CN115027154B - Panel spray-painting device of digital spray-painting machine - Google Patents

Panel spray-painting device of digital spray-painting machine Download PDF

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Publication number
CN115027154B
CN115027154B CN202210890292.5A CN202210890292A CN115027154B CN 115027154 B CN115027154 B CN 115027154B CN 202210890292 A CN202210890292 A CN 202210890292A CN 115027154 B CN115027154 B CN 115027154B
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gear
wall
block
shaped
shell
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CN115027154A (en
Inventor
皮幺进
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Shenzhen Zhongtu Picture Technology Co ltd
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Shenzhen Zhongtu Picture Technology Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J3/00Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
    • B41J3/407Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed for marking on special material
    • B41J3/4073Printing on three-dimensional objects not being in sheet or web form, e.g. spherical or cubic objects
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J11/00Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form
    • B41J11/0015Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form for treating before, during or after printing or for uniform coating or laminating the copy material before or after printing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J11/00Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form
    • B41J11/0015Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form for treating before, during or after printing or for uniform coating or laminating the copy material before or after printing
    • B41J11/002Curing or drying the ink on the copy materials, e.g. by heating or irradiating
    • B41J11/0022Curing or drying the ink on the copy materials, e.g. by heating or irradiating using convection means, e.g. by using a fan for blowing or sucking air
    • B41J11/00222Controlling the convection means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J29/00Details of, or accessories for, typewriters or selective printing mechanisms not otherwise provided for
    • B41J29/17Cleaning arrangements

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Transmission Devices (AREA)

Abstract

The invention relates to a panel spray-painting device of a digital spray-painting machine, which belongs to the technical field of digital spray-painting machines and aims to solve the problem that a fan is usually driven by additional driving equipment when in use.

Description

Panel spray-painting device of digital spray-painting machine
Technical Field
The invention relates to the technical field of digital inkjet printers, in particular to a panel inkjet device of a digital inkjet printer.
Background
The digital spray drawing machine can print patterns, LOG0 and characters of various products in colors such as color, any complex color, transition color and the like on any relative plane soft and hard materials such as organic glass, metal, plastic, crystal, wood products, leather, textile fabric, copper plate paper and the like, does not need plate making, color register and complex plate drying procedures, and cannot damage the surface of the materials. Since the product comes into the market, the product is highly evaluated by all trades, a large number of factory customers and wedding buildings compete for purchase, and the number of customer groups is increasing. After the panel is manufactured, a panel inkjet device of a digital inkjet printer is usually used to draw a required specific pattern on the surface of the panel.
Present digital inkjet printer's panel air brushing device is carrying out the during operation, digital inkjet printer is the round trip movement on the panel surface usually, thereby realize the pattern drawing at the panel, when the in-service use, be attached on the panel fast for guaranteeing the pattern of drawing, need use the fan to carry out the wind-blowing to the position after drawing, nevertheless the fan need additionally utilize when using to drive equipment and drive it usually, power and displacement when not only having effectual digital inkjet printer round trip movement of utilization like this, use cost has also been promoted simultaneously, and the fan is when blowing, blow the panel surface with some batting debris easily, thereby lead to the pattern to draw the quality reduction, inconvenient use.
In order to solve the problems, a panel spray-painting device of a digital spray-painting machine is provided.
Disclosure of Invention
The invention aims to provide a panel spray-painting device of a digital spray-painting machine, which works by adopting the device, thereby solving the problems that when the panel spray-painting device of the digital spray-painting machine in the background works, a digital spray-painting device usually moves back and forth on the surface of a panel, so as to realize pattern drawing on the panel, and when the device is actually used, in order to ensure that the drawn patterns are quickly attached to the panel, a fan is required to blow the drawn positions, but when the fan is used, the fan usually needs to be additionally driven by a driving device, so that the device does not effectively utilize the power and the displacement of the digital spray-painting device when moving back and forth, and simultaneously, the use cost is also improved, and when the fan blows air, some flock is easily blown to the surface of the panel, so that the pattern drawing quality is reduced, and sundries are inconvenient to use.
