CN212426076U - Automatic device for printing and dyeing fur silk screen - Google Patents

Automatic device for printing and dyeing fur silk screen Download PDF

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Publication number
CN212426076U
CN212426076U CN202021002576.9U CN202021002576U CN212426076U CN 212426076 U CN212426076 U CN 212426076U CN 202021002576 U CN202021002576 U CN 202021002576U CN 212426076 U CN212426076 U CN 212426076U
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CN
China
Prior art keywords
dyeing
printing
fur
sliding
rails
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Expired - Fee Related
Application number
CN202021002576.9U
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Chinese (zh)
Inventor
徐建龙
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TONGXIANG NEW ERA fur CO Ltd
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TONGXIANG NEW ERA fur CO Ltd
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Priority to CN202021002576.9U priority Critical patent/CN212426076U/en
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Publication of CN212426076U publication Critical patent/CN212426076U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model belongs to the technical field of the fur printing and dyeing technique and specifically relates to an automation equipment of fur silk screen printing and dyeing, including frame and the printing and dyeing platform of setting in the frame, be provided with the slide rail of two parallels in the both sides that the printing and dyeing platform is relative, be provided with a carriage on the slide rail, be provided with telescopic machanism on the carriage, be provided with compression roller mechanism on the telescopic machanism, telescopic machanism drives compression roller mechanism up-and-down motion, is provided with No. two power unit between slide rail and carriage or mounting bracket, and No. two power unit drive sliding rack moves on the slide rail. The utility model provides an automation equipment of fur silk screen printing and dyeing, it is through reasonable structural design, can realize carrying out automatic silk screen printing and dyeing to the fur, and the pressure of printing and dyeing in-process remains stable to the printing and dyeing performance is high, and printing and dyeing efficiency greatly promotes.

