Rubber composite material winding device
Technical Field
The utility model relates to the technical field of winding devices, in particular to a rubber composite material winding device.
Background
The rubber composite material is a novel material formed by combining rubber with other materials, and the advantages of the other materials are combined due to the rubber, so that the composite material has more excellent performance and various purposes, and in the production process of the rubber composite material, the produced rubber composite material needs to be rolled up through a rolling device so as to be convenient for storage and transportation.
At present, in the process of using a winding device for rubber composite materials, the weight of the wound rubber composite materials is large, and in the process of taking the wound rubber composite materials off from a winding shaft, the winding shaft is easy to cause bending deformation due to the fact that only one end of the winding shaft is stressed, so that the winding device for the rubber composite materials is provided.
Disclosure of utility model
The utility model aims to provide a rubber composite material winding device which is convenient for taking down a wound rubber composite material from a winding shaft, avoids bending deformation of the winding shaft due to stress in the taking process, is suitable for winding rubber composite materials with different widths, improves applicability, and solves the problems that the weight of the wound rubber composite material is large in the using process of the traditional winding device for the rubber composite material, and the winding shaft is easy to cause bending deformation due to the fact that only one end of the winding shaft is stressed in the taking process of the winding shaft.
The technical scheme is that the rubber composite material winding device comprises a winding table, winding drums and supporting tubes, wherein a sliding groove is formed in the upper surface of the winding table, a bidirectional screw rod is rotatably installed in the sliding groove, threaded sliding blocks are movably sleeved on the positions, close to two ends, of the outer surface of the bidirectional screw rod, movable frames are fixedly installed on the upper surfaces of the two threaded sliding blocks, winding shafts are rotatably installed on the inner sides of the two movable frames, the tail ends of the two winding shafts are respectively located in the positions, close to two ends, of the supporting tubes, a winding motor is fixedly installed on the outer side of the movable frames, a movable motor is fixedly installed on one side of the outer surface of the winding table, a hydraulic cylinder is fixedly installed on the middle position of the upper surface of the winding table, and the output ends of the hydraulic cylinder are fixedly connected with the supporting plates.
Preferably, the tail end of the output shaft of the winding motor is fixedly connected with one end of the winding shaft, which is close to the movable frame.
Preferably, a limiting ring is arranged outside the winding shaft.
Preferably, the tail end of the output shaft of the mobile motor is fixedly connected with the tail end of the bidirectional screw rod.
Preferably, the winding cylinder is movably sleeved on the outer surface of the supporting tube, a limiting groove is formed in the outer surface of the supporting tube, and a limiting block is arranged on the inner wall of the winding cylinder.
Preferably, dovetail grooves are symmetrically formed in the positions, close to the front surface and the rear surface, of the upper surface of the winding table, dovetail blocks are fixedly mounted on the positions, close to the front surface and the rear surface, of the lower surface of the movable frame, and the dovetail blocks are located in the dovetail grooves.
Compared with the prior art, the utility model has the following beneficial effects:
1. According to the utility model, the two-way screw rod, the movable frames, the winding shaft, the supporting tube, the hydraulic cylinder and the supporting plate are arranged, so that the wound rubber composite material is conveniently taken down from the winding shaft, meanwhile, bending deformation of the winding shaft due to stress is avoided in the taking process, the winding shaft is suitable for winding rubber composite materials with different widths, the applicability is improved, the winding shaft and the supporting tube with corresponding lengths are selected according to the width of the rubber composite material to be wound, the winding shaft is sleeved on the outer surface of the supporting tube, the two-way screw rod rotates, the two movable frames are driven to move oppositely through the two threaded sliding blocks, the two winding shafts are respectively inserted into the two ends of the supporting tube, the winding motor drives the winding shaft to rotate, so that the supporting tube and the winding shaft are driven to rotate, the rubber composite material can be wound on the outer surface of the winding shaft, the supporting plate is driven to rise when the rubber composite material is taken after winding is completed, the two movable frames reversely move, the two winding shafts and the supporting tube are separated, and the winding shaft is free from bending deformation due to the rubber composite material is not produced in the taking process after winding.
2. According to the utility model, the limiting groove and the limiting block are arranged, so that the effect of limiting the winding drum and preventing the winding drum from slipping on the supporting tube is achieved, when the winding drum is sleeved on the supporting tube, the limiting block on the inner wall of the winding drum is inserted into the limiting groove on the outer surface of the supporting tube, and the winding drum rotates along with the rotation of the supporting tube, so that slipping does not occur.
3. According to the utility model, the effect of improving the stability of the movable frame is achieved by arranging the dovetail groove and the dovetail block, and the dovetail block synchronously moves in the dovetail groove in the process that the movable frame moves along with the threaded sliding block, so that the movable frame is supported and limited, and the stability of the movable frame is improved.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is an enlarged schematic view of the structure of FIG. 1A according to the present utility model;
FIG. 3 is a partial perspective view of the take-up reel and support tube of the present utility model;
fig. 4 is a schematic diagram of a front view structure of the present utility model.
