Cloth anti-pilling machine structure
By introducing a structure in the fabric pelletizing machine that incorporates a grid-assisted support, a clamping mechanism for fixation, and a drive belt, the problem of fabric entanglement has been solved, enabling efficient fabric separation and removal, and improving production efficiency.
Patent Information
- Application Number
- CN202423092694.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-16
AI Technical Summary
In existing fabric pelletizing machines, the fabric is prone to tangling during rotation, making it difficult to separate and remove, resulting in low production efficiency and potential damage to the fabric.
A fabric pelletizing machine structure including a main component, a heating component, a bearing component, and a positioning component was designed. The structure uses a grid to assist in bearing and a clamping mechanism to fix the beginning and end of the fabric. The uniform rotation of the mesh cylinder is achieved by using a drive motor and a transmission belt. Combined with steam heating and positioning grooves to limit the movement, the fabric is prevented from tangling.
It effectively alleviates the problem of fabric entanglement inside the mesh cylinder, improves the efficiency of fabric separation and removal, reduces fabric damage, and increases production efficiency.
Smart Images

Figure CN223561897U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cloth shaking granulator technical field more specifically, it relates to a cloth shaking granulator structure. BACKGROUND
[0002] Cloth shaking granulator is a kind of professional textile equipment, it is directly contacted with cloth by high-temperature steam and the negative pressure suction effect, makes the granular texture of even fine on cloth surface, is widely used in textile, printing and dyeing industry, to promote cloth quality and added value, realizes the production goal of high efficiency and energy saving.
[0003] At present, the existing shaking granulator utilizes steam supply pipe to directly inject high-temperature steam into middle cylinder and penetrates to barrel main body to contact cloth, and fan group generates negative pressure at the top of equipment, attracts steam to penetrate cloth and discharges from fan group, this mode strengthens high-temperature shrinkage and winding knot granulation effect, and reduces steam consumption.
[0004] However, since cloth is directly placed in the internal processing of shaking granulator, in the rotating process, cloth can be wound mutually, if cloth is long, the wound cloth is not convenient to separate and disassemble, even can cause the damage of cloth, and it is inconvenient for staff to take out cloth from the internal shaking granulator, greatly reduces shaking efficiency. UTILITY MODEL CONTENTS
[0005] In view of the deficiencies in the prior art, the utility model aims at providing a cloth shaking granulator structure.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a cloth shaking granulator structure, including main body assembly, heating assembly installed on one side of main body assembly, bearing assembly installed in the inside of main body assembly and positioning assembly connected in the inside of main body assembly.
[0007] The main body assembly includes a box body and a feed inlet formed on one side of the box body, and the feed inlet is used for placing and taking out cloth.
[0008] The heating assembly includes a bracket installed on the bottom of the side wall of the box body and a gas supply pipe clamped in the inside of the bracket, and one end of the gas supply pipe is connected with the bottom of the side wall of the box body.
[0009] The bearing assembly includes a mesh cylinder rotatably connected in the inside of the box body, and the opening of the mesh cylinder is arranged towards the feed inlet.
[0010] The positioning assembly includes a fixed rod horizontally connected to the inner side wall of the mesh cylinder and a sleeve slidingly connected to the outer side wall of the fixed rod, and the outer side wall of the sleeve is symmetrically provided with two groups of clamping mechanisms for positioning cloth.
[0011] The present invention is further configured such that: a grid is inclinedly arranged inside the feed inlet, and a cover is installed on the top of the box.
[0012] By adopting the above technical solution, the grid is used to provide auxiliary support for the fabric, that is, to prevent the fabric from falling to the ground without support when it is taken out from inside the box.
[0013] The present invention is further configured such that: a valve is installed at the bottom of the side wall of the box, a pipe is connected to the end of the valve away from the box, and the end of the gas supply pipe away from the box is connected to the outer side wall of the pipe.
[0014] By adopting the above technical solution, the external gas supply equipment delivers steam through pipelines. The steam is provided with two outlets: when rapid heating is required inside the chamber, the valve is opened, and steam is supplied simultaneously through the pipeline and the gas supply pipe; when the temperature inside the chamber needs to be maintained but rapid heating is not required, the valve is closed, and only the gas supply pipe is kept open to supply steam.
