Fabric drying and conveying device and working method thereof

By combining fabric vibration and ultrasonic dehydration with temperature control, the problems of fabric entanglement and burning in traditional drying devices are solved, achieving an efficient and low-cost fabric drying process.

CN116972619BActive Publication Date: 2025-09-12JIANGSU CHINA TEXTILE UNITED KNITTING CO LTD
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Patent Information

Application Number
CN202310955896.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-01
Publication Date
2025-09-12
Estimated Expiration
2043-08-01

AI Technical Summary

Technical Problem

Traditional drying devices have problems such as fabric tangling, excessive fiber breakage, and unreasonable temperature distribution leading to fabric burns, which affect textile quality and efficiency.

Method used

The vibration method uses the friction of wet fabric to loosen it, while the ultrasonic generator quickly removes moisture. Combined with the temperature control device, the heat distribution is optimized to avoid fabric entanglement and burns.

Benefits of technology

It effectively avoids fabric fiber breakage, improves the quality of loosening, ensures fabric quality and reduces costs, and achieves a fast and efficient drying process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a fabric drying and conveying device and a working method thereof, comprising: a drying chamber, wherein an input end of the drying chamber is provided with a feeding belt, an output end of the drying chamber is provided with a receiving channel, and an output end of the receiving channel is provided with a finished product box and a discard box arranged in parallel; a feeding belt, which is arranged inside the drying chamber; a drying air duct, which is arranged on the top of the drying chamber; an ultrasonic generator, which is arranged on both sides of the feeding belt; and a temperature control device, which is arranged inside the drying chamber; on the one hand, the fabric is dried while vibrating the fabric, and the fabric is loosened during a period when the friction of the wet fabric is still small, thereby greatly avoiding the breakage of fabric fibers during the loosening, integrating the functions of a loosening machine, reducing costs, reducing the difficulty of loosening, and improving the loosening quality, and on the other hand, changing the heat distribution, gathering more heat on the upper layer of the dryer, helping the fabric to quickly separate moisture, and at the same time making the temperature of the lower layer not burn the fabric that has no moisture, thereby ensuring the quality of the fabric.
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Description

Technical Field

[0001] The present invention belongs to the field of fabric processing equipment, and in particular relates to a fabric drying and conveying device and a working method thereof. Background Art

[0002] After the fabric is formed into cloth and dyed, or after the raw materials are washed and impurities are removed, they need to be dried to remove excess water, so that the fabric can be dyed more evenly or the fabric can be opened more easily. It is an important basic equipment in the textile industry.

[0003] Traditional dryers lack the ability to loosen fabrics. Clumped fabric materials become more tangled during drying, hindering the subsequent loosening process. This often results in insufficient loosening, excessive fiber breakage, and low toughness after weaving. Furthermore, traditional dryers lack strict temperature control, resulting in a roughly uniform temperature within the dryer. At the end of the dryer, the fabric itself is almost completely dry, which can easily burn the fabric and render it unusable. Therefore, this application addresses the above issues and offers innovative and improved drying devices.

[0004] The current drying device mainly has the following problems:

[0005] 1. Most of the current drying devices have the problem of single function. The clumped fabric materials become more entangled during drying, which is not conducive to the subsequent loosening process. Problems such as insufficient loosening, excessive breakage of fabric fibers, and low toughness after weaving often occur.

[0006] 2. Most of the current drying devices have the problem of unreasonable temperature distribution. The temperature in the dryer chamber is basically the same, while the fabric itself has almost no moisture at the end of the dryer, which can easily burn the fabric and make it unusable. Summary of the Invention

[0007] Purpose of the invention: In order to overcome the above shortcomings, the purpose of the present invention is to provide a fabric drying and conveying device and a working method thereof. On the one hand, the fabric is dried while vibrating the fabric, and the fabric is loosened by taking advantage of the period when the friction of the wet fabric is still small, thereby greatly avoiding the breakage of the fabric fibers during loosening. It not only integrates the functions of a loosening machine, reduces costs, reduces the difficulty of loosening, and improves the quality of loosening, but also changes the heat distribution, gathers more heat in the upper layer of the dryer, helps the fabric to quickly separate moisture, and at the same time prevents the temperature of the lower layer from burning the fabric that has no moisture, thereby ensuring the quality of the fabric.

