Garment storage device
By setting labels and transition rack markings on garments, combined with RFID technology and zoned storage devices, the problem of flow control in garment warehousing systems has been solved, achieving efficient automated management and rapid outbound delivery.
Patent Information
- Application Number
- CN202520114344.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-01-17
AI Technical Summary
Existing garment warehousing systems suffer from problems such as cumbersome shelving setup, large floor space requirements, high demand for conveying equipment, high labor costs, and low sorting efficiency. In particular, the warehousing and outbound processes for garments are complex and prone to errors, especially in the apparel industry.
A garment storage device was designed. By setting labels on garments and markings on transition racks, garment information is bound using RFID channel machines and a main controller. Combined with the partitioned layout of shelving area, storage area, screening area and shipping conveyor line, the automated flow control of garments is realized.
It enables automated flow control of garments in warehousing facilities, improves storage and outbound efficiency, adapts to the management of garments from different manufacturers and styles, meets the automated operation requirements of large-capacity warehousing, and supports rapid matching and outbound processing.
Smart Images

Figure CN223822532U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of for the storage and flow of ready-made clothes. BACKGROUND
[0002] In prior art, the mode of goods storage is usually that goods is put into goods box by manual, the goods box is classified, the identification is set, and then placed on different shelves according to the identification, and further using conveying equipment to convey the goods box between different storage equipment. In this goods storage system, the shelf is set up complicatedly and occupies large floor area, the classification and handling of goods box occupy a large amount of manpower, and the equipment for conveying goods box also needs large operation space, therefore, this goods storage system has problems of complicated shelf setting, large floor area occupied by shelf and conveying equipment, high cost, etc.
[0003] Moreover, when such goods storage system is applied in some soft sheet material flow industry, such as clothing industry, it is necessary to pack multiple clothes in the same goods box during warehousing, which not only needs manpower and material resources, but also causes clothes to be stacked and squeezed, resulting in wrinkles. In addition, in the clothing industry, it is often necessary to store according to production batch and sort and pack according to clothing attributes, and the same production batch of clothes is often large in quantity, and the clothes have multiple attributes, such as size, color, style, etc., so the actual classification and delivery demand is complex, and if manual packing, warehousing and classification are used, it will be very time-consuming and low in efficiency, and classification errors are easy to occur, because multiple clothes are packed in the same goods box, so once classification error occurs, manual unpacking, re-packing and sorting are needed, which is very inconvenient.
[0004] Therefore, the applicant applies a batch type fixed-shelf-free storage and sorting system with publication number CN115783576A, which is used for warehousing and storing goods carriers and sorting, and includes a goods loading line, a warehouse storage interval conveying and transferring mechanism, a storage and sorting interval conveying and transferring mechanism, and a control device. The control device has a goods identification information reading part, which can read batch information and attribute information of the goods, so that the batch type fixed-shelf-free storage and sorting system can receive the goods carriers, convey and transfer them to multiple goods storage lines for storage, the control device can allocate corresponding goods sorting lines to each goods based on the attribute information, quickly take out the goods of the same batch from the goods storage line, and then quickly and accurately distribute them to each goods sorting line according to the goods attribute, so as to quickly sort the goods of the same batch. The whole warehousing, storage and sorting process is more efficient and has high automation degree.
[0005] This sorting system is also troublesome for storing clothes, and it is not convenient to control the single piece flow of clothes in the storage system. Utility Model Content
[0006] The technical problem to be solved by this utility model is to provide a garment storage device that can conveniently and automatically control the flow of garments in the storage device.
[0007] Technical solution to the aforementioned technical problem: A garment storage device, characterized in that the garments are provided with tags indicating garment information, the garments are used to hang on a transition rack, the transition rack is provided with an identifier indicating transition rack information, and further includes:
[0008] The shelving area includes several parallel shelving rails, with shelving stations formed on the outer side of the shelving rails. At the shelving stations, transition racks with garments and hangers attached are attached to the shelving rails. A passage machine is installed on the shelving rails, located downstream of the shelving stations. The passage machine has a passage for the transition racks, hangers, and attached garments to pass through. The passage machine is communicatively connected to the main controller in the storage device and is used to bind the identification information on the transition racks with the corresponding garment label information.