In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a panel air brushing device of digital air brushing machine, is including installing base and the fixed mounting place the platform on installing base middle part top surface, and place and install control panel on the one end outer wall of platform one side, the both sides upper end of placing the platform slides respectively and is provided with electronic movable block, fixed mounting has L type connecting block on one side top surface of electronic movable block, and installs electronic slide rail on the L type connecting block, and installs respectively on the outer wall of one side of L type connecting block that is located and places a both ends at the both ends of electronic slide rail, slides on the electronic slide rail and is provided with digital air brushing ware, and digital air brushing ware's top surface slides and is provided with the blowing subassembly, and fixed mounting has the drive subassembly on the outer wall of one side of blowing subassembly, fixed mounting has L type catch bar on the inner upper end outer wall of electronic movable block one side:
a rack is fixedly arranged on the L-shaped connecting block, two ends of the rack are respectively embedded and fixedly arranged on the L-shaped connecting block positioned at two ends of the placing table, and a convex pressing block is fixedly arranged at the outer end of the top surface of the L-shaped connecting block positioned at one end of the placing table;
a first T-shaped round hole is formed in the outer wall of the middle of the outer side of the digital inkjet printer, T-shaped limiting slide bars are fixedly mounted at two sides of the top surface of the digital inkjet printer respectively, a square limiting groove is formed in the middle of the top surface of each T-shaped limiting slide bar, a telescopic driving rod is movably mounted in each first T-shaped round hole, and the upper end of each telescopic driving rod is mounted on a wind blowing assembly;
the middle of the bottom surface of the driving component is provided with a driving groove, the outer wall of the lower end of one side of the driving component is provided with a side wall groove, a first limiting gear, a second limiting gear and a thin-tooth gear are movably mounted in the inner cavity of the driving groove respectively, the first limiting gear is arranged at the opening of the lower end of the inner cavity of the driving groove, the first limiting gear and the rack are meshed and connected, the thin-tooth gear is arranged in the middle of the inner cavity of the driving groove, the second limiting gear is arranged at the upper end of the inner cavity of the driving groove, the first limiting gear is meshed and connected with the thin-tooth gear, the thin-tooth gear is meshed and connected with the second limiting gear, and one side of the first limiting gear and one side of the second limiting gear are arranged in the side wall groove respectively;
the air blowing assembly comprises a concave shell and an impurity sucking shell embedded into an opening at the upper end of the concave shell, a fan is arranged in an inner cavity at the lower end of the concave shell, a transmission rod is arranged in an inner cavity at the middle part of the concave shell, an extrusion driving mechanism is arranged in an inner cavity at one end of the impurity sucking shell, impurity sucking mechanisms are respectively arranged at two sides of the middle part of the inner cavity of the impurity sucking shell, a first gear sleeve, a second gear sleeve and a middle transmission gear are respectively and movably arranged on the outer wall of one side of the concave shell, the first gear sleeve is arranged at the lower end of the concave shell, the middle transmission gear is arranged at the upper end of the first gear sleeve, the second gear sleeve is arranged at the upper end of the middle transmission gear, and the second gear sleeve is meshed with the middle transmission gear.
Further, flexible actuating lever includes square telescopic link and the first T type pivot of fixed mounting on the outer wall of square telescopic link one side, and first T type pivot movable mounting has the second T type pivot on the outer wall of one side of square telescopic link upper end in first T type round hole, installs antifriction bearing on the opposite side outer wall of tip under the square telescopic link, and antifriction bearing sets up between L type catch bar.
Furthermore, the first limiting gear comprises a gear body and a connecting circular shaft with one end fixedly installed on the outer wall of the middle portion of one end of the gear body, a plurality of blocking blocks are evenly and fixedly installed on the outer wall of the periphery of the outer end portion of the connecting circular shaft, the blocking blocks are arranged in an inner cavity of the first gear sleeve, and each structural component and the connection relation in the second limiting gear are the same as those in the first limiting gear.
Further, a second T-shaped round hole is formed in the outer wall of the middle of one side of the concave shell, a second T-shaped rotating shaft is movably mounted in the second T-shaped round hole, T-shaped through sliding holes are formed in the two sides of the bottom surface of the concave shell respectively, a lower protruding block is fixedly mounted on the top surface of the middle of the inner cavity of each T-shaped through sliding hole, a communicating mounting hole is formed in the inner cavity of the lower end of the concave shell, a bottom surface filter screen is mounted at the opening of the lower end of the communicating mounting hole, and a pair of semicircular clamping grooves are formed in the inner walls of the two sides of the upper end of the concave shell respectively.
Furthermore, a gettering through hole is formed in an inner cavity of the gettering shell, a top surface filter screen is installed at an opening at the upper end of the gettering through hole, a concave inner installation groove is formed in an inner cavity of the middle of one end of the gettering shell, two end outer walls of two sides of the gettering shell are respectively provided with a receiving groove, a reset spring is installed on a side wall of an inner cavity of the receiving groove, a semicircular clamping block is arranged at an opening of the inner cavity of the receiving groove in a sliding mode, one end of the reset spring is installed on the outer wall of the semicircular clamping block, and the semicircular clamping block is movably clamped in the semicircular clamping groove.
Further, the fan includes mounting bracket and movable mounting fan main part on the mounting bracket, the mounting bracket is installed on the inner chamber wall of intercommunication mounting hole, fixed mounting has the pinion on the middle part top surface of fan main part, the transfer line includes the transmission axis and cup joints the connecting bearing on the outer wall of transmission axis middle part, and the connecting bearing is installed on the inner chamber wall of intercommunication mounting hole, fixed mounting has the change gear on the centraxonial one end outer wall of transmission, fixed mounting has the gear wheel on the centraxonial other end outer wall of transmission, and the change gear is connected with first gear sleeve and well drive gear meshing respectively, the gear wheel is connected with the pinion meshing.
Furthermore, the extrusion driving mechanism comprises an advancing pushing piece and scraping pieces which are respectively arranged at two sides of one end of the advancing pushing piece in a sliding mode, the advancing pushing piece is arranged on the gettering shell in a sliding mode, one end of the advancing pushing piece is arranged in an inner cavity of the concave inner mounting groove, one end of the scraping piece is arranged in the gettering through hole, and the scraping pieces are respectively arranged at openings at two ends of the concave inner mounting groove in a sliding mode.
