Winding displacement ware for polyester winding
Technical Field
The utility model relates to the technical field of wire arranging devices, in particular to a wire arranging device for polyester winding.
Background
The polyester fiber is a synthetic fiber with excellent quality, the strength of the prepared suture is high, the suture is inferior to nylon threads in various sutures, the shrinkage rate of the suture is small and is less than 1% after proper shaping, so that the sewn stitch can be kept flat and attractive all the time, no shrinkage exists, the moisture regain is low, the high temperature resistance, the low temperature resistance, the light resistance and the water resistance are good, the polyester threads need to be wound after being produced, a winding device is needed in the winding process, and the winding device has the function of enabling the polyester threads to be uniformly wound on the surface of a bobbin.
The utility model discloses a winding displacement device for polyester winding, which comprises a rotating rod, wherein a winding drum is fixedly connected to the middle part of a rod body of the rotating rod, two ends of the rotating rod are respectively and rotatably connected with a support, one side, far away from the rotating rod, of the bottom of the inner end of the support is rotatably connected with a screw rod, and one end of the screw rod penetrates through the support on one side and is fixedly connected with a second motor.
In view of the above related art, the inventor considers that the following defects are present in the above device, in which the winding drum is driven to rotate by the first motor, the second motor drives the screw to rotate, so that the screw drives the cross moving plate to move back and forth, and then the wire guide plate moves back and forth along with the cross moving plate, so that the polyester yarn is uniformly wound on the winding drum, in the process, when the second motor is damaged, the polyester yarn can only be wound on one side of the winding drum, thus causing non-uniformity of winding, and the failure rate of the machine is improved by using two motors.
Disclosure of utility model
In order to solve the problems, the utility model provides a wire arranging device for polyester winding.
The technical aim of the utility model is achieved through the following technical scheme that the wire arranging device for polyester wire winding comprises two mutually symmetrical supporting plates, wherein a motor is fixedly arranged on the side wall of one supporting plate, an output shaft of the motor penetrates through the supporting plate and is rotationally connected with the supporting plate, a winding roller for collecting polyester wires is arranged at the end part of the output shaft of the motor, sliding rods are fixedly arranged on the side walls of the two supporting plates, which are close to each other, a wire guide plate is arranged on the outer wall of each sliding rod in a sliding mode, a control device for controlling the wire guide plate to move back and forth is arranged on each supporting plate, and the control device comprises a control component and a driving component.
Through adopting above-mentioned technical scheme, when the staff need collect the dacron line, the staff need pass the wire guide plate with the one end of dacron line and mutually fixed with the wind-up roll. Subsequently, the staff needs to start the motor, and then makes the motor output shaft rotate to make the collection roller rotate under the effect of motor output shaft, and then make the dacron winding to the outer wall of wind-up roll on, at this in-process, controlling means control wire guide plate removes, and then makes the even winding of dacron line to the outer wall of wind-up roll on, and controlling means can drive through the motor when using, need not to use the second motor, and then has reduced the inhomogeneous probability of dacron line winding. At this time, one motor also reduces the probability of failure.
Further, one of them run through on the lateral wall of backup pad and offered the spout, control assembly is including sliding the slider that sets up in the spout, the fixed arc spare that sets up on the slider lateral wall, slider and wire guide plate are fixed each other, arc wall has been run through to the upper surface of arc spare, control assembly still sets up the rocker in the actuating lever bottom surface including rotating the actuating lever that sets up in arc wall and fixed setting.
Further, the drive assembly includes the fixed mounting box that sets up on the backup pad lateral wall, the fixed incomplete gear that sets up on the motor output shaft outer wall, with the first gear of incomplete gear intermeshing, the fixed head rod that sets up on first gear lateral wall, the fixed first bevel gear that sets up on the head rod kept away from first gear lateral wall, with the second bevel gear of first bevel gear intermeshing and the fixed second connecting rod that sets up at second bevel gear upper surface, the second connecting rod runs through the mounting box and is fixed with the rocker each other, the head rod runs through the mounting box and extends to the mounting box in and is fixed with first bevel gear each other.
Through adopting above-mentioned technical scheme, when motor output shaft rotates, incomplete gear rotates under motor output shaft's effect, and then make first gear rotate under incomplete gear's effect (by the figure 2, incomplete gear rotates the round just can rotate round of first gear), thereby make the head rod rotate under first gear's effect, and then make first bevel gear rotate under first bevel gear's effect, thereby make second bevel gear rotate under first bevel gear's effect, and then make second connecting rod rotate under second bevel gear's effect, thereby make the rocker rotate under second connecting rod's effect, and then make rocker, actuating lever and arcwall spare drive slider slide along the spout in (at this in-process, relative rotation takes place for actuating lever and arcwall groove), thereby make slider drive wire guide plate remove, and then make wire guide plate control polyester yarn even winding to the outer wall of collecting roller (at this in-process, first gear rotates round, slider accomplishes round back and forth slip), in this process, and then the uneven probability of polyester yarn winding has been reduced to need not use the second motor. At this time, one motor also reduces the probability of failure.
