A smart fabric processing equipment
The design of intelligent fabric processing equipment has solved the problems of uneven fabric dyeing and resource waste, achieving uniform dyeing and efficient sampling and drying, thus improving production quality and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-02
- Publication Date
- 2026-03-06
AI Technical Summary
During the fabric dyeing process, uneven dyeing in some areas is caused by the stacking of fabric, which affects the production quality. At the same time, cutting and heat management lead to resource waste.
The intelligent fabric processing equipment includes a dyeing box, guide rail, moving block, rotating roller and smoothing component. The guide rail drives the fabric to move back and forth in the dyeing box. The threaded groove of the scraper and the liquid spraying component ensure that the fabric is spread out and dyed evenly. The hot air flow is managed by the baffle component, realizing sampling and drying operations without cutting.
This avoids uneven fabric dyeing, improves dyeing quality, reduces resource waste, enables sampling and drying without cutting, and improves production efficiency.
Smart Images

Figure CN117328231B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of fabric processing technology, and in particular to an intelligent fabric processing device. Background Technology
[0002] In the process of dyeing fabric, the fabric is first placed in a container of dye, and then the container is heated to make the dyeing more even. In order to ensure the accuracy of dyeing, some fabric is cut off, washed and dried for comparison, so as to ensure the accuracy of dyeing.
[0003] During the dyeing process, some fabrics will be folded and stacked together, and the stacked areas will block the dye from entering, resulting in uneven dyeing in some areas of the fabric, thus affecting the production quality of the fabric.
[0004] When comparison is needed, the fabric needs to be cut, which reduces the production of fabric. During cutting, the fabric is usually cut into multiple long strips of fixed size. When cutting to the notch, the notch area needs to be completely cut off to ensure that the cut fabric is a complete long strip. Heat will be released when it is taken out. If it is not up to standard, it needs to be heated again, which leads to waste of resources. Summary of the Invention
[0005] To overcome the drawback that uneven dyeing of some fabrics due to stacking them together can affect the production quality of the fabric, this invention provides an intelligent fabric processing device.
[0006] Technical solution: An intelligent fabric processing equipment includes a dyeing box, an inlet valve, and an outlet valve; the inlet valve is fixedly connected to the upper part of the dyeing box; the outlet valve is fixedly connected to the lower right side of the dyeing box; it also includes guide rails, moving blocks, a connecting plate, and rotating rollers; a guide rail is fixedly connected to each side inside the dyeing box; a moving block is slidably connected to each guide rail; all moving blocks are fixedly connected to the connecting plate; a rotating roller is installed on both sides of the connecting plate.
[0007] More preferably, it also includes a smoothing component, with the first connecting plate connected to a smoothing component for spreading the fabric; the smoothing component includes a second connecting plate, fixing blocks, scraper plates, torsion springs, protrusions, and blocking blocks; the second connecting plate is connected to the left side of the first connecting plate; the first connecting plate and the second connecting plate are each fixedly connected to two fixing blocks distributed front and rear; the two fixing blocks on the first connecting plate are rotatably connected to a scraper plate; the two fixing blocks on the water supply component are rotatably connected to another scraper plate; each of the two scraper plates has a threaded groove on its opposite sides, with the thread directions on the front and rear sides of the threaded groove being opposite; each side of the right scraper plate is fixedly connected to a torsion spring of the first connecting plate, and each side of the left scraper plate is fixedly connected to a torsion spring of the second connecting plate; each side of each scraper plate is fixedly connected to a protrusion; each fixing block is fixedly connected to a blocking block.
[0008] More preferably, it also includes a spraying assembly, with the dyeing box and connecting plate jointly connected to a spraying assembly for spraying dyeing liquid onto the fabric; the spraying assembly includes a baffle plate, a water pump, an inlet pipe, and an outlet pipe; a baffle plate is fixedly connected inside the dyeing box, and the baffle plate has several liquid inlets; a water pump is fixedly connected to a lower side of the connecting plate; the lower part of the water pump is connected to the inlet pipe, and the lower part of the inlet pipe is located in the area between the baffle plate and the dyeing box; the upper part of the water pump is connected to the outlet pipe; the connecting plate has a connecting port; the connecting port is connected to the outlet pipe.
[0009] More preferably, it also includes a baffle assembly, and the dyeing box is connected to a baffle assembly for preventing hot air from flowing out during dyeing; the baffle assembly includes a connecting block, a rotating box and a DD motor; a connecting block is fixedly connected to each of the two sides of the upper part of the dyeing box; all the connecting blocks are rotatably connected to the rotating box; each connecting block is equipped with a DD motor; the rotating parts of all the DD motors are fixedly connected to the rotating box.