Further, the impeller that gos forward is including promoting the translation piece and respectively fixed mounting the extension supporting shoe on promoting translation piece one end both sides outer wall, the outer tip fixed mounting who extends the supporting shoe has the inclined rail piece, and be provided with oblique spout on the outside outer wall of inclined rail piece, the one end that promotes the translation piece is passed through the extrusion spring and is installed in the inner chamber of mounting groove in the spill, scrape and get the silk piece of piece including arc scraper blade and embedding fixed mounting in arc scraper blade upper end one side department, fixed mounting has the restriction to pass the slider on the middle part outer wall of the one end of arc scraper blade, and fixed mounting has embedding drive axle on the one side outer wall of the one end that the restriction passed the slider, and embedding drive axle slides and sets up in oblique spout.
Furthermore, the impurity suction mechanism comprises an arc-shaped glass block and a collecting box fixedly installed on the outer wall of the inner side of the lower end of the arc-shaped glass block, the arc-shaped glass block is respectively and fixedly installed on the inner walls of the two sides of the inner cavity of the impurity suction through hole, and the arc-shaped scraper is attached to the surface of the arc-shaped glass block.
Furthermore, an inner cavity wall of the first gear sleeve is elastically and movably provided with a first one-way clamping block, an inner cavity wall of the first gear sleeve is fixedly provided with a first one-way stop dog, the first one-way stop dog is arranged at one side of the first one-way clamping block, an inner cavity wall of the second gear sleeve is elastically and movably provided with a second one-way clamping block, an inner cavity wall of the second gear sleeve is fixedly provided with a second one-way stop dog, and the second one-way stop dog is arranged at the other side of the second one-way clamping block.
Compared with the prior art, the invention has the following beneficial effects:
1. the invention provides a panel spray-painting device of a digital spray-painting machine, when an operator needs to perform spray-painting on a panel, the panel can be placed on a placing table, the position of the panel is adjusted, then a digital spray-painting device is started, the digital spray-painting device can move forwards on an electric sliding rail, and therefore the panel is subjected to spray-painting, at the moment, a driving component can move forwards relative to a rack, under the driving action of the rack, a first limiting gear can rotate clockwise, under the action of a first one-way stop block, a first one-way clamping block can be contacted with the blocking block, so that a first gear sleeve can be driven to rotate clockwise, under the driving action of the first gear sleeve, a bend gear can rotate anticlockwise, a fan main body can be driven to rotate through a transmission middle shaft and a big gear, the fan main body can be air-dried through the arrangement of the air-blowing component protruding out of the digital spray-painting device, the fan main body can be air-dried on the sprayed patterns, the panel, the arrangement not only skillfully utilizes the back and forth movement of the digital spray-painting device when the panel is performed, but also ensures the effect, and is convenient to use.
2. The invention provides a panel spray-painting device of a digital spray-painting machine, when a digital spray-painting device moves forwards on an electric sliding rail, a first limiting gear rotates clockwise, a second limiting gear rotates clockwise under the drive of a thin-tooth gear, a second gear sleeve rotates anticlockwise under the drive of a middle transmission gear, so that a second one-way stop block cannot block a second one-way clamping block, the second one-way clamping block can rotate relative to the second limiting gear, the rotation of a fan main body can be ensured, a spray-painted panel can be air-dried, when the digital spray-painting device moves to the tail end of the electric sliding rail, the digital spray-painting device can move backwards, at the moment, the first limiting gear can rotate anticlockwise under the drive of a rack, the first one-way clamping block can continuously cross over a blocking block, the first gear sleeve rotates relative to the first limiting gear, the second limiting gear can rotate anticlockwise under the drive of the thin-tooth gear, so that the first gear sleeve can rotate anticlockwise together, the fan main body can continue to rotate in the same direction, the digital spray-painting device can achieve the effect of blowing by the ingenious arrangement of the digital spray-painting device, and the reciprocating air-painting device can achieve the effect of the multiple air-blowing device.
3. According to the panel spray-painting device of the digital spray-painting machine, when the digital spray-painting device moves towards the tail end of the electric sliding rail, the rolling bearing can contact the L-shaped push rod at the tail end of the electric sliding rail, the whole air-blowing component can slide on the T-shaped limiting sliding rod under the pushing action of the L-shaped push rod until the air-blowing component slides to the tail end of the T-shaped limiting sliding rod, and the arrangement ensures that the air-blowing component can be always positioned at the rear end of the digital spray-painting device in the traveling path direction when the digital spray-painting device moves back and forth, so that the air-blowing component can timely air-dry a spray-painting panel of the digital spray-painting device, and the digital spray-painting device can achieve various effects and is convenient to use under the driving action of the digital spray-painting device.
4. When the fan body rotates to blow air, airflow can flow in from the top surface filter screen and flow out from the bottom surface filter screen, and at the same time, the airflow can pass through the arc-shaped glass block, and static electricity is arranged on the arc-shaped glass block in advance, so that flocks and sundries in the airflow can be adsorbed through the static electricity, and the cleanliness of the airflow blown to the panel is ensured.