Description

Automatic device for printing and dyeing fur silk screen
Technical Field
The utility model belongs to the technical field of fur printing and dyeing technique and specifically relates to an automation equipment of fur silk screen printing and dyeing.
Background
In the prior art, the surface of fur is printed and dyed by adopting a silk screen, manual printing and dyeing are basically adopted, the efficiency is low, and the printing and dyeing uniformity is poor. Because the fur on the surface of the fur has certain thickness, the patterns on the silk screen can be printed on the fur by adopting larger pressure in the printing and dyeing process, the force of people in the manual printing and dyeing process is limited, the dye can only float on the fur tip and cannot deeply penetrate into the fur root and the fur plate for deep printing and dyeing, the effect is poor, and the uniformity is poor.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the not enough of above-mentioned technique and providing a dyestuff can dye on hair root and apron, and the printing and dyeing effect reaches the fur natural growth effect, the automation equipment of the printing and dyeing of the fast fur silk screen of printing and dyeing.
In order to achieve the aim, the utility model discloses a fur silk screen printing and dyeing's automation equipment, including frame and the printing and dyeing platform of setting in the frame, the pattern position that sets up a silk screen printing and dyeing at least on the printing and dyeing platform, be provided with the slide rail of two parallels in the both sides of at least one silk screen printing and dyeing pattern position, be provided with a carriage on the slide rail, be provided with telescopic machanism on the carriage, the last compression roller mechanism that is provided with of telescopic machanism, telescopic machanism drives compression roller mechanism up-and-down motion, be provided with No. two power unit between slide rail and carriage or mounting bracket, No. two power unit drive the slide rail and move on.
The compression roller mechanism comprises an installation frame arranged at the telescopic end of the telescopic mechanism, and the telescopic mechanism drives the installation frame to displace in the vertical direction; at least two compression rollers side by side are rotatably connected to the mounting frame, a gap exists between the compression rollers, the axial direction of the compression rollers is perpendicular to the sliding direction of the sliding frame on the sliding rail, a baffle is arranged on the mounting frame at the two ends of each compression roller, the baffle is attached to the end face of each compression roller at the same side, the lower end face of the baffle is located on the same horizontal plane with the lower end of each compression roller, and a closed annular structure is formed between the baffle and each compression roller.
The telescopic mechanism can be a hydraulic cylinder, and a hydraulic station is also included to provide hydraulic power for the hydraulic cylinder. Or may be a cylinder or an electric push rod.
Certainly, the carriage can be divided into two parts of setting on two slide rails, is provided with a pneumatic cylinder on every part, drives the mounting bracket up-and-down motion through two pneumatic cylinders, and stability is better.
Among the above-mentioned technical scheme, the printing and dyeing platform on be the printing and dyeing station between two slide rails, can tile the fur on the printing and dyeing platform, the screen covers above-mentioned, then move down the mounting bracket wholly through the pneumatic cylinder and make the compression roller compress tightly on the screen, the compression roller, baffle and screen form a confined region, add the dyestuff through the loading hopper, the dyestuff gets into in the closed region, No. two power unit drive carriages, the mounting bracket, equipment reciprocating motion on the slide rail such as compression roller, make the dyestuff between two compression rollers reciprocating motion on the screen under the effect of compression roller, and carry out the impression, it realizes that the printing and dyeing to the fur is high-efficient quick, and everywhere pressure is even stable, it is effectual to print and dye. The two press rolls are rotated by friction, and the rotational direction thereof is free.
Two parallel rails are arranged on two sides of the printing and dyeing platform in the width direction, the rails are arranged along the length direction of the printing and dyeing platform, the sliding rails are arranged on the rails, and the sliding rails slide on the rails; a first power mechanism is arranged between the frame or the printing and dyeing platform and the slide rail, and the first power mechanism drives the slide rail to move on the rail. The structure can be provided with a plurality of printing and dyeing stations on the printing and dyeing platform side by side along the length direction of the printing and dyeing platform, and a certain gap can exist between each printing and dyeing station. When part of the stations are in the fur replacing process, some stations can be used for printing and dyeing, so that the printing and dyeing efficiency is improved. The first power mechanism can be a gear on the motor which is matched with a rack on the printing and dyeing platform, the motor is a servo motor, reciprocating displacement is realized, and positioning is accurate. The first power mechanism can be a motor which drives a slide rail to move on the rail through a chain and the like, or a reciprocating mechanism such as an air cylinder, a hydraulic cylinder and an electric push rod; certainly, no power mechanism is arranged, that is, the sliding rail, the sliding frame and the compression roller mechanism as a whole can be manually pushed when moving on the rail, and can be positioned between different silk screen printing and dyeing pattern positions.
Be provided with No. three power unit on the mounting bracket, all be provided with one from the driving wheel at two compression roller tip of same end, be provided with the action wheel on No. three power unit, the action wheel with from the transmission between the driving wheel and be connected, the action wheel drives two and follows the syntropy rotations of driving wheel. The structure can enable the two compression rollers to actively rotate under the action of the third power mechanism, and meanwhile, the walking direction of the compression rollers on the silk screen is the same as the moving direction of the sliding frame on the sliding rail all the time, namely, the directions of the compression rollers and the sliding frame are synchronously changed. The third power mechanism can be a combination of a motor and a gear box.
