CN215828061U - A free fall type online storage device - Google Patents

A free fall type online storage device Download PDF

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Publication number
CN215828061U
CN215828061U CN202023206517.6U CN202023206517U CN215828061U CN 215828061 U CN215828061 U CN 215828061U CN 202023206517 U CN202023206517 U CN 202023206517U CN 215828061 U CN215828061 U CN 215828061U
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CN
China
Prior art keywords
wire
assembly
cylinder
wheel
wire storage
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Withdrawn - After Issue
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CN202023206517.6U
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Chinese (zh)
Inventor
于新强
沈洪法
张玉申
赵廷
沈新华
丁赵伟
李飞
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Huzhou Yuyi Electrical Automation Equipment Co ltd
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Huzhou Yuyi Electrical Automation Equipment Co ltd
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Priority to CN202023206517.6U priority Critical patent/CN215828061U/en
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Abstract

The utility model discloses a free-fall type online wire storage device, which relates to the technical field of wire storage devices and comprises an outer frame; the wire storage assembly is fixedly arranged in the outer frame, a cavity is arranged in the wire storage assembly, and a wire outlet hole is formed in the bottom of the wire storage assembly; the wire distributing assemblies are at least four and are symmetrically and uniformly arranged around the wire storage assembly; the wire distributing assembly comprises a guide rod, and the guide rod is vertically fixed on the side surface of the wire storage assembly; the third motor is fixedly arranged on two sides of the top of the guide rod; the screw rod is in transmission connection with the output end of the third motor; and the third cylinder, third cylinder bottom fixedly connected with base, the base spiro union is in the lead screw outside, the base laminating is in the guide bar side, third cylinder output end fixedly connected with first ejector pin, first ejector pin lies in the cavity when ejecting, and this application can reduce the stranding winding, the continuous processing of being convenient for.

