Clothing product detection scanning device

By designing a clothing product detection and scanning device for synchronous detection and odor removal, the problems of low detection efficiency and odor in the prior art are solved, and efficient and intelligent clothing detection and classification collection are achieved.

CN120250323APending Publication Date: 2025-07-04BIJIE JINGWONG GARMENT CO LTD
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Patent Information

Application Number
CN202510428796.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2025-07-04

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Abstract

The invention relates to the technical field of clothing detection, in particular to a clothing product detection scanning device which comprises a base and further comprises a conveying mechanism, a detection mechanism, a scanning mechanism, a spraying mechanism and a drying mechanism, the conveying mechanism comprises two supporting rods, a rotating assembly and a plurality of hanging assemblies, and six sliding rails are arranged at the top of the base; the detection mechanism comprises a metal detector and a pushing assembly, the scanning mechanism comprises a transmission assembly and two clothing cloth scanners, the spraying mechanism comprises a storage box, an extraction assembly and a plurality of atomizing nozzles, the drying mechanism is arranged at the top of the base, the drying mechanism comprises a drying table and a heating assembly, the drying table is arranged at the top of the base, and the heating assembly is arranged at the top of the base. According to the clothing product detection scanning device, continuous detection of clothing products can be achieved, one-by-one detection through multiple devices is not needed, frequent product transfer is not needed, and then the detection efficiency is greatly improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of clothing detection, and particularly relates to a clothing product detection and scanning device. Background Art

[0002] After the existing clothing is processed, it needs to be detected, mainly for detecting the patterns on the clothing surface, the size of the clothing, and the color of the clothing, to ensure that the product quality can satisfy customers. At the same time, during the processing process, needles, screws, staples, etc. are likely to be left on the clothing. If not detected and directly sold out of the warehouse, serious consequences will occur.

[0003] The existing detection and scanning devices have the following deficiencies: 1. It is impossible to synchronously detect the color, pattern, size of the clothing, and the residual metal objects on the clothing. It is necessary to transfer the clothing and detect it separately through multiple devices, thereby reducing the detection efficiency.

[0004] 2. During the processing of clothing, due to contact with machines, dyes, and additives, certain odors will be generated. The existing detection and scanning devices do not have a deodorization function. Directly storing or shipping out after detection is likely to affect the subsequent dressing experience of customers. At the same time, the harmful substances contained in these odors will also have an adverse impact on the human body. Summary of the Invention

[0005] The purpose of the present invention is to provide a clothing product detection and scanning device.

[0006] To achieve this purpose, the present invention adopts the following technical solutions: Provide a clothing product detection and scanning device, including a base; It further includes a conveying mechanism, a detection mechanism, a scanning mechanism, a spraying mechanism, and a drying mechanism; The conveying mechanism is arranged on the top of the base. The conveying mechanism includes two support rods, a rotating component, and a plurality of hanging components; The detection mechanism is arranged on the top of the base. Six slide rails are arranged on the top of the base. The detection mechanism includes a metal detector and a pushing component. The metal detector is slidably arranged between two of the slide rails through two sliders, and the pushing component is arranged between the metal detector and two of the slide rails; The scanning mechanism is arranged on the top of the base. The scanning mechanism includes a transmission component and two clothing fabric scanners. The two clothing fabric scanners are respectively slidably arranged between the other four slide rails through four slide bars, and the transmission component is arranged between the metal detector and the two clothing fabric scanners; The spraying mechanism is arranged on the top of the base. The spraying mechanism includes a storage tank, an extraction component, and a plurality of atomizing nozzles. The storage tank is fixedly arranged on the top of the base. The plurality of atomizing nozzles are symmetrically arranged on the top of the base through two T-shaped plates, and the extraction component is arranged between the storage tank and the plurality of atomizing nozzles; The drying mechanism is arranged on the top of the base. The drying mechanism includes a drying table and a heating component. The drying table is arranged on the top of the base, and the heating component is arranged on the top of the drying table.

