Warm ginger fiber fabric preparation device and preparation process thereof
By designing a warm ginger fiber fabric preparation device, using aeration plates and suction pipes to remove impurities, and using water-squeezing liquid spray rollers and air-spray rollers to improve the impregnation efficiency, the problems of impurities on the fabric surface and the consumption of ginger components were solved, achieving an efficient and high-quality preparation process.
Patent Information
- Application Number
- CN202510764942.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2025-09-09
AI Technical Summary
During the preparation process of warm ginger fiber fabrics, impurities adhering to the surface of the fabric affect the impregnation efficiency and preparation quality. The ginger active ingredients in the impregnation solution are consumed quickly and may precipitate in reverse, affecting the impregnation efficiency.
A warm ginger fiber fabric preparation device is designed, which includes a de-impurity chamber and an impregnation chamber. An aeration plate is used to float impurities, and a sewage suction pipe is used to clean impurities. A water squeezing and spraying roller group and an air spraying roller group are used to improve the impregnation efficiency. The spraying roller continuously sprays high-concentration impregnation liquid. Combined with a drying roller group and a cooling roller group, water is squeezed and impregnation is achieved, and heat is recovered and heated to the impregnation liquid.
It improves the impregnation efficiency, prevents impurities from adhering, ensures the quality of the fabric, promotes the deep penetration of ginger active ingredients, reduces energy consumption, and improves the overall preparation effect.
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Figure CN120608382A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of textile technology, in particular to a warm ginger fiber fabric preparation device and a preparation process thereof. Background Art
[0002] The preparation of warm ginger fiber fabric is the process of combining the effective ingredients in ginger (or its extract) (mainly gingerol, zingiberene, zingerone and other substances with warming effect and health care function) with textile fibers, aiming to give the fabric the characteristics of warmth preservation, blood circulation promotion, antibacterial deodorization and the like. At present, warm ginger fiber fabric can be prepared by the dipping method, which is to soak the fabric in a finishing liquid containing ginger extract (aqueous solution or emulsion) and an appropriate amount of auxiliary agent (such as a cross-linking agent, a penetrant) for a certain period of time, and then roll dry, dry and bake. However, during the weaving process, impurities such as fluff will adhere to the surface of the fabric. During the dipping process, impurities will easily affect the contact between the dipping liquid and the fabric, affecting the impregnation efficiency of the fabric. Moreover, after dipping, the fabric will be out of the water during the process, and impurities will easily adhere to the fabric, affecting the quality of fabric preparation. During the dipping process, the effective ingredients in the dipping liquid around the fabric are continuously reduced, and the effective ingredients impregnated into the fabric may reversely precipitate, affecting the impregnation efficiency. Based on this, the present application proposes a warm ginger fiber fabric preparation device and a preparation process thereof. Summary of the Invention
[0003] The present invention provides a warm ginger fiber fabric preparation device and a preparation process thereof, which solves the problem proposed in the above background technology that impurities adhered to the fabric surface easily affect the impregnation efficiency and preparation quality; during the impregnation process, the ginger active ingredients in the impregnation liquid will be continuously consumed, and the components that have penetrated into the fiber may reversely precipitate.
[0004] The present invention provides the following technical solution: a warm ginger fiber fabric preparation device, comprising a device body, the inner cavity of the device body is provided with a partition plate, the partition plate divides the inner cavity of the device body into a debris removal chamber and an impregnation chamber, the bottom of the inner cavity of the device body is provided with an aeration plate, the top of the debris removal chamber is connected to a first sewage suction pipe through a first telescopic structure, and second sewage suction pipes are provided on both sides of the top of the impregnation chamber, the inner cavity of the impregnation chamber is provided with a water squeezing liquid spray roller group, and two adjacent water squeezing liquid spray roller groups are in a staggered state, the impregnation chamber is away from the top air spray roller group on the side of the debris removal chamber, and a water squeezing liquid spray roller group is provided below the air spray roller group.
[0005] Preferably, a feed roller group is provided at the top of the impurity removal chamber, and the feed roller group includes two feed rollers, and the two feed rollers are distributed up and down; a first guide roller is provided at the bottom of the impurity removal chamber.
