Garment screening and sorting equipment
By using components such as mounting frames, transmission rods, and detectors in the hanging system, automated screening and sorting of garments is achieved, solving the problem of disordered order of clothes and trousers and improving transportation efficiency.
Patent Information
- Application Number
- CN202423254225.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-27
AI Technical Summary
In the hanging system, the disordered order of clothes and trousers on the transport track leads to wasted time in the use of sorting devices, affecting the efficiency of clothing transportation.
It employs components such as mounting frame, transmission rod, transmission assembly, first feeding rod, first discharging rod, and sorting device. Through transfer assembly and detector, it achieves automated screening and sorting. Based on the RFID chip identification of the hanger type, it automatically adjusts the order of tops and pants.
It improves the efficiency of clothing transportation, reduces waiting time when sorting is not required, and realizes automated material sorting and sorting of tops and pants.
Smart Images

Figure CN223521775U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of clothing screening and sorting equipment, and particularly relates to a clothing screening and sorting equipment. BACKGROUND
[0002] In the actual application of the hanging system, in order to improve the production efficiency of the hanging assembly line, sometimes a set of clothes including a shirt and trousers is produced on one assembly line, and the shirt and the trousers are hung on clothes racks respectively, and each clothes rack is provided with an RFID chip.
[0003] In order to facilitate the pairing of the shirt and the trousers, the shirt and the trousers are arranged adjacently. Since the shirt and the trousers are made by two different processes, the shirt and the trousers are transported to the transportation track at different times, so that the order of the shirt and the trousers on the transportation track is disordered. Therefore, the processed shirt and the trousers need to be moved from the transportation track to the sorting device for sorting. When the clothes produced by the assembly line do not need to be sorted, the part of the clothes entering the sorting device will waste time and affect the transportation efficiency of the clothes. CONTENT OF THE UTILITY MODEL
[0004] The purpose of the present application is to provide a clothing screening and sorting equipment in order to improve the transportation efficiency of the clothes.
[0005] The clothing screening and sorting equipment provided by the present application adopts the following technical scheme: a mounting frame is connected with a transmission rod, a transmission assembly, a first feeding rod, a sorting device and a first discharging rod. The transmission assembly is used to drive the clothes rack to move along the transmission rod. The first feeding rod and the first discharging rod are both arranged obliquely. The feeding end of the first feeding rod is higher than the discharging end of the first feeding rod. The feeding end of the first feeding rod is located between the discharging end of the first feeding rod and the transmission rod. The feeding end of the first discharging rod is higher than the discharging end of the first discharging rod. The discharging end of the first discharging rod is located between the feeding end of the first discharging rod and the transmission rod. The discharging end of the first feeding rod and the feeding end of the first discharging rod are both connected with the sorting device. The feeding end of the first feeding rod is connected with a first transfer assembly. The first transfer assembly is used to move the clothes rack on the transmission rod to the first feeding rod. The discharging end of the first discharging rod is connected with a second transfer assembly. The second transfer assembly is used to move the clothes rack on the first discharging rod to the transmission rod.
[0006] When the batch of clothes needs to be sorted, the first transferring assembly moves the hanger on the transmission rod to the first feeding rod, the hanger on the first feeding rod is moved to the sorting device under the action of gravity, the sorting device sorts the hanger, and the sorted hanger is moved to the first discharging rod, and the second transferring assembly moves the hanger on the first discharging rod to the transmission rod, and the transmission assembly moves the sorted hanger to the next station. When the batch of clothes does not need to be sorted, the first transferring assembly is separated from the transmission rod, and the transmission assembly directly moves the batch of clothes to the next station, thereby improving the efficiency of transporting clothes.
[0007] Optionally, the first transferring assembly comprises a transferring rod rotatably connected to the first feeding rod and a first driving member for driving the transferring rod to rotate, the transferring rod is capable of abutting against the transmission rod, and the first driving member is connected to the first feeding rod.
[0008] By adopting the above technical scheme, when the hanger needs to enter the sorting device, the first driving member drives the transferring rod to rotate, so that the transferring rod abuts against the transmission rod. During the movement of the hanger driven by the transmission assembly, the hanger moves to the transferring rod and is moved to the first feeding rod under the action of gravity. When the hanger does not need to enter the sorting device, the first driving member drives the transferring rod to rotate, the transferring rod is separated from the transmission rod, and the hanger directly moves along the transmission rod.
