A circulating drying equipment for home textile fabric processing
By combining the pretreatment tank and the dehumidification mechanism, the problems of low efficiency, high noise and uneven humidity in home textile fabric drying equipment are solved, achieving efficient, quiet and pollution-free drying effect, ensuring fabric quality and production efficiency.
Patent Information
- Application Number
- CN202311148042.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-07
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-09-07
AI Technical Summary
Existing home textile fabric drying equipment suffers from low drying efficiency, serious noise pollution, and secondary pollution caused by uneven humidity.
The pre-treatment tank uses a pre-drying mechanism and a drying box uses a dehumidification mechanism. Combined with a heating plate and a dehumidification pipe, the moisture in the fabric is squeezed out by the lifting and fixed rotating shafts in the pre-treatment tank. The dehumidification pipes reduce the humidity and scrape off the water droplets. Combined with a water storage tank and a cooling pipe, the water flow is circulated for cooling.
It improves drying efficiency, avoids the efficiency reduction caused by excessive humidity, reduces noise pollution, ensures fabric flatness and drying quality, prevents secondary pollution, and improves production efficiency and workshop comfort.
Smart Images

Figure CN117213200B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to fabric drying technical field, especially to a kind of circulating drying equipment for home textile fabric processing. BACKGROUND
[0002] Home textile fabric is usually required to be bleached and cleaned during processing, and the fabric is in a wet state after such processing, which needs to be dried. The existing equipment directly dries the fabric by hot air flow, but the hot air flow drying consumes a lot of energy and causes serious noise pollution, and the comfort level of the workshop is poor. Some equipment using electric heating for drying often cannot effectively ensure the humidity in the drying oven, resulting in a large amount of water droplets accumulating on the top of the drying oven, which will directly cause secondary pollution once the water droplets fall, and high humidity will also affect the drying efficiency. SUMMARY
[0003] The present application aims to solve the problem of low drying efficiency in the prior art and provides a kind of circulating drying equipment for home textile fabric processing.
[0004] To achieve the above-mentioned purpose, the present application adopts the following technical scheme: a kind of circulating drying equipment for home textile fabric processing, including drying oven, the two side walls of the drying oven are provided with pretreatment groove, the inner wall of two pretreatment grooves is provided with inlet and outlet, the inner wall of the drying oven is fixed with a plurality of heating plates, the side wall of the drying oven is fixed with water storage tank, the inside of two pretreatment grooves is equipped with pre-water removal mechanism, the inside of the drying oven is equipped with dehumidification mechanism.
[0005] Further, the pre-water removal mechanism includes a fixed shaft rotatably connected to the inner wall of the pretreatment groove, the inner bottom of the pretreatment groove is connected to a lifting platform through a plurality of compression springs, and the inner wall of the lifting platform is rotatably connected to a lifting shaft.
[0006] Further, the dehumidification mechanism includes a dehumidification pipe rotatably connected to the side wall of the drying oven, the end of the dehumidification pipe is provided with a driving mechanism, the inner wall of the drying oven is fixed with a guide plate, the inner wall of the guide plate is fixed with a water scraping plate, and the upper end of the scraping plate is in contact with the bottom of the dehumidification pipe.
[0007] Further, the side wall of the drying oven is provided with a heat preservation cavity, the side wall of the heat preservation cavity is provided with a water inlet communicated with the inside of the guide plate, the side wall of the heat preservation cavity is provided with a drain pipe, and the inner wall of the drain pipe is provided with a pressure valve.
[0008] Further, the driving mechanism includes a plurality of fixed blocks fixed to the inner wall of the dehumidification pipe, the side wall of the plurality of fixed blocks is commonly fixed with a rotating rod, and the circumferential side wall of the rotating rod is fixed with a plurality of fan blades.
[0009] Further, the two ends of the dehumidification pipe are rotationally connected with a water outlet pipe and a transfer pipe respectively, the inside of the water storage tank is fixedly provided with a water pump, and the other end of the water outlet pipe penetrates through the side wall of the water storage tank and is connected with the water pump.
