plate of the present invention;
FIG. 4 is a schematic view of the structure of the lower fixing vertical plate of the present invention;
FIG. 5 is a schematic view of the structure of the wobble plate assembly of the present invention;
fig. 6 is the schematic view of the plugging piece structure of the present invention.
Labeled as: 1. the ceramic ferrule 2, the dispensing plate 3, the upper fixing transverse plate 4, the lower fixing vertical plate 5, the fixing hole 6, the positioning hole 7, the support groove 8, the clamping block 9, the inserting strip 10, the clamping groove block 11, the inserting groove 12, the connecting lug 13, the through hole 14, the connecting rod 15, the limiting thread 16, the limiting nut 17, the swing disc frame 18, the groove 19, the leakage hole 20, the plugging piece 21, the plug 22, the plug plate 23, the handle 24, the leakage groove 25 and the sealing magnetic plate.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary and intended to be used for explaining the present invention, and should not be construed as limiting the present invention.
As shown in fig. 1-6, a ferrule turnover mechanism for an optical fiber jumper dispensing and fiber penetrating machine comprises a ferrule 1 and a turnover assembly,
examples
As shown in fig. 1, 2, 3 and 4, the turnover assembly comprises a spot gluing plate 2, an upper fixing transverse plate 3, a lower fixing vertical plate 4, fixing holes 5, positioning holes 6 and supporting grooves 7, wherein the upper fixing transverse plate 3 is arranged above the spot gluing plate 2, the lower fixing vertical plate 4 is arranged below the spot gluing plate 2, the fixing holes 5 are uniformly distributed in the center of the spot gluing plate 2, the lower fixing vertical plates 4 are uniformly distributed along the long side of the spot gluing plate 2 at equal intervals and have the same distribution interval as the fixing holes 5 distributed along the long side of the spot gluing plate 2, the positioning holes 6 are uniformly distributed in the center of the upper fixing transverse plate 3 and are matched with the fixing holes 5, the positioning holes 6 on the upper fixing transverse plate 3 correspond to the fixing holes 5 on the spot gluing plate 2 one by one, the supporting grooves 7 are arranged at the top end of the lower fixing vertical plate 4 at equal intervals, the supporting grooves 7 correspond to the fixing holes 5 on the top end of the lower fixing vertical plate 4 one by one, the supporting grooves 7 are arranged through the side surfaces of the lower fixing vertical plate 4, the sum of the depth of the supporting groove 7 and the depth of the fixing hole 5 is slightly smaller than the height of the ceramic ferrule 1, the sum of the depth of the supporting groove 7, the depth of the fixing hole 5 and the depth of the positioning hole 6 is slightly larger than the height of the ceramic ferrule 1, a clamping block 8 is arranged in the center of two opposite side surfaces of the dispensing plate 2, an inserting strip 9 is fixed at the bottom end of the dispensing plate 2, a clamping groove block 10 matched with the clamping block 8 is arranged on the side surface of the upper fixing transverse plate 3 in a matched mode, and an inserting groove 11 matched with the inserting strip 9 is arranged at the top end of the lower fixing vertical plate 4;
as shown in fig. 4, the side surfaces of the lower fixed vertical plates 4 at the two sides at the most are fixedly provided with connecting lugs 12, the side surfaces of the lower fixed vertical plates 4 close to the lower part are provided with through holes 13, connecting rods 14 are inserted into the through holes 13, the length of each connecting rod 14 is greater than the maximum vertical distance between the lower fixed vertical plates 4 at the two sides at the most, the side walls at the two ends of each connecting rod 14 are provided with limiting threads 15, and the limiting threads 15 are in threaded connection with limiting nuts 16;
