Intelligent Workwear Management System

Through the intelligent work clothes management system, the combination of automation equipment and servers is used to solve the problem of inefficient work clothes management in the existing technology, high-density storage and automated management are realized, and management efficiency and automation are improved.

CN116443462BActive Publication Date: 2025-06-17INA INTELLIGENT TECH (ZHEJIANG) CO LTD
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Patent Information

Application Number
CN202210004318.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-01-05
Publication Date
2025-06-17
Estimated Expiration
2042-01-05

AI Technical Summary

Technical Problem

In the prior art, work clothes management is inefficient, employees need to queue up to operate, resulting in wasted time, and the clean work clothes are placed incorrectly, making it difficult to detect lost or omissions in time.

Method used

Provides an intelligent work clothes management system, which realizes automated work clothes management through the combination of storage equipment, outbound equipment, warehousing control equipment and work clothes management server. The system can automatically exit and enter the work clothes based on employees' work check-in information to improve management efficiency.

Benefits of technology

High-density storage and automated management of work clothes is realized, saving storage space and human resources, improving the efficiency and automation of work clothes management, and reducing errors and losses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides an intelligent work uniform management system, which is communicatively connected to the work attendance system, and includes a storage device, an outbound device, a warehouse control device, and a work uniform management server. A storage belt with multiple storage holes is used to store the cargo carriers carrying work uniforms, so high-density storage can be achieved. When an employee punches in for work, the work uniform management server can receive the work attendance information containing the employee identification code from the attendance management server. Since it has a work uniform information storage unit and a storage location information storage unit, it can obtain the corresponding storage location code according to the received employee identification code. Since it has a storage location positioning unit, it can move the corresponding storage hole to a predetermined outbound retrieval position according to the storage location code. Then, the outbound control unit can control the outbound device to take out the cargo carrier with the corresponding work uniform hung on it from the storage hole at this position, saving manpower and material resources and improving the efficiency and automation degree of work uniform management.
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Description

Technical Field

[0001] The present invention belongs to the technical field of goods storage, and particularly relates to an intelligent management system for work clothes. Background Art

[0002] At present, a large number of service and production enterprises require employees to wear uniforms uniformly during work, including some large enterprises with a large number of employees. Due to the large number of employees and correspondingly a large number of work clothes, in these large enterprises, the management of work clothes has become a heavy burden.

[0003] In the prior art, there are usually two ways to manage work clothes: one is to let employees manage them by themselves. When employees get off work, they change out of their work clothes and store them in their respective wardrobes. When it is necessary to clean them uniformly, the cleaning staff collects the work clothes from each employee. Obviously, this method is inefficient. Collecting work clothes and redistributing the cleaned work clothes are both time-consuming and laborious, and it is easy to make mistakes and omissions. It is also difficult to detect in time when some work clothes are not cleaned for a long time or even lost. The other is to manage work clothes through a work clothes management system. The existing work clothes management systems usually use centralized wardrobes to store work clothes uniformly. When employees go to work, they unlock the wardrobe by swiping a card or operating the corresponding terminal and take out their own work clothes. When they get off work, they put the work clothes into the recycling bin or the recycling wardrobe. Although the unified management of work clothes is achieved, there are still multiple problems. First, employees need to queue up to operate in turn, resulting in a large amount of time waste during the peak hours of going to work and getting off work. Second, after the work clothes are cleaned uniformly, they need to be manually placed back into the corresponding wardrobe, which is time-consuming and laborious and is also prone to mistakes and omissions.

