CN104275920A - Automatic transfer printing tank - Google Patents

Automatic transfer printing tank Download PDF

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Publication number
CN104275920A
CN104275920A CN201410459289.3A CN201410459289A CN104275920A CN 104275920 A CN104275920 A CN 104275920A CN 201410459289 A CN201410459289 A CN 201410459289A CN 104275920 A CN104275920 A CN 104275920A
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CN
China
Prior art keywords
driving gear
tank
screw mandrel
gear
chain
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201410459289.3A
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Chinese (zh)
Other versions
CN104275920B (en
Inventor
周辉
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
DONGGUAN ZHI KUN AUTOMATION MACHINERY Co Ltd
Original Assignee
DONGGUAN ZHI KUN AUTOMATION MACHINERY Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by DONGGUAN ZHI KUN AUTOMATION MACHINERY Co Ltd filed Critical DONGGUAN ZHI KUN AUTOMATION MACHINERY Co Ltd
Priority to CN201410459289.3A priority Critical patent/CN104275920B/en
Publication of CN104275920A publication Critical patent/CN104275920A/en
Application granted granted Critical
Publication of CN104275920B publication Critical patent/CN104275920B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The invention discloses an automatic transfer printing tank, which comprises a water tank, a first conveying chain assembly, a second conveying chain assembly, a conveying chain drive mechanism, an automatic conveying chain width adjustment mechanism, an automatic flowing film mechanism, an automatic spray mechanism and a control panel, the conveying chain drive mechanism is mounted in the rear part of the water tank, the first conveying chain assembly and the second conveying chain assembly are respectively mounted on both sides of the water tank, the automatic conveying chain width adjustment mechanism is mounted on the bottom of the water tank and correspondingly under the first conveying chain assembly, the automatic flowing film mechanism is mounted on the top of the water tank and correspondingly in front of the conveying chain drive mechanism, the automatic spray mechanism is mounted on the top of the water tank and correspondingly in front of the automatic flowing film mechanism, and is used for spraying over the water tank, and the control panel is mounted by one side of the water tank. The automatic transfer printing tank is low in cost and high in the degree of automation, thus greatly increasing the efficiency of production.