[0009] The storage area includes several side-by-side shelves, each with a hanging structure for connecting transition racks with garments; a delivery rail is provided between adjacent shelves to provide a path for the transition racks with garments, allowing them to reach the corresponding position on the target shelf.
[0010] The screening area, located outside the storage area, includes several screening guide rails arranged in parallel; the inlet end of the screening guide rail is connected to the screening inlet conveyor line, and the outlet end of the screening guide rail is connected to the screening outlet conveyor line.
[0011] The main conveyor line connects the shelving area and the storage area, and the inlet ends of the delivery guide rails are respectively connected to the main conveyor line;
[0012] The outgoing conveyor line connects the storage area and the screening area. The outlet end of the delivery guide rail is connected to the outgoing conveyor line, and the outgoing conveyor line is connected to the screening infeed conveyor line.
[0013] The conveyor line is equipped with card readers at corresponding positions for reading the identification information on the transition frame, and the card readers are connected to the main controller.
[0014] The information stored on the labels on the garments corresponds to the garment's attributes, such as style, size, color, and fabric type. The information stored on the labels on the transition racks is generally the rack's code. When the garments hanging on the transition racks are running in the storage device, as long as the card reader reads the label information, which corresponds to the garment's attributes, the main controller will know the location of the target garment and thus control the next flow direction of the target garment.
[0015] The conveyor line involved includes guide rails, with flexible drive mechanisms, such as bird hook chain drive mechanisms or lever chain drive mechanisms, located on the upper side of the guide rails. Driven by these mechanisms, the transition frame moves forward on the guide rails. The connection can be achieved through a track-changing mechanism in an existing suspension system, or through connecting guide rails. With connecting guide rails, the transition can be achieved by utilizing the fact that the inlet end of the connecting guide rail is higher than the outlet end, allowing sliding under gravity. However, it is also possible to create a height difference by installing a lifting mechanism such as a lifting arm at the middle position of the connecting guide rail to achieve the sliding transition.
[0016] When the transition rack moves along the delivery guide rail, it can be driven manually or by a drive mechanism provided above the delivery guide rail. For storage, when garments are delivered to the appropriate location, the target transition rack can be moved from the delivery guide rail to the corresponding shelf's mounting structure by manual labor or a robotic arm. For outbound processing, the target transition rack can be moved from the shelf to the delivery guide rail by manual labor or a robotic arm, then transferred to the outbound conveyor line, transported to the sorting area, and finally to the packing area for packaging and shipment.
[0017] This warehousing facility primarily serves as a garment storage base for retailers. A packing area can also be set up downstream of the sorting area, allowing for online order taking and direct packing and shipment.
[0018] Furthermore, each of the aforementioned tags and labels is equipped with a coupling element and a chip for storing identification information, and the aforementioned access control machine is an RFID access control machine. RFID technology is mature, enabling precise tracking and efficient management of garments. It is well-suited for garment warehousing and logistics, offering stability, durability, precision, and efficiency.
[0019] Furthermore, a metal shielding shell is provided on the outer periphery of the channel machine. With this metal shielding shell, while meeting the startup requirements of the target chip, the startup signal of the channel machine will not radiate outwards, thus preventing interference signals from other chips outside the channel machine. Therefore, this shelving area can be placed close to the storage area, effectively improving the overall structural compactness of the storage device.
[0020] Furthermore, the storage area is divided into a first storage area and a second storage area, with a gap between them. The length directions of the shelves and guide rails in both the first and second storage areas are perpendicular to the length direction of this gap, and the outbound conveyor line is located within this gap. The main conveyor line is arranged around the perimeter of the storage area. This layout is reasonable and can effectively balance the storage and outbound needs of garments, ensuring operational efficiency.
