SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a mould machine is pressed from both sides to single rifle.
In order to achieve the above purpose, the following scheme is provided: a single-gun mold clamping machine comprises a machine body, a servo moving assembly and a controller, wherein the controller is installed in the machine body, the servo moving assembly is installed on the upper portion of the machine body, the servo moving assembly is electrically connected with the controller, the single-gun mold clamping machine further comprises a mold clamping assembly and a spray gun module, the spray gun module is connected with the servo moving assembly, the mold clamping assembly is installed in the machine body, the mold clamping assembly comprises a rotary cylinder, a connecting sleeve, a bottom plate, a first mold clamping module and a second mold clamping module, the first mold clamping module and the second mold clamping module are identical and are installed on the bottom plate in a centrosymmetric mode, the rotary cylinder is installed in the machine body and is connected with the bottom plate through the connecting sleeve, the first mold clamping module comprises a support, a driving motor, a first synchronous wheel, a synchronous belt, a second synchronous wheel and a rotating shaft, the support is installed on the bottom plate, the driving motor is installed in the support, the output shaft of the driving motor is in key connection with the first synchronizing wheel, the first synchronizing wheel is connected with the second synchronizing wheel through the synchronous belt, the second synchronizing wheel is in key connection with one end of the rotating shaft, the rotating shaft is connected with the second synchronizing wheel in a rotating mode, the jig is installed at the other end of the rotating shaft, a water baffle and a water baffle plate are arranged in the machine body in an inclined mode, a drainage plate is arranged at the bottom of the water baffle, and the drainage plate is of a sawtooth shape.
Furthermore, a water collecting tank is arranged in the machine body and is positioned at the lower side of the die clamping assembly.
Further, the bottom of the water collecting tank is provided with a collecting box, the collecting box is installed in the machine body, and the collecting box is connected with the water collecting tank through a drainage tube.
Further, the spray gun module comprises a motor and a spray gun, the spray gun is installed on an output shaft of the motor, and the motor is connected with the servo moving assembly through a supporting frame.
Further, a control panel is arranged on the outer side wall of the machine body and electrically connected with the controller.
Further, the jig is provided with a clamp.
The utility model discloses a theory of operation and advantage lie in: the single-gun mold clamping machine sprays paint on the toy in the clamp through the spray gun, after the toy is sprayed, the mold clamping assembly rotates the clamp out of the machine body, the toy can be taken out through manually opening the clamp, and the clamp does not need to be disassembled; meanwhile, the clamp of the other mold clamping module positioned on the bottom plate enters the machine body and is sprayed with paint by the spray gun, so that the single-gun mold clamping machine can effectively reduce the labor intensity of workers and effectively improve the production efficiency of equipment.
Drawings
Fig. 1 is a perspective view of the present invention;
FIG. 2 is a schematic structural view of the present invention;
FIG. 3 is a schematic structural view of the mold clamping assembly of the present invention;
fig. 4 is a schematic structural view of the water baffle of the present invention.
Reference numerals in the drawings of the specification include:
1. the automatic water spraying machine comprises a machine body, 11 parts of a control panel, 12 parts of a water baffle, 13 parts of a flow guide plate, 14 parts of a water collecting tank, 15 parts of a flow guide pipe, 16 parts of a collecting tank, 2 parts of a mold clamping assembly, 21 parts of a rotary cylinder, 22 parts of a connecting sleeve, 23 parts of a bottom plate, 24 parts of a support, 25 parts of a driving motor, 26 parts of a first synchronous wheel, 27 parts of a synchronous belt, 28 parts of a second synchronous wheel, 29 parts of a rotating shaft, 3 parts of a spray gun module, 31 parts of a motor, 32 parts of a spray gun, 4 parts of a servo moving assembly, 5 parts of a jig and 6 parts of a clamp.
Detailed Description
The following is further detailed by the specific embodiments:
as shown in fig. 1 to 4, a single-gun mold clamping machine comprises a machine body 1, a servo moving assembly 4 and a controller, wherein the controller is installed in the machine body 1, the servo moving assembly 4 is installed at the upper part of the machine body 1, the servo moving assembly 4 is electrically connected with the controller, the single-gun mold clamping machine further comprises a mold clamping assembly 2 and a spray gun 32 module 3, the spray gun 32 module 3 is connected with the servo moving assembly 4, the mold clamping assembly 2 is installed in the machine body 1, the mold clamping assembly 2 comprises a rotary cylinder 21, a connecting sleeve 22, a bottom plate 23, a first mold clamping module and a second mold clamping module, the first mold clamping module and the second mold clamping module are identical and are installed on the bottom plate 23 in a centrosymmetric manner, the rotary cylinder 21 is installed in the machine body 1, the rotary cylinder 21 is connected with the bottom plate 23 through the connecting sleeve 22, and the first mold clamping module comprises a bracket 24, a driving motor 25 and a first synchronizing wheel 26, Hold-in range 27, second synchronizing wheel 28 and pivot 29, support 24 installs on bottom plate 23, driving motor 25 installs in support 24, and driving motor 25's output shaft passes through the key-type connection with first synchronizing wheel 26, and first synchronizing wheel 26 passes through hold-in range 27 with second synchronizing wheel 28 and is connected, and second synchronizing wheel 28 passes through the key-type connection with the one end of pivot 29, and pivot 29 rotates with between to be connected, and tool 5 is installed to the other end of pivot 29, be equipped with breakwater 12 and breakwater 12 in the organism 1 and install in organism 1 aslope, the bottom of breakwater 12 is equipped with drainage plate 13, drainage plate 13 is the cockscomb structure.