The mounting frame is provided with a feeding hopper, and a discharge port of the feeding hopper is positioned in an annular structure range surrounded by the two compression rollers and the baffle.
A material receiving disc is arranged between the two sliding rails at one end and is connected to the sliding rails in a sliding mode, and when the material receiving disc is located below the compression rollers, the two compression rollers are located within the range of the material receiving disc. The design of this structure, to the fur printing and dyeing on a station accomplish the back, change the fur or change under the condition of station, can utilize the take-up (stock) pan to connect the dyestuff that drips on the compression roller in the take-up (stock) pan, avoid causing the influence to other furs. In addition, a discharge opening can be arranged in the receiving disc, and redundant dye in the receiving disc is discharged or reused.
No. two power unit is including setting up a motor and two gear boxes on carriage or mounting bracket, two gear boxes set up respectively on compression roller both ends mounting bracket, the motor is connected with the transmission between one of them gear box, be provided with a vertical output shaft on every gear box, the lower extreme of output shaft is provided with a gear, be provided with a rack on the lateral wall of slide rail, the cooperation is connected between the rack of homonymy and the gear, the upper end of output shaft all is provided with a sector gear, be provided with a transmission shaft between the output shaft of two gear boxes, the transmission shaft both ends also are provided with sector gear, the transmission is connected between transmission shaft and the output shaft. The design of this structure can realize that parts such as two removal framves and mounting bracket, compression roller wholly move on the slide rail, and No. two power unit's motor can be servo motor, realizes corotation, reversal, drives equipment reciprocating motion on the slide rail. Meanwhile, the two ends are more synchronous in the moving process, and the stability is high. In addition, when the second power mechanism is arranged on the sliding frame, the rack can be always matched with the gear. When No. two power unit installs at the mounting bracket, because the mounting bracket needs to go up and down along with the pneumatic cylinder, so gear and rack can not cooperate after the mounting bracket rises, and the rack of broad can be selected to preferred certainly for gear and rack cooperate all the time in the mounting bracket lift in-process, avoid the dislocation of gear and rack and the unable circumstances of complex, stability is higher. And when the lift position of mounting bracket injectd in a certain region, can widen the width of the rack in this region, only let the mounting bracket cooperate with the rack all the time when lifting in this region, can practice thrift the cost, also can make the structure compacter. Of course, the second power mechanism may also be a hydraulic cylinder, an air cylinder, an electric push rod, or other power mechanisms, which only need to drive the sliding frame to move on the sliding rail.
The discharge port at the bottom of the charging hopper is of a long strip-shaped structure, a connecting plate is arranged at the upper end of the charging hopper, a guide pipe in the vertical direction is arranged on the connecting plate, a pressure rod is arranged in the guide rod, a pressing block is arranged at the lower end of the pressure rod and is positioned right above the discharge port, and the discharge port is positioned in the range covered by the pressing block; the connecting plates on two sides of the pressure rod are respectively provided with a connecting column and a positioning column, the upper end of the connecting column is rotatably connected with an adjusting rod through a pin shaft, the middle part of the adjusting rod is rotatably connected with the upper end of the pressure rod through a pin shaft, the adjusting rod close to one end of the positioning column is provided with positioning pins, a plurality of positioning holes are arranged at intervals in the vertical direction of the positioning column, and the positioning pins are matched with the positioning holes to position the pressing position of the pressure rod. The design of this structure realizes opening and sealing of loading hopper, can change the clearance of briquetting and discharge gate through the cooperation between adjusting locating pin and the different locating holes in addition to can adjust the load.
The utility model provides an automation equipment of fur silk screen printing and dyeing, it is through reasonable structural design, can realize carrying out automatic silk screen printing and dyeing to the fur, and the pressure of printing and dyeing in-process remains stable to the printing and dyeing performance is high, and printing and dyeing efficiency greatly promotes.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a top view of the upper portion of the slide rail of the present invention;
fig. 3 is a schematic structural view of a second power mechanism of the present invention;
fig. 4 is a schematic cross-sectional view of the hopper of the present invention.
Detailed Description
The invention is further described by the following embodiments in conjunction with the accompanying drawings.
Example 1:
