Disclosure of utility model
The utility model aims to provide a copper wire drawing traction device, which solves the problems that in the prior art, a winding drum is directly utilized for winding in the process of drawing and winding, and copper wires are wound on the surface of the winding drum after the copper wires are wound, so that the copper wires are inconvenient to detach, each winding of the copper wires needs to occupy one winding drum, and the cost is increased.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The utility model provides a copper line wire drawing draw gear, includes the link, the surface of link is provided with the connecting cylinder, the surface of link is provided with the first actuating mechanism that drives the connecting cylinder and carry out horizontal direction reciprocating motion, the tip fixed mounting of connecting cylinder has the connection pad, the surface rotation of connecting cylinder is connected with the traction wheel that is used for winding up the copper line, the surface of connection pad is provided with the second actuating mechanism that drives the traction wheel and carry out pivoted, the surface of traction wheel is provided with the auxiliary mechanism that is used for supplementary unloading.
Preferably, the first driving mechanism comprises a first motor, the first motor is fixedly arranged on the surface of the connecting frame, a screw is fixedly arranged at an output shaft port of the first motor, reciprocating threads are formed on the surface of the screw, two sliding rods are fixedly arranged on the surface of the connecting frame, the two sliding rods slide and penetrate through the connecting cylinder, and the screw threads penetrate through the connecting cylinder.
Preferably, the second driving mechanism comprises a second motor, the second motor is fixedly arranged on the surface of the connecting disc, a driving gear is fixedly arranged at an output shaft port of the second motor, a driven gear is fixedly arranged at a position, close to the port, of the surface of the traction wheel, and the driving gear is meshed with the driven gear.
Preferably, the auxiliary mechanism comprises a connecting ring, the connecting ring is arranged at the end part of the traction wheel, which is far away from the connecting disc, a rectangular groove is formed in the side wall of the connecting ring, a connecting rod is connected in a sliding manner in the rectangular groove, a screw rod is inserted into the top of the connecting ring in a rotating manner, the screw rod is in threaded connection with the connecting rod, and a long groove matched with the connecting rod in size is formed in the surface of the traction wheel.
Preferably, the surface of the connecting ring is movably penetrated with a bolt, and the surface of the traction wheel is provided with a threaded hole with the size matched with that of the bolt.
Preferably, an annular groove is formed in the position, close to the end, of the surface of the traction wheel, and the connecting ring is sleeved on the surface of the annular groove.
The utility model has at least the following beneficial effects:
Through setting up assist mechanism, make the copper line twine at the surface of traction wheel and connecting rod after being pulled, after the winding, reverse rotation lead screw makes the connecting rod move towards the elongated slot is inside, and the copper line of coiling can appear the space between traction wheel this moment, and then makes the lapping copper line can be at the traction wheel activity, and the convenience is direct to fade out, and then need not every copper line of coiling all to be equipped with a traction wheel, and the convenience is operated, saves the resource.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present utility model more apparent, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are some embodiments of the present utility model, but not all embodiments of the present utility model. The components of the embodiments of the present utility model generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the utility model, as presented in the figures, is not intended to limit the scope of the utility model, as claimed, but is merely representative of selected embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be noted that: like reference numerals and letters denote like items in the following figures, and thus once an item is defined in one figure, no further definition or explanation thereof is necessary in the following figures. Furthermore, the terms "first," "second," and the like, are used merely to distinguish between descriptions and should not be construed as indicating or implying relative importance.
The electrical components are all connected with an external main controller and 220V mains supply, and the main controller can be conventional known equipment for controlling a computer and the like.
In describing embodiments of the present utility model, it should be noted that the directions or positional relationships indicated by the terms "inner", "outer", "upper", etc. are directions or positional relationships based on those shown in the drawings, or those that are conventionally put in place when the inventive product is used, are merely for convenience of description and simplification of description, and are not indicative or implying that the apparatus or element in question must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as limiting the present utility model.
Referring to fig. 1-4, a copper wire drawing traction device comprises a connecting frame 1, a connecting cylinder 6 is arranged on the surface of the connecting frame 1, a first driving mechanism for driving the connecting cylinder 6 to reciprocate in the horizontal direction is arranged on the surface of the connecting frame 1, a connecting disc 5 is fixedly arranged at the end part of the connecting cylinder 6, a traction wheel 10 for winding copper wires is rotatably connected to the surface of the connecting cylinder 6, a second driving mechanism for driving the traction wheel 10 to rotate is arranged on the surface of the connecting disc 5, an auxiliary mechanism for assisting in discharging is arranged on the surface of the traction wheel 10, copper wires are in traction winding by the traction wheel 10 in use, the whole connecting cylinder 6 and the traction wheel 10 can be driven to move by the first driving mechanism, so that the copper wires can be uniformly wound on the surface of the traction wheel 10, and the copper wires which are wound into the copper wires can be conveniently dismounted by the aid of the auxiliary mechanism after the copper wires are wound.
