A cleaning device for polyester fabric processing
Patent Information
- Application Number
- CN202521407472.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-07
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-07-07
AI Technical Summary
[0004]现有技术中传统清洗方法物理去污力不足,且难以精准调控水温水位等关键参数,导致涤纶布清洁度不高,工艺稳定性差,影响产品质量,洗涤剂添加方式粗放,缺乏有效的自动混合机制,导致清洗剂无法均匀分散入清洗箱,局部浓度过高或过低,既浪费洗涤剂又影响整体清洗效果,为此,我们提出一种涤纶布加工用清洗装置
[0019]与现有技术相比,本实用新型的有益效果是:本涤纶布加工用清洗装置,具有以下好处:
Smart Images

Figure CN224647259U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of polyester fabric cleaning technology, specifically a cleaning device for polyester fabric processing. Background Technology
[0002] During the production of polyester fabric, the open processing environment causes a large amount of dirt to adhere to the newly produced polyester fabric. In addition, the polyester fabric generates static electricity, which causes polyester filaments to adhere to the surface of the fabric, affecting the quality of the polyester fabric. Therefore, after the polyester fabric is produced, it needs to be cleaned by a cleaning device.
[0003] Among the existing technologies, the patented announcement number CN217948504U discloses a cleaning device for polyester fabric processing, which includes a base plate. The top of the base plate is equipped with a cleaning device body and a pre-cleaning tank, the pre-cleaning tank being located on one side of the cleaning device body. A circulating water tank is located at the top of the base plate and on one side of the pre-cleaning tank. A heating tank is located on one side of the top of the cleaning device body. A first pump and a second pump are located at the bottom of the circulating water tank. A first pipe is located at the bottom of the first pump, and a filter ring is located at one end of the first pipe. A second pipe is located at the bottom of the second pump. This setup has a pre-cleaning function.
[0004] Existing traditional cleaning methods lack sufficient physical detergency and are difficult to precisely control key parameters such as water temperature and water level, resulting in low cleanliness of polyester fabric, poor process stability, and impact on product quality. The detergent addition method is crude and lacks an effective automatic mixing mechanism, which leads to the detergent not being evenly dispersed in the cleaning tank, resulting in local concentrations that are too high or too low, wasting detergent and affecting the overall cleaning effect. Therefore, we propose a cleaning device for polyester fabric processing. Utility Model Content
[0005] The technical problem to be solved by this utility model is to overcome the existing defects and provide a cleaning device for polyester fabric processing, which can significantly improve the cleanliness and process stability of polyester fabric, and can ensure that the cleaning agent can be evenly dispersed into the cleaning tank, thus effectively solving the problems in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a cleaning device for processing polyester fabric, comprising a cleaning tank, a conveying and guiding component, a cleaning component, a rinsing component, and a detergent adding component;
[0007] Cleaning tank: The upper part is equipped with a conveying and guiding component, a cleaning component, a rinsing component, and a detergent adding component;
[0008] Cleaning assembly: includes an ultrasonic vibrator, heating plate, cleaning wheels, gears, motor II, guide wheel, and water level and temperature detection device. Two ultrasonic vibrators are fixedly connected to the lower left and right sides of the inner side of the cleaning tank. Multiple heating plates are fixedly connected to the left and right sides of the inner side of the cleaning tank. Two cleaning wheels are rotatably connected to the lower middle part of the inner side of the cleaning tank. Gears are fixedly connected to the front ends of the cleaning wheels, and the two gears mesh with each other. Motor II is fixedly connected to the middle rear end of the cleaning tank, and the output shaft of motor II is fixedly connected to the cleaning wheels. Two guide wheels are rotatably connected to the left and right sides of the middle inner side of the cleaning tank. One guide wheel is rotatably connected to the left end of the inner side of the cleaning tank. The water level and temperature detection device is fixedly connected to the left side of the front end of the ultrasonic vibrator.