[0009] Optionally, the sorting device comprises a feeding mechanism connected to the mounting frame, a connecting rod, a second discharging rod, a discharging mechanism, a storage rod and a controller, the feeding mechanism is used for moving the hanger on the first feeding rod to the connecting rod, the discharging mechanism is used for moving the hanger on the second discharging rod to the first discharging rod, the connecting rod is connected with a first detector, the connecting rod is obliquely arranged, the feeding end of the connecting rod is higher than the discharging end of the connecting rod, the discharging end of the connecting rod is connected with a distribution assembly, the distribution assembly is used for moving the hanger to the second discharging rod or the storage rod, the storage rod is connected with a first lifting assembly, the first lifting assembly is used for moving the hanger from the storage rod to the feeding end of the connecting rod, and the first detector, the distribution assembly and the first lifting assembly are electrically connected with the controller.
[0010] By adopting the technical scheme, the feeding mechanism moves the hanger on the first feeding rod to the connecting rod, the hanger is moved along the length direction of the connecting rod under the influence of gravity, the hanger passes through the first detector in the moving process, the first detector detects the RFID chip on the hanger, and identifies whether the clothes on the hanger are shirts or trousers. The first detector outputs a signal to the controller, the controller receives the signal and outputs a signal to the distribution assembly, and the distribution assembly drives the hanger to move to the second feeding rod or the storage rod. When the second feeding rod and the connecting rod are both full of shirts, the distribution assembly moves the shirts on the connecting rod to the storage rod, and when the trousers are moved to the connecting rod, the distribution assembly moves the trousers to the second feeding rod. Subsequently, the lifting assembly moves the shirts on the storage rod to the feeding end of the connecting rod, and the shirts are moved to the second feeding rod by the distribution assembly, so that the shirts and the trousers are moved to the first feeding rod in sequence. The shirts and the trousers are conveniently adjusted in sequence by adopting automatic screening.
[0011] Optionally, the distribution assembly comprises a distribution rod rotatably connected to the connecting rod and a second driving member for driving the distribution rod to rotate, the second driving member is connected to the connecting rod, and the second feeding rod and the storage rod are capable of abutting against the distribution rod, and the feeding end of the second feeding rod and the feeding end of the storage rod are both lower than the discharging end of the connecting rod.
[0012] By adopting the technical scheme, the first detector outputs a signal to the controller, the controller receives the signal and outputs a signal to the first driving member, and the first driving member drives the distribution rod to rotate, so that the distribution rod abuts against the second feeding rod or the storage rod. The hanger on the distribution rod is moved to the second feeding rod or the storage rod under the influence of gravity, so as to complete the distribution of the shirts and the trousers.
[0013] Optionally, the distribution rod is provided with a positioning block, the second feeding rod is provided with a positioning groove for cooperating with the positioning block, and when the positioning block is clamped into the positioning groove, the inclination angle of the distribution rod is the same as that of the second feeding rod.
[0014] By adopting the technical scheme, in the rotating process of the distribution rod, the positioning block is clamped into the positioning groove, the inner wall of the positioning groove limits the rotation of the positioning block, thereby limiting the rotation of the distribution rod, so that the distribution rod is accurately rotated to the corresponding position. The inclination angle of the distribution rod is the same as that of the second feeding rod, thereby improving the stability of the hanger sliding from the distribution rod to the second feeding rod.
[0015] Optionally, the mounting frame is connected with a first sequential discharging assembly, the first sequential discharging assembly corresponds to the connecting rod, and the first sequential discharging assembly is located between the first detector and the distribution assembly.
[0016] By adopting the technical scheme, when the hanger passes through the first detector, the first sequential unloading assembly limits the movement of the clothes, and provides time for the rotation of the distribution rod. The first sequential unloading assembly enables the hangers to be sequentially unloaded, prevents other hangers from affecting the movement of the hanger when the hanger passes through the distribution rod, and facilitates the movement of the hanger to the second discharge rod or the storage rod.
