Home textile fabric drying equipment and drying method
By setting up a partition mechanism and a stretching mechanism in the home textile fabric drying equipment, the partition drying and splicing parts of uneven thickness are realized, which solves the problems of uneven drying and fabric deformation, and improves the drying quality and finished product performance.
Patent Information
- Application Number
- CN202510634314.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2045-05-16
AI Technical Summary
During the drying process of home textile fabrics, uneven thickness fabrics can easily lead to insufficient drying in thick areas or excessive drying in thin areas. Excessive drying will cause the fabric fibers to lose the necessary moisture, become too dry and stiff, affecting the final feel, and may cause the fabric size to shrink, curl or narrow the width, affecting subsequent processing or finished product quality.
A home textile fabric drying equipment is designed. By setting up a partition mechanism, the drying is divided into thick material parts and thin material parts, and hot air of different temperatures is transported to each zone through the air supply mechanism. At the same time, the splicing fabric is stretched through the stretching mechanism, and hot air is transported to the splicing part through the air guide assembly to ensure uniform drying.
Through the cooperation of partition drying and stretching mechanisms, the problem of uneven drying of uneven thickness and thickness during the drying process is solved, ensuring uniform drying of the fabric, avoiding excessive fiber drying and fabric deformation, and improving the drying quality and the performance of the finished product.
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Figure CN120141076A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fabric drying, and more specifically, the present invention relates to a home textile fabric drying device and a drying method. Background Art
[0002] Home textile fabrics refer to various fabric materials used for making household textiles, which are widely used in the home environment to provide decorative, practical and comfortable functions. Home textile fabrics cover natural fibers, chemical fibers and their blended fabrics, with a wide variety of types and complex processes, and can meet different home needs.
[0003] Currently, in the production process of home textile fabrics, it is usually necessary to wash the home textile fabrics after production, and after the washing is completed, it is necessary to first dehydrate the home textile fabrics to remove most of the water in the home textile fabrics, and then perform a drying process on the home textile fabrics to improve the drying efficiency. The commonly used drying method at present is usually to place the home textile fabrics in a drying room and convey hot air into the drying room to achieve the drying of the home textile fabrics.
[0004] However, in the production process of spliced fabrics (sofa covers: the contact surface of the seat cushion uses anti-stain thick canvas, and the backrest part uses thin linen fabric, which not only ensures easy cleaning but also improves breathability, and is suitable for frequently used furniture), pre-dehydration is required before drying. However, because the thickness of the spliced fabrics is uneven, it is easy to cause uneven humidity between the thick and thin positions. The thicker position has a higher humidity than the thinner position. At this time, during the drying process, it is easy to cause the thicker position not to be completely dried or the thinner position to be over-dried. If the drying of the thinner position is uneven, and for the splicing process, it is usually easy to contaminate the fabric with dust and other pollutants. Therefore, after splicing, it is necessary to perform cleaning, dehydration and drying operations. And over-drying will cause the fabric fibers to lose the necessary moisture, become too dry and stiff, lack softness, affect the final hand feeling, and over-drying will cause excessive stress inside the fibers, resulting in fabric size shrinkage, curling or width narrowing, affecting subsequent processing or finished product quality. Summary of the Invention
[0005] A home textile fabric drying device and a drying method provided by the present invention aim to solve the problem that during the drying process of home textile fabrics formed by splicing and having uneven thickness, it is easy to cause the thicker position not to be completely dried or the thinner position to be over-dried. If the drying of the thinner position is uneven, and over-drying will cause the fabric fibers to lose the necessary moisture, become too dry and stiff, lack softness, affect the final hand feeling, and over-drying will cause excessive stress inside the fibers, resulting in fabric size shrinkage, curling or width narrowing, affecting subsequent processing or finished product quality.