[0007] Furthermore, the rotating component includes a servo motor, a conveyor belt, and two pulleys. Each pulley is rotatably arranged on the top of a support rod through a hinge shaft. The conveyor belt is sleeved between the two pulleys. The servo motor is fixedly arranged on the top of one of the support rods, and its output end is fixedly connected to the end of one of the hinge shafts.

[0008] Furthermore, each suspension component includes a T-shaped rod and two electric grippers. The T-shaped rod is fixedly arranged on the outer wall of the conveyor belt. The two electric grippers are both fixedly arranged at the bottom end of the T-shaped rod away from the conveyor belt. Two rubber pads are symmetrically arranged on the outer wall of each electric gripper.

[0009] Furthermore, the pushing component includes a stepping motor, a rotating wheel, and a connecting rod. The stepping motor is fixedly arranged between two of the slide rails. The rotating wheel is fixedly arranged on its output end. The connecting rod is hinged between the turntable and the metal detector.

[0010] Furthermore, the transmission component includes a U-shaped frame, an L-shaped frame, a U-shaped rod, and a connecting block. The U-shaped frame is fixedly arranged between the metal detector and one of the garment fabric scanners. The connecting block is fixedly arranged between one end of the metal detector and the U-shaped rod. The L-shaped frame is fixedly arranged between the U-shaped rod and the other garment fabric scanner. The U-shaped rod is fixedly arranged between the end of the connecting block away from the metal detector and the end of the L-shaped frame away from the garment fabric scanner.

[0011] Furthermore, the extraction component includes a liquid suction pump, an extraction pipe, a delivery pipe, a shunt pipe, and an H-shaped pipe. The top of the storage tank is provided with a liquid outlet. The liquid suction pump is fixedly arranged on the top of the base. The extraction pipe is fixedly arranged between the liquid outlet and the input end of the liquid suction pump. Two H-shaped pipes are symmetrically arranged. The shunt pipe is fixedly arranged between the two H-shaped pipes. The delivery pipe is fixedly arranged between the output end of the liquid suction pump and the end of the shunt pipe away from the H-shaped pipe. A number of atomizing nozzles are respectively fixedly connected to the two H-shaped pipes. Each H-shaped pipe is fixedly connected to a T-shaped plate.

[0012] Furthermore, a through groove for the garment to pass through is arranged on the top of the drying table. The heating component includes a number of electric heating tubes. The number of electric heating tubes is symmetrically arranged inside the through groove.

[0013] Furthermore, a temperature sensor is inserted into the top of the drying table, and the detection end of the temperature sensor is inserted into the inside of the through groove.

[0014] Furthermore, an injection pipe is fixedly arranged on the top of the storage tank, and a sealing plug is inserted into the top of the injection pipe.

[0015] Furthermore, two feeding chutes are inclinedly arranged on the top of the base, and two collection boxes are arranged on the top of the base, and each feeding chute faces one collection box.

[0016] Advantages of the present invention: By designing the transmission assembly, namely the U-shaped frame, the L-shaped frame, the U-shaped rod and the connecting block, the present invention can drive two garment fabric scanners to scan and detect the patterns, sizes and colors of the garment synchronously while the metal detector vertically moves up and down to detect whether there are residual metal parts on the garment. Cooperating with the conveying mechanism, uninterrupted detection of garment products can be achieved, without the need to detect one by one through multiple devices and without frequent transfer of products, thus greatly improving the detection efficiency.

[0017] By designing the spraying mechanism, namely the storage tank, the extraction assembly and several atomizing nozzles, when the qualified garments after detection and scanning are conveyed between several atomizing nozzles, the controller cuts off the power supply of the servo motor to stop the rotation of the conveyor belt, and then the controller starts the liquid suction pump. Since the liquid outlet and the input end of the liquid suction pump are respectively fixedly connected to both ends of the extraction pipe, the output end of the liquid suction pump and the end of the shunt pipe far away from the H-shaped pipe are respectively fixedly connected to both ends of the conveying pipe, several atomizing nozzles are communicated through the H-shaped pipe, and the conveying pipe is fixedly connected to the H-shaped pipe. As a result, the liquid deodorant in the storage tank is sucked to several atomizing nozzles and then sprayed onto the surface of the garment by several atomizing nozzles to remove the odor on the garment and prevent harmful substances contained in the odor from causing adverse effects on the customer's body.

