SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, an automatic assembly line device easy to clean is provided.
In order to achieve the above purposes, the technical scheme adopted by the utility model is as follows:
an easy-to-clean automated pipeline apparatus comprising:
the device comprises a base, a first mounting frame and a second mounting frame which are parallel to each other are vertically arranged above two ends of the base, and the first mounting frame and the second mounting frame are fixedly connected with the base;
the automatic assembly line device is horizontally arranged above the base, arranged on the first mounting frame and the second mounting frame and used for saving labor;
the dust removal device is horizontally arranged above the automatic assembly line device, the working end of the dust removal device is arranged between the first mounting frame and the second mounting frame, and the dust removal device is used for removing dust on the output end of the automatic assembly line device;
the leaching mechanism is arranged on the first mounting frame and fixedly connected with the first mounting frame, the working direction of the output end of the leaching mechanism faces to the working end of the automatic production line device, and the leaching mechanism plays a role in flushing dirt on the output end of the automatic production line device;
the cleaning device is arranged on the first mounting frame, is positioned below the tail end of the output end of the automatic assembly line device and is used for cleaning impurities and dirt on the output end of the automatic assembly line device;
the drainage mechanism is arranged between the base and the automatic assembly line and is fixedly connected with the base, and the drainage mechanism plays a role in draining sewage.
Preferably, the automatic assembly line device comprises:
the conveying belt is horizontally and transversely arranged above the base and is positioned between the first mounting frame and the second mounting frame;
the two ends of the guide shaft are rotatably connected with the first mounting frame, the guide shaft is sleeved with one end of the conveying belt, and the guide shaft is used for guiding the conveying of the conveying belt;
the two ends of the driving shaft are rotatably connected with the second mounting frame, the driving shaft is sleeved with the other end of the conveying belt, and the driving shaft is used for driving the conveying belt to run;
the output end of the first motor is fixedly connected with one end of the driving shaft, and the first motor is used for driving the driving shaft to rotate around the axis of the driving shaft;
the first mounting panel, first mounting panel and second mounting bracket fixed connection, first mounting panel is used for placing first motor.
Preferably, the dust removing device comprises:
the dust collector is arranged above the conveying belt, the working end of the dust collector faces the conveying belt, and the dust collector is used for absorbing dust and particles on the surface of the conveying belt;
the moving device is horizontally and transversely arranged on the first mounting frame and the second mounting frame, the output end of the moving device is arranged above the dust collector, and the moving device is used for transversely moving the dust collector;
the output end of the lifting device is fixedly connected with the dust collector, the input end of the lifting device is fixedly connected with the output end of the moving device, and the lifting device is used for the up-and-down movement of the dust collector.
Preferably, the lifting device comprises:
the cylinder, cylinder fixed mounting are inboard at the mobile device output, and the output and the dust catcher fixed connection of cylinder, cylinder are used for driving the dust catcher and go up and down.
Preferably, the leaching mechanism comprises:
the water pipe is fixedly connected with the first mounting frame, a plurality of small holes are formed in the outer wall of the water pipe, and the water pipe is used for conveying water;
the outlet pipe, the outlet pipe is equipped with a plurality ofly, outlet pipe and water pipe fixed connection, and the mouth of pipe of outlet pipe is towards the second mounting bracket, and the outlet pipe is used for the export water to wash the conveyer belt.
Preferably, the cleaning device comprises:
the roller is arranged below the guide shaft, two ends of the roller are rotatably connected with the first mounting frame, a plurality of brushes are mounted on the outer wall of the roller, and the roller is used for thoroughly removing foreign matters and dust on the conveying belt;
the output end of the third motor is fixedly connected with one end of the roller, and the third motor is used for driving the roller to rotate around the axis of the third motor;
the third mounting panel, third mounting panel and first mounting bracket lateral wall fixed connection, the third mounting panel is used for placing the third motor.
Preferably, the drainage mechanism comprises:
the collecting box is horizontally arranged between the base and the conveying belt, the bottom surface of the collecting box is fixedly connected with the base, an inclined plane is arranged on the inner side of the collecting box, and the collecting box is used for collecting sewage;
the drain pipe, the drain pipe is equipped with a plurality ofly, the side fixed connection of drain pipe and collecting box, and the drain pipe runs through the collecting box lateral wall, and the drain pipe is used for sewage discharge sewage.
Preferably, the moving means refers to a screw slide.