Description

Free falling type online wire storage device
Technical Field
The utility model relates to the technical field of wire storage devices, in particular to a free-fall type online wire storage device.
Background
In optic fibre stranding production process, when the process is gone to the next process from the former, there is the former process and needs to shut down the maintenance, the inconvenient circumstances of shutting down of next process, it is very necessary to carry out the stranding storage of certain surplus at adjacent process, but present storage line device mainly divide into winding coil or wire storage bucket, the winding coil is because the direction of winding changes, the end of a thread needs to be changed the position, can't carry out continuous processing, present wire storage bucket is stacked the stranding and is caused the stranding winding easily and burst apart, and can't accomplish the while of wire storage and be qualified for the next round of competitions.
Disclosure of Invention
The utility model aims to solve the existing problems and provides a free-fall online wire storage device which reduces the winding of a cable and is convenient for continuous processing.
The technical solution of the utility model is as follows:
a free fall type online wire storage device comprises an outer frame; the wire storage assembly is fixedly arranged in the outer frame, a cavity is arranged in the wire storage assembly, a wire outlet hole is formed in the bottom of the wire storage assembly, and a wire inlet is formed in the top of the wire storage assembly; the wire distributing assemblies are at least four and are symmetrically and uniformly arranged around the wire storage assembly; each wire distributing assembly comprises a guide rod, and the guide rods are vertically fixed on the side surfaces of the wire storage assemblies; the two third motors are respectively and fixedly arranged on two sides of the top of the guide rod; the output end of each third motor is in transmission connection with a screw rod; and the bottom of each third cylinder is fixedly connected with a base, the bases are screwed outside different screw rods, the bases are attached to the side surfaces of the guide rods, the output end of each third cylinder is fixedly connected with a first ejector rod, and the first ejector rod can be ejected by the third cylinders and can be retracted into the cavity when the first ejector rod is ejected.
Preferably, the wire storage assembly comprises an inner cylinder and an outer cylinder, the top of the inner cylinder is fixedly connected with the top of the outer cylinder, a cavity is formed between the outer side of the inner cylinder and the inner side of the outer cylinder, a fixing block is fixedly arranged at the bottom of the outer side of the outer cylinder and the top of the outer cylinder, the fixing block is fixedly connected with the guide rod, and a cavity for placing a single-ring cable is formed between the outer cylinder and the inner cylinder, so that the cable winding is reduced.
As preferred, the separated time subassembly still includes the fourth cylinder, and the fourth cylinder is fixed to be set up in the bottom all around of storing up the line subassembly, and fourth cylinder output end fixedly connected with second ejector pin is located the cavity bottom when the second ejector pin is ejecting, and at the initial stage, the cavity is in empty state, and the stranding is placed and is reduced the storage line subassembly that the stranding winding storage line subassembly leads to on the ejector pin and then rotates.
Preferably, the wire coiling device further comprises a wire coiling assembly, the wire coiling assembly is arranged above the wire storage assembly, the wire coiling assembly comprises a rotating shaft, a wire conduit and a second motor, a bearing at the top of the rotating shaft is connected to the top of the outer frame, the second motor is in transmission connection with the rotating shaft through a transmission belt, the wire conduit is inserted and embedded in the rotating shaft, one end of the wire conduit extends out of the top of the rotating shaft, the other end of the wire conduit extends out of the side face of the rotating shaft and points to the cavity, and the wire arranging device provides power for forming a wire in the cavity to keep the wire coiling speed uniform and stable.
Preferably, the wire feeding assembly is arranged above the wire coiling assembly and comprises a wire coiling wheel and a wire extruding wheel, the wire coiling wheel is a driving wheel, the wire extruding wheel is connected with a first cylinder, the first cylinder can drive the wire extruding wheel to move left and right, the wire feeding assembly guides cabling wires, and the cabling wires can conveniently enter a wire guide pipe.
Preferably, the cable-forming disc traction device further comprises a traction assembly, the traction assembly is arranged at the top of the outer frame and comprises a traction wheel set and a first motor, the traction wheel set comprises a large wheel and a small wheel, the first motor is in transmission connection with the large wheel through a transmission belt, and the traction assembly is used for integrally tensioning and rectifying the entering cable-forming disc.
Preferably, the traction assembly further comprises two fixed wheels and a tensioning wheel, the two fixed wheels are arranged above the big wheel and on the side face of the big wheel respectively, a belt is sleeved outside the fixed wheels and the tensioning wheel, the belt compresses the cable, the cable deviation is reduced, and the tensioning wheel tensions the belt.
Preferably, the traction assembly further comprises a second air cylinder, the second air cylinder is fixedly arranged on the outer frame, the output end of the second air cylinder is fixedly connected with a tension wheel, and the tension wheel can be driven by the second air cylinder to adjust the tightness of the belt.