Description

Automatic transfer groove
Technical field
The present invention relates to mechanical field, particularly relate to a kind of transfer groove automatically.
Background technology
Traditional water transfer apparatus is all generally manually put film to coordinate humidifier to complete water transfer printing.Manual operation is emitted in transfer groove by many pieces of for film, and such mode needs at the bottom of a large amount of man power and material's production efficiency.In addition, humidifier is the important component part of water transfer apparatus, is all have manual operation in traditional humidifier, spray action has some setbacks, causing film to accept activator sprays uneven, thus well can not ensure the quality of product in production process, and considerably increases cost of manufacture.In addition, the size of traditional water transfer apparatus film paper has manually slowly debugs, and brings inconvenience greatly and lose time to the work of people.
For the problems referred to above, urgently a kind of automatic-discharging film, cost is low, automaticity is high automatic transfer groove, thus greatly enhance productivity.
Summary of the invention
The object of the present invention is to provide the automatic transfer groove that a kind of automatic-discharging film, cost are low, automaticity is high, thus greatly enhance productivity.
To achieve these goals, technical scheme of the present invention is: provide a kind of transfer groove automatically, comprise tank, first carrier chain assembly, second carrier chain assembly, be installed on the carrier chain driving mechanism at the rear portion in described tank, carrier chain width automatic adjusting mechanism, automatic Liu Mo mechanism, automatically dynamic humidifier and control panel, described first carrier chain assembly and described second carrier chain assembly be installed in respectively described tank two inside, described first carrier chain assembly comprises the first chain mounting blocks, first driving gear, first driven gear and the first chain, described first driven gear and described first driving gear are rotatably connected in the rear and front end of described first chain mounting blocks respectively, described first chain is wound in outside described first driving gear and described first driven gear, described second carrier chain assembly comprises the second chain mounting blocks, second driving gear, second driven gear and the second chain, described second driven gear and described second driving gear are rotatably connected in the rear and front end of described second chain mounting blocks respectively, described second chain is wound in outside described second driving gear and described second driven gear, described carrier chain driving mechanism comprises CD-ROM drive motor, driving gear component, export main shaft, intermediate connecting shaft bearing and hexagonal telescopic shaft, the input of described driving gear component connects with the output of described CD-ROM drive motor, the output of described driving gear component connects with described output main shaft, and the two ends of described output main shaft connect with one end of described first driving gear and described intermediate connecting shaft bearing respectively, one end of described hexagonal telescopic shaft connects with the other end of described intermediate connecting shaft bearing, the other end of described hexagonal telescopic shaft connects with described second driving gear, described carrier chain width automatic adjusting mechanism is installed on the below of the corresponding described first carrier chain assembly in bottom of described tank, described carrier chain width automatic adjusting mechanism comprises drive motors, longitudinal drive shaft, roll adjustment driving gear, roll adjustment driven gear, roll adjustment driving chain, some one-level driven pulleys and some screw mandrel roll adjustment assemblies, to being rotatably connected in described tank before and after described longitudinal drive shaft, described roll adjustment driving gear connects with the output of described drive motors, described roll adjustment driven gear is placed on described longitudinal drive shaft admittedly, described roll adjustment driving chain is wound in outside described roll adjustment driving gear and roll adjustment driven gear, described one-level driven pulley is evenly placed on the front of the corresponding described roll adjustment driven gear of described longitudinal drive shaft admittedly, the screw mandrel that described screw mandrel roll adjustment assembly comprises transverse direction and puts, secondary driven pulley, screw mandrel shaft block and offer the screw mandrel contiguous block of screw mandrel screw, described screw mandrel shaft block is installed on the side of the corresponding described longitudinal drive shaft in bottom of described tank, described screw mandrel contiguous block is fixed on described second chain mounting blocks, one end of described screw mandrel plugs and connects with described secondary driven pulley through described screw mandrel shaft block, the other end of described screw mandrel screws and is plugged in described screw mandrel screw, described secondary driven pulley is meshed with corresponding one-level driven pulley, described automatic Liu Mo mechanism is installed on the front of the corresponding described carrier chain driving mechanism in top of described tank, described auto spraying mechanism is installed on the front of the corresponding described automatic Liu Mo mechanism in top of described tank, for spraying directly over tank, described control panel is installed on the side of described tank.
Described automatic transfer groove also comprises synchronous conveyer band mechanism, described synchronous conveyer band mechanism comprises reductor, conveyer belt driving gear component, output shaft and two conveyer belt gear frame structures, described conveyer belt gear frame structure be placed in respectively described tank two outside, described conveyer belt gear frame structure comprises gear frame and the front roll that is rotatably connected in described gear frame rear and front end and back roll, the input of described conveyer belt driving gear component connects with the output of described reductor, the output of described conveyer belt driving gear component connects with described output shaft, the two ends of described output shaft connect with corresponding front roll respectively.
