CN218367096U - Textile processing is with mechanism of flattening of printing equipment - Google Patents

Textile processing is with mechanism of flattening of printing equipment Download PDF

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Publication number
CN218367096U
CN218367096U CN202221566865.0U CN202221566865U CN218367096U CN 218367096 U CN218367096 U CN 218367096U CN 202221566865 U CN202221566865 U CN 202221566865U CN 218367096 U CN218367096 U CN 218367096U
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textile
sliding
base plate
plate
printing equipment
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CN202221566865.0U
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华志军
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Jining Runxin Textile Co ltd
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Jining Runxin Textile Co ltd
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Abstract

The utility model provides a mechanism that flattens of printing equipment is used in fabrics processing. The utility model provides a mechanism that flattens of printing equipment for textile processing, includes the base plate, the lower fixed surface of base plate is connected with the base, the left side fixedly connected with mount pad of base. The utility model provides a pair of flattening mechanism of printing equipment for textile processing, to this device design has heating mechanism, this design adopts the mode of heating to iron the formula flattening, not only can effectually get rid of the tiny fold on textile surface like this, still have the stoving effect, and still the design has guiding mechanism and receiving agencies, can carry out the direction in different position to the textile of different folds and adjust, the lower surface of effectual change textile and the area of contact of heat conduction case, the rotatory material roller of receiving that drives of the first gear engagement of motor rotation control second gear is rotatory simultaneously, laminate one side of textile with pasting the layer again, such design has made things convenient for the user to collect textile after flattening.