Compared with the prior art, the utility model has the beneficial effects that:
1. according to the utility model, firstly, a worker starts a controller of the automatic production line device, the controller sends out a signal, and the automatic production line device starts to operate; then, the worker starts a controller of the dust removal device, the controller sends a signal to the dust removal device, the dust removal device starts to work, and the working end of the dust removal device starts to remove dust on the output end of the automatic production line device; then, the operator turns on a controller of the leaching mechanism, the controller sends a signal to turn on a switch of the leaching mechanism, and the leaching mechanism starts to flush dirt on the output end of the automatic production line device; then the worker starts a controller of the cleaning device, the controller sends a signal to the cleaning device, the output end of the cleaning device starts to rotate, and impurities and dirt on the upper surface of the output end of the automatic assembly line are thoroughly cleaned; finally, sewage for cleaning the automatic production line device uniformly flows into a drainage mechanism to prevent the sewage from polluting the environment; therefore, the technical problem of how to self-clean the automatic assembly line equipment is solved.
2. According to the utility model, a controller of the dust collector is started by a worker, the controller sends a signal to the dust collector, and the dust collector starts to work; then the worker starts the controller of the lifting device again, the controller sends a signal to the lifting device, and the output end of the lifting device drives the dust collector to descend; then the staff restarts the controller of the mobile device, the controller sends the signal to the mobile device, the output end of the mobile device drives the dust collector to transversely move above the conveyer belt, thus solving the technical problem that the dust collector can collect dust in a large area.
3. According to the utility model, the controller of the third motor is started by a worker, the controller sends a signal to the third motor, the output end of the third motor starts to rotate, the third motor drives the roller to start to rotate, the brush on the roller is tightly attached to the conveying belt, and the roller cleans foreign matters on the conveying belt under the rotation action, so that the technical problem of how to clean the foreign matters on the conveying belt by the cleaning device is solved.
Detailed Description
The following description is presented to disclose the utility model so as to enable any person skilled in the art to practice the utility model. The preferred embodiments in the following description are given by way of example only, and other obvious variations will occur to those skilled in the art.
In order to solve the technical problem of how to self-clean the automated pipeline equipment, as shown in fig. 1, the following technical solutions are provided:
an easy-to-clean automated pipeline apparatus comprising:
the device comprises a base 1, wherein a first mounting frame 1a and a second mounting frame 1b which are parallel to each other are vertically arranged above two ends of the base 1, and the first mounting frame 1a and the second mounting frame 1b are fixedly connected with the base 1;
the automatic assembly line device 2 is horizontally arranged above the base 1, the automatic assembly line device 2 is arranged on the first mounting frame 1a and the second mounting frame 1b, and the automatic assembly line device 2 is used for saving manpower;
the dust removal device 3 is horizontally arranged above the automatic pipeline device 2, the working end of the dust removal device 3 is arranged between the first mounting frame 1a and the second mounting frame 1b, and the dust removal device 3 is used for removing dust on the output end of the automatic pipeline device 2;
the leaching mechanism 4 is arranged on the first mounting frame 1a, the leaching mechanism 4 is fixedly connected with the first mounting frame 1a, the working direction of the output end of the leaching mechanism 4 faces the working end of the automatic flow line device 2, and the leaching mechanism 4 plays a role in flushing dirt on the output end of the automatic flow line device 2;
the cleaning device 5 is arranged on the first mounting frame 1a, the cleaning device 5 is positioned below the tail end of the output end of the automatic assembly line device 2, and the cleaning device 5 is used for cleaning impurities and dirt on the output end of the automatic assembly line device 2;
drainage mechanism 6, drainage mechanism 6 sets up between base 1 and automatic assembly line, and drainage mechanism 6 and base 1 fixed connection, drainage mechanism 6 plays the effect of getting rid of sewage.
Specifically, the automatic line device 2, the dust removal device 3, the leaching mechanism 4 and the cleaning device 5 are all electrically connected with the controller. Firstly, a worker starts a controller of the automatic production line device 2, the controller sends out a signal, and the automatic production line device 2 starts to operate; then, the worker starts a controller of the dust removal device 3, the controller sends a signal to the dust removal device 3, the dust removal device 3 starts to work, and the working end of the dust removal device 3 starts to remove dust on the output end of the automatic production line device 2; then, the operator turns on the controller of the leaching mechanism 4, the controller sends a signal to turn on the switch of the leaching mechanism 4, and the leaching mechanism 4 starts to flush the dirt on the output end of the automatic production line device 2; then, the worker starts a controller of the cleaning device 5, the controller sends a signal to the cleaning device 5, and the output end of the cleaning device 5 starts to rotate to thoroughly clean impurities and dirt on the upper surface of the output end of the automatic production line; finally, sewage for cleaning the automatic production line device 2 uniformly flows into the drainage mechanism 6 to prevent the sewage from polluting the environment; therefore, the technical problem of how to self-clean the automatic assembly line equipment is solved.