[0010] Further, the side wall of the drying box is fixedly provided with a transfer box, the side wall of the transfer box is rotationally connected with a cooling pipe penetrating through, the inner wall of the transfer box is rotationally connected with a transition roller, and the side wall of the transfer box is provided with a collecting groove.
[0011] Further, the side wall of the water storage tank is provided with a backflow pipe penetrating through, and the two ends of the cooling pipe are respectively in communication with the inside of the transfer pipe and the backflow pipe.
[0012] The present application has the following advantages:
[0013] 1. The residual water in the cloth is effectively squeezed out before drying, improving the drying efficiency in the drying box, and avoiding the increase of humidity in the drying box due to excessive water, thereby avoiding the decrease of drying efficiency caused by excessive humidity in the drying box, and improving the overall drying efficiency.
[0014] 2. The cloth is flattened after being removed from the drying box, so that the surface of the cloth is more flat, avoiding a large number of wrinkles caused by dehydration, ensuring the quality of the cloth after drying treatment, and using the static heat drying of the heating plate, the noise generated by the whole equipment operation is small, so that the comfort of the production workshop can be improved.
[0015] 3. The wet and hot air is condensed and adsorbed on the outer wall of the dehumidification pipe, reducing the humidity of the air, so that the evaporation of water in the subsequent cloth is not affected, ensuring the drying efficiency, and the dehumidification pipe is scraped and cleaned, always keeping clean, effectively avoiding the accumulation of water droplets and causing secondary pollution, ensuring the drying quality.
[0016] 4. The cloth with high surface temperature after drying can be effectively cooled, so that the cloth can be quickly collected and processed after drying, without waiting for cooling, improving the overall production efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a structure diagram of a circulating drying equipment for home textile fabric processing;
[0018] Figure 2 It is a back view diagram of a circulating drying equipment for home textile fabric processing;
[0019] Figure 3 It is a semi-sectional view of a circulating drying equipment for home textile fabric processing;
[0020] Figure 4 A structure diagram of the lifting rotating shaft part of the circulating drying equipment for home textile fabric processing is provided for the present application;
[0021] Figure 5 A pipeline connection diagram of the dehumidification pipe part of the circulating drying equipment for home textile fabric processing is provided for the present application;
[0022] Figure 6 A structure diagram of the dehumidification pipe part of the circulating drying equipment for home textile fabric processing is provided for the present application;
[0023] Figure 7 A sectional view of the dehumidification pipe part of the circulating drying equipment for home textile fabric processing is provided for the present application;
[0024] Figure 8 A side view of the dehumidification pipe part of the circulating drying equipment for home textile fabric processing is provided for the present application.
[0025] In the figure: 1 drying box, 2 pretreatment tank, 3 inlet and outlet, 4 heating plate, 5 fixed rotating shaft, 6 compression spring, 7 lifting platform, 8 lifting rotating shaft, 9 water storage tank, 10 dehumidification pipe, 11 water outlet pipe, 12 transfer box, 13 cooling pipe, 14 backflow pipe, 15 transition roller, 16 collection tank, 17 fixed block, 18 rotating rod, 19 fan blade, 20 guide plate, 21 water scraping plate, 22 heat preservation cavity, 23 transfer pipe, 24 water inlet, 25 water pump, 26 drain pipe. DETAILED DESCRIPTION
[0026] REFERENCE Figures 1-3 A circulating drying equipment for home textile fabric processing, comprising a drying box 1, both side walls of the drying box 1 are provided with a pretreatment tank 2, the inner walls of the two pretreatment tanks 2 are both provided with an inlet and outlet 3, the inner wall of the drying box 1 is fixed with a plurality of heating plates 4, the side wall of the drying box 1 is fixed with a water storage tank 9, the inside of each of the two pretreatment tanks 2 is provided with a pre-water removal mechanism, the inside of the drying box 1 is provided with a dehumidification mechanism, the water storage tank 9 is located at the position of the pretreatment tank 2 on one side, and the water flow in the pretreatment tank 2 can directly enter the water storage tank 9;
[0027] In actual drying treatment, the cloth enters the drying box 1 from the inlet and outlet 3 on one side of the water storage tank 9, and then leaves the drying box 1 from the inlet and outlet 3 on the other side, the cloth is effectively heated by the heating plates 4 during the time in the drying box 1, the heating plates 4 emit a large amount of heat, so that the temperature inside the drying box 1 is extremely high, and the water in the cloth is evaporated by heat absorption during the transfer process, thereby completing the drying treatment of the cloth.
