Mounting mechanism for wire spool

By designing an installation mechanism for the winding reel, the height of the winding reel can be adjusted and quick-release installation can be achieved, which solves the limitations of traditional winding reel mechanisms, improves production efficiency and equipment maintenance convenience, and ensures the safe use of cables.

CN223906276UActive Publication Date: 2026-02-13GUANGDONG XUNYUE ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520657954.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-02-13
Estimated Expiration
2035-04-09

AI Technical Summary

Technical Problem

Traditional winding reel mechanisms are difficult to adjust in height, making it difficult to wind thicker cables. They also lack quick-release installation functionality, affecting ease of use and equipment maintenance efficiency.

Method used

A mounting mechanism for a winding reel was designed, comprising a base plate, a sliding plate, a positioning mechanism, and a height detection sensor. The height of the winding reel can be adjusted and quick-release installation can be achieved through the cooperation of the sliding plate and the positioning mechanism. A cooling fan is installed on the base plate for air cooling.

Benefits of technology

It enables flexible adjustment of the winding spool height, improving production efficiency and equipment maintenance efficiency, ensuring that cables of different diameters and lengths can be wound efficiently, reducing manual adjustment time and physical labor consumption, and preventing cables from overheating and being damaged.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223906276U_ABST
Patent Text Reader

Abstract

According to the technical scheme, the mounting mechanism for the wire spool is characterized by comprising a bottom plate; two groups of mounting mechanisms are vertically arranged on the upper end surface of the bottom plate, sliding plates are assembled on the two groups of mounting mechanisms, and positioning mechanisms are assembled on the side surfaces of the two sliding plates; and a wire spool body is detachably mounted between the two groups of positioning mechanisms. The sliding plate is installed between the two sets of installation mechanisms, the height of the positioning mechanism can be freely adjusted, and after the wire spool body is installed on the positioning mechanism, the height of the arranged wire spool body can be adjusted along with the wire spool body; compared with traditional single-height use, the wire spool body can quickly adjust the optimal working position according to different tasks, so that the production efficiency is improved, the equipment debugging time is shortened, meanwhile, the wire spool body can be accurately adjusted according to the diameters and the lengths of different types of cables, and the production efficiency is improved. Therefore, whether a fine optical fiber cable or a thick power cable can be smoothly and efficiently wound.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a winding reel equipment field especially relates to a mounting mechanism for winding reel. BACKGROUND

[0002] Winding reel (Winding Reel or Winder) is a kind of mechanical equipment, mainly used to wind wire, cable, yarn etc. into neat reel or bundle, to facilitate storage, transportation and subsequent use. It can be manually operated, also can be automatic control. Winding reel rotates the shaft, and wire is evenly wound on the shaft or disc. In the automatic winding system, the driving system and control system work together, through adjusting the rotating speed and tension, realize efficient, accurate winding process.

[0003] The traditional winding reel mechanism is mostly realized to the cable winding recovery by the disc body rotatingly installed on the support, but such mode has certain use limitation in use, that is, the winding reel is difficult to adjust the free height;In use, the cable winding thickness depends on the spacing between the winding reel and the bottom of the support, if the winding reel cannot be adjusted in height, in turn, it will lead to that the thicker cable is difficult to adaptably wind on the winding reel, and the cable at the bottom will also constantly rub with the bottom of the support during winding, thereby causing the damage of cable, and when the cable length is longer, the winding reel of single height also cannot completely recover the cable;Meanwhile, the existing winding reel mechanism also lacks quick-release installation of the winding reel body, thereby leading to that the winding reel is difficult to be quickly repaired or replaced, and the use is not convenient enough.

[0004] Therefore, aiming at the above problems, a mounting mechanism for winding reel is provided to solve the problems. UTILITY MODEL CONTENTS

[0005] In order to overcome the defects of the prior art, the purpose of the utility model is to provide a mounting mechanism for winding reel, which realizes height adjustment of winding reel through mounting mechanism, and winding reel can be quickly removed from mounting mechanism, improving use convenience.