[0017] Optionally, the first sequential unloading assembly comprises a connecting shaft connected to the mounting frame, a sequential unloading plate rotatably connected to the connecting shaft, and a third driving member for driving the sequential unloading plate to rotate, the third driving member being connected to the mounting frame, the sequential unloading plate being provided with an abutting end and a blocking end, the connecting shaft being located between the abutting end and the blocking end, a receiving groove being formed between the abutting end and the blocking end, and the third driving member being electrically connected to the controller.
[0018] By adopting the technical scheme, the hangers slide along the connecting rod until the hanger closest to the sequential unloading plate abuts against the blocking end, i.e., the hanger is clamped into the receiving groove. The second driving member drives the sequential unloading plate to rotate about the axis of the connecting shaft, so that the receiving groove faces the distribution rod. During the rotation of the sequential unloading plate, the abutting end abuts against the second hanger closest to the sequential unloading plate, thereby separating the second hanger closest to the sequential unloading plate from the hanger located in the receiving groove. The blocking end is separated from the hanger located in the receiving groove, and the hanger located in the receiving groove moves in the direction of the distribution rod under the influence of gravity, thereby achieving the sequential unloading of the hangers.
[0019] Optionally, the mounting frame is connected with a first lifting rod, one end of the first lifting rod is connected with the discharge end of the storage rod, the other end of the first lifting rod is connected with the feeding end of the connecting rod, the storage rod is inclined, the feeding end of the storage rod is higher than the discharge end of the storage rod, the mounting frame is connected with a second detector corresponding to the storage rod, and the mounting frame is connected with a second sequential unloading assembly, the second sequential unloading assembly being located between the second detector and the first lifting rod, and the second detector and the second sequential unloading assembly being electrically connected to the controller.
[0020] By adopting the technical scheme, after the hanger moves to the storage rod, the hanger passes through the second detector and abuts against the second sequential unloading assembly. The second detector detects the RFID chip on the hanger. When the upper clothes or trousers on the storage rod are needed, the second sequential unloading assembly moves the hangers on the storage rod to the first lifting assembly, and the second sequential unloading assembly prevents other hangers from interfering with the operation of the first lifting assembly. The first lifting assembly moves the hangers on the storage rod to the connecting rod, and the hangers are screened again through the first detector and the distribution rod, thereby facilitating the adjustment of the order of the upper clothes and the trousers.
[0021] Optionally, the first lifting assembly comprises a lifting plate slidably connected to the mounting frame and a driving structure for driving the lifting plate to slide towards or away from the storage rod, the driving structure is connected to the mounting frame, the lifting plate is arranged obliquely, and when the lifting plate lifts the clothes rack, the end of the lifting plate away from the first lifting rod is higher than the end of the lifting plate close to the first lifting rod.
[0022] By adopting the above technical scheme, when the clothes rack moves to the feeding end of the first lifting rod, the driving structure drives the lifting plate to slide towards the connecting rod, the lifting plate abuts against the clothes rack and drives the clothes rack to slide along the first lifting rod in the moving process of the lifting plate, the clothes rack abuts against the first lifting rod in the sliding process of the clothes rack, the first lifting rod plays a guiding and limiting role on the sliding of the clothes rack, and the stability of the sliding of the clothes rack is improved. When the clothes rack is separated from the first lifting rod, the clothes rack moves to the connecting rod along the lifting plate under the action of gravity, so that the clothes rack is moved from the storage rod to the connecting rod.
[0023] Optionally, the driving structure comprises a conveying belt, two rotating discs rotatably connected to the mounting frame, and a fourth driving member for driving one of the rotating discs to rotate, the conveying belt is sleeved on the two rotating discs, the lifting plate is connected to the conveying belt, the fourth driving member is connected to the mounting frame, and the fourth driving member is electrically connected to the controller.
[0024] By adopting the above technical scheme, the fourth driving member drives one of the rotating discs to rotate, the rotating disc drives the conveying belt and the other rotating disc to rotate, and the lifting plate moves with the rotation of the conveying belt, so that the lifting plate slides towards or away from the connecting plate.
[0025] To sum up, the present application has at least one of the following beneficial technical effects:
[0026] 1. When the batch of clothes does not need to be sorted, the first transfer assembly is separated from the transmission rod, and the transmission assembly directly transports the batch of clothes to the next station, thereby improving the efficiency of the clothes transportation.
