Stone plastic floor conveying and labeling device
Technical Field
The utility model relates to the technical field of stone plastic floor labeling, in particular to a stone plastic floor conveying labeling device.
Background
The stone plastic floor, also called SPC floor, is a new type environment-protecting floor decorative material, and is formed from natural stone powder, PVC resin and stabilizing agent through the processes of high-temperature and high-pressure compounding, and the stone plastic floor board can be labeled in the production process, so that it is convenient to distinguish different types of stone plastic floors, and the labeling can be implemented by means of labeling mechanism of labeling machine disclosed in the utility model patent with publication number of CN206871508U and labeling mechanism of labeling machine disclosed in the utility model patent with publication number of CN 217533584U.
But find in the use, current labeller structure is fairly simple, and inconvenient clear up the dust on the floor to after the subsides mark, inconvenient compaction with the label leads to the practicality relatively poor, consequently need a stone plastic floor transport labeling device to improve above-mentioned problem.
Disclosure of utility model
In order to solve the technical problems, the utility model provides the stone plastic floor conveying and labeling device which is used for conveying the stone plastic floor through the conveying mechanism, cleaning dust on the top of the stone plastic floor through the cleaning mechanism, and then labeling the prepared label on the stone plastic floor through the labeling mechanism, so that the practicability of equipment is improved.
The utility model relates to a stone plastic floor conveying and labeling device, which comprises a conveying mechanism, a cleaning mechanism and a labeling mechanism, wherein the cleaning mechanism and the labeling mechanism are both arranged on the conveying mechanism;
The conveying mechanism conveys the stone plastic floor, the cleaning mechanism cleans dust on the stone plastic floor, and the labeling mechanism labels the stone plastic floor;
Carry the floor is moulded to stone through conveying mechanism, clear up the dust at floor top is moulded to stone through clearance mechanism simultaneously, later paste the label that gets ready on the floor is moulded to stone through labeller to improve the practicality of equipment.
Preferably, the conveying mechanism comprises a frame, two groups of support plates, a speed reducer, a first driving motor, a plurality of groups of conveying rollers and a limiting mechanism, wherein the two groups of support plates are all arranged at the top of the frame, the speed reducer is arranged on the support plates, the first driving motor is arranged on the speed reducer, an output shaft of the first driving motor is connected with an input end of the speed reducer, the plurality of groups of conveying rollers are all rotatably arranged on the two groups of support plates, one ends of the plurality of groups of conveying rollers are respectively connected with a plurality of groups of output ends of the speed reducer, the limiting mechanism is arranged on the frame, the stone plastic floor is placed on the plurality of groups of conveying rollers, the first driving motor is started, the plurality of groups of conveying rollers are driven by the speed reducer to rotate, the stone plastic floor is conveyed through the limiting mechanism, and meanwhile, stable conveying of the stone plastic floor is guaranteed, so that the practicability of the equipment is improved.
Preferably, the limiting mechanism comprises two groups of sliding rails, two bidirectional hydraulic cylinders, two groups of sliding blocks, a plurality of groups of brackets and a plurality of groups of guide rollers, wherein the two groups of sliding rails and the two bidirectional hydraulic cylinders are fixedly arranged on the frame, the two groups of sliding blocks are slidably arranged on the two groups of sliding rails, two ends of the two bidirectional hydraulic cylinders are respectively connected with the two groups of sliding blocks, the plurality of groups of brackets are fixedly arranged on the two groups of sliding blocks, the plurality of groups of guide rollers are rotatably arranged on the plurality of groups of brackets, the two groups of sliding blocks slide on the two groups of sliding rails in opposite directions or in opposite directions through the expansion or the contraction of the two groups of the bidirectional hydraulic cylinders, the positions of the plurality of groups of guide rollers are adjusted, and the stone plastic floor conveyed on the plurality of groups of conveying rollers is guided through the plurality of groups of guide rollers, so that the practicability of the equipment is improved.
Preferably, the cleaning mechanism comprises a plurality of groups of cleaning rollers, a vibrating motor and a dust exhaust pipe, wherein the vibrating motor is arranged on one group of supporting plates, one ends of the plurality of groups of cleaning rollers are rotatably arranged on the other group of supporting plates, the other ends of the plurality of groups of cleaning rollers are rotatably arranged on the vibrating motor, the dust exhaust pipe is fixedly arranged on the other group of supporting plates, the plurality of groups of cleaning rollers are communicated with the inside of the dust exhaust pipe, the dust exhaust pipe is connected with dust collection equipment, the plurality of groups of cleaning rollers vibrate through opening the vibrating motor, dust is removed from the top of the stone plastic floor through the plurality of groups of cleaning rollers in the conveying process of the stone plastic floor by the plurality of groups of conveying rollers, and the dust is discharged to the dust collection equipment through the dust exhaust pipe matched with the plurality of groups of cleaning rollers, so that the practicability of the equipment is improved.