[0010] More preferably, it also includes a water supply component; the left side of the connecting plate is connected to a water supply component for washing the fabric, the water supply component includes a water supply pipe and a regulating valve; the front of the dyeing box is connected to a water supply pipe; the left side of the water supply pipe is equipped with a regulating valve; the front left side of the connecting plate is provided with a connecting port, which is connected to the water supply pipe; the connecting plate is provided with a spray tank, which is connected to the water supply pipe, and the front of the rotating box is provided with a drain outlet.
[0011] More preferably, it also includes a drying assembly, with the dyeing box and connecting plate two connected together to a drying assembly for drying the sampled fabric; the drying assembly includes an air suction hood, an air supply pipe, an air pump, an air delivery pipe, a fabric clamping plate, a spring, and a connecting pipe; at least three air suction hoods are fixedly connected to the middle of the dyeing box; all air suction hoods are fixedly connected to the air supply pipe; an air pump is installed on the upper part of the dyeing box, and the air pump inlet is connected to the air supply pipe; the air pump outlet is connected to the air delivery pipe; the dyeing box is provided with a ventilation slot, and the air delivery pipe is connected to the ventilation slot; the connecting plate two is provided with a connecting slot, and the connecting slot is connected to the ventilation slot; a fabric clamping plate is slidably connected to each of the two sides inside the connecting plate two; several springs are fixedly connected between each fabric clamping plate and the connecting plate two, and the fabric clamping plate is provided with an air jet hole, which is connected to the connecting slot; a connecting pipe is connected to each of the two sides on the left side of the dyeing box; the rotating box is provided with an air inlet; the connecting pipe is connected to the air inlet.
[0012] More preferably, it also includes a baffle assembly, and the rotating box is connected to the baffle assembly for preventing the exhaust of hot air; the baffle assembly includes a hollow block, a baffle plate and a second spring; the hollow block is fixedly connected inside the rotating box and communicates with the liquid inlet hole; the baffle plate is slidably connected to the hollow block; the second spring is fixedly connected between the baffle plate and the hollow block.
[0013] More preferably, it also includes a water-absorbing component, with the air-absorbing hood connected to a water-absorbing component for absorbing moisture from the hot air; the water-absorbing component includes a rotating rod, fan blades, a sponge, and a hollow extrusion tube; each air-absorbing hood is rotatably connected to a rotating rod; at least four fan blades are fixedly attached to the upper part of the rotating rod; a sponge is fixedly attached to the lower part of the rotating rod; each air-absorbing hood is fixedly attached to a hollow extrusion tube, the hollow extrusion tube being cross-shaped; the hollow extrusion tube has a second liquid inlet hole, and the dyeing box is provided with a drain outlet; the second liquid inlet hole is connected to the drain outlet.
[0014] More preferably, the middle part of the hollow extrusion tube is higher than the outer part.
[0015] More preferably, it also includes a second DD motor and a temporary storage box; a second DD motor is installed on each side of the left side of the connecting plate; the rotating parts of all the second DD motors are fixedly connected to the connecting plate; a temporary storage box is fixedly connected to the right side of the dyeing box.
[0016] Compared with the prior art, the present invention has the following advantages:
[0017] The fabric soaked in dye is pulled out, and at the same time, the guide rail drives the moving block to move the connecting plate and the rotating roller left and right in the left half of the dyeing box, so that the pulled-out fabric falls into the left half and is soaked again. This repeated operation can prevent uneven dyeing caused by the fabric folding in some areas during dyeing.
[0018] During fabric conveying, the fabric comes into contact with the threaded grooves of the scraper. The bidirectional and reverse guiding action of the threaded grooves helps to stretch the fabric in both directions, keeping it flat and preventing large folds during soaking, thus improving the dyeing quality of the fabric.
[0019] The dye is sprayed onto the fabric through the connecting port, thus dyeing the fabric. When the dye is sprayed, the fabric is in an unfolded state, which allows the dye to be distributed more evenly in the fabric, thereby improving the dyeing quality of the fabric.