[0027] 2. The first detector outputs a signal to the controller, the controller receives the signal and outputs a signal to the first driving member, the first driving member drives the distribution rod to rotate, so that the distribution rod abuts against the second discharge rod or the storage rod. The clothes rack on the distribution rod moves to the second discharge rod or the storage rod under the action of gravity, thereby completing the distribution of the shirts and the trousers. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 is one of the overall structure schematic diagrams of the embodiments of the present application, and shows the first feeding rod.
[0029] Figure 2 isFigure 1 is an enlarged view of area A of
[0030] Figure 3 is a second overall structure schematic view of an embodiment of the present application, showing a first discharge rod.
[0031] Figure 4 is one of the omission views of an embodiment of the present application, showing a second driving member.
[0032] Figure 5 is an enlarged view of area B of Figure 4
[0033] Figure 6 is a second omission view of an embodiment of the present application, showing a second sequential discharging assembly.
[0034] Figure 7 is a second partial structure schematic view of an embodiment of the present application, showing a first lifting assembly.
[0035] Figure 8 is an enlarged view of area C of Figure 7
[0036] BRIEF DESCRIPTION OF THE DRAWINGS 1, mounting frame; 11, transmission rod; 12, first detector; 13, second detector; 14, second sequential discharging assembly; 2, first feeding rod; 21, first transfer assembly; 211, transfer rod; 212, first driving member; 3, sorting device; 31, feeding mechanism; 311, second lifting rod; 312, second lifting assembly; 313, second feeding rod; 314, third sequential discharging assembly; 315, third transfer assembly; 32, connecting rod; 33, second discharge rod; 331, positioning groove; 34, first lifting rod; 35, discharging mechanism; 351, third lifting rod; 352, third lifting assembly; 353, fourth sequential discharging assembly; 36, storage rod; 37, distributing assembly; 371, distributing rod; 3711, positioning block; 372, second driving member; 4, first discharge rod; 41, second transfer assembly; 5, first sequential discharging assembly; 51, connecting shaft; 52, sequential discharging plate; 521, abutting end; 522, blocking end; 523, containing groove; 53, third driving member; 6, first lifting assembly; 61, lifting plate; 62, driving structure; 621, conveying belt; 622, rotating disc; 6221, rotating groove; 623, fourth driving member. DETAILED DESCRIPTION
[0037] The following will be described in detail in combination with the accompanying drawings. Figure 1 - the accompanying drawings Figure 8 The present application will be described in further detail.
[0038] The embodiment of the present application discloses a clothing screening and sorting device.
[0039] As Figure 1 shown, comprising a mounting frame 1, the mounting frame 1 is connected with a transmission rod 11, a transmission assembly (not shown in the figure), a first feeding rod 2, a sorting device 3, a first discharging rod 4 and a controller (not shown in the figure). The transmission rod 11 is parallel to the horizontal plane, the transmission assembly is used to drive the clothes hanger to slide along the transmission rod 11, the transmission assembly is the prior art, the transmission assembly comprises a transmission belt, two transmission discs rotatably connected to the mounting frame 1 and a motor used to drive one of the transmission discs to rotate, the motor is fixedly connected to the mounting frame 1, one of the transmission discs is fixedly connected to the output end of the motor, the transmission belt is sleeved on the two transmission discs, and the transmission belt is fixedly connected with a plurality of abutting plates abutting against the clothes hanger at intervals.
[0040] As shown in Figure 1 and Figure 2 , the first feeding rod 2 and the first discharging rod 4 are arranged obliquely, the feeding end of the first feeding rod 2 is higher than the discharging end of the first feeding rod 2, and the feeding end of the first feeding rod 2 is located between the discharging end of the first feeding rod 2 and the transmission rod 11. The feeding end of the first feeding rod 2 is connected with a first transfer assembly 21, the first transfer assembly 21 is used to move the clothes hanger on the transmission rod 11 to the first feeding rod 2, the first transfer assembly 21 comprises a transfer rod 211 rotatably connected to the first feeding rod 2 and a first driving member 212 used to drive the transfer rod 211 to rotate, the first driving member 212 is a pneumatic cylinder, the signal output end of the controller is connected with the signal input end of the first driving member 212, the first driving member 212 is rotatably connected with the first feeding rod 2, the output end of the first driving member 212 is rotatably connected with the transfer rod 211, and the transfer rod 211 can abut against the transmission rod 11 in the process of rotation. The feeding end of the first discharging rod 4 is higher than the discharging end of the first discharging rod 4, and the discharging end of the first discharging rod 4 is located between the feeding end of the first discharging rod 4 and the transmission rod 11. The discharging end of the first discharging rod 4 is connected with a second transfer assembly 41, the second transfer assembly 41 is used to move the clothes hanger on the first discharging rod 4 to the transmission rod 11, and the structure of the second transfer assembly 41 is the same as that of the first transfer assembly 21, except that the installation position is different, which will not be described here.