Preferably, the cleaning roller comprises a spline shaft sleeve, two groups of spline shafts, two groups of spline shaft sleeves and two groups of springs I, one ends of the two groups of spline shafts are respectively arranged at the front end and the rear end of the roller, exhaust passages are respectively arranged in the roller and the rear side spline shaft, a plurality of groups of dust collection holes and a plurality of groups of brushes are arranged on the roller, the other ends of the two groups of spline shafts are respectively and slidably arranged in the two groups of spline shaft sleeves, the two groups of springs I are respectively arranged in the two groups of spline shaft sleeves, the rear end of the rear side spline shaft is communicated with the interior of the dust discharge pipe, when the vibrating motor operates, the roller repeatedly moves forwards and backwards through the elasticity of the two groups of springs I, dust at the top of the stone plastic floor is swept up through the brushes lifted by the roller, the dust collection holes on the roller suck the dust into the roller, and then the dust sequentially passes through the rear side spline shaft and the dust discharge pipe to enter dust collection equipment, so that the practicability of the equipment is improved.
Preferably, the labeling mechanism comprises a second driving motor, a rotating shaft, an air cylinder, a sucker, a second spring and a squeeze roller, wherein the second driving motor is arranged on the supporting plate, one end of the rotating shaft is arranged on an output shaft of the second driving motor, the other end of the rotating shaft is rotatably arranged on the other group of supporting plates, the air cylinder is arranged on the rotating shaft, the sucker is arranged at the bottom of the rotating shaft, the second spring is arranged at the side end of the air cylinder through a bracket, the squeeze roller is arranged on the second spring, the second driving motor is opened to rotate the rotating shaft, the sucker is moved to the upper side of the rotating shaft, then the processed label is placed on the sucker, the label is sucked through the sucker, the sucker is reset through the reverse operation of the second driving motor, the sucker is stretched through the air cylinder, the sucker is moved downwards, the label is stuck on the stone plastic floor, the steps are repeated, the sucker is made to suck the other label, in the opposite rotating process of the sucker, the squeeze roller is made to roll on the top of the stone plastic floor through the elasticity of the second spring, and the label on the stone plastic floor is compacted, and therefore the practicability of the device is improved.
Compared with the prior art, the utility model has the beneficial effects that the stone plastic floor is conveyed by the conveying mechanism, meanwhile, dust at the top of the stone plastic floor is cleaned by the cleaning mechanism, and then the prepared label is attached to the stone plastic floor by the labeling mechanism, so that the practicability of the equipment is improved.
Drawings
FIG. 1 is a schematic view of a first axial structure of the present utility model;
FIG. 2 is a schematic view of a second axial structure of the present utility model;
FIG. 3 is a schematic elevational view of the present utility model;
FIG. 4 is a schematic diagram of an axial measurement structure of the limiting mechanism of the present utility model;
FIG. 5 is a schematic elevational view of the labeling mechanism of the present utility model;
fig. 6 is a schematic view of a right side cross-sectional structure of a cleaning roller of the present utility model.
The drawing comprises a frame 1, a supporting plate 2, a speed reducer 4, a driving motor I, a conveying roller 5, a sliding rail 6, a sliding rail 7, a bidirectional hydraulic cylinder 8, a sliding block 9, a bracket 10, a guide roller 11, a cleaning roller 12, a vibration motor 13, a dust discharging pipe 14, a roller 15, a spline shaft 16, a spline shaft sleeve 17, a spring I18, a driving motor II, a rotating shaft 19, a rotating shaft 20, a cylinder 21, a sucker 22, a spring II, a spring 23 and a squeeze roller.
