Coating equipment for oxford fabric production
By incorporating a blower and suction pipe combined with a batter structure in the coating equipment, the problem of cleaning impurities before coating Oxford cloth was solved, thus improving the adhesion and quality of the coating.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2026-03-24
AI Technical Summary
Before the Oxford cloth is coated, impurities on the fabric surface cause the coating to not adhere firmly to the fabric, making the coating easy to fall off. Existing technologies are not able to effectively clean the impurities.
A coating application device was designed, comprising a conveyor roller, a blower pipe, and a suction pipe in a cleaning chamber. The blower pipe blows away dust and the suction pipe sucks away the flying dust. At the same time, the area of the air outlet is adjusted by the sealing plate and the battering rod beats the fabric to remove the attached dust.
It achieves efficient cleaning of dust from fabric surfaces, improves coating adhesion and quality, and ensures the coating is not easily peeled off.
Smart Images

Figure CN224031344U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of cleaning equipment, in particular to a coating coating equipment for oxford cloth production. BACKGROUND
[0002] After the production of oxford cloth, in order to give its waterproof performance, will use coating coating equipment on the surface of oxford cloth coated with waterproof coating, and then dry waterproof coating makes the waterproof coating on oxford cloth forms a waterproof layer.
[0003] If oxford cloth has dust and other impurities on the surface before coating will make the coating and oxford cloth between not firm, the coating is easy to fall off after oxford cloth use late, therefore needs to clean the impurities on oxford cloth before oxford cloth coating, how efficient cleaning the impurities on oxford cloth becomes a problem. UTILITY MODEL CONTENT
[0004] The application provides a kind of coating coating equipment for oxford cloth production, can efficiently clean cloth before cloth coating, improve the quality of cloth coating.
[0005] The application provides a kind of coating coating equipment for oxford cloth production using the following technical solutions:
[0006] A kind of coating coating equipment for oxford cloth production, including coating machine body, the coating machine body is equipped with cleaning cavity, the cleaning cavity is connected with the feed inlet of coating machine body, the cleaning cavity is rotatably connected with two transmission rollers for conveying cloth in;The side wall of cleaning cavity is equipped with the blast pipe connected with air blower, the other side wall of cleaning cavity is equipped with the dust suction pipe connected with dust collector;The blast pipe is equipped with air outlet groove, the air outlet groove is opposite cloth, the outer wall of blast pipe is slidably connected with two sealing plates, the air outlet groove is located in the sliding path of two sealing plates, the sealing plate is also equipped with limiting portion, the limiting portion is used to limit the sliding of sealing plate.
[0007] By using the above technical scheme, oxford cloth enters coating coating equipment first enters cleaning cavity, the wind blown from air outlet groove can blow the dust on oxford cloth, the dust in the air can be sucked away by dust suction pipe.Simultaneously by adjusting the position of sealing plate in blast pipe, the area of air outlet groove is blocked by adjusting sealing plate, so that the air outlet area of air outlet groove can be adapted to different sizes of fabric, when facing narrower fabric, the air power of air outlet groove can be improved, so that better dust blowing effect can be achieved.
[0008] Preferably, the outer wall of the blast pipe is provided with a T-shaped groove along the length of the blast pipe, the T-shaped groove penetrates the blast pipe, the T-shaped groove communicates with the air outlet groove, and the two sealing plates are slidably connected in the T-shaped groove.
[0009] By adopting the technical scheme, the sealing plate is conveniently mounted on the blowing pipe.
[0010] Preferably, the limiting part comprises a bolt threaded on the sealing plate, which abuts against the bottom wall of the T-shaped groove.
[0011] By adopting the technical scheme, after the sealing plate is slid to the appropriate position, the bolt is screwed to generate a pushing force between the bolt and the bottom wall of the T-shaped groove, and the reaction force of the pushing force presses the sealing plate against the groove wall of the T-shaped groove, thereby limiting the sliding of the sealing plate.
