Teflon high-temperature cloth coating machine capable of widening coating range
By introducing extrusion and limiting mechanisms into the coating machine, the problem that existing coating machines cannot adjust the thickness and width of the slurry is solved, thereby expanding the coating range and improving the stability of the coating material, thus enhancing the applicability of the coating machine.
Patent Information
- Application Number
- CN202423061491.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-12
AI Technical Summary
Existing Teflon high-temperature cloth coating machines cannot adjust the thickness and width of the slurry, have a small coating range, and are not suitable for all applications.
A coating machine comprising an extrusion mechanism, a limiting mechanism, and a slurry mechanism was designed. By combining the extrusion roller and the coating roller, the thickness and width of the slurry can be adjusted, preventing slurry overflow and fabric loosening.
It enables adjustment of slurry thickness and width according to actual conditions, increases the coating range, avoids slurry overflow and cloth loosening, and enhances the practicality of the coating machine.
Smart Images

Figure CN223733169U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of coating machine technology, specifically to a Teflon high-temperature cloth coating machine that can improve the coating range. Background Technology
[0002] When coating Teflon high-temperature cloth, only the width of the slurry can be adjusted, not the thickness, nor can it be adjusted according to the thickness of the cloth. The coating range is small, and the applicable range of such coating machines is limited. Therefore, a coating machine for Teflon high-temperature cloth that can improve the coating range is proposed. Utility Model Content
[0003] The purpose of this invention is to address the shortcomings and deficiencies of existing technologies by providing a Teflon high-temperature fabric coating machine that can improve the coating range. It can adjust the required thickness of the slurry coating according to actual conditions, thereby increasing the coating range; it can adjust the coating range according to the width of the fabric to prevent slurry overflow; and it can adapt to fabrics of different thicknesses, preventing the fabric from becoming loose during coating, thus improving practicality.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: it includes a frame, a coating roller, and a coating motor; a coating roller is provided between the left and right frames, and the coating roller is driven by the coating motor;
[0005] It also includes:
[0006] An extrusion mechanism is located between the left and right frames, and above and behind the coating roller; the extrusion mechanism includes:
[0007] The extrusion roller is located between the left and right frames;
[0008] There are two No. 1 moving blocks, which are respectively screwed to the left and right ends of the extrusion roller via shafts and bearings; a No. 1 sliding groove is opened on the upper left and right sides of the frame, and the No. 1 moving block is embedded in the No. 1 sliding groove.
[0009] A rotating motor is fixed on the first movable block on the left side and is connected to an external power source; the output shaft of the rotating motor is connected to the first movable block on the left side.
[0010] There are two No. 1 limiting rods, which are respectively movably inserted into the No. 1 moving block on the left side and fixed on the No. 1 sliding groove.
[0011] The extrusion motor is fixed on the inner top plate of the first slide groove on the right side and is connected to an external power source.
[0012] The No. 1 screw is connected to the output shaft of the extrusion motor and is threaded through the No. 1 moving block on the right side.
[0013] A limiting mechanism is provided on the coating roller;
[0014] The slurry mechanism is located on the front side of the coating roller.
[0015] Preferably, the limiting mechanism comprises:
[0016] The second screw, there are two of them, and they are respectively connected on the left and right sides above the coating roller. The threads of the two second screws are arranged in opposite directions. The second screw on the left side is screwed to the left frame through a bearing, and the second screw on the right side is screwed to the right frame through a thread.
[0017] The adjusting motor is fixed on the frame on the right side and is connected to an external power source; the output shaft of the adjusting motor is connected to the second screw on the right side.
[0018] Two internally threaded tubes are used for adjustment, and each tube is threadedly fitted onto the No. 2 screw.
[0019] Two rubber arc plates are provided, each abutting against the coating roller, and the rubber arc plates are fixed to the bottom of the adjusting internal thread tube.
[0020] Preferably, the two guide plates are fixed to the front end of the rubber arc plate, and the guide plates are inclined from the front to the back and from the outside to the inside.
[0021] Preferably, a connecting pipe is fixed to the upper end of the adjusting internal threaded pipe on the left side, and an indicator rod is movably inserted into the connecting pipe. The left end of the indicator rod is fixed to the left side frame.