[0009] The cleaning tank serves as the main frame, with two ultrasonic vibrators fixed to its lower inner side. Multiple heating plates are installed on the left and right inner walls, and two meshing gear cleaning wheels are located on the lower middle side. One of the cleaning wheels is driven by a second motor. Three guide wheels are located in the middle inner side. Water level and temperature detection devices are installed at the front end of the ultrasonic vibrators. The ultrasonic vibrators generate a cavitation effect to remove dirt, and the heating plates increase the water temperature to enhance the cleaning effect. The second motor drives the cleaning wheels to rotate and rub the fabric. The water level and temperature detection devices monitor the cleaning environment parameters in real time, and the guide wheels ensure stable fabric tension. The water level and temperature detection devices enable precise control of water level and temperature during the cleaning process.
[0010] Furthermore, the conveying and guiding assembly includes a limiting frame, a sliding mounting block, a bidirectional threaded rod, a rotating roller, and a motor. Four limiting frames are fixedly connected to the four corners of the upper end of the cleaning tank. Two sliding mounting blocks are slidably connected to the inner side of each limiting frame. Two bidirectional threaded rods are rotatably connected to the inner sides of the two front limiting frames. The bidirectional threaded rods are threadedly connected to the two sliding mounting blocks. Rotating rollers are rotatably connected to the inner sides of the two corresponding front and rear sliding mounting blocks. A motor is fixedly connected to the left end of the lower front sliding mounting block. The output shaft of the motor is fixedly connected to one end of the rotating roller.
[0011] The washing box has four limit frames at the top corners, with two sliding mounting blocks slidably connected in each limit frame. Two bidirectional threaded rods are installed in the two front limit frames and threadedly connected to the sliding mounting blocks. Rotating rollers are installed between the corresponding front and rear sliding mounting blocks. Motor 1 drives the lower front rotating roller, rotating the bidirectional threaded rods to synchronously adjust the distance between the two sliding mounting blocks on the same side, thus changing the height of the rotating roller. Motor 1 drives the rotating rollers to actively convey the fabric, and the bidirectional threaded rods enable precise adjustment of the roller distance. The motor drive prevents fabric slippage, and the limit frames ensure vertical movement stability.
[0012] Furthermore, the rinsing assembly includes a filter box, a water storage tank, a delivery pipe, a mounting bracket, and a multi-way solenoid valve. The filter box is fixedly connected to the lower right rear end of the cleaning box, and the inlet of the filter box is connected to the cleaning box. The water storage tank is fixedly connected to the upper right rear end of the cleaning box, and the inlet of the water storage tank is connected to the outlet of the filter box through a connecting pipe. The mounting bracket is fixedly connected to the upper middle part of the cleaning box, and the multi-way solenoid valve is fixedly connected to the upper middle part of the mounting bracket. Multiple nozzles are installed at the lower outlet of the multi-way solenoid valve. The outlet of the water storage tank is connected to the inlet of the multi-way solenoid valve through a delivery pipe. Both the filter box and the water storage tank are equipped with water pumps.
[0013] A filter box is connected to the main body at the lower rear of the washing tank, and a water storage tank is connected to the filter box via a pipe at the upper side. A multi-way solenoid valve is installed on the mounting frame, and its inlet is connected to the water storage tank via a delivery pipe. Multiple nozzles are installed at the lower end. The filter box and the water storage tank have built-in water pumps. After the filter box filters the wastewater, the water pump delivers it to the water storage tank. The water pump in the water storage tank supplies water to the multi-way solenoid valve via a delivery pipe, and the nozzles rinse the fabric. The circulation system reduces resource waste. The multi-way solenoid valve enables directional rinsing. The dual water pump design ensures stable water pressure and removes detergent from the fabric.