Described automatic Liu Mo mechanism comprises stream membrane support, motor, motor fixed plate, stream hymeniderm band, first cylinder, second tin roller, 3rd cylinder, film paper places axle and two teleblem blocks, described motor fixed plate level is installed in a madial wall of described stream membrane support, described motor is installed on described motor fixed plate, described film paper is placed axle and is rotatably connected in the rear portion of described stream membrane support, described first drum rotating is connected to corresponding described film paper on described stream membrane support and places the front upper place of axle, described second tin roller to be rotatably connected on described stream membrane support corresponding described first cylinder front upper place and be connected with described first cylinder is tangent, described 3rd drum rotating is connected to the back upper place of corresponding described first cylinder on described stream membrane support, described stream hymeniderm band is wound on the output shaft of described motor and one end corresponding to described first cylinder, described teleblem block is socketed on the two ends that axle placed by described film paper respectively.
Described auto spraying mechanism comprises spray bracket, spraying motor, driving wheel, driven pulley, spraying belt, spray gun, spray gun active sliding block, spray gun driven sliding block and horizontal slide rail, described spraying motor is installed on a side at described spray bracket top, described driving wheel connects with the output shaft of described spraying motor, described driven pulley rotates another side being installed on described spray bracket top, described spraying belt is laterally wound on described driving wheel and described driven pulley, described spray gun active sliding block is fastened on described spraying belt, described horizontal slide rail is laterally placed in the front of corresponding described spray gun active sliding block in described spray bracket, described spray gun driven sliding block is slidably connected on described horizontal slide rail, that moves towards before and after the rear end of described spray gun is fixed in described spray gun active sliding block and described spray gun driven sliding block successively, described spray bracket is stretched out in the front end of described spray gun.
Described automatic transfer groove also comprises water temp. heating device, and described water temp. heating device is installed on the side of described tank.
Compared with prior art, the present invention's automatic transfer groove cost is low, automaticity is high, thus greatly provides production efficiency.
By following description also by reference to the accompanying drawings, the present invention will become more clear, and these accompanying drawings are for explaining embodiments of the invention.
Accompanying drawing explanation
Fig. 1 is the stereogram of the automatic transfer groove of the present invention.
Fig. 2 is the enlarged drawing of part A in Fig. 1.
Fig. 3 is first local structural graph of the automatic transfer groove of the present invention.
Fig. 4 is second local structural graph of the automatic transfer groove of the present invention.
Fig. 5 is the 3rd local structural graph of the automatic transfer groove of the present invention.
Detailed description of the invention
Referring to figs. 1 to Fig. 5, the automatic transfer groove of the present invention 100 comprises tank 10, is installed on carrier chain driving mechanism 20, first carrier chain assembly 21, the second carrier chain assembly 22 at the rear portion in described tank 10, carrier chain width automatic adjusting mechanism 30, automatically Liu Mo mechanism 40, automatically dynamic humidifier 50, control panel 60, heater 70 and synchronous conveyer band mechanism 80.Described control panel 60 and described water temp. heating device 70 are all installed on the side of described tank 10.
Described first carrier chain assembly 21 and described second carrier chain assembly 22 be installed in respectively described tank 10 two inside.Described first carrier chain assembly 21 comprises the first chain mounting blocks 211, first driving gear 212, first driven gear (not shown) and the first chain 214.Described first driven gear 213 and described first driving gear 212 are rotatably connected in the rear and front end of described first chain mounting blocks 211 respectively, and described first chain 214 is wound in outside described first driving gear 212 and described first driven gear.Described second carrier chain assembly 22 comprises the second chain mounting blocks 221, second driving gear 222, second driven gear 223 and the second chain 224.Described second driven gear 223 and described second driving gear 222 are rotatably connected in the rear and front end of described second chain mounting blocks 221 respectively, and described second chain 224 is wound in outside described second driving gear 222 and described second driven gear 223.Described carrier chain driving mechanism 20 comprises CD-ROM drive motor 201, driving gear component 202, exports main shaft 203, intermediate connecting shaft bearing 204 and hexagonal telescopic shaft 205.The input of described driving gear component 202 connects with the output of described CD-ROM drive motor 201, the output of described driving gear component 202 connects with described output main shaft 203, and the two ends of described output main shaft 203 connect with one end of described first driving gear 212 and described intermediate connecting shaft bearing 204 respectively, one end of described hexagonal telescopic shaft 205 connects with the other end of described intermediate connecting shaft bearing 204, and the other end of described hexagonal telescopic shaft 205 connects with described second driving gear 222.