[0006] The above technical purpose of the utility model is realized by the following technical scheme:

[0007] A mounting mechanism for winding reel, comprising a bottom plate, a slot is formed in the upper end face of the bottom plate, and a cooling fan is installed in the slot;

[0008] Two groups of mounting mechanisms are vertically arranged on the upper end face of the bottom plate, a sliding plate is assembled on each group of mounting mechanisms, and a positioning mechanism is assembled on the side face of each sliding plate;A winding reel body is detachably installed between the two groups of positioning mechanisms;

[0009] A height detection sensor is assembled on the side face of the sliding plate;

[0010] The mounting mechanism comprises vertical beams arranged on the upper end surface of the base plate, two linear tracks vertically arranged on the side surface of the vertical beams, two track sliders embedded and sliding on the two linear tracks, and the sliding plate arranged on the side surface of the four track sliders and connected with the four track sliders.

[0011] The positioning mechanism comprises limiting seats arranged on the side surface of the sliding plate, sliding grooves arranged on the upper end surface of the limiting seats, and the positioning blocks slidingly arranged in the sliding grooves.

[0012] The spool body is integrally provided with positioning shafts on both sides, the two positioning shafts are integrally provided with positioning blocks on the side surface, and the two positioning blocks are arranged in the limiting seat of one set of positioning mechanisms.

[0013] Further, the limiting seat is arranged in a U-shaped manner and forms a U-shaped groove, and the two sides of the U-shaped groove are arranged in an open manner; and the positioning block is movably arranged in the U-shaped groove of the limiting seat.

[0014] Further, the limiting seat is arranged in a U-shaped manner and forms a U-shaped groove, and the two sides of the U-shaped groove are arranged in an open manner; and the positioning block is movably arranged in the U-shaped groove of the limiting seat.

[0015] Further, the limiting seat is arranged in a U-shaped manner and forms a U-shaped groove, and the two sides of the U-shaped groove are arranged in an open manner; and the positioning block is movably arranged in the U-shaped groove of the limiting seat.

[0016] Further, the mounting mechanism further comprises two bearing seats arranged on the side surface of the vertical beam, a threaded screw rod rotatably arranged between the two bearing seats, a screw rod nut threadedly engaged and arranged on the outer portion of the threaded screw rod, and the side surface of the screw rod nut connected with the sliding plate.

[0017] Further, the vertical beam is provided with a forward and reverse motor, and the end portion of the threaded screw rod penetrates one of the vertical beams and is connected with the output end of the forward and reverse motor.

[0018] In summary, the utility model has the following beneficial effects:

[0019] 1、Through the cooperation of multiple structures arranged in the mounting mechanism, the slide plate and the positioning mechanism mounted between the two groups of mounting mechanisms can be freely adjusted in height. When the winding drum body is installed on the positioning mechanism, the winding drum body arranged at this time can be adjusted in height. Compared with the traditional single height use, the winding drum body of the application can quickly adjust the optimal working position according to different tasks, thereby improving the production efficiency and shortening the equipment debugging time. At the same time, the winding drum body can be accurately adjusted according to the diameter and length of different types of cables, so as to ensure that both thin optical fiber cables and thick power cables can be smoothly and efficiently wound.

[0020] 2、Through the quick release installation between the positioning mechanism and the winding drum body, the user can adjust the positioning mechanism during use, thereby quickly removing the winding drum body. When the winding drum body needs to be maintained or replaced, the adjustment and limiting of the positioning mechanism can greatly reduce the manual adjustment time and improve the efficiency of equipment replacement, thereby optimizing the production rhythm. At the same time, through the limiting of the positioning mechanism, the physical exertion of the operator during installation or replacement of the winding drum body can be reduced, and fatigue caused by long-time use of tools to tighten or remove bolts can be avoided.

[0021] 3、Through the heat dissipation fan arranged on the bottom plate, the winding drum body can be air-cooled and heat-dissipated after being connected to the power supply. During the winding process, especially for cables with large current or high power, the temperature of the cable is easily increased due to resistance heating. By arranging a heat dissipation fan on the bottom plate to air-cool and heat-dissipate the winding drum body, the heat can be quickly removed, the temperature of the cable can be reduced, and insulation damage or cable aging caused by overheating can be avoided, thereby ensuring the long-term safe use of the cable. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 is the overall structure schematic diagram in this embodiment;

[0023] Figure 2 is the installation structure schematic diagram of the winding drum body on the positioning mechanism in this embodiment;

[0024] Figure 3 is the overall installation structure schematic diagram of the positioning mechanism and the mounting mechanism in this embodiment;

[0025] Figure 4 is the structure schematic diagram of the winding drum body in this embodiment.