[0022] Preferably, the slurry mechanism comprises:
[0023] The slurry plate is located at the bottom of the coating roller; the slurry plate is inclined from front to back from high to low; the guide plate is set at the same angle as the slurry plate;
[0024] The second movable block, there are two of them, and they are fixed to the left and right side walls of the slurry plate respectively. The left and right frames are provided with second sliding grooves, and the second movable block is slidably locked in the second sliding groove; the second limiting rod is movably inserted into the second movable block on the left side, and the second limiting rod is fixed in the second sliding groove.
[0025] The lifting motor is fixed on the inner bottom plate of the second slide groove and is connected to an external power source. The output shaft of the lifting motor is connected to the third screw, which is threaded through the second moving block on the right side.
[0026] Compared with the prior art, the beneficial effects of this utility model are:
[0027] 1. Equipped with an extrusion mechanism, it can adjust the required thickness of the slurry coating according to actual conditions, thereby increasing the coating range;
[0028] 2. It is equipped with a limiting mechanism, which can adjust the coating range according to the width of the fabric to prevent the paste from overflowing;
[0029] 3. The slurry mechanism can adapt to fabrics of different thicknesses, preventing the fabric from becoming loose during coating and improving practicality. Attached Figure Description
[0030] Figure 1 This is a schematic diagram of the structure of this utility model.
[0031] Figure 2 This is the southwest isometric view of this utility model.
[0032] Figure 3 This is the southeast isometric view of this utility model.
[0033] Figure 4 This is the northeast isometric view of this utility model.
[0034] Explanation of reference numerals in the attached figures:
[0035] Frame 1, Coating Roller 2, Coating Motor 3, Extrusion Mechanism 4, Extrusion Roller 4-1, Moving Block 1 4-2, Slide 1 4-3, Rotating Motor 4-4, Limiting Rod 1 4-5, Extrusion Motor 4-6, Screw 1 4-7, Limiting Mechanism 5, Screw 2 5-1, Adjusting Motor 5-2, Adjusting Internal Threaded Pipe 5-3, Connecting Pipe 5-4, Marking Rod 5-5, Rubber Arc Plate 5-6, Guide Plate 5-7, Slurry Mechanism 6, Slurry Plate 6-1, Moving Block 2 6-2, Slide 2 6-3, Limiting Rod 2 6-4, Lifting Motor 6-5, Screw 3 6-6. Detailed Implementation
[0036] The technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. The preferred embodiments described are only examples. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0037] The specific implementation method adopts the following technical solution:
[0038] Please see Figure 1-4 This embodiment includes a frame 1, a coating roller 2 and a coating motor 3; the coating roller 2 is provided between the two frames 1 on the left and right sides, and the coating roller 2 is driven by the coating motor 3;
[0039] It also includes:
[0040] An extrusion mechanism 4 is located between the left and right frames 1, and above and behind the coating roller 2; the extrusion mechanism 4 includes:
[0041] The extrusion roller 4-1 is located between the left and right frames 1;
[0042] There are two No. 1 moving blocks 4-2, which are respectively screwed to the left and right ends of the extrusion roller 4-1 via shafts and bearings; No. 1 sliding grooves 4-3 are opened on the left and right sides of the frame 1, and the No. 1 moving blocks 4-2 are embedded in the No. 1 sliding grooves 4-3.
[0043] Rotary motor 4-4 is fixed to the first moving block 4-2 on the left side by bolts. Rotary motor 4-4 is connected to an external power source. The specific model of rotary motor 4-4 is purchased and installed directly from the market according to actual usage requirements. The output shaft of rotary motor 4-4 is connected to the first moving block 4-2 on the left side.
[0044] There are two No. 1 limiting rods 4-5, which are respectively movably inserted into the No. 1 moving block 4-2 on the left side, and the No. 1 limiting rods 4-5 are fixed on the No. 1 sliding groove 4-3;
[0045] The extrusion motor 4-6 is fixed to the inner top plate of the first slide groove 4-3 on the right side by bolts. The extrusion motor 4-6 is connected to an external power source. The specific model of the extrusion motor 4-6 is purchased and installed directly from the market according to the actual usage requirements.