[0021] Furthermore, a buffer line is provided on the side of the main conveyor line near the screening area. The length of the buffer line corresponds to the width of the storage area, and both ends of the buffer line are connected to the main conveyor. A flexible drive mechanism is also provided on the upper side of the buffer line. By setting up the buffer line, some transition racks on the main conveyor line can be buffered onto the buffer line, reducing the accumulation pressure of transition racks on the main conveyor line and adapting well to the work progress of storage and outbound at the delivery guide rail.
[0022] Furthermore, a curved branch conveyor line is connected to the end of the outgoing conveyor line facing the screening area. This branch conveyor line connects the outgoing conveyor line and the screening infeed conveyor line. The connection points between the branch conveyor line and the screening infeed conveyor line are staggered from those between the outgoing conveyor line and the screening infeed conveyor line. The branch conveyor line can also transport the transition racks on the outgoing conveyor line to the screening area, thereby enabling multi-path outgoing of the transition racks on the outgoing conveyor line. This effectively improves work efficiency and meets the stable outgoing requirements of large-size, high-volume storage devices.
[0023] Furthermore, the exit end of the shelving guide rail is connected to the second ring line, the first transition conveyor line is connected to the screening conveyor line, and the second ring line is connected to the main conveyor line via the transition conveyor line. By setting up the first transition conveyor line and connecting it to the screening area, in the event of an urgent order, the garments can directly enter the screening area after being shelved, without needing to pass through the main conveyor line, delivery guide rail, shelf storage, and outgoing conveyor line. This effectively shortens the path of the target garments, meets the requirements of urgent orders, improves work efficiency, and reduces the conveying pressure on related conveyor lines.
[0024] Furthermore, the screening guide rails consist of three columns arranged side-by-side and separated. The inlet and outlet conveyor lines are arranged in a U-shape, with the inlet and outlet conveyor lines interlocked and facing each other. This arrangement of the screening guide rails and the inlet and outlet conveyor lines is reasonable and enables rapid transfer between them, resulting in high work efficiency.
[0025] Furthermore, a second transition conveyor line is connected to the outer side of the screening conveyor line, and the second transition conveyor line is connected to the screening in conveyor line. This forms a fast channel between the screening in conveyor line and the second transition conveyor line, allowing a single order or a successfully matched transition rack to directly enter the packaging area via the second transition conveyor line for packaging and outbound delivery. This effectively improves work efficiency and reduces the conveying pressure on the transition racks in the screening area.
[0026] Furthermore, the screening conveyor line is connected to the screening input conveyor line, and is used to allow some transition frames on the screening conveyor line to enter the screening input conveyor line. This allows transition frames that cannot be processed in time on the screening conveyor line, or transition frames that need to be re-sorted, to be returned to the screening input conveyor line for re-sorting and matching in the screening area.
[0027] Compared with the prior art, the present invention has the following beneficial effects:
[0028] This warehousing facility is divided into shelving, storage, and sorting areas, and is connected to each other by relevant conveyor lines. The layout is reasonable and can realize the large-scale storage of hanging garments. It can well adapt to the entire circulation management of garments, with a high degree of automation and guaranteed operation efficiency.
[0029] Labels are attached to the garments, matching their attributes. The garments are then hung on a transition rack using ordinary hangers. The transition rack has a readable identifier that can be read by a card reader in the storage device. The information on the garments and the transition rack is linked through a channel machine. This allows the main controller in the storage device to know the location of the target garment, enabling automatic control of its subsequent movement. This method effectively meets the storage device's requirements for garment information identification, has a high degree of automation, and facilitates large-scale garment storage.
[0030] By binding identification and label information through aisle conveyors, the warehousing system can be adapted to centralized warehousing management of garments from different manufacturers, styles, and batches. This effectively meets the automated operation requirements of large-capacity garment storage facilities. The various conveyor lines allow garments to flow through corresponding areas via transition racks, satisfying both storage and outbound needs and perfectly meeting the commercial demands of garment retailers.
[0031] By setting up the filtering area, multiple garments from the same order can be paired, resulting in high work efficiency and effectively meeting the requirements for rapid order pairing and outbound processing. Attached Figure Description
[0032] Figure 1 This is a simplified structural diagram of the storage facility.