[0020] It enables sampling, washing, and drying operations without cutting the fabric, thus avoiding the need to cut the fabric. When using hot air drying, hot air enters the connecting pipe through the air inlet and then exits into the dyeing box from the connecting pipe. This avoids the situation where the fabric is dyed to a defective standard and needs to be dyed again, but the hot air is exhausted, resulting in low heat in the dyeing box and the need for reheating. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of the intelligent fabric processing equipment of the present invention;
[0022] Figure 2 This is a partial structural cross-sectional view of the first embodiment of the intelligent fabric processing equipment disclosed in this invention;
[0023] Figure 3 This is a partial structural cross-sectional view of the second type of intelligent fabric processing equipment disclosed in this invention;
[0024] Figure 4 This is a partial structural cross-sectional view of the smoothing component disclosed in the intelligent fabric processing equipment of the present invention;
[0025] Figure 5 for Figure 4 Enlarged view of point A;
[0026] Figure 6 This is a partial structural cross-sectional view of the liquid spraying assembly disclosed in the intelligent fabric processing equipment of the present invention;
[0027] Figure 7 This is a second partial structural cross-sectional view of the liquid spraying assembly disclosed in the intelligent fabric processing equipment of the present invention;
[0028] Figure 8 This is a partial structural cross-sectional view of the material blocking component disclosed in the intelligent fabric processing equipment of the present invention;
[0029] Figure 9 This is a cross-sectional view of a second partial structure of the material blocking component disclosed in the intelligent fabric processing equipment of the present invention;
[0030] Figure 10 This is a partial structural cross-sectional view of the water delivery component disclosed in the intelligent fabric processing equipment of the present invention;
[0031] Figure 11 for Figure 4 Enlarged view of point B;
[0032] Figure 12 This is a partial structural cross-sectional view of the connecting plate 2 and the DD motor 2 disclosed in the intelligent fabric processing equipment of the present invention;
[0033] Figure 13 This is a partial structural schematic diagram of the water-absorbing component disclosed in the intelligent fabric processing equipment of the present invention.
[0034] The above-mentioned attached drawings include the following reference numerals: 1-Dyeing box, 2-Inlet valve, 3-Drain valve, 4-Guide rail, 5-Moving block, 6-Connecting plate one, 7-Rotating roller, 101-Fixed block, 102-Scraper, 103-Torsion spring, 104-Protrusion, 105-Blocking block, 111-Baffle plate, 112-Water pump, 113-Inlet pipe, 114-Outlet pipe, 201-Connecting block, 202-Rotating box, 203-DD motor one, 211-Connecting plate two, 212-Water supply pipe, 213-Regulating valve one, 221-Suction hood, 222-Air supply pipe one, 223-Air pump, 224-Air delivery. 225-Fabricated plate, 226-Spring 1, 227-Connecting pipe, 231-Hollow block, 232-Baffle plate, 233-Spring 2, 311-Rotating rod, 312-Fan blade, 313-Sponge, 314-Hollow extrusion pipe, 321-DD motor 2, 322-Temporary storage box, 1a-Liquid inlet hole 1, 1b-Ventilation groove, 1c-Drain outlet, 6a-Connecting port, 6b-Infusion port, 102a-Threaded groove, 111a-Liquid inlet, 202a-Drain outlet, 202b-Air inlet, 211a-Spraying groove, 211b-Connecting groove, 225a-Air jet hole, 314a-Liquid inlet hole 2. Detailed Implementation
[0035] First, it should be noted that in different described embodiments, the same components are given the same reference numerals or the same component names. The disclosure contained throughout this specification can be applied semantically to the same components having the same reference numerals or the same component names. The location descriptions selected in the specification, such as upper, lower, lateral, etc., also refer to the directly described and illustrated figures and are semantically applied to the new location when the location changes.
[0036] Example 1
[0037] An intelligent fabric processing device, such as Figure 1-7 As shown, it includes a dyeing tank 1, an inlet valve 2, and an outlet valve 3; the inlet valve 2 is fixedly connected to the upper part of the dyeing tank 1; the outlet valve 3 is fixedly connected to the lower right side of the dyeing tank 1.
[0038] It also includes guide rails 4, moving blocks 5, connecting plates 6, and rotating rollers 7; a guide rail 4 is fixedly connected to the front and rear sides of the dyeing box 1; a moving block 5 is slidably connected to each guide rail 4; all moving blocks 5 are fixedly connected to the connecting plate 6; a rotating roller 7 is installed on the upper and lower sides of the connecting plate 6. The rotating roller 7 pushes the fabric into the dyeing box 1 by rotating. While the guide rails 4 drive the rotating roller 7 to move left and right through the moving blocks 5, the rotating roller 7 pulls out the fabric that is already in the dyeing box 1. The pulled-out fabric then falls back into the dyeing box 1 to continue dyeing, thereby avoiding uneven dyeing in some areas due to fabric folding after the fabric is put into the dyeing box 1.