[0006] Preferably, the liquid inlet ends of the first and second sewage suction pipes are both located below the liquid surface, the top of the partition plate is located above the liquid surface, and the bottom of the partition plate is located between the first guide roller and the feed roller.
[0007] Preferably, a second guide roller is provided on the bottom end of the impregnation chamber close to the impurity removal chamber and on the side close to the water squeezing and drying component, and the bottom of the first guide roller and the bottom of the second guide roller are at the same height.
[0008] Preferably, the water squeezing and spraying roller group includes two first water squeezing rollers arranged side by side on the left and right and two spraying rollers arranged side by side on the left and right. The spraying rollers are hollow structures, and water spray holes are evenly arranged on the inner side of the spraying rollers. The spraying rollers and the first water squeezing rollers are in an upper and lower distribution state.
[0009] Preferably, the air-spraying roller group includes two air-spraying rollers arranged in parallel on the left and right sides, the air-spraying rollers are hollow structures, and the bottom of the inner cavity of the air-spraying rollers is evenly provided with spray holes.
[0010] Preferably, a water squeezing and drying assembly is provided on the top of the impregnation chamber away from the impurity removal chamber, and the water squeezing and drying assembly is located on the side of the air spray roller group away from the impurity removal chamber. The water squeezing and drying assembly includes a heat-insulating shell connected to the device body, and the inner cavity of the heat-insulating shell is sequentially provided with a pre-drying roller group, a heating and drying roller group and a cooling roller group. The pre-drying roller group includes two second water squeezing rollers arranged in parallel up and down, the heating and drying roller group includes two heating rollers arranged in parallel up and down, and the cooling roller group includes two cooling rollers arranged in parallel up and down, and the heating roller and the cooling roller are both hollow structures.
[0011] Preferably, an air circulation heating unit is provided on one side of the device body, one end of the heating roller is connected to the exhaust end of the air circulation heating unit, and the other end of the heating roller is connected to the air inlet end of the air circulation heating unit; an air compressor is provided on one side of the device body, and the air inlet end of the spray roller group and the air inlet end of the aeration plate are both connected to the air outlet end of the air compressor; an impregnation liquid inlet pipe is provided at one end of the cooling roller, and the other end of the cooling roller is connected to the liquid inlet end of the spray roller through a connecting pipe.
[0012] A preparation process of warm ginger fiber fabric comprises the following steps:
[0013] S1. The impregnation liquid used for preparing the warm ginger fiber fabric is placed in the device body, and the first and second sewage suction pipes are both located below the liquid surface;
[0014] S2, using a feeding roller group, a water squeezing and spraying roller group, a pre-drying roller group, a heating and drying roller group and a cooling roller group to transport the fabric used for preparing the warm ginger fiber fabric. During the transportation of the fabric, bubbles ejected by the aeration plate cause impurities separated from the fabric to float up, and the impurities on the liquid surface are discharged through the first suction pipe and the second suction pipe;
[0015] S3. When the fabric moves in the impregnation chamber, the two first squeeze rollers arranged in parallel squeeze the fabric to squeeze out excess water in the fabric. After the fabric separates from the first squeeze rollers, the impregnation liquid sprayed by the spray roller penetrates into the fabric;
[0016] S4. After the impregnation is completed, the fabric passes through the air-jet roller group and enters the water-squeezing and drying component, where water is squeezed, heated and dried, and cooled to complete the preparation of the warm ginger fiber fabric. The impregnation liquid with recovered heat enters the liquid-jet roller through the connecting pipe.
[0017] Preferably, a warm ginger fiber fabric preparation process is applied to the warm ginger fiber fabric preparation device.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] 1. The warm ginger fiber fabric preparation device and preparation process thereof, by squeezing water while impregnating, allows fresh impregnation liquid to quickly fill the gaps in the fabric through the negative pressure effect, forming forced convection, improving the impregnation efficiency, and continuously spraying the impregnation liquid through the spray roller. The sprayed impregnation liquid has a higher concentration than the impregnation liquid in the impregnation chamber, so that the high-concentration liquid on the surface diffuses to the inside through the capillary effect, forming a concentration gradient from the outside to the inside, promoting deep penetration, and further improving the impregnation efficiency.