Preferably, a wire outlet assembly is arranged below the wire storage assembly and comprises a wire collecting die and a wire outlet wheel, and a wire guide hole is formed in the wire collecting die and used for guiding and correcting the finished cable which is about to leave the device.
The utility model has the beneficial effects that:
1. the cable enters from a wire inlet above the wire storage component and leaves from a wire outlet below the wire storage component, so that the upper wire storage can be kept and the wire outlet below the upper wire storage can be carried out.
2. The setting of separated time subassembly, when storing up the line on one side and exporting the line, first ejector pin can be with the stranding temporary storage of storing up the line on the upper portion of storing up the line subassembly, when storing up the line and reaching the take-up of certain height with the first ejector pin of third motor drive downward movement near the line of below and piling up, the ejector pin is retrieved, the line stack on storing up line subassembly upper portion falls, can carry out the layering to the line stack of storage like this, the line stack of below is qualified for the next round of competitions, store up line subassembly upper portion and store up the line, the winding that the business turn over arouses when reducing the stranding, in addition under the drive of second motor, the lead screw rotates, drive and reciprocate with second base fixed connection's third cylinder, reduce directly to loosen the line stack on storing up line subassembly upper portion and put down the emergence that causes the problem such as breaking.
3. The guide bar both sides of same separated time subassembly are equipped with a set of third cylinder respectively, third motor and lead screw, the third motor of both sides can be in the state of difference respectively and make the third cylinder height that corresponds different, the motor drive of guide bar one side this side third cylinder rises to the assigned position promptly, first ejector pin is ejecting, after the line pile on first ejector pin reaches the settlement height, the third cylinder descends, first ejector pin withdraws the third cylinder of guide bar opposite side simultaneously and rises, first ejector pin is ejecting, continue to store up the line that stores up line subassembly top, can keep storing up the continuity of line like this.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic front view of the present invention;
FIG. 3 is a schematic view of a cord storage assembly according to the present invention;
FIG. 4 is a rear view of the present invention;
FIG. 5 is an enlarged view of part A of the present invention;
FIG. 6 is an enlarged view of part B of the present invention;
FIG. 7 is an enlarged view of section C of the present invention;
FIG. 8 is a schematic view of a wire distributing assembly of the present invention
FIG. 9 is a schematic view of a cabling arrangement according to the present invention;
in the drawings: 1. a wire storage assembly; 11. an inner barrel; 12. an outer cylinder; 13. a fixed block; 14. a cavity; 2. a wire inlet assembly; 21. a wire winding wheel; 22. a wire extruding wheel; 23. a first cylinder; 3. a traction assembly; 31. a traction wheel set; 32. a belt; 33. a tension wheel; 34. a first motor; 35. a fixed wheel; 36. a second cylinder; 4. a wire coiling assembly; 41. a rotating shaft; 42. a conduit; 43. a second motor; 5. a wire branching assembly; 51. a guide bar; 521. a third cylinder; 522. a fifth cylinder; 531. a first base; 532. a second base; 541. a first lead screw; 542. a second lead screw; 551. a first ejector rod; 552. a third ejector rod; 561. a third motor; 562. a fourth motor; 57. a fourth cylinder; 58. a second ejector rod; 6. a wire outlet assembly; 61. a wire converging die; 62. a wire outlet wheel; 7. an outer frame; 8. and (7) cabling.
Detailed Description
Referring to fig. 1-8, a free-fall type on-line wire storage device includes an outer frame 7; the cable storage assembly 1 is fixedly arranged in the outer frame 7, a cavity 14 is arranged in the cable storage assembly 1, a cable outlet hole is formed in the bottom of the cable storage assembly 1, a cable inlet is formed in the top of the cable storage assembly 1, the cavity 14 is communicated with the cable outlet hole, and the bottom of the cable storage assembly 1 extends towards the center, so that a cable can be placed in the cable storage assembly and pulled out by means of external force; the wire distributing assemblies 5 are at least four, and the wire distributing assemblies 5 are symmetrically and uniformly arranged around the wire storage assembly 1; each wire distributing component comprises a guide rod 51, and the guide rods 51 are vertically fixed on the side surface of the wire storage component 1; the two third motors 56 are respectively and fixedly arranged at two sides of the top of the guide rod 51; the output end of each third motor 56 is in transmission connection with the screw rod 54; and two third air cylinders 52, wherein the bottom of each third air cylinder 52 is fixedly connected with a base 53, the base 53 is screwed outside different screw rods 54, the base 53 is attached to the side surface of the guide rod 51, the output end of each third air cylinder 52 is fixedly connected with a first ejector rod 55, when the base 53 is positioned at the upper part of the wire storage cavity, the first ejector rod 55 is ejected, when the base 53 is positioned at the middle lower part of the wire storage cavity, the first ejector rod 55 is retracted, and when the first ejector rod 55 is ejected, the first ejector rod 55 is positioned in the cavity 14.
Preferably, the wire storage assembly 1 comprises an inner cylinder 11 and an outer cylinder 12, the inner cylinder 11 is fixedly connected with the top of the outer cylinder 12, a cavity 14 is formed between the outer side of the inner cylinder 11 and the inner side of the outer cylinder 12, a fixing block 13 is fixedly arranged at the bottom and the top of the outer side of the outer cylinder 12, and the fixing block 13 is fixedly connected with the guide rod 51.