[0018] By designing the conveying mechanism, namely two support rods, the rotating assembly and several hanging assemblies, the present invention can hang a batch of garments through several hanging assemblies, and then drive the hanging assemblies to rotate through the rotating assembly to sequentially realize the feeding, broken needle detection, pattern, size and color scanning, odor removal and drying of the garments, without the need to detect one by one through multiple devices, enabling the device to have the effect of multi-function in one machine, and at the same time improving the intelligent level and function integration level of the device.

[0019] By designing the drying mechanism, namely the drying table and the heating assembly, when the garments after odor removal enter the through groove at the top of the drying table, the controller first cuts off the power supply of the servo motor to stop the conveyor belt, and then the controller starts several electric heating tubes, so as to heat the garments sprayed with the liquid deodorant through several electric heating tubes to achieve the drying effect, which is convenient for subsequent warehousing, avoids mildew during storage due to dampness, and plays a role in protecting the garment products.

[0020] Through two feeding chutes and two collection boxes, the present invention can temporarily store the garments with broken needles, broken screws or staples in one of the collection boxes, and at the same time can temporarily store the garments with patterns, sizes or colors not meeting the production standards in the other collection box, realizing the classification and screening of garments with different defects and their respective collection, facilitating subsequent workers to quickly identify and pick them up and rework in a timely manner, and avoiding further losses. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings in the embodiments of the present invention will be briefly introduced below.

[0022] Figure 1 Schematic three-dimensional structure of the present invention Figure 1 ; Figure 2 is Figure 1 the enlarged view of part A in Figure 3 is Figure 1 the enlarged view of part B in Figure 4 is Figure 1 the enlarged view of part C in Figure 5 Schematic three-dimensional structure of the present invention Figure 2 ; Figure 6 is Figure 5 the enlarged view of part D in Figure 7 is Figure 5 the enlarged view of part E in Figure 8 Side view of the present invention Figure 9 is Figure 8 the enlarged view of part F in Figure 10 Schematic three-dimensional structure diagram of the present invention excluding the garments Figure 11 is Figure 10 the enlarged view of part G in Figure 12 is Figure 10 the enlarged view of part H in In the figure: base 10, support rod 11, slide rail 12, metal detector 13, clothing fabric scanner 14, storage box 15, atomizing nozzle 16, drying table 17, servo motor 18, conveyor belt 19, pulley 20, T-shaped rod 21, electric gripper 22, rubber pad 23, stepping motor 24, rotating wheel 25, connecting rod 26, U-shaped frame 27, L-shaped frame 28, U-shaped rod 29, connecting block 30, liquid suction pump 31, extraction pipe 32, delivery pipe 33, shunt pipe 34, H-shaped pipe 35, through slot 36, electric heating pipe 37, temperature sensor 38, injection pipe 39, sealing plug 40, feeding chute 41, collection box 42. Detailed implementation manner

[0023] The technical solution of the present invention will be further described below in conjunction with the accompanying drawings and through specific implementation manners.

[0024] Among them, the accompanying drawings are only for illustrative purposes, showing only schematic diagrams, not physical diagrams, and should not be construed as a limitation to the present invention; in order to better illustrate the embodiments of the present invention, some components in the drawings will be omitted, enlarged or reduced, and do not represent the dimensions of actual products.