[0012] Preferably, the blowing pipe is two, and the two blowing pipes are respectively located at the upper and lower ends of the cloth, and the two air outlet grooves respectively face the upper and lower surfaces of the cloth; the dust suction pipe is two, and the two dust suction pipes are respectively located at the upper and lower ends of the cloth.
[0013] By adopting the technical scheme, the cleaning effect on the oxford cloth is improved.
[0014] Preferably, a rotating rod is rotatably connected in the cleaning cavity, the rotating rod is located below the cloth, a beating rod is arranged on the rotating rod, and a driving part for driving the rotating rod to rotate is further arranged in the cleaning cavity, when the driving part drives the rotating rod to rotate, the beating rod rotates and continuously beats the conveyed cloth.
[0015] By adopting the technical scheme, the beating rod continuously beats the conveyed cloth to beat the dust attached to the cloth, thereby cleaning the cloth.
[0016] Preferably, the driving part comprises a belt pulley one sleeved on one of the conveying rollers, a belt pulley two arranged on the rotating rod, and a belt sleeved on the belt pulley one and the belt pulley two.
[0017] By adopting the technical scheme, when the cloth is conveyed, the conveying roller rotates, the conveying roller rotates to drive the belt pulley one to rotate, the belt pulley one rotates to drive the belt pulley two to rotate through the belt, and the belt pulley two rotates to drive the rotating rod to rotate.
[0018] Preferably, the beating rod comprises a connecting rod connected with the rotating rod, a rubber beating plate sleeved on the end of the connecting rod, and a hoop, the hoop is used for sleeving the rubber beating plate on the connecting rod.
[0019] By adopting the technical scheme, when the rotating rod rotates, the connecting rod rotates, the connecting rod rotates to drive the rubber beating plate to rotate, and the rubber beating plate rotates to collide with and beat the oxford cloth in the conveying process, thereby beating the dust on the oxford cloth. Meanwhile, the rubber beating plate has excellent deformation performance, can be deformed after beating the oxford cloth, does not interfere with the transmission of the oxford cloth, and does not hurt the oxford cloth when beating the oxford cloth.
[0020] The technical effect of the utility model mainly embodies in following aspects:
[0021] 1、 The utility model discloses two blow pipes to blow away the dust on cloth, reach the structure of cleaning cloth;
[0022] 2、 The length of the slot of the utility model blow -off groove can be adjusted, when facing the narrower fabric, can improve the wind power of the air outlet of the air outlet, thereby can have better dust blowing effect;
[0023] 3、 The utility model discloses setting up the structure of beating to beat cloth, make the dust attached on cloth can be discharged cloth and be sucked away by dust suction pipe, improve the cleaning of cloth. DRAWINGS
[0024] Figure 1 It is the structural diagram of the coating machine body of the application.
[0025] Figure 2 It is the structural diagram of the coating machine body of the application.
[0026] Figure 3 It is Figure 1 The partial sectional view of the coating machine body along A-A line.
[0027] Figure 4 It is the structural diagram of two blow pipes, two dust suction pipes, blowers and dust collectors.
[0028] Figure 5 It is Figure 2 The partial sectional view of the coating machine body along B-B line.
[0029] Reference signs: 1, coating machine body;11, cleaning cavity;2, conveying roller;3, blow pipe;31, air outlet;32, sealing plate;33, T-shaped groove;4, dust suction pipe;5, limiting portion;51, bolt;6, rotating rod;7, beating rod;71, connecting rod;72, rubber beating plate;73, hoop;8, driving portion;81, belt pulley one;82, belt pulley two;83, belt;91, blower;92, dust collector. DETAILED DESCRIPTION
[0030] The application will be further described in detail below with reference to the drawings, so that the technical scheme of the application is easier to understand and master.
[0031] Refer to Figures 1-3The Oxford cloth production coating device comprises a coating machine body 1, the coating machine body 1 comprises a plurality of drying boxes and a plurality of spraying boxes, and the plurality of drying boxes and the plurality of spraying boxes are connected with each other. Meanwhile, the coating machine body 1 is provided with a cleaning cavity 11, the cleaning cavity 11 is communicated with the feeding port of the coating machine body 1 and the spraying box, and the Oxford part entering from the feeding port of the coating machine body 1 enters the cleaning cavity 11 first. Two conveying rollers 2 for conveying the cloth are rotatably connected in the cleaning cavity 11.