Reference numeral 1, a winding table; 2, a moving motor, 3, a moving frame, 4, a winding motor, 5, a winding cylinder, 6, a supporting plate, 7, a supporting tube, 8, a winding shaft, 9, a hydraulic cylinder, 10, a chute, 11, a dovetail groove, 12, a dovetail block, 13, a thread sliding block, 14, a bidirectional screw rod, 15, a limiting groove, 16, a limiting block, 17 and a limiting ring.
Detailed Description
The technical scheme of the utility model is further described below with reference to the attached drawings and specific embodiments.
Example 1
As shown in fig. 1-4, the winding device for the rubber composite material provided by the utility model comprises a winding table 1, winding drums 5 and supporting tubes 7, wherein the upper surface of the winding table 1 is provided with a sliding groove 10, a bidirectional screw rod 14 is rotatably arranged in the sliding groove 10, threaded sliding blocks 13 are movably sleeved at positions, close to two ends, of the outer surface of the bidirectional screw rod 14, the upper surfaces of the two threaded sliding blocks 13 are fixedly provided with movable frames 3, winding shafts 8 are rotatably arranged at the inner sides of the two movable frames 3, the tail ends of the two winding shafts 8 are respectively positioned at positions, close to two ends, of the supporting tubes 7, the winding shafts 8 are prismatic and are matched with the inner walls of the supporting tubes 7, limiting rings 17 are arranged outside the winding shafts 8, the winding drums 5 on the outer surface of the supporting tubes 7 play a limiting role, and the winding drums 5 are sleeved on the outer surface of the supporting tubes 7 and are used for winding the rubber composite material.
The winding motor 4 is fixedly arranged on the outer side of the movable frame 3, the tail end of an output shaft of the winding motor 4 is fixedly connected with one end of a winding shaft 8, which is close to the movable frame 3, the movable motor 2 is fixedly arranged on one side of the outer surface of the winding table 1, the tail end of the output shaft of the movable motor 2 is fixedly connected with the tail end of a bidirectional screw rod 14, a hydraulic cylinder 9 is fixedly arranged at the middle position of the upper surface of the winding table 1, and the output end of the hydraulic cylinder 9 is fixedly connected with the supporting plate 6.
When the winding drum 5 and the supporting tube 7 with corresponding lengths are selected according to the width of the rubber composite material to be wound, the winding drum 5 is sleeved on the outer surface of the supporting tube 7, the bidirectional screw rod 14 rotates, the two moving frames 3 are driven to move oppositely through the two threaded sliding blocks 13, the two winding shafts 8 are respectively inserted into the two ends of the supporting tube 7, the winding motor 4 drives the winding shafts 8 to rotate, the supporting tube 7 and the winding drum 5 are driven to rotate, the rubber composite material can be wound on the outer surface of the winding drum 5, when the rubber composite material is taken after winding is completed, the hydraulic cylinder 9 drives the supporting plate 6 to lift and plays a supporting role on the wound rubber composite material, the bidirectional screw rod 14 reversely rotates, the two moving frames 3 reversely move, the two winding shafts 8 are separated from the supporting tube 7, the winding shafts 8 cannot bend and deform due to stress in the process of taking the wound rubber composite material, and the taking of the wound rubber composite material is convenient.
Example two
As shown in fig. 1 and fig. 3, compared with the first embodiment, the winding device for the rubber composite material provided by the utility model further comprises a winding drum 5 movably sleeved on the outer surface of the supporting tube 7, a limiting groove 16 is formed on the outer surface of the supporting tube 7, a limiting block 15 is arranged on the inner wall of the winding drum 5, when the winding drum 5 is sleeved on the supporting tube 7, the limiting block 15 on the inner wall of the winding drum 5 is inserted into the limiting groove 16 on the outer surface of the supporting tube 7, the winding drum 5 rotates along with the rotation of the supporting tube 7, slipping does not occur, dovetail grooves 11 are symmetrically formed on the upper surface of the winding table 1 near the front surface and the rear surface, dovetail blocks 12 are fixedly arranged on the lower surfaces of the two moving frames 3 near the front surface and the rear surface, and the dovetail blocks 12 are positioned inside the dovetail grooves 11.
In this embodiment, in the process that the movable frame 3 moves along with the threaded slider 13, the dovetail block 12 moves synchronously inside the dovetail groove 11, which plays a role in supporting and limiting the movable frame 3, and improves the stability of the movable frame 3.
The above-described embodiments are merely a few preferred embodiments of the present utility model, and many alternative modifications and combinations of the above-described embodiments will be apparent to those skilled in the art based on the technical solutions of the present utility model and the related teachings of the above-described embodiments.