Drawings
FIG. 1 is a schematic overall perspective view of the present invention;
FIG. 2 is a schematic perspective view of the mounting base of the present invention;
FIG. 3 is an enlarged schematic view of the structure at A in FIG. 2 according to the present invention;
FIG. 4 is a schematic perspective view of the blowing assembly of the present invention;
FIG. 5 is a cross-sectional view of the air blowing assembly of the present invention;
FIG. 6 is a cross-sectional view of a female housing of the present invention;
FIG. 7 is a view showing the rotational states of the first and second gear sleeves of the present invention;
FIG. 8 is a perspective view of a first limiting gear of the present invention;
FIG. 9 is a perspective view of the transmission rod of the present invention;
FIG. 10 is a plan view of a first gear sleeve of the present invention;
FIG. 11 is a cross-sectional view of a getter housing according to the present invention;
FIG. 12 is a perspective view of the advancing pusher of the present invention;
FIG. 13 is a perspective view of a scraper assembly of the present invention;
fig. 14 is a schematic perspective view of the telescopic driving rod of the present invention.
In the figure: 1. installing a base; 2. a placing table; 3. a control panel; 4. an electric moving block; 41. an L-shaped push rod; 5. an L-shaped connecting block; 51. a rack; 52. a convex pressing block; 6. an electric slide rail; 7. a digital inkjet printer; 71. a first T-shaped circular hole; 72. a T-shaped limiting slide bar; 73. a square restriction recess; 74. the rod is driven by expansion; 741. a square telescopic rod; 742. a first T-shaped rotating shaft; 743. a second T-shaped rotating shaft; 744. a rolling bearing; 8. a drive assembly; 81. driving the groove; 82. a sidewall recess; 83. a first limit gear; 831. a gear body; 832. connecting the round shaft; 833. a blocking block; 85. a second limit gear; 84. a loose-teeth gear; 9. a wind blowing assembly; 91. a concave housing; 911. a second T-shaped circular hole; 912. a T-shaped through sliding hole; 913. a lower bump; 914. the mounting hole is communicated; 915. a bottom screen; 916. a semicircular clamping groove; 92. a gettering shell; 921. a gettering via; 922. a top screen; 923. a concave inner mounting groove; 924. taking in the groove; 925. a return spring; 926. a semicircular clamping block; 93. a fan; 931. a mounting frame; 932. a fan main body; 933. a pinion gear; 94. a transmission rod; 941. a transmission middle shaft; 942. connecting a bearing; 943. a bull gear; 944. a bend gear; 95. an extrusion driving mechanism; 951. a forward pusher; 9511. pushing the translation block; 9512. a compression spring; 9513. an extension support block; 9514. an inclined rail block; 9515. an inclined chute; 952. scraping the workpiece; 9521. an arc-shaped scraper plate; 9522. silk block; 9523. limiting the penetration of the slider; 9524. embedding a driving shaft; 96. a gettering mechanism; 961. an arc-shaped glass block; 962. a collection box; 97. a first gear sleeve; 971. a first one-way clamping block; 972. a first one-way stopper; 98. a second gear sleeve; 981. a second one-way clamping block; 982. a second one-way stopper; 99. and a middle transmission gear.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In order to solve the technical problem that the fan usually needs to be driven by additional driving equipment when in use, as shown in fig. 1 to 10, the following preferred technical solutions are provided:
a panel spray-painting device of a digital spray-painting machine comprises a mounting base 1 and a placing table 2 fixedly mounted on the top surface of the middle part of the mounting base 1, wherein a control panel 3 is mounted on the outer wall of one end of one side of the placing table 2, electric moving blocks 4 are respectively slidably arranged at the upper ends of two sides of the placing table 2, an L-shaped connecting block 5 is fixedly mounted on the top surface of one side of each electric moving block 4, an electric sliding rail 6 is mounted on each L-shaped connecting block 5, two ends of each electric sliding rail 6 are respectively mounted on the outer wall of one side of each L-shaped connecting block 5 positioned at two ends of the placing table 2, a digital spray-painting device 7 is slidably arranged on each electric sliding rail 6, an air blowing component 9 is slidably arranged on the top surface of each digital spray-painting device 7, a driving component 8 is fixedly mounted on the outer wall of one side of each air blowing component 9, an L-shaped push rod 41 is fixedly mounted on the outer wall of the inner end of one side of each electric moving block 4, a rack 51 is fixedly mounted on each L-shaped connecting block 5, two ends of the rack 51 are respectively embedded and fixedly installed on the L-shaped connecting blocks 5 at two ends of the placing table 2, the outer end of the top surface of the L-shaped connecting block 5 at one end of the placing table 2 is fixedly provided with a convex pressing block 52, the outer wall of the middle part of the outer side of the digital inkjet printer 7 is provided with a first T-shaped round hole 71, two sides of the top surface of the digital inkjet printer 7 are respectively and fixedly provided with a T-shaped limiting slide bar 72, the middle part of the top surface of the T-shaped limiting slide bar 72 is provided with a square limiting groove 73, the first T-shaped round hole 71 is movably provided with a telescopic driving bar 74, the upper end of the telescopic driving bar 74 is installed on the air blowing component 9, the middle part of the bottom surface of the driving component 8 is provided with a driving groove 81, the outer wall of the lower end of one side of the driving component 8 is provided with a side wall groove 82, and the inner cavity of the driving groove 81 is respectively and movably provided with a first limiting gear 83, the wind blowing component 9 comprises a concave shell 91 and a gettering shell 92 embedded at the opening at the upper end of the concave shell 91, a fan 93 is arranged in the inner cavity at the lower end of the concave shell 91, a transmission rod 94 is arranged in the inner cavity at the middle part of the concave shell 91, an extrusion driving mechanism 95 is arranged in the inner cavity at one end of the gettering shell 92, gettering mechanisms 96 are respectively arranged at two sides of the middle part of the inner cavity of the gettering shell 92, a first gear sleeve 97, a second gear sleeve 98 and a middle gear 99 are respectively arranged on the outer wall at one side of the concave shell 91, the first gear sleeve 97 is arranged in the lower end of the transmission rod 97, the second gear sleeve 97 is arranged in the middle gear sleeve 97, the transmission rod 99 is arranged in the upper end of the first gear sleeve 97, and the transmission gear sleeve 99 is connected with the transmission rod 99 at the upper end of the second gear sleeve 97.