[0041] As shown in Figure 1 , Figure 2 and Figure 3As shown, the sorting device 3 comprises a feeding mechanism 31 connected to the mounting frame 1, a connecting rod 32, a second discharging rod 33, a first lifting rod 34, a discharging mechanism 35 and a storage rod 36. The feeding mechanism 31 comprises a second lifting rod 311, a second lifting assembly 312, a second feeding rod 313 and a third sequential discharging assembly 314 fixedly connected to the mounting frame 1. The second lifting rod 311 and the second feeding rod 313 are both arranged obliquely, the discharging end of the second lifting rod 311 is higher than the feeding end of the second lifting rod 311, the feeding end of the second feeding rod 313 is higher than the discharging end of the second feeding rod 313, the feeding end of the first feeding rod 2 is fixedly connected to the feeding end of the second lifting rod 311, and the discharging end of the second lifting rod 311 is fixedly connected to the feeding end of the second feeding rod 313. The second lifting assembly 312 corresponds to the second lifting rod 311, and is used for moving the hangers on the first feeding rod 2 to the second feeding rod 313. The third sequential discharging assembly 314 corresponds to the second feeding rod 313. The discharging end of the second feeding rod 313 is connected with a third transfer assembly 315, the third transfer assembly 315 is used for moving the hangers on the second feeding rod 313 to the connecting rod 32, and the third transfer assembly 315 is the same in structure as the first transfer assembly 21, except that the installation position is different, and will not be described herein. The discharging mechanism 35 comprises a third lifting rod 351, a third lifting assembly 352 and a fourth sequential discharging assembly 353 fixedly connected to the mounting frame 1. The second discharging rod 33 and the third lifting rod 351 are arranged obliquely, the feeding end of the second discharging rod 33 is higher than the discharging end of the second discharging rod 33, and the discharging end of the third lifting rod 351 is higher than the feeding end of the third lifting rod 351. The feeding end of the third lifting rod 351 is fixedly connected to the discharging end of the second discharging rod 33, and the discharging end of the third lifting rod 351 is fixedly connected to the feeding end of the first discharging rod 4. The third lifting assembly 352 corresponds to the third lifting rod 351, and is used for moving the hangers on the second discharging rod 33 to the first discharging rod 4. The fourth sequential discharging assembly 353 corresponds to the first discharging rod 4.
[0042] In combination Figure 4 and Figure 5As shown, the connecting rod 32, the storage rod 36 and the first lifting rod 34 are all arranged in an inclined manner, the feeding end of the connecting rod 32 is higher than the discharging end of the connecting rod 32, the feeding end of the storage rod 36 is higher than the discharging end of the storage rod 36, the discharging end of the first lifting rod 34 is higher than the feeding end of the first lifting rod 34, the feeding end of the connecting rod 32 is fixedly connected with the discharging end of the first lifting rod 34, and the discharging end of the storage rod 36 is fixedly connected with the feeding end of the first lifting rod 34. The feeding end of the second discharging rod 33 and the feeding end of the storage rod 36 are both lower than the discharging end of the connecting rod 32, and the feeding end of the second discharging rod 33 is located between the feeding end of the storage rod 36 and the discharging end of the connecting rod 32. The discharging end of the connecting rod 32 is connected with a distributing assembly 37, the distributing assembly 37 comprises a distributing rod 371 rotatably connected with the connecting rod 32 and a second driving member 372 for driving the distributing rod 371 to rotate, the second driving member 372 is rotatably connected with the connecting rod 32, the second driving member 372 is a pneumatic cylinder, a signal output end of the controller is connected with a signal input end of the second driving member 372, and an output end of the second driving member 372 is rotatably connected with the distributing rod 371. An end of the distributing rod 371 away from the connecting rod 32 is provided with a positioning block 3711 which is integrally formed with the distributing rod 371, the second discharging rod 33 is provided with a positioning groove 331 matched with the positioning block 3711, and when the positioning block 3711 is clamped into the positioning groove 331, the inclination angle of the distributing rod 371 is same with the inclination angle of the second discharging rod 33.