[0028] REFERENCE Figures 3-4The pre-water removal mechanism comprises a fixed rotating shaft 5 rotatably connected with the inner wall of the pre-treatment tank 2, the inner bottom of the pre-treatment tank 2 is connected with a lifting platform 7 through a plurality of compression springs 6, the inner wall of the lifting platform 7 is rotatably connected with a lifting rotating shaft 8, under the elastic force of the compression springs 6, the lifting rotating shaft 8 abuts against the fixed rotating shaft 5, and the lifting rotating shaft 8 and the fixed rotating shaft 5 can effectively rotate, thereby helping the running of the cloth and reducing the wear of the cloth running.
[0029] Before the cloth enters the inside of the drying box 1, the cloth will pass through the pre-treatment tank 2, due to the existence of the compression springs 6, the cloth is clamped by the lifting rotating shaft 8 and the fixed rotating shaft 5 during the transfer process, but the lifting rotating shaft 8 and the fixed rotating shaft 5 can rotate, which does not affect the running of the cloth, but the cloth is always compressed to a certain extent, so that the residual water in the cloth can be effectively squeezed out, thereby reducing the water content of the cloth after entering the inside of the drying box 1, which can effectively improve the drying efficiency after entering the drying box 1, and can avoid the accumulation of humidity in the inside of the drying box 1 due to excessive water, thereby avoiding the reduction of the drying efficiency caused by the excessive environmental humidity in the inside of the drying box 1, and improving the overall drying efficiency.
[0030] When the cloth drying is finished and leaves the drying box 1, it will also pass through the pre-treatment tank 2 on the other side, and then be clamped and compressed by the lifting rotating shaft 8 and the fixed rotating shaft 5 on the other side, the cloth is transferred by compression, so that the cloth is flattened after moving out of the drying box 1, so that the cloth surface is more flat, avoiding a large number of wrinkles on the cloth due to dehydration, so that the quality of the cloth after drying treatment is guaranteed.
[0031] Referring to Figures 6-8 The dehumidification mechanism comprises a dehumidification pipe 10 rotatably connected with the side wall of the drying box 1, the end of the dehumidification pipe 10 is provided with a driving mechanism, the inner wall of the drying box 1 is fixedly provided with a guide plate 20, the inner wall of the guide plate 20 is fixedly provided with a water scraping plate 21, the upper end of the water scraping plate 21 abuts against the bottom of the dehumidification pipe 10, the guide plate 20 is in the shape of "U", and the inner bottom surface of the guide plate 20 is high in the middle and low at both ends, showing a sharp end structure, so that the water flow entering the inside of the guide plate 20 can flow to both ends of the guide plate 20.
[0032] The side wall of the drying box 1 is provided with a heat preservation cavity 22, the side wall of the heat preservation cavity 22 is provided with a water inlet 24 communicating with the inside of the guide plate 20, and the side wall of the heat preservation cavity 22 is provided with a drain pipe 26, the inner wall of the drain pipe 26 is provided with a pressure valve, the water flow in the inside of the guide plate 20 will directly enter the inside of the heat preservation cavity 22 through the water inlet 24 for storage, and when excessive, the water flow will exceed the valve value of the pressure valve in the inside of the drain pipe 26, so as to be discharged, thereby ensuring that the water amount in the inside of the heat preservation cavity 22 is certain.