[0008] Technical solution: In order to achieve the above-mentioned purpose, the present invention provides a fabric drying and conveying device, comprising:

[0009] A drying chamber, the input end of which is provided with a feeding belt, the output end of which is provided with a material receiving channel, and the output end of the material receiving channel is arranged in parallel with a finished product box and a discarded material box;

[0010] A feed belt is provided inside the drying chamber, wherein a plurality of the feed belts are provided and the feed belts are arranged in a stacked manner;

[0011] A drying air duct is provided at the top of the drying chamber, and the drying air duct includes an air inlet and an air outlet, the air inlet is provided at the bottom of the drying chamber, and the air outlet is provided at the top of the drying chamber;

[0012] Ultrasonic generators are arranged on both sides of the feed belt;

[0013] A temperature control device is arranged inside the drying cabin, and the temperature control device cooperates with the drying air duct.

[0014] The setting of the drying conveyor device described in the present invention achieves the purpose of quickly separating moisture through the resonance of the ultrasonic generator with the moisture in the fabric. At the same time, the fabric is in contact with the feed belt, which can take away the moisture and then dry it. Compared with traditional ultrasonic drying, the moisture is taken away faster and the drying speed is faster.

[0015] The feeding belt described in the present invention includes a storage platform and a conveyor belt. The output end of the storage platform is provided with a conveyor belt, and the output end of the conveyor belt is connected to the feeding belt. The storage platform is a vibration table, and the top surface of the storage platform is inclined.

[0016] The top of the output end of the storage platform described in the present invention is provided with a baffle, and the fabric raw material passes through the bottom of the baffle.

[0017] The feeding belt of the present invention is provided to spread the fabric raw materials on the feeding belt by vibration, thereby preventing the fabric raw materials from piling up when being fed into the drying machine.

[0018] The feed belt described in the present invention also includes a cloth roll rack and an unwinding roller. The cloth roll rack is arranged on the top of the conveyor belt. The output end of the conveyor belt is provided with an unwinding roller, and the unwinding roller cooperates with the feed belt.

[0019] The arrangement of the cloth roll rack in the present invention realizes the drying of fabric raw materials and finished fabrics, improves their functionality and saves production costs.

[0020] The feed belt described in the present invention includes a supporting conveyor belt, a limiting conveyor belt, a secondary unwinding roller and a vibrator. The supporting conveyor belt is arranged in the drying chamber through a roller. There are multiple supporting conveyor belts, and the supporting conveyor belts are arranged in layers; a limiting conveyor belt is provided on the top of the supporting conveyor belt, and the limiting conveyor belt is in contact with the supporting conveyor belt, and the length of the limiting conveyor belt is less than the length of the supporting conveyor belt; a secondary unwinding roller is provided at the output end of the supporting conveyor belt; a vibrator is provided on one side of the secondary unwinding roller, and the vibrator is provided at both ends of the drying chamber, and the output end of the vibrator contacts the supporting conveyor belt.

[0021] The setting of the feed belt described in the present invention dries the fabric while vibrating the fabric, and loosens the fabric during the period when the friction of the wet fabric is still small, thereby greatly avoiding the breakage of fabric fibers during loosening. It integrates the functions of the loosening machine, reduces costs, reduces the difficulty of loosening, and improves the quality of loosening.

[0022] The supporting conveyor belt of the present invention is arranged obliquely, and the vibrator causes the finished fabric to move toward the output end of the supporting conveyor belt through vibration, thereby preventing the finished fabric from folding or wrinkling.

[0023] The supporting conveyor belt and the limiting conveyor belt described in the present invention are made of hydrophilic materials.

[0024] The supporting conveyor belt and the position-limiting conveyor provided in the present invention take away moisture through the hydrophilic material, thereby expanding the contact area with the hot air and improving the drying efficiency.

[0025] The supporting conveyor belt and the limiting conveyor belt described in the present invention are tensioned by a tensioning wheel.

[0026] The bottom of the supporting conveyor belt described in the present invention is provided with a water mist guide plate, the water mist guide plate is in an inverted cone shape, and the width of the water mist guide plate is greater than the width of the supporting conveyor belt.

[0027] The arrangement of the water mist guide plate in the present invention prevents evaporated water vapor from re-entering the fabric.

[0028] The material receiving channel described in the present invention includes a material receiving conveyor belt, a guide slide, a detector, a push cylinder and a diversion channel. The material receiving conveyor belt is arranged at the output end of the drying cabin, and the output end of the material receiving conveyor belt is provided with a guide slide, and the output end of the guide slide is connected to the finished product box; a detector is provided on one side of the guide slide, and a push cylinder is provided on one side of the detector; a diversion channel is provided in the middle section of the guide slide, the input end of the diversion channel cooperates with the output end of the push cylinder, and the output end of the diversion channel is connected to the waste box.

[0029] The arrangement of the material receiving channel in the present invention realizes the quality inspection and sorting of fabrics by detecting the fabric color, reduces manpower, and does not fatigue the detector, thereby improving the detection accuracy.