[0014] Furthermore, the rinsing assembly also includes a mounting plate, a self-locking electric telescopic rod, a mounting block, a squeezing wheel, and a motor. Two mounting plates are fixedly connected to the rear of the front and rear sides of the upper end of the cleaning tank. A self-locking electric telescopic rod is fixedly connected to the upper end of each mounting plate, and a mounting block is fixedly connected to the upper end of each self-locking electric telescopic rod. A squeezing wheel is rotatably connected to the inner side of the two mounting plates, and a squeezing wheel is rotatably connected between the two mounting blocks. A motor is fixedly connected to the front end of the mounting block, and the output shaft of the motor is fixedly connected to one end of the squeezing wheel.
[0015] Two mounting plates are fixed to the upper rear of the washing tank, on which self-locking electric telescopic rods are installed to connect mounting blocks. A squeezing wheel is rotatably connected between the two mounting plates, and another squeezing wheel is rotatably connected between the two mounting blocks. The motor drives the squeezing wheel on the mounting block, and the self-locking electric telescopic rod adjusts the height of the upper squeezing wheel to cooperate with the lower fixed squeezing wheel to squeeze out the water. The motor drives the squeezing wheel to assist in conveying, and the electric telescopic rod precisely controls the squeezing force. The dual wheels work together to efficiently dehydrate the material. The motor drive prevents the fabric from getting stuck.
[0016] Furthermore, the detergent addition assembly includes a detergent storage tank, a water inlet pipe, an addition cylinder, stirring blades, a rotating shaft, and a rotating wheel blade. The addition cylinder is fixedly connected to the left rear end of the inner side of the cleaning tank. The rotating shaft is rotatably connected to the middle inner side of the addition cylinder. Stirring blades are provided at the lower outer side of the rotating shaft. Rotating wheel blades are fixedly connected to the upper outer side of the rotating shaft. A water inlet pipe is provided on the upper left side of the cleaning tank. One end of the water inlet pipe is connected to the upper end of the addition cylinder. Multiple circular through holes are opened at the lower part of the addition cylinder. The detergent storage tank is fixedly connected to the left rear end of the cleaning tank. The outlet of the detergent storage tank is connected to the addition cylinder through a pipe.
[0017] An additive cylinder is located at the rear end of the inner side of the cleaning tank, through which a rotating shaft passes. A stirring blade is installed at the lower end, and a rotating wheel blade is installed at the upper end. A water inlet pipe connects to the upper end of the additive cylinder, and multiple through holes are opened at the lower part. A detergent storage tank is connected to the additive cylinder through a pipe. Water flows through the water inlet pipe, impacting the rotating wheel blade and driving the rotating shaft to rotate. The stirring blade mixes the detergent. The mixture is evenly injected into the cleaning tank through the through holes. The hydraulic automatic stirring is energy-saving and environmentally friendly. The through hole design enables the detergent to be injected in a dispersed manner, and the linkage between the rotating wheel and the stirring blade improves the mixing efficiency.
[0018] Furthermore, it also includes polyester fabric, which first passes between the two rotating rollers on the left, then around the lower sides of the two guide rollers and between the two washing rollers, and finally passes between the two extrusion rollers and the two rotating rollers on the right. The polyester fabric's path is as follows: between the two rotating rollers on the left, around the two guide rollers and the two washing rollers on the lower side, and between the two extrusion rollers and the two rotating rollers on the right. The rotating rollers input and output the fabric, the guide rollers form a U-shaped path to extend the washing time, the washing rollers rub the fabric, and the extrusion rollers dehydrate and output it. The U-shaped path maximizes the washing and soaking time, and the end extrusion dehydration reduces drying energy consumption.
[0019] Compared with the prior art, the beneficial effects of this utility model are as follows: This cleaning device for polyester fabric processing has the following advantages:
[0020] 1. This cleaning device for polyester fabric processing uses an ultrasonic vibrator to decompose deep stains, and a rotating cleaning wheel to enhance physical cleaning power. It is equipped with water level and temperature sensors to regulate environmental parameters in real time. Wastewater is purified through a filter box and pumped into a storage tank, which greatly reduces water consumption. The nozzles are controlled by multiple solenoid valves to achieve directional rinsing, which significantly improves the cleanliness of polyester fabric and process stability.