[0025] Referring to Figures 1 to 12 As shown, a clothing product detection and scanning device includes a base 10; It further includes a conveying mechanism, a detection mechanism, a scanning mechanism, a spraying mechanism and a drying mechanism; The conveying mechanism is arranged on the top of the base 10, and the conveying mechanism includes two support rods 11, a rotating assembly and a plurality of hanging assemblies; The detection mechanism is arranged on the top of the base 10. Six slide rails 12 are arranged on the top of the base 10. The detection mechanism includes a metal detector 13 and a pushing assembly. The metal detector 13 is slidably arranged between two of the slide rails 12 through two sliders, and the pushing assembly is arranged between the metal detector 13 and two of the slide rails 12; The scanning mechanism is arranged on the top of the base 10. The scanning mechanism includes a transmission assembly and two clothing fabric scanners 14. The two clothing fabric scanners 14 are respectively slidably arranged between the other four slide rails 12 through four slide bars, and the transmission assembly is arranged between the metal detector 13 and the two clothing fabric scanners 14; The spraying mechanism is arranged on the top of the base 10. The spraying mechanism includes a storage box 15, an extraction assembly and a plurality of atomizing nozzles 16. The storage box 15 is fixedly arranged on the top of the base 10. The plurality of atomizing nozzles 16 are symmetrically arranged on the top of the base 10 through two T-shaped plates, and the extraction assembly is arranged between the storage box 15 and the plurality of atomizing nozzles 16; The drying mechanism is arranged on the top of the base 10. The drying mechanism includes a drying table 17 and a heating assembly. The drying table 17 is arranged on the top of the base 10, and the heating assembly is arranged on the top of the drying table 17.

[0026] Referring to Figures 1 to 12 as shown in the figure, the rotating assembly includes a servo motor 18, a conveyor belt 19 and two pulleys 20. Each pulley 20 is rotatably arranged at the top of a support rod 11 through a hinge shaft. The conveyor belt 19 is sleeved between the two pulleys 20. The servo motor 18 is fixedly arranged at the top of one of the support rods 11, and its output end is fixedly connected to the end of one of the hinge shafts. When the clothing is hung, the servo motor 18 is started by the controller, so that its output end rotates counterclockwise. Since its output end is fixedly connected to the end of one of the hinge shafts, each pulley 20 is rotatably connected to a support rod 11 through a hinge shaft, and the two pulleys 20 are connected by the conveyor belt 19. Each T-shaped rod 21 is fixedly connected to the conveyor belt 19, and then the rotation of the output end drives the clothing to be conveyed towards the end close to the metal detector 13.

[0027] Referring to Figures 1 to 12 as shown in the figure, each hanging assembly includes a T-shaped rod 21 and two electric grippers 22. The T-shaped rod 21 is fixedly arranged on the outer wall of the conveyor belt 19. The two electric grippers 22 are both fixedly arranged at the bottom end of the T-shaped rod 21 away from the conveyor belt 19. Two rubber pads 23 are symmetrically arranged on the outer wall of each electric gripper 22. The device is equipped with a controller. When performing the detection and scanning work of clothing products, first place the clothing vertically between the two electric grippers 22, and then start the two electric grippers 22 through the controller to clamp the two ends of the clothing, realizing the hanging of the clothing. The rubber pads 23 play a protective role to prevent the clothing from being damaged by direct clamping of the electric grippers 22.

[0028] Referring to Figures 1 to 12 as shown in the figure, the pushing assembly includes a stepping motor 24, a runner 25 and a connecting rod 26. The stepping motor 24 is fixedly arranged between two of the slide rails 12. The runner 25 is fixedly arranged on its output end. The connecting rod 26 is hinged between the turntable and the metal detector 13. When the clothing is conveyed to the side of the metal detector 13, the servo motor 18 is powered off by the controller, so that the conveyor belt 19 and the clothing on it stop moving forward. Then the stepping motor 24 is started by the controller to make its output end rotate. Since its output end is fixedly connected to the runner 25, the metal detector 13 is slidably connected to two of the slide rails 12 through two sliders. The runner 25 and the metal detector 13 are respectively hinged to both ends of the connecting rod 26, and then drive the metal detector to move vertically up and down to detect the whole clothing to check whether there are broken needles, broken screws or staples.