Described carrier chain width automatic adjusting mechanism is installed on the below of the corresponding described first carrier chain assembly 21 in bottom of described tank 10.Described carrier chain width automatic adjusting mechanism comprises drive motors 31, longitudinal drive shaft 32, roll adjustment driving gear 33, roll adjustment driven gear 34, roll adjustment driving chain 35, some one-level driven pulleys 36 and some screw mandrel roll adjustment assemblies 37.To being rotatably connected in described tank 10 before and after described longitudinal drive shaft 32.Described roll adjustment driving gear 33 connects with the output of described drive motors 31, and described roll adjustment driven gear 34 is placed on described longitudinal drive shaft 32 admittedly.Described roll adjustment driving chain 35 is wound in outside described roll adjustment driving gear 33 and roll adjustment driven gear 34.Described one-level driven pulley 36 is evenly placed on the front of the corresponding described roll adjustment driven gear 34 of described longitudinal drive shaft 32 admittedly.The screw mandrel 371 that described screw mandrel roll adjustment assembly 37 comprises transverse direction and puts, secondary driven pulley 372, screw mandrel shaft block 373 and offer the screw mandrel contiguous block 374 of screw mandrel screw (not shown).Described screw mandrel shaft block 373 is installed on the side of the corresponding described longitudinal drive shaft 32 in bottom of described tank 10.Described screw mandrel contiguous block 374 is fixed on described second chain mounting blocks 221.One end of described screw mandrel 371 plugs and connects with described secondary driven pulley 372 through described screw mandrel shaft block 373, and the other end of described screw mandrel 371 screws and is plugged in described screw mandrel screw.Described secondary driven pulley 372 is meshed with corresponding one-level driven pulley 36.Drive motors 31 drives longitudinal drive shaft 32 to rotate by roll adjustment driving gear 33, roll adjustment driven gear 34 and roll adjustment driving chain 35, one-level driven pulley 36 on longitudinal drive shaft 32 drives secondary driven pulley 372 to rotate, then screw mandrel 371 is driven to rotate, in screw mandrel 371 rotation process, the second chain mounting blocks 221 is driven to laterally move by screw mandrel contiguous block 374, thus regulate the spacing between the first chain 214 and the second chain 224, when second chain mounting blocks 221 laterally moves, hexagonal telescopic shaft 205 is done corresponding flexible.
Described automatic Liu Mo mechanism 40 is installed on the front of the corresponding described carrier chain driving mechanism 30 in top of described tank 10.Described automatic Liu Mo mechanism 40 comprises stream membrane support 41, motor 42, motor fixed plate 43, stream hymeniderm band 44, first cylinder 45, second tin roller 46, the 3rd cylinder 47, film paper placement axle 48 and two teleblem blocks 49.Described motor fixed plate 43 level is installed in a madial wall of described stream membrane support 41.Described motor 42 is installed on described motor fixed plate 43, and described film paper is placed axle 48 and is rotatably connected in the rear portion of described stream membrane support 41, and the front upper place of axle 48 placed by the described first cylinder 45 corresponding described film paper on described stream membrane support 41 that is rotatably connected.Described second tin roller 46 to be rotatably connected on described stream membrane support 41 corresponding described first cylinder 45 front upper place and be connected with described first cylinder 45 is tangent.Described 3rd cylinder 47 is rotatably connected the back upper place of on described stream membrane support 41 corresponding first cylinder 45.Described stream hymeniderm band 44 is wound on the output shaft of described motor 42 and one end of described first cylinder 45 correspondence.Described teleblem block 49 is socketed on the two ends that axle 48 placed by described film paper respectively.
Described auto spraying mechanism 50 is installed on the front of the corresponding described automatic Liu Mo mechanism 40 in top of described tank 10.For spraying directly over tank 10.Described auto spraying mechanism 50 comprises spray bracket 51, spraying motor 52, driving wheel 53, driven pulley 54, spraying belt 55, spray gun 56, spray gun active sliding block 57, spray gun driven sliding block 58 and horizontal slide rail 59.Described spraying motor 52 is installed on a side at described spray bracket 51 top, and described driving wheel 53 connects with the output shaft of described spraying motor 52.Described driven pulley 54 rotates another side being installed on described spray bracket 51 top, and described spraying belt 55 is laterally wound on described driving wheel 53 and described driven pulley 54.Described spray gun active sliding block 57 is fastened on described spraying belt 55, and described horizontal slide rail 59 is laterally placed in the front of corresponding described spray gun active sliding block 57 in described spray bracket 51.Described spray gun driven sliding block 58 is slidably connected on described horizontal slide rail 59.That moves towards before and after the rear end of described spray gun 56 is fixed in described spray gun active sliding block 57 and described spray gun driven sliding block 58 successively, and described spray bracket 51 is stretched out in the front end of described spray gun 56.
Described synchronous conveyer band mechanism 80 comprises reductor 81, conveyer belt driving gear component 82, output shaft 83 and two conveyer belt gear frame structures 84.Described conveyer belt gear frame structure 84 be placed in respectively described tank 10 two outside.Described conveyer belt gear frame structure 84 comprises gear frame 841 and the front roll 842 that is rotatably connected in described gear frame rear and front end and back roll 843.The input of described conveyer belt driving gear component 82 connects with the output of described reductor 81, and the output of described conveyer belt driving gear component 82 connects with described output shaft 83.The two ends of described output shaft 83 connect with corresponding front roll 842 respectively.Described synchronous conveyer band mechanism makes two workmans synchronously carry out in transfer process, better completes transfer printing.
The present invention's automatic transfer groove 100 control panel 60 controls automatic Liu Mo mechanism 40 and automatically puts film, and control auto spraying mechanism about 50 back and forth in the spraying of the top of tank 10, cost is low, automaticity is high, thus greatly provides production efficiency.The spacing between the first chain 214 and the second chain 224 is regulated by described carrier chain width automatic adjusting mechanism 30.
More than in conjunction with most preferred embodiment, present invention is described, but the present invention is not limited to the embodiment of above announcement, and should contain amendment that the various essence according to the present embodiment carries out, equivalent combinations.