[0026] In the figure, 1, bottom plate; 2, mounting mechanism; 21, vertical beam; 22, linear track; 23, track slider; 24, bearing seat; 25, threaded screw; 26, screw nut; 27, forward and reverse motor; 28, height detection sensor; 3, sliding plate; 4, positioning mechanism; 41, limiting seat; 42, baffle; 43, light pole; 44, side plate; 45, push rod motor; 5, winding disc body; 51, positioning shaft; 52, positioning block; 6, cooling fan. DETAILED DESCRIPTION

[0027] The utility model will be made further detailed description in combination with the drawings.

[0028] Identical parts are indicated by identical reference numerals. It should be noted that the words "front", "rear", "left", "right", "upper" and "lower" used in the following description refer to the directions in the drawings, and the words "bottom surface" and "top surface", "inner" and "outer" refer to the directions towards or away from the geometric center of a particular component.

[0029] First embodiment;

[0030] Referring to Figures 1-4 As shown in the figure, it is a mounting mechanism for winding disc in the preferred embodiment of the utility model, including bottom plate 1; The upper end surface of bottom plate 1 is provided with a notch, and a cooling fan 6 is mounted in the notch;

[0031] The upper end surface of bottom plate 1 is vertically provided with two groups of mounting mechanisms 2, and the two groups of mounting mechanisms 2 are both assembled with sliding plates 3, and the side surfaces of the two sliding plates 3 are both assembled with positioning mechanisms 4; The winding disc body 5 is detachably mounted between the two groups of positioning mechanisms 4;

[0032] The side surface of sliding plate 3 is assembled with a height detection sensor 28;

[0033] Among them, the mounting mechanism 2 includes the vertical beam 21 arranged on the upper end surface of the bottom plate 1, the vertical beam 21 is vertically provided with two linear tracks 22 on the side surface, the two linear tracks 22 are parallelly arranged and the two track sliders 23 are embedded and slid on the linear tracks 22, and the sliding plate 3 is arranged on the side surface of the four track sliders 23 and connected with the four track sliders 23;

[0034] The positioning mechanism 4 includes the limiting seat 41 arranged on the side surface of the sliding plate 3, the limiting seat 41 is provided with a sliding groove on the upper end surface, and the 46 is slidably arranged in the sliding groove;

[0035] The winding disc body 5 is integrally provided with a positioning shaft 51 on both sides, the two positioning shafts 51 are integrally provided with positioning blocks 52 on the side surfaces, and the two positioning blocks 52 are arranged in the limiting seat 41 of one group of positioning mechanisms 4 respectively.

[0036] In this embodiment, through the cooperation of multiple structures arranged in the mounting mechanism 2, the slide plate 3 and the positioning mechanism 4 mounted between the two groups of mounting mechanisms 2 can be freely adjusted in height. After the winding body 5 is mounted on the positioning mechanism 4, the winding body 5 can be adjusted in height at the same time. Compared with the traditional single height use, the winding body 5 of the application can quickly adjust the optimal working position according to different tasks, thereby improving the production efficiency and shortening the equipment debugging time. At the same time, the winding body 5 can be accurately adjusted according to the diameter and length of different types of cables, so as to ensure that whether it is a small optical fiber cable or a thick power cable, it can be smoothly and efficiently wound.

[0037] Further, by arranging the cooling fan 6 on the bottom plate 1, it can be used to cool the winding body 5 after being connected to the power supply. During the winding process, especially for cables with large current or high power, the temperature of the cable is easy to rise due to resistance heating. By arranging the cooling fan 6 on the bottom plate 1 to cool the winding body 5, the heat can be quickly removed, the temperature of the cable can be reduced, and the insulation damage or aging of the cable caused by overheating can be avoided, thereby ensuring the long-term safe use of the cable.

[0038] It should be noted that the height detection sensor 28 is arranged on the left side of the mounting mechanism 1, so as to accurately detect the current height of the slide plate 3 and provide accurate height data for the user.

[0039] Second embodiment;

[0040] Referring to Figure 1 As shown in the figure, the limiting seat 41 is arranged in a U shape and forms a U-shaped groove, and the two sides of the U-shaped groove are arranged in an open manner. The positioning block 52 is movably arranged in the U-shaped groove of the limiting seat 41. In actual use, the limiting seat 41 is arranged on both sides to form an opening, and the opening can be used for the user to movably place the positioning block 52.