Detailed Description
In order that the utility model may be readily understood, a more complete description of the utility model will be rendered by reference to the appended drawings. This utility model may be embodied in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
Example 1
The stone plastic floor conveying and labeling device comprises a conveying mechanism, a cleaning mechanism and a labeling mechanism, wherein the cleaning mechanism and the labeling mechanism are both arranged on the conveying mechanism;
The conveying mechanism conveys the stone plastic floor, the cleaning mechanism cleans dust on the stone plastic floor, and the labeling mechanism labels the stone plastic floor;
The conveying mechanism comprises a frame 1, two groups of support plates 2, a speed reducer 3, a first driving motor 4, a plurality of groups of conveying rollers 5 and a limiting mechanism, wherein the two groups of support plates 2 are all arranged at the top of the frame 1, the speed reducer 3 is arranged on the support plates 2, the first driving motor 4 is arranged on the speed reducer 3, an output shaft of the first driving motor 4 is connected with an input end of the speed reducer 3, the plurality of groups of conveying rollers 5 are all rotatably arranged on the two groups of support plates 2, one ends of the plurality of groups of conveying rollers 5 are respectively connected with a plurality of groups of output ends of the speed reducer 3, and the limiting mechanism is arranged on the frame 1;
The limiting mechanism comprises two groups of sliding rails 6, two groups of sliding blocks 7, two groups of sliding blocks 8, a plurality of groups of brackets 9 and a plurality of groups of guide rollers 10, wherein the two groups of sliding rails 6 and the two groups of sliding blocks 7 are fixedly arranged on the frame 1, the two groups of sliding blocks 8 are slidably arranged on the two groups of sliding rails 6, two ends of the two groups of sliding blocks 7 are respectively connected with the two groups of sliding blocks 8, the plurality of groups of brackets 9 are respectively fixedly arranged on the two groups of sliding blocks 8, and the plurality of groups of guide rollers 10 are respectively rotatably arranged on the plurality of groups of brackets 9;
The cleaning mechanism comprises a plurality of groups of cleaning rollers 11, a vibrating motor 12 and a dust exhaust pipe 13, wherein the vibrating motor 12 is arranged on one group of support plates 2, one ends of the plurality of groups of cleaning rollers 11 are respectively and rotatably arranged on the other group of support plates 2, the other ends of the plurality of groups of cleaning rollers 11 are respectively and rotatably arranged on the vibrating motor 12, the dust exhaust pipe 13 is fixedly arranged on the other group of support plates 2, and the plurality of groups of cleaning rollers 11 are respectively communicated with the inside of the dust exhaust pipe 13;
The cleaning roller 11 comprises a spline shaft sleeve 16, two groups of spline shafts 15, two groups of spline shaft sleeves 16 and two groups of springs I17, one ends of the two groups of spline shafts 15 are respectively arranged at the front end and the rear end of the roller 14, exhaust passages are respectively arranged in the roller 14 and the rear spline shaft 15, a plurality of groups of dust collection holes and a plurality of groups of brushes are arranged on the roller 14, the other ends of the two groups of spline shafts 15 are respectively and slidably arranged in the two groups of spline shaft sleeves 16, the two groups of springs I17 are respectively arranged in the two groups of spline shaft sleeves 16, and the rear end of the rear spline shaft 15 is communicated with the interior of the dust exhaust pipe 13;
The stone plastic floor is placed on a plurality of groups of conveying rollers 5, a driving motor I4 is turned on, the plurality of groups of conveying rollers 5 are driven by a speed reducer 3 to rotate, the stone plastic floor is conveyed, meanwhile, two groups of sliding blocks 8 slide on two groups of sliding rails 6 in opposite directions or in opposite directions through two-way hydraulic cylinders 7 to adjust the positions of a plurality of groups of guide rollers 10, the stone plastic floor conveyed on the plurality of groups of conveying rollers 5 is guided by the plurality of groups of guide rollers 10, then a dust exhaust pipe 13 is connected with dust collection equipment, a plurality of groups of cleaning rollers 11 vibrate by turning on a vibrating motor 12, dust is removed from the top of the stone plastic floor through the plurality of groups of cleaning rollers 11 in the conveying process of the plurality of groups of conveying rollers 5, the dust is discharged into the dust collection equipment through the dust exhaust pipe 13 in cooperation with the plurality of groups of cleaning rollers 11, and the prepared label is attached to the stone plastic floor through a labeling mechanism, so that the practicability of the equipment is improved.