[0020] 2. This warm ginger fiber fabric preparation device and process utilizes an impregnation liquid to cool the dried warm ginger fiber fabric, recovering heat from the fabric. The heated impregnation liquid is then sprayed out via a liquid spray roller, which heats the impregnation liquid, increasing its fluidity and fabric impregnation efficiency. Aeration is employed to float impurities in the impregnation liquid and accelerate their separation from the fabric, facilitating impregnation. The airflow from the air spray roller blows away impurities, preventing them from adhering to the fabric and ensuring the quality of the warm ginger fiber fabric. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a front view of the structure of the present invention;
[0022] Figure 2 It is a schematic diagram of the back side of the structure of the present invention;
[0023] Figure 3 This is a schematic diagram of the internal structure of the present invention;
[0024] Figure 4 It is a schematic diagram of the structure of the present invention;
[0025] Figure 5 It is a cross-sectional schematic diagram of the heat-insulating shell structure of the present invention.
[0026] In the figure: 1. device body; 2. partition plate; 3. first telescopic structure; 4. first sewage suction pipe; 5. first sewage discharge pipe; 6. first drive structure; 7. drain valve; 8. second drive structure; 9. second sewage suction pipe; 10. distribution pipe; 11. air spray roller; 12. second squeezing roller; 13. air circulation heating unit; 14. insulation shell; 15. heating air duct; 16. fourth drive structure; 17. rotating shaft; 18. impregnation liquid inlet pipe; 19. hollow box; 20. fifth drive structure; 21. discharge pipe; 22. air compressor; 23. sewage suction pump; 24. second sewage discharge pipe; 25. aeration pipe; 26. aeration plate; 27. first guide roller; 28. feed roller; 29. first squeezing roller; 30. second guide roller; 31. liquid spray roller; 32. heating roller; 33. cooling roller; 34. reflective film. DETAILED DESCRIPTION
[0027] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0028] The present invention provides an embodiment: please refer to Figure 1-Figure 5 , a warm ginger fiber fabric preparation device, including a device body 1, the inner cavity of the device body 1 is provided with a partition plate 2, the partition plate 2 divides the inner cavity of the device body 1 into a de-impurity chamber and an impregnation chamber, and a feed roller group is provided at the top of the de-impurity chamber, the feed roller group includes two feed rollers 28, and the two feed rollers 28 are in an upper and lower distribution state, and a first driving structure 6 is provided on the device body 1, and the first driving structure 6 can drive the feed roller 28 to rotate. The first driving structure 6 can be the existing technology, and it only needs to be able to drive the feed roller 28 to rotate. The rotation speed can be set as needed and is not limited here; a first guide roller 27 is provided at the bottom end of the de-impurity chamber, the top of the partition plate 2 is located above the liquid level, and the bottom of the partition plate 2 is located between the first guide roller 27 and the feed roller 28. Through the setting of the partition plate 2, the partition plate 2 can intercept impurities detached from the fabric used for preparing the warm ginger fiber fabric.
[0029] An aeration plate 26 is provided at the bottom of the inner cavity of the device body 1, and an air compressor 22 is provided on one side of the device body 1. The air outlet end of the air compressor 22 is connected to the aeration plate 26 through an aeration pipe 25. A one-way valve is provided at one end of the aeration pipe 25. The air compressor 22 can compress the air when working and inject the compressed air into the inner cavity of the aeration plate 26 through the aeration pipe 25. The compressed air in the aeration plate 26 is discharged into the impurity removal chamber, so that the impurities in the impurity removal chamber float up. The impurities in the impurity removal chamber can be gathered at the top of the liquid surface, which is convenient for cleaning the impurities. In addition, aeration can accelerate the impregnation liquid to enter the gaps between the fabric fibers, thereby improving the impregnation efficiency.
[0030] The top of the impurity removal chamber is connected to the first sewage suction pipe 4 through the first telescopic structure 3. Preferably, the first telescopic structure 3 is arranged at the top of the partition plate 2. The operation of the first telescopic structure 3 can drive the first sewage suction pipe 4 to move in the impurity removal chamber. The first sewage suction pipe 4 is located below the liquid level. A sewage suction pump 23 is provided on one side of the device body 1. The liquid inlet end of the sewage suction pump 23 is connected to the first sewage suction pipe 4 through the first sewage discharge pipe 5. When the sewage suction pump 23 is working, impurities at the top of the liquid level in the impurity removal chamber can be discharged through the first sewage suction pipe 4 and the first sewage discharge pipe 5, thereby realizing the cleaning of impurities.