The telescopic driving rod 74 comprises a square telescopic rod 741 and a first T-shaped rotating shaft 742 fixedly mounted on the outer wall of one side of the square telescopic rod 741, the first T-shaped rotating shaft 742 is movably mounted in the first T-shaped circular hole 71, a second T-shaped rotating shaft 743 is fixedly mounted on the outer wall of one side of the upper end portion of the square telescopic rod 741, a rolling bearing 744 is mounted on the outer wall of the other side of the lower end portion of the square telescopic rod 741, and the rolling bearing 744 is arranged between the L-shaped push rods 41.
Specifically, when digital inkjet printer 7 moved to the end of electronic slide rail 6, antifriction bearing 744 then can contact the L type catch bar 41 that is located electronic slide rail 6 terminal department this moment, under the impetus of L type catch bar 41, wind blows whole then can slide on T type restriction slide bar 72 of subassembly 9, until sliding the end of T type restriction slide bar 72, this kind of setting then guarantees digital inkjet printer 7 when carrying out round trip movement, wind blows the rear end that subassembly 9 can be located digital inkjet printer 7 row footpath direction all the time, thereby make wind blow subassembly 9 can in time air-dry to the panel behind the digital inkjet printer 7 air-brushing, drive effect of digital inkjet printer 7, can accomplish multiple effect, and convenient to use.
The first limiting gear 83 comprises a gear body 831 and a connecting circular shaft 832 with one end fixedly mounted on the outer wall of the middle of one end of the gear body 831, a plurality of blocking blocks 833 are uniformly and fixedly mounted on the outer peripheral outer wall of the outer end of the connecting circular shaft 832, the blocking blocks 833 are arranged in the inner cavity of the first gear sleeve 97, and each structural component and connection relation in the second limiting gear 85 are the same as those in the first limiting gear 83.
A second T-shaped circular hole 911 is formed in the outer wall of the middle of one side of the concave shell 91, a second T-shaped rotating shaft 743 is movably mounted in the second T-shaped circular hole 911, T-shaped through sliding holes 912 are respectively formed in two sides of the bottom surface of the concave shell 91, a lower protruding block 913 is fixedly mounted on the top surface of the middle of the inner cavity of the T-shaped through sliding holes 912, a communicating mounting hole 914 is formed in the inner cavity of the lower end of the concave shell 91, a bottom surface filter screen 915 is mounted at the lower end opening of the communicating mounting hole 914, and a pair of semicircular clamping grooves 916 are respectively formed in the inner walls of two sides of the upper end of the concave shell 91.
The fan 93 includes mounting bracket 931 and the fan main part 932 of movable mounting on mounting bracket 931, mounting bracket 931 is installed on the inner chamber inner wall of intercommunication mounting hole 914, fixed mounting has pinion 933 on the middle part top surface of fan main part 932, transfer line 94 includes transmission axis 941 and cup joints the coupling bearing 942 on the outer wall in middle part of transmission axis 941, and coupling bearing 942 is installed on the inner chamber inner wall of intercommunication mounting hole 914, fixed mounting has bend gear 944 on the one end outer wall of transmission axis 941, fixed mounting has gear wheel 943 on the other end outer wall of transmission axis 941, and bend gear 944 is connected with first gear sleeve 97 and the meshing of well drive gear 99 respectively, gear wheel 943 is connected with the pinion 933 meshing.
Elastic movable mounting has first one-way fixture block 971 on the inner chamber wall of first gear sleeve 97, it has first one-way dog 972 still to fix a mounting on the inner chamber wall of first gear sleeve 97, and first one-way dog 972 sets up in one side department of first one-way fixture block 971, elastic movable mounting has the one-way fixture block 981 of second on the inner chamber wall of second gear sleeve 98, it has the one-way dog 982 of second still to fix a mounting on the inner chamber wall of second gear sleeve 98, and the one-way dog 982 of second sets up opposite side department at the one-way fixture block 981 of second.
It is specific, when the operator need carry out the air brushing on the panel, then can place the panel on placing platform 2, and the position has been adjusted, later start digital air brushing ware 7, digital air brushing ware 7 then can be at electronic slide rail 6 on the forward movement, thereby carry out the air brushing to the panel, drive subassembly 8 this moment and then can be for rack 51 forward movement, under the drive effect of rack 51, can make first restriction gear 83 carry out clockwise rotation, under the effect of first one-way dog 972, can make first one-way dog 971 contact block 833, thereby can drive first gear cover 97 and carry out clockwise rotation, under the drive of first gear cover 97, can make air brushing redirection gear 944 carry out anticlockwise rotation, can drive fan main part 941 and 943 and drive fan main part 932 and rotate, through air-blowing subassembly 9 protrusion digital air brushing ware 7 sets up, can make fan main part 932 air-dry to the pattern of air brushing, this kind of setting up not only has utilized digitizer 7 ingenious when carrying out the round trip movement to the panel, 932 effect has also been guaranteed to make things convenient for use.