[0021] 2. This cleaning device for polyester fabric processing uses the water inlet flow to impact the rotating wheel blades, automatically driving the stirring mechanism to mix the detergent. The through-hole design enables the detergent to be injected in a dispersed manner. The linkage between the rotating wheel and the stirring blades improves the mixing efficiency and ensures that the cleaning agent can be evenly dispersed into the cleaning tank. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the structure of this utility model;
[0023] Figure 2 This is a schematic diagram of the rear structure of this utility model;
[0024] Figure 3 This is a schematic diagram of the internal cross-sectional structure of this utility model.
[0025] In the diagram: 1. Cleaning tank; 2. Polyester cloth; 3. Conveying guide assembly; 31. Limiting frame; 32. Sliding mounting block; 33. Bidirectional threaded rod; 34. Rotating roller; 35. Motor I; 4. Cleaning assembly; 41. Ultrasonic vibrator; 42. Heating plate; 43. Cleaning wheel; 44. Gear; 45. Motor II; 46. Guide wheel; 47. Water level and temperature detection device; 5. Rinsing assembly; 51. Filter box; 52. Water storage tank; 53. Conveying pipe; 54. Mounting bracket; 55. Multi-way solenoid valve; 56. Mounting plate; 57. Self-locking electric telescopic rod; 58. Mounting block; 59. Extrusion wheel; 510. Motor III; 6. Detergent adding assembly; 61. Detergent storage tank; 62. Water inlet pipe; 63. Adding cylinder; 64. Stirring blade; 65. Rotating shaft; 66. Rotating wheel blade. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figure 1-3 This embodiment provides a technical solution: a cleaning device for processing polyester fabric, including a cleaning tank 1, a conveying and guiding component 3, a cleaning component 4, a rinsing component 5, and a detergent adding component 6;
[0028] Cleaning tank 1: The upper part is equipped with a conveying guide component 3, a cleaning component 4, a rinsing component 5, and a detergent adding component 6;
[0029] The conveying and guiding assembly 3 includes a limiting frame 31, a sliding mounting block 32, a bidirectional threaded rod 33, a rotating roller 34, and a motor 35. Four limiting frames 31 are fixedly connected to the four corners of the upper end of the cleaning tank 1. Two sliding mounting blocks 32 are slidably connected to the inner side of each limiting frame 31. Two bidirectional threaded rods 33 are rotatably connected to the inner side of the two front limiting frames 31. The bidirectional threaded rods 33 are threadedly connected to the two sliding mounting blocks 32. Rotating rollers 34 are rotatably connected to the inner side of the two corresponding front and rear sliding mounting blocks 32. A motor 35 is fixedly connected to the left end of the lower front sliding mounting block 32. The output shaft of the motor 35 is fixedly connected to one end of the rotating roller 34.
[0030] The upper corners of the cleaning tank 1 are equipped with limiting frames 31, and two sliding mounting blocks 32 are slidably connected in each limiting frame 31. Two bidirectional threaded rods 33 are installed in the two limiting frames 31 at the front end and are threadedly connected to the sliding mounting blocks 32. Rotating rollers 34 are installed between the corresponding sliding mounting blocks 32 at the front and rear. Motor 35 drives the rotating roller 34 at the lower front side, and the bidirectional threaded rods 33 rotate synchronously to adjust the distance between the two sliding mounting blocks 32 on the same side, thereby changing the height of the rotating roller 34. Motor 35 drives the rotating roller 34 to actively convey the fabric, and the bidirectional threaded rods 33 realize precise adjustment of the roller distance. The motor drive prevents the fabric from slipping. The limiting frames 31 ensure the stability of vertical movement.