[0031] A second sewage suction pipe 9 is provided on both sides of the top of the immersion chamber. The second sewage suction pipe 9 is located below the liquid level. The second sewage suction pipe 9 is connected to the liquid inlet end of the sewage suction pump 23 through a second sewage discharge pipe 24. Impurities accumulated at the top of the liquid surface in the immersion chamber can be discharged through the second sewage suction pipe 9.
[0032] The inner cavity of the impregnation chamber is provided with several water squeezing and spraying roller groups, and the adjacent two water squeezing and spraying roller groups are in a staggered state. A second guide roller 30 is provided in the impregnation chamber, and the bottom of the first guide roller 27 and the bottom of the second guide roller 30 are at the same height. Through the setting of the second guide roller 30, the fabric can be guided so that the fabric can pass through all the water squeezing and spraying roller groups in turn, which is convenient for squeezing and impregnation of the fabric.
[0033] The water squeezing spray roller group includes two first water squeezing rollers 29 arranged in parallel on the left and right and two spray rollers 31 arranged in parallel on the left and right. The spray rollers 31 are fixedly connected to the device body 1. When the fabric passes between the two spray rollers 31, the fabric and the spray rollers 31 are in a state of clearance fit. The spray rollers 31 are hollow structures, and water spray holes are evenly arranged on the inner side of the spray rollers 31. The spray rollers 31 and the first water squeezing rollers 29 are in a state of upper and lower distribution. The first water squeezing rollers 29 are in a state of active connection with the device body 1. A second driving structure 8 is provided on the outside of the device body 1. The second driving structure 8 can drive the first water squeezing roller 29 to rotate. The second driving structure 8 is an existing technology and only needs to be able to drive the first water squeezing roller 29 to rotate. The rotation speed can be set as needed and is not limited here.
[0034] When the device is in use, the fabric first passes between the two first squeezing rollers 29. The first squeezing rollers 29 squeeze the fabric to squeeze out the free impregnation liquid between the fabrics. After the fabric is filled with water, it enters between the spray rollers 31. The spray rollers 31 spray the impregnation liquid onto the fabric to facilitate the impregnation liquid to fill the gaps in the fabric. The present application uses a method of squeezing water while impregnating, so that the fresh impregnation liquid quickly fills the gaps in the fabric through the negative pressure effect, forming forced convection, improving the impregnation efficiency, and continuously spraying the impregnation liquid through the spray rollers 31. The sprayed impregnation liquid has a higher concentration than the impregnation liquid in the impregnation chamber, so that the high-concentration liquid on the surface diffuses to the inside through the capillary effect, forming a concentration gradient from the outside to the inside, promoting deep penetration, and further improving the impregnation efficiency.
[0035] A spray roller group is provided at the top of the impregnation chamber away from the impurity removal chamber. The spray roller group is located above the liquid surface and includes two spray rollers 11 arranged side by side. The spray rollers 11 are hollow structures. The bottom of the inner cavity of the spray rollers 11 is evenly provided with spray holes. The air inlet end of the spray roller 11 is connected to the air outlet end of the air compressor 22 through the spray pipe. The compressed air generated by the air compressor 22 when working can enter the inner cavity of the spray roller 11 through the spray pipe. The compressed air in the spray roller 11 is sprayed onto the liquid surface through the spray holes. A water squeezing liquid spray roller group is provided below the spray roller group. With this arrangement, the fabric is in a vertical state between the spray roller group and a water squeezing liquid spray roller group. The airflow ejected by the spray roller 11 can blow away impurities on both sides of the fabric, preventing impurities from adhering to the fabric when the fabric is out of water, thereby ensuring the quality of the fabric.
[0036] Second guide rollers 30 are provided at the bottom of the impregnation chamber close to the impurity removal chamber and at the side close to the water squeezing and drying component.