Example 2
As shown in fig. 1 to 6, the stone plastic floor conveying and labeling device comprises a conveying mechanism, a cleaning mechanism and a labeling mechanism, wherein the cleaning mechanism and the labeling mechanism are both arranged on the conveying mechanism;
The conveying mechanism conveys the stone plastic floor, the cleaning mechanism cleans dust on the stone plastic floor, and the labeling mechanism labels the stone plastic floor;
The conveying mechanism comprises a frame 1, two groups of support plates 2, a speed reducer 3, a first driving motor 4, a plurality of groups of conveying rollers 5 and a limiting mechanism, wherein the two groups of support plates 2 are all arranged at the top of the frame 1, the speed reducer 3 is arranged on the support plates 2, the first driving motor 4 is arranged on the speed reducer 3, an output shaft of the first driving motor 4 is connected with an input end of the speed reducer 3, the plurality of groups of conveying rollers 5 are all rotatably arranged on the two groups of support plates 2, one ends of the plurality of groups of conveying rollers 5 are respectively connected with a plurality of groups of output ends of the speed reducer 3, and the limiting mechanism is arranged on the frame 1;
The limiting mechanism comprises two groups of sliding rails 6, two groups of sliding blocks 7, two groups of sliding blocks 8, a plurality of groups of brackets 9 and a plurality of groups of guide rollers 10, wherein the two groups of sliding rails 6 and the two groups of sliding blocks 7 are fixedly arranged on the frame 1, the two groups of sliding blocks 8 are slidably arranged on the two groups of sliding rails 6, two ends of the two groups of sliding blocks 7 are respectively connected with the two groups of sliding blocks 8, the plurality of groups of brackets 9 are respectively fixedly arranged on the two groups of sliding blocks 8, and the plurality of groups of guide rollers 10 are respectively rotatably arranged on the plurality of groups of brackets 9;
The cleaning mechanism comprises a plurality of groups of cleaning rollers 11, a vibrating motor 12 and a dust exhaust pipe 13, wherein the vibrating motor 12 is arranged on one group of support plates 2, one ends of the plurality of groups of cleaning rollers 11 are respectively and rotatably arranged on the other group of support plates 2, the other ends of the plurality of groups of cleaning rollers 11 are respectively and rotatably arranged on the vibrating motor 12, the dust exhaust pipe 13 is fixedly arranged on the other group of support plates 2, and the plurality of groups of cleaning rollers 11 are respectively communicated with the inside of the dust exhaust pipe 13;
The cleaning roller 11 comprises a spline shaft sleeve 16, two groups of spline shafts 15, two groups of spline shaft sleeves 16 and two groups of springs I17, one ends of the two groups of spline shafts 15 are respectively arranged at the front end and the rear end of the roller 14, exhaust passages are respectively arranged in the roller 14 and the rear spline shaft 15, a plurality of groups of dust collection holes and a plurality of groups of brushes are arranged on the roller 14, the other ends of the two groups of spline shafts 15 are respectively and slidably arranged in the two groups of spline shaft sleeves 16, the two groups of springs I17 are respectively arranged in the two groups of spline shaft sleeves 16, and the rear end of the rear spline shaft 15 is communicated with the interior of the dust exhaust pipe 13;
The labeling mechanism comprises a second driving motor 18, a rotating shaft 19, an air cylinder 20, a sucking disc 21, a second spring 22 and a squeeze roller 23, wherein the second driving motor 18 is arranged on the supporting plate 2, one end of the rotating shaft 19 is arranged on an output shaft of the second driving motor 18, the other end of the rotating shaft 19 is rotatably arranged on the other group of supporting plates 2, the air cylinder 20 is arranged on the rotating shaft 19, the sucking disc 21 is arranged at the bottom of the rotating shaft 19, the second spring 22 is arranged at the side end of the air cylinder 20 through a bracket, and the squeeze roller 23 is arranged on the second spring 22;
placing the stone plastic floor on the multiple groups of conveying rollers 5, opening a first driving motor 4, transmitting through a speed reducer 3, enabling the multiple groups of conveying rollers 5 to rotate, conveying the stone plastic floor, simultaneously extending or contracting through a bidirectional hydraulic cylinder 7, enabling two groups of sliding blocks 8 to slide on the two groups of sliding rails 6 in opposite directions or in opposite directions, adjusting the positions of the multiple groups of guide rollers 10, guiding the stone plastic floor conveyed on the multiple groups of conveying rollers 5 through the multiple groups of guide rollers 10, then connecting a dust exhaust pipe 13 with dust collection equipment, enabling the multiple groups of cleaning rollers 11 to vibrate through opening a vibrating motor 12, discharging dust to the dust collection equipment through the multiple groups of cleaning rollers 11 through the dust exhaust pipe 13, enabling prepared labels to be attached to the stone plastic floor through a labeling mechanism, then opening a second driving motor 18, enabling a sucking disc 21 to move to the position above the rotating shaft 19, then placing the processed labels on the 21, sucking the labels through the sucking disc 21, then enabling the second driving motor 18 to reversely run, enabling the sucking disc 21 to reset the sucking disc 21 to reversely run, enabling the labels to roll down to the sucking disc 21, enabling the labels to roll down the sucking disc 21 to roll down, and enabling the labels to be attached to the top of the stone plastic floor through the sucking disc 21, rolling the labels to be attached to the sucking disc, and then enabling the labels to be stretched to the top of the two groups of the sucking disc to be attached to the stone plastic floor through the cylinder, and the labels to the two cylinders, and the labels are stretched to the labels.
The speed reducer 3, the first driving motor 4, the bidirectional hydraulic cylinder 7, the vibration motor 12, the second driving motor 18 and the cylinder 20 of the stone-plastic floor conveying and labeling device are purchased in the market, and a person skilled in the art only needs to install and operate according to the attached using instruction without creative labor of the person skilled in the art.
The foregoing is merely a preferred embodiment of the present utility model, and it should be noted that it will be apparent to those skilled in the art that modifications and variations can be made without departing from the technical principles of the present utility model, and these modifications and variations should also be regarded as the scope of the utility model.