Description

Textile processing is with mechanism of flattening of printing equipment
Technical Field
The utility model relates to a fabrics processing technology field especially relates to a mechanism that flattens of printing equipment for fabrics processing.
Background
The textile industry is the industrial sector where natural and chemical fibers are processed into various yarns, threads, tapes, fabrics and their finished articles. The production process can be divided into spinning industry, weaving industry, printing and dyeing industry, knitting industry, textile duplication industry and the like, and the textile processing is generally applied to the printing industry at present.
The textile printing industry is a process for limited dyeing of predetermined areas of fabrics, which includes the preparation of a dye paste, development and fixation, and the addition of a thickener to limit the fastness of the dye paste to within a predetermined range of the fabric, and with the development of the textile industry, a flattening mechanism is required in the textile printing process.
The flattening mechanism of the printing equipment on the current market exists in the working use, traditional technique is that directly carry out the flattening to the fabrics, thereby lead to the fabrics tiny fold to appear easily, and take place the condition that the later stage fabrics appears moist rotten easily, and traditional technique is with guiding mechanism snap-on, thereby can not carry out the direction regulation in different position to the fabrics of different folds, the flattening effect of fabrics has been restricted, traditional technique is not placed with receiving agencies combination at the during operation simultaneously, thereby the condition that the staff can not in time receive the material takes place easily, the work efficiency of device is reduced.
Therefore, it is necessary to provide a pressing mechanism of a textile printing apparatus to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
The utility model provides a flattening mechanism of printing equipment for textile processing, it is direct to carry out the flattening to the fabrics to have solved traditional technique, thereby lead to the fabrics tiny fold to appear easily, and take place later stage fabrics the condition that the humidity is rotten appears easily, and traditional technique is with guiding mechanism snap-on, thereby can not carry out the direction regulation in different position to the fabrics of different folds, the flattening effect of fabrics has been restricted, traditional technique is not placed with receiving agencies combination at the during operation simultaneously, thereby take place the condition that the staff can not in time receive the material easily, the problem of the work efficiency of device has been reduced.
For solving the technical problem, the utility model provides a pair of flattening mechanism of printing equipment for textile processing, which comprises a base plate, the lower fixed surface of base plate is connected with the base, the left side fixedly connected with mount pad of base, receiving agencies is installed to the top of mount pad, the last fixed surface of base plate is connected with the spliced pole, and the quantity of spliced pole is four, the internally mounted of base plate has heating mechanism, guiding mechanism, four is installed to the top of base plate the last fixed surface of spliced pole is connected with the roof, two of them the left side fixed surface of spliced pole is connected with the frame, there is driving motor top of frame through screw fixed mounting, driving motor's output shaft parallel key is connected with the lead screw, the outer wall threaded connection of lead screw has the sliding seat, the below fixedly connected with sliding sleeve of sliding seat, and the quantity of sliding sleeve be two, two the equal sliding connection in inside of sliding sleeve has the lifter, two the relative one side rotation of lifter is connected with the compression roller, two the outer wall threaded connection of sliding sleeve has positioning bolt.
Preferably, two positioning bolt's front end all runs through two the inside of sliding sleeve and extend to the outer wall of lifter, the one end of lead screw passes through the bearing and wherein two the surface rotation connection between the spliced pole.
Preferably, receiving agencies is including being fixed in the riser of mount pad upper surface, and the quantity of riser is two, one of them the external fixed surface of riser is connected with the locating plate, there is driving motor top of locating plate through screw fixed mounting, driving motor's output shaft keyway is connected with first gear, the outer wall meshing of first gear is connected with the second gear, two the inner wall of riser all rotates and is connected with the carousel, two there is the receipts material roller relative one side of carousel through bolt fixed mounting, the outer wall bonding of receipts material roller has the layer of pasting.
Preferably, the axis of one of the turntables is in key-groove connection with the axis of the second gear.
Preferably, heating mechanism is including being fixed in the inside heat conduction case of base plate, the left side fixedly connected with heating tank of heat conduction case, there is the immersible pump heating tank's inside through bolt fixed mounting, the inside sealing installation that the right side port of immersible pump just is located the heat conduction case has the heat pipe.