[0030] The material receiving channel described in the present invention also includes a winding frame, which is arranged on the top of the material receiving conveyor belt and is driven by a motor.

[0031] The temperature control device described in the present invention includes an air guide grid, a temperature sensor, a plug column, a heat dissipation fin and a heat insulation end cover. The air guide grid is provided on the air inlet, and the air guide grid is provided with multiple grid plates. The inclination angle of the grid plate at the top of the air guide grid is greater than the inclination angle of the grid plate at the bottom of the air guide grid; a plug column is provided inside the air inlet, and the plug column slides with the air inlet. The plug column includes a heat conduction end and a heat dissipation end, the heat conduction end of the plug column extends to the inside of the sleeve, the heat conduction end of the plug column is provided with a heat insulation end cover, the heat dissipation end of the plug column extends to the outside of the air inlet, and the surface of the heat dissipation end of the plug column is provided with heat dissipation fins, and the plug column is driven by a stroke cylinder.

[0032] Insulation material is used between the heat dissipation end of the plug post and the stroke cylinder in the present invention.

[0033] The temperature control device of the present invention changes the heat distribution, concentrates more heat in the upper layer of the dryer, helps the fabric to quickly separate moisture, and at the same time arranges the temperature of the lower layer to burn the fabric that has been dehydrated, thereby ensuring the quality of the fabric; on the other hand, the internal temperature of the dryer is detected by a sensor, and the temperature is adjusted in time to avoid damaging the fabric.

[0034] The arrangement of the plug post in the present invention cooperates with the sleeve to dissipate heat from the air inlet, and compared with traditional heat dissipation fins or heat dissipation fans, it is possible to arbitrarily control whether to dissipate heat.

[0035] The working method of the fabric drying and conveying device described in the present invention specifically includes the following steps:

[0036] Step 1: Pour the fabric raw material into the feeding belt, which will vibrate and flatten it and send it into the drying chamber; or place the finished fabric on the feeding belt and send one end of it into the drying chamber;

[0037] Step 2: The supporting conveyor belt and the limiting conveyor belt clamp and limit the fabric raw material or finished fabric, and the ultrasonic generator brings moisture into the supporting conveyor belt and the limiting conveyor belt, and then the hot air sent into the drying duct dries the supporting conveyor belt and the limiting conveyor belt and sends the moisture out of the drying chamber;

[0038] Step 3: The fabric raw material or finished fabric is stretched to both sides when passing through the secondary unfolding roller to prevent the finished fabric from shrinking and the fabric raw material from being entangled into balls; the vibrator shakes the supporting conveyor belt to loosen the fabric raw material and prevent the fabric raw material from being entangled into balls.

[0039] Step 4: The temperature control device guides the wind direction and controls the outlet temperature of the air inlet, thereby controlling the temperature of the drying chamber;

[0040] Step 5: Send the fabric out of the drying chamber and reel it into the receiving channel, or collect and store the fabric raw materials.

[0041] The material receiving method of the fabric drying and conveying device described in the present invention specifically comprises the following steps:

[0042] When drying the finished fabric, directly roll the dried finished fabric onto the roll-up rack, and the motor drives the roll-up action;

[0043] When drying fabric raw materials, after drying, they are arranged on a guide slide and passed through a detector, which is a color detector, and an industrial camera. If the color is normal, it means it is qualified and is sent to the finished product box. If black or burnt brown appears, it means it is over-dried and cannot be used. It is pushed into the diversion channel by the push cylinder and sent to the waste box.

[0044] The temperature control method of a fabric drying and conveying device described in the present invention specifically includes the following steps:

[0045] Step 1: The hot air is diverted through the air guide grid and sent to the upper space with more moisture, which improves the drying effect while preventing the dried fabric raw materials or finished fabrics in the lower layer from overheating and burning;

[0046] Step 2: The temperature sensor detects temperature changes. When the temperature in the drying chamber is too high, the plug is sent into the air inlet, and the heat is dissipated by the heat dissipation fins through the plug, thereby reducing the air supply temperature at the air inlet and avoiding damage to the items placed. When the temperature drops, the temperature sensor loses response, the plug returns to its position, and no longer dissipates heat.

[0047] It can be seen from the above technical solution that the present invention has the following beneficial effects:

[0048] 1. The fabric drying and conveying device and the working method described in the present invention dry the fabric while vibrating it, and loosen the fabric during the period when the friction of the wet fabric is still relatively small, thereby greatly avoiding the breakage of fabric fibers during loosening. It integrates the functions of a loosening machine, reduces costs, reduces the difficulty of loosening, and improves the quality of loosening.