[0031] Cleaning component 4 includes an ultrasonic vibrator 41, a heating plate 42, a cleaning wheel 43, a gear 44, a second motor 45, a guide wheel 46, and a water level and temperature detection device 47. Two ultrasonic vibrators 41 are fixedly connected to the lower left and right sides of the inner side of the cleaning tank 1. Multiple heating plates 42 are fixedly connected to the left and right sides of the inner side of the cleaning tank 1. Two cleaning wheels 43 are rotatably connected to the lower middle part of the inner side of the cleaning tank 1. Gears 44 are fixedly connected to the front end of the cleaning wheels 43, and the two gears 44 mesh with each other. A second motor 45 is fixedly connected to the middle rear end of the cleaning tank 1. The output shaft of the second motor 45 is fixedly connected to the cleaning wheel 43. Two guide wheels 46 are rotatably connected to the left and right sides of the middle part of the inner side of the cleaning tank 1. A guide wheel 46 is rotatably connected to the left end of the inner side of the cleaning tank 1. A water level and temperature detection device 47 is fixedly connected to the left side of the front end of the ultrasonic vibrator 41.
[0032] The cleaning tank 1 serves as the main frame, with two ultrasonic vibrators 41 fixed to its lower inner side. Multiple heating plates 42 are installed on the left and right inner walls. A cleaning wheel 43 with two meshing gears 44 is set on the lower middle side, and one of the cleaning wheels 43 is driven by a motor 45. Three guide wheels 46 are set in the middle inner side. A water level and water temperature detection device 47 is installed at the front end of the inner side of the ultrasonic vibrator 41. The ultrasonic vibrator 41 generates a cavitation effect to remove dirt, and the heating plate 42 increases the water temperature to enhance the cleaning effect. The motor 45 drives the cleaning wheel 43 to squeeze and rotate to rub the fabric. The water level and water temperature detection device 47 monitors the cleaning environment parameters in real time, and the guide wheel 46 ensures the stability of the fabric tension. The water level and water temperature detection device 47 realizes precise control of water level and water temperature during the cleaning process.
[0033] The rinsing assembly 5 includes a filter box 51, a water storage tank 52, a delivery pipe 53, a mounting bracket 54, and a multi-way solenoid valve 55. The filter box 51 is fixedly connected to the lower right side of the rear end of the cleaning box 1. The inlet of the filter box 51 is connected to the cleaning box 1. The water storage tank 52 is fixedly connected to the upper right side of the rear end of the cleaning box 1. The inlet of the water storage tank 52 is connected to the outlet of the filter box 51 through a connecting pipe. The mounting bracket 54 is fixedly connected to the middle of the upper end of the cleaning box 1. The multi-way solenoid valve 55 is fixedly connected to the middle of the upper end of the mounting bracket 54. Multiple nozzles are installed at the lower outlet of the multi-way solenoid valve 55. The outlet of the water storage tank 52 is connected to the inlet of the multi-way solenoid valve 55 through the delivery pipe 53. Both the filter box 51 and the water storage tank 52 are equipped with water pumps.
[0034] A filter box 51 is connected to the lower rear of the cleaning tank 1, and a water storage tank 52 is connected to the filter box 51 via a pipe on the upper side. A multi-way solenoid valve 55 is installed on the mounting bracket 54, and its inlet is connected to the water storage tank 52 via a delivery pipe 53. Multiple nozzles are installed at the lower end. Water pumps are built into the filter box 51 and the water storage tank 52. After the filter box 51 filters the sewage, the water pump delivers it to the water storage tank 52. The water pump in the water storage tank 52 supplies water to the multi-way solenoid valve 55 via the delivery pipe 53. The nozzles rinse the fabric, and the circulation system reduces resource waste. The multi-way solenoid valve 55 enables directional rinsing. The dual water pump design ensures stable water pressure and removes detergent from the fabric.