[0037] A water squeezing and drying assembly is installed at the top of the impregnation chamber, away from the impurity removal chamber. This assembly is located on the side of the air roller assembly away from the impurity removal chamber. The assembly includes a heat-insulating housing 14 connected to the device body 1. The inner wall of the heat-insulating housing 14 is provided with a reflective film 34, which reflects heat and reduces heat loss. The material of the reflective film 34 can be selected according to needs and is not limited here.
[0038] The inner cavity of the insulation shell 14 is sequentially equipped with a pre-drying roller group, a heating and drying roller group, and a cooling roller group. The pre-drying roller group includes two second squeeze rollers 12 arranged in parallel, one above the other. The second squeeze rollers 12 are movably connected to the insulation shell 14. The insulation shell 14 is externally provided with a third drive structure that, when in operation, drives the second squeeze rollers 12 to rotate. This third drive structure is conventional and only needs to drive the second squeeze rollers 12 to rotate. The rotation speed can be set as needed and is not limited here. When the pre-drying roller group is in operation, it squeezes out excess impregnation liquid from between the fabrics, facilitating fabric drying.
[0039] The heating and drying roller assembly includes two heating rollers 32 arranged in parallel, one above the other. The heating rollers 32 are connected to the insulation housing 14 via a rotating shaft 17. The rotating shaft 17 is a hollow structure, with its inner cavity communicating with the inner cavity of the heating roller 32. One end of the rotating shaft 17 is fixedly connected to the heating roller 32. A fourth drive structure 16 is provided on the outside of the insulation housing 14, with the other end of the rotating shaft 17 connected to the fourth drive structure 16. The fourth drive structure 16 is publicly known and only needs to drive the rotating shaft 17 to rotate. The rotation speed of the fourth drive structure 16 can be set as needed and is not limited here. The central wall of the rotating shaft 17 is evenly provided with through-holes. The outer ring of the rotating shaft 17 is movably connected to a hollow box 19, which is fixedly connected to the insulation housing 14. The top of the hollow box 19 is provided with a heating air duct 15.
[0040] An air circulation heating unit 13 is installed on one side of the device body 1. The heating roller 32 is a hollow structure. One end of the inner cavity of the heating roller 32 is connected to the exhaust end of the air circulation heating unit 13 via a heating air duct 15. The other end of the heating roller 32 is connected to the air intake end of the air circulation heating unit 13. The air circulation heating unit 13 is conventional and meets the requirements of air circulation heating. The air heating temperature can be set as required and is not limited here. When the air circulation heating unit 13 is in operation, it circulates heated air within the heating roller 32. During the air circulation process, heat is exchanged with the fabric, thereby achieving fabric drying.
[0041] The cooling roller assembly includes two cooling rollers 33 arranged in parallel, one above the other. The cooling rollers 33 are hollow structures. A fifth drive structure 20 is provided on the exterior of the device body 1. The fifth drive structure 20 drives the cooling rollers 33 to rotate via another rotating shaft 17. The fifth drive structure 20 is conventional, and the rotation speed can be set as needed and is not limited here. The inner cavity of the other rotating shaft 17 is connected to the inner cavity of the cooling roller 33. Another hollow box 19 is movably mounted on the outer ring of the middle portion of the other rotating shaft 17. The other hollow box 19 is fixedly connected to the insulation shell 14. The top of the other hollow box 19 is provided with an impregnation liquid inlet pipe 18. The impregnation liquid used to impregnate the fabric enters the inner cavity of the cooling roller 33 through the impregnation liquid inlet pipe 18, the other hollow box 19, the through hole, and the other rotating shaft 17.
[0042] The other end of the cooling roller 33 is connected to the liquid inlet end of the spray roller 31 through a connecting pipe. The connecting pipe includes a discharge pipe 21 connected to the other end of the cooling roller 33 and a distribution pipe 10 connected to the liquid inlet end of the spray roller 31. The end of the discharge pipe 21 away from the cooling roller 33 is connected to the liquid inlet end of the distribution pipe 10. During the flow of the impregnation liquid in the cooling roller 33, the heat in the fabric can be recovered. The heated impregnation liquid is sprayed out through the spray roller 31. By heating the impregnation liquid, the fluidity of the impregnation liquid is improved, and the fabric impregnation efficiency is improved.