[0049] 2. The fabric drying and conveying device and its working method described in the present invention change the heat distribution, concentrate more heat in the upper layer of the dryer, help the fabric to quickly separate moisture, and at the same time arrange the temperature of the lower layer to burn the fabric that has been dehydrated, thereby ensuring the quality of the fabric; on the other hand, the internal temperature of the dryer is detected by a sensor and the temperature is adjusted in time to avoid damaging the fabric. BRIEF DESCRIPTION OF THE DRAWINGS

[0050] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0051] Figure 2 Schematic diagram of the top view of the material receiving channel of the present invention;

[0052] Figure 3It is a structural schematic diagram of the feed belt of the present invention;

[0053] Figure 4 It is a structural schematic diagram of the feed belt of the present invention;

[0054] Figure 5 Schematic diagram of the structure of the water mist guide plate of the present invention;

[0055] Figure 6 This is a side structural diagram of the drying cabin of the present invention;

[0056] Figure: Drying chamber 1, feeding belt 2, storage platform 21, conveyor belt 22, cloth roll rack 23, unwinding roller 24, receiving channel 3, receiving conveyor belt 31, guide slide 32, detector 33, push cylinder 34, diversion channel 35, rewinding rack 36, finished product box 4, discard box 5, feeding belt 6, supporting conveyor belt 61, limiting conveyor belt 62, secondary unwinding roller 63, vibrator 64, water mist guide plate 65, drying air duct 7, ultrasonic generator 8, temperature control device 9, air guide grid 91, temperature sensor 92, plug column 93, heat sink fin 94, thermal insulation end cover 95. DETAILED DESCRIPTION

[0057] The present invention will be further explained below with reference to the accompanying drawings and specific embodiments.

[0058] The following describes embodiments of the present invention in detail, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and are not to be construed as limiting the present invention.

[0059] Example 1

[0060] like Figure 1-6 A fabric drying and conveying device is shown, comprising:

[0061] A drying chamber 1 is provided with a feeding belt 2 at its input end, a material receiving channel 3 is provided at the output end of the drying chamber 1, and a finished product box 4 and a discard box 5 are arranged in parallel at the output end of the material receiving channel 3;

[0062] A feed belt 6 is provided inside the drying chamber 1. A plurality of feed belts 6 are provided and the feed belts 6 are arranged in a stacked manner.

[0063] A drying air duct 7 is provided at the top of the drying chamber 1. The drying air duct 7 includes an air inlet and an air outlet. The air inlet is provided at the bottom of the drying chamber 1, and the air outlet is provided at the top of the drying chamber 1.

[0064] Ultrasonic wave generators 8 are arranged on both sides of the feed belt 6;

[0065] The temperature control device 9 is arranged inside the drying cabin 1 and cooperates with the drying air duct 7 .

[0066] The feeding belt 2 described in this embodiment includes a storage platform 21 and a conveyor belt 22. The conveyor belt 22 is provided at the output end of the storage platform 21, and the output end of the conveyor belt 22 is connected to the feed belt 6; the storage platform 21 is a vibration table, and the top surface of the storage platform 21 is inclined.

[0067] The feed belt 2 described in this embodiment also includes a cloth roll rack 23 and an unwinding roller 24. The cloth roll rack 23 is arranged on the top of the conveyor belt 22. The output end of the conveyor belt 22 is provided with an unwinding roller 24, and the unwinding roller 24 cooperates with the feed belt 6.

[0068] The feed belt 6 described in this embodiment includes a supporting conveyor belt 61, a limiting conveyor belt 62, a secondary unfolding roller 63 and a vibrator 64. The supporting conveyor belt 61 is arranged in the drying chamber 1 through a roller. There are multiple supporting conveyor belts 61, and the supporting conveyor belts 61 are arranged in layers; a limiting conveyor belt 62 is provided on the top of the supporting conveyor belt 61, and the limiting conveyor belt 62 is in contact with the supporting conveyor belt 61, and the length of the limiting conveyor belt 62 is less than the length of the supporting conveyor belt 61; a secondary unfolding roller 63 is provided at the output end of the supporting conveyor belt 61; a vibrator 64 is provided on one side of the secondary unfolding roller 63, and the vibrator 64 is provided at both ends of the drying chamber 1, and the output end of the vibrator 64 contacts the supporting conveyor belt 61.

[0069] The supporting conveyor belt 61 and the limiting conveyor belt 62 described in this embodiment are made of hydrophilic material.

[0070] In this embodiment, a water mist guide plate 65 is provided at the bottom of the supporting conveyor belt 61 . The water mist guide plate 65 is in an inverted cone shape, and the width of the water mist guide plate 65 is greater than the width of the supporting conveyor belt 61 .