[0039] It also includes a smoothing component, which is connected to a connecting plate 6. The smoothing component includes a connecting plate 211, a fixing block 101, a scraper 102, a torsion spring 103, a protrusion 104, and a blocking block 105. The connecting plate 211 is connected to the left side of the connecting plate 6. Two fixing blocks 101, distributed front and rear, are fixed to both the connecting plate 6 and the connecting plate 211. The two fixing blocks 101 on the connecting plate 6 are rotatably connected to a scraper 102. The two fixing blocks 101 on the water supply component are rotatably connected to another scraper 102. Each of the two scrapers 102 has a threaded groove 102a on its opposite side. The threads on the front and back sides are in opposite directions, so that when the fabric passes through the threaded groove 102a, it will be guided to move to both sides by the threaded groove 102a, so that the fabric is laid flat. The front and back sides of the right scraper 102 are each fixed with a torsion spring 103 to the connecting plate 16, and the front and back sides of the left scraper 102 are each fixed with a torsion spring 103 to the connecting plate 211. Each scraper 102 has a protrusion 104 bolted to its front and back sides. Each fixing block 101 has a blocking block 105 bolted to its fixing block 101. The blocking block 105 blocks the rotating scraper 102, so as to prevent the scraper 102 from being unable to perform the smoothing work.
[0040] It also includes a spraying assembly, which is connected to the dyeing box 1 and the connecting plate 6. The spraying assembly includes a baffle plate 111, a water pump 112, an inlet pipe 113, and an outlet pipe 114. A baffle plate 111 is fixedly connected to the rear side inside the dyeing box 1. The baffle plate 111 has several inlets 111a. Dye enters the area between the baffle plate 111 and the dyeing box 1 through the inlets 111a, while the baffle plate 111 prevents the fabric from entering the area between the baffle plate 111 and the dyeing box 1. A water pump 112 is fixedly connected to the lower rear part of the connecting plate 6. The lower part of the water pump 112 is connected to the inlet pipe 113. The lower part of the water inlet pipe 113 is located in the area between the baffle plate 111 and the dyeing box 1; the upper part of the water pump 112 is connected to the water outlet pipe 114; the connecting plate 6 is provided with a connecting port 6a; the connecting port 6a is connected to the water outlet pipe 114. The water pump 112 draws out the dye in the area between the baffle plate 111 and the dyeing box 1 through the water inlet pipe 113, and then sprays it into the connecting port 6a through the water outlet pipe 114, and then sprays it onto the fabric through the connecting port 6a, thereby dyeing the fabric. When spraying, the fabric is in an unfolded state, so that the dye can be more evenly distributed in the fabric, thereby improving the dyeing quality.
[0041] The specific work steps are as follows:
[0042] Before starting work, connect the external liquid delivery device to the inlet valve 2 and the collection device to the drain valve 3. Then, install the external heating device around the dyeing box 1 and start heating. Then, start working. During dyeing, push the fabric between the two rotating rollers 7. The guide rail 4 drives the moving block 5 to move the connecting plate 6 and the rotating roller 7 that clamps the fabric to the right half of the dyeing box 1. Then, rotate to push the fabric into the dyeing box 1 for dyeing. When the fabric is fed into the dyeing box 1, the guide rail 4 drives the moving block 5 to move the connecting plate 6 and the rotating roller 7 left and right in the right half of the dyeing box 1. The left and right movement process The fabric is continuously fed out, so that the fabric is stacked in the right half of the dyeing box 1. When the tail end of the fabric moves to the side of the rotating roller 7, the rotating roller 7 stops rotating to prevent the fabric from falling off the rotating roller 7. After the fabric has been soaked for a period of time, the rotating roller 7 reverses the conveying of the fabric, thereby pulling out the fabric soaked in dye. At the same time, the guide rail 4 drives the moving block 5 to move the connecting plate 6 and the rotating roller 7 left and right in the left half of the dyeing box 1, so that the pulled-out fabric falls into the left half and is soaked again. This repeated operation can prevent the fabric from folding in some areas during dyeing, which would cause uneven dyeing.