[0006] To achieve the above object, the present invention provides the following technical solution: A drying device for home textile fabrics, comprising: a drying chamber, in which a material placing mechanism is arranged. The material placing mechanism includes a material placing box, on which a material placing rack is slidably arranged. The material placing rack is used for placing the fabrics to be dried, and the fabrics to be dried include a thick material part, a thin material part and a splicing part; A first drying area and a second drying area are arranged in the material placing box. A partitioning mechanism is arranged on the material placing rack. The partitioning mechanism includes a partitioning member, which is installed on the material placing rack, and the material placing rack and the partitioning member are used for partitioning the first drying area and the second drying area. The thick material part is located in the first drying area, and the splicing part is located in the second drying area; An air supply mechanism is arranged on the drying chamber. The air supply mechanism is used for conveying hot air into the first drying area and the second drying area, and the temperature of the hot air conveyed into the second drying area is lower than the temperature of the hot air conveyed into the first drying area; The partitioning member includes a connecting seat and two partitioning plates. Both of the two partitioning plates are slidably arranged in the connecting seat, and sealing gaskets are arranged at the bottoms of the two partitioning plates. A splicing part drying mechanism is arranged on the connecting seat. The splicing part drying mechanism includes an adjusting component, which is used for adjusting the distance between the two partitioning plates. The splicing part drying mechanism further includes a gas guiding component, which is used for conveying hot air between the two partitioning plates.
[0007] In a preferred embodiment, a clamping groove is formed on the material placing rack, and the partitioning member is slidably arranged in the clamping groove. The partitioning mechanism further includes a lifting component. The lifting component includes a side groove, which is formed on the material placing rack. A lead screw is rotatably installed in the side groove, and a sliding seat is slidably arranged in the side groove. The sliding seat is in threaded fit with the lead screw. A sliding plate is fixedly arranged on the sliding seat, and the sliding plate is slidably arranged in the material placing rack. A round shaft is fixedly arranged on the sliding plate, and a guiding groove is formed on the partitioning member. The round shaft is slidably arranged in the guiding groove.
[0008] In a preferred embodiment, the adjusting component includes two sliding shafts, which are fixedly connected to the corresponding partitioning plates, and both of the two sliding shafts are slidably arranged in the connecting seat. Elastic members are arranged on both of the two adjusting components.
[0009] In a preferred embodiment, a stretching mechanism is further arranged on the material placing rack. The stretching mechanism includes a driving member, which is installed on the material placing rack, and an output end of the driving member is installed with a sliding bar. The sliding bar is slidably arranged in the connecting seat. A plurality of vertical rods are fixedly arranged at the bottom of the sliding bar, and abutting members are arranged at the bottoms of the plurality of vertical rods. All of the plurality of abutting members are in movable abutment with the surface of the splicing part.
[0010] In a preferred embodiment, the stretching mechanism further includes a connecting component. The connecting component includes a connecting shaft, which is installed at the output end of the driving member. One end of the sliding bar is installed with a connecting bar, and the connecting bar is movably sleeved on the connecting shaft.
[0011] In a preferred embodiment, the air guiding assembly includes a fixed cylinder fixedly arranged on the connecting seat. A piston is slidably and sealingly connected inside the fixed cylinder. The piston is fixedly connected to the sliding bar. An air suction pipe and an air outlet pipe are installed on the fixed cylinder. One-way valves are arranged in both the air suction pipe and the air outlet pipe. The air outlet end of the air outlet pipe is installed with a connecting pipe, and a plurality of air guiding pipes are fixedly communicated with the connecting pipe. The air outlet ends of the plurality of air guiding pipes all extend between the two partition plates.
[0012] In a preferred embodiment, the plurality of air guiding pipes are all fixedly arranged on the connecting seat. A through hole is formed in one of the partition plates. The air outlet ends of the plurality of air guiding pipes extend between the two partition plates through the through hole. The distance between the adjacent vertical rods and the air guiding pipes is less than the movement stroke of the sliding bar.
[0013] In a preferred embodiment, an air supply pipe is installed at the air outlet end of the air supply mechanism. The air outlet end of the air supply pipe is communicated with the internal space of the material placing box. A moisture exhaust pipe is installed on the material placing box. The air inlet end of the moisture exhaust pipe is communicated with the internal space of the material placing box, and the air outlet end of the moisture exhaust pipe is communicated with a moisture exhaust assembly.