[0035] The rinsing assembly 5 also includes a mounting plate 56, a self-locking electric telescopic rod 57, a mounting block 58, a squeezing wheel 59, and a motor 510. Two mounting plates 56 are fixedly connected to the rear of the front and rear sides of the upper end of the cleaning tank 1. A self-locking electric telescopic rod 57 is fixedly connected to the upper end of each mounting plate 56. A mounting block 58 is fixedly connected to the upper end of each self-locking electric telescopic rod 57. A squeezing wheel 59 is rotatably connected to the inner side of the two mounting plates 56. A squeezing wheel 59 is rotatably connected between the two mounting blocks 58. A motor 510 is fixedly connected to the front end of the mounting block 58. The output shaft of the motor 510 is fixedly connected to one end of the squeezing wheel 59.
[0036] Two mounting plates 56 are fixed to the upper rear of the washing tank 1, and self-locking electric telescopic rods 57 are mounted on them to connect to mounting blocks 58. A squeezing wheel 59 is rotatably connected between the two mounting plates 56, and another squeezing wheel 59 is rotatably connected between the two mounting blocks 58. Motor 3 510 drives the squeezing wheel 59 on the mounting block 58, and the self-locking electric telescopic rod 57 adjusts the height of the upper squeezing wheel 59 to cooperate with the lower fixed squeezing wheel 59 to squeeze out water. Motor 3 510 drives the squeezing wheel 59 to assist in conveying, and the electric telescopic rod 57 precisely controls the squeezing force. The two wheels work together to efficiently dehydrate the material. The motor drive prevents the fabric from getting stuck.
[0037] The detergent addition assembly 6 includes a detergent storage tank 61, a water inlet pipe 62, an addition cylinder 63, a stirring blade 64, a rotating shaft 65, and a rotating wheel blade 66. The addition cylinder 63 is fixedly connected to the left side of the inner rear end of the cleaning tank 1. The rotating shaft 65 is rotatably connected to the middle of the inner side of the addition cylinder 63. The stirring blade 64 is provided at the lower outer side of the rotating shaft 65. The rotating wheel blade 66 is fixedly connected to the upper outer side of the rotating shaft 65. The water inlet pipe 62 is provided on the upper left side of the cleaning tank 1. One end of the water inlet pipe 62 is connected to the upper end of the addition cylinder 63. The addition cylinder 63 has multiple circular through holes at its lower part. The detergent storage tank 61 is fixedly connected to the left side of the rear end of the cleaning tank 1. The outlet of the detergent storage tank 61 is connected to the addition cylinder 63 through a pipe.
[0038] The inner rear end of the cleaning tank 1 is equipped with an adding cylinder 63, through which a rotating shaft 65 passes. The lower end is equipped with a stirring blade 64, and the upper end is equipped with a rotating wheel blade 66. The water inlet pipe 62 connects to the upper end of the adding cylinder 63, and multiple through holes are opened in the lower part. The detergent storage tank 61 is connected to the adding cylinder 63 through a pipe. Water flows through the water inlet pipe 62, impacting the rotating wheel blade 66 and driving the rotating shaft 65 to rotate. The stirring blade 64 mixes the detergent. The mixed liquid is evenly seeped into the cleaning tank through the through holes. The hydraulic automatic stirring is energy-saving and environmentally friendly. The through hole design enables the detergent to be injected in a dispersed manner. The linkage between the rotating wheel and the stirring blade improves the mixing efficiency.
[0039] It also includes polyester fabric 2. Polyester fabric 2 first passes between the two rotating rollers 34 on the left, then passes under the two guide rollers 46 and between the two washing rollers 43, and finally passes between the two extrusion rollers 59 and the two rotating rollers 34 on the right. The path of polyester fabric 2 is as follows: between the two rotating rollers 34 on the left, passing between the two guide rollers 46 and the two washing rollers 43 on the lower side, and passing between the two extrusion rollers 59 and the two rotating rollers 34 on the right. The rotating rollers 34 input and output the fabric, the guide rollers 46 form a U-shaped path to extend the washing time, the washing rollers 43 rub the fabric and then dehydrate it through the extrusion rollers 59 before outputting it. The U-shaped path maximizes the washing and soaking time, and the end extrusion dehydration reduces the drying energy consumption.