[0043] When the fabric is conveyed, it will come into contact with the threaded groove 102a of the scraper plate 102. At this time, the bidirectional and reverse guiding action of the threaded groove 102a will play a certain bidirectional stretching action on the fabric, so that the fabric is in a flat state. This will prevent the fabric from having a large number of folded areas during soaking, thereby improving the dyeing quality of the fabric. When the fabric falls from the rotating roller 7 to the other side of the dyeing box 1, the fabric will fold and pile up on the scraper plate 102 on the side where it fell. At this time, the fabric will stay on the scraper plate 102 on the side where it fell. So when the fabric falls on the scraper plate 102, the weight of the fabric will press down and cause the scraper plate 102 to flip downward, so that the fabric falls into the dyeing box 1. The protrusion 104 can prevent the scraper plate 102 from being driven upward by the fabric, which would prevent the scraper plate 102 from being unable to unfold the fabric.
[0044] During the fabric dyeing process, the dye enters the area between the baffle plate 111 and the dyeing tank 1 through the inlet 111a. The baffle plate 111 prevents the fabric from entering the area between the baffle plate 111 and the dyeing tank 1. At this time, the water pump 112 draws out the dye from the area between the baffle plate 111 and the dyeing tank 1 through the inlet pipe 113, and then sprays it into the connecting port 6a through the outlet pipe 114. The dye is then sprayed onto the fabric through the connecting port 6a, thereby dyeing the fabric. When the dye is sprayed, the fabric is in an unfolded state, which allows the dye to be distributed more evenly in the fabric. Because during the reciprocating movement and folding of the fabric, some areas of the fabric will be folded more times, which will result in uneven dyeing. Spraying the dye when the fabric is unfolded can prevent the dye from failing to soak the folded areas of the fabric, thereby improving the dyeing quality of the fabric.
[0045] Example 2
[0046] Based on Example 1, such as Figure 3-4 and Figure 8-12 As shown, it also includes a baffle assembly, and the dyeing box 1 is connected to the baffle assembly; the baffle assembly includes a connecting block 201, a rotating box 202 and a DD motor 203; a connecting block 201 is fixedly connected to the upper front side and the upper rear side of the dyeing box 1; all the connecting blocks 201 are rotatably connected to the rotating box 202; each connecting block 201 is equipped with a DD motor 203; the rotating parts of all the DD motors 203 are fixedly connected to the rotating box 202.
[0047] It also includes a water supply assembly; the left side of the connecting plate 6 is connected to the water supply assembly, which includes a water supply pipe 212 and a regulating valve 213; the front of the dyeing box 1 is connected to the water supply pipe 212; the left side of the water supply pipe 212 is equipped with the regulating valve 213; the front left side of the connecting plate 6 is provided with a connecting port 6a, which is connected to the water supply pipe 212; the connecting plate 211 is provided with a spray tank 211a, which is connected to the water supply pipe 212; and the lower front side of the rotating box 202 is provided with a drain outlet 202a.
[0048] It also includes a drying assembly. The dyeing box 1 and the connecting plate 211 are connected to the drying assembly. The drying assembly includes a suction hood 221, an air supply pipe 222, an air pump 223, an air delivery pipe 224, a fabric clamping plate 225, a spring 226, and a connecting pipe 227. Three suction hoods 221 are fixedly connected to the upper middle part of the dyeing box 1. All suction hoods 221 are fixedly connected to the air supply pipe 222. An air pump 223 is installed on the upper right side of the dyeing box 1. The air inlet of the air pump 223 is connected to the air supply pipe 222. The air outlet of the air pump 223 is connected to the air delivery pipe 224. The dyeing box 1 is provided with a ventilation slot 1b and the air delivery pipe 224. It is connected to the ventilation slot 1b; the connecting plate 211 is provided with a connecting slot 211b, which is connected to the ventilation slot 1b; a fabric clamping plate 225 is slidably connected to the upper and lower sides of the interior of the connecting plate 211; nine equidistantly distributed springs 226 are fixed between each fabric clamping plate 225 and the connecting plate 211; the fabric clamping plate 225 is provided with an air jet hole 225a, which is connected to the connecting slot 211b; a connecting pipe 227 is connected to the front left side and the rear left side of the dyeing box 1; the rotating box 202 is provided with an air inlet 202b; the connecting pipe 227 is connected to the air inlet 202b.
[0049] It also includes a baffle assembly, and the rotating box 202 is connected to the baffle assembly; the baffle assembly includes a hollow block 231, a baffle plate 232 and a second spring 233; the hollow block 231 is fixedly connected to the front side inside the rotating box 202, and the hollow block 231 is connected to the liquid inlet hole 1a; the hollow block 231 is slidably connected to the baffle plate 232; the second spring 233 is fixedly connected between the baffle plate 232 and the hollow block 231.