[0046] The No. 4-7 screw is connected to the output shaft of the extrusion motor 4-6 and is threadedly inserted into the No. 4-2 moving block on the right side.
[0047] The limiting mechanism 5 is disposed on the coating roller 2; the limiting mechanism 5 includes:
[0048] The number of screws 5-1 is two, and they are respectively connected on the left and right sides above the coating roller 2. The threads of the two screws 5-1 are arranged in opposite directions. The left screw 5-1 is screwed to the left frame 1 through a bearing, and the right screw 5-1 is screwed to the right frame 1 through a thread.
[0049] The regulating motor 5-2 is fixed to the frame 1 on the right side by bolts. The regulating motor 5-2 is connected to an external power supply. The specific model of the regulating motor 5-2 is purchased directly from the market according to the actual use requirements. The output shaft of the regulating motor 5-2 is connected to the second screw 5-1 on the right side.
[0050] Two internal threaded tubes 5-3 are adjusted and are respectively threaded onto the second screw 5-1. The upper end of the left internal threaded tube 5-3 is fixed with a connecting tube 5-4 by bolts. A marker rod 5-5 is movably inserted into the connecting tube 5-4. The left end of the marker rod 5-5 is fixed to the left frame 1 by bolts.
[0051] Two rubber arc plates 5-6 are provided, and they are respectively abutted on the coating roller 2. The rubber arc plates 5-6 are fixed to the bottom of the adjusting internal thread tube 5-3.
[0052] Guide plates 5-7, there are two guide plates 5-7, and they are respectively fixed to the front end of the rubber arc plate 5-6. The guide plates 5-7 are inclined from front to back and from the outside to the inside.
[0053] The slurry mechanism 6 is located on the front side of the coating roller 2; the slurry mechanism 6 includes:
[0054] The slurry plate 6-1 is located at the bottom of the paint roller; the slurry plate 6-1 is inclined from front to back from high to low; the guide plate 5-7 is set at the same angle as the slurry plate 6-1.
[0055] There are two movable blocks 6-2, which are fixed to the left and right side walls of the slurry plate 6-1 respectively. The left and right frames 1 are provided with two sliding grooves 6-3, and the movable blocks 6-2 are slidably locked in the sliding grooves 6-3. A second limiting rod 6-4 is movably inserted into the movable block 6-2 on the left side, and the second limiting rod 6-4 is fixed in the sliding groove 6-3.
[0056] The lifting motor 6-5 is fixed to the inner bottom plate of the second slide groove 6-3 by bolts. The lifting motor 6-5 is connected to an external power supply. The specific model of the lifting motor 6-5 is purchased and installed directly from the market according to the actual use requirements. The output shaft of the lifting motor 6-5 is connected to the third screw 6-6, which is threaded through the second moving block 6-2 on the right side.
[0057] When using this utility model, according to the width of the fabric, start the adjusting motor 5-2, so that the second screw 5-1 rotates, driving the two adjusting internal thread tubes 5-3 to move relative to each other. The indicator rod 5-5 indicates the moving distance of the adjusting internal thread tubes 5-3, so that the distance between the two rubber arc plates 5-6 meets the coating requirements and satisfies different coating ranges.
[0058] Start the lifting motor 6-5, so that the screw 6-6 drives the second moving block 6-2 to lift and lower, so that the cloth passes through the gap between the slurry plate 6-1 and the coating roller 2 and goes around the coating roller 2, and then passes through the gap between the coating roller 2 and the extrusion roller 4-1.
[0059] Start the extrusion motor 4-6, causing the screw 4-7 to rotate, which in turn drives the moving block 4-2 to descend, causing the extrusion roller 4-1 to descend to a certain height, ensuring that the thickness of the slurry meets the requirements. Then start the rotation motor 4-4, causing the extrusion roller 4-1 to rotate, so that the slurry is evenly applied to the fabric.
[0060] Compared with the prior art, the beneficial effects of this utility model are:
[0061] 1. It is equipped with an extrusion mechanism 4, which can adjust the thickness of the slurry coating according to the actual situation and increase the coating range;
[0062] 2. A limiting mechanism 5 is provided, which can adjust the coating range according to the width of the fabric to prevent the paste from overflowing;
[0063] 3. The slurry mechanism 6 can adapt to fabrics of different thicknesses, preventing the fabric from loosening during coating and improving practicality.