Further, when the digital inkjet printer 7 moves forwards on the electric sliding rail 6, the first limiting gear 83 rotates clockwise, at this time, under the driving of the thin-tooth gear 84, the second limiting gear 85 rotates clockwise, under the driving of the middle transmission gear 99, the second gear sleeve 98 rotates counterclockwise, so that the second one-way stop 982 cannot block the second one-way stop 981, the second one-way stop 981 rotates relative to the second limiting gear 85, so that the rotation of the fan main body 932 is ensured, the panel of the inkjet printer can be air-dried, when the digital inkjet printer 7 moves to the tail end of the electric sliding rail 6, the panel of the inkjet printer moves backwards, at this time, under the driving of the rack 51, the first limiting gear 83 rotates counterclockwise, at this time, the first one-way stop 971 can continuously pass through the blocking block 833, the first gear sleeve 97 rotates relative to the first limiting gear 83, under the driving of the thin-tooth gear 84, the second limiting gear 85 rotates counterclockwise, so that the second limiting gear sleeve 98 can drive the counter-clockwise rotation of the first limiting gear sleeve 833, the first gear sleeve 97 rotates relative to drive the digital inkjet printer to rotate, and the digital inkjet printer can drive the digital inkjet printer to continuously and the fan main body to rotate, and the digital inkjet printer 7, and the digital inkjet printer can be set up a plurality of the digital inkjet printer through the blowing stop 989.
In order to solve the technical problem that when the fan blows air, some lint impurities are easy to blow to the surface of the panel, so that the quality of pattern drawing is reduced, as shown in fig. 5, 6 and 11-14, the following preferred technical solutions are provided:
be provided with in the inner chamber of gettering shell 92 and inhale miscellaneous through-hole 921, and the top surface filter screen 922 is installed to the upper end opening part of gettering through-hole 921, be provided with mounting groove 923 in the spill in the middle part inner chamber of the one end of gettering shell 92, be provided with income recess 924 on the both ends outer wall of gettering shell 92 both sides respectively, and install reset spring 925 on the inner chamber lateral wall of income recess 924, the inner chamber opening part slip of income recess 924 is provided with semicircle fixture block 926, and reset spring 925's one end is installed on the outer wall of semicircle fixture block 926, semicircle fixture block 926 activity joint is in semicircle draw-in groove 916.
Extrusion drive mechanism 95 includes the impeller 951 that advances and slides respectively and set up the piece 952 of getting of scraping of impeller 951 one end both sides department that advances, and the impeller 951 that advances slides and sets up on gettering shell 92, and the one end setting of the impeller 951 that advances is in the inner chamber of mounting groove 923 in the spill, and the one end setting of getting the piece 952 of scraping is in gettering through-hole 921, and the piece 952 of getting of scraping slides respectively and sets up the both ends opening part of mounting groove 923 in the spill.
The advancing pushing part 951 comprises a pushing translation block 9511 and extension supporting blocks 9513 which are respectively and fixedly installed on the outer walls of two sides of one end of the pushing translation block 9511, an inclined rail block 9514 is fixedly installed at the outer end part of the extension supporting block 9513, inclined sliding grooves 9515 are formed in the outer wall of the outer side of the inclined rail block 9514, one end of the pushing translation block 9511 is installed in an inner cavity of the concave inner installation groove 923 through an extrusion spring 9512, the scraping part 952 comprises an arc-shaped scraper 9521 and a silk block 9522 which is fixedly installed at one side of the upper end of the arc-shaped scraper 9521 in an embedded mode, a limiting penetrating slider 9523 is fixedly installed on the outer wall of the middle of one end of the arc-shaped scraper 9521, an embedding driving shaft 9524 is fixedly installed on the outer wall of one side of one end of the limiting penetrating slider 9523, and the embedding driving shaft 9524 is arranged in the inclined sliding grooves 9515 in a sliding mode.
The gettering mechanism 96 includes an arc glass block 961 and a collection box 962 fixedly installed on an inner side outer wall of a lower end of the arc glass block 961, the arc glass block 961 is fixedly installed on both side inner walls of an inner cavity of the gettering through hole 921, respectively, and an arc squeegee 9521 is attached to a surface of the arc glass block 961.