[0033] The driving mechanism comprises a plurality of fixed blocks 17 fixed to the inner wall of the dehumidification pipe 10, the side walls of the plurality of fixed blocks 17 are collectively fixed with a rotating rod 18, the circumferential side wall of the rotating rod 18 is fixed with a plurality of fan blades 19, the fan blades 19 will be driven to rotate the rotating rod 18 under external impact, and then drive the dehumidification pipe 10 to rotate through the fixed blocks 17;
[0034] The dehumidification pipe 10 is rotationally connected with a water outlet pipe 11 and a transfer pipe 23 at two ends respectively, the inside of the water storage tank 9 is fixed with a water pump 25, the other end of the water outlet pipe 11 penetrates through the side wall of the water storage tank 9 and is connected with the water pump 25, the water pump 25 transports the water collected in the water storage tank 9 to the inside of the dehumidification pipe 10, and discharges the water through the transfer pipe 23, so that the heat on the surface of the dehumidification pipe 10 is continuously taken away by the water flow, thereby keeping the temperature on the surface of the dehumidification pipe 10 at a relatively low state;
[0035] During the drying process of the cloth, the overall air in the drying box 1 is continuously rising due to the continuous evaporation of the moisture in the cloth, so that the air is in a hot and humid state, therefore, when the hot and humid air meets the dehumidification pipe 10 with a relatively low surface temperature, the heat is transferred to the dehumidification pipe 10, thereby cooling and condensing the hot and humid air, and adsorbing on the outer wall of the dehumidification pipe 10, so as to reduce the humidity of the air, and the evaporation of moisture in the subsequent cloth is not affected, thereby ensuring the drying efficiency;
[0036] Since the water pump 25 continuously pumps the water flow, the water flow can effectively impact the fan blades 19, thereby driving the rotating rod 18 to rotate, and driving the dehumidification pipe 10 to rotate, since the dehumidification pipe 10 is continuously rotating, the surface of the dehumidification pipe 10 is continuously in contact with the water scraping plate 21, so that the water droplets on the surface of the dehumidification pipe 10 are continuously removed by the water scraping plate 21, and then enter the guide plate 20 along the water scraping plate 21, so that the dehumidification pipe 10 always remains clean, thereby avoiding the accumulation of water droplets and causing secondary pollution, and ensuring the drying quality;
[0037] And the water flow entering the guide plate 20 will flow into the heat preservation cavity 22 through the water inlet 24, and the condensed water flow still has a considerable amount of heat, thereby reducing the diffusion of heat in the drying box 1 to a certain extent, so that the heat in the drying box 1 remains effective for drying, and the loss of heat is reduced, thereby achieving the purpose of energy saving;
[0038] Referring to Figure 3 and Figure 5The side wall of the drying box 1 is fixed with a transfer box 12, the side wall of the transfer box 12 is rotatably connected with a cooling pipe 13, the inner wall of the transfer box 12 is rotatably connected with a transition roller 15, and the side wall of the transfer box 12 is provided with a collecting groove 16; the side wall of the water storage tank 9 is provided with a reflux pipe 14, the two ends of the cooling pipe 13 are respectively communicated with the transfer pipe 23 and the reflux pipe 14, the side wall of the cooling pipe 13, the transfer pipe 23 and the reflux pipe 14 are rotatably connected, and the side wall of the cooling pipe 13 is rotatably connected with the transfer box 12, so that the cooling pipe 13 can rotate, and the cloth is conveniently guided out;
[0039] After the cloth is dried and guided out, it will enter the transfer box 12 and be guided by the cooling pipe 13 and the transition roller 15, and finally be guided out and rolled up from the collecting groove 16, since the cooling pipe 13 is communicated with the transfer pipe 23 and the reflux pipe 14, therefore, the water flow in the water storage tank 9 is driven by the water pump 25, enters the dehumidification pipe 10 from the water outlet pipe 11, is guided into the cooling pipe 13 through the transfer pipe 23, and finally returns to the water storage tank 9 through the reflux pipe 14, realizing recycling;
[0040] Since the water flow passes through the cooling pipe 13 and only absorbs a small amount of heat, the overall temperature is still low, so that the cloth with high surface temperature after drying can be effectively cooled by heat absorption, so that the cloth can be quickly collected and processed after being dried and guided out, without waiting for it to cool down, improving the overall production efficiency, and since the water storage tank 9 is directly open, even if the water flow absorbs the heat of the cloth, the water temperature in the water storage tank 9 is still low, and the recycling is not affected.