the automatic device for printing and dyeing the fur silk screen described in this embodiment comprises a frame 1 and a printing and dyeing platform 2 arranged on the frame 1, wherein a pattern position for printing and dyeing the silk screen is arranged on the printing and dyeing platform 2, two parallel slide rails 4 are arranged on two sides of the pattern position for printing and dyeing the silk screen, a sliding frame 5 is arranged on each slide rail 4, a vertically downward telescopic mechanism 9 is arranged at the upper end of each sliding frame 5, a mounting frame 6 is arranged between the telescopic mechanisms 9 at two ends, and the telescopic mechanisms 9 drive the mounting frame 6 to displace in the vertical direction; two parallel compression rollers 7 are rotatably connected to the mounting frame 6, a gap exists between the compression rollers 7, the horizontal heights of the lower ends of the two compression rollers 7 are consistent, the axial direction of the compression rollers 7 is perpendicular to the sliding direction of the sliding frame 5 on the sliding rail 4, the mounting frame 6 at the two ends of each compression roller 7 is provided with a baffle 30, the baffles 30 are attached to the end faces of the two compression rollers 7 on the same side, the lower end faces of the baffles 30 and the lower ends of the compression rollers 7 are located on the same horizontal plane, and a closed annular structure is formed between each baffle 30 and each compression roller 7; a second power mechanism 10 is arranged between the sliding rail 4 and the sliding frame 5 or the mounting frame 6, and the sliding frame 5 is driven by the second power mechanism 10 to move on the sliding rail 4; a charging hopper 8 is arranged on the mounting frame 6, and a discharge port 21 of the charging hopper 8 is positioned in an annular structure range enclosed by the two compression rollers 7 and the baffle 30.
Example 2:
the automatic device for printing and dyeing fur silk screens described in this embodiment comprises a frame 1 and a printing and dyeing platform 2 arranged on the frame 1, wherein a plurality of silk screen printing and dyeing pattern positions are arranged on the printing and dyeing platform 2, two parallel slide rails 4 are arranged on two sides of one silk screen printing and dyeing pattern position, a sliding frame 5 is arranged on each slide rail 4, a vertically downward telescopic mechanism 9 is arranged at the upper end of each sliding frame 5, a mounting frame 6 is arranged between the telescopic mechanisms 9 at two ends, and the telescopic mechanisms 9 drive the mounting frame 6 to displace in the vertical direction; two parallel compression rollers 7 are rotatably connected to the mounting frame 6, a gap exists between the compression rollers 7, the horizontal heights of the lower ends of the two compression rollers 7 are consistent, the axial direction of the compression rollers 7 is perpendicular to the sliding direction of the sliding frame 5 on the sliding rail 4, the mounting frame 6 at the two ends of each compression roller 7 is provided with a baffle 30, the baffles 30 are attached to the end faces of the two compression rollers 7 on the same side, the lower end faces of the baffles 30 and the lower ends of the compression rollers 7 are located on the same horizontal plane, and a closed annular structure is formed between each baffle 30 and each compression roller 7; a second power mechanism 10 is arranged between the sliding rail 4 and the sliding frame 5 or the mounting frame 6, and the sliding frame 5 is driven by the second power mechanism 10 to move on the sliding rail 4; a charging hopper 8 is arranged on the mounting frame 6, and a discharge port 21 of the charging hopper 8 is positioned in an annular structure range enclosed by the two compression rollers 7 and the baffle 30.
Two parallel tracks 3 are arranged on two sides of the printing and dyeing platform 2 in the width direction, the tracks 3 are arranged along the length direction of the printing and dyeing platform 2, the slide rails 4 are arranged on the tracks 3, and the slide rails 4 slide on the tracks 3; a first power mechanism is arranged between the frame 1 or the printing and dyeing platform 2 and the slide rail 4, and the first power mechanism drives the slide rail 4 to move on the track 3.
A third power mechanism 11 is arranged on the mounting frame 6, a driven wheel 13 is arranged at the end parts of the two compression rollers 7 at the same end, a driving wheel 12 is arranged on the third power mechanism 11, the driving wheel 12 is in transmission connection with the driven wheel 13, and the driving wheel 12 drives the two driven wheels 13 to rotate in the same direction.
A material receiving disc 20 is arranged between the two sliding rails 4 at one end, the material receiving disc 20 is connected to the sliding rails 4 in a sliding mode, and when the material receiving disc 20 is located below the compression rollers 7, the compression rollers 7 are located in the range of the material receiving disc 20.
The second power mechanism 10 comprises a motor 15 and two gear 18 boxes 16 which are arranged on the sliding frame 5 or the mounting frame 6, the two gear 18 boxes 16 are respectively arranged on the mounting frame 6 at two ends of the compression roller 7, the motor 15 is in transmission connection with one of the gear 18 boxes 16, each gear 18 box 16 is provided with a vertical output shaft 17, the lower end of each output shaft 17 is provided with a gear 18, a rack 14 is arranged on the side wall of the sliding rail 4, the rack 14 and the gear 18 at the same side are in matching connection, the upper end of each output shaft 17 is provided with a sector gear 18, a transmission shaft 19 is arranged between the output shafts 17 of the two gear 18 boxes 16, the sector gears 18 are also arranged at two ends of the transmission shaft 19, and the transmission shaft 19 is in transmission connection with the output shafts 17.
The discharge port 21 at the bottom of the charging hopper 8 is of a long strip-shaped structure, the upper end of the charging hopper 8 is provided with a connecting plate 22, the connecting plate 22 is provided with a guide pipe 23 in the vertical direction, a pressure rod 24 is arranged in the guide rod, the lower end of the pressure rod 24 is provided with a pressing block 25, the pressing block 25 is positioned right above the discharge port 21, and the discharge port 21 is positioned in the range covered by the pressing block 25; the connecting plates 22 on two sides of the pressure rod 24 are respectively provided with a connecting column 26 and a positioning column 28, the upper end of the connecting column 26 is rotatably connected with an adjusting rod 27 through a pin shaft, the middle part of the adjusting rod 27 is rotatably connected with the upper end of the pressure rod 24 through a pin shaft, the adjusting rod 27 close to one end of the positioning column 28 is provided with positioning pins, a plurality of positioning holes 29 are arranged at intervals in the vertical direction of the positioning column 28, and the positioning pins are matched with the positioning holes 29 to position the pressing position of the pressure rod 24.