Claims (5)

1. an automatic transfer groove, it is characterized in that: comprise tank, first carrier chain assembly, second carrier chain assembly, be installed on the carrier chain driving mechanism at the rear portion in described tank, carrier chain width automatic adjusting mechanism, automatic Liu Mo mechanism, automatically dynamic humidifier and control panel, described first carrier chain assembly and described second carrier chain assembly be installed in respectively described tank two inside, described first carrier chain assembly comprises the first chain mounting blocks, first driving gear, first driven gear and the first chain, described first driven gear and described first driving gear are rotatably connected in the rear and front end of described first chain mounting blocks respectively, described first chain is wound in outside described first driving gear and described first driven gear, described second carrier chain assembly comprises the second chain mounting blocks, second driving gear, second driven gear and the second chain, described second driven gear and described second driving gear are rotatably connected in the rear and front end of described second chain mounting blocks respectively, described second chain is wound in outside described second driving gear and described second driven gear, described carrier chain driving mechanism comprises CD-ROM drive motor, driving gear component, export main shaft, intermediate connecting shaft bearing and hexagonal telescopic shaft, the input of described driving gear component connects with the output of described CD-ROM drive motor, the output of described driving gear component connects with described output main shaft, and the two ends of described output main shaft connect with one end of described first driving gear and described intermediate connecting shaft bearing respectively, one end of described hexagonal telescopic shaft connects with the other end of described intermediate connecting shaft bearing, the other end of described hexagonal telescopic shaft connects with described second driving gear, described carrier chain width automatic adjusting mechanism is installed on the below of the corresponding described first carrier chain assembly in bottom of described tank, described carrier chain width automatic adjusting mechanism comprises drive motors, longitudinal drive shaft, roll adjustment driving gear, roll adjustment driven gear, roll adjustment driving chain, some one-level driven pulleys and some screw mandrel roll adjustment assemblies, to being rotatably connected in described tank before and after described longitudinal drive shaft, described roll adjustment driving gear connects with the output of described drive motors, described roll adjustment driven gear is placed on described longitudinal drive shaft admittedly, described roll adjustment driving chain is wound in outside described roll adjustment driving gear and roll adjustment driven gear, described one-level driven pulley is evenly placed on the front of the corresponding described roll adjustment driven gear of described longitudinal drive shaft admittedly, the screw mandrel that described screw mandrel roll adjustment assembly comprises transverse direction and puts, secondary driven pulley, screw mandrel shaft block and offer the screw mandrel contiguous block of screw mandrel screw, described screw mandrel shaft block is installed on the side of the corresponding described longitudinal drive shaft in bottom of described tank, described screw mandrel contiguous block is fixed on described second chain mounting blocks, one end of described screw mandrel plugs and connects with described secondary driven pulley through described screw mandrel shaft block, the other end of described screw mandrel screws and is plugged in described screw mandrel screw, described secondary driven pulley is meshed with corresponding one-level driven pulley, described automatic Liu Mo mechanism is installed on the front of the corresponding described carrier chain driving mechanism in top of described tank, described auto spraying mechanism is installed on the front of the corresponding described automatic Liu Mo mechanism in top of described tank, for spraying directly over tank, described control panel is installed on the side of described tank.
2. transfer groove automatically as claimed in claim 1, it is characterized in that: also comprise synchronous conveyer band mechanism, described synchronous conveyer band mechanism comprises reductor, conveyer belt driving gear component, output shaft and two conveyer belt gear frame structures, described conveyer belt gear frame structure be placed in respectively described tank two outside, described conveyer belt gear frame structure comprises gear frame and the front roll that is rotatably connected in described gear frame rear and front end and back roll, the input of described conveyer belt driving gear component connects with the output of described reductor, the output of described conveyer belt driving gear component connects with described output shaft, the two ends of described output shaft connect with corresponding front roll respectively.
3. transfer groove automatically as claimed in claim 1, it is characterized in that: described automatic Liu Mo mechanism comprises stream membrane support, motor, motor fixed plate, stream hymeniderm band, first cylinder, second tin roller, 3rd cylinder, film paper places axle and two teleblem blocks, described motor fixed plate level is installed in a madial wall of described stream membrane support, described motor is installed on described motor fixed plate, described film paper is placed axle and is rotatably connected in the rear portion of described stream membrane support, described first drum rotating is connected to corresponding described film paper on described stream membrane support and places the front upper place of axle, described second tin roller to be rotatably connected on described stream membrane support corresponding described first cylinder front upper place and be connected with described first cylinder is tangent, described 3rd drum rotating is connected to the back upper place of corresponding described first cylinder on described stream membrane support, described stream hymeniderm band is wound on the output shaft of described motor and one end corresponding to described first cylinder, described teleblem block is socketed on the two ends that axle placed by described film paper respectively.
4. transfer groove automatically as claimed in claim 1, it is characterized in that: described auto spraying mechanism comprises spray bracket, spraying motor, driving wheel, driven pulley, spraying belt, spray gun, spray gun active sliding block, spray gun driven sliding block and horizontal slide rail, described spraying motor is installed on a side at described spray bracket top, described driving wheel connects with the output shaft of described spraying motor, described driven pulley rotates another side being installed on described spray bracket top, described spraying belt is laterally wound on described driving wheel and described driven pulley, described spray gun active sliding block is fastened on described spraying belt, described horizontal slide rail is laterally placed in the front of corresponding described spray gun active sliding block in described spray bracket, described spray gun driven sliding block is slidably connected on described horizontal slide rail, that moves towards before and after the rear end of described spray gun is fixed in described spray gun active sliding block and described spray gun driven sliding block successively, described spray bracket is stretched out in the front end of described spray gun.
5. transfer groove automatically as claimed in claim 1, it is characterized in that: also comprise water temp. heating device, described water temp. heating device is installed on the side of described tank.
CN201410459289.3A 2014-09-11 2014-09-11 Automatic transfer groove Expired - Fee Related CN104275920B (en)