Wherein, the machine body 1 is a basic shell and a supporting component of the mold clamping machine, the servo moving component 4 is a prior art device, and comprises a plurality of servo motors, a screw rod, a nut, a guide rail slide block and other components, which are not described herein again, the controller is a PLC programmable controller for controlling the electrical components of the mold clamping machine, the mold clamping component 2 is used for clamping the fixture 6 and the toy, the spray gun 32 module 3 is used for spraying paint for the toy, the rotary cylinder 21 of the mold clamping component 2 is used for driving the bottom plate 23 and the first mold clamping module and the second mold clamping module on the bottom plate 23 to move, the connecting sleeve 22 is used for connecting the bottom plate 23 and the rotary cylinder 21, the bottom plate 23 is used for installing the first mold clamping module and the second mold clamping module, the first mold clamping module is used for clamping the fixture 6 and the toy, the bracket 24 of the two mold clamping modules is used for supporting and installing other components, the driving motor 25 is used for driving the first synchronous wheel 26 to rotate, the synchronous belt 27 is used for connecting the first synchronous wheel 26 and the second synchronous wheel 28, so that the first synchronous wheel 26 transmits power to the second synchronous wheel 28, the second synchronous wheel 28 is used for driving the rotating shaft 29 to rotate, the rotating shaft 29 is used for driving the jig 5 to rotate, and the jig 5 is used for installing the clamp 6; the water baffle 12 is used for blocking paint and preventing the paint from being sprayed on the inner wall of the machine body 1, and the guide plate is used for guiding the paint on the water baffle 12 into the water collecting tank 14.
As shown in fig. 2, a water collecting tank 14 is provided in the machine body 1, and the water collecting tank 14 is located at the lower side of the clamping module 2.
Wherein the water collection tank 14 is used to collect excess paint.
As shown in FIG. 2, a collection tank 16 is provided at the bottom of the water collection tank 14 and the collection tank 16 is installed in the machine body 1, the collection tank 16 and the water collection tank 14 being connected through a drainage tube 15.
Wherein, the collecting box 16 is used for collecting the waste paint at the water collecting box 14, and the drainage tube 15 is used for communicating the water collecting box 14 and the collecting box 16.
As shown in fig. 2, the spray gun 32 module 3 comprises a motor 31 and a spray gun 32, the spray gun 32 is mounted on an output shaft of the motor 31, and the motor 31 is connected with the servo moving assembly 4 through a support bracket.
Wherein the motor 31 is used for swinging the electric spray gun 32, so that the spray gun 32 can spray paint in a certain angle range.
As shown in fig. 1 and 2, a control panel 11 is disposed on an outer side wall of the machine body 1, and the control panel 11 is electrically connected to the controller.
Wherein the control panel 11 is used for operating the die clamping machine.
As shown in fig. 4, the jig 5 is provided with a jig 6.
Wherein, anchor clamps 6 are used for the clamping toy for the toy can be sprayed with the paint of specific pattern.
The specific implementation process is as follows:
when the single-gun mold clamping machine works, for example, a state that a first mold clamping module is positioned in a machine body 1 is taken as an example, after the mold clamping machine is started, a controller controls a driving motor 25 of the first mold clamping module to start, an output shaft of the driving motor 25 drives a first synchronizing wheel 26 to rotate, the first synchronizing wheel 26 drives a rotating shaft 29 to rotate through a synchronous belt 27 and a second synchronizing wheel 28, the rotating shaft 29 drives a jig 5 to rotate, the jig 5 drives a clamp 6 and a toy in the clamp 6 to rotate together, a spray gun 32 machine shell sprays the toy in the clamp 6, after the toy of the first mold clamping module is sprayed, the controller controls a rotating cylinder 21 to start, a rotating flag pole drives a bottom plate 23 and the first mold clamping module and the second mold clamping module which are arranged on the bottom plate 23 to rotate by one hundred eighty degrees, namely the first mold clamping module and the second mold clamping module are interchanged, the controller controls the second mold clamping module to start, the fixture 6 installed on the second die clamping module rotates, the spray gun 32 sprays the toy pinched by the second die clamping module, and simultaneously, the operator opens the fixture 6 at the first die clamping module, takes out the toy with the spraying finished and installs a new toy to be sprayed. The process is circulated, and the toy can be continuously painted.
The single-gun mould clamping machine sprays paint on the toy in the clamp 6 through the spray gun 32, after the spraying of the toy is finished, the clamp assembly 2 rotates the clamp 6 out of the machine body 1, the toy can be taken out by manually opening the clamp 6, and the clamp 6 does not need to be disassembled; meanwhile, the clamp 6 of the other die clamping module positioned on the bottom plate 23 enters the machine body 1 and is sprayed by the spray gun 32, so that the single-gun die clamping machine can effectively reduce the labor intensity of workers and simultaneously effectively improve the production efficiency of equipment.
The foregoing are merely exemplary embodiments of the present invention, and no attempt is made to show structural details, features, or other details of the present invention in the form of a more detailed description, which is presented for the purpose of illustration only, the more detailed description being taken by way of example only, and the more detailed description being presented for the purpose of illustrating the principles of the invention as embodied in the form of a more complete and readily available computer-readable medium. It should be noted that, for those skilled in the art, without departing from the structure of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the applicability of the patent. The scope of the claims of the present application shall be determined by the contents of the claims, and the description of the embodiments and the like in the specification shall be used to explain the contents of the claims.