[0014] A drying method for a home textile fabric drying device includes the following steps: Step 1: Place the fabric to be dried on the material placing rack, use the partitioning mechanism to separate the thick part and the thin part of the fabric, then push the material placing rack into the material placing box, and divide the internal space of the material placing box into two parts, namely a first drying area and a second drying area, through the material placing rack and the partitioning mechanism; Step 2: Convey hot air at different temperatures into the first drying area and the second drying area through the air supply mechanism, and perform drying treatment on the thick part and the thin part of the fabric to be dried respectively; Step 3: At the same time, through the stretching mechanism, stretch the fabric at the splicing part, and convey hot air between the two partition plates through the air guiding assembly to perform drying treatment on the splicing part; Step 4: During the drying process, discharge the water vapor generated during the drying process through the moisture exhaust assembly.
[0015] The beneficial effects of the present invention are as follows: By setting the partitioning mechanism and adopting the method of drying in different zones, the present invention dries the thick part and the thin part of the fabric with different temperatures, solves the problem that during the drying process, due to the uneven thickness of the fabric to be dried, it is easy to cause the thick part not to be completely dried or the thin part to be over-dried, and ensures the drying quality of the fabric to be dried. Brief Description of the Drawings
[0016] Figure 1 It is a three-dimensional structure schematic diagram of the present invention.
[0017] Figure 2 It is a three-dimensional structure schematic diagram of the material placing mechanism of the present invention Figure 1。
[0018] Figure 3 Schematic three-dimensional structure of the material placing mechanism of the present invention Figure 2 。
[0019] Figure 4 Schematic front sectional view structure diagram of the material placing mechanism of the present invention.
[0020] Figure 5 Schematic three-dimensional structure of the material placing rack of the present invention Figure 1 。
[0021] Figure 6 Schematic top sectional view structure diagram of the material placing rack of the present invention.
[0022] Figure 7 is Figure 6 Enlarged view of the lifting component in
[0023] Figure 8 is Figure 5 Enlarged view of part A in
[0024] Figure 9 Schematic three-dimensional structure of the material placing rack of the present invention Figure 2 。
[0025] Figure 10 Schematic three-dimensional structure diagram of the air guiding component of the present invention.
[0026] Figure 11 Schematic three-dimensional structure diagram of the partition board and the adjusting component of the present invention.
[0027] Figure 12 Schematic side sectional view structure diagram of the material placing rack of the present invention.
[0028] Figure 13 Schematic three-dimensional structure diagram of the fabric to be dried of the present invention.
[0029] Figure 14 Flow chart of the drying method of the present invention.
[0030] Reference numerals are: 100, fabric to be dried; 101, thick material part; 102, thin material part; 103, splicing part; 1. Drying chamber; 2. Material placing mechanism; 21. Material placing box; 211. First drying area; 212. Second drying area; 22. Material placing rack; 3. Partition mechanism; 31. Partition member; 311. Connecting seat; 312. Partition board; 3121. Through hole; 32. Lifting assembly; 321. Side groove; 322. Lead screw; 323. Slide seat; 324. Slide plate; 325. Round shaft; 326. Guide groove; 33. Sealing gasket; 4. Air supply mechanism; 41. Air supply pipe; 5. Moisture exhaust pipe; 6. Drying mechanism for splicing joint; 61. Adjusting assembly; 611. Slide shaft; 612. Elastic member; 62. Air guiding assembly; 621. Fixed cylinder; 622. Piston; 623. Connecting pipe; 624. Air guiding pipe; 7. Tensile mechanism; 71. Driving member; 72. Connecting assembly; 721. Connecting shaft; 722. Connecting bar; 73. Sliding bar; 74. Vertical rod; 75. Abutting member. Detailed implementation manners
[0031] The present application will be further described in detail below with reference to the accompanying drawings. It is necessary to point out here that the following detailed implementation manners are only used to further illustrate the present application and cannot be understood as a limitation on the protection scope of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application according to the above application content.