[0033] Figure 2 yes Figure 1 Structural diagram after the shelves are removed.
[0034] Figure 3 This is a simplified, enlarged structural diagram of the shelf area.
[0035] Figure 4 This is a simplified diagram of the enlarged structure of the storage area.
[0036] Figure 5 This is a simplified diagram of the enlarged structure of the filtering area, relative to... Figure 1 , 2 , Figure 5 It was rotated 90 degrees clockwise.
[0037] Figure 6 This is a simplified, enlarged structural diagram of the packaging area.
[0038] Figure 7 It is a structural diagram showing how the garment is connected to the hanger and the transition rack.
[0039] In the diagram: 1. Connecting guide rail; 2. Transition rack; 3. Garment hanger; 4. Garment; 100. Shelving area; 101. Aisle conveyor; 102. Second loop line; 103. Shelving guide rail; 104. First transition conveyor line; 200. Storage area; 201. Shelf; 202. Outbound conveyor line; 203. Delivery guide rail; 204. Main conveyor line; 205. Buffer rail; 206. Branch conveyor line; 300. Screening area; 301. Screening out conveyor line; 302. Screening in conveyor line; 303. Screening guide rail; 304. Second transition conveyor line; 305. Return guide rail; 306. Express delivery guide rail; 400. Packing area; 401. First loop line; 402. Packing guide rail. Detailed Implementation
[0040] The accompanying drawings in the instruction manual mainly show a simplified structural diagram of this storage device in terms of its layout. The arrows in the diagrams indicate the forward direction of the transition racks 2 within the storage device. Referring to the accompanying drawings, this garment 4 storage device is used to store garments 4 and facilitate rapid outbound processing. The entire storage device is controlled by a main controller, which controls the corresponding actuators within the storage device to control the flow direction of the garments 4. Garments 4 are attached to all the transition racks 2 that move within the storage device, and the transition racks 2 carry the garments 4 as they move through the storage device.
[0041] The garment 4 is equipped with a flexible label that identifies its information. The label is sewn onto the garment 4 during its manufacturing process and generally remains attached for the entire lifespan of the garment 4. The garment 4 needs to be hung on a hanger 3. The hanger 3 has no special structural requirements, as long as it is suitable for hanging the garment 4. Hooks on the hanger 3 are used to attach to a transition rack 2. The transition rack 2 has elastic hooks, allowing the hooks on the hanger 3 to be attached to or removed from these hooks. The transition rack 2 is marked with information that can be read by a card reader located at the corresponding position in the storage unit. The card reader transmits the information from the mark to the main controller in the storage unit, which then determines the specific location of the target transition rack 2 within the storage unit. The markings and labels can be identified using QR codes or barcodes, or RFID tags can be used.
[0042] This warehousing facility is arranged by functional zones, mainly including a shelving area 100, a storage area 200, a sorting area 300, and a packaging area 400. These areas are connected by corresponding conveyor lines to allow the garments 4 to be transported and moved within these areas. Among them:
[0043] The shelving area 100 is used for hanging and shelving garments 4. The shelving area 100 includes several parallel shelving rails 103, which are in the form of rod segments. Shelving workstations are formed on the outer sides of the shelving rails 103, where operators work. At these workstations, transition racks 2, which hold garments 4 and hangers 3, are attached to the shelving rails 103 to complete the shelving operation. To achieve information consistency, a channel machine 101 is installed on the shelving rails 103, located downstream of the shelving workstations. The channel machine 101 has a passage for the transition racks 2, hangers 3, and the attached garments 4 to pass through. The channel machine 101 is communicatively connected to the main controller in the storage device and is used to bind the identification information on the transition racks 2 with the corresponding garment 4 tag information. Both the tags and identifications have coupling elements and chips for storing identity information. The channel machine 101 is an RFID channel machine 101. The access control unit 101 is equipped with a coupling element triggering device, which activates the chip. The chip sends relevant information to the access control unit 101, which then transmits the received information to the main controller. This information determines the attributes of the garment 4 hanging on a specific numbered transition rack 2. During the circulation process, after the card reader reads the identification information on the transition rack 2, the main controller determines the location of the target garment 4 and controls its subsequent circulation. Upon receiving order information, the main controller plans an outbound path for the target garment 4, ensuring it leaves the warehouse along that path. To improve the compactness of the storage device, a metal shielding shell is provided on the outer surface of the access control unit 101. This prevents the electrical signals generated by the triggering device from affecting the chip on the outside of the access control unit 101, thus avoiding interference signals.
