A cord fabric slurry suction device
By designing the slurry absorption device of the cord cloth and using the glue absorbing mechanism and cyclone separator to process the excess glue liquid, the problem of uneven distribution of glue liquid in the production of the cord cloth is solved, and the uniform distribution and recycling of the glue liquid is achieved, and the production quality is improved.
Patent Information
- Application Number
- CN202011368072.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-11-27
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2040-11-27
AI Technical Summary
The existing cord fabric production technology cannot effectively remove excess glue from grey fabrics, resulting in uneven distribution of glue and affecting the quality of the cord fabrics.
A cord cloth slurry suction device is designed, including a glue-absorbing mechanism and a cyclone separator. The excess glue liquid is sucked into the colloid through the air extraction pipe, and a baffle mechanism and a shielding curtain are used to form a closed environment. The glue liquid is treated in conjunction with the cyclone separator for recycling.
The uniform distribution of glue liquid on the corded cloth grey cloth is achieved, the production quality is ensured, and the glue liquid is recycled, improving production efficiency.
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Figure CN112458658B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a slurry suction device, and more particularly to a cord fabric slurry suction device. Background Art
[0002] When cord fabric is produced, it needs to go through an impregnation process. After impregnation, there will be excess glue on the green fabric. If these excess glues are not removed in time, it will affect the subsequent processing of the cord fabric, thereby affecting the quality of the cord fabric.
[0003] The existing cord fabric production technology is not thorough enough in removing the glue on the green fabric, and cannot ensure that the glue is evenly distributed on the green fabric, which has an adverse effect on the subsequent processing of the cord fabric. Summary of the Invention
[0004] The purpose of the present invention is to provide a cord fabric slurry suction device to solve the problem of uneven distribution of glue on the green fabric during the production of cord fabric as mentioned in the above background art.
[0005] To achieve the above purpose, the present invention provides the following technical solution: A cord fabric slurry suction device, characterized in that: it includes a glue suction mechanism, the glue suction mechanism includes a glue suction frame, a glue suction body is arranged on the glue suction frame, the glue suction body is a box body, the glue suction body includes a glue suction part and a glue storage part, an air extraction pipe is arranged on the front side of the glue suction part, the glue storage part gradually contracts along the input end direction to form the glue suction part, the end of the glue suction part is a glue suction port, baffle mechanisms are arranged on both the upper and lower sides of the glue suction port, shielding curtains are arranged on both the front and rear sides of the glue suction port, and the shielding curtains do not leak air;
[0006] A cyclone separator is arranged on the rear side of the glue suction part of the glue suction body, a horizontal glue channel is arranged between the cyclone separator and the glue suction body, a temporary glue storage mechanism is arranged below the horizontal glue channel, a vertical glue channel is arranged between the temporary glue storage mechanism and the horizontal glue channel, and the horizontal glue channel and the vertical glue channel are controlled by a valve.
[0007] Preferably, the baffle mechanism includes a first shaft seat and a second shaft seat arranged front and back, a telescopic mechanism is connected between the first shaft seat and the second shaft seat in a matching manner, swing members are symmetrically fixed front and back on the telescopic mechanism, a swing roller is rotatably arranged on the tops of the two swing members, an "L"-shaped baffle is fixedly connected to any one of the swing members, and the baffle does not interfere with the rotation of the swing roller;
[0008] A shaft matching block is arranged on the rear side of the first shaft seat.
[0009] Preferably, the telescopic mechanism includes a first rotating shaft and a second rotating shaft. On one side of the first rotating shaft opposite to the second rotating shaft, a plurality of first retaining bars are arranged at intervals. The plurality of first retaining bars are arranged along an arc. On one side of the second rotating shaft opposite to the first rotating shaft, a plurality of second retaining bars are arranged at intervals. The plurality of second retaining bars are arranged along an arc. The plurality of second retaining bars can penetrate into the intervals between the plurality of first retaining bars.
[0010] Preferably, a spring assembly is arranged between the first rotating shaft and the second rotating shaft. The spring assembly is located in the cavity formed after the cooperation of the plurality of first retaining bars and the plurality of second retaining bars.