as shown in fig. 5 and 6, the ceramic ferrule package structure further comprises a swinging disc assembly, the swinging disc assembly comprises a swinging disc frame 17, a groove 18, a leakage hole 19 and a plugging piece 20, the length of the swinging disc frame 17 is equal to that of the dispensing plate 2, the groove 18 is arranged in the center of the swinging disc frame 17 at equal intervals, the shape of the groove 18 is matched with that of the ceramic ferrule 1, the arrangement interval of the groove 18 is equal to that of the fixing hole 5 arranged along the long edge of the dispensing plate 2, the leakage hole 19 penetrates through the swinging disc frame 17 and is communicated with the groove 18, the plugging piece 20 is arranged at the end part of the leakage hole 19, the plugging piece 20 comprises a plug 21, a plugging plate 22 and a handle 23, the plug 21 is arranged on the plugging plate 22 at equal intervals, the handle 23 is fixed in the center of the side surface of the plugging plate 22, a leakage groove 24 is formed in the side surface of the swinging disc frame 17, and a sealing magnetic plate 25 is magnetically fixed in the leakage groove 24:
when in use, the turnover component is installed, firstly, the lower fixed vertical plate 4 is installed below the dispensing plate 2 by the inserting and connecting cooperation of the slot 11 and the inserting strip 9, then, a plurality of ceramic inserting cores 1 are placed in the swinging disc frame 17 by the swinging disc component, the groove 18 is used for embedding part of the ceramic inserting cores 1 in the swinging disc frame 17 by continuous shaking, after the completion, the closed magnetic plate 25 is taken out, the leakage groove 24 is leaked, the redundant ceramic inserting cores 1 are pulled out, then, the blocking plate 22 is taken out by the handle 23, the plug 21 is separated from the leakage hole 19, the swinging disc frame 17 is vertically placed at the top end of the dispensing plate 2, the leakage hole 19 is aligned with the fixed hole 5, at the moment, the ceramic inserting cores 1 which are horizontally placed fall into the fixed hole 5 and the supporting groove 7 for vertical placement, the operations are continuously repeated, the operations are carried out in a row until the fixed hole 5 on the electric teaching plate 2 is filled with the clamping block 10 and the clamping block 8, an upper fixing transverse plate 3 is arranged at the top end of a dispensing plate 2, the ceramic ferrule 1 is further positioned under the coordination of a positioning hole 6, then two groups of connecting rods 14 are connected with a plurality of groups of lower fixing vertical plates 4 through holes 13 and are fixed under the coordination of limiting nuts 16 and limiting threads 15, the device can be integrally moved to the lower part of a dispensing fiber threading machine through the connecting rods 14, the device is arranged by utilizing connecting lugs 12 on the side surfaces of the lower fixing vertical plates 4 on two sides to realize dispensing and fiber threading, after the dispensing and fiber threading are finished, the upper fixing transverse plate 3 is sequentially taken down by moving out the device through the connecting rods 14, the ceramic ferrule 1 dispensed and threaded at the moment is vertically placed on the lower fixing vertical plates 4, the connecting rods 14 are taken out, the lower fixing plate 4 is horizontally placed to realize the horizontal placement of the ceramic ferrule 1, compared with the manual operation that the ceramic ferrules are horizontally taken out one by one, the device can be placed in batches, the efficiency is improved.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the present invention in any way, and those skilled in the art will be able to make many variations and modifications of the technical solution of the present invention without departing from the scope of the technical solution of the present invention.