[0044] Storage area 200 is used for hanging and storing garments 4, including several parallel and separated shelves 201. Each shelf 201 has several layers of hanging structures, generally rod-type hanging rods, which are horizontally arranged. Hooks on transition racks 2 carrying garments 4 are attached to these hanging rods for storage. A delivery guide rail 203 is provided between adjacent shelves 201, with the length of the guide rail corresponding to the length of the adjacent shelf 201. The delivery guide rail 203 provides a path for the transition racks 2 with garments 4 attached, allowing them to reach the corresponding position on the target shelf 201. Garments 4 are generally stored in sections on the shelves 201. Typically, garments 4 of the same type are stored in a small area of the shelf 201, with a dozen to several dozen pieces typically stored in that area. Garments 4 can be manually placed into this area at the location of the delivery guide rail 203, or the stored garments 4 can be moved from this area to the location of the delivery guide rail 203. The operator is both the storage manager and the dispatcher of garment 4. External order information can be sent from the main controller to the operator's handheld terminal. Based on the order information, the operator locates the target garment 4 in the corresponding storage area and moves it to the corresponding delivery guide 203. The delivery guide 203 is generally made of aluminum alloy. To reduce abrasion of the delivery guide 203 by the hooks on the transition frame 2, a transport trolley can be installed on the delivery guide 203. The transport trolley has a wheeled running gear that is supported on the delivery guide 203 by rolling. The transport trolley has a hook-up section that can hook up multiple transition frames 2 at once. The transport trolley travels along the delivery guide 203 to allow the garment 4 to move along the length of the delivery guide 203. The aforementioned transport trolley can also be installed on some conveyor lines.
[0045] The screening area 300 is used to screen and match order information for multiple garments 4. An inspection station can also be set up in the screening area 300 to inspect the garments 4 before they leave the warehouse. As shown in the diagram, the screening area 300 is located to the left of the storage area 200 and includes several parallel screening guide rails 303. The screening guide rails 303 are rod segments that can store multiple transition frames 2. The screening guide rails 303 are generally arranged with a higher inlet end and a lower outlet end, utilizing gravity to achieve automatic sliding of the transition frames 2. Alternatively, a drive mechanism can be set on the upper side of the screening guide rails 303 to push the transition frames 2 forward. The inlet end of the screening guide rail 303 is connected to the screening inlet conveyor line 302, and the outlet end of the screening guide rail 303 is connected to the screening outlet conveyor line 301. This connection is generally achieved through a connecting guide rail 1, which is usually also inclined to allow the transition frames 2 to slide from high to low. A track-changing mechanism is provided at both ends of the connecting guide rail 1 to realize the track-changing of the transition frame 2.
[0046] The main conveyor line 204 connects the shelving area 100 and the storage area 200. The inlet end of the delivery guide rail 203 is connected to the main conveyor line 204. The outlet conveyor line 202 connects the storage area 200 and the screening area 300. The outlet end of the delivery guide rail 203 is connected to the outlet conveyor line 202. The outlet conveyor line 202 is connected to the screening inlet conveyor line 302 via a connecting guide rail 1. A track-changing mechanism is provided between the inlet end of the delivery guide rail 203 and the main conveyor line 204, and between the outlet end of the delivery guide rail 203 and the outlet conveyor line 202, so as to realize the transition frame 2's track changing from the delivery guide rail 204 to the delivery guide rail 203, and from the delivery guide rail 203 to the outlet conveyor line 202. The track-changing mechanism at the inlet end of the delivery guide rail 203 includes a "7"-shaped swing head. Driven by a cylinder, the swing head can connect to the guide rail on the main conveyor line 204, thus supporting the target transition frame 2 onto the delivery guide rail 203. The track-changing mechanism at the outlet end of the delivery guide rail 203 includes an elastically set exit guide rail. The exit guide rail is arc-shaped, and its outer end connects with the guide rail on the outgoing conveyor line 202 to form a passage for the target transition frame 2 to pass through, allowing the target transition frame 2 to change track onto the guide rail of the outgoing conveyor line 202.