[0011] Preferably, a section of positioning portion is arranged at the other end of the first rotating shaft. A plurality of convex strips are evenly arranged on the periphery of the positioning portion;
[0012] The first shaft seat is divided into a fitting portion and a connecting portion. A fitting hole is provided on the fitting portion. A plurality of grooves are dug at intervals on the side wall of the fitting hole. A threaded hole is provided on the connecting portion. A bolt is arranged in the threaded hole;
[0013] The number of convex strips on the positioning portion is equal to the number of grooves on the side wall of the fitting hole. The convex strips can just be fitted into the grooves.
[0014] Preferably, a shaft fitting hole is provided on the shaft fitting block. The shaft fitting hole is rotationally fitted with the plurality of convex strips on the first rotating shaft.
[0015] Preferably, a bearing is arranged between the second shaft seat and the telescopic mechanism. Bearing end covers are arranged on both sides of the bearing. The bearing end covers are fixed on the second shaft seat.
[0016] Preferably, the threaded hole, the fitting hole, and the shaft fitting hole are coaxial.
[0017] Preferably, the two swinging members are respectively fixed to one end of the first rotating shaft and one end of the second rotating shaft.
[0018] Preferably, an impregnating mechanism is arranged on the input side of the glue sucking mechanism;
[0019] The sizing mechanism includes a sizing bath. At the front and rear of the top of the sizing bath, first roller seats are symmetrically arranged. At the front and rear of the top of the sizing bath, second roller seats are symmetrically arranged. The first roller seats and the second roller seats are respectively located at both ends of the sizing mechanism. A first roller is rotatably fitted between two first roller seats, and a second roller is rotatably fitted between two second roller seats. At the front and rear of the bottom of the sizing bath, multiple groups of third roller seats are symmetrically arranged. A third roller is rotatably fitted on each group of third roller seats. Inside the sizing bath, multiple fourth rollers are arranged in cooperation with the first roller and the second roller. On the outer sides of two second roller seats, first adjustable roller seats are provided. Oval holes are formed in the first adjustable roller seats. A first adjustable roller is arranged in the oval holes of two first adjustable roller seats. On the right side of the sizing bath, a second adjustable roller seat is provided. Oval holes are formed in the second adjustable roller seats. A second adjustable roller is arranged in the oval holes of two second adjustable roller seats. The second adjustable roller is matched with a baffle mechanism. Below the second adjustable roller seat, a fifth roller seat is provided. A fifth roller is rotatably fitted on the fifth roller seat;
[0020] A glue liquid discharge port is arranged at the bottom of the sizing mechanism.
[0021] Compared with the prior art, the present invention provides a sizing device for cord fabric, having the following beneficial effects:
[0022] 1. A sizing device for cord fabric sucks the excess glue liquid remaining on the cord fabric blank into the glue suction body through an air extraction pipe, and the glue liquid in the glue suction body is processed by a cyclone separator for recycling, so that too much glue liquid will not remain on the cord fabric blank, ensuring the quality of the produced cord fabric;
[0023] 2. A sizing device for cord fabric is provided with a baffle mechanism on the upper and lower sides of the glue suction port and a shielding curtain on the front and rear sides of the glue suction port, thus forming a relatively closed environment, which is conducive to sucking the excess glue liquid remaining on the cord fabric blank into the glue suction port, making the glue liquid on the cord fabric blank more uniform and ensuring the quality of the produced cord fabric. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention, and do not constitute a limitation to the present invention. In the drawings:
[0025] Figure 1 is a schematic structural diagram of a sizing device for cord fabric according to the present invention;
[0026] Figure 2 is Figure 1 a top view of;
[0027] Figure 3 is Figure 2 a schematic view of the cooperation relationship of the glue suction body and the cyclone separator from another perspective in;