Specifically, when the fan main body 932 rotates to blow, the air flow can flow in from the top surface filter 922, flow out from the bottom surface filter 915, at this moment, the air flow can pass through the arc-shaped glass block 961, static is arranged on the arc-shaped glass block 961 in advance, the flock sundries in the air flow can be adsorbed through the static, thereby ensuring the cleanliness of the air flow blown to the panel, when the digital inkjet printer 7 moves to the tail end of the electric sliding rail 6, the protruding pressing block 52 can extrude and push the translation block 9511, at this moment, under the limiting effect of the embedding driving shaft 9524 and the inclined sliding groove 9515, the scraping piece can be driven to wholly move downwards, at this moment, the flock sundries adsorbed on the arc-shaped glass block 961 can be scraped to the collection box through the arc-shaped scraping plate 9521 to be collected, friction between the silk block 9522 and the arc-shaped glass block 961 can be generated again, thereby carrying out the next adsorption, the sundries suction shell 92 can be wholly taken out during cleaning, the motion effect of the digital inkjet printer 7 is applied, not only one ingenious effect of the digital inkjet printer 7 is enabled, the effect of blowing is achieved, the air flow of the digital inkjet printer can be driven, the air flow is also ensured, the cleanliness of the panel at the same time, and the panel can be processed at the same time.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a panel air brushing device of digital inkjet printer, places platform (2) including installation base (1) and fixed mounting on installation base (1) middle part top surface, and places and install control panel (3) on the one end outer wall of platform (2) one side, and the both sides upper end of placing platform (2) slides respectively and is provided with electric movable block (4), its characterized in that: an L-shaped connecting block (5) is fixedly installed on the top surface of one side of the electric moving block (4), an electric sliding rail (6) is installed on the L-shaped connecting block (5), two ends of the electric sliding rail (6) are respectively installed on the outer wall of one side of the L-shaped connecting block (5) located at two ends of the placing table (2), a digital inkjet printer (7) is slidably arranged on the electric sliding rail (6), an air blowing component (9) is slidably arranged on the top surface of the digital inkjet printer (7), a driving component (8) is fixedly installed on the outer wall of one side of the air blowing component (9), and an L-shaped push rod (41) is fixedly installed on the outer wall of the upper end of the inner end of one side of the electric moving block (4);
a rack (51) is fixedly installed on the L-shaped connecting block (5), two ends of the rack (51) are respectively embedded and fixedly installed on the L-shaped connecting blocks (5) at two ends of the placing table (2), and a protruding pressing block (52) is fixedly installed at the outer end of the top surface of the L-shaped connecting block (5) at one end of the placing table (2);
a first T-shaped round hole (71) is formed in the outer wall of the middle of the outer side of the digital inkjet printer (7), T-shaped limiting slide rods (72) are fixedly mounted at two sides of the top surface of the digital inkjet printer (7) respectively, a square limiting groove (73) is formed in the middle of the top surface of each T-shaped limiting slide rod (72), a telescopic driving rod (74) is movably mounted in each first T-shaped round hole (71), and the upper end of each telescopic driving rod (74) is mounted on the air blowing assembly (9);
a driving groove (81) is formed in the middle of the bottom face of the driving assembly (8), a side wall groove (82) is formed in the outer wall of the lower end of one side of the driving assembly (8), a first limiting gear (83), a second limiting gear (85) and a thin-tooth gear (84) are movably mounted in the inner cavity of the driving groove (81), the first limiting gear (83) is arranged at the opening of the lower end of the inner cavity of the driving groove (81), the first limiting gear (83) is meshed with the rack (51), the thin-tooth gear (84) is arranged in the middle of the inner cavity of the driving groove (81), the second limiting gear (85) is arranged at the upper end of the inner cavity of the driving groove (81), the first limiting gear (83) is meshed with the thin-tooth gear (84), the thin-tooth gear (84) is meshed with the second limiting gear (85), and one sides of the first limiting gear (83) and the second limiting gear (85) are arranged in the side wall groove (82) respectively;
the air blowing assembly (9) comprises a concave shell (91) and a gettering shell (92) embedded into an opening at the upper end of the concave shell (91), a fan (93) is arranged in an inner cavity at the lower end of the concave shell (91), a transmission rod (94) is arranged in an inner cavity at the middle of the concave shell (91), an extrusion driving mechanism (95) is arranged in an inner cavity at one end of the gettering shell (92), gettering mechanisms (96) are respectively arranged at two sides of the middle of the inner cavity of the gettering shell (92), a first gear sleeve (97), a second gear sleeve (98) and a middle transmission gear (99) are respectively and movably arranged on the outer wall of one side of the concave shell (91), the first gear sleeve (97) is arranged at the lower end of the concave shell (91), the middle transmission gear (99) is arranged at the upper end of the first gear sleeve (97), the second gear sleeve (98) is arranged at the upper end of the middle transmission gear (99), and the second gear sleeve (98) is connected with the middle transmission gear (99) in a meshing manner.
2. The inkjet device of a digital inkjet printer panel according to claim 1, wherein: the telescopic driving rod (74) comprises a square telescopic rod (741) and a first T-shaped rotating shaft (742) fixedly mounted on the outer wall of one side of the square telescopic rod (741), the first T-shaped rotating shaft (742) is movably mounted in a first T-shaped round hole (71), a second T-shaped rotating shaft (743) is fixedly mounted on the outer wall of one side of the upper end of the square telescopic rod (741), a rolling bearing (744) is mounted on the outer wall of the other side of the lower end of the square telescopic rod (741), and the rolling bearing (744) is arranged between L-shaped push rods (41).
3. The inkjet device of a digital inkjet printer panel according to claim 2, wherein: first restriction gear (83) include gear main part (831) and one end fixed mounting connect circle axle (832) on gear main part (831) one end middle part outer wall, and connect even fixed mounting have a plurality of stoppers (833) on the outer peripheral outer wall of circle axle (832) outer tip, and stopper (833) set up in the inner chamber of first gear cover (97), and each structure is constituteed and the relation of connection is the same with each structure is constituteed and the relation of connection in second restriction gear (85) and first restriction gear (83).