[0029] Referring to Figures 1 to 12As shown in the figure, the transmission assembly includes a U-shaped frame 27, an L-shaped frame 28, a U-shaped rod 29, and a connecting block 30. The U-shaped frame 27 is fixedly arranged between the metal detector 13 and one of the garment fabric scanners 14. The connecting block 30 is fixedly arranged between one end of the metal detector 13 and the U-shaped rod 29. The L-shaped frame 28 is fixedly arranged between the U-shaped rod 29 and the other garment fabric scanner 14. The U-shaped rod 29 is fixedly arranged between the end of the connecting block 30 away from the metal detector 13 and the end of the L-shaped frame 28 away from the garment fabric scanner 14. While the metal detector 13 moves vertically up and down, the metal detector 13 and one of the garment fabric scanners 14 are respectively fixedly connected to both ends of the U-shaped frame 27. One end of the metal detector 13 and the U-shaped rod 29 are respectively fixedly connected to both ends of the connecting block 30. The L-shaped frame 28 is fixedly designed between the U-shaped rod 29 and the other garment fabric scanner 14. The end of the connecting block 30 away from the metal detector 13 and the end of the L-shaped frame 28 away from the garment fabric scanner 14 are respectively fixedly connected to both ends of the U-shaped rod 29, thereby driving the two garment fabric scanners 14 to move vertically up and down to scan the patterns, sizes, and colors on both sides of the garment.

[0030] Refer to Figures 1 to 12 As shown in the figure, the extraction assembly includes a liquid suction pump 31, an extraction pipe 32, a delivery pipe 33, a shunt pipe 34, and an H-shaped pipe 35. The top of the storage tank 15 is provided with a liquid outlet. The liquid suction pump 31 is fixedly arranged on the top of the base 10. The extraction pipe 32 is fixedly arranged between the liquid outlet and the input end of the liquid suction pump 31. Two H-shaped pipes 35 are symmetrically arranged. The shunt pipe 34 is fixedly arranged between the two H-shaped pipes 35. The delivery pipe 33 is fixedly arranged between the output end of the liquid suction pump 31 and the end of the shunt pipe 34 away from the H-shaped pipe 35. A number of atomizing nozzles 16 are respectively fixedly connected to the two H-shaped pipes 35. Each H-shaped pipe 35 is fixedly connected to a T-shaped plate. When the qualified garments after detection and scanning are conveyed between a number of atomizing nozzles 16, the controller cuts off the power supply of the servo motor 18 to stop the rotation of the conveyor belt 19, and then the controller starts the liquid suction pump 31. Since the liquid outlet and the input end of the liquid suction pump 31 are respectively fixedly connected to both ends of the extraction pipe 32, the output end of the liquid suction pump 31 and the end of the shunt pipe 34 away from the H-shaped pipe 35 are respectively fixedly connected to both ends of the delivery pipe 33, a number of atomizing nozzles 16 are connected through the H-shaped pipes 35, and the delivery pipe 33 is fixedly connected to the H-shaped pipes 35, so that the liquid deodorant in the storage tank 15 is sucked to a number of atomizing nozzles 16 and then sprayed onto the surface of the garments by the number of atomizing nozzles 16 to remove the odor on the garments.

[0031] Refer to Figures 1 to 12As shown in the figure, a through groove 36 for the passage of clothing is provided at the top of the drying table 17. The heating assembly includes a plurality of electric heating tubes 37, and the plurality of electric heating tubes 37 are symmetrically arranged inside the through groove 36. When the clothing after deodorization enters the through groove 36 at the top of the drying table 17, first, the controller cuts off the power supply to the servo motor 18 to stop the conveyor belt 19, and then the controller starts the plurality of electric heating tubes 37, so as to heat the clothing sprayed with the liquid deodorant through the plurality of electric heating tubes 37 to achieve the drying effect and facilitate subsequent warehousing.

[0032] Refer to Figures 1 to 12 As shown in the figure, a temperature sensor 38 is inserted at the top of the drying table 17, and the detection end of the temperature sensor 38 is inserted into the inside of the through groove 36. The temperature sensor 38 monitors the heating temperature inside the through groove 36 at the top of the drying table 17 in real time to prevent the clothing from being burned due to too high heating temperature, and plays a role in protecting the clothing while drying.