[0004] Therefore, in order to facilitate employees to pick up and return work clothes daily, and at the same time to facilitate enterprises to uniformly manage a large number of work clothes, a new type of work clothes management system is needed. Summary of the Invention

[0005] To solve the above problems, an intelligent management system for work clothes is provided. The present invention adopts the following technical solutions:

[0006] The present invention provides an intelligent work uniform management system for managing employees' work uniforms, which is communicatively connected to the work attendance system. The work attendance system has an attendance management server for storing work attendance punching information and an attendance punching device for employees to punch in at work. The work attendance punching information includes employees' identification codes and work attendance punching times. It is characterized by including: a storage device for storing goods carriers carrying work uniforms, having at least one storage belt with a plurality of bin holes for hanging in the goods carriers; an outbound device for taking out the goods carriers in the storage device; a warehousing control device; and a work uniform management server. Among them, the bin control device at least includes: a bin serial number receiving part for receiving the bin serial number of a predetermined bin hole from the management server as a predetermined bin; a bin positioning part for moving the corresponding predetermined bin hole to a predetermined outbound taking-out position according to the received outbound instruction and the predetermined bin; and an outbound control part for controlling the outbound device to take out the goods carrier from the bin hole at the outbound taking-out position. The work uniform management server at least includes: an attendance information receiving part for receiving the work attendance punching information of each employee from the attendance management server; a work uniform information storage unit storing the work uniform identification codes of each work uniform and the corresponding employee identification codes; a bin information storage unit storing the bin serial numbers of the bin holes, the carrier identification codes of the corresponding goods carriers, and the work uniform identification codes of the corresponding work uniforms; a predetermined bin obtaining part for obtaining the corresponding bin serial number as a predetermined bin according to the received employee identification code; and an automatic outbound control part for sending the outbound instruction and the predetermined bin to the warehousing control device, so that the bin positioning part positions the predetermined bin hole, and further enabling the outbound control part to control the outbound device to take out the goods carrier.

[0007] The intelligent work uniform management system provided by the present invention may further have such a technical feature that the outbound device has an outbound temporary storage track for temporarily storing the outbound goods carriers, and the outbound temporary storage track is located in the employees' dressing room.

[0008] The intelligent work uniform management system provided by the present invention may further have such a technical feature that it further includes: an inbound device for storing the goods carriers into the storage device, having a work uniform identification code reader for reading the work uniform identification code of the work uniform to be stored. Among them, the predetermined bin obtaining part further obtains the corresponding bin serial number as a predetermined bin according to the work uniform identification code, and the bin positioning part further moves the predetermined bin hole to a predetermined inbound hanging position according to the received inbound instruction and the predetermined bin. The warehousing control device further includes: an inbound control part for controlling the inbound device to hang the goods carrier into the bin hole at the hanging position. The work uniform management server further includes: an automatic inbound control part for sending the inbound instruction and the predetermined bin to the warehousing control device, so that the bin positioning part positions the predetermined bin hole, and further enabling the inbound control part to control the inbound device to store the goods carrier.

[0009] The intelligent work uniform management system provided by the present invention may further have the following technical feature: The warehousing device has a warehousing temporary storage track for temporarily storing the cargo carriers to be warehoused, and this warehousing temporary storage track is located in the staff dressing room.

[0010] The intelligent work uniform management system provided by the present invention may further have the following technical feature: The work uniform information storage unit also stores the last cleaning time of the work uniforms. The work uniform management server further includes: a to-be-cleaned work uniform screening unit for screening out all to-be-cleaned work uniforms according to the last cleaning time and a predetermined cleaning rule, obtaining the work uniform identification codes of the to-be-cleaned work uniforms, and further obtaining the corresponding bin numbers according to the screened work uniform identification codes. The automatic outbound control unit also performs outbound of the to-be-cleaned work uniforms according to the screened bin numbers.

[0011] The intelligent work uniform management system provided by the present invention may further have the following technical feature: It further includes: a plurality of staff terminals, respectively held by a plurality of staff, communicatively connected to the work uniform management server, and storing the staff identification codes of the staff. Among them, the work uniform management server further includes: a staff identification code receiving unit for receiving the corresponding staff identification codes from the plurality of staff terminals, and the automatic outbound control unit performs outbound of the cargo carriers according to the corresponding predetermined bins.

[0012] The intelligent work uniform management system provided by the present invention may further have the following technical feature: It further includes: at least one management terminal, held by the management staff, communicatively connected to the work uniform management server, and used for viewing the information of the work uniforms.

