Automatic printing equipment of toy apron top patternTechnical Field
The invention relates to printing equipment, in particular to automatic printing equipment for top patterns of a toy cover plate.
Background
The toy is often used as an edutainment mode in human society, and is a tool for opening the intelligent skylight, so that people can be intelligent and smart. The love is the nature of children, the toy plays an important role in the growth process of the children, a good toy can promote the development of language action skills and ideas of the children, and the observation, attention, imagination and thinking ability of the children can be cultivated.
General electronic toy all need use the battery, the apron can be installed in the battery outside, can print the information of toy on the apron, make things convenient for the head of a family's purchase and to the understanding of this toy, the mill is when producing the apron, print the apron with special instrument usually, the work efficiency that prior art printed the apron is not high, need artificial material loading moreover and get the material, the process is loaded down with trivial details, to above-mentioned problem, a work efficiency height and easy operation's automatic printing apparatus of toy apron top pattern has been designed.
Disclosure of Invention
In order to overcome the defects of low working efficiency and complex operation of cover plate printing in the prior art, the invention aims to provide automatic toy cover plate top pattern printing equipment which is high in working efficiency and simple to operate.
The technical scheme is as follows: the utility model provides an automatic printing apparatus of toy apron top pattern, is equipped with first printing mechanism including base, first printing mechanism, second printing mechanism and transport mechanism on one side of the base top, and base top one side is equipped with the second printing mechanism, and base top one side middle part is equipped with transport mechanism.
Further, the second printing mechanism comprises a first supporting block, a first supporting plate, a first fixed block, a second rotating shaft, a rotating member, a connecting member, a pressing block, a second fixed block, a connecting column, a fixed plate, a fixed shaft, a first printing plate, a second supporting block, a first spring and a second printing plate, wherein the first supporting block is arranged on one side of the top of the base, the first supporting plate is arranged on one side of the top of the first supporting block, the first fixed block is arranged on the upper portion of one side of the first supporting plate, the side portion of the first fixed block slides and rotates to be provided with the second rotating shaft, the rotating member is arranged in the middle of the second rotating shaft, two pressing blocks are rotatably arranged on the lower portion of the second rotating shaft, the connecting member is rotatably arranged on the lower portion of the second rotating shaft and is positioned between the two pressing blocks, the second fixed, the rotary type is equipped with the fixed axle between fixed plate and the first fixed block, and the connecting post bottom is equipped with first printing plate, and base top one side middle part is equipped with the second supporting shoe, and the second supporting shoe top is equipped with four first springs, is equipped with the second between the first spring top and prints the board, and the second prints board and first printing plate cooperation.
Further, the first printing mechanism comprises a first support frame, a first servo motor, a first rotating shaft, a guide piece, a guide rod, a second support frame, a first guide block and a rotating block, one side of the top of the first support block is provided with the first support frame, the top of the first support frame is provided with the first servo motor, an output shaft of the first servo motor is provided with the first rotating shaft, the side portion of the first rotating shaft is provided with the guide piece, the guide piece is matched with the rotating piece, the middle portion of the first rotating shaft is provided with the guide rod, the guide rod is matched with the rotating piece, the middle portion of one side of the top of the first support block is provided with the second support frame, the second support frame is rotatably connected with the first rotating shaft, the side portion of the first rotating shaft is provided with the first guide block, the middle portion of one side of the upper portion of the first support block is rotatably provided with.
Further, transport mechanism is including the second backup pad, the third rotation axis, first belt assembly, the connecting block, second servo motor and deflector, base top one side middle part is equipped with the second backup pad, second backup pad upper portion and base upper portion one side equal rotary type are equipped with the third rotation axis, be equipped with first belt assembly between the third rotation axis, second support block one side upper portion is equipped with the connecting block, the connecting block top is equipped with second servo motor, second servo motor output shaft is connected with the third rotation axis one end of one side, base top one side middle part is equipped with the deflector.