Further, the lateral wall of installation box has run through and has been seted up the rotation groove, head rod and rotation groove rotate to be connected, the cover is equipped with two spacing rings on the outer wall of head rod, spacing ring and head rod are fixed each other, two the lateral wall that the spacing ring is close to each other respectively with the inner wall and the lateral wall butt of installation box.
Through adopting above-mentioned technical scheme, the spacing ring has reduced the probability that the head rod takes place to remove, and then has reduced the probability that first bevel gear and second bevel gear separated each other to the stability of device has been improved.
Further, a blocking ring is sleeved on the outer wall of the second connecting rod, the blocking ring and the second connecting rod are mutually fixed, and the bottom surface of the blocking ring is abutted to the upper surface of the mounting box.
Through adopting above-mentioned technical scheme, blockking the ring and having reduced the probability that the second connecting rod moved downwards under the effect of gravity, and then reduced the probability that first bevel gear and second bevel gear separated each other to the stability of device has been improved.
Further, a rubber piece is fixedly arranged on the inner top wall of the sliding groove, a plurality of anti-skidding lines are formed in the upper surface array of the sliding piece, and the upper surface of the sliding piece is abutted to the bottom surface of the rubber piece.
Through adopting above-mentioned technical scheme, rubber has good elasticity, adopts rubber spare and the anti-skidding line that rubber material made to improve the biggest static friction of slider and spout, and then has reduced the slider and received the external force to take place gliding probability to the stability of device has been improved.
Further, tension rollers are fixedly arranged on the side walls of the two support plates, which are close to each other.
Through adopting above-mentioned technical scheme, when the staff need pass the wire board with the one end of polyester yarn and with the wind-up roll mutually fixed, the staff need walk around the lower extreme of tension roller with the polyester yarn and pass wire board and wind-up roll mutually fixed, and then make the polyester yarn collapse to make the winding of polyester yarn more pleasing to the eye.
Further, the motor and the wind-up roller are connected with each other through a connecting device.
Through adopting above-mentioned technical scheme, through connecting device interconnect between motor and the wind-up roll, reduced the degree of difficulty that the wind-up roll was dismantled to the staff to the work degree of difficulty of staff has been reduced.
In summary, the utility model has the following beneficial effects:
1. In the application, when a worker needs to collect the polyester yarns, the worker needs to pass one end of the polyester yarns through the wire guide plate and fix the wire guide plate and the winding roller mutually. Subsequently, the staff needs to start the motor, and then makes the motor output shaft rotate to make the collection roller rotate under the effect of motor output shaft, and then make the dacron winding to the outer wall of wind-up roll on, at this in-process, controlling means control wire guide plate removes, and then makes the even winding of dacron line to the outer wall of wind-up roll on, and controlling means can drive through the motor when using, need not to use the second motor, and then has reduced the inhomogeneous probability of dacron line winding. At this time, one motor also reduces the probability of failure;
2. According to the application, when the motor output shaft rotates, the incomplete gear rotates under the action of the motor output shaft, so that the first gear rotates under the action of the incomplete gear (the incomplete gear rotates for a plurality of circles, and the first gear rotates for one circle, so that the first connecting rod rotates under the action of the first gear, so that the first bevel gear rotates under the action of the first connecting rod, so that the second bevel gear rotates under the action of the first bevel gear, so that the second connecting rod rotates under the action of the second bevel gear, so that the rocker rotates under the action of the second connecting rod, so that the rocker, the driving rod and the arc-shaped piece drive the sliding piece to slide along the chute (in the process, the driving rod and the arc-shaped groove relatively rotate), so that the sliding piece drives the wire guide plate to move, so that the wire guide plate controls the polyester yarn to uniformly wind onto the outer wall of the collecting roller (in the process, the first gear rotates for one circle, and the sliding piece finishes back and forth), and the probability of uneven yarn winding is reduced in the process without using a second motor. At this time, one motor also reduces the probability of failure;
3. According to the application, the limit ring reduces the probability of movement of the first connecting rod, so that the probability of mutual separation of the first bevel gear and the second bevel gear is reduced, and the stability of the device is improved.
Drawings
FIG. 1 is a schematic overall structure of an embodiment of the present utility model;
FIG. 2 is a schematic diagram of a control assembly according to an embodiment of the present utility model;
Fig. 3 is a schematic cross-sectional structure of the mounting box in the embodiment of the present utility model.