Preferably, guiding mechanism is including offering the dovetail that just is located the heating mechanism top in the base plate inside, and the quantity of dovetail is two, two the top sliding connection of dovetail has the sliding plate, the last fixed surface of sliding plate is connected with the limiting plate, and the quantity of limiting plate is two, two the equal fixedly connected with of outer wall of limiting plate links up the board, two the draw-in groove has all been seted up to the inside of linking board, two the inside block of draw-in groove is connected with the guide roll, the upper surface threaded connection of sliding plate has fixing bolt, and fixing bolt's quantity is two.
Compared with the prior art, the utility model provides a pair of flattening mechanism of printing equipment for textile processing has following beneficial effect:
the device is provided with a heating mechanism, the design is compared with a traditional leveling method, ironing leveling is carried out by adopting a heating mode, fine wrinkles on the surface of a textile can be effectively removed, the drying effect is achieved, the rotten situation caused by later storage of the damp textile is avoided, a guide mechanism and a material receiving mechanism are further designed, the design is compared with a traditional fixed guide mechanism, the position of a guide roller on a substrate is changed through the sliding translation design of the guide mechanism, the textile with different wrinkles can be guided and adjusted in different directions, the contact area of the lower surface of the textile and a heat conduction box can be effectively changed, the change can be achieved according to the situation of the textile, the leveling effect is improved, the compatibility of the device is improved, meanwhile, a driving motor is started, the driving motor controls a first gear to be meshed to control a second gear to rotate to drive a material receiving roller to rotate, one side of the textile is attached to an adhesive layer, the rotating material receiving roller drives the textile to roll, the textile to be collected, convenience is brought to a user to collect the flattened textile, and the working efficiency of the device is improved.
Drawings
Fig. 1 is a schematic structural view of a preferred embodiment of a flattening mechanism of a textile processing printing apparatus provided by the present invention;
FIG. 2 is a schematic front view of the receiving mechanism shown in FIG. 1;
FIG. 3 is a schematic cross-sectional view of the heating mechanism of FIG. 1;
fig. 4 is a schematic top view of the guide mechanism shown in fig. 1.
Reference numbers in the figures: 1. a substrate; 2. a base; 3. a mounting seat; 4. a material receiving mechanism; 41. a vertical plate; 42. positioning a plate; 43. a drive motor; 44. a first gear; 45. a second gear; 46. a turntable; 47. a material receiving roller; 48. a bonding layer; 5. connecting columns; 6. a heating mechanism; 61. a heat conducting box; 62. heating the water tank; 63. a submersible pump; 64. a heat conduction pipe; 7. a guide mechanism; 71. a dovetail groove; 72. a sliding plate; 73. a limiting plate; 74. a connector tile; 75. a card slot; 76. a guide roller; 77. fixing the bolt; 8. a machine base; 9. a drive motor; 10. a lead screw; 11. a sliding seat; 12. a sliding sleeve; 13. a lifting rod; 14. pressing rollers; 15. positioning the bolt; 16. a top plate.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and embodiments.
Referring to fig. 1 to 4, fig. 1 is a schematic structural diagram of a pressing mechanism of a textile processing printing apparatus according to a preferred embodiment of the present invention; FIG. 2 is a schematic front view of the receiving mechanism shown in FIG. 1; FIG. 3 is a schematic cross-sectional view of the heating mechanism of FIG. 1; fig. 4 is a schematic top view of the guiding mechanism shown in fig. 1. The utility model provides a mechanism that flattens of stamp equipment for textile processing, including base plate 1, the lower fixed surface of base plate 1 is connected with base 2, the left side fixedly connected with mount pad 3 of base 2, receiving agencies 4 is installed to the top of mount pad 3, the last fixed surface of base plate 1 is connected with spliced pole 5, and the quantity of spliced pole 5 is four, the internally mounted of base plate 1 has heating mechanism 6, guiding mechanism 7 is installed to the top of base plate 1, the last fixed surface of four spliced poles 5 is connected with roof 16, wherein the left side fixed surface of two spliced poles 5 is connected with frame 8, there is drive motor 9 frame 8's top through screw fixed mounting, the output shaft parallel key of drive motor 9 is connected with lead screw 10, the outer wall threaded connection of lead screw 10 has sliding seat 11, the below fixedly connected with sliding sleeve 12 of sliding seat 11, and the quantity of sliding sleeve 12 is two, the equal sliding connection in inside of two sliding sleeves 12 has lifter 13, relative one side rotation of two lifter 13 is connected with compression roller 14, the outer wall threaded connection of two sliding sleeves 12 has positioning bolt 15.
The front ends of the two positioning bolts 15 penetrate through the insides of the two sliding sleeves 12 and extend to the outer wall of the lifting rod 13, and one end of the screw 10 is rotatably connected with the outer surface between the two connecting columns 5 through a bearing.
Receiving agencies 4 is including being fixed in the riser 41 of mount pad 3 upper surface, and the quantity of riser 41 is two, the outer fixed surface of one of them riser 41 is connected with locating plate 42, there is driving motor 43 above locating plate 42 through screw fixed mounting, driving motor 43's output shaft keyway is connected with first gear 44, the outer wall meshing of first gear 44 is connected with second gear 45, the inner wall of two riser 41 all rotates and is connected with carousel 46, there is receiving roller 47 relative one side of two carousels 46 through bolt fixed mounting, receiving roller 47's outer wall bonding has paste layer 48.