[0032] Refer to the attached drawings of the specification Figures 1 to 13 , a home textile fabric drying device, including: a drying chamber 1, a material placing mechanism 2 is arranged in the drying chamber 1, the material placing mechanism 2 includes a material placing box 21, a material placing rack 22 is slidably arranged on the material placing box 21, the material placing rack 22 is used for placing the fabric 100 to be dried, and the fabric 100 to be dried includes a thick material part 101, a thin material part 102 and a splicing part 103; A first drying area 211 and a second drying area 212 are arranged in the material placing box 21, a partition mechanism 3 is arranged on the material placing rack 22, the partition mechanism 3 includes a partition member 31, the partition member 31 is installed on the material placing rack 22, and the material placing rack 22 and the partition member 31 are used for partitioning the first drying area 211 and the second drying area 212, the thick material part 101 is located in the first drying area 211, and the splicing part 103 is located in the second drying area 212; An air supply mechanism 4 is arranged on the drying chamber 1, the air supply mechanism 4 is used for conveying hot air into the first drying area 211 and the second drying area 212, and the temperature of the hot air conveyed into the second drying area 212 is lower than the temperature of the hot air conveyed into the first drying area 211.
[0033] It should be noted that the bottom of the material placing rack 22 is grid-shaped. Through this grid-shaped design, hot air can evenly pass through the material to be dried 100, avoiding uneven drying caused by poor air circulation. A sealing gasket 33 is provided at the bottom of the partition member 31. When the partition member 31 is pressed on the splicing part 103 of the material to be dried 100, the sealing gasket 33 can ensure its sealing, avoiding the problem that hot air of different temperatures mixes during the drying process and affects the drying. The partition member 31 can be set to be slidably arranged on the material placing rack 22 or detachably connected to the material placing rack 22, and the partition member 31 can be fixed to the material placing rack 22 by bolts.
[0034] Further, referring to the attached drawings of the specification Figures 2 to 4 The air outlet end of the air supply mechanism 4 is provided with an air supply pipe 41. The air outlet end of the air supply pipe 41 is communicated with the internal space of the material placing box 21. A moisture exhaust pipe 5 is installed on the material placing box 21. The air inlet end of the moisture exhaust pipe 5 is communicated with the internal space of the material placing box 21, and the air outlet end of the moisture exhaust pipe 5 is communicated with a moisture exhaust assembly.
[0035] It should be noted that the air supply mechanism 4 can be a blower with a heating device, and there can be two air supply mechanisms 4. One air supply mechanism 4 is used to heat hot air to 85°C and transport the hot air to the first drying area 211 through the material placing box 21 to heat and dry the thick material part 101 of the material to be dried 100. The other air supply mechanism 4 is used to heat hot air to 50°C. The temperature of the hot air can be selected according to the specific thickness of the fabric, and the hot air is transported to the second drying area 212 through the material placing box 21 to heat and dry the thin material part 102 of the material to be dried 100. The moisture exhaust assembly can be a moisture exhaust blower, and there can also be two moisture exhaust blowers. The two moisture exhaust blowers are respectively communicated with the first drying area 211 and the second drying area 212 to discharge the water vapor in the first drying area 211 and the second drying area 212 to maintain a dry environment.
[0036] The implementation scenario is specifically as follows: First, place the material to be dried 100 on the material placing rack 22, and press it on the splicing part 103 of the material to be dried 100 through the partition member 31. Then, fix the partition member 31 with bolts and ensure its sealing through the sealing gasket 33. Subsequently, slide the material placing rack 22 into the material placing box 21, and then transport hot air of different temperatures to the first drying area 211 and the second drying area 212 through the air supply mechanism 4 to achieve the drying of the thick material part 101 and the thin material part 102. By adopting the method of zone drying, the problem that the thick part of the material to be dried 100 is not completely dried or the thin part is over-dried during the drying process due to the uneven thickness of the material to be dried 100 is solved, ensuring the drying quality of the material to be dried 100.
[0037] Further, referring to the attached drawings of the specification Figures 5 to 8, a card slot is formed on the material placing rack 22, the partition member 31 is slidably arranged in the card slot, the partition mechanism 3 further includes a lifting assembly 32, the lifting assembly 32 includes a side slot 321, the side slot 321 is formed on the material placing rack 22, and a lead screw 322 is rotatably installed in the side slot 321, a sliding seat 323 is slidably arranged in the side slot 321, the sliding seat 323 is in threaded fit connection with the lead screw 322, a sliding plate 324 is fixedly arranged on the sliding seat 323, the sliding plate 324 is slidably arranged in the material placing rack 22, and a round shaft 325 is fixedly arranged on the sliding plate 324, a guiding slot 326 is formed on the partition member 31, and the round shaft 325 is slidably arranged in the guiding slot 326.
