Disclosure of Invention
The invention aims to provide a road traffic indicator painting device which is used for overcoming the defects in the prior art.
The road traffic indicator painting device comprises a painting machine body, wherein a supporting block is arranged on the lower side of the painting machine body, connecting blocks are fixedly arranged on two sides above the supporting block, a lifting block is slidably matched on the connecting block, the lifting block is arranged in the lifting block, a stirring device is arranged in the lifting block, the stirring device comprises a stirring cavity positioned in the lifting block, a connecting shaft is rotatably matched on the bottom wall of the stirring cavity, twelve stirring rods which are distributed in a left-right array mode are fixedly arranged in the stirring cavity in a stretching mode on the upper side of the connecting shaft, a central shaft rotates to drive the stirring rods to rotate to stir paint in the stirring cavity, an inclusion groove with an upward opening is formed in the upper middle of the supporting block, a threaded block fixedly connected with the lifting block is slidably matched in the inclusion groove, and a power connecting device is arranged on the lower side of, the power connecting device comprises a central shaft which is matched with the wall body between the belt groove and the containing groove in a rotating manner, the lower side of the central shaft extends to the tail end of the lower side of the belt groove and is in power connection with a working motor embedded in the wall body, the upper side of the central shaft extends to the inner side of the belt groove and is fixedly connected with a driving pulley, the lower side of the spline shaft extends to the belt groove and is fixedly connected with a driven pulley positioned on the right side of the driving pulley, the driven pulley is connected with the driving pulley through a belt, the tail end of the lower side of the connecting shaft is provided with a middle groove, the central shaft extends upwards to the middle groove and is fixedly connected with the connecting shaft, the working motor works, the central shaft rotates to drive the connecting shaft to rotate, the rear side of the thread block is fixedly connected with a spraying device, the spraying, the connecting plate is connected with a rotating shaft in a rotating mode outside the machine body, a paint rotating drum is fixedly connected to the rotating shaft, a painting cover which contains the upper half portion of the rotating drum is fixedly connected to the lower side of the connecting plate, a paint spraying groove is formed in the upper side of the painting cover, paint can fall on the rotating drum through the paint spraying groove, and the equal amount of falling paint falls on the paint rotating drum and is distributed through penetration.
On the basis of the technical scheme, the stirring device further comprises a rack groove positioned on the lower side on the right side of the stirring cavity, the lower side of the rack groove is communicated with a communicating cavity, the left side of the rack groove is communicated with a paint pipe which is connected with the stirring cavity and a paint rotary drum and has telescopic capability, a rack which is abutted against the lower side of the rack groove is arranged in the rack groove in a sliding fit manner, a rack spring is connected between the rack and the right wall of the rack groove, an extension shaft which is in running fit with the front wall and extends backwards is arranged in the communicating cavity, a transmission shaft is in running fit with the bottom wall of the communicating cavity, the transmission shaft extends upwards to the communicating cavity and is fixedly connected with a meshing bevel gear, the extension shaft is fixedly connected with a meshing bevel gear which is meshed with the central bevel gear, and the extension shaft is fixedly connected with a rack half gear which is positioned, the supporting block is internally provided with a spline meshing groove which is positioned on the lower side of the switch-on cavity, the lower side of the spline meshing groove is provided with a belt groove, a spline shaft is arranged between the belt groove and the spline meshing groove in a rotating fit mode, and the spline shaft extends upwards to the top end in the spline meshing groove and is provided with a spline groove matched with the transmission shaft in a spline mode.
On the basis of the technical scheme, the power connecting device also comprises a fixed shaft which is rotationally matched with the inner wall of the lifting block and is rotationally matched with the central shaft, the fixed shaft is in threaded connection with the threaded block, the outer wall of the fixed shaft is fixedly connected with a rotating connecting block in the middle groove, a connecting shaft groove is formed in the connecting shaft, a rotating block is in sliding fit in the connecting shaft groove, a rotating groove matched with the rotating connecting block is formed in one side, away from the connecting shaft groove, of the rotating block, a jacking spring is connected between the rotating block and the connecting shaft groove, a power block is fixedly connected to the lower side of the supporting block, a bevel gear meshing groove is formed in the power block and is located on the lower side of the working motor, a transmission shaft is rotationally matched between the working motor and the bevel gear meshing groove, and extends downwards to the bevel gear meshing groove and is fixedly connected with a meshing, the left side and the right side of the bevel gear meshing groove are penetrated by matching shafts which are in running fit with the wall body of the power block, the matching shafts extend into the bevel gear meshing groove, the inner spline of each matching shaft is connected with a transmission bevel gear which can be meshed with the meshing bevel gear, an electric push rod is arranged between the transmission bevel gear and the right wall of the bevel gear meshing groove, the left side and the right side of the bevel gear meshing groove are symmetrically provided with gear meshing grooves, the matching shaft is axially far away from the central end surface of the bevel gear meshing groove and extends into the gear meshing groove, a connecting half gear is fixedly connected into the gear meshing groove, the end wall of the gear meshing groove, which is positioned at the rear side of the matching shaft and is far away from the central end surface of the bevel gear meshing groove, is rotationally matched with a driving shaft, the driving shaft is axially close to the central end surface, the driving shaft is axially far away from the central end face of the bevel gear meshing groove, the power block is extended out and is fixedly connected with wheels, the lower bottom wall of the lifting block is fixedly connected with two limiting plates in bilateral symmetry, and the supporting blocks are provided with limiting grooves in sliding fit with the limiting plates in a penetrating mode.