[0050] The specific work steps are as follows:
[0051] Before starting work, connect the external water supply equipment to the water pipe 212. During the fabric dyeing process, the DD motor 203 drives the rotating box 202 to rotate clockwise from the front to the back, so that the rotating box 202 blocks the fabric inlet, thereby preventing hot air from being discharged from the fabric inlet.
[0052] When it is necessary to sample and compare the fabric, the rotating roller 7 is rotated so that the tail end of the fabric is located to the left of the rotating roller 7. Then, the guide rail 4, moving block 5, connecting plate 6, and rotating roller 7 move to the left and return to their original positions. Then, the external water supply device starts to supply water, so that the water enters the liquid inlet 1a through the left side of the water supply pipe 212, and then enters the spray tank 211a through the liquid inlet 1a and the liquid outlet 6b, thereby washing the tail end of the fabric. After the washing is completed, the air pump 223 is started to suck out the hot air in the dyeing box 1 through the air suction hood 221 and the air supply pipe 222, and then sends it into the ventilation tank 1b through the air supply pipe 224, and then into the connecting tank 211b and the air jet hole 225a. Since the air jet hole 225a is connected by the connecting plate 212, the hot air is washed out. 1. The gas is blocked, preventing it from escaping. Therefore, the gas will push the clamping plate 225 down, compressing the spring 226. After the clamping plate 225 descends, the jet hole 225a will not be blocked, and hot air will be sprayed into the fabric to dry it. During drying, due to the large thrust of the hot air, the clamping plate 225 descends and cooperates with the connecting plate 211 to clamp the fabric, preventing more and more fabric from being pulled out. After drying, the DD motor 203 drives the rotating box 202 to rotate clockwise from the front to the back, exposing the dried fabric. Then, the standard fabric is placed next to the dried fabric for comparison, thus achieving the sampling and drying of the fabric without damaging it.
[0053] It should be noted that during the washing process, the upper part of the baffle plate 232 will be inserted into the liquid inlet 1a, so that the water flowing into the liquid inlet 1a will be blocked by the upper part of the baffle plate 232. As the water pressure rises, the water will squeeze the baffle plate 232 to the left, so that the water can enter the inlet 6b from the liquid inlet 1a. After the baffle plate 232 moves to the left, the spring 233 is in a compressed state, and the baffle plate 232 will no longer block the drain 202a, so that the water after washing will be discharged from the drain 202a. When the water supply is no longer needed during the hot air drying, the compressed spring 233 will rebound, thereby driving the baffle plate 232 to move to the right, thereby blocking the drain 202a and preventing the loss of hot air.
[0054] It should be noted that when using hot air drying, the hot air will enter the connecting pipe 227 through the air inlet 202b, and then be discharged into the dyeing box 1 from the connecting pipe 227. This avoids the situation where the fabric is dyed to a substandard standard and needs to be dyed again, but the hot air is discharged, resulting in low heat in the dyeing box 1 and the need for reheating.
[0055] Example 3
[0056] Based on Example 2, such as Figure 13 As shown, it also includes a water-absorbing assembly, and the air-absorbing hood 221 is connected to the water-absorbing assembly; the water-absorbing assembly includes a rotating rod 311, a fan blade 312, a sponge 313, and a hollow extrusion tube 314; each air-absorbing hood 221 is rotatably connected to a rotating rod 311; four fan blades 312 are bolted to the upper part of the rotating rod 311; a sponge 313 is fixed to the lower part of the rotating rod 311; each air-absorbing hood 221 is fixed to a hollow extrusion tube 314 at the lower part, the hollow extrusion tube 314 is cross-shaped; the hollow extrusion tube 314 has a liquid inlet hole 2 314a, and the dyeing box 1 is provided with a drain outlet 1c; the liquid inlet hole 2 314a is connected to the drain outlet 1c.
[0057] The middle part of the hollow extrusion tube 314 is higher than the outer part, which facilitates water flow.
[0058] It also includes a DD motor 321 and a temporary storage box 322; a DD motor 321 is installed on the front left side and the rear left side of the connecting plate 6; the rotating parts of all the DD motors 321 are fixedly connected to the connecting plate 211; a temporary storage box 322 is fixedly connected to the right side of the dyeing box 1.