[0032] With reference to Figures 1-4 , a blower 91 and a dust collector 92 are arranged on one side of the coating machine body 1. Two blowing pipes 3 connected with the blower 91 are arranged on the side wall of the cleaning cavity 11, and the two blowing pipes 3 are connected with the air outlet of the blower 91 through a three-way pipe. Two dust collection pipes 4 connected with the dust collector 92 are arranged on the other side wall of the cleaning cavity 11, and the two dust collection pipes 4 are connected with the dust suction port of the dust collector 92 through a three-way pipe.
[0033] With reference to Figures 1-4 , air outlet grooves 31 are arranged on the two blowing pipes 3, and the two blowing pipes 3 are respectively arranged at the upper and lower ends of the cloth, and the two air outlet grooves 31 respectively face the upper and lower surfaces of the cloth, and the air outlet direction of the air outlet grooves 31 is consistent with the conveying direction of the cloth. The air blown out of the air outlet grooves 31 first blows on the cloth, blows away the dust on the Oxford cloth, and the flying dust is sucked away by the two dust collection pipes 4.
[0034] With reference to Figures 1-4 , a T-shaped groove 33 is arranged on the outer wall of the blowing pipe 3 along the length of the blowing pipe 3, the T-shaped groove 33 penetrates the blowing pipe 3, and the T-shaped groove 33 communicates with the air outlet groove 31. Two sealing plates 32 are slidably connected in the T-shaped groove 33 along the length direction of the blowing pipe 3, and the two sealing plates 32 are respectively arranged on the two sides of the blowing groove. By controlling the positions of the two sealing plates 32 in the T-shaped groove 33, the area of the blowing groove outlet can be controlled, so that the air outlet area of the air outlet groove 31 can be adapted to different sizes of the cloth, and the air outlet wind power of the air outlet groove 31 can be improved when facing small-volume cloth, so that better dust blowing effect can be achieved.
[0035] With reference to Figure 4 , the sealing plate 32 is further provided with a limiting portion 5 for limiting the sliding of the sealing plate 32. The limiting portion 5 comprises a bolt 51 threadedly connected to the sealing plate 32, and the bolt 51 abuts against the bottom wall of the T-shaped groove 33. After the sealing plate 32 is slid to the appropriate position, the bolt 51 is screwed to generate a pushing force between the bolt 51 and the bottom wall of the T-shaped groove 33. The reaction force of the pushing force presses the sealing plate 32 against the groove wall of the T-shaped groove 33, thereby limiting the sliding of the sealing plate 32.
[0036] With reference to Figures 1-3 , Figure 5A rotating rod 6 is rotatably connected inside the cleaning chamber 11. The rotating rod 6 is located below the fabric, and a beater 7 is fixed on the rotating rod 6. The beater 7 includes a connecting rod 71 connected to the rotating rod 6, a rubber beater 72 sleeved on the end of the connecting rod 71, and a clamp 73. The clamp 73 is used to clamp the rubber beater 72 onto the connecting rod 71. When the connecting rod 71 rotates with the rotating rod 6, the rubber beater 72 will continuously beat the fabric.
[0037] Reference Figures 1-3 , Figure 5 The cleaning chamber 11 is also equipped with a drive unit 8 for driving the rotating rod 6 to rotate. When the drive unit 8 drives the rotating rod 6 to rotate, the rubber clapper 72 continuously pats the fabric being conveyed. The drive unit 8 includes a belt pulley 81 83 sleeved on one of the conveying rollers 2, a belt pulley 82 83 sleeved on the rotating rod 6, and a belt 83 sleeved on the belt pulley 81 83 and the belt pulley 82 83.