[0071] The material receiving channel 3 described in this embodiment includes a material receiving conveyor belt 31, a guide slide 32, a detector 33, a push cylinder 34 and a diverter channel 35. The material receiving conveyor belt 31 is arranged at the output end of the drying chamber 1, and the output end of the material receiving conveyor belt 31 is provided with a guide slide 32, and the output end of the guide slide 32 is connected to the finished product box 4; a detector 33 is provided on one side of the guide slide 32, and a push cylinder 34 is provided on one side of the detector 33; a diverter channel 35 is provided in the middle section of the guide slide 32, and the input end of the diverter channel 35 cooperates with the output end of the push cylinder 34, and the output end of the diverter channel 35 is connected to the waste box 5.

[0072] The material receiving channel 3 described in this embodiment further includes a winding rack 36 . The winding rack 36 is disposed on the top of the material receiving conveyor belt 31 , and the winding rack 36 is driven by a motor.

[0073] The temperature control device 9 described in this embodiment includes an air guide grid 91, a temperature sensor 92, a plug 93, a heat dissipation fin 94 and an insulating end cover 95. The air guide grid 91 is provided on the air inlet, and the air guide grid 91 is provided with multiple grid plates. The inclination angle of the grid plate at the top of the air guide grid 91 is greater than the inclination angle of the grid plate at the bottom of the air guide grid 91; a plug 93 is provided inside the air inlet, and the plug 93 slides with the air inlet. The plug 93 includes a heat conducting end and a heat dissipation end. The heat conducting end of the plug 93 extends to the inside of the sleeve, and the heat conducting end of the plug 93 is provided with a heat insulating end cover 95. The heat dissipation end of the plug 93 extends to the outside of the air inlet, and the heat dissipation end surface of the plug 93 is provided with heat dissipation fins 94. The plug 93 is driven by a stroke cylinder.

[0074] The working method of the fabric drying and conveying device described in this embodiment specifically includes the following steps:

[0075] Step 1: Pour the fabric raw material into the feed belt 2, which vibrates and flattens it and feeds it into the drying chamber 1; or place the finished fabric on the feed belt 2, and feed one end of it into the drying chamber 1;

[0076] Step 2: The supporting conveyor belt 61 and the limiting conveyor belt 62 clamp and limit the fabric raw material or finished fabric, and the ultrasonic generator 8 brings moisture into the supporting conveyor belt 61 and the limiting conveyor belt 62, and then the hot air sent by the drying air duct 7 dries the supporting conveyor belt 61 and the limiting conveyor belt 62 and sends the moisture out of the drying chamber 1;

[0077] Step 3: The fabric raw material or finished fabric is stretched to both sides when passing through the secondary unfolding roller 63 to prevent the finished fabric from shrinking and the fabric raw material from being entangled into balls; the vibrator 64 vibrates the supporting conveyor belt 61 to loosen the fabric raw material and prevent the fabric raw material from being entangled into balls.

[0078] Step 4: The temperature control device 9 guides the wind direction and controls the outlet temperature of the air inlet, thereby controlling the temperature of the drying chamber 1;

[0079] Step 5: Send out the drying chamber 1 and roll up the finished fabric through the receiving channel 3, or collect and store the fabric raw materials.

[0080] The material receiving method of the fabric drying and conveying device described in the present invention specifically comprises the following steps:

[0081] When drying the finished fabric, directly roll the dried finished fabric onto the roll-up rack, and the motor drives the roll-up action;

[0082] When drying fabric raw materials, after drying, they are arranged on a guide slide and passed through a detector, which is a color detector, and an industrial camera. If the color is normal, it means it is qualified and is sent to the finished product box. If black or burnt brown appears, it means it is over-dried and cannot be used. It is pushed into the diversion channel by the push cylinder and sent to the waste box.

[0083] The temperature control method of a fabric drying and conveying device described in the present invention specifically includes the following steps:

[0084] Step 1: The hot air is diverted through the air guide grid and sent to the upper space with more moisture, which improves the drying effect while preventing the dried fabric raw materials or finished fabrics in the lower layer from overheating and burning;

[0085] Step 2: The temperature sensor detects temperature changes. When the temperature in the drying chamber is too high, the plug is sent into the air inlet, and the heat is dissipated by the heat dissipation fins through the plug, thereby reducing the air supply temperature at the air inlet and avoiding damage to the items placed. When the temperature drops, the temperature sensor loses response, the plug returns to its position, and no longer dissipates heat.