Furthermore, the device also comprises an accommodating piece, wherein the accommodating piece is arranged in the middle of one side of the top of the base.
Further, still including reinforced mechanism, reinforced mechanism is including the third backup pad, the protection shield, third servo motor, the second belt assembly, receive the piece, second spring and second guide block, base top one side is equipped with two third backup pads, be equipped with the protection shield between the third backup pad top, the third backup pad upper portion of one side is equipped with third servo motor, base top one side is equipped with the second guide block, second guide block bottom one side is connected with second backup pad top one side, the rotary type is equipped with the second belt assembly between the third backup pad upper portion of second guide block upper portion and one side, second belt assembly one side and third servo motor output shaft, evenly be equipped with on the second belt assembly and receive the piece, be equipped with the second spring in the middle of the inboard top of protection shield.
Further, the third rotation shaft is cylindrical in shape.
Further, the first rotation shaft is cylindrical in shape.
The beneficial effects are that: 1. according to the invention, through the matching of the first printing mechanism, the second printing mechanism, the conveying mechanism and the receiving piece, the functions of conveying, printing and collecting the cover plate can be automatically completed, and the working efficiency of people is improved.
2. Through reinforced mechanism, can realize not needing the manual material loading of people to the intermittent type nature material loading function of apron, make things convenient for people's work.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of a first printing mechanism according to the present invention.
Fig. 3 is a schematic perspective view of a second printing mechanism according to the present invention.
Fig. 4 is a schematic perspective view of the conveying mechanism of the present invention.
Fig. 5 is a schematic perspective view of the charging mechanism of the present invention.
In the reference symbols: 1_ base, 2_ first printing mechanism, 21_ first support frame, 22_ first servo motor, 23_ first rotation shaft, 24_ guide, 25_ guide bar, 26_ second support frame, 27_ first guide block, 28_ rotary block, 3_ second printing mechanism, 31_ first support block, 32_ first support plate, 33_ first fixed block, 34_ second rotation shaft, 35_ rotary member, 36_ connecting member, 37_ press block, 38_ second fixed block, 39_ connecting column, 310_ fixed plate, 311_ fixed shaft, 312_ first print plate, 313_ second support block, 314_ first spring, 315_ second print plate, 4_ transport mechanism, 41_ second support plate, 42_ third rotation shaft, 43_ first belt assembly, 44_ connecting block, 45_ second servo motor, 46_ guide plate, 5_ container, 6_ charging mechanism, 61_ third support plate, 62_ protective plate, 63_ third servomotor, 64_ second belt assembly, 65_ take-up, 66_ second spring, 67_ second guide block.
Detailed Description
The preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings.
Example 1
The utility model provides an automatic printing apparatus of toy apron top pattern, as shown in figure 1, including base 1, first printing mechanism 2, second printing mechanism 3 and transport mechanism 4, the right part of base 1 top rear side is equipped with first printing mechanism 2, and base 1 top rear side right part is equipped with second printing mechanism 3, and base 1 top rear side middle part is equipped with transport mechanism 4.
When people need print the apron, start first printing mechanism 2 and transport mechanism 4 earlier, first printing mechanism 2 drives second printing mechanism 3 operation, then put the apron on transport mechanism 4 in proper order, transport mechanism 4 drives the apron and moves forward, second printing mechanism 3 prints the apron simultaneously, then manual the apron that will print is collected, the device is repeated the operation, after all laps are printed, close first printing mechanism 2 and transport mechanism 4.