[0028] Figure 4 is Figure 1 a schematic structural view of the middle baffle mechanism;
[0029] Figure 5 is Figure 4 the a-a cross-sectional view of;
[0030] Figure 6 is Figure 1 the enlarged view of part A of;
[0031] In the figure: dipping mechanism 100; dipping tank 101; fourth roller 101.1; first roller seat 102; first roller 102.1; second roller seat 103; second roller 103.1; third roller seat 104; third roller 104.1; first adjustable roller seat 105; first adjustable roller 105.1; second adjustable roller seat 106; second adjustable roller 106.1; fifth roller seat 107; fifth roller 107.1; glue discharge port 108;
[0032] glue suction mechanism 200; glue suction frame 201; glue suction body 202; glue suction port 202.1; air extraction pipe 202.2; baffle mechanism 203; first shaft seat 203.1; mating part 203.11; connecting part 203.12; groove 203.13; bolt 203.14; second shaft seat 203.2; bearing 203.21; telescopic mechanism 203.3; first rotating shaft 203.31; second rotating shaft 203.32; first stop bar 203.33; second stop bar 203.34; positioning part 203.35; rib 203.36; shaft fitting block 203.4; swinging part 203.5; swinging roller 203.6; baffle 203.7; shielding curtain 204; spring assembly 205; cyclone separator 300; horizontal glue channel 301; temporary glue storage mechanism 400; vertical glue channel 401. Specific embodiments
[0033] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0034] Please refer to Figures 1-6, the present invention provides a technical solution: a cord fabric sizing suction device, which includes a glue suction mechanism 200. The glue suction mechanism 200 includes a glue suction frame 201. A glue suction body 202 is arranged on the glue suction frame 201. The glue suction body 202 is a box body. The glue suction body 202 includes a glue suction part and a glue liquid storage part. A suction pipe 202.2 is arranged on the front side of the glue suction part. The glue liquid storage part gradually contracts along the input end direction to form the glue suction part. The end of the glue suction part is a glue suction port 202.1. Baffle mechanisms 203 are arranged on both the upper and lower sides of the glue suction port 202.1. Shielding curtains 204 are arranged on both the front and rear sides of the glue suction port 202.1, and the shielding curtains 204 do not leak air;
[0035] A cyclone separator 300 is arranged on the rear side of the glue suction part of the glue suction body 202. A horizontal glue liquid channel 301 is arranged between the cyclone separator 300 and the glue suction body 202. A temporary glue liquid storage mechanism 400 is arranged below the horizontal glue liquid channel 301. A vertical glue liquid channel 401 is arranged between the temporary glue liquid storage mechanism 400 and the horizontal glue liquid channel 301. The horizontal glue liquid channel 301 and the vertical glue liquid channel 401 are controlled by a valve;
[0036] The baffle mechanism 203 includes a first shaft seat 203.1 and a second shaft seat 203.2 arranged front and rear. A telescopic mechanism 203.3 is connected in cooperation between the first shaft seat 203.1 and the second shaft seat 203.2. Swing parts 203.5 are symmetrically and fixedly connected to the front and rear of the telescopic mechanism 203.3. A swing roller 203.6 is rotatably arranged on the tops of the two swing parts 203.5. An "L"-shaped baffle 203.7 is fixedly connected to any one of the swing parts 203.5, and the baffle 203.7 does not interfere with the rotation of the swing roller 203.6;
[0037] The telescopic mechanism 203.3 includes a first rotating shaft 203.31 and a second rotating shaft 203.32. A plurality of first stop bars 203.33 are arranged at intervals on the side of the first rotating shaft 203.31 opposite to the second rotating shaft 203.32. The plurality of first stop bars 203.33 are arranged along an arc. A plurality of second stop bars 203.34 are arranged at intervals on the side of the second rotating shaft 203.32 opposite to the first rotating shaft 203.31. The plurality of second stop bars 203.34 are arranged along an arc, and the plurality of second stop bars 203.34 can penetrate into the intervals between the plurality of first stop bars 203.33;
[0038] A spring assembly 205 is arranged between the first rotating shaft 203.31 and the second rotating shaft 203.32. The spring assembly 205 is located in the cavity formed after the cooperation of the plurality of first stop bars 203.33 and the plurality of second stop bars 203.34;