Further, the first actuating mechanism includes first motor 2, first motor 2 fixed mounting is on the surface of link 1, the output shaft port fixed mounting of first motor 2 has screw rod 3, reciprocating type screw thread has been seted up on the surface of screw rod 3, the surface fixed mounting of link 1 has two slide bars 4, two slide bars 4 all slide and run through connecting cylinder 6, screw rod 3 screw thread runs through connecting cylinder 6, first actuating mechanism in use, start first motor 2, first motor 2 drives screw rod 3 rotation, screw rod 3 drive connecting cylinder 6 moves on two slide bars 4, thereby drive traction wheel 10 on the connecting cylinder 6 and carry out synchronous movement.
Further, the second driving mechanism comprises a second motor 7, the second motor 7 is fixedly arranged on the surface of the connecting disc 5, a driving gear 8 is fixedly arranged at an output shaft port of the second motor 7, a driven gear 9 is fixedly arranged at a position, close to the port, of the surface of the traction wheel 10, the driving gear 8 is meshed with the driven gear 9, the second driving mechanism starts the second motor 7 in use, the second motor 7 drives the driving gear 8 to rotate, the driving gear 8 drives the driven gear 9 to rotate, and accordingly the traction wheel 10 is driven to rotate on the connecting cylinder 6 by the gear.
Further, the auxiliary mechanism comprises a connecting ring 15, the connecting ring 15 is arranged at the end part of the traction wheel 10 far away from the connecting disc 5, a rectangular groove 14 is formed in the side wall of the connecting ring 15, a connecting rod 12 is connected in a sliding mode in the rectangular groove 14, a screw rod 13 is inserted into the top of the connecting ring 15 in a rotating mode, the screw rod 13 is in threaded connection with the connecting rod 12, a long groove 11 which is matched with the connecting rod 12 in size is formed in the surface of the traction wheel 10, the auxiliary mechanism is used, the connecting ring 15 is firstly arranged at the end part of the traction wheel 10, the connecting rod 12 just faces the long groove 11, then a rotating handle is manually rotated, the screw rod 13 is driven to rotate, the connecting rod 12 slides in the rectangular groove 14, so that the top of the connecting rod 12 protrudes out of the traction wheel 10, copper wires are pulled and wound at the moment, after winding is completed, the screw rod 13 is reversely rotated, the connecting rod 12 moves towards the inside the long groove 11, a gap is formed between the wound copper wires and the traction wheel 10, and the rolled copper wires can move on the traction wheel 10, and the copper wires can fade conveniently and directly.
Further, the surface of the connecting ring 15 is movably penetrated with a bolt 16, the surface of the traction wheel 10 is provided with a threaded hole matched with the size of the bolt 16, and the connecting ring 15 is fixedly arranged on the traction wheel 10 through the bolt 16, so that the connecting ring 15 is conveniently and directly detached, and the coiled copper wire is conveniently detached.
Further, an annular groove 17 is formed in the surface of the traction wheel 10 near the end, the connecting ring 15 is sleeved on the surface of the annular groove 17, and the threaded hole is formed in the annular groove 17 by the aid of the annular groove 17, so that the bolt 16 can be aligned with the threaded hole when the connecting ring 15 is installed.
In summary, in use, the copper wire is drawn and wound by the traction wheel 10, in the winding process, only the traction wheel 10 is driven to rotate by the second driving mechanism, meanwhile, the whole connecting cylinder 6 and the traction wheel 10 can be driven to move by the first driving mechanism, so that the copper wire is conveniently and uniformly wound on the surface of the traction wheel 10, meanwhile, the copper wire wound into rolls can be conveniently dismounted by the auxiliary mechanism after the copper wire winding is finished, the first driving mechanism starts the first motor 2 in use, the first motor 2 drives the screw rod 3 to rotate, the screw rod 3 drives the connecting cylinder 6 to move on the two slide bars 4, so that the traction wheel 10 on the connecting cylinder 6 is driven to synchronously move, the second driving mechanism starts the second motor 7 in use, the second motor 7 drives the driving gear 8 to rotate, the driving gear 8 drives the driven gear 9 to rotate, so that the gear drives the traction wheel 10 to rotate on the connecting cylinder 6, the auxiliary mechanism firstly installs the connecting ring 15 at the end part of the traction wheel 10 to enable the connecting rod 12 to just face the long groove 11, then manually rotates the rotating handle, the rotating handle drives the screw rod 13 to rotate, the screw rod 13 drives the connecting rod 12 to slide in the rectangular groove 14, so that the top of the connecting rod 12 protrudes out of the traction wheel 10, at the moment, the copper wire is pulled and wound, after winding is finished, the screw rod 13 is reversely rotated to enable the connecting rod 12 to move towards the inside of the long groove 11, at the moment, a gap exists between the wound copper wire and the traction wheel 10, so that the wound copper wire can move on the traction wheel 10, the copper wire can be conveniently and directly removed, the connecting ring 15 is fixedly installed on the traction wheel 10 through the bolts 16, therefore, the connecting ring 15 can be conveniently and directly detached, the wound copper wire can be conveniently removed, by providing the annular recess 17, the threaded hole is provided in the annular recess 17, so that the bolt 16 can be aligned with the threaded hole just when the connecting ring 15 is mounted.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made therein without departing from the spirit and scope of the utility model, which is defined by the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.