[0038] Reference Figures 1-3 , Figure 5 When the fabric is conveyed, it drives the conveyor roller 2 to rotate. The rotation of the conveyor roller 2 causes belt pulley 83-81 to rotate, which in turn drives belt pulley 83-82 to rotate. The rotation of belt pulley 83-82 then drives the rotating rod 6 to rotate. The rotation of the rotating rod 6 causes the connecting rod 71 to rotate, which in turn causes the rubber clapper 72 to rotate. The rubber clapper 72 collides with and pats the Oxford cloth being conveyed, thus dislodging dust from the cloth. The cleaned Oxford cloth then enters the coating area of the coating machine body 1, where the coating is sprayed onto the cleaned Oxford cloth.
[0039] Of course, the above are just typical examples of this application. In addition, this application may have many other specific implementation methods. All technical solutions formed by equivalent substitution or equivalent transformation fall within the scope of protection claimed in this application.
Claims
1. A coating application apparatus for oxford cloth production comprising a coating machine body (1), characterized in that: The coating machine body (1) is provided with a cleaning cavity (11), the cleaning cavity (11) is communicated with the feed inlet of the coating machine body (1), two conveying rollers (2) for conveying cloth are rotatably connected in the cleaning cavity (11); a blow pipe (3) connected with a blower (91) is arranged on one side wall of the cleaning cavity (11), a dust suction pipe (4) connected with a dust collector (92) is arranged on the other side wall of the cleaning cavity (11); an air outlet groove (31) is arranged on the blow pipe (3), the air outlet groove (31) is opposite to the cloth, two sealing plates (32) are slidably connected to the outer wall of the blow pipe (3), the air outlet groove (31) is located on the sliding path of the two sealing plates (32), a limiting portion (5) is further arranged on the sealing plate (32), and the limiting portion (5) is used for limiting the sliding of the sealing plate (32).
2. A coating application apparatus for oxford cloth production as claimed in claim 1 wherein: T-shaped grooves (33) are arranged on the outer wall of the blow pipe (3) along the length of the blow pipe (3), the T-shaped grooves (33) penetrate through the blow pipe (3), the T-shaped grooves (33) are communicated with the air outlet grooves (31), and the two sealing plates (32) are slidably connected in the T-shaped grooves (33). The two sealing plates (32) are located on the two sides of the air outlet groove (31) respectively.
3. A coating application apparatus for oxford cloth production as claimed in claim 2 wherein: The limiting portion (5) comprises a bolt (51) screwed on the sealing plate (32), and the bolt (51) abuts against the bottom wall of the T-shaped groove (33).
4. A coating application apparatus for oxford cloth production as claimed in claim 1, wherein: The blow pipe (3) is two, the two blow pipes (3) are located at the upper and lower ends of the cloth respectively, and the two air outlet grooves (31) are opposite to the upper and lower surfaces of the cloth respectively; the dust suction pipe (4) is two, and the two dust suction pipes (4) are located at the upper and lower ends of the cloth respectively.
5. A coating application apparatus for oxford cloth production as claimed in claim 1, wherein: A rotating rod (6) is rotatably connected in the cleaning cavity (11), the rotating rod (6) is located below the cloth, a beating rod (7) is arranged on the rotating rod (6), and a driving portion (8) for driving the rotating rod (6) to rotate is further arranged in the cleaning cavity (11); when the driving portion (8) drives the rotating rod (6) to rotate, the beating rod (7) rotates and continuously beats the cloth in the conveying process.
6. A coating application apparatus for oxford cloth production as claimed in claim 5 wherein: The driving portion (8) comprises a belt (83) wheel one (81) sleeved on one of the conveying rollers (2), a belt (83) wheel two (82) arranged on the rotating rod (6), and a belt (83) sleeved on the belt (83) wheel one (81) and the belt (83) wheel two (82).
7. A coating application apparatus for oxford cloth production as claimed in claim 5 wherein: The beating rod (7) comprises a connecting rod (71) connected with the rotating rod (6), a rubber beating plate (72) sleeved on the end of the connecting rod (71), and a hoop (73) for sleeving the rubber beating plate (72) on the connecting rod (71); when the connecting rod (71) rotates with the rotating rod (6), the rubber beating plate (72) continuously beats the cloth.