4. The inkjet device of a digital inkjet printer panel according to claim 3, wherein: be provided with second T type round hole (911) on the middle part outer wall of spill shell (91) one side, and second T type pivot (743) movable mounting is in second T type round hole (911), the both sides department of spill shell (91) bottom surface is provided with T type respectively and runs through slide opening (912), and fixed mounting has lower lug (913) on the middle part top surface of T type through slide opening (912) inner chamber, be provided with intercommunication mounting hole (914) in the lower extreme inner chamber of spill shell (91), and the lower extreme opening part of intercommunication mounting hole (914) installs bottom surface filter screen (915), be provided with a pair of semicircle draw-in groove (916) on the both sides inner wall on spill shell (91) upper end respectively.
5. The inkjet printer as claimed in claim 4, wherein the inkjet head further comprises: be provided with in the inner chamber of gettering shell (92) and inhale miscellaneous through-hole (921), and top surface filter screen (922) are installed to the upper end opening part of gettering through-hole (921), be provided with mounting groove (923) in the middle part inner chamber of the one end of gettering shell (92) spill, be provided with income recess (924) on the both ends outer wall of gettering shell (92) both sides respectively, and install reset spring (925) on the inner chamber lateral wall of income recess (924), the inner chamber opening part slip of income recess (924) is provided with semicircle fixture block (926), and the one end of reset spring (925) is installed on the outer wall of semicircle fixture block (926), semicircle fixture block (926) activity joint is in semicircle draw-in groove (916).
6. The inkjet device of a digital inkjet printer panel according to claim 5, wherein: fan (93) include mounting bracket (931) and movable mounting fan main part (932) on mounting bracket (931), mounting bracket (931) are installed on the inner chamber inner wall of intercommunication mounting hole (914), fixed mounting has pinion (933) on the middle part top surface of fan main part (932), transfer line (94) are including transmission axis (941) and cup joint connection bearing (942) on transmission axis (941) middle part outer wall, and connection bearing (942) is installed on the inner chamber inner wall of intercommunication mounting hole (914), fixed mounting has redirecting gear (944) on the one end outer wall of transmission axis (941), fixed mounting has gear wheel (943) on the other end outer wall of transmission axis (941), and redirecting gear wheel (944) respectively with first gear sleeve (97) and well transmission gear (99) meshing connection, gear wheel (943) are connected with pinion (933) meshing.
7. The inkjet device of a digital inkjet printer panel according to claim 6, wherein: extrusion drive mechanism (95) including advancing impeller (951) and slide respectively and set up scraping of advancing impeller (951) one end both sides department and get piece (952), and advance impeller (951) and slide and set up on gettering shell (92), and the one end setting that advances impeller (951) is in the inner chamber of mounting groove (923) in the spill, the one end setting of scraping piece (952) is in gettering through-hole (921), scrape and get piece (952) and slide respectively and set up the both ends opening part of mounting groove (923) in the spill.
8. The inkjet device of a digital inkjet printer panel according to claim 7, wherein: the advancing pushing piece (951) comprises a pushing translation block (9511) and extension supporting blocks (9513) which are respectively and fixedly installed on the outer walls of two sides of one end of the pushing translation block (9511), an inclined rail block (9514) is fixedly installed at the outer end part of the extension supporting block (9513), an inclined sliding groove (9515) is formed in the outer wall of the outer side of the inclined rail block (9514), one end of the pushing translation block (9511) is installed in an inner cavity of a concave inner installation groove (923) through an extrusion spring (9512), the scraping piece (952) comprises an arc-shaped scraper blade (9521) and a silk block (9522) which is fixedly installed at one side of the upper end of the arc-shaped scraper blade (9521), the limit of the outer wall of the middle part of one end of the arc-shaped scraper blade (9521) penetrates through the sliding block (9523), an embedding driving shaft (9524) is fixedly installed on the outer wall of one side of one end of the limit of the sliding block (9523), and the embedding driving shaft (9524) is slidably arranged in the inclined sliding groove (9515).
9. The inkjet printer as claimed in claim 8, wherein the inkjet head further comprises: the impurity suction mechanism (96) comprises an arc-shaped glass block (961) and a collection box (962) fixedly installed on the outer wall of the inner side of the lower end of the arc-shaped glass block (961), the arc-shaped glass block (961) is fixedly installed on the inner walls of two sides of an inner cavity of the impurity suction through hole (921) respectively, and an arc-shaped scraper blade (9521) is attached to the surface of the arc-shaped glass block (961).
10. The inkjet printer as claimed in claim 9, wherein the inkjet head further comprises: elastic movable mounting has first one-way fixture block (971) on the inner chamber inner wall of first gear sleeve (97), it has first one-way dog (972) still to fixed mounting on the inner chamber inner wall of first gear sleeve (97), and first one-way dog (972) sets up the one side department at first one-way fixture block (971), elastic movable mounting has one-way fixture block of second (981) on the inner chamber inner wall of second gear sleeve (98), it has one-way dog of second (982) still to fixed mounting on the inner chamber inner wall of second gear sleeve (98), and one-way dog of second (982) sets up the opposite side department at one-way fixture block of second (981).
CN202210890292.5A 2022-07-25 2022-07-25 Panel spray-painting device of digital spray-painting machine Active CN115027154B (en)

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