The axle center of one of the turntables 46 is in key groove connection with the axle center of the second gear 45, so that the design is convenient for users to collect the flattened textiles, and the working efficiency of the device is improved.
Heating mechanism 6 is including being fixed in the inside heat conduction case 61 of base plate 1, the left side fixedly connected with heating water tank 62 of heat conduction case 61, there is immersible pump 63 in heating water tank 62's inside through bolt fixed mounting, immersible pump 63's right side port just is located the inside sealing installation of heat conduction case 61 and has heat pipe 64, such design not only can effectually get rid of the tiny fold on fabrics surface, still has the stoving effect, avoid moist fabrics later stage to deposit the condition that can take place to rot.
The guide mechanism 7 comprises dovetail grooves 71 which are arranged inside the base plate 1 and located above the heating mechanism 6, the number of the dovetail grooves 71 is two, sliding plates 72 are connected above the two dovetail grooves 71 in a sliding mode, limiting plates 73 are fixedly connected to the upper surfaces of the sliding plates 72, the number of the limiting plates 73 is two, the outer walls of the two limiting plates 73 are fixedly connected with connecting plates 74, clamping grooves 75 are formed in the two connecting plates 74, guide rollers 76 are connected to the inner portions of the two clamping grooves 75 in a clamping mode, fixing bolts 77 are connected to the upper surfaces of the sliding plates 72 in a threaded mode, the number of the fixing bolts 77 is two, and the guide adjustment in different directions can be conducted on textiles with different folds through the design.
The utility model provides a pair of fabrics processing is with mechanism that flattens of printing equipment's theory of operation as follows:
the first step is as follows: firstly, a user needs to clamp the guide roller 76 into the clamping groove 75 to position the guide roller, then the user pushes the sliding plate 72 to drive the guide roller 76 to move to a required position, then the two fixing bolts 77 are screwed down to fix the sliding plate 72, and then the user starts the heating water tank 62 to heat water in the heating water tank 62, and then the water is conveyed into the heat conduction pipe 64 by the submersible pump 63 to enable the outer surface of the heat conduction tank 61 to fully heat.
The second step is that: firstly, a user needs to adjust the lifting rod 13 to a position matched with the guide mechanism 7 in a sliding mode, then the positioning bolt 15 is screwed down to enable the lifting rod 13 and the sliding sleeve 12 to be fixed, and then the user starts the transmission motor 9 to rotate and controls the screw rod 10 to rotate to drive the sliding seat 11 to slide, so that the compression roller 14 performs reciprocating left-right translation rolling.
The third step: firstly, a user needs to start the driving motor 43 to enable the driving motor to control the first gear 44 to be meshed with the second gear 45 to control the second gear 45 to rotate to drive the material receiving roller 47 to rotate, then the textile is conveyed to the upper surface of the guide roller 76 by the printing machine, the guide roller 76 rotates to drive the textile to be transmitted to the lower part of the press roller 14, the press roller 14 which rolls back and forth flattens the textile to enable the textile to be in contact with the outer surface of the heat conduction box 61, after ironing and leveling are achieved, the user needs to attach one side of the textile to the adhesive layer 48, and the rotating material receiving roller 47 drives the textile to roll and collect.
Compared with the prior art, the utility model provides a pair of flattening mechanism of printing equipment for textile processing has following beneficial effect:
the heating mechanism 6 is designed on the device, the design is compared with a traditional leveling method, the ironing type leveling is carried out by adopting a heating mode, so that fine wrinkles on the surface of a textile can be effectively removed, the drying effect is achieved, the situation that the moist textile is rotten after being stored in the later period is avoided, the guide mechanism 7 and the material receiving mechanism 4 are further designed, the design is compared with the traditional fixed guide mechanism 7, the position of the guide roller 76 on the substrate 1 is changed through the sliding translation design, the guiding adjustment in different positions can be carried out on the textile with different wrinkles, the contact area between the lower surface of the textile and the heat conduction box 61 can be effectively changed, the change can be carried out according to the situation of the product, the leveling effect is improved, the compatibility of the device is also improved, meanwhile, the driving motor 43 is started, the first gear 44 is meshed to control the second gear 45 to rotate to drive the material receiving roller 47 to rotate, one side of the textile is attached to the adhesive layer 48, the rotating material receiving roller 47 drives the textile to roll, the collection and collection of the textile after being flattened by a user are facilitated, and the working efficiency of the device is improved.
The above only is the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structures or equivalent processes of the present invention are used in the specification and the attached drawings, or directly or indirectly applied to other related technical fields, and the same principle is included in the protection scope of the present invention.