[0033] Refer to Figures 1 to 12 As shown in the figure, an injection pipe 39 is fixedly provided at the top of the storage box 15, and a sealing plug 40 is inserted at the top of the injection pipe 39. When the liquid deodorant inside the storage box 15 is exhausted, the sealing plug 40 is manually pulled out from the injection pipe 39, and then the new liquid deodorant is poured into the inside of the storage box 15 from the injection pipe 39, and then the sealing plug 40 is inserted into the inside of the injection pipe 39 to realize the filling of the liquid deodorant and facilitate the smooth progress of subsequent deodorization work.

[0034] Refer to Figures 1 to 12 As shown in the figure, two feeding chutes 41 are inclinedly arranged at the top of the base 10, and two collecting boxes 42 are provided at the top of the base 10. Each feeding chute 41 faces one collecting box 42. When it is detected that there are metal residues such as broken needles in the clothing, the clothing is continuously conveyed by the conveyor belt 19. When it is conveyed above one of the feeding chutes 41 close to the metal detector 13, the controller releases the two electric grippers 22 clamping the clothing, so as to place the clothing on the feeding chute 41 beside the metal detector 13, and then it is sent into the inside of the collecting box 42 below through the feeding chute 41. When it is detected that the pattern, size or color of the clothing is inconsistent with the standard product picture pre-stored in the controller, the clothing is continuously conveyed by the conveyor belt 19. When it is conveyed above one of the feeding chutes 41 close to the clothing fabric scanner 14, the controller releases the two electric grippers 22 clamping the clothing, so as to place the clothing on the feeding chute 41 beside the clothing fabric scanner 14, and then it is sent into the inside of the collecting box 42 below through the feeding chute 41, realizing the classification screening and respective collection of clothing with different defects and facilitating timely rework.

[0035] Working principle of the present invention: This device is equipped with a controller. When performing the detection and scanning work of clothing products, first place the clothing vertically between the two electric grippers 22, and then start the two electric grippers 22 through the controller to clamp the two ends of the clothing, realizing the suspension of the clothing. The rubber pad 23 plays a protective role to prevent the clothing from being damaged due to direct clamping by the electric grippers 22.

[0036] After the clothing is suspended, start the servo motor 18 through the controller, so that its output end rotates counterclockwise. Since the output end is fixedly connected to the end of one of the hinge shafts, each pulley 20 is rotatably connected to a support rod 11 through a hinge shaft, and the two pulleys 20 are connected by a conveyor belt 19. Each T-shaped rod 21 is fixedly connected to the conveyor belt 19, and then drive the clothing to be conveyed towards the end close to the metal detector 13 through the rotation of the output end.

[0037] When the clothing is conveyed to the side of the metal detector 13, cut off the power supply of the servo motor 18 through the controller, so that the conveyor belt 19 and the clothing on it stop moving forward. Then start the stepping motor 24 through the controller to make its output end rotate. Since the output end is fixedly connected to the runner 25, the metal detector 13 is slidably connected to two of the slide rails 12 through two sliders. The runner 25 and the metal detector 13 are respectively hinged to both ends of the connecting rod 26, and then drive the metal detector to lift vertically to detect the entire clothing to check whether there are broken needles, broken screws or staples.

[0038] While the metal detector 13 is lifting vertically, the metal detector 13 and one of the clothing fabric scanners 14 are respectively fixedly connected to both ends of the U-shaped frame 27. One end of the metal detector 13 and the U-shaped rod 29 are respectively fixedly connected to both ends of the connecting block 30. The L-shaped frame 28 is fixedly designed between the U-shaped rod 29 and the other clothing fabric scanner 14. The end of the connecting block 30 away from the metal detector 13 and the end of the L-shaped frame 28 away from the clothing fabric scanner 14 are respectively fixedly connected to both ends of the U-shaped rod 29, and then drive the two clothing fabric scanners 14 to lift vertically to scan the patterns, sizes and colors of both sides of the clothing.