Example 2
On the basis of embodiment 1, as shown in fig. 2, 3, 4 and 5, the second printing mechanism 3 includes a first supportingblock 31, a first supportingplate 32, afirst fixing block 33, a secondrotating shaft 34, a rotatingmember 35, a connectingmember 36, apressing block 37, asecond fixing block 38, a connectingcolumn 39, afixing plate 310, afixing shaft 311, afirst printing plate 312, a second supportingblock 313, afirst spring 314 and asecond printing plate 315, the first supportingblock 31 is disposed on the right portion of the rear side of the top of the base 1, the first supportingplate 32 is disposed on the left portion of the rear side of the top of the first supportingblock 31, thefirst fixing block 33 is disposed on the upper portion of the front side of the first supportingplate 32, the second rotatingshaft 34 is disposed on the front portion of thefirst fixing block 33 in a sliding and rotating manner, the rotatingmember 35 is disposed on the middle portion of the second rotatingshaft 34, twopressing blocks 37 are rotatably disposed on the lower portion of the, the connectingpiece 36 is located between the twopressing blocks 37, the top of the second rotatingshaft 34 is provided with asecond fixing block 38, the left part of thesecond fixing block 38 is provided with a connectingcolumn 39, the upper part of the connectingcolumn 39 is slidably provided with afixing plate 310, afixing shaft 311 is rotatably arranged between thefixing plate 310 and thefirst fixing block 33, the bottom of the connectingcolumn 39 is provided with afirst printing plate 312, the middle part of the right side of the top of the base 1 is provided with a second supportingblock 313, the top of the second supportingblock 313 is provided with fourfirst springs 314, asecond printing plate 315 is arranged between the tops of thefirst springs 314, and thesecond printing plate 315.
The first printing mechanism 2 comprises afirst support frame 21, a first servo motor 22, a first rotatingshaft 23, aguide piece 24, aguide rod 25, asecond support frame 26, afirst guide block 27 and arotating block 28, wherein thefirst support frame 21 is arranged at the rear part of the right side of the top of afirst support block 31, the first servo motor 22 is arranged at the top of thefirst support frame 21, the first rotatingshaft 23 is arranged on an output shaft of the first servo motor 22, theguide piece 24 is arranged at the rear part of the first rotatingshaft 23, theguide piece 24 is matched with therotating piece 35, theguide rod 25 is arranged in the middle of the first rotatingshaft 23, theguide rod 25 is matched with therotating piece 35, thesecond support frame 26 is arranged in the middle of the right side of the top of thefirst support block 31, thesecond support frame 26 is rotatably connected with the first rotatingshaft 23, thefirst guide block 27 is arranged at the front part of the first rotatingshaft 23, the rotatingblock 28 is rotatably arranged in, the rotatingblock 28 is slidably coupled to thefirst guide block 27.
When the conveying mechanism 4 drives the cover plate to move forward, the first servo motor 22 is started, the output shaft of the first servo motor 22 drives the first rotatingshaft 23, theguide member 24, theguide rod 25 and thefirst guide block 27 to rotate, thefirst guide block 27 drives therotating block 28 to rotate up and down in a reciprocating manner, the rotatingblock 28 drives the connectingmember 36 to move up and down in a reciprocating manner, when the connectingmember 36 moves down, thepressing block 37, the second rotatingshaft 34, the rotatingmember 35, thesecond fixing block 38, the connectingcolumn 39 and thefirst printing plate 312 are driven to move down, thefirst printing plate 312 prints on the cover plate, when the connectingmember 36 moves up and resets, thepressing block 37, the second rotatingshaft 34, the rotatingmember 35, thesecond fixing block 38, the connectingcolumn 39 and thefirst printing plate 312 move up and reset, when theguide rod 25 contacts with the rotatingmember 35, the rotatingmember 35 is driven to rotate to the right for a quarter of a circle, and the rotating, Thesecond fixing block 38, theconnection column 39, thefixing plate 310, thefixing shaft 311 and thefirst printing plate 312 rotate, when theguide rod 25 is separated from the rotatingmember 35, the rotatingmember 35 stops rotating, at this time, thefirst printing plate 312 moves downwards, when thefirst printing plate 312 is contacted with thesecond printing plate 315, the dye on thesecond printing plate 315 is adhered, thesecond printing plate 315 is driven to move downwards, thefirst spring 314 is compressed, when thefirst printing plate 312 moves upwards and resets, thefirst printing plate 312 is separated from thesecond printing plate 315, thefirst spring 314 resets, thesecond printing plate 315 is driven to move upwards and reset, when theguide member 24 is contacted with the rotatingmember 35, the rotatingmember 35 is positioned, when theguide rod 25 is contacted with the rotatingmember 35 again, the rotatingmember 35 is driven to rotate leftwards and reset by a quarter of a circle, the rotatingmember 35 drives the second rotatingshaft 34, thesecond fixing block 38, theconnection column 39, thefixing block 35, Thefixed plate 310, thefixed shaft 311 and thefirst printing plate 312 are rotationally reset, and when theguide lever 25 is separated from the rotatingmember 35, the rotatingmember 35 stops rotating, the apparatus repeats operation, and when one turns off the first servo motor 22, the rotation is all stopped.