[0041] Third embodiment;

[0042] Referring to Figures 2-3 As shown in the figure, the limiting seat 41 is arranged on both sides of the limiting seat 41, and the two limiting seats 42 are arranged in a U shape. The limiting seat 42 at the bottom is below the positioning shaft 51 and contains the positioning shaft 51. When the positioning block 52 needs to be taken out, the positioning block 52 is only needed to be lifted, and the positioning shaft 51 is separated from the limiting of the limiting plate 42.

[0043] Fourth embodiment;

[0044] Referring to Figures 2-3As shown, the positioning mechanism 4 further comprises two light poles 43 arranged on the upper end face of the limiting seat 41, the upper end portions of the two light poles 43 are jointly provided with a side plate 44, the side plate 44 is provided with a push rod motor 45, the output end of the push rod motor 45 penetrates through the side plate 44 and extends to be connected with the top of the 46. When the output ends of the two push rod motors 45 move downward synchronously, at this time, the two 46 connected with the output ends of the push rod motors 45 will move downward synchronously and until the end portions of the 46 abut against the positioning block 52, at this time, the supporting of the limiting seat 41 to the positioning block 52 and the downward pressing limiting of the 46 to the positioning block 52 are matched, so as to realize the quick installation of the winding disc body 5 between the two groups of positioning mechanisms 4.

[0045] In the embodiment, through the quick release installation between the positioning mechanism 4 and the winding disc body 5, in use, the user can adjust the positioning mechanism 4, so as to quickly take down the winding disc body 5, when the winding disc body 5 needs to be maintained or replaced, through the adjustment and limiting of the positioning mechanism 4, the manual adjustment time can be greatly reduced, the efficiency of equipment replacement is improved, so as to optimize the production rhythm; at the same time, through the limiting of the positioning mechanism 4, the physical consumption of the operator during the installation or replacement of the winding disc body 5 can be reduced, and fatigue caused by long-time use of tools to tighten or disassemble bolts can be avoided.

[0046] Fifth embodiment;

[0047] Referring to Figure 3 As shown, the mounting mechanism 2 further comprises two bearing seats 24 arranged on the side face of the vertical beam 21, a threaded lead screw 25 is rotationally arranged between the two bearing seats 24, a lead screw nut 26 is arranged in external thread engagement with the threaded lead screw 25, and the side face of the lead screw nut 26 is connected with the sliding plate 3. The bearing member arranged in the bearing seat 24 can be used to ensure the smoothness of the threaded lead screw 25 during rotation; at the same time, when the bearing seat 24 is in forward and reverse rotation, the sliding plate 3 arranged can follow the lead screw nut 26 to move back and forth in a straight line within the stroke range of the threaded lead screw 25.

[0048] Sixth embodiment;

[0049] Referring to Figure 3 As shown, a forward and reverse motor 27 is mounted on the side face of the vertical beam 21, and the end portion of the threaded lead screw 25 penetrates through one of the vertical beams 21 and extends to be connected with the output end of the forward and reverse motor 27. The forward and reverse motor 27 arranged can be used to drive the threaded lead screw 25 to rotate; in use, the forward and reverse motor 27 is connected with a motor controller, the motor controller can be used to control the number of rotations and the rotation direction of the motor, in use, the power connection mode of the motor is the prior art, and the control circuit can be realized through simple programming by the person skilled in the art, which belongs to the common knowledge in the art, only the use is described, without modification, so the control mode and circuit connection are not described in detail.

[0050] Detailed implementation process:

[0051] The first step: when the user needs to wind the cable, first install the winding disc body 5, during which the user aligns the two positioning blocks 52 on both sides of the winding disc body 5 with one of the limiting seats 41 respectively, as shown in the embodiment, passes the positioning block 52 through the opening on the side of the limiting seat 41, and places the positioning block 52 into the U-shaped groove formed by the limiting seat 41, while the baffle 42 accommodates the positioning shaft 51, at this time the limiting seat 41 is arranged to support the positioning block 52; Figure 3