Further:
in order to solve the technical problem of how to automate the operation of the pipeline, as shown in fig. 2, the following technical solutions are provided:
the automatic production line device 2 comprises:
the conveying belt 2d is horizontally and transversely arranged above the base 1, and the conveying belt 2d is positioned between the first mounting frame 1a and the second mounting frame 1 b;
the two ends of the guide shaft 2c are rotatably connected with the first mounting frame 1a, the guide shaft 2c is sleeved with one end of the conveying belt 2d, and the guide shaft 2c is used for guiding the conveying of the conveying belt 2 d;
the two ends of the driving shaft 2b are rotatably connected with the second mounting frame 1b, the driving shaft 2b is sleeved with the other end of the conveying belt 2d, and the driving shaft 2b is used for driving the conveying belt 2d to run;
the output end of the first motor 2a is fixedly connected with one end of the driving shaft 2b, and the first motor 2a is used for driving the driving shaft 2b to rotate around the axis of the first motor 2 a;
first mounting panel 2e, first mounting panel 2e and second mounting bracket 1b fixed connection, first mounting panel 2e is used for placing first motor 2 a.
Specifically, the first motor 2a is electrically connected to the controller. The staff starts the controller of first motor 2a, and the controller sends the signal to first motor 2a, and the output of first motor 2a begins to rotate, and the rotation of first motor 2a drives driving shaft 2b and begins to rotate around self axis, and driving shaft 2b drives conveyer belt 2d and begins to operate, and conveyer belt 2d gyrates again under the effect of guiding axle 2c, and the repetition is rotatory. Therefore, the technical problem of how to automate the production line is solved.
Further:
in order to solve the technical problem that the dust removing device 3 can collect dust in a large area, as shown in fig. 3, the following technical scheme is provided:
dust collector 3 includes:
the dust collector 3a is arranged above the conveying belt 2d, the working end of the dust collector 3a faces the conveying belt 2d, and the dust collector 3a is used for sucking dust and particles on the surface of the conveying belt 2 d;
the moving device 3b is horizontally and transversely arranged on the first mounting frame 1a and the second mounting frame 1b, the output end of the moving device 3b is arranged above the dust collector 3a, and the moving device 3b is used for transversely moving the dust collector 3 a;
the output end of the lifting device 3c is fixedly connected with the dust collector 3a, the input end of the lifting device 3c is fixedly connected with the output end of the moving device 3b, and the lifting device 3c is used for the dust collector 3a to move up and down.
Specifically, the dust collector 3a, the moving device 3b and the lifting device 3c are all electrically connected with the controller. The worker starts the controller of the dust collector 3a, the controller sends a signal to the dust collector 3a, and the dust collector 3a starts to work; then the worker starts the controller of the lifting device 3c again, the controller sends a signal to the lifting device 3c, and the output end of the lifting device 3c drives the dust collector 3a to descend; then the staff restarts the controller of the mobile device 3b, the controller sends the signal to the mobile device 3b, the output end of the mobile device 3b drives the dust collector 3a to transversely move above the conveyer belt 2d, thus solving the technical problem that the dust collector 3 can collect dust in a large area.
Further:
in order to solve the technical problem of how to move the dust collector 3a up and down, as shown in fig. 4, the following technical scheme is provided:
the lifting device 3c comprises:
the cylinder 3c1, the cylinder 3c1 are fixedly installed inside the output end of the moving device 3b, the output end of the cylinder 3c1 is fixedly connected with the dust collector 3a, and the cylinder 3c1 is used for driving the dust collector 3a to lift.
Specifically, the cylinder 3c1 is electrically connected to the controller. The operator starts the controller of the cylinder 3c1, the controller sends a signal to the cylinder 3c1, and the output end of the cylinder 3c1 starts to drive the dust collector 3a to extend downwards until the working end of the dust collector 3a is close to the upper surface of the conveyer belt 2d, so that the technical problem that the dust collector 3a can ascend and descend is solved.
Further:
in order to solve the technical problem of how the washing mechanism 4 washes the conveyor belt 2d, as shown in fig. 5 and 8, the following technical solutions are provided:
the leaching mechanism 4 comprises:
the water pipe 4a is fixedly connected with the first mounting frame 1a, the outer wall of the water pipe 4a is provided with a plurality of small holes, and the water pipe 4a is used for conveying water;
outlet pipe 4b, outlet pipe 4b are equipped with a plurality ofly, outlet pipe 4b4a and water pipe 4a fixed connection, and the mouth of pipe of outlet pipe 4b is towards second mounting bracket 1b, and outlet pipe 4b is used for exporting water to wash conveyer belt 2 d.