[0015] The present invention is further configured such that: two rotating rods are rotatably connected inside the box body, and pulleys are connected to the outer side walls of the two rotating rods. A transmission belt is connected between the pulleys and the outer side wall of the mesh cylinder. A drive motor is installed on the side wall of the box body, and the output end of the drive motor is connected to the end of one of the rotating rods.
[0016] By adopting the above technical solution, the drive motor is used to drive one of the rotating rods to rotate. The rotating rod drives the mesh cylinder to rotate through the corresponding pulley and transmission belt. When the mesh cylinder rotates, it drives another transmission belt to rotate, causing the corresponding pulley and rotating rod to rotate, thereby ensuring that the force is uniform when the mesh cylinder rotates.
[0017] The present invention is further configured such that: both sets of clamping mechanisms include a fixed seat installed on the outer wall of the sleeve, and a swing plate is hinged inside the fixed seat.
[0018] The present invention is further configured such that: the inner wall of the swing plate is connected to a rubber pad, and the bottom of the rubber pad is provided with an arc-shaped portion.
[0019] The present invention is further configured such that: a rod is inserted through the side wall of the fixed seat; a spring is connected to the end of the fixed seat away from the swing plate; the spring is sleeved on the outer side wall of the corresponding rod; and a positioning groove is connected to the outer side wall of the swing plate.
[0020] By adopting the above technical scheme, when the clamping mechanism fixes the cloth head and tail, the cloth head and tail are stacked and placed under the swing plate, then the cloth head and tail is pressed on the outer wall of the sleeve through the swing of the swing plate, the swing plate angle is limited through the cooperation of the inserting rod and the positioning groove, and then the purpose of fixing the cloth is achieved, and the cloth rotates and shakes the particles in the net cylinder after the cloth head and tail is fixed, and the degree of twisting and winding of the cloth when rotating in the net cylinder is relieved.
[0021] In summary, the present application has at least one of the following beneficial technical effects:
[0022] (1) By setting the clamping mechanism, when the clamping mechanism fixes the cloth head and tail, the cloth head and tail are stacked and placed under the swing plate, then the cloth head and tail is pressed on the outer wall of the sleeve through the swing of the swing plate, the swing plate angle is limited through the cooperation of the inserting rod and the positioning groove, and then the purpose of fixing the cloth is achieved, and the cloth rotates and shakes the particles in the net cylinder after the cloth head and tail is fixed, and the degree of twisting and winding of the cloth when rotating in the net cylinder is relieved. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a whole structure schematic view of the cloth particle shaking machine structure of the utility model.
[0024] Figure 2 It is a rear view partial structure schematic view of the utility model.
[0025] Figure 3 It is a net cylinder and positioning assembly connecting structure schematic view in the utility model.
[0026] Figure 4 It is Figure 3 It is an A area enlarged structure schematic view in the utility model.
[0027] Explanation of reference signs: 1, main assembly; 11, box body; 12, cover body; 13, feeding port; 14, grating;
[0028] 2, heating assembly; 21, support; 22, gas supply pipe; 23, valve; 24, pipeline;
[0029] 3, bearing assembly; 31, net cylinder; 32, driving motor; 33, transmission belt; 34, belt pulley; 35, rotating rod;
[0030] 4, positioning assembly; 41, fixed rod; 42, sleeve; 43, clamping mechanism; 431, fixed seat; 432, swing plate; 433, inserting rod; 434, spring; 435, positioning groove. DETAILED DESCRIPTION
[0031] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The present application will be described in detail below with reference to the drawings and in combination with embodiments.
[0032] It should be noted that, unless otherwise indicated, all technical and scientific terms used herein have the same meaning as those commonly understood by one of ordinary skill in the art to which this application belongs.
[0033] See Figures 1-4 The utility model provides the following technical scheme:
[0034] Embodiment one, a cloth shaking granulator structure, including main part assembly 1, main part assembly 1 includes box 11 and the feed inlet 13 of being set up in the one side of box 11, the feed inlet 13 is used to place and take out cloth, the inside of feed inlet 13 is provided with grid 14 and is inclined, grid 14 is used to assist the load of cloth, that is to avoid the situation that cloth falls to the ground without support when taking out from the inside of box 11, the top of box 11 is installed with cover 12, and cover 12 closes the top of box 11.