[0040] The working principle of the polyester fabric cleaning device provided by this utility model is as follows: First, the polyester fabric 2 is inserted between the two rotating rollers 34 on the left side of the conveying guide assembly 3, then passes downwards between the two guide wheels 46 and the two cleaning wheels 43 inside the cleaning tank 1, and then upwards through the two squeezing rollers 59 and the two rotating rollers 34 on the right side of the rinsing assembly 5; after startup, the motor 35 of the conveying guide assembly 3 drives the rotating rollers 34 to convey the fabric, the water level and water temperature detection device 47 monitors environmental parameters in real time, the ultrasonic vibrator 41 generates a cavitation effect to remove dirt, and the heating plate 42 lifts the fabric. Water temperature, motor 45 drives cleaning wheel 43 to squeeze and rub; in detergent addition component 6, water flow from inlet pipe 62 impacts rotating wheel blade 66, driving rotating shaft 65, driving stirring blade 64 to mix detergent in detergent storage tank 61, the mixture seeps into cleaning tank from through hole in addition cylinder 63; after filtering sewage in filter box 51 of rinsing component 5, it is pumped to water storage tank 52, and then pumped to multi-way solenoid valve 55 for spray rinsing through delivery pipe 53; when the fabric passes through squeezing wheel 59, self-locking electric telescopic rod 57 adjusts the height of upper wheel, motor 3 510 drives double wheel squeezing and dewatering.
[0041] It is worth noting that, in the above embodiments, the input terminals of motor 35, ultrasonic vibrator 41, heating plate 42, motor 45, multi-way solenoid valve 55, self-locking electric telescopic rod 57, and motor 510 are electrically connected to the output terminal of an external power supply via an external PLC controller. The output terminal of the water level and water temperature detection device 47 is electrically connected to the external PLC controller. Motors 35, 45, and 510 are servo motors. The external PLC controller controls the operation of motors 35, ultrasonic vibrator 41, heating plate 42, 45, 55, self-locking electric telescopic rod 57, and 510 using methods commonly used in the prior art.
[0042] The above are merely embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A cleaning device for processing polyester fabric, characterized in that: It includes a cleaning tank (1), a conveying and guiding assembly (3), a cleaning assembly (4), a rinsing assembly (5), and a detergent adding assembly (6); Cleaning tank (1): The upper end is equipped with a conveying guide assembly (3), a cleaning assembly (4), a rinsing assembly (5) and a detergent adding assembly (6); Cleaning assembly (4): includes an ultrasonic vibrator (41), a heating plate (42), a cleaning wheel (43), a gear (44), a second motor (45), a guide wheel (46), and a water level and temperature detection device (47). Two ultrasonic vibrators (41) are fixedly connected to the lower inner side of the cleaning tank (1) on both the left and right sides. Multiple heating plates (42) are fixedly connected to the left and right inner sides of the cleaning tank (1). Two cleaning wheels (43) are rotatably connected to the lower inner middle of the cleaning tank (1). A gear (44) is fixedly connected to the front end of the cleaning tank (1), and the two gears (44) mesh with each other. A motor (45) is fixedly connected to the middle of the rear end of the cleaning tank (1). A cleaning wheel (43) is fixedly connected to the output shaft of the motor (45). Two guide wheels (46) are rotatably connected to the left and right sides of the middle inner side of the cleaning tank (1). A guide wheel (46) is rotatably connected to the left end of the inner side of the cleaning tank (1). A water level and water temperature detection device (47) is fixedly connected to the left side of the front end of the ultrasonic vibrator (41).