[0043] In combination Figure 4 and Figure 5As shown, the mounting frame 1 is connected with the first detector 12 and the first sequentially unloading assembly 5, the first detector 12 can identify the RFID chip on the clothes hanger, the first detector 12 and the first sequentially unloading assembly 5 correspond to the connecting rod 32, the first sequentially unloading assembly 5 is located between the first detector 12 and the distributing rod 371, the first detector 12 is electrically connected with the controller, the first sequentially unloading assembly 5, the third sequentially unloading assembly 314 and the fourth sequentially unloading assembly 353 are the same in structure, only the installation positions are different, and the first sequentially unloading assembly 5 will be taken as an example for illustration. The first sequentially unloading assembly 5 comprises a connecting shaft 51 fixedly connected on the mounting frame 1, a sequentially unloading plate 52 rotatably connected on the connecting shaft 51 and a third driving piece 53 for driving the sequentially unloading plate 52 to rotate, the third driving piece 53 is a pneumatic cylinder, the signal output end of the controller is connected with the signal input end of the third driving piece 53, the third driving piece 53 is rotatably connected with the mounting frame 1, and the output end of the third driving piece 53 is rotatably connected with the sequentially unloading plate 52. The sequentially unloading plate 52 is provided with an abutting end 521 and a blocking end 522, the abutting end 521 and the blocking end 522 are integrally formed with the sequentially unloading plate 52, the connecting shaft 51 is located between the abutting end 521 and the blocking end 522, the abutting end 521 is located between the first detector 12 and the blocking end 522, and the accommodating groove 523 is formed between the abutting end 521 and the blocking end 522.
[0044] In combination Figure 6 , Figure 7 and Figure 8As shown, the mounting rack 1 is connected with the second detector 13, the second sequentially unloading assembly 14 and the first lifting assembly 6, the second detector 13 and the second sequentially unloading assembly 14 correspond to the storage rod 36, the structure of the second sequentially unloading assembly 14 is same as that of the first sequentially unloading assembly 5, only the installation position is different, and the same is not described repeatedly. The second sequentially unloading assembly 14 is located between the second detector 13 and the first lifting assembly 6, and the clothes hanger sequentially passes through the second detector 13, the second sequentially unloading assembly 14 and the first lifting assembly 6. The structures of the first lifting assembly 6, the second lifting assembly 312 and the third lifting assembly 352 are same, only the installation positions are different, and the first lifting assembly 6 is taken as an example for description. The first lifting assembly 6 comprises two lifting plates 61 slidably connected to the mounting rack 1 and a driving structure 62 for driving the lifting plates 61 to slide towards the direction close to or away from the storage rod 36, the driving structure 62 comprises a conveying belt 621, two rotating discs 622 rotatably connected to the mounting rack 1 and a fourth driving piece 623 for driving one of the rotating discs 622 to rotate, the fourth driving piece 623 is a motor, the fourth driving piece 623 is fixedly connected to the mounting rack 1, the signal output end of the controller is connected with the signal input end of the fourth driving piece 623, one side of the rotating disc 622 close to the fourth driving piece 623 is fixedly connected with the output end of the fourth driving piece 623, the conveying belt 621 is sleeved on the two rotating discs 622, and the outer circumferential surface of each of the two rotating discs 622 is provided with a rotating groove 6221 for rotating cooperation with the conveying belt 621. The two lifting plates 61 are fixedly connected with the conveying belt 621, and the lifting plate 61 is obliquely arranged, when the lifting plate 61 lifts the clothes hanger, the end of the lifting plate 61 away from the lifting rod is higher than the end of the lifting plate 61 close to the lifting rod.