[0038] It should be noted that the guiding slot 326 is inclined. When placing the fabric 100 to be dried, the lead screw 322 can be rotated, so that through the threaded fit connection between the lead screw 322 and the sliding seat 323, the sliding seat 323 slides in the side slot 321 and drives the sliding plate 324 to slide, thereby enabling the sliding plate 324 to drive the round shaft 325 to slide in the guiding slot 326. Since the guiding slot 326 is inclined, the partition member 31 can be driven to slide, and then the fabric 100 to be dried can be placed on the material placing rack 22. After the fabric 100 to be dried is placed, the lead screw 322 is rotated in the reverse direction to drive the partition member 31 to move back to its original position and press and seal the splicing part 103 of the fabric 100 to be dried.
[0039] In the above technical solution, the thick part 101 and the thin part 102 of the fabric 100 to be dried are separated by the partition member 31, and the thick part 101 and the thin part 102 are heated and dried by hot air at different temperatures respectively to avoid the influence caused by the uneven thickness of the thick part 101 and the thin part 102. In addition to separating the thick part 101 by setting the partition member 31, an air curtain can also be set. By arranging a high-speed air outlet on the splicing part 103, a hot air curtain is formed by the air flow to separate the hot air in the drying area one 211 and the drying area two 212 and avoid the mixing of hot air. However, when separating the drying area one 211 and the drying area two 212 by the partition member 31, the partition member 31 needs to be closely attached to the splicing part 103 to avoid the mixing of hot air. If an air curtain is formed by setting a high-speed air outlet to separate the drying area one 211 and the drying area two 212, the air curtain also needs to be always at the splicing part 103. Both of the above two methods have the problem that it is difficult to dry the splicing part 103 of the fabric 100 to be dried. For this reason, the present invention also proposes a splicing part drying mechanism 6 for drying and treating the splicing part 103. Specifically, refer to the attached drawings of the specification Figures 9 to 11, the separator 31 includes a connecting seat 311 and two separator plates 312. The two separator plates 312 are both slidably arranged in the connecting seat 311, and sealing gaskets 33 are arranged at the bottoms of the two separator plates 312. A splicing part drying mechanism 6 is arranged on the connecting seat 311. The splicing part drying mechanism 6 includes an adjusting component 61 for adjusting the distance between the two separator plates 312 to make the two separator plates 312 contact and abut against the side edges of the splicing part 103. The splicing part drying mechanism 6 further includes an air guiding component 62 for conveying hot air between the two separator plates 312.
[0040] It should be noted that the air guiding component 62 can adopt a blower to convey part of the hot air in the drying area 211 between the two separator plates 312. By arranging the two separator plates 312 and making the two separator plates 312 contact and abut against the side edges of the splicing part 103, the surface of the splicing part 103 can be exposed. At this time, hot air is conveyed between the two separator plates 312 through the air guiding component 62 to realize hot air drying of the splicing part 103.
[0041] Further, referring to the attached drawings of the specification Figure 11 , the adjusting component 61 includes two sliding shafts 611. The two sliding shafts 611 are fixedly connected to the corresponding separator plates 312, and the two sliding shafts 611 are both slidably arranged in the connecting seat 311. Elastic members 612 are arranged on the two adjusting components 61.
[0042] It should be noted that the elastic member 612 is a spring. When placing the fabric 100 to be dried, by pulling the two sliding shafts 611, the two separator plates 312 can move away from each other, and the corresponding springs are squeezed through the elastic deformation of the springs. Then, the two sliding shafts 611 are released, and under the action of the springs, the two separator plates 312 can move closer to each other to reset and abut against the side edges of the splicing part 103, and the sealing effect is achieved through the sealing gaskets 33.