2. The cleaning device for polyester fabric processing according to claim 1, characterized in that: The conveying guide assembly (3) includes a limiting frame (31), a sliding mounting block (32), a bidirectional threaded rod (33), a rotating roller (34), and a motor (35). The upper corner of the cleaning box (1) is fixedly connected to four limiting frames (31). Each limiting frame (31) has two sliding mounting blocks (32) slidably connected to its inner side. The inner sides of the two limiting frames (31) at the front end are rotatably connected to two bidirectional threaded rods (33). The bidirectional threaded rods (33) are threadedly connected to the two sliding mounting blocks (32). The inner sides of the two sliding mounting blocks (32) at the front and rear are rotatably connected to the rotating rollers (34). The left end of the lower front sliding mounting block (32) is fixedly connected to a motor (35). The output shaft of the motor (35) is fixedly connected to one end of the rotating roller (34).
3. The cleaning device for polyester fabric processing according to claim 1, characterized in that: The rinsing assembly (5) includes a filter box (51), a water storage tank (52), a delivery pipe (53), a mounting bracket (54), and a multi-way solenoid valve (55). The filter box (51) is fixedly connected to the lower right side of the rear end of the cleaning box (1). The inlet of the filter box (51) is connected to the cleaning box (1). The water storage tank (52) is fixedly connected to the upper right side of the rear end of the cleaning box (1). The inlet of the water storage tank (52) is connected to the filter box (51) through a connecting pipe. The outlet of the cleaning tank (1) is connected to the water outlet. A mounting bracket (54) is fixedly connected to the upper middle part of the cleaning tank (1). A multi-way solenoid valve (55) is fixedly connected to the upper middle part of the mounting bracket (54). A multi-way solenoid valve (55) is installed at the lower outlet of the multi-way solenoid valve (55). The outlet of the water storage tank (52) is connected to the inlet of the multi-way solenoid valve (55) through the delivery pipe (53). A water pump is installed inside both the filter box (51) and the water storage tank (52).
4. The cleaning device for polyester fabric processing according to claim 1, characterized in that: The rinsing assembly (5) also includes a mounting plate (56), a self-locking electric telescopic rod (57), a mounting block (58), a squeezing wheel (59), and a motor (510). Two mounting plates (56) are fixedly connected to the rear of the front and rear sides of the upper end of the cleaning box (1). A self-locking electric telescopic rod (57) is fixedly connected to the upper end of each mounting plate (56). A mounting block (58) is fixedly connected to the upper end of each self-locking electric telescopic rod (57). A squeezing wheel (59) is rotatably connected to the inner side of the two mounting plates (56). A squeezing wheel (59) is rotatably connected between the two mounting blocks (58). A motor (510) is fixedly connected to the front end of the mounting block (58). The output shaft of the motor (510) is fixedly connected to one end of the squeezing wheel (59).
5. The cleaning device for polyester fabric processing according to claim 1, characterized in that: The detergent addition assembly (6) includes a detergent storage tank (61), a water inlet pipe (62), an addition cylinder (63), a stirring blade (64), a rotating shaft (65), and a rotating wheel blade (66). The addition cylinder (63) is fixedly connected to the left side of the inner rear end of the cleaning tank (1). The rotating shaft (65) is rotatably connected to the middle of the inner side of the addition cylinder (63). The stirring blade (64) is provided at the lower outer side of the rotating shaft (65). The rotating wheel blade (66) is fixedly connected to the upper outer side of the rotating shaft (65). The water inlet pipe (62) is provided on the upper left side of the cleaning tank (1). One end of the water inlet pipe (62) is connected to the upper end of the addition cylinder (63). The addition cylinder (63) has multiple circular through holes at the lower part. The detergent storage tank (61) is fixedly connected to the left side of the rear end of the cleaning tank (1). The outlet of the detergent storage tank (61) is connected to the addition cylinder (63) through a pipe.
6. The cleaning device for polyester fabric processing according to claim 1, characterized in that: It also includes a polyester fabric (2), which first passes between the two rotating rollers (34) on the left, then passes around the underside of the two guide wheels (46) and between the two cleaning wheels (43), and finally passes between the two extrusion wheels (59) and the two rotating rollers (34) on the right.
Citation Information
Patent Citations
Cleaning device for polyester fabric processing
CN217948504U