[0052] The second step: the user connects power supply to the two groups of push rod motors 45 and connects the synchronizer, so as to control the output stroke of the push rod motors 45, when the output ends of the two push rod motors 45 move downward synchronously, the two 46 connected with the output ends of the push rod motors 45 move downward synchronously and abut against the end of the positioning block 52, at this time the limiting seat 41 supports the positioning block 52 and the 46 limits the downward movement of the positioning block 52, so as to realize the quick installation of the winding disc body 5 between the two groups of positioning mechanisms 4;

[0053] The third step: when the winding disc body 5 is installed, the user can use the winding disc body 5 to realize the recovery of the cable; at the same time, when the diameter of the cable changes, the user can adjust the winding height of the winding disc body 5 according to the requirement, so as to adapt to the diameter of the cable and better wind the cable; during this period, the user connects power supply to the forward and reverse motor 27, when the output end of the forward and reverse motor 27 rotates, the screw rod 25 connected with the output end of the forward and reverse motor 27 can keep synchronous rotation, when the screw rod 25 rotates, the screw nut 26 meshed outside the screw rod 25 can drive the sliding plate 3 to move up and down along the stroke range of the screw rod 25 in a reciprocating manner, when the sliding plate 3 moves, the positioning mechanism 4 installed on the side of the two sliding plates 3 can drive the winding disc body 5 to adjust the height.

[0054] The basic principle and main features of the present application and the advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principle of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.​

Claims

1. A mounting mechanism for a wire reel, characterized by: Including the bottom plate (1), the upper end face of the bottom plate (1) is provided with a notch, and a heat dissipation fan (6) is installed in the notch; The upper end face of the bottom plate (1) is provided with two groups of mounting mechanisms (2) vertically, two groups of the mounting mechanisms (2) are both provided with sliding plates (3), and the side faces of the two sliding plates (3) are both provided with positioning mechanisms (4); the winding drum body (5) is detachably installed between the two groups of the positioning mechanisms (4); The side face of the sliding plate (3) is provided with a height detection sensor (28); The mounting mechanism (2) comprises a vertical beam (21) provided on the upper end face of the bottom plate (1), two straight rails (22) are vertically provided on the side face of the vertical beam (21), the two straight rails (22) are parallel, two rail sliders (23) are slidably embedded in the two straight rails (22), and the sliding plate (3) is provided on the side face of the four rail sliders (23) and connected with the four rail sliders (23); The positioning mechanism (4) comprises a limiting seat (41) provided on the side face of the sliding plate (3), a sliding groove is provided on the upper end face of the limiting seat (41), and a (46) is slidably arranged in the sliding groove; The winding drum body (5) is integrally provided with a positioning shaft (51) on both sides, the positioning shaft (51) is integrally provided with a positioning block (52) on the side face, and the two positioning blocks (52) are respectively arranged in the limiting seat (41) of one group of the positioning mechanism (4).

2. The mounting mechanism for a spool according to claim 1, characterized by: The limiting seat (41) is provided in a U-shaped manner and forms a U-shaped groove, and the two sides of the U-shaped groove are provided in an open manner; the positioning block (52) is movably arranged in the U-shaped groove of the limiting seat (41).

3. The mounting mechanism for a spool according to claim 1, characterized by: The limiting seat (41) is provided with a baffle (42) on each side, the two baffles (42) are both provided in a U-shaped manner, the baffle (42) located at the bottom is below the positioning shaft (51) and accommodates the positioning shaft (51) therein.

4. The mounting mechanism for a spool according to claim 1, characterized by: The positioning mechanism (4) further comprises two light rods (43) provided on the upper end face of the limiting seat (41), a side plate (44) is commonly installed on the upper end portions of the two light rods (43), a push rod motor (45) is installed on the side plate (44), and the output end of the push rod motor (45) penetrates through the side plate (44) and extends to be connected with the top of the (46).

5. The mounting mechanism for a spool according to claim 1, characterized by: The mounting mechanism (2) further comprises two bearing seats (24) provided on the side face of the vertical beam (21), a threaded lead screw (25) is rotatably arranged between the two bearing seats (24), a lead screw nut (26) is threadedly engaged on the outer portion of the threaded lead screw (25), and the side face of the lead screw nut (26) is connected with the sliding plate (3).

6. The mounting mechanism for a spool according to claim 5, characterized by: A forward and reverse motor (27) is installed on the side face of the vertical beam (21), and the end portion of the threaded lead screw (25) penetrates through one of the vertical beams (21) and extends to be connected with the output end of the forward and reverse motor (27).