[0043] It can be seen from the above description that when in use, the present application utilizes the heat in the dry fabric to heat the impregnation liquid, thereby reducing energy consumption while increasing the fluidity of the impregnation liquid, thereby improving the fabric impregnation efficiency.
[0044] A drain valve 7 is provided on one side of the bottom end of the device body 1 to facilitate draining the liquid in the device body 1.
[0045] The electrical appliances involved in this application are all existing technologies. Those skilled in the art can select appropriate models according to their needs. No limitation or detailed description is made here. Those skilled in the art understand the working principles and connection methods of the electrical appliances involved in this application. Through these people, all the electrical appliances in this application are connected to their corresponding power supplies through wires, and according to actual conditions, appropriate controllers are selected to meet control requirements. For specific connections and control sequences, please refer to the description below. The electrical connections between the electrical components are completed in a sequential working order. The detailed connection methods are well known in the art. The following mainly introduces the working principles and processes, and no further explanation of electrical appliance control is given.
[0046] In summary: A process for preparing warm ginger fiber fabric comprises the following steps:
[0047] S1. The impregnation liquid used for preparing warm ginger fiber fabric is placed in the device body 1, and the first sewage suction pipe 4 and the second sewage suction pipe 9 are both located below the liquid surface;
[0048] S2, using the feeding roller group, the squeezing and spraying roller group, the pre-drying roller group, the heating and drying roller group and the cooling roller group to transport the fabric used for preparing the warm ginger fiber fabric. During the transportation of the fabric, the bubbles sprayed by the aeration plate 26 make the impurities separated from the fabric float up, and the impurities on the liquid surface are discharged through the first suction pipe 4 and the second suction pipe 9;
[0049] S3: When the fabric moves in the impregnation chamber, the two first squeezing rollers 29 arranged in parallel squeeze the fabric to squeeze out excess water in the fabric. After the fabric separates from the first squeezing rollers 29, the impregnation liquid sprayed by the spray roller 31 penetrates into the fabric.
[0050] S4. After the impregnation is completed, the fabric passes through the air-jet roller group and enters the water-squeezing and drying component, where water is squeezed, heated and dried, and cooled to complete the preparation of the warm ginger fiber fabric. The impregnation liquid with recovered heat enters the spray roller 31 through the connecting pipe.
[0051] The standard parts used in the present invention are all purchased from the market according to actual application requirements, and special-shaped parts can be customized according to the description in the specification and drawings. The specific connection method of each structure adopts conventional technical means such as mature bolt connection in the existing technology. The machinery, parts and equipment all adopt conventional models in the existing technology, which will not be described in detail here, and the materials of the various structural components of this application can be selected according to requirements, without limitation. The contents not described in detail in this specification belong to the existing technology known to professional and technical personnel in this field. Although the embodiments of the present invention have been shown and described, it can be understood by ordinary technicians in this field that various changes, modifications, replacements and modifications can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the attached claims and their equivalents.
Claims
1. A warm ginger fiber fabric preparation device, comprising a device body (1), characterized in that: The inner cavity of the device body (1) is provided with a partition plate (2), and the partition plate (2) divides the inner cavity of the device body (1) into a debris removal chamber and an immersion chamber. The bottom of the inner cavity of the device body (1) is provided with an aeration plate (26). The top of the debris removal chamber is connected to a first sewage suction pipe (4) through a first telescopic structure (3). Second sewage suction pipes (9) are provided on both sides of the top of the immersion chamber. The inner cavity of the immersion chamber is provided with a water squeezing liquid spraying roller group, and two adjacent water squeezing liquid spraying roller groups are in a staggered state. The immersion chamber is away from the top air spraying roller group on the side of the debris removal chamber, and a water squeezing liquid spraying roller group is provided below the air spraying roller group.
2. The warm ginger fiber fabric preparation device according to claim 1, characterized in that: A feeding roller group is provided at the top of the impurity removal chamber, and the feeding roller group includes two feeding rollers (28), and the two feeding rollers (28) are in an upper and lower distributed state; a first guide roller (27) is provided at the bottom of the impurity removal chamber.
3. The warm ginger fiber fabric preparation device according to claim 2, characterized in that: The liquid inlet end of the first sewage suction pipe (4) and the liquid inlet end of the second sewage suction pipe (9) are both located below the liquid surface, the top of the partition plate (2) is located above the liquid surface, and the bottom of the partition plate (2) is located between the first guide roller (27) and the feed roller (28).