[0039] When metal residues such as broken needles are detected in the clothing, the clothing is continuously conveyed by the conveyor belt 19. When it is conveyed above one of the feeding chutes 41 close to the metal detector 13, the controller releases the two electric grippers 22 clamping the clothing, so as to place the clothing on the feeding chute 41 beside the metal detector 13, and then it is sent into the interior of the collection box 42 below through the feeding chute 41. When it is detected that the pattern, size or color of the clothing is inconsistent with the standard product picture pre-stored in the controller, the clothing is continuously conveyed by the conveyor belt 19. When it is conveyed above one of the feeding chutes 41 close to the clothing fabric scanner 14, the controller releases the two electric grippers 22 clamping the clothing, so as to place the clothing on the feeding chute 41 beside the clothing fabric scanner 14, and then it is sent into the interior of the collection box 42 below through the feeding chute 41, realizing the screening of the clothing and the classified collection of unqualified clothing, which is convenient for timely rework.

[0040] When the qualified clothing after detection and scanning is conveyed between several atomizing nozzles 16, the controller cuts off the power supply of the servo motor 18, so as to stop the rotation of the conveyor belt 19. Then the controller starts the liquid suction pump 31. Since the liquid outlet and the input end of the liquid suction pump 31 are respectively fixedly connected to both ends of the extraction pipe 32, the output end of the liquid suction pump 31 and one end of the shunt pipe 34 far from the H-shaped pipe 35 are respectively fixedly connected to both ends of the conveying pipe 33, and several atomizing nozzles 16 are communicated through the H-shaped pipe 35, and the conveying pipe 33 is fixedly connected to the H-shaped pipe 35. Furthermore, the liquid deodorant in the storage tank 15 is sucked to several atomizing nozzles 16, and then is sprayed onto the surface of the clothing by several atomizing nozzles 16 to remove the odor on the clothing.

[0041] When the clothing after deodorization enters the through groove 36 at the top of the drying table 17, first the controller cuts off the power supply of the servo motor 18 to stop the conveyor belt 19, and then the controller starts several electric heating tubes 37, so as to heat the clothing sprayed with the liquid deodorant by several electric heating tubes 37 to achieve the drying effect, which is convenient for subsequent warehousing.

[0042] When the liquid deodorant in the storage tank 15 is exhausted, the sealing plug 40 is manually pulled out of the injection pipe 39, and then the new liquid deodorant is poured into the interior of the storage tank 15 from the injection pipe 39, and then the sealing plug 40 is inserted into the interior of the injection pipe 39 to realize the filling of the liquid deodorant, which is convenient for the subsequent smooth progress of the deodorization work.

[0043] The temperature sensor 38 continuously monitors the heating temperature in the through groove 36 at the top of the drying table 17 to prevent the clothing from being burned due to too high heating temperature, and plays a role in protecting the clothing while drying.

Claims

1. A clothing product detection and scanning device, including a base (10), characterized in that: It further includes a conveying mechanism, a detection mechanism, a scanning mechanism, a spraying mechanism and a drying mechanism; The conveying mechanism includes two support rods (11), a rotating assembly and a plurality of hanging assemblies; Six slide rails (12) are provided on the top of the base (10). The detection mechanism includes a metal detector (13) and a pushing assembly. The metal detector (13) is slidably arranged between two of the slide rails (12) through two sliders, and the pushing assembly is arranged between the metal detector (13) and two of the slide rails (12); The scanning mechanism includes a transmission assembly and two clothing fabric scanners (14). The two clothing fabric scanners (14) are slidably arranged between four other slide rails (12) through four slide bars respectively, and the transmission assembly is arranged between the metal detector (13) and the two clothing fabric scanners (14); The spraying mechanism includes a storage tank (15), an extraction assembly and a plurality of atomizing nozzles (16). The storage tank (15) is fixedly arranged on the top of the base (10). The plurality of atomizing nozzles (16) are symmetrically arranged on the top of the base (10) through two T-shaped plates, and the extraction assembly is arranged between the storage tank (15) and the plurality of atomizing nozzles (16); The drying mechanism is arranged on the top of the base (10), and the drying mechanism includes a drying table (17) and a heating assembly.