[0047] A curved branch conveyor 206 is connected to one end of the outgoing conveyor line 202 facing the screening area 300. The branch conveyor 206 connects the outgoing conveyor line 202 and the screening infeed conveyor line 302. The connection point between the branch conveyor line 206 and the screening infeed conveyor line 302 is staggered from the connection point between the outgoing conveyor line 202 and the screening infeed conveyor line 302, thus enabling multi-point conveying transition frame 2 for the screening infeed conveyor line 302.
[0048] The packaging area 400 is used to package and ship the garments 4 corresponding to an order. It is connected to the sorting conveyor line 301 via a first loop line 401. Several packaging stations are formed outside the first loop line 401, and several packaging guide rails 402 connect the packaging stations and the first loop line 401. The packaging guide rails 402 have a rod-segment structure. One packaging guide rail 402 can carry one garment 4 corresponding to one order at a time. At the packaging station, the operator folds and packages the garments 4 from one order together for shipment.
[0049] To accommodate the large-volume storage of garments 4, storage area 200 is divided into zones. As shown in the figure, storage area 200 is divided into a first storage area and a second storage area, separated by a gap. The length directions of the shelves 201 and delivery guides 203 in both the first and second storage areas are perpendicular to the length direction of this gap. The outgoing conveyor line 202 is located within this gap. A main conveyor line 204 surrounds the perimeter of storage area 200, essentially completely enclosing it. A buffer line 205 is located on the main conveyor line 204 near the screening area 300. This buffer line 205 includes a buffer rail and a flexible drive mechanism located above the buffer rail to propel the transition frame 2 on the buffer rail. The length of the buffer line 205 corresponds to the width of the storage area 200. Both ends of the buffer line 205 are connected to the main conveyor line 204. A track-changing mechanism is provided at both ends of the buffer line 205 to realize the connection between the buffer line 205 and the main conveyor line 204.
[0050] The outlet end of the upper guide rail 103 is connected to the second loop line 102. The structure of the second loop line 102 also includes a closed-loop guide rail. A closed-loop flexible drive mechanism is provided on the upper side of the guide rail, which drives the transition frame 2 to move forward on the guide rail. The first transition conveyor line 104 is connected to the screening inlet conveyor line 302. The second loop line 102 is connected to the main conveyor line 204 through the transition conveyor line and the connecting guide rail 1.
[0051] The screening guide rails 303 are arranged in three columns, side-by-side and separated in the left-right direction in the figure. The screening inlet conveyor line 302 and the screening outlet conveyor line 301 are arranged in a U-shape, with the screening inlet conveyor line 302 and the screening outlet conveyor line 301 interlocking and facing each other. One side of the screening inlet conveyor line 302 communicates with the inlet end of one column of screening guide rails 303, and the other side of the screening inlet conveyor line 302 communicates with the inlet ends of two other columns of screening guide rails 303; one side of the screening outlet conveyor line 301 communicates with the outlet ends of two columns of screening guide rails 303, and the other side of the screening outlet conveyor line 301 communicates with the outlet end of one column of screening guide rails 303. The communication between them is achieved by setting up corresponding track-changing mechanisms.
[0052] The screening conveyor line 301 is connected to the first loop line 401 via the second transition conveyor line 304. The second transition conveyor line 304 is connected to the screening inlet conveyor line 302 via the fast-feed guide rail 306, allowing the transition racks 2 on the screening inlet conveyor line 302 to directly enter the packaging area 400 for packaging via the second transition conveyor line 304. The screening conveyor line 301 and the screening inlet conveyor line 302 are connected via the return guide rail 305, which is used to return some of the transition racks 2 on the screening conveyor line 301 to the screening inlet conveyor line 302.