The device comprises a supporting plate 1, a motor 12, a winding roller 13, a sliding rod 14, a wire guide plate 2, a sliding groove 21, a rotating groove 3, a control component 31, a sliding piece 32, an arc piece 33, a driving rod 34, a rocker 35, an arc groove 4, a driving component 41, a mounting box 42, an incomplete gear 43, a first gear 44, a first connecting rod 45, a first bevel gear 46, a second bevel gear 47, a second connecting rod 5, a limiting ring 6, a blocking ring 7, an anti-skid pattern 8 and a tension roller.
Detailed Description
The technical solutions of the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present application, and it is apparent that the described embodiments are only some embodiments of the present application, but not all embodiments, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present application are within the scope of the present application.
As shown in fig. 1-3, an embodiment of the application discloses a wire arranging device for polyester winding, which comprises a supporting plate 1, a motor 11, a wind-up roller 12, a sliding rod 13, a wire guide plate 14, a control component 3 and a driving component 4. The support plate 1 is of a rectangular plate-shaped structure, and the support plate 1 is provided with two support plates which are symmetrical to each other. The motor 11 is fixedly arranged on the side wall of one of the support plates 1, the axis of the output shaft of the motor 11 is horizontal, and the output shaft of the motor 11 penetrates through the support plate 1 and is rotationally connected with the support plate 1. The wind-up roller 12 is arranged at the end of the output shaft of the motor 11, the axis of the device coincides with the axis of the output shaft of the motor 11, and the device is used for collecting polyester yarns. The slide bar 13 is of a round bar-shaped structure, the axis of the slide bar is horizontal, and two ends of the slide bar 13 are respectively fixedly arranged on the side walls of the two support plates 1, which are close to each other. The wire guide plate 14 is slidably arranged on the outer wall of the slide bar 13, and the control device is arranged on the support plate 1 and used for controlling the wire guide plate 14 to move back and forth, and comprises a control assembly 3 and a driving assembly 4.
When the worker needs to collect the polyester yarn, the worker needs to pass one end of the polyester yarn through the wire guide plate 14 and fix the end of the polyester yarn with the winding roller 12. Subsequently, the staff needs to start the motor 11, and then makes the motor 11 output shaft rotate, thereby make the collection roller rotate under the effect of motor 11 output shaft, and then make the dacron line twine to on the outer wall of wind-up roll 12, at this in-process, controlling means control wire guide plate 14 removes, and then make the even winding of dacron line to on the outer wall of wind-up roll 12, controlling means can drive through motor 11 when using, need not to use second motor 11, and then reduced the inhomogeneous probability of dacron line winding. At this time, one motor 11 also reduces the probability of failure.
The side wall of one supporting plate 1 is provided with a sliding chute 2 in a penetrating way, and the control assembly 3 comprises a sliding piece 31, an arc-shaped piece 32, a driving rod 33 and a rocker 34. The sliding member 31 is slidably disposed in the chute 2, and the sliding member 31 and the wire guide plate 14 are fixed to each other. The arc-shaped member 32 is fixedly arranged on the side wall of the sliding member 31, and an arc-shaped groove 35 is formed in the upper surface of the arc-shaped member 32 in a penetrating manner. The driving rod 33 is rotatably arranged in the arc-shaped groove 35, and the rocker 34 is fixedly arranged on the bottom surface of the driving rod 33.
The mounting box 41 includes a mounting box 41, an incomplete gear 42, a first gear 43, a first connecting rod 44, a first bevel gear 45, a second bevel gear 46, and a second connecting rod 47. The mounting box 41 is fixedly arranged on the side wall of the supporting plate 1, the incomplete gear 42 is fixedly arranged on the outer wall of the output shaft of the motor 11, and the axis of the incomplete gear is coincident with the axis of the output shaft of the motor 11. The first gear 43 intermeshes with the incomplete gear 42 with its axis horizontal. The first connecting rod 44 is a round rod structure, the axis of which coincides with the axis of the first gear 43, and the first connecting rod 44 is fixedly arranged on the side wall of the first gear 43. The first bevel gear 45 is fixedly disposed on a side wall of the first connecting rod 44 away from the first gear 43, an axis of the first bevel gear is coincident with an axis of the first connecting rod 44, and the first connecting rod 44 penetrates the mounting box 41 and extends into the mounting box 41 to be mutually fixed with the first bevel gear 45. The second bevel gear 46 intermeshes with the first bevel gear 45 with its axis vertical. The second connecting rod 47 is a circular rod structure, the axis of which coincides with the axis of the second bevel gear 46, the second connecting rod 47 is fixedly arranged on the upper surface of the second bevel gear 46, and the second connecting rod 47 penetrates the mounting box 41 and is mutually fixed with the rocker 34.