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Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
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CN104275920B CN104275920B (en) 2019-09-13

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105365361A (en) * 2015-11-17 2016-03-02 东莞志鲲自动化机械设备有限公司 Full-automatic water transfer printing equipment
CN111256522A (en) * 2018-11-30 2020-06-09 青岛海高设计制造有限公司 Air conditioner self-cleaning system and air conditioner
CN111256519A (en) * 2018-11-30 2020-06-09 青岛海高设计制造有限公司 Air conditioner self-cleaning system and air conditioner
CN112519395A (en) * 2020-12-01 2021-03-19 周建明 Water transfer printing equipment for automobile hub

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JP2006297678A (en) * 2005-04-18 2006-11-02 Dainippon Ink & Chem Inc Hydraulic transfer apparatus
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CN202498815U (en) * 2012-01-10 2012-10-24 易光华 Full-automatic water transfer printing equipment
CN202727550U (en) * 2012-07-10 2013-02-13 易光华 Full-automatic water transfer printing equipment
WO2013032123A1 (en) * 2011-08-29 2013-03-07 (주)화진 Liquid pressure transfer printing method and liquid pressure transfer automation system
CN202944010U (en) * 2012-10-24 2013-05-22 万青华 Full-automatic hydrographics transfer printing device
CN204136569U (en) * 2014-09-11 2015-02-04 东莞志鲲自动化机械设备有限公司 automatic transfer groove

Patent Citations (10)

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JP2006297678A (en) * 2005-04-18 2006-11-02 Dainippon Ink & Chem Inc Hydraulic transfer apparatus
CN201109230Y (en) * 2007-10-25 2008-09-03 比亚迪股份有限公司 Water transfer apparatus
JP2011098468A (en) * 2009-11-04 2011-05-19 Trinity Industrial Co Ltd Hydraulic transfer apparatus and hydraulic transfer method
CN201971216U (en) * 2010-12-31 2011-09-14 成都利元亨水转印技术有限公司 Water circulation equipment for water transfer
WO2013032123A1 (en) * 2011-08-29 2013-03-07 (주)화진 Liquid pressure transfer printing method and liquid pressure transfer automation system
CN202399625U (en) * 2011-12-30 2012-08-29 成都利元亨水转印技术有限公司 Water transfer printing film loading equipment
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CN202727550U (en) * 2012-07-10 2013-02-13 易光华 Full-automatic water transfer printing equipment
CN202944010U (en) * 2012-10-24 2013-05-22 万青华 Full-automatic hydrographics transfer printing device
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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105365361A (en) * 2015-11-17 2016-03-02 东莞志鲲自动化机械设备有限公司 Full-automatic water transfer printing equipment
CN105365361B (en) * 2015-11-17 2019-08-16 东莞志鲲自动化机械设备有限公司 A kind of full-automatic water transfer apparatus
CN111256522A (en) * 2018-11-30 2020-06-09 青岛海高设计制造有限公司 Air conditioner self-cleaning system and air conditioner
CN111256519A (en) * 2018-11-30 2020-06-09 青岛海高设计制造有限公司 Air conditioner self-cleaning system and air conditioner
CN112519395A (en) * 2020-12-01 2021-03-19 周建明 Water transfer printing equipment for automobile hub

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Granted publication date: 20190913

Termination date: 20200911