[0086] Example 2

[0087] like Figure 1 and 3 A fabric drying and conveying device is shown, comprising:

[0088] A drying chamber 1 is provided with a feeding belt 2 at its input end, a material receiving channel 3 is provided at the output end of the drying chamber 1, and a finished product box 4 and a discard box 5 are arranged in parallel at the output end of the material receiving channel 3;

[0089] A feed belt 6 is provided inside the drying chamber 1. A plurality of feed belts 6 are provided and the feed belts 6 are arranged in a stacked manner.

[0090] A drying air duct 7 is provided at the top of the drying chamber 1. The drying air duct 7 includes an air inlet and an air outlet. The air inlet is provided at the bottom of the drying chamber 1, and the air outlet is provided at the top of the drying chamber 1.

[0091] Ultrasonic wave generators 8 are arranged on both sides of the feed belt 6;

[0092] The temperature control device 9 is arranged inside the drying cabin 1 and cooperates with the drying air duct 7 .

[0093] The feeding belt 2 described in this embodiment includes a storage platform 21 and a conveyor belt 22. The conveyor belt 22 is provided at the output end of the storage platform 21, and the output end of the conveyor belt 22 is connected to the feed belt 6; the storage platform 21 is a vibration table, and the top surface of the storage platform 21 is inclined.

[0094] The feed belt 2 described in this embodiment also includes a cloth roll rack 23 and an unwinding roller 24. The cloth roll rack 23 is arranged on the top of the conveyor belt 22. The output end of the conveyor belt 22 is provided with an unwinding roller 24, and the unwinding roller 24 cooperates with the feed belt 6.

[0095] Example 3

[0096] like Figure 1 、 Figure 4 and Figure 5 A fabric drying and conveying device is shown, comprising:

[0097] A drying chamber 1 is provided with a feeding belt 2 at its input end, a material receiving channel 3 is provided at the output end of the drying chamber 1, and a finished product box 4 and a discard box 5 are arranged in parallel at the output end of the material receiving channel 3;

[0098] A feed belt 6 is provided inside the drying chamber 1. A plurality of feed belts 6 are provided and the feed belts 6 are arranged in a stacked manner.

[0099] A drying air duct 7 is provided at the top of the drying chamber 1. The drying air duct 7 includes an air inlet and an air outlet. The air inlet is provided at the bottom of the drying chamber 1, and the air outlet is provided at the top of the drying chamber 1.

[0100] Ultrasonic wave generators 8 are arranged on both sides of the feed belt 6;

[0101] The temperature control device 9 is arranged inside the drying cabin 1 and cooperates with the drying air duct 7 .

[0102] The feed belt 6 described in this embodiment includes a supporting conveyor belt 61, a limiting conveyor belt 62, a secondary unfolding roller 63 and a vibrator 64. The supporting conveyor belt 61 is arranged in the drying chamber 1 through a roller. There are multiple supporting conveyor belts 61, and the supporting conveyor belts 61 are arranged in layers; a limiting conveyor belt 62 is provided on the top of the supporting conveyor belt 61, and the limiting conveyor belt 62 is in contact with the supporting conveyor belt 61, and the length of the limiting conveyor belt 62 is less than the length of the supporting conveyor belt 61; a secondary unfolding roller 63 is provided at the output end of the supporting conveyor belt 61; a vibrator 64 is provided on one side of the secondary unfolding roller 63, and the vibrator 64 is provided at both ends of the drying chamber 1, and the output end of the vibrator 64 contacts the supporting conveyor belt 61.

[0103] The supporting conveyor belt 61 and the limiting conveyor belt 62 described in this embodiment are made of hydrophilic material.

[0104] The supporting conveyor belt 61 and the limiting conveyor belt 62 described in the present invention are tensioned by a tensioning wheel.

[0105] In this embodiment, a water mist guide plate 65 is provided at the bottom of the supporting conveyor belt 61 . The water mist guide plate 65 is in an inverted cone shape, and the width of the water mist guide plate 65 is greater than the width of the supporting conveyor belt 61 .

[0106] Example 4

[0107] like Figure 1 and Figure 2 A fabric drying and conveying device is shown, comprising:

[0108] A drying chamber 1 is provided with a feeding belt 2 at its input end, a material receiving channel 3 is provided at the output end of the drying chamber 1, and a finished product box 4 and a discard box 5 are arranged in parallel at the output end of the material receiving channel 3;

[0109] A feed belt 6 is provided inside the drying chamber 1. A plurality of feed belts 6 are provided and the feed belts 6 are arranged in a stacked manner.

[0110] A drying air duct 7 is provided at the top of the drying chamber 1. The drying air duct 7 includes an air inlet and an air outlet. The air inlet is provided at the bottom of the drying chamber 1, and the air outlet is provided at the top of the drying chamber 1.