[0039] The other end of the first rotating shaft 203.31 is provided with a positioning portion 203.35, and a plurality of ridges 203.36 are uniformly arranged on the periphery of the positioning portion 203.35;
[0040] The first shaft seat 203.1 is divided into a mating portion 203.11 and a connecting portion 203.12. A mating hole is formed in the mating portion 203.11, and a plurality of grooves 203.13 are dug at intervals on the side wall of the mating hole. A threaded hole is formed in the connecting portion 203.12, and a bolt 203.14 is arranged in the threaded hole;
[0041] The number of ridges 203.36 on the positioning portion 203.35 is equal to the number of grooves 203.13 on the side wall of the mating hole, and the ridges 203.36 can just be fitted into the grooves 203.13;
[0042] An axial mating block 203.4 is arranged at the rear side of the first shaft seat 203.1. An axial mating hole is formed in the axial mating block 203.4, and the axial mating hole is rotationally mated with a plurality of ridges 203.36 on the first rotating shaft 203.31;
[0043] A bearing 203.21 is arranged between the second shaft seat 203.2 and the telescopic mechanism 203.3. Bearing end covers are arranged on both sides of the bearing 203.21, and the bearing end covers are fixed to the second shaft seat 203.2;
[0044] The threaded hole, the mating hole and the axial mating hole are coaxial;
[0045] Two swinging members 203.5 are respectively fixed to one end of the first rotating shaft 203.31 and one end of the second rotating shaft 203.32;
[0046] An impregnating mechanism 100 is arranged on the input side of the glue suction mechanism 200;
[0047] The sizing mechanism 100 includes a sizing bath 101. At the front and rear of the top of the sizing bath 101, first roller seats 102 are symmetrically arranged. At the front and rear of the top of the sizing bath 101, second roller seats 103 are symmetrically arranged. The first roller seats 102 and the second roller seats 103 are respectively located at both ends of the sizing mechanism 100. A first roller 102.1 is rotatably fitted between two first roller seats 102. A second roller 103.1 is rotatably fitted between two second roller seats 103. At the front and rear of the bottom of the sizing bath 101, multiple groups of third roller seats 104 are symmetrically arranged. A third roller 104.1 is rotatably fitted on each group of third roller seats 104. In the sizing bath 101, multiple fourth rollers 101.1 are arranged in cooperation with the first roller 102.1 and the second roller 103.1. On the outer sides of two second roller seats 103, first adjustable roller seats 105 are provided. Oval holes are formed in the first adjustable roller seats 105. A first adjustable roller 105.1 is arranged in the oval holes of two first adjustable roller seats 105. On the right side of the sizing bath 101, a second adjustable roller seat 106 is provided. Oval holes are formed in the second adjustable roller seats 106. A second adjustable roller 106.1 is arranged in the oval holes of two second adjustable roller seats 106. The second adjustable roller 106.1 is matched with the baffle mechanism 203. Below the second adjustable roller seat 106, a fifth roller seat 107 is provided. A fifth roller 107.1 is rotatably fitted on the fifth roller seat 107;
[0048] A glue discharge port 108 is arranged at the bottom of the sizing mechanism 100;
[0049] Working principle:
[0050] The base fabric for producing cord fabric first enters the sizing bath 101 through the first roller 102.1. After entering the sizing bath 101, the base fabric successively passes through multiple fourth rollers 101.1. The base fabric completes the sizing process during the process of passing through multiple fourth rollers 101.1. The sized base fabric is sent out from the sizing bath 101, and then successively passes through the second roller 103.1 and the first adjustable roller 105.1. After passing through the first adjustable roller 105.1, the sized base fabric is conveyed to the second adjustable roller 106.1. At the second adjustable roller 106.1, the excess glue on the sized base fabric is sucked into the glue storage part by the glue suction body 202. After the excess glue on the base fabric is cleaned up, the base fabric successively passes through the fifth roller 107.1 and multiple third rollers 104.1, and then other processes are carried out;
[0051] During the conveyance of the base fabric for producing cord fabric, the positions of the first adjustable roller 105.1 and the second adjustable roller 106.1 can be adjusted according to specific situations;