Claims
1. A circulating drying apparatus for home textile fabric processing, comprising a drying box (1), characterized in that, The two side walls of the drying box (1) are provided with pretreatment grooves (2), the inner walls of the two pretreatment grooves (2) are provided with inlets and outlets (3), the inner wall of the drying box (1) is fixed with a plurality of heating plates (4), the side wall of the drying box (1) is fixed with a water storage tank (9), the interiors of the two pretreatment grooves (2) are provided with pre-water removal mechanisms, and the interior of the drying box (1) is provided with a dehumidification mechanism. The dehumidification mechanism comprises a dehumidification pipe (10) which is rotationally connected with the side wall of the drying box (1), the end of the dehumidification pipe (10) is provided with a driving mechanism, the inner wall of the drying box (1) is fixed with a guide plate (20), the inner wall of the guide plate (20) is fixed with a water scraping plate (21), the upper end of the water scraping plate (21) is in abutment with the bottom of the dehumidification pipe (10), the side wall of the drying box (1) is provided with a heat preservation cavity (22), the side wall of the heat preservation cavity (22) is provided with a water inlet (24) which is in communication with the interior of the guide plate (20), the side wall of the heat preservation cavity (22) is provided with a drain pipe (26) which is penetratingly arranged, and the inner wall of the drain pipe (26) is provided with a pressure valve, and the driving mechanism comprises a plurality of fixed blocks (17) which are fixed to the inner wall of the dehumidification pipe (10), the side wall of the plurality of fixed blocks (17) is commonly fixed with a rotating rod (18), and the circumferential side wall of the rotating rod (18) is fixed with a plurality of fan blades (19). The two ends of the dehumidification pipe (10) are rotationally connected with a water outlet pipe (11) and a transfer pipe (23) respectively, the interior of the water storage tank (9) is fixed with a water pump (25), and the other end of the water outlet pipe (11) is connected with the water pump (25) penetratingly through the side wall of the water storage tank (9).
2. The cyclic drying apparatus for home textile fabric processing according to claim 1, characterized in that, The pre-water removal mechanism comprises a fixed rotating shaft (5) which is rotationally connected with the inner wall of the pretreatment groove (2), the inner bottom of the pretreatment groove (2) is connected with a lifting platform (7) through a plurality of compression springs (6), and the inner wall of the lifting platform (7) is rotationally connected with a lifting rotating shaft (8).
3. The cyclic drying apparatus for home textile fabric processing according to claim 1, characterized in that, The side wall of the drying box (1) is fixed with a transfer box (12), the side wall of the transfer box (12) is rotationally connected with a cooling pipe (13), the inner wall of the transfer box (12) is rotationally connected with a transition roller (15), and the side wall of the transfer box (12) is provided with a collecting groove (16).
4. The cyclic drying apparatus for home textile fabric processing according to claim 3, characterized in that, The side wall of the water storage tank (9) is provided with a backflow pipe (14) which is penetratingly arranged, and the two ends of the cooling pipe (13) are respectively in communication with the interiors of the transfer pipe (23) and the backflow pipe (14).
Citation Information
Patent Citations
Circular drying equipment for cotton textile processing
CN113739546A