[0043] In the above technical solution, the thick part 101 and the thin part 102 of the fabric 100 to be dried are dried in a partitioned manner, and a splicing part drying mechanism 6 is provided to dry the splicing part 103. However, during this process, when the thick part 101 uses anti-fouling thick canvas and the thin part 102 uses linen thin fabric, the anti-fouling thick canvas is mostly cotton or blended fiber, usually treated with an anti-fouling coating, its fiber hygroscopicity is reduced, and the shrinkage rate is small. While the linen thin fabric is mostly natural linen fiber with strong hygroscopicity and a high shrinkage rate. At this time, due to the different shrinkage degrees of the two fabrics, asymmetric stress is likely to form at the splicing part. However, at this time, since the shrinkage force of the linen fabric is greater than that of the thick canvas, when the linen fabric shrinks violently during the drying process, a lateral pulling force will be exerted on the thick canvas through the stitches. And because the thick canvas has a large shrinkage resistance and cannot retract synchronously, the splicing part 103 is likely to be pulled and deformed after drying. For this reason, the present invention also proposes a stretching mechanism 7 for stretching the splicing part 103 during the drying process to relieve the deformation caused by the different shrinkage forces during drying. Specifically, referring to the attached Figure 12 The material placing rack 22 is also provided with a stretching mechanism 7. The stretching mechanism 7 includes a driving member 71. The driving member 71 is installed on the material placing rack 22, and a sliding bar 73 is installed at the output end of the driving member 71. The sliding bar 73 is slidably arranged in the connecting seat 311. A plurality of vertical rods 74 are fixedly arranged at the bottom of the sliding bar 73. The bottom ends of the plurality of vertical rods 74 are all provided with abutting members 75. The plurality of abutting members 75 are all movably abutted against the surface of the splicing part 103.
[0044] It should be noted that the abutting member 75 can be a rubber ball, and the driving member 71 can be components such as an electric telescopic rod and a cylinder. By driving the sliding bar 73 to reciprocate through the driving member 71, it drives the plurality of abutting members 75 to reciprocate on the surface of the splicing part 103 through the plurality of vertical rods 74. Due to the extrusion of the abutting member 75 against the surface of the splicing part 103 and the reciprocating movement on the surface of the splicing part 103, the surface tension of the splicing part 103 is changed, so that the deformation caused by the different shrinkage forces during drying can be relieved.
[0045] It should also be noted that in the above technical solution, hot air is extracted from the drying area 211 and conveyed between the two partition plates 312 to dry the splicing part 103. However, usually, the thickness of the splicing part 103 is slightly greater than that of the thick part 101. Therefore, the temperature of the hot air required for drying the splicing part 103 should be higher than the temperature of the hot air in the drying area 211. The pressure and movement of the abutting member 75 will produce a dynamic stretching effect on the fabric. This stretching can change the surface tension of the splicing part 103, making the hot air more likely to penetrate the splicing part 103 to improve its drying effect. Thus, there is no need to set up additional conveying equipment with a temperature higher than the hot air in the drying area 211. Just extracting the hot air in the drying area 211 can ensure the drying quality of the splicing part 103.
[0046] Further, referring to the accompanying drawings of the specification Figure 12 , the stretching mechanism 7 further includes a connecting component 72. The connecting component 72 includes a connecting shaft 721. The connecting shaft 721 is installed at the output end of the driving member 71. One end of the sliding bar 73 is provided with a connecting bar 722. The connecting bar 722 is movably sleeved on the connecting shaft 721.
[0047] It should be noted that by setting the connecting component 72, when placing the fabric 100 to be dried, the driving separator 31 slides, so that the connecting bar 722 can slide out of the connecting shaft 721. When the driving separator 31 resets, the connecting bar 722 can be sleeved on the connecting shaft 721, so that the sliding between the connecting component 72 and the separator 31 does not affect each other.
[0048] Further, referring to the accompanying drawings of the specification Figure 10 , the air guiding component 62 includes a fixed cylinder 621. The fixed cylinder 621 is fixedly arranged on the connecting seat 311. A piston 622 is slidably and sealingly connected in the fixed cylinder 621. The piston 622 is fixedly connected to the sliding bar 73. An air extraction pipe and an air outlet pipe are installed on the fixed cylinder 621. One-way valves are arranged in both the air extraction pipe and the air outlet pipe. The air outlet end of the air outlet pipe is provided with a connecting pipe 623. A plurality of air guiding pipes 624 are fixedly communicated with the connecting pipe 623. The air outlet ends of the plurality of air guiding pipes 624 all extend between the two partition plates 312. The plurality of air guiding pipes 624 are all fixedly arranged on the connecting seat 311. A through hole 3121 is formed in one of the partition plates 312. The air outlet ends of the plurality of air guiding pipes 624 extend between the two partition plates 312 through the through hole 3121. The distance between the adjacent vertical rods 74 and the air guiding pipes 624 is less than the movement stroke of the sliding bar 73.