4. The warm ginger fiber fabric preparation device according to claim 2, characterized in that: A second guide roller (30) is provided at the bottom end of the impregnation chamber close to the impurity removal chamber and the side close to the water squeezing and drying component. The bottom of the first guide roller (27) and the bottom of the second guide roller (30) are at the same height.
5. The warm ginger fiber fabric preparation device according to claim 2, characterized in that: The squeezing and spraying roller group comprises two first squeezing rollers (29) arranged side by side on the left and right, and two spraying rollers (31) arranged side by side on the left and right. The spraying rollers (31) are hollow structures. Water spray holes are evenly arranged on the inner sides of the spraying rollers (31). The spraying rollers (31) and the first squeezing rollers (29) are in an upper and lower distributed state.
6. The warm ginger fiber fabric preparation device according to claim 1, characterized in that: The air-spraying roller group comprises two air-spraying rollers (11) arranged in parallel on the left and right sides. The air-spraying rollers (11) are hollow structures, and the bottom of the inner cavity of the air-spraying rollers (11) is evenly provided with spray holes.
7. The warm ginger fiber fabric preparation device according to claim 5, characterized in that: A squeezing and drying assembly is provided at the top of the impregnation chamber on a side away from the impurity removal chamber. The squeezing and drying assembly is located on a side of the air-jet roller group away from the impurity removal chamber. The squeezing and drying assembly includes a heat-insulating shell (14) connected to the device body (1). The inner cavity of the heat-insulating shell (14) is sequentially provided with a pre-drying roller group, a heating and drying roller group, and a cooling roller group. The pre-drying roller group includes two second squeezing rollers (12) arranged in parallel up and down. The heating and drying roller group includes two heating rollers (32) arranged in parallel up and down. The cooling roller group includes two cooling rollers (33) arranged in parallel up and down. Both the heating roller (32) and the cooling roller (33) are hollow structures.
8. The warm ginger fiber fabric preparation device according to claim 7, characterized in that: An air circulation heating unit (13) is provided on one side of the device body (1), one end of the heating roller (32) is connected to the exhaust end of the air circulation heating unit (13), and the other end of the heating roller (32) is connected to the air inlet end of the air circulation heating unit (13); an air compressor (22) is provided on one side of the device body (1), and the air inlet end of the air spray roller group and the air inlet end of the aeration plate (26) are both connected to the air outlet end of the air compressor (22); an impregnation liquid inlet pipe (18) is provided on one end of the cooling roller (33), and the other end of the cooling roller (33) is connected to the liquid inlet end of the liquid spray roller (31) through a connecting pipe.
9. A process for preparing warm ginger fiber fabric, characterized in that: The following steps are involved: S1. The device body (1) is filled with an impregnation liquid for preparing warm ginger fiber fabrics, and the first sewage suction pipe (4) and the second sewage suction pipe (9) are both located below the liquid surface; S2, using a feeding roller group, a water squeezing and liquid spraying roller group, a pre-drying roller group, a heating and drying roller group and a cooling roller group to transport the fabric used for preparing the warm ginger fiber fabric. During the fabric transportation process, bubbles sprayed by the aeration plate (26) cause impurities separated from the fabric to float up, and the impurities on the liquid surface are discharged through the first sewage suction pipe (4) and the second sewage suction pipe (9); S3, when the fabric moves in the impregnation chamber, the two first squeezing rollers (29) arranged in parallel squeeze the fabric to squeeze out excess water in the fabric. After the fabric is separated from the first squeezing rollers (29), the impregnation liquid sprayed by the spray roller (31) penetrates into the fabric; S4. After the impregnation is completed, the fabric passes through the air-jet roller group and enters the water-squeezing and drying assembly, where water squeezing, heating and drying, and cooling operations are performed to complete the preparation of the warm ginger fiber fabric, and the impregnation liquid with recovered heat enters the liquid-jet roller (31) through the connecting pipe.
10. The process for preparing warm ginger fiber fabric according to claim 9, characterized in that: A warm ginger fiber fabric preparation process is applied to a warm ginger fiber fabric preparation device described in claim 8.