[0111] Ultrasonic wave generators 8 are arranged on both sides of the feed belt 6;

[0112] The temperature control device 9 is arranged inside the drying cabin 1 and cooperates with the drying air duct 7 .

[0113] The material receiving channel 3 described in this embodiment includes a material receiving conveyor belt 31, a guide slide 32, a detector 33, a push cylinder 34 and a diverter channel 35. The material receiving conveyor belt 31 is arranged at the output end of the drying chamber 1, and the output end of the material receiving conveyor belt 31 is provided with a guide slide 32, and the output end of the guide slide 32 is connected to the finished product box 4; a detector 33 is provided on one side of the guide slide 32, and a push cylinder 34 is provided on one side of the detector 33; a diverter channel 35 is provided in the middle section of the guide slide 32, and the input end of the diverter channel 35 cooperates with the output end of the push cylinder 34, and the output end of the diverter channel 35 is connected to the waste box 5.

[0114] The material receiving channel 3 described in this embodiment further includes a winding rack 36 . The winding rack 36 is disposed on the top of the material receiving conveyor belt 31 , and the winding rack 36 is driven by a motor.

[0115] Example 5

[0116] like Figure 1 and Figure 6 A fabric drying and conveying device is shown, comprising:

[0117] A drying chamber 1 is provided with a feeding belt 2 at its input end, a material receiving channel 3 is provided at the output end of the drying chamber 1, and a finished product box 4 and a discard box 5 are arranged in parallel at the output end of the material receiving channel 3;

[0118] A feed belt 6 is provided inside the drying chamber 1. A plurality of feed belts 6 are provided and the feed belts 6 are arranged in a stacked manner.

[0119] A drying air duct 7 is provided at the top of the drying chamber 1. The drying air duct 7 includes an air inlet and an air outlet. The air inlet is provided at the bottom of the drying chamber 1, and the air outlet is provided at the top of the drying chamber 1.

[0120] Ultrasonic wave generators 8 are arranged on both sides of the feed belt 6;

[0121] The temperature control device 9 is arranged inside the drying cabin 1 and cooperates with the drying air duct 7 .

[0122] The temperature control device 9 described in this embodiment includes an air guide grid 91, a temperature sensor 92, a plug 93, a heat dissipation fin 94 and an insulating end cover 95. The air guide grid 91 is provided on the air inlet, and the air guide grid 91 is provided with multiple grid plates. The inclination angle of the grid plate at the top of the air guide grid 91 is greater than the inclination angle of the grid plate at the bottom of the air guide grid 91; a plug 93 is provided inside the air inlet, and the plug 93 slides with the air inlet. The plug 93 includes a heat conducting end and a heat dissipation end. The heat conducting end of the plug 93 extends to the inside of the sleeve, and the heat conducting end of the plug 93 is provided with a heat insulating end cover 95. The heat dissipation end of the plug 93 extends to the outside of the air inlet, and the heat dissipation end surface of the plug 93 is provided with heat dissipation fins 94. The plug 93 is driven by a stroke cylinder.

[0123] Insulating material is used between the heat dissipation end of the plug post 93 and the stroke cylinder.

[0124] The above description is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements can be made without departing from the principles of the present invention. These improvements should also be regarded as the scope of protection of the present invention.