[0049] It should be noted that when drying the splicing part 103, the reciprocating movement of the sliding bar 73 can drive the piston 622 to reciprocate in the fixed cylinder 621. Since one-way valves are arranged in both the air extraction pipe and the air outlet pipe, hot air in the drying area one 211 can be extracted through the air extraction pipe during the reciprocating movement of the piston 622, and the hot air can be conveyed between the two partition plates 312 through the air outlet pipe, the connecting pipe 623 and the air guiding pipes 624 to dry the splicing part 103.
[0050] Referring to the accompanying drawings of the specification Figure 14 , a drying method for a home textile fabric drying device includes the following steps: Step 1: Place the fabric 100 to be dried on the material placing rack 22, use the separating mechanism 3 to separate the thick material part 101 from the thin material part 102, and then push the material placing rack 22 into the material placing box 21. The internal space of the material placing box 21 is divided into two parts, namely the drying area one 211 and the drying area two 212, by the material placing rack 22 and the separating mechanism 3; Step 2: Deliver hot air at different temperatures into drying zone 1 (211) and drying zone 2 (212) through the air supply mechanism 4 to dry the thick part (101) and the thin part (102) of the fabric to be dried (100) respectively; Step 3: Meanwhile, stretch the fabric of the splicing part (103) through the stretching mechanism 7, and deliver hot air between the two partition plates (312) through the air guiding component (62) to dry the splicing part (103); Step 4: While drying, discharge the water vapor generated during the drying process through the moisture exhaust component.
[0051] The above embodiments only represent several implementation manners of the present invention. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the patent of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention.
Claims
1. A home textile fabric drying device, characterized in that: include: A drying room (1), wherein a material placement mechanism (2) is arranged in the drying room (1), wherein the material placement mechanism (2) comprises a material placement box (21), wherein a material placement rack (22) is slidably arranged on the material placement box (21), wherein the material placement rack (22) is used to place the fabric (100) to be dried, wherein the fabric (100) to be dried comprises a thick material portion (101), a thin material portion (102), and a splicing portion (103); A drying zone 1 (211) and a drying zone 2 (212) are arranged in the material storage box (21); a partition mechanism (3) is arranged on the material storage rack (22); the partition mechanism (3) comprises a partition member (31); the partition member (31) is installed on the material storage rack (22); and the material storage rack (22) and the partition member (31) are used to separate the drying zone 1 (211) from the drying zone 2 (212); the thick material portion (101) is located in the drying zone 1 (211), and the splicing portion (103) is located in the drying zone 2 (212); The drying room (1) is provided with an air supply mechanism (4), and the air supply mechanism (4) is used to supply hot air to the drying area 1 (211) and the drying area 2 (212), and the temperature of the hot air supplied to the drying area 2 (212) is lower than the temperature of the hot air supplied to the drying area 1 (211); The partition (31) comprises a connection seat (311) and two partition plates (312), the two partition plates (312) are both slidably arranged in the connection seat (311), and the bottoms of the two partition plates (312) are both provided with sealing pads (33), and a joint drying mechanism (6) is provided on the connection seat (311), the joint drying mechanism (6) comprises an adjustment component (61), the adjustment component (61) is used to adjust the distance between the two partition plates (312), and the joint drying mechanism (6) further comprises an air guide component (62), the air guide component (62) is used to transport hot air between the two partition plates (312).
2. The home textile fabric drying device according to claim 1, characterized in that: The material rack (22) is provided with a slot, the partition (31) is slidably arranged in the slot, the partition mechanism (3) further comprises a lifting assembly (32), the lifting assembly (32) comprises a side slot (321), the side slot (321) is provided on the material rack (22), a screw rod (322) is rotatably installed in the side slot (321), a slide seat (323) is slidably arranged in the side slot (321), the slide seat (323) is threadedly connected to the screw rod (322), a slide plate (324) is fixedly arranged on the slide seat (323), the slide plate (324) is slidably arranged in the material rack (22), and a round shaft (325) is fixedly arranged on the slide plate (324), the partition (31) is provided with a guide slot (326), and the round shaft (325) is slidably arranged in the guide slot (326).