Claims
1. A garment storage device, characterized in that, The garment is equipped with a label indicating its information. The garment is used to hang on a transfer rack, which is also equipped with a label indicating the transfer rack information. The garment also includes: The shelving area includes several parallel shelving rails, with shelving stations formed on the outer side of the shelving rails. At the shelving stations, transition racks with garments and hangers attached are attached to the shelving rails. A passage machine is installed on the shelving rails, located downstream of the shelving stations. The passage machine has a passage for the transition racks, hangers, and attached garments to pass through. The passage machine is communicatively connected to the main controller in the storage device and is used to bind the identification information on the transition racks with the corresponding garment label information. The storage area includes several side-by-side shelves, each with a hanging structure for connecting transition racks with garments; a delivery rail is provided between adjacent shelves to provide a path for the transition racks with garments, allowing them to reach the corresponding position on the target shelf. The screening area, located outside the storage area, includes several screening guide rails arranged in parallel; the inlet end of the screening guide rail is connected to the screening inlet conveyor line, and the outlet end of the screening guide rail is connected to the screening outlet conveyor line. The main conveyor line connects the shelving area and the storage area, and the inlet ends of the delivery guide rails are respectively connected to the main conveyor line; The outgoing conveyor line connects the storage area and the screening area. The outlet end of the delivery guide rail is connected to the outgoing conveyor line, and the outgoing conveyor line is connected to the screening infeed conveyor line. The conveyor line is equipped with card readers at corresponding positions for reading the identification information on the transition frame, and the card readers are connected to the main controller.
2. The garment storage device according to claim 1, characterized in that, The tags and labels are each equipped with a coupling element and a chip for storing identity information, and the channel machine is an RFID channel machine.
3. The garment storage device according to claim 2, characterized in that, A metal shielding shell is provided on the outer circumference of the channel machine.
4. The garment storage device according to claim 1, 2 or 3, characterized in that, The storage area is divided into a first storage area and a second storage area, with a gap between them. The length direction of the shelves and guide rails in the first and second storage areas is perpendicular to the length direction of the gap. The outgoing conveyor line is set within the gap. The main conveyor line is arranged around the periphery of the storage area.
5. The garment storage device according to claim 4, characterized in that, A buffer line is provided on the side of the main conveyor line near the screening area. The length of the buffer line corresponds to the width of the storage area, and both ends of the buffer line are connected to the main conveyor.
6. The garment storage device according to claim 4, characterized in that, The outgoing conveyor line is connected to a curved branch conveyor line at one end facing the screening area. The branch conveyor line connects the outgoing conveyor line and the screening infeed conveyor line. The connection point between the branch conveyor line and the screening infeed conveyor line is staggered from the connection point between the outgoing conveyor line and the screening infeed conveyor line.
7. The garment storage device according to claim 1, 2 or 3, characterized in that, The outlet end of the upper guide rail is connected to the second ring line, the first transition conveyor line is connected to the screening infeed conveyor line, and the second ring line is connected to the main conveyor line through the transition conveyor line.
8. The garment storage device according to claim 1, 2 or 3, characterized in that, The screening guide rails consist of three columns, which are arranged side by side and separated. The screening inlet conveyor line and the screening outlet conveyor line are arranged in a U-shape and are interlocked facing each other.
9. The garment storage device according to claim 1, 2 or 3, characterized in that, A second transition conveyor line is connected to the outside of the screening conveyor line, and the second transition conveyor line is connected to the screening in conveyor line.
10. The garment storage device according to claim 1, 2 or 3, characterized in that, The screening conveyor line is connected to the screening input conveyor line, and is used to allow a portion of the transition frame on the screening conveyor line to enter the screening input conveyor line.
Citation Information
Patent Citations
Batch type storage sorting system without fixed goods shelf
CN115783576A