On the basis of the technical scheme, the spraying device further comprises a painting shaft which is connected with the connecting plate in a mortise-tenon manner and is positioned on the lower side of the rotating shaft, a painting rotary drum is rotatably connected to the painting shaft, and the painting rotary drum is provided with the convex blocks.
On the basis of the technical scheme, a cover connected by a pin is arranged on the upper side of the stirring cavity, and a handle is arranged on the cover.
The invention has the beneficial effects that: the device can quantitatively spray the stirred paint to the paint rotary drum, limit the machine body to move left and right, simultaneously automatically move front and back, and transfer the paint of the paint rotary drum to the convex-shaped blocks on the painting rotary drum to uniformly and fully paint the paint on the ground, so that the painting layer is more resistant to polishing, and the light reflecting effect is more obvious.
Detailed Description
The invention will now be described in detail with reference to fig. 1-7, for convenience of description, the following orientations will now be defined: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
Referring to fig. 1 to 7, the road traffic indicator coating device according to the embodiment of the present invention includes a coating machine body 67, a supporting block 31 is disposed on a lower side of the coating machine body 67, connecting blocks 30 are fixedly mounted on two sides above the supporting block 31, a lifting block 63 is slidably fitted on the connecting block 30 near a central end surface of the supporting block 31, a stirring device is disposed in the lifting block 63, the stirring device includes a stirring chamber 29 located in the lifting block 63, a connecting shaft 52 is rotatably fitted on a bottom wall of the stirring chamber 29, twelve stirring rods 25 which are distributed in a left-right array are fixedly mounted on an upper side of the connecting shaft 52 and extend into the stirring chamber 29, the central shaft 49 rotates to drive the stirring rods 25 to rotate to stir paint in the stirring chamber 29, a containing groove 69 with an upward opening is disposed on an upper side of a middle of the supporting block 31, a threaded block 32 fixedly connected to the lifting block 63 is slidably fitted in the containing groove 69, the lower side of the containing groove 69 is provided with a power connecting device, the power connecting device comprises a central shaft 49 which is matched with the wall body between the belt groove 35 and the containing groove 69 in a rotating manner, the lower side of the central shaft 49 extends to the tail end of the lower side of the belt groove 35 and is connected with a working motor 37 embedded in the wall body in a power manner, the upper side of the central shaft 49 extends to a driving belt 33 fixedly connected in the belt groove 35, the lower side of the spline shaft 23 extends to the belt groove 35 and is fixedly connected with a driven belt pulley 36 positioned at the right side of the driving belt 33, the driven belt pulley 36 is connected with the driving belt 33 through a belt, the tail end of the lower side of the connecting shaft 52 is provided with a middle groove 56, the central shaft 49 extends upwards to the middle groove 56 and is fixedly connected with the connecting shaft 52, the rear side of the thread block 32 is fixedly connected with a spraying device, the spraying device comprises connecting plates 58 which are bilaterally symmetrical and fixedly installed on the end surface of the lower side of the thread block 32 and extend to the lower side of the painting machine body 67, the connecting plates 58 are rotatably connected with a rotating shaft 60 outside the machine body, the rotating shaft 60 is fixedly connected with a paint rotating drum 59, the 31 lower side is fixedly connected with a painting cover 99 which contains the upper half part of the rotating drum 59, the painting groove 100 is formed in the upper side of the painting cover 99, the paint can fall on the rotating drum 59 through the painting groove 100, and the equal amount of falling paint is distributed on the paint rotating drum 59 through penetration.