Claims (6)

1. The utility model provides a mechanism that flattens of printing equipment for textile processing, includes base plate (1), its characterized in that: the utility model discloses a material receiving device, including base plate (1), fixed surface, the lower fixedly connected with base (2), the left side fixedly connected with mount pad (3) of base plate (2), receiving agencies (4) are installed to the top of mount pad (3), the last fixed surface of base plate (1) is connected with spliced pole (5), and the quantity of spliced pole (5) is four, the internally mounted of base plate (1) has heating mechanism (6), guiding mechanism (7), four are installed to the top of base plate (1) the last fixed surface of spliced pole (5) is connected with roof (16), two of them the left side fixed surface of spliced pole (5) is connected with frame (8), screw fixed mounting has drive motor (9) in the top of frame (8), the output shaft parallel key of drive motor (9) is connected with lead screw (10), the outer wall threaded connection of lead screw (10) has sliding seat (11), the below fixedly connected with sliding sleeve (12) of sliding seat (11), and the quantity of sliding sleeve (12) is two equal sliding connection has lifter (13) in the inside of sliding sleeve (12), two relative sliding connection has rotation bolt (14), two outer wall (15) of sliding sleeve (12).
2. The flattening mechanism of textile processing printing equipment according to claim 1, characterized in that the front ends of the two positioning bolts (15) both penetrate through the inside of the two sliding sleeves (12) and extend to the outer wall of the lifting rod (13), and one end of the screw rod (10) is rotatably connected with the outer surface between the two connecting columns (5) through a bearing.
3. The flattening mechanism of printing equipment for textile processing according to claim 2, characterized in that, receiving agencies (4) are including riser (41) that are fixed in mount pad (3) upper surface, and the quantity of riser (41) is two, one of them the external fixed surface of riser (41) is connected with locating plate (42), there is driving motor (43) top of locating plate (42) through screw fixed mounting, the output shaft keyway of driving motor (43) is connected with first gear (44), the outer wall meshing of first gear (44) is connected with second gear (45), two the inner wall of riser (41) all rotates and is connected with carousel (46), two there is receiving roller (47) through bolt fixed mounting in relative one side of carousel (46), the outer wall bonding of receiving roller (47) has paste layer (48).
4. The flattening mechanism of a textile processing printing apparatus according to claim 3, wherein a shaft center of one of the rotating discs (46) is in key-groove connection with a shaft center of the second gear (45).
5. The flattening mechanism of textile processing printing equipment according to claim 4, characterized in that, the heating mechanism (6) comprises a heat conduction box (61) fixed inside the base plate (1), a heating water tank (62) is fixedly connected to the left side of the heat conduction box (61), a submersible pump (63) is fixedly installed inside the heating water tank (62) through a bolt, and a heat conduction pipe (64) is hermetically installed at the right side port of the submersible pump (63) and inside the heat conduction box (61).
6. The flattening mechanism of printing equipment for textile processing according to claim 5, characterized in that guide mechanism (7) includes dovetail groove (71) that sets up in base plate (1) inside and be located heating mechanism (6) top, and the quantity of dovetail groove (71) is two, two sliding connection has sliding plate (72) above dovetail groove (71), the last fixed surface of sliding plate (72) is connected with limiting plate (73), and the quantity of limiting plate (73) is two, two the equal fixedly connected with joint plate (74) of outer wall of limiting plate (73), two draw-in groove (75) have all been seted up to the inside of joint plate (74), two the inside block of draw-in groove (75) is connected with guide roll (76), the last surface screw thread of sliding plate (72) is connected with fixing bolt (77), and the quantity of fixing bolt (77) is two.
CN202221566865.0U 2022-06-22 2022-06-22 Textile processing is with mechanism of flattening of printing equipment Active CN218367096U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221566865.0U CN218367096U (en) 2022-06-22 2022-06-22 Textile processing is with mechanism of flattening of printing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221566865.0U CN218367096U (en) 2022-06-22 2022-06-22 Textile processing is with mechanism of flattening of printing equipment

Publications (1)

Publication Number Publication Date
CN218367096U true CN218367096U (en) 2023-01-24

Family

ID=84959161

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221566865.0U Active CN218367096U (en) 2022-06-22 2022-06-22 Textile processing is with mechanism of flattening of printing equipment

Country Status (1)

Country Link
CN (1) CN218367096U (en)

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