Preferably, the wire separating assembly 5 further comprises a fourth air cylinder 57, the fourth air cylinder 57 is fixedly arranged at the bottom of the periphery of the wire storing assembly 1, the output end of the fourth air cylinder 57 is fixedly connected with a second ejector rod 58, and the second ejector rod 58 is located at the bottom of the cavity 14 when being ejected out.
Preferably, the wire coiling assembly 4 is further included, the wire coiling assembly 4 is arranged above the wire storage assembly 1, the wire coiling assembly 4 comprises a rotating shaft 41, a wire conduit 42 and a second motor 43, the top of the rotating shaft 41 is in bearing connection with the top of the outer frame 7, the second motor 43 is in transmission connection with the rotating shaft 41 through a transmission belt, the wire conduit 42 is inserted and embedded in the rotating shaft 41, one end of the wire conduit 42 extends out of the top of the rotating shaft 41, and the other end of the wire conduit 42 extends out of the side face of the rotating shaft 41 and points to the cavity 14.
Preferably, the wire feeding device further comprises a wire feeding assembly 2, the wire feeding assembly 2 is arranged above the wire coiling assembly 4, the wire feeding assembly 2 comprises a wire coiling wheel 21 and a wire extruding wheel 22, the wire coiling wheel 21 is a driving wheel, the wire extruding wheel 22 is connected with a first air cylinder 23, and the first air cylinder 23 can drive the wire extruding wheel 22 to move left and right.
Preferably, the traction device further comprises a traction assembly 3, the traction assembly 3 is arranged at the top of the outer frame 7, the traction assembly 3 comprises a traction wheel set 31 and a first motor 34, the traction wheel set 31 comprises a large wheel and a small wheel, and the first motor 34 is in transmission connection with the large wheel through a transmission belt.
Preferably, the traction assembly 3 further includes two fixed pulleys 35 and a tension pulley 33, the two fixed pulleys 35 are respectively disposed above and on the side of the large pulley, and the belt 32 is sleeved outside the fixed pulleys 35 and the tension pulley 33.
Preferably, the traction assembly 3 further includes a second cylinder 36, the second cylinder 36 is fixedly disposed on the outer frame 7, an output end of the second cylinder 36 is fixedly connected with the tension pulley 33, and the tension pulley 33 can be driven by the second cylinder 36 to adjust the tightness of the belt 32.
Preferably, the wire outlet assembly 6 is arranged below the wire storage assembly 1, the wire outlet assembly 6 comprises a wire collecting die 61 and a wire outlet wheel 62, and a wire guide hole is formed in the wire collecting die 61.
When the device is used, firstly, the cabling 8 is threaded during the first use, referring to fig. 9, the cabling 8 enters the traction wheel set 31 from a small wheel, the second cylinder 36 is adjusted to enable the belt 32 to be in a relaxed state during threading, the traction wheel set 31 winds around a circle and then the thread end passes through the thread inlet assembly 2, the second cylinder 36 is adjusted to enable the belt 32 to be tightened, the thread end passes through a space between the wire coiling wheel 21 and the thread extrusion wheel 22, enters the top end of the wire guide tube 42, exits from the bottom end of the wire guide tube 42, then enters the cavity of the thread storage assembly 1 from the thread inlet, leaves the thread storage assembly from the thread outlet below the thread storage assembly 1, enters the thread emergence wheel 62 to leave the device after passing through the thread guide hole of the cabling die 61, and the cabling die 61 clamps the cabling; after the threading step is completed, the fourth cylinder 57 is started, the second ejector rod 58 is ejected, the second motor 43 is started to coil the wire, the wire coiling speed is matched with the production line speed of the previous process, the formed cable is coiled on the outer side of the inner barrel 11, the wire is coiled in the cavity as the cable 8, when the height of the wire stack reaches about one third of the height of the wire storage assembly, the wire collecting die 61 is loosened, the fourth cylinder 57 is closed, the second ejector rod 58 is retracted, and the wire stack falls to the bottom of the wire storage assembly; meanwhile, the wire dividing assembly 5 is started by a third motor 56 on the left side to drive a third air cylinder 52 on the side to move upwards, the third air cylinder 52 stops after reaching the one third position above the wire storage assembly 1, the third air cylinder 52 is started, a first ejector rod 55 ejects, the cabling 8 can be coiled above the first ejector rod 55 at the moment, when the wire stack above the first ejector rod 55 reaches a certain amount, the third motor drives the third air cylinder to move downwards, the first ejector rod 55 is retracted when reaching about the middle of the wire storage assembly 1, the wire stack above falls down, the third air cylinder 52 on the right side moves upwards to the one third position above the wire storage assembly 1 while the third air cylinder on the left side faces downwards, the processes are repeated, and the third air cylinders on the two sides of the wire winding assembly 4 alternately lift to realize the winding and lifting of the wire stack; when the finished cable is output, the finished cable can be drawn out of the cable storage assembly only by providing power at one side of the cable outlet wheel 62.
The above description is only a preferred embodiment of the present invention, and all other embodiments obtained by those skilled in the art without any inventive work shall fall within the scope of the present invention.