In addition, in one embodiment, the stirring device further includes a rack groove 12 located on the lower right side of the stirring cavity 29, a communicating cavity 13 is communicated with the lower side of the rack groove 12, a paint pipe 19 which is connected to the stirring cavity 29 and the paint drum 59 and has a telescopic capability is arranged on the left side of the rack groove 12 in a penetrating manner, a rack 10 which is abutted against the lower side of the rack groove 12 is arranged in the rack groove 12 in a sliding manner, a rack spring 11 is connected between the rack 10 and the right wall of the rack groove 12, an extending shaft 15 which is rotationally matched with the front wall and extends backwards is arranged in the communicating cavity 13, a transmission shaft 18 is rotationally matched with the bottom wall of the communicating cavity 13, the transmission shaft 18 extends upwards to the communicating cavity 13 and is fixedly connected with a meshing bevel gear 17, a meshing bevel gear 17 which is meshed with the central bevel gear 16 is fixedly connected to the extending shaft 15, and the extending shaft 15 is fixedly connected to the front side of the central bevel gear 16 The rack half gear 14 is provided with a spline meshing groove 21 located on the lower side of the communicating cavity 13 in the supporting block 31, a belt groove 35 is formed in the lower side of the spline meshing groove 21, a spline shaft 23 is rotatably matched between the belt groove 35 and the spline meshing groove 21, the spline shaft 23 extends upwards to the inner top end of the spline meshing groove 21 and is provided with a spline groove 22 in spline fit with the transmission shaft 18, the spline groove 22 can drive the transmission shaft 18 to rotate through a spline, so that the rack half gear 14 is driven to rotate, at the moment, the rack 10 is opened and closed in a reciprocating mode, and the spraying amount of paint each time is controlled.
In addition, in one embodiment, the power connection device further includes a fixed shaft 50 rotatably engaged with the inner wall of the lifting block 63 and rotatably engaged with the central shaft 49, the fixed shaft 50 is in threaded connection with the threaded block 32, a rotary connection block 51 is fixedly connected to the outer wall of the fixed shaft 50 in the middle groove 56, a connection shaft groove 53 is formed in the connection shaft 52, a rotary block 55 is slidably engaged in the connection shaft groove 53, a rotary groove 64 engaged with the rotary connection block 51 is formed in a side of the rotary block 55 away from the connection shaft groove 53, a top pressure spring 54 is connected between the rotary block 55 and the connection shaft groove 53, a power block 70 is fixedly connected to the lower side of the support block 31, a bevel gear engagement groove 48 positioned on the lower side of the working motor 37 is formed in the power block 70, and a transmission shaft 40 is rotatably engaged with the wall body between the working motor 37 and the bevel gear engagement groove 48, the transmission shaft 40 extends downwards into the bevel gear meshing groove 48 and is fixedly connected with a meshing bevel gear 47, matching shafts 66 which are in running fit with the wall body of the power block 70 penetrate through the left side and the right side of the bevel gear meshing groove 48, the matching shafts 66 extend into the bevel gear meshing groove 48 and are in spline connection with a transmission bevel gear 46 which can be meshed with the meshing bevel gear 47, an electric push rod 71 is arranged between the transmission bevel gear 46 and the right wall of the bevel gear meshing groove 48, gear meshing grooves 42 are symmetrically arranged on the left side and the right side of the bevel gear meshing groove 48, the matching shafts 66 extend to the end surface far away from the center of the bevel gear meshing groove 48 and are fixedly connected with a connecting half gear 39, and a driving shaft 43 is in running fit with the end wall far away from the end surface of the center of the bevel gear meshing groove 48, which is positioned at the rear side of the matching shaft 66, the driving shaft 43 extends to the inside of the gear meshing groove 42 to be close to the central end face of the bevel gear meshing groove 48 and is fixedly connected with a meshing half gear 41 meshed with the connecting half gear 39, the driving shaft 43 extends to the inside of the gear meshing groove 42 to be far away from the central end face of the bevel gear meshing groove 48 and is fixedly connected with a wheel 38, two limiting plates 20 are fixedly connected to the lower bottom wall of the lifting block 63 in a bilateral symmetry mode, a limiting groove 24 in sliding fit with the limiting plates 20 is formed in the supporting block 31 in a penetrating mode, the lifting block 63 is driven to descend by descending of the threaded block 32, and therefore the limiting plates 20 slide downwards to two sides of the wheel 38 and enable the wheel 38 to move only forwards and backwards.
In addition, in one embodiment, the spraying device further includes a painting shaft 61 in mortise and tenon connection with the connecting plate 58 and located on the lower side of the rotating shaft 60, a painting drum 68 is rotatably connected to the painting shaft 61, the painting drum 68 is provided with the convex-shaped blocks 62, the painting drum 68 rotates by the friction between the painting drum 68 and the ground, the painting drum 68 rotates and simultaneously drives the paint drum 59 to rotate, so that the painting distribution of the paint drum 59 is printed on the ground on the convex-shaped blocks 62.