[0059] The specific work steps are as follows:
[0060] When the comparison result is unqualified, the fabric is put back into the soaking water and sampled again after a period of time until it is qualified. When the sampling comparison result is qualified, the rotating roller 7 rotates so that the first end of the fabric is located to the right of the rotating roller 7. Then the guide rail 4 drives the moving block 5 to move the rotating roller 7 to the top of the temporary storage box 322. Then the DD motor 221 drives the connecting plate 211 to rotate 90 degrees counterclockwise from the front to the back. At this time, the spray tank 211a is connected to the right end of the water supply pipe 212. Then the regulating valve 213 is controlled to make the water supplied by the external water supply equipment flow to the right end of the water supply pipe 212, and then make the water flow into the spray tank 211a. At the same time, the rotating roller 7 is controlled to rotate so that the fabric moves into the temporary storage box 322 for water washing. During water washing, the drain valve 3 is opened to drain the dye.
[0061] It is important to note that the extracted hot air contains moisture. Therefore, when the hot air is drawn away, the moisture in the hot air will be intercepted by the sponge 313, thus preventing water vapor from adhering to the fabric and causing a longer drying time. However, prolonged interception will also reduce the water absorption effect of the sponge 313. Therefore, when the hot air is drawn away, the hot air will drive the fan blade 312 to rotate, which will drive the rotating rod 311 and the sponge 313 to rotate. When the sponge 313 rotates, it will be squeezed by the hollow extrusion tube 314, thereby expelling the water. The water discharged at this time will enter the liquid inlet hole 314a and then be discharged through the liquid outlet 1c, thus preventing excessive moisture in the sponge 313.
[0062] After the washing is completed, the rotating roller 7 is controlled to rotate and move, so that the tail end of the fabric moves to the side of the rotating roller 7 and is located inside the rotating box 202. Then the rotating box 202 rotates back to its original position, and then the fabric can be taken out.
[0063] The above embodiments are merely preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Therefore, all equivalent changes made to the content described in the claims of the present invention should be included within the scope of the claims of the present invention.
Claims
1. An intelligent cloth processing device, characterized in that it comprises The utility model provides a dyeing box, which comprises a dyeing box (1), a liquid inlet valve (2) and a liquid outlet valve (3); the dyeing box (1) is fixedly connected with the liquid inlet valve (2) at the upper portion; the dyeing box (1) is fixedly connected with the liquid outlet valve (3) at the lower right side; the utility model further comprises guide rails (4), moving blocks (5), a first connecting plate (6) and rotating rollers (7); the dyeing box (1) is fixedly connected with a guide rail (4) at each side inside; each guide rail (4) is slidably connected with a moving block (5); all the moving blocks (5) are fixedly connected with the first connecting plate (6); the first connecting plate (6) is rotatably connected with a rotating roller (7) at each side; The utility model further comprises a liquid spraying assembly; the dyeing box (1) and the first connecting plate (6) are connected with the liquid spraying assembly for spraying dyeing liquid to the cloth; the liquid spraying assembly comprises a cloth blocking plate (111), a water pump (112), a water inlet pipe (113) and a water outlet pipe (114); the dyeing box (1) is fixedly connected with the cloth blocking plate (111), and the cloth blocking plate (111) is provided with a plurality of liquid inlets (111a); the first connecting plate (6) is fixedly connected with the water pump (112) at the lower side; the water pump (112) is connected with the water inlet pipe (113) at the lower portion, and the water inlet pipe (113) is located in the region between the cloth blocking plate (111) and the dyeing box (1) at the lower portion; the water pump (112) is connected with the water outlet pipe (114) at the upper portion; the first connecting plate (6) is provided with a communication opening (6a); the communication opening (6a) is in communication with the water outlet pipe (114); The utility model further comprises a cloth blocking assembly; the dyeing box (1) is connected with the cloth blocking assembly for avoiding the outflow of hot air during dyeing; the cloth blocking assembly comprises connecting blocks (201), a rotating box (202) and DD motors (203); the dyeing box (1) is fixedly connected with a connecting block (201) at each side at the upper portion; all the connecting blocks (201) are rotatably connected with the rotating box (202); each connecting block (201) is provided with a DD motor (203); the rotating portions of all the DD motors (203) are fixedly connected with the rotating box (202); The utility model further comprises a water feeding assembly; the first connecting plate (6) is connected with the water feeding assembly for washing the cloth; the water feeding assembly comprises a water conveying pipe (212) and an adjusting valve (213); the dyeing box (1) is connected with the water conveying pipe (212) at the front portion; the water conveying pipe (212) is provided with the adjusting valve (213) at the left portion; the first connecting plate (6) is provided with a communication opening (6a) at the left side at the front portion, and the communication opening (6a) is in