[0064] For those skilled in the art, modifications can be made to the technical solutions described in the foregoing embodiments, and equivalent substitutions can be made to some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A Teflon high temperature cloth coating machine capable of improving coating range, comprising a frame (1), a coating roller (2) and a coating motor (3); the coating roller (2) is arranged between the left and right frames (1) and is driven by the coating motor (3). characterized in that It also comprises: an extrusion mechanism (4) arranged between the left and right frames (1) and above the coating roller (2); the extrusion mechanism (4) comprises: an extrusion roller (4-1) arranged between the left and right frames (1); a first moving block (4-2) which is two in number and is rotatably connected to the left and right ends of the extrusion roller (4-1) through shafts and bearings; a first sliding groove (4-3) is formed in the left and right frames (1), and the first moving block (4-2) is embedded in the first sliding groove (4-3); a rotating motor (4-4) fixed on the left first moving block (4-2) and connected to an external power source; the output shaft of the rotating motor (4-4) is connected to the left first moving block (4-2); a first limiting rod (4-5) which is two in number and movably inserted into the left first moving block (4-2) and fixed on the first sliding groove (4-3); an extrusion motor (4-6) fixed on the inner top plate of the right first sliding groove (4-3) and connected to an external power source; a first screw rod (4-7) connected to the output shaft of the extrusion motor (4-6) and threadedly rotatably inserted into the right first moving block (4-2); a limiting mechanism (5) arranged on the coating roller (2); a slurry mechanism (6) arranged on the front side of the coating roller (2).
2. The Teflon coating machine for high temperature cloth capable of improving coating range according to claim 1, wherein: The limiting mechanism (5) comprises: a second screw rod (5-1) which is two in number and arranged above the coating roller (2) in a left-right manner, and the threads of the two second screw rods (5-1) are oppositely arranged; the left second screw rod (5-1) is rotatably connected to the left frame (1) through a bearing, and the right second screw rod (5-1) is threadedly rotatably inserted into the right frame (1); an adjusting motor (5-2) fixed on the right frame (1) and connected to an external power source; the output shaft of the adjusting motor (5-2) is connected to the right second screw rod (5-1); an adjusting internal threaded tube (5-3) which is two in number and threadedly rotatably sleeved on the second screw rod (5-1); a rubber arc plate (5-6) which is two in number and abuttingly arranged on the coating roller (2) and fixed on the bottom of the adjusting internal threaded tube (5-3).
3. The Teflon coating machine for high temperature cloth capable of improving coating range according to claim 2, wherein: Two guide plates (5-7) are respectively fixed at the front end of the rubber arc plate (5-6), and the guide plates (5-7) are inclined from outside to inside from front to back.
4. The Teflon coating machine for high temperature cloth capable of improving coating range according to claim 2, wherein: The upper end of the left adjusting inner threaded pipe (5-3) is fixed with a connecting pipe (5-4), the connecting pipe (5-4) is movably inserted with an identification rod (5-5), and the left end of the identification rod (5-5) is fixed on the left rack (1).
5. The coating machine for Teflon high temperature fabric capable of improving coating range according to claim 1, wherein: The slurry mechanism (6) comprises: The slurry plate (6-1) is provided at the bottom of the coating roller; the slurry plate (6-1) is inclined from high to low from front to back; the guide plate (5-7) is arranged in the same angle as the slurry plate (6-1); Two second moving blocks (6-2) are provided, and the left and right sidewalls of the slurry plate (6-1) are fixed with the second moving blocks (6-2); the left and right racks (1) are both provided with second sliding grooves (6-3), and the second moving blocks (6-2) are slidably arranged in the second sliding grooves (6-3); the left second moving block (6-2) is movably inserted with a second limiting rod (6-4), and the second limiting rod (6-4) is fixed in the second sliding groove (6-3); The lifting motor (6-5) is fixed on the inner bottom plate of the second sliding groove (6-3), and the lifting motor (6-5) is connected with the external power supply; the output shaft of the lifting motor (6-5) is connected with a third screw rod (6-6), and the third screw rod (6-6) is screwed and arranged on the right second moving block (6-2).