Claims

1. A fabric drying and conveying device, characterized in that: include: A drying chamber (1) is provided with a feeding belt (2) at its input end, a receiving channel (3) is provided at the output end of the drying chamber (1), and a finished product box (4) and a discard box (5) are arranged in parallel at the output end of the receiving channel (3); A feeding belt (6) is arranged inside the drying chamber (1), wherein a plurality of feeding belts (6) are provided and the feeding belts (6) are arranged in a stacked manner; A drying air duct (7) is arranged at the top of the drying chamber (1), the drying air duct (7) comprising an air inlet and an air outlet, the air inlet being arranged at the bottom of the drying chamber (1), and the air outlet being arranged at the top of the drying chamber (1); Ultrasonic wave generators (8) are arranged on both sides of the feed belt (6); A temperature control device (9) is arranged inside the drying chamber (1), and the temperature control device (9) cooperates with the drying air duct (7); The receiving channel (3) includes a receiving conveyor belt (31), a guide slide (32), a detector (33), a push cylinder (34) and a diverter (35), wherein the receiving conveyor belt (31) is arranged at the output end of the drying chamber (1), the output end of the receiving conveyor belt (31) is provided with a guide slide (32), and the output end of the guide slide (32) is connected to the finished product box (4); a detector (33) is provided on one side of the guide slide (32), and a push cylinder (34) is provided on one side of the detector (33); a diverter (35) is provided in the middle section of the guide slide (32), the input end of the diverter (35) cooperates with the output end of the push cylinder (34), and the output end of the diverter (35) is connected to the waste box (5); The feed belt (6) includes a supporting conveyor belt (61), a limiting conveyor belt (62), a secondary unfolding roller (63) and a vibrator (64). The supporting conveyor belt (61) is arranged in the drying chamber (1) through a roller. A plurality of supporting conveyor belts (61) are provided, and the supporting conveyor belts (61) are arranged in a stacked manner. A limiting conveyor belt (62) is provided on the top of the supporting conveyor belt (61). The limiting conveyor belt (62) contacts and cooperates with the supporting conveyor belt (61). The length of the limiting conveyor belt (62) is less than that of the supporting conveyor belt (61). A secondary unfolding roller (63) is provided at the output end of the supporting conveyor belt (61). A vibrator (64) is provided on one side of the secondary unfolding roller (63). The vibrator (64) is provided at both ends of the drying chamber (1). The output end of the vibrator (64) contacts the supporting conveyor belt (61). The supporting conveyor belt (61) and the limiting conveyor belt (62) are made of hydrophilic material. The temperature control device (9) comprises an air guide grid (91), a temperature sensor (92), a plug post (93), a heat dissipation fin (94) and a heat insulation end cover (95); the air inlet is provided with an air guide grid (91), the air guide grid (91) is provided with a plurality of grid plates, the grid plate inclination angle at the top of the air guide grid (91) is greater than the grid plate inclination angle at the bottom of the air guide grid (91); the air inlet is provided with a plug post (93), the plug post ( 93) is slidably matched with the air inlet, the plug post (93) includes a heat conducting end and a heat dissipating end, the heat conducting end of the plug post (93) extends to the inside of the sleeve, the heat conducting end of the plug post (93) is provided with a heat insulating end cover (95), the heat dissipating end of the plug post (93) extends to the outside of the air inlet, the heat dissipating end surface of the plug post (93) is provided with a heat dissipating fin (94), and the plug post (93) is driven by a stroke cylinder; the sleeve is provided at the air inlet inside the drying air duct (7).

2. A fabric drying and conveying device according to claim 1, characterized in that: The feeding belt (2) includes a storage platform (21) and a conveyor belt (22), the output end of the storage platform (21) is provided with a conveyor belt (22), and the output end of the conveyor belt (22) is connected to the feeding belt (6); the storage platform (21) is a vibration table, and the top surface of the storage platform (21) is inclined.

3. A fabric drying and conveying device according to claim 2, characterized in that: The feed belt (2) further comprises a cloth roll rack (23) and an unfolding roller (24), wherein the cloth roll rack (23) is arranged on the top of the conveyor belt (22), and an unfolding roller (24) is arranged at the output end of the conveyor belt (22), and the unfolding roller (24) cooperates with the feed belt (6).

4. The fabric drying and conveying device according to claim 1, characterized in that: A water mist guide plate (65) is provided at the bottom of the supporting conveyor belt (61), and the water mist guide plate (65) is in an inverted cone shape. The width of the water mist guide plate (65) is greater than the width of the supporting conveyor belt (61).

5. The fabric drying and conveying device according to claim 1, characterized in that: The material receiving channel (3) further includes a winding frame (36), wherein the winding frame (36) is arranged on the top of the material receiving conveyor belt (31), and the winding frame (36) is driven by a motor.

6. The operating method of a fabric drying and conveying device according to claim 1, characterized in that: The specific steps include: Step 1: Pour the fabric raw material into the feed belt (2), which vibrates and flattens it and feeds it into the drying chamber (1); or place the finished fabric on the feed belt (2), and feed one end of it into the drying chamber (1); Step 2: The supporting conveyor belt (61) and the limiting conveyor belt (62) clamp and limit the fabric raw material or finished fabric, and use the ultrasonic generator (8) to bring moisture into the supporting conveyor belt (61) and the limiting conveyor belt (62), and then use the hot air sent by the drying air duct (7) to dry the supporting conveyor belt (61) and the limiting conveyor belt (62) and send the water vapor out of the drying chamber (1); Step 3: The fabric raw material or finished fabric is stretched to both sides when passing through the secondary unfolding roller (63) to prevent the finished fabric from shrinking and the fabric raw material from being entangled; the vibrator (64) vibrates the supporting conveyor belt (61) to loosen the fabric raw material and prevent the fabric raw material from being entangled; Step 4: The temperature control device (9) guides the wind direction and controls the temperature at the air inlet, thereby controlling the temperature of the drying chamber (1); Step 5: Send out the drying chamber (1) and roll up the finished fabric through the receiving channel (3), or collect and store the fabric raw materials.

Citation Information

Patent Citations

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    CN115500538A

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