[0035] The side of box 11 is installed with heating assembly 2, and heating assembly 2 is used to improve the temperature in the inside of box 11 to reach the temperature environment of cloth shaking granulation, and the specific structure of heating assembly 2 is as follows:
[0036] Heating assembly 2 includes the bracket 21 installed on the bottom of the side wall of box 11 and the gas supply pipe 22 clamped in the inside of bracket 21, one end of gas supply pipe 22 is communicated with the bottom of the side wall of box 11, the bottom of the side wall of box 11 is communicatedly installed with valve 23, one end of valve 23 away from box 11 is communicated with pipeline 24, one end of gas supply pipe 22 away from box 11 is communicated with the outside wall of pipeline 24, and the steam is transported through pipeline 24 by external gas supply equipment, the steam is provided with two gas outlets, when the inside of box 11 needs to be rapidly heated, valve 23 is opened, and the steam is supplied through pipeline 24 and gas supply pipe 22 simultaneously, when the inside of box 11 needs to maintain temperature but does not need to be rapidly heated, valve 23 is closed, and only gas supply pipe 22 can be supplied with gas.
[0037] The inside of box 11 is installed with bearing assembly 3, and bearing assembly 3 is used to support and rotate the shaking granulation of cloth, and the specific structure of bearing assembly 3 is as follows:
[0038] Bearing assembly 3 includes the net cylinder 31 rotationally connected to the inside of box 11, and the opening of net cylinder 31 is arranged to face feed inlet 13, when cloth needs to be shaken and processed, the staff loads the cloth into the inside of net cylinder 31 through feed inlet 13, then closes feed inlet 13 through door body, and shaking can be carried out, conversely, when the cloth is taken out, it can be taken out from feed inlet 13.
[0039] The inside of the box body 11 is rotatably connected with two rotating rods 35, the outer side wall of the two rotating rods 35 is connected with a belt pulley 34, the belt pulley 34 and the outer side wall of the net cylinder 31 are drivingly connected with a transmission belt 33, the side wall of the box body 11 is provided with a driving motor 32, the output end of the driving motor 32 is connected with the end of one of the rotating rods 35, the driving motor 32 is used for driving the rotation of one of the rotating rods 35, the rotating rod 35 drives the net cylinder 31 to rotate through the cooperation of the corresponding belt pulley 34 and the transmission belt 33, the net cylinder 31 drives the other transmission belt 33 to rotate when rotating, so as to drive the corresponding belt pulley 34 and the rotating rod 35 to rotate, thereby ensuring the uniform stress of the net cylinder 31 when rotating.
[0040] Specifically, the finished cloth is sent into the inside of the net cylinder 31 to rotate and shake, steam is introduced during the shaking process, heated to 80℃ for 10-15 minutes, then cooled to 30℃ to take out the cloth, the rotating speed is 10-30 revolutions per minute.
[0041] The inside of the net cylinder 31 is provided with a positioning assembly 4, before the cloth is put into the net cylinder 31, the head and tail of the cloth are first fixed by the positioning assembly 4, so as to relieve the degree of twisting and winding of the cloth when rotating in the net cylinder 31, the specific structure of the positioning assembly 4 is as follows:
[0042] The positioning assembly 4 includes a fixed rod 41 which is horizontally connected to the inner side wall of the net cylinder 31, and a sleeve 42 which is slidingly connected to the outer side wall of the fixed rod 41, the outer side wall of the sleeve 42 is symmetrically provided with two groups of clamping mechanisms 43 for positioning the cloth, before the cloth is put into the net cylinder 31, the worker first pulls out the sleeve 42 from the inside of the net cylinder 31, at the same time, the sleeve 42 is guided by the fixed rod 41, then the worker positions the head and tail of the cloth by the clamping mechanisms 43, and then pushes the cloth and the sleeve 42 into the inside of the net cylinder 31 for shaking.