Claims (9)

1. A free-fall type on-line wire storage device is characterized by comprising
An outer frame (7);
the wire storage assembly (1) is fixedly arranged in the outer frame (7), a cavity (14) is arranged in the wire storage assembly (1), a wire outlet is formed in the bottom of the wire storage assembly (1), and a wire inlet is formed in the top of the wire storage assembly (1); and
the wire distributing assemblies (5) are at least four, and the wire distributing assemblies (5) are symmetrically and uniformly arranged on the periphery of the wire storage assembly (1);
each of the branching assemblies includes
The guide rod (51), the guide rod (51) is vertically fixed on the side surface of the wire storage assembly (1);
the two third motors (56), the two third motors (56) are respectively and fixedly arranged on two sides of the top of the guide rod (51);
the output end of each third motor (56) is in transmission connection with the screw rod (54); and
the bottom of each third air cylinder (52) is fixedly connected with a base (53), the bases (53) are screwed on the outer sides of the different screw rods (54), the bases (53) are attached to the side faces of the guide rods (51), the output end of each third air cylinder (52) is fixedly connected with a first ejector rod (55), the first ejector rod (55) can be ejected and retracted by the third air cylinders (52), and the first ejector rod (55) is located in the cavity (14) when ejected.
2. The free-fall type online wire storage device according to claim 1, wherein the wire storage assembly (1) comprises an inner cylinder (11) and an outer cylinder (12), the inner cylinder (11) is fixedly connected with the top of the outer cylinder (12), the cavity (14) is formed between the outer side of the inner cylinder (11) and the inner side of the outer cylinder (12), a fixed block (13) is fixedly arranged at the bottom and the top of the outer side of the outer cylinder (12), and the fixed block (13) is fixedly connected with the guide rod (51).
3. The free-fall online wire storage device according to claim 1, wherein the wire dividing assembly (5) further comprises a fourth cylinder (57), the fourth cylinder (57) is fixedly arranged at the bottom of the periphery of the wire storage assembly (1), a second ejector rod (58) is fixedly connected to the output end of the fourth cylinder (57), and the second ejector rod (58) is located at the bottom of the cavity (14) during ejection.
4. The free-fall online wire storage device according to claim 1, further comprising a wire coiling assembly (4), wherein the wire coiling assembly (4) is disposed above the wire storage assembly (1), the wire coiling assembly (4) comprises a rotating shaft (41), a wire conduit (42) and a second motor (43), the top of the rotating shaft (41) is bearing-connected to the top of the outer frame (7), the second motor (43) is connected with the rotating shaft (41) through a transmission belt, the wire conduit (42) is inserted into the rotating shaft (41), one end of the wire conduit (42) extends out of the top of the rotating shaft (41), and the other end of the wire conduit extends out of the side of the rotating shaft (41) and points to the cavity (14).
5. The free-fall type online wire storage device according to claim 4, further comprising a wire inlet assembly (2), wherein the wire inlet assembly (2) is arranged above the wire coiling assembly (4), the wire inlet assembly (2) comprises a wire coiling wheel (21) and a wire extruding wheel (22), the wire coiling wheel (21) is a driving wheel, the wire extruding wheel (22) is connected with a first air cylinder (23), and the first air cylinder (23) can drive the wire extruding wheel (22) to move left and right.
6. The free-fall online wire storage device according to claim 4, further comprising a traction assembly (3), wherein the traction assembly (3) is disposed on top of the outer frame (7), the traction assembly (3) comprises a traction wheel set (31) and a first motor (34), the traction wheel set (31) comprises a large wheel and a small wheel, and the first motor (34) is in transmission connection with the large wheel through a transmission belt.
7. The free-fall type on-line wire storage device according to claim 6, wherein the traction assembly (3) further comprises two fixed wheels (35) and a tension wheel (33), the two fixed wheels (35) are respectively arranged above and at the side of the large wheel, and a belt (32) is sleeved outside the fixed wheels (35) and the tension wheel (33).
8. The free-fall type on-line wire storage device according to claim 7, wherein the traction assembly (3) further comprises a second cylinder (36), the second cylinder (36) is fixedly arranged on the outer frame (7), the output end of the second cylinder (36) is fixedly connected with the tension wheel (33), and the tension wheel (33) can adjust the tightness of the belt (32) under the driving of the second cylinder (36).
9. The free-fall type online wire storage device according to claim 1, wherein a wire outlet assembly (6) is arranged below the wire storage assembly (1), the wire outlet assembly (6) comprises a wire collecting die (61) and a wire outlet wheel (62), and a wire guide hole is formed in the wire collecting die (61).
CN202023206517.6U 2020-12-28 2020-12-28 A free fall type online storage device Withdrawn - After Issue CN215828061U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023206517.6U CN215828061U (en) 2020-12-28 2020-12-28 A free fall type online storage device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023206517.6U CN215828061U (en) 2020-12-28 2020-12-28 A free fall type online storage device

Publications (1)

Publication Number Publication Date
CN215828061U true CN215828061U (en) 2022-02-15

Family

ID=80186563

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023206517.6U Withdrawn - After Issue CN215828061U (en) 2020-12-28 2020-12-28 A free fall type online storage device

Country Status (1)

Country Link
CN (1) CN215828061U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112591559A (en) * 2020-12-28 2021-04-02 湖州宇易电气自动化设备有限公司 Free falling type online wire storage device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112591559A (en) * 2020-12-28 2021-04-02 湖州宇易电气自动化设备有限公司 Free falling type online wire storage device
CN112591559B (en) * 2020-12-28 2025-02-07 湖州宇易电气自动化设备有限公司 A free-fall type online wire storage device

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