2. The clothing product detection and scanning device according to claim 1, characterized in that: The rotating assembly includes a servo motor (18), a conveyor belt (19) and two belt pulleys (20). Each belt pulley (20) is rotatably arranged on the top of a support rod (11) through a hinge shaft. The conveyor belt (19) is sleeved between the two belt pulleys (20). The servo motor (18) is fixedly arranged on the top of one of the support rods (11), and its output end is fixedly connected to the end of one of the hinge shafts.

3. The clothing product detection and scanning device according to claim 2, characterized in that: Each hanging assembly includes a T-shaped rod (21) and two electric grippers (22). The T-shaped rod (21) is fixedly arranged on the outer wall of the conveyor belt (19). The two electric grippers (22) are both fixedly arranged at the bottom end of the T-shaped rod (21) far from the conveyor belt (19). Two rubber pads (23) are symmetrically arranged on the outer wall of each electric gripper (22).

4. The clothing product detection and scanning device according to claim 3, characterized in that: The pushing assembly includes a stepping motor (24), a runner (25) and a connecting rod (26). The stepping motor (24) is fixedly arranged between two of the slide rails (12). The runner (25) is fixedly arranged on its output end. The connecting rod (26) is hinged between the turntable and the metal detector (13).

5. The clothing product detection and scanning device according to claim 4, characterized in that: The transmission assembly includes a U-shaped frame (27), an L-shaped frame (28), a U-shaped rod (29) and a connecting block (30). The U-shaped frame (27) is fixedly arranged between the metal detector (13) and one of the clothing fabric scanners (14). The connecting block (30) is fixedly arranged between one end of the metal detector (13) and the U-shaped rod (29). The L-shaped frame (28) is fixedly arranged between the U-shaped rod (29) and the other clothing fabric scanner (14). The U-shaped rod (29) is fixedly arranged between the end of the connecting block (30) far from the metal detector (13) and the end of the L-shaped frame (28) far from the clothing fabric scanner (14).

6. The clothing product detection and scanning device according to claim 5, wherein: The extraction component includes a liquid suction pump (31), an extraction pipe (32), a delivery pipe (33), a shunt pipe (34) and an H-shaped pipe (35). The top of the storage tank (15) is provided with a liquid outlet. The liquid suction pump (31) is fixedly arranged on the top of the base (10). The extraction pipe (32) is fixedly arranged between the liquid outlet and the input end of the liquid suction pump (31). Two H-shaped pipes (35) are symmetrically arranged. The shunt pipe (34) is fixedly arranged between the two H-shaped pipes (35). The delivery pipe (33) is fixedly arranged between the output end of the liquid suction pump (31) and the end of the shunt pipe (34) away from the H-shaped pipe (35). A number of atomizing nozzles (16) are respectively fixedly connected to the two H-shaped pipes (35). Each H-shaped pipe (35) is fixedly connected to a T-shaped plate.

7. An apparel product detection and scanning device according to claim 6, characterized in that: The top of the drying table (17) is provided with a through groove (36) for the clothing to pass through. The heating component includes a number of electric heating tubes (37). The number of electric heating tubes (37) is symmetrically arranged inside the through groove (36).

8. The clothing product detection and scanning device according to claim 7, characterized in that: A temperature sensor (38) is inserted into the top of the drying table (17). The detection end of the temperature sensor (38) is inserted into the inside of the through groove (36).

9. An apparel product detection and scanning device according to claim 8, characterized in that: The top of the storage tank (15) is fixedly provided with an injection pipe (39). The top of the injection pipe (39) is inserted with a sealing plug (40).

10. The clothing product detection and scanning device according to claim 9, characterized in that: Two feeding chutes (41) are obliquely arranged on the top of the base (10). Two collection boxes (42) are arranged on the top of the base (10). Each feeding chute (41) faces a collection box (42).

Citation Information

Patent Citations

  • Clothes deodorization and purification closet

    CN106868741A

  • Odor eliminating device in garment dyeing production process

    CN108754948A

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