[0045] The implementation principle of the clothes screening and sorting device is as follows:
[0046] When the batch of clothes needs to be sorted, the first driving member 212 drives the transfer rod 211 to rotate, so that one end of the transfer rod 211 abuts against the transmission rod 11, and the hangers on the transmission rod 11 are moved to the first feeding rod 2 through the transmission rod 11 in the moving process, and the second lifting rod 311 moves the hangers on the first feeding rod 2 to the second feeding rod 313. The hangers on the second feeding rod 313 are moved to the connecting rod 32 through the third sequentially feeding assembly 314 and the third transfer assembly 315, and the hangers are moved along the length direction of the connecting rod 32 under the influence of gravity, and the hangers pass through the first detector 12 and abut against the blocking end 522 in the moving process, and the first detector 12 identifies whether the hangers are shirts or trousers, and outputs a signal to the controller, and the controller receives the signal and outputs a signal to the second driving member 372, and the second driving member 372 drives the distributing rod 371 to rotate, so that one end of the distributing rod 371 away from the connecting rod 32 abuts against the second discharging rod 33 or the storage rod 36. The third driving member 53 drives the sequentially feeding plate 52 to rotate around the axis of the connecting shaft 51, so that the containing groove 523 faces the distributing rod 371, and the abutting end 521 abuts against the hangers close to the sequentially feeding plate 52 in the rotating process, so as to separate the hangers close to the sequentially feeding plate 52 from the hangers in the containing groove 523. The blocking end 522 is separated from the hangers in the containing groove 523, and the hangers in the containing groove 523 are moved towards the direction close to the distributing rod 371 under the influence of gravity, so as to realize the sequential falling of the hangers. When the hangers hung on the second discharging rod 33 are shirts, the trousers need to be moved to the second discharging rod 33. When the hangers hung on the connecting rod 32 are trousers, the distributing rod 371 abuts against the second discharging rod 33, so that the hangers are moved to the second discharging rod 33; when the hangers hung on the connecting rod 32 are shirts, the distributing rod 371 abuts against the storage rod 36, so that the hangers are moved to the storage rod 36, and then when a trouser is moved to the second discharging rod 33, the first lifting assembly 6 moves the shirts on the storage rod 36 to the connecting rod 32, so that the shirts are moved to the second discharging rod 33. The shirts and the trousers on the second discharging rod 33 are sorted, and the sorted shirts and the trousers are transported to the transmission rod 11 through the third lifting assembly 352, the fourth sequentially feeding assembly 353 and the second transfer assembly 41.
[0047] When the batch of clothes does not need to be sorted, the transfer rod 211 is separated from the transmission rod 11, and the transmission assembly directly transports the batch of clothes to the next station.
[0048] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A garment screening and sorting apparatus, characterized by: The application relates to a clothes hanger conveying device, which comprises a mounting frame (1) connected with a transmission rod (11), a transmission assembly for driving a clothes hanger to move along the transmission rod (11), a first feeding rod (2) and a first discharging rod (4), wherein the first feeding rod (2) and the first discharging rod (4) are both arranged in an inclined mode, the feeding end of the first feeding rod (2) is higher than the discharging end of the first feeding rod (2), the feeding end of the first feeding rod (2) is located between the discharging end of the first feeding rod (2) and the transmission rod (11), the feeding end of the first discharging rod (4) is higher than the discharging end of the first discharging rod (4), the discharging end of the first discharging rod (4) is located between the feeding end of the first discharging rod (4) and the transmission rod (11), the discharging end of the first feeding rod (2) and the feeding end of the first discharging rod (4) are both connected with a sorting device (3), the feeding end of the first feeding rod (2) is connected with a first transfer assembly (21) for moving the clothes hanger on the transmission rod (11) to the first feeding rod (2), and the discharging end of the first discharging rod (4) is connected with a second transfer assembly (41) for moving the clothes hanger on the first discharging rod (4) to the transmission rod (11).
2. The garment sorting apparatus of claim 1, wherein: The first transfer assembly (21) comprises a transfer rod (211) rotatably connected with the first feeding rod (2) and a first driving member (212) for driving the transfer rod (211) to rotate, the transfer rod (211) can abut against the transmission rod (11), and the first driving member (212) is connected with the first feeding rod (2).