[0052] The colloidal absorber 202 and the second adjustable roller 106.1 cooperate through the baffle mechanism 203. The baffle mechanism 203 and the cooperating shielding curtain 204 mainly serve to form a relatively sealed environment between the glue suction port 202.1 and the base fabric on the second adjustable roller 106.1, so as to better remove the excess glue liquid on the base fabric;
[0053] The glue liquid in the colloidal absorber 202 will enter the cyclone separator 300 for treatment. If the glue liquid in the colloidal absorber 202 cannot smoothly enter the cyclone separator 300 due to external reasons, the valve needs to be opened to drain the glue liquid in the colloidal absorber 202 into the temporary glue liquid storage mechanism 400 for subsequent treatment;
[0054] The working principle of the baffle mechanism 203 is as follows: During the transmission of the cord fabric base fabric, multiple ridges 203.36 on the positioning portion 203.35 just fit into the grooves 203.13 on the mating portion 203.11, so that the telescopic mechanism 203.3 cannot rotate freely; When it is necessary to adjust the opening and closing angle of the baffle mechanism 203, the bolt 203.14 is screwed into the first shaft seat 203.1 until multiple ridges 203.36 on the positioning portion 203.35 are completely removed from the grooves 203.13 on the mating portion 203.11. At this time, multiple first blocking strips 203.33 on the first rotating shaft 203.31 enter the gaps between multiple second blocking strips 203.34 on the second rotating shaft 203.32, and the spring assembly 205 is compressed. After rotating the baffle mechanism 203 by a certain angle, the bolt 203.14 is loosened until multiple ridges 203.36 on the positioning portion 203.35 cooperate with the grooves 203.13 on the mating portion 203.11.
[0055] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A sizing absorption device for cord fabric, characterized in that: It includes a glue suction mechanism (200), and the glue suction mechanism (200) includes a glue suction machine frame (201). A glue suction body (202) is arranged on the glue suction machine frame (201). The glue suction body (202) is a box body, and the glue suction body (202) includes a glue suction part and a glue liquid storage part. An air extraction pipe (202.2) is arranged on the front side of the glue suction part. The glue liquid storage part gradually contracts along the input end direction to form the glue suction part. The end of the glue suction part is a glue suction port (202.1). Baffle mechanisms (203) are arranged on both the upper and lower sides of the glue suction port (202.1). Shielding curtains (204) are arranged on both the front and back sides of the glue suction port (202.1), and the shielding curtains (204) do not leak air; A cyclone separator (300) is arranged on the rear side of the glue suction part of the glue suction body (202). A horizontal glue liquid channel (301) is arranged between the cyclone separator (300) and the glue suction body (202). A temporary glue liquid storage mechanism (400) is arranged below the horizontal glue liquid channel (301). A vertical glue liquid channel (401) is arranged between the temporary glue liquid storage mechanism (400) and the horizontal glue liquid channel (301). The horizontal glue liquid channel (301) and the vertical glue liquid channel (401) are controlled by a valve; The baffle mechanism (203) includes a first shaft seat (203.1) and a second shaft seat (203.2) arranged front and back. A telescopic mechanism (203.3) is connected in cooperation between the first shaft seat (203.1) and the second shaft seat (203.2). Swing pieces (203.5) are symmetrically and fixedly connected to the front and back of the telescopic mechanism (203.3). A swing roller (203.6) is rotatably arranged at the top of the two swing pieces (203.5). An "L"-shaped baffle (203.7) is fixedly connected to any one of the swing pieces (203.5), and the baffle (203.7) does not interfere with the rotation of the swing roller (203.6); A shaft fitting block (203.4) is arranged at the rear side of the first shaft seat (203.1); The telescopic mechanism (203.3) includes a first rotating shaft (203.31) and a second rotating shaft (203.32). A plurality of first blocking strips (203.33) are arranged at intervals on the side of the first rotating shaft (203.31) opposite to the second rotating shaft (203.32). The plurality of first blocking strips (203.33) are arranged