When the output shaft of the motor 11 rotates, the incomplete gear 42 rotates under the action of the output shaft of the motor 11, so that the first gear 43 rotates under the action of the incomplete gear 42 (as shown in fig. 2, the incomplete gear 42 rotates for a plurality of circles, and the first gear 43 rotates for one circle), so that the first connecting rod 44 rotates under the action of the first gear 43, so that the first bevel gear 45 rotates under the action of the first connecting rod 44, so that the second bevel gear 46 rotates under the action of the first bevel gear 45, so that the second connecting rod 47 rotates under the action of the second bevel gear 46, so that the rocker 34 rotates under the action of the second connecting rod 47, so that the rocker 34, the driving rod 33 and the arc-shaped piece 32 drive the slider 31 to slide along the chute 2 (in the process, the driving rod 33 and the arc-shaped groove 35 rotate relatively), so that the slider 31 drives the wire guide plate 14 to move, so that the wire guide plate 14 controls the polyester wire to uniformly wind onto the outer wall of the collecting roller (in the process, the first gear 43 rotates for one circle, and the slider 31 completes one-time sliding under the action of the first bevel gear 45), and the motor does not need to reduce the probability of uneven winding of the polyester wire in the process. At this time, one motor 11 also reduces the probability of failure.
In order to improve stability of the device, a rotating groove 21 is formed in the side wall of the installation box 41 in a penetrating manner, a first connecting rod 44 is connected with the rotating groove 21 in a rotating manner, two limiting rings 5 are sleeved on the outer wall of the first connecting rod 44, the limiting rings 5 are fixed with the first connecting rod 44, and the side walls, close to each other, of the two limiting rings 5 are respectively abutted to the inner wall and the side wall of the installation box 41. The stop collar 5 reduces the probability of the first connecting rod 44 moving, and thus reduces the probability of the first bevel gear 45 and the second bevel gear 46 being separated from each other, thereby improving the stability of the apparatus.
In order to improve the stability of the device, the outer wall of the second connecting rod 47 is sleeved with a blocking ring 6, the blocking ring 6 and the second connecting rod 47 are mutually fixed, and the bottom surface of the blocking ring 6 is abutted with the upper surface of the mounting box 41. The blocking ring 6 reduces the probability that the second connecting rod 47 moves downward under the action of gravity, and thus reduces the probability that the first bevel gear 45 and the second bevel gear 46 are separated from each other, thereby improving the stability of the apparatus.
In order to improve stability of the device, a rubber member is fixedly arranged on the inner top wall of the chute 2, a plurality of anti-skid patterns 7 are arranged on the upper surface of the sliding member 31 in an array manner, and the upper surface of the sliding member 31 abuts against the bottom surface of the rubber member. Rubber has good elasticity, and the rubber piece made of rubber material and the anti-skid patterns 7 improve the maximum static friction force between the sliding piece 31 and the chute 2, so that the probability that the sliding piece 31 slides under the action of external force is reduced, and the stability of the device is improved.
In order to make the winding of the polyester yarns more beautiful, the tension roller 8 is fixedly arranged on the side wall of the two support plates 1, which are close to each other. When the staff needs to pass one end of the polyester yarn through the wire guide plate 14 and fix the polyester yarn with the wind-up roller 12, the staff needs to pass the polyester yarn around the lower end of the tension roller 8 and pass through the wire guide plate 14 and fix the polyester yarn with the wind-up roller 12, so that the polyester yarn is tightly broken, and the polyester yarn is wound more attractive.
In order to reduce the working difficulty of workers, the motor 11 and the winding roller 12 are connected with each other through a connecting device. The motor 11 and the wind-up roll 12 are connected with each other through the connecting device, so that the difficulty for the workers to disassemble the wind-up roll 12 is reduced, and the working difficulty of the workers is reduced.
The principle of using the winding displacement device for polyester winding in this embodiment is that when a worker needs to collect polyester yarns, the worker needs to pass one end of the polyester yarns through the wire guide plate 14 and fix the one end of the polyester yarns with the winding roller 12. Subsequently, the staff needs to start the motor 11, and then makes the motor 11 output shaft rotate, thereby make the collection roller rotate under the effect of motor 11 output shaft, and then make the dacron line twine to on the outer wall of wind-up roll 12, at this in-process, controlling means control wire guide plate 14 removes, and then make the even winding of dacron line to on the outer wall of wind-up roll 12, controlling means can drive through motor 11 when using, need not to use second motor 11, and then reduced the inhomogeneous probability of dacron line winding. At this time, one motor 11 also reduces the probability of failure.
The above description is only a preferred embodiment of the present utility model, and the protection scope of the present utility model is not limited to the above examples, and all technical solutions belonging to the concept of the present utility model belong to the protection scope of the present utility model. It should be noted that modifications and adaptations to the present utility model may occur to one skilled in the art without departing from the principles of the present utility model and are intended to be within the scope of the present utility model.