communication with the water conveying pipe (212); the second connecting plate (211) is provided with a liquid spraying groove (211a), and the liquid spraying groove (211a) is in communication with the water conveying pipe (212); the rotating box (202) is provided with a water outlet (202a) at the front portion; The drying assembly is connected with the sampling cloth for drying; the drying assembly comprises an air suction cover (221), a gas pipe (222), a gas pump (223), a gas delivery pipe (224), a cloth clamping plate (225), a spring (226) and a communication pipe (227); the middle part of the dyeing box (1) is fixedly connected with at least three air suction covers (221); all the air suction covers (221) are fixedly connected with the gas pipe (222); the upper part of the dyeing box (1) is provided with the gas pump (223), the gas inlet of the gas pump (223) is communicated with the gas pipe (222); the gas outlet of the gas pump (223) is communicated with the gas delivery pipe (224); the dyeing box (1) is provided with a ventilation groove (1b), the gas delivery pipe (224) is communicated with the ventilation groove (1b); the connecting plate (211) is provided with a communication groove (211b), the communication groove (211b) is communicated with the ventilation groove (1b); the inside of the connecting plate (211) is slidably connected with a cloth clamping plate (225) on each side; a plurality of springs (226) are fixedly connected between each cloth clamping plate (225) and the connecting plate (211), the cloth clamping plate (225) is provided with a gas injection hole (225a), the gas injection hole (225a) is communicated with the communication groove (211b); the left part of the dyeing box (1) is communicated with a communication pipe (227) on each side; the rotating box (202) is provided with an air inlet hole (202b); the communication pipe (227) is communicated with the air inlet hole (202b). The water suction assembly is connected with the hot gas for sucking away water; the water suction assembly comprises a rotating rod (311), a fan blade (312), a sponge (313) and a hollow extrusion pipe (314); each air suction cover (221) is rotatably connected with a rotating rod (311); the upper part of the rotating rod (311) is fixedly connected with at least four fan blades (312); the lower part of the rotating rod (311) is fixedly connected with a sponge (313); the lower part of each air suction cover (221) is fixedly connected with a hollow extrusion pipe (314), the hollow extrusion pipe (314) is in a cross shape; the hollow extrusion pipe (314) is provided with a liquid inlet hole (314a), the dyeing box (1) is provided with a liquid outlet (1c); the liquid inlet hole (314a) is communicated with the liquid outlet (1c).
2. The intelligent cloth processing device according to claim 1, characterized in that, The smoothing assembly is connected with the first connecting plate (6) and used for unfolding cloth; the smoothing assembly comprises the second connecting plate (211), the fixed block (101), the scraping plate (102), the torsion spring (103), the protruding block (104) and the blocking block (105); the left part of the first connecting plate (6) is connected with the second connecting plate (211); the first connecting plate (6) and the second connecting plate (211) are respectively fixedly connected with two fixed blocks (101) distributed in front and back; the two fixed blocks (101) on the first connecting plate (6) are jointly rotatably connected with one scraping plate (102); the two fixed blocks (101) on the water feeding assembly are jointly rotatably connected with another scraping plate (102); the two scraping plates (102) are respectively provided with thread grooves (102a) on opposite sides, the thread directions of the thread grooves (102a) on the front and back sides are opposite; the right scraping plate (102) is fixedly connected with one torsion spring (103) on each side of the first connecting plate (6), and the left scraping plate (102) is fixedly connected with one torsion spring (103) on each side of the second connecting plate (211); each scraping plate (102) is fixedly connected with one protruding block (104) on each side; each fixed block (101) is fixedly connected with one blocking block (105).
3. The intelligent cloth processing device according to claim 1, characterized in that, The hole blocking assembly is connected with the rotating box (202) and used for avoiding hot gas discharge; the hole blocking assembly comprises the hollow block (231), the hole blocking plate (232) and the second spring (233); the hollow block (231) is fixedly connected in the rotating box (202) and communicates with the liquid inlet hole (1a); the hole blocking plate (232) is slidingly connected with the hollow block (231); the second spring (233) is fixedly connected between the hole blocking plate (232) and the hollow block (231).
4. The intelligent cloth processing device according to claim 1, characterized in that, The hollow extrusion pipe (314) is higher in the middle part than on the outside.
5. The intelligent cloth processing device according to claim 4, characterized in that, The DD motor two (321) and the temporary storage box (322) are further included; one DD motor two (321) is installed on each side of the left part of the first connecting plate (6); the rotating parts of all the DD motor two (321) are fixedly connected with the second connecting plate (211); the temporary storage box (322) is fixedly connected with the right part of the dyeing box (1).
Citation Information
Patent Citations
Horizontal door opening type jig dyeing machine and control system thereof
CN106048935A
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