Specifically, the operator starts the controller of the leaching mechanism 4, the controller sends a signal to the switch of the leaching mechanism 4, the switch is turned on after receiving the signal, water is conveyed out from the water pipe 4a, the water is sprayed out from the water outlet pipe 4b under the action of pressure, and the sprayed water falls on the conveying belt 2d due to self weight, so that the cost is saved, the function of leaching the conveying belt 2d is achieved, and the technical problem of how to wash the conveying belt 2d by the leaching mechanism 4 is solved.
Further:
in order to solve the technical problem of how to clean the foreign matters on the conveyor belt 2d by the cleaning device 5, as shown in fig. 6, the following technical solutions are provided:
the cleaning device 5 comprises:
the roller 5a is arranged below the guide shaft 2c, two ends of the roller 5a are rotatably connected with the first mounting frame 1a, a plurality of brushes are mounted on the outer wall of the roller 5a, and the roller 5a is used for thoroughly removing foreign matters and dust on the conveying belt 2 d;
the output end of the third motor 5b is fixedly connected with one end of the roller 5a, and the third motor 5b is used for driving the roller 5a to rotate around the axis of the roller 5 a;
and the third mounting plate 5c, the third mounting plate 5c and the side wall of the first mounting frame 1a are fixedly connected, and the third mounting plate 5c is used for placing a third motor 5 b.
Specifically, the third motor 5b is electrically connected to the controller. The staff starts the controller of third motor 5b, and the controller sends the signal for third motor 5b, and the output of third motor 5b begins rotatoryly, and third motor 5b is driving cylinder 5a and is beginning to rotate, and the brush on the cylinder 5a pastes tight conveyer belt 2d, and under rotatory effect, cylinder 5a washs the foreign matter on the conveyer belt 2d, has just so solved the technical problem of how belt cleaning device 5 sweeps away the foreign matter on the conveyer belt 2 d.
Further:
in order to solve the technical problem of how to collect the cleaned sewage, as shown in fig. 7, the following technical solutions are provided:
the drainage mechanism 6 includes:
the collecting box 6a is horizontally arranged between the base 1 and the conveying belt 2d, the bottom surface of the collecting box 6a is fixedly connected with the base 1, an inclined surface 6a1 is arranged on the inner side of the collecting box 6a, and the collecting box 6a is used for collecting sewage;
the drainage pipes 6b and the drainage pipes 6b are multiple, the drainage pipes 6b are fixedly connected with the side face of the collecting box 6a, the drainage pipes 6b penetrate through the side wall of the collecting box 6a, and the drainage pipes 6b are used for discharging sewage.
Specifically, after cleaning, the sewage flows into the collecting tank 6a along the side wall of the collecting tank 6a, then flows to the mouth of the drainage pipe 6b under the action of the inclined surface 6a1, and then is discharged into the sewage treatment system through the drainage pipe 6b, so as to achieve the effect of protecting the environment. Therefore, the technical problem of how to collect the cleaned sewage is solved.
The working principle of the utility model is as follows:
firstly, starting a controller of the automatic production line device 2 by a worker, sending a signal by the controller, and starting the operation of the automatic production line device 2;
secondly, the worker starts a controller of the dust removal device 3, the controller sends a signal to the dust removal device 3, the dust removal device 3 starts to work, and the working end of the dust removal device 3 starts to remove dust on the output end of the automatic production line device 2;
thirdly, the operator opens the controller of the leaching mechanism 4, the controller sends a signal to open the switch of the leaching mechanism 4, and the leaching mechanism 4 starts to flush the dirt on the output end of the automatic flow line device 2;
fourthly, the worker starts a controller of the cleaning device 5, the controller sends a signal to the cleaning device 5, the output end of the cleaning device 5 starts to rotate, and impurities and dirt on the upper surface of the output end of the automatic production line are thoroughly cleaned;
and step five, finally, sewage for cleaning the automatic production line device 2 uniformly flows into the drainage mechanism 6, so that the sewage is prevented from polluting the environment.
The foregoing shows and describes the general principles, essential features, and advantages of the utility model. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are merely illustrative of the principles of the utility model, but that various changes and modifications may be made without departing from the spirit and scope of the utility model, which fall within the scope of the utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.