Claims (8)

1. The utility model provides an optic fibre wire jumper point is glued and is worn fine machine pottery lock pin tilting mechanism, includes pottery lock pin (1) and upset subassembly, its characterized in that: the turnover component comprises a spot gluing plate (2), an upper fixing transverse plate (3), a lower fixing vertical plate (4), fixing holes (5), positioning holes (6) and a supporting groove (7), wherein the upper fixing transverse plate (3) is arranged above the spot gluing plate (2), the lower fixing vertical plate (4) is arranged below the spot gluing plate (2), the fixing holes (5) are uniformly distributed in the center of the spot gluing plate (2) in a penetrating manner, the positioning holes (6) are uniformly distributed in the center of the upper fixing transverse plate (3) in a penetrating manner and are matched with the fixing holes (5), the supporting groove (7) is formed in the top end of the lower fixing vertical plate (4) at equal intervals, clamping blocks (8) are arranged in the centers of two opposite side surfaces of the spot gluing plate (2), inserting strips (9) are fixed at the bottom end of the spot gluing plate (2), and clamping groove blocks (10) matched with the clamping blocks (8) are formed in the side surfaces of the upper fixing transverse plate (3), the top end of the lower fixed vertical plate (4) is provided with a slot (11) matched with the inserting strip (9).
2. The ferrule turnover mechanism for the optical fiber jumper wire dispensing fiber penetrating machine according to claim 1, wherein: go up locating hole (6) on fixed diaphragm (3) and fixed orifices (5) one-to-one on some offset plate (2), down fixed riser (4) are arranged and are arranged the interval equally along some offset plate (2) long limit and the interval that fixed orifices (5) were arranged along some offset plate (2) long limit is the same, support groove (7) on the lower fixed riser (4) and the relative fixed orifices (5) one-to-one in lower fixed riser (4) top.
3. The ferrule overturning mechanism for the optical fiber jumper dispensing fiber penetrating machine according to claim 2, wherein: the supporting groove (7) penetrates through the side face of the lower fixing vertical plate (4), the sum of the depth of the supporting groove (7) and the depth of the fixing hole (5) is slightly smaller than the height of the ceramic ferrule (1), and the sum of the depth of the supporting groove (7), the depth of the fixing hole (5) and the depth of the positioning hole (6) is slightly larger than the height of the ceramic ferrule (1).
4. The ferrule turnover mechanism for the optical fiber jumper wire dispensing fiber penetrating machine according to claim 3, wherein: the side face of the lower fixed vertical plate (4) at the two most sides is fixedly provided with a connecting lug (12), the side face of the lower fixed vertical plate (4) close to the lower part is provided with a through hole (13), and a connecting rod (14) is inserted into the through hole (13).
5. The ferrule turnover mechanism for the optical fiber jumper wire dispensing fiber penetrating machine according to claim 4, wherein: the length of the connecting rod (14) is larger than the maximum vertical distance between the lower fixed vertical plates (4) at the two sides, the side walls at the two ends of the connecting rod (14) are provided with limiting threads (15), and the limiting threads (15) are in threaded connection with limiting nuts (16).
6. The ferrule overturning mechanism for the optical fiber jumper dispensing fiber penetrating machine according to claim 5, wherein: still including the balance subassembly, the balance subassembly is including balance frame (17), recess (18), small opening (19) and shutoff piece (20), the length of balance frame (17) equals the length of some offset plates (2), recess (18) equidistant arrange at balance frame (17) center, small opening (19) run through balance frame (17) and set up with recess (18) intercommunication, shutoff piece (20) are installed at small opening (19) tip, shutoff piece (20) are including end cap (21), closure plate (22) and handle (23), end cap (21) equidistant arrange on closure plate (22), handle (23) are fixed at closure plate (22) side center.
7. The ferrule overturning mechanism for the optical fiber jumper dispensing fiber penetrating machine according to claim 6, wherein: the shape of the groove (18) is matched with that of the ceramic ferrule (1), and the arrangement distance of the groove is the same as that of the fixing holes (5) arranged along the long edge of the dispensing plate (2).
8. The ferrule turnover mechanism for the optical fiber jumper wire dispensing fiber penetrating machine according to claim 7, wherein: a leakage groove (24) is formed in the side face of the swing disc frame (17), and a closed magnetic plate (25) is magnetically fixed in the leakage groove (24).
CN202221500670.6U 2022-06-15 2022-06-15 Ceramic ferrule turnover mechanism for optical fiber jumper wire dispensing and fiber penetrating machine Active CN217360382U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221500670.6U CN217360382U (en) 2022-06-15 2022-06-15 Ceramic ferrule turnover mechanism for optical fiber jumper wire dispensing and fiber penetrating machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221500670.6U CN217360382U (en) 2022-06-15 2022-06-15 Ceramic ferrule turnover mechanism for optical fiber jumper wire dispensing and fiber penetrating machine

Publications (1)

Publication Number Publication Date
CN217360382U true CN217360382U (en) 2022-09-02

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ID=83038560

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Application Number Title Priority Date Filing Date
CN202221500670.6U Active CN217360382U (en) 2022-06-15 2022-06-15 Ceramic ferrule turnover mechanism for optical fiber jumper wire dispensing and fiber penetrating machine

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CN (1) CN217360382U (en)

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