along an arc. A plurality of second blocking strips (203.34) are arranged at intervals on the side of the second rotating shaft (203.32) opposite to the first rotating shaft (203.31). The plurality of second blocking strips (203.34) are arranged along an arc, and the plurality of second blocking strips (203.34) can penetrate into the intervals of the plurality of first blocking strips (203.33); A spring assembly (205) is arranged between the first rotating shaft (203.31) and the second rotating shaft (203.32), and the spring assembly (205) is located in the cavity formed after the cooperation of the plurality of first blocking strips (203.33) and the plurality of second blocking strips (203.34); The other end of the first rotating shaft (203.31) is provided with a positioning portion (203.35), and a plurality of convex strips (203.36) are evenly arranged on the periphery of the positioning portion (203.35); The first shaft seat (203.1) is divided into a mating portion (203.11) and a connecting portion (203.12). A mating hole is provided on the mating portion (203.11), and a plurality of grooves (203.13) are dug at intervals on the side wall of the mating hole. A threaded hole is provided on the connecting portion (203.12), and a bolt (203.14) is arranged in the threaded hole; The number of the convex strips (203.36) on the positioning portion (203.35) is equal to the number of the grooves (203.13) on the side wall of the mating hole, and the convex strips (203.36) can just be fitted into the grooves (203.13); A shaft fitting hole is provided on the shaft fitting block (203.4), and the shaft fitting hole is rotationally fitted with a plurality of convex strips (203.36) on the first rotating shaft (203.31); A bearing (203.21) is provided between the second shaft seat (203.2) and the telescopic mechanism (203.3). Bearing end covers are provided on both sides of the bearing (203.21), and the bearing end covers are fixed to the second shaft seat (203.2); The threaded hole, the mating hole, and the shaft fitting hole are coaxial.
2. The sizing device for cord fabric according to claim 1, wherein: Two swinging members (203.5) are respectively fixed to one end of the first rotating shaft (203.31) and one end of the second rotating shaft (203.32).
3. The curtain fabric slurry suction device according to claim 1, characterized in that: An impregnating mechanism (100) is provided on the input side of the glue sucking mechanism (200); The dipping mechanism (100) includes a dipping tank (101). At the front and rear of the top of the dipping tank (101), first roller seats (102) are symmetrically arranged. At the front and rear of the top of the dipping tank (101), second roller seats (103) are symmetrically arranged. The first roller seats (102) and the second roller seats (103) are respectively located at both ends of the dipping mechanism (100). A first roller (102.1) is rotatably fitted between the two first roller seats (102), and a second roller (103.1) is rotatably fitted between the two second roller seats (103). At the front and rear of the bottom of the dipping tank (101), multiple groups of third roller seats (104) are symmetrically arranged. A third roller (104.1) is rotatably fitted on each group of third roller seats (104). Multiple fourth rollers (101.1) are arranged in the dipping tank (101) in cooperation with the first roller (102.1) and the second roller (103.1). First adjustable roller seats (105) are arranged on the outer sides of the two second roller seats (103). A waist-shaped hole is formed in the first adjustable roller seats (105), and a first adjustable roller (105.1) is arranged in the waist-shaped holes of the two first adjustable roller seats (105). A second adjustable roller seat (106) is arranged on the right side of the dipping tank (101). A waist-shaped hole is formed in the second adjustable roller seat (106), and a second adjustable roller (106.1) is arranged in the waist-shaped holes of the two second adjustable roller seats (106). The second adjustable roller (106.1) is matched with the baffle mechanism (203). A fifth roller seat (107) is arranged below the second adjustable roller seat (106), and a fifth roller (107.1) is rotatably fitted on the fifth roller seat (107); A glue liquid discharge port (108) is arranged at the bottom of the dipping mechanism (100).
Citation Information
Patent Citations
Cord fabric impregnation control system
CN103920616A
Vacuum glue sucking machine
CN202428672U
Cord fabric pulp suction device
CN214193744U