3. The garment sorting apparatus of claim 1, wherein: The sorting device (3) comprises a feeding mechanism (31) connected with the mounting frame (1), a connecting rod (32), a second discharging rod (33), a discharging mechanism (35), a storage rod (36) and a controller, the feeding mechanism (31) is used for moving the clothes hanger on the first feeding rod (2) to the connecting rod (32), the discharging mechanism (35) is used for moving the clothes hanger on the second discharging rod (33) to the first discharging rod (4), the connecting rod (32) is connected with a first detector (12), the connecting rod (32) is arranged in an inclined mode, the feeding end of the connecting rod (32) is higher than the discharging end of the connecting rod (32), the discharging end of the connecting rod (32) is connected with a distribution assembly (37) for moving the clothes hanger to the second discharging rod (33) or the storage rod (36), the storage rod (36) is connected with a first lifting assembly (6) for moving the clothes hanger from the storage rod (36) to the feeding end of the connecting rod (32), and the first detector (12), the distribution assembly (37) and the first lifting assembly (6) are all electrically connected with the controller.
4. The garment sorting apparatus of claim 3, wherein: The material distributing assembly (37) comprises a material distributing rod (371) rotatably connected to the connecting rod (32) and a second driving member (372) for driving the material distributing rod (371) to rotate, the second driving member (372) is connected to the connecting rod (32), the second material discharging rod (33) and the material storing rod (36) can abut against the material distributing rod (371), and the feeding end of the second material discharging rod (33) and the feeding end of the material storing rod (36) are lower than the discharging end of the connecting rod (32).
5. The garment sorting apparatus of claim 4, wherein: The material distributing rod (371) is provided with a positioning block (3711), the second material discharging rod (33) is provided with a positioning groove (331) for cooperating with the positioning block (3711), when the positioning block (3711) is clamped into the positioning groove (331), the inclination angle of the material distributing rod (371) is the same as the inclination angle of the second material discharging rod (33).
6. The garment sorting apparatus of claim 3, wherein: The mounting rack (1) is connected with a first sequentially discharging assembly (5), the first sequentially discharging assembly (5) corresponds to the connecting rod (32), and the first sequentially discharging assembly (5) is located between the first detector (12) and the material distributing assembly (37).
7. The garment sorting apparatus of claim 6, wherein: The first sequentially discharging assembly (5) comprises a connecting shaft (51) connected to the mounting rack (1), a sequentially discharging plate (52) rotatably connected to the connecting shaft (51), and a third driving member (53) for driving the sequentially discharging plate (52) to rotate, the third driving member (53) is connected to the mounting rack (1), the sequentially discharging plate (52) is provided with an abutting end (521) and a blocking end (522), the connecting shaft (51) is located between the abutting end (521) and the blocking end (522), an accommodating groove (523) is formed between the abutting end (521) and the blocking end (522), and the third driving member (53) is electrically connected to the controller.
8. The garment sorting apparatus of claim 3, wherein: The mounting rack (1) is connected with a first lifting rod (34), one end of the first lifting rod (34) is connected to the discharging end of the material storing rod (36), the other end is connected to the feeding end of the connecting rod (32), the material storing rod (36) is obliquely arranged, the feeding end of the material storing rod (36) is higher than the discharging end of the material storing rod (36), the mounting rack (1) is connected with a second detector (13) corresponding to the material storing rod (36), and the mounting rack (1) is connected with a second sequentially discharging assembly (14), the second sequentially discharging assembly (14) is located between the second detector (13) and the first lifting rod (34), and the second detector (13) and the second sequentially discharging assembly (14) are electrically connected to the controller.
9. The garment sorting apparatus of claim 8, wherein: The first lifting assembly (6) comprises a lifting plate (61) slidably connected to the mounting frame (1) and a driving structure (62) for driving the lifting plate (61) to slide towards or away from the storage rod (36), the driving structure (62) is connected to the mounting frame (1), the lifting plate (61) is arranged obliquely, when the lifting plate (61) lifts the clothes hanger, the end of the lifting plate (61) away from the first lifting rod (34) is higher than the end of the lifting plate (61) close to the first lifting rod (34).
10. The garment sorting apparatus of claim 9, wherein: The driving structure (62) comprises a conveying belt (621), two rotating discs (622) rotatably connected to the mounting frame (1) and a fourth driving member (623) for driving one of the rotating discs (622) to rotate, the conveying belt (621) is sleeved on the two rotating discs (622), the lifting plate (61) is connected with the conveying belt (621), the fourth driving member (623) is connected to the mounting frame (1), and the fourth driving member (623) is electrically connected with the controller.