[0043] The two groups of clamping mechanisms 43 each comprise a fixed seat 431 mounted to the outer sidewall of the sleeve 42, the inside of the fixed seat 431 is hingedly connected with a swing plate 432, the inner wall of the swing plate 432 is connected with a rubber pad, the bottom of the rubber pad is provided with an arc-shaped portion, the sidewall of the fixed seat 431 is provided with a plug rod 433 penetratingly arranged, the end of the fixed seat 431 away from the swing plate 432 is connected with a spring 434, the spring 434 is sleeved to the outer sidewall of the corresponding plug rod 433, the outer sidewall of the swing plate 432 is connected with a positioning groove 435, when the clamping mechanism 43 fixes the head and tail of the cloth, the staff only needs to pull the plug rod 433 out of the inside of the corresponding positioning groove 435, swing the swing plate 432 away from the sleeve 42, place the head and tail of the cloth stacked on the lower side of the swing plate 432, then press the head and tail of the cloth on the outer wall of the sleeve 42 through the swing of the swing plate 432, after the cloth is placed, the staff releases the plug rod 433, the force of the spring 434 drives the plug rod 433 to move towards the swing plate 432, so that the plug rod 433 is inserted into the inside of the positioning groove 435, thereby limiting the angle of the swing plate 432, and the purpose of fixing the cloth is achieved, and after the head and tail of the cloth are fixed, the cloth is rotated in the inside of the net cylinder 31, and the degree of twisting and winding of the cloth when rotating in the inside of the net cylinder 31 is relieved.
[0044] Obviously, the above-described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor should belong to the protection scope of the present application.
Claims
1. A structure of a cloth shaking machine, characterized by: The utility model provides a cloth drying device, which comprises a main body assembly (1), a heating assembly (2) installed on one side of the main body assembly (1), a bearing assembly (3) installed in the main body assembly (1) and a positioning assembly (4) connected to the inside of the main body assembly (1). The main body assembly (1) comprises a box body (11) and a feeding port (13) formed on one side of the box body (11), and the feeding port (13) is used for placing and taking out cloth. The heating assembly (2) comprises a support (21) installed on the bottom of the side wall of the box body (11) and a gas supply pipe (22) clamped in the support (21), and one end of the gas supply pipe (22) is connected with the bottom of the side wall of the box body (11). The bearing assembly (3) comprises a mesh cylinder (31) rotatably connected to the inside of the box body (11), and the opening of the mesh cylinder (31) is arranged towards the feeding port (13). The positioning assembly (4) comprises a fixed rod (41) horizontally connected to the inner side wall of the mesh cylinder (31) and a sleeve (42) slidably connected to the outer side wall of the fixed rod (41), and the outer side wall of the sleeve (42) is symmetrically provided with two sets of clamping mechanisms (43) for positioning cloth.
2. A fabric shaker structure according to claim 1, wherein: The inside of the feeding port (13) is provided with a grille (14) inclinedly, and the top of the box body (11) is provided with a cover (12).
3. A fabric shaker structure as claimed in claim 1, wherein: The bottom of the side wall of the box body (11) is provided with a valve (23) connected thereto, one end of the valve (23) away from the box body (11) is connected with a pipeline (24), and one end of the gas supply pipe (22) away from the box body (11) is connected with the outer side wall of the pipeline (24).
4. A fabric shaker structure as claimed in claim 1, wherein: The inside of the box body (11) is rotatably connected with two rotating rods (35), the outer side wall of each rotating rod (35) is connected with a belt pulley (34), the belt pulley (34) and the outer side wall of the mesh cylinder (31) are drivingly connected with a transmission belt (33), the side wall of the box body (11) is provided with a driving motor (32), and the output end of the driving motor (32) is connected with the end of one of the rotating rods (35).
5. A fabric shaker structure as claimed in claim 1, wherein: Each set of clamping mechanisms (43) comprises a fixed seat (431) installed on the outer side wall of the sleeve (42), and the inside of the fixed seat (431) is hingedly connected with an oscillating plate (432).
6. A fabric shaker structure as claimed in claim 5 wherein: The inner wall of the oscillating plate (432) is connected with a rubber pad, and the bottom of the rubber pad is provided with an arc-shaped part.
7. A fabric shaker structure as claimed in claim 6, wherein: The side wall of the fixed seat (431) is provided with an insertion rod (433) penetrating therethrough, one end of the fixed seat (431) away from the oscillating plate (432) is connected with a spring (434), the spring (434) is sleeved on the outer side wall of the corresponding insertion rod (433), and the outer side wall of the oscillating plate (432) is connected with a positioning groove (435).