3. The home textile fabric drying device according to claim 2, characterized in that: The adjustment assembly (61) comprises two sliding shafts (611), the two sliding shafts (611) are fixedly connected to corresponding partition plates (312), and the two sliding shafts (611) are both slidably arranged in the connection seat (311), and the two adjustment assemblies (61) are both provided with elastic members (612).
4. The home textile fabric drying device according to claim 3, characterized in that: The material rack (22) is also provided with a stretching mechanism (7), the stretching mechanism (7) comprising a driving member (71), the driving member (71) being mounted on the material rack (22), and a sliding bar (73) being mounted on the output end of the driving member (71), the sliding bar (73) being slidably mounted in the connecting seat (311), a plurality of vertical rods (74) being fixedly mounted at the bottom of the sliding bar (73), abutting members (75) being disposed at the bottom ends of the plurality of vertical rods (74), and the plurality of abutting members (75) being movably abutted against the surface of the splicing portion (103).
5. The home textile fabric drying device according to claim 4, characterized in that: The stretching mechanism (7) further comprises a connecting assembly (72), wherein the connecting assembly (72) comprises a connecting shaft (721), wherein the connecting shaft (721) is mounted at the output end of the driving member (71), and a connecting bar (722) is mounted at one end of the sliding bar (73), wherein the connecting bar (722) is movably sleeved on the connecting shaft (721).
6. The home textile fabric drying device according to claim 5, characterized in that: The air guide assembly (62) comprises a fixed cylinder (621), the fixed cylinder (621) being fixedly arranged on the connecting seat (311), and a piston (622) being slidably and sealingly connected inside the fixed cylinder (621), the piston (622) being fixedly connected to the sliding bar (73), and an air suction pipe and an air outlet pipe being installed on the fixed cylinder (621), both of which are provided with a one-way valve, a connecting pipe (623) being installed at the air outlet end of the air outlet pipe, and a plurality of air guide pipes (624) being fixedly connected to the connecting pipe (623), and the air outlet ends of the plurality of air guide pipes (624) all extending between the two partition plates (312).
7. The home textile fabric drying device according to claim 6, characterized in that: The plurality of air guide tubes (624) are fixedly arranged on the connection seat (311), and a through hole (3121) is provided on one of the partition plates (312). The air outlet ends of the plurality of air guide tubes (624) extend between the two partition plates (312) through the through hole (3121), and the spacing between adjacent vertical rods (74) and the air guide tubes (624) is smaller than the movement stroke of the sliding bar (73).
8. The home textile fabric drying device according to claim 7, characterized in that: An air supply pipe (41) is installed at the air outlet end of the air supply mechanism (4), and the air outlet end of the air supply pipe (41) is connected to the internal space of the material storage box (21). A dehumidification pipe (5) is installed on the material storage box (21), and the air inlet end of the dehumidification pipe (5) is connected to the internal space of the material storage box (21), and the air outlet end of the dehumidification pipe (5) is connected to a dehumidification component.
9. A drying method for the home textile fabric drying device according to claim 8, characterized in that: The following steps are involved: Step 1: placing the fabric (100) to be dried on a material rack (22), and using a partition mechanism (3) to separate the thick material portion (101) from the thin material portion (102), and then pushing the material rack (22) into a material box (21), and dividing the internal space of the material box (21) into two parts, namely, a drying area 1 (211) and a drying area 2 (212), by means of the material rack (22) and the partition mechanism (3); Step 2: hot air of different temperatures is transported to the first drying area (211) and the second drying area (212) through the air supply mechanism (4) to dry the thick material part (101) and the thin material part (102) of the fabric (100) to be dried respectively; Step three, stretching the fabric of the joint portion (103) through the stretching mechanism (7) at the same time, and delivering hot air to between the two partition plates (312) through the air guide component (62) to dry the joint portion (103); Step 4: While drying, the water vapor generated during the drying process is discharged through the dehumidification component.
Citation Information
Patent Citations
Storage device for design template cards for textile and garment production
CN115808058A
A stoving box for fabric moisture regain detection
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CN214842108U
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CN218893849U
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JP2001000792A