The conveying mechanism 4 comprises a second supportingplate 41, a third rotatingshaft 42, afirst belt assembly 43, a connectingblock 44, asecond servo motor 45 and aguide plate 46, the second supportingplate 41 is arranged in the middle of the rear side of the top of the base 1, the third rotatingshaft 42 is rotatably arranged on the upper portion of the second supportingplate 41 and the front side of the upper portion of the base 1, thefirst belt assembly 43 is arranged between the third rotatingshafts 42, the connectingblock 44 is arranged on the upper portion of the left side of a second supportingblock 313, thesecond servo motor 45 is arranged on the top of the connectingblock 44, an output shaft of thesecond servo motor 45 is connected with the right end of the third rotatingshaft 42 on the front side, and theguide plate 46 is arranged.
After people startsecond servo motor 45, putfirst belt subassembly 43 with the apron in proper order on,second servo motor 45 output shaft drivesthird rotation axis 42 andfirst belt subassembly 43 and rotates this moment, andfirst belt subassembly 43 drives the forward motion of apron forfirst printing plate 312 prints the apron, and after people closedsecond servo motor 45, above-mentioned rotation all stopped.
The device also comprises anaccommodating part 5, wherein theaccommodating part 5 is arranged in the middle of the front side of the top of the base 1.
Thefirst belt assembly 43 transports the printed cover plate forward onto theguide plate 46, where it slides down into thereceiving member 5 under the influence of gravity.
Also comprises afeeding mechanism 6, thefeeding mechanism 6 comprises a third supportingplate 61, aprotective plate 62 and athird servo motor 63, thesecond belt assembly 64, the absorbingpart 65, thesecond spring 66 and thesecond guide block 67, twothird support plates 61 are arranged on the left portion of the rear side of the top of the base 1, aprotection plate 62 is arranged between the tops of thethird support plates 61, athird servo motor 63 is arranged on the upper portion of thethird support plate 61 on the front side, thesecond guide block 67 is arranged on the left portion of the rear side of the top of the base 1, the right side of the bottom of thesecond guide block 67 is connected with the left side of the top of thesecond support plate 41, thesecond belt assembly 64 is rotatably arranged between the upper portion of thesecond guide block 67 and the upper portion of thethird support plate 61 on the rear side, the left portion of the front side of thesecond belt assembly 64 is connected with an output shaft of thethird servo motor 63, the absorbingpart 65 is evenly arranged on thesecond belt assembly 64, and.
When people need print the apron, all put the apron between thethird backup pad 61 top earlier,second spring 66 compresses, then startthird servo motor 63,third servo motor 63 output shaft drivessecond belt assembly 64 and receives a 65 rotation, when receiving a 65 and apron contact, drive the apron and move right, whenthird backup pad 61 is kept away from to the apron of downside,second spring 66 reconversion, drive other apron and move down, when the apron contacts withsecond guide block 67, make the apron with receive a 65 separation, under the effect of gravity, the apron landing is tofirst belt assembly 43 on, realize intermittent type nature material loading, after people closethird servo motor 63, above-mentioned rotation is all stopped.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.