In addition, in one embodiment, a cover 26 connected by a pin 28 is arranged on the upper side of the stirring cavity 29, and a handle 27 is arranged on the cover 26.
In the initial state, the rack slot 12 is in a relaxed state, the working motor 37 is also in a relaxed state, the spline engaging slot 21 and the transmission shaft 18 are in a non-engaging state, the torsion spring 44 is in a relaxed state, the transmission bevel gear 46 and the engaging bevel gear 47 are not engaged, the pressing spring 54 is in a relaxed state, the power block 70 is positioned at the upper side of the containing slot 69, and the left and right rotation of the wheel 38 is not limited.
When the road traffic indicator is required to be sprayed and brushed, the cover 26 is opened through the handle 27, paint is poured, the working motor 37 is started to work at a high speed in the stirring cavity 29, the working motor 37 rotates to drive the connecting shaft 52 to rotate, the rotating block 55 is thrown into the connecting shaft groove 53 under the action of centrifugal force, the rotating connecting block 51 is not in contact with the rotating block 55, the fixing shaft 50 does not rotate, the thread block 32 cannot lift, the working motor 37 drives the connecting shaft 52 to rotate at a high speed to stir the paint in the stirring cavity 29, after the paint stirring is finished, the working motor 37 works at a low speed, the centrifugal force of the rotating block 55 disappears, the rotating connecting block 51 is rotated into the rotating groove 64 to drive the fixing shaft 50 to rotate together, the thread block 32 descends, when the thread block 32 completely enters the containing groove 69, the limiting plate 20 descends to limit the left and right movement of the wheel 38, and the transmission shaft 18 enters the spline groove 22, meanwhile, the working motor 37 is started to rotate at a high speed, power is transmitted through the working motor 37, the central shaft 49, the driving belt wheel 33, the belt 34, the driven belt wheel 36 and the spline shaft 23 to drive the transmission shaft 18 to rotate, power of the transmission shaft 18 is transmitted through the meshing bevel gear 17, the central bevel gear 16 and the extension shaft 15 to drive the rack half gear 14 to rotate, the rack half gear 14 rotates to drive the rack 10 to move rightwards, the paint pipe 19 is communicated, the paint falls onto the paint rotary drum 59 through the paint pipe 19, then the rack half gear 14 is disengaged from the rack 10, the rack 10 closes the meshing bevel gear 17 under the action of the rack spring 11 to reciprocate, the electric push rod 71 is started, the transmission bevel gear 46 is meshed with the meshing bevel gear 47, and power drives the matching shaft 66 to rotate through the transmission of the working motor 37, the transmission shaft 40, the meshing bevel gear 47 and, the matching shaft 66 rotates to drive the connecting half gear 39 to rotate, the connecting half gear 39 rotates to enable the wheel 38 to rotate so that the painting machine body 67 advances, then the connecting half gear 39 is disengaged from the engaging half gear 41, the engaging half gear 41 returns to the original position under the action of the torsion spring 44 to drive the connecting half gear 39 to rotate reversely, so that the painting machine body 67 retreats due to the rotation of the wheel 38 and moves back and forth at a high speed, meanwhile, the thread block 32 descends to drive the connecting plate 58 to descend, so that the painting rotary drum 68 is on the ground, after equal amount of paint falls on the paint rotary drum 59, the painting rotary drum 68 moves back and forth along with the painting machine body 67, the painting rotary drum 68 rotates due to the friction force of the ground, the paint rotary drum 59 rotates to enable the paint rotary 59 to rotate, so that the paint is uniformly, the convex-shaped blocks 62 on the brushing rotary drum 68 contact the ground to print patterns on the ground, and the patterns are moved back and forth in a reciprocating manner, so that the paint is printed more uniformly and completely, after the brushing is finished, the electric push rod 71 restores to the original position, and the working motor 37 rotates reversely at a low speed to finish the resetting. If different indicators need to be printed, the painting rotating cylinder 68 is removed and replaced.
The invention has the beneficial effects that: the paint rotating drum can quantitatively spray stirred paint to the paint rotating drum, the machine body is limited to move left and right, the machine body automatically moves back and forth, the paint of the paint rotating drum is transferred to the convex-shaped blocks on the painting rotating drum to uniformly and fully paint the paint on the ground, so that the painting layer is more resistant to polishing, and the light reflecting effect is more obvious.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.