Claims (7)

1. An automation equipment of fur silk screen printing and dyeing, characterized by: the screen printing and dyeing device comprises a rack and a printing and dyeing platform arranged on the rack, wherein at least one screen printing and dyeing pattern position is arranged on the printing and dyeing platform, two parallel slide rails are arranged on two sides of the at least one screen printing and dyeing pattern position, a sliding frame is arranged on each slide rail, a telescopic mechanism is arranged on each sliding frame, a compression roller mechanism is arranged on each telescopic mechanism, each telescopic mechanism drives each compression roller mechanism to move up and down, a second power mechanism is arranged between each slide rail and the corresponding sliding frame or the corresponding mounting frame, and each second power mechanism drives the corresponding slide frame to move on the corresponding slide; the compression roller mechanism comprises an installation frame arranged at the telescopic end of the telescopic mechanism, and the telescopic mechanism drives the installation frame to displace in the vertical direction; at least two compression rollers side by side are rotatably connected to the mounting frame, a gap exists between the compression rollers, the axial direction of the compression rollers is perpendicular to the sliding direction of the sliding frame on the sliding rail, a baffle is arranged on the mounting frame at the two ends of each compression roller, the baffle is attached to the end face of each compression roller at the same side, the lower end face of the baffle is located on the same horizontal plane with the lower end of each compression roller, and a closed annular structure is formed between the baffle and each compression roller.
2. The automated fur screen printing apparatus of claim 1, wherein: two parallel rails are arranged on two sides of the printing and dyeing platform in the width direction, the rails are arranged along the length direction of the printing and dyeing platform, the sliding rails are arranged on the rails, the sliding rails slide on the rails, the sliding rails are perpendicular to the rails, and the sliding rails, the sliding frames on the sliding rails and the compression roller mechanisms move on the rails as a whole.
3. An automated apparatus for printing and dyeing of fur webs, according to claim 1 or 2, wherein: be provided with No. three power unit on the mounting bracket, all be provided with one at the compression roller tip of same end from the driving wheel, be provided with the action wheel on No. three power unit, the action wheel is connected with the transmission from between the driving wheel, and the action wheel drives two syntropy rotations from the driving wheel.
4. An automated fur screen printing apparatus according to claim 3, wherein: the mounting frame is provided with a feeding hopper, and a discharge port of the feeding hopper is positioned in an annular structure range surrounded by the two compression rollers and the baffle.
5. The automated fur screen printing apparatus of claim 4, wherein: a material receiving disc is arranged between the two sliding rails at one end and is connected to the sliding rails in a sliding mode, and when the material receiving disc is located below the compression rollers, the two compression rollers are located within the range of the material receiving disc.
6. The automated fur screen printing apparatus of claim 5, wherein: no. two power unit is including setting up a motor and two gear boxes on the mounting bracket, two gear boxes set up respectively on compression roller both ends mounting bracket, the motor is connected with the transmission between one of them gear box, be provided with a vertical output shaft on every gear box, the lower extreme of output shaft is provided with a gear, be provided with a rack on the lateral wall of slide rail, the cooperation is connected between the rack of homonymy and the gear, the upper end of output shaft all is provided with a sector gear, be provided with a transmission shaft between the output shaft of two gear boxes, the transmission shaft both ends also are provided with sector gear, the transmission is connected between transmission shaft and the output shaft.
7. The automated fur screen printing apparatus of claim 5, wherein: the discharge port at the bottom of the charging hopper is of a long strip-shaped structure, a connecting plate is arranged at the upper end of the charging hopper, a guide pipe in the vertical direction is arranged on the connecting plate, a pressure rod is arranged in the guide rod, a pressing block is arranged at the lower end of the pressure rod and is positioned right above the discharge port, and the discharge port is positioned in the range covered by the pressing block; the connecting plates on two sides of the pressure rod are respectively provided with a connecting column and a positioning column, the upper end of the connecting column is rotatably connected with an adjusting rod through a pin shaft, the middle part of the adjusting rod is rotatably connected with the upper end of the pressure rod through a pin shaft, the adjusting rod close to one end of the positioning column is provided with positioning pins, a plurality of positioning holes are arranged at intervals in the vertical direction of the positioning column, and the positioning pins are matched with the positioning holes to position the pressing position of the pressure rod.
CN202021002576.9U 2020-06-04 2020-06-04 Automatic device for printing and dyeing fur silk screen Expired - Fee Related CN212426076U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021002576.9U CN212426076U (en) 2020-06-04 2020-06-04 Automatic device for printing and dyeing fur silk screen

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021002576.9U CN212426076U (en) 2020-06-04 2020-06-04 Automatic device for printing and dyeing fur silk screen

Publications (1)

Publication Number Publication Date
CN212426076U true CN212426076U (en) 2021-01-29

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ID=74272727

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021002576.9U Expired - Fee Related CN212426076U (en) 2020-06-04 2020-06-04 Automatic device for printing and dyeing fur silk screen

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111549188A (en) * 2020-06-04 2020-08-18 桐乡市新时代皮草有限公司 Automatic device for printing and dyeing fur silk screen

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111549188A (en) * 2020-06-04 2020-08-18 桐乡市新时代皮草有限公司 Automatic device for printing and dyeing fur silk screen

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20210129

CF01 Termination of patent right due to non-payment of annual fee