[0013] The intelligent work uniform management system provided by the present invention may further have the following technical feature: The bin positioning unit includes: a reference bin obtaining unit, arranged at a predetermined reference position beside the storage belt, for reading the bin number at this position as the reference bin; a predetermined interval obtaining unit for obtaining the predetermined bin interval between the predetermined bin hole and the inbound hanging position or the outbound taking position according to the predetermined bin and the reference bin; a moving bin obtaining unit, arranged at a predetermined detection position beside the storage belt, for sensing and counting the bin holes passing through this position, so as to obtain the moving bin numbers of the predetermined bin holes; a reference bin updating unit for updating the reference bin according to the moving bin numbers; a current interval obtaining unit for obtaining the current interval of the predetermined bin holes according to the updated reference bin; a predetermined bin determination unit for determining whether the predetermined bin hole reaches the outbound taking position according to the current interval; and a storage belt driving unit for controlling the movement or stop of the storage belt according to the determination result of the predetermined bin determination unit, so as to move the predetermined bin hole to the inbound hanging position or the outbound taking position.

[0014] The intelligent work uniform management system provided by the present invention may further have the following technical feature: the storage belt driving unit further controls the storage belt to move at a predetermined speed according to the current interval.

[0015] Functions and effects of the invention

[0016] The intelligent work uniform management system according to the present invention is communicatively connected to the work attendance system and includes a storage device, an outbound device, a warehousing control device, and a work uniform management server. Since a storage belt having a plurality of storage holes is used to store the cargo carriers carrying work uniforms, high-density storage of work uniforms can be achieved. Since the work uniform management server has an attendance information receiving unit, when an employee punches in for work, the work uniform management server can receive the work attendance information containing the employee identification code from the work attendance management server. Since it has a work uniform information storage unit and a storage location information storage unit, it can obtain the storage location number of the storage hole where the corresponding work uniform is hung according to the received employee identification code, and send the storage location number and the outbound instruction to the warehousing control device. The warehousing control device has a storage location positioning unit, so it can move the corresponding storage hole to a predetermined outbound retrieval position according to the received storage location number. Then, the outbound control unit can control the outbound device to take out the cargo carrier with the corresponding work uniform hung from the storage hole at this position. As described above, the intelligent work uniform management system of the present invention can achieve high-density storage of work uniforms in an enterprise, automatically take out the corresponding work uniforms when employees punch in for work, save a large amount of storage space, save manpower and material resources, and improve the efficiency and automation degree of work uniform management. Brief description of the drawings

[0017] Figure 1 is a structural block diagram of the intelligent work uniform management system in Embodiment 1 of the present invention;

[0018] Figure 2 is a structural diagram of the inbound device, storage device, and outbound device in Embodiment 1 of the present invention;

[0019] Figure 3 is a structural diagram of the inbound device, storage device, and outbound device from different angles in Embodiment 1 of the present invention;

[0020] Figure 4 is an orthographic projection view of the inbound device, storage device, and outbound device in Embodiment 1 of the present invention;

[0021] Figure 5 is a schematic structural diagram of a hanger hanging on the storage belt in Embodiment 1 of the present invention;

[0022] Figure 6 is a structural diagram of the inbound device in Embodiment 1 of the present invention;

[0023] Figure 7 isFigure 6 Enlarged view of the part inside the middle frame A;

[0024] Figure 8 It is the structure diagram of the storage belt in the first embodiment of the present invention;

[0025] Figure 9 It is the structure diagram of the storage belt at different angles in the first embodiment of the present invention;

[0026] Figure 10 It is the structure diagram of the outbound equipment in the first embodiment of the present invention;

[0027] Figure 11 It is the structure diagram of the out-of-warehouse device in the first embodiment of the present invention;

[0028] Figure 12 It is the partial structure diagram of the out-of-warehouse device in the first embodiment of the present invention;

[0029] Figure 13 It is the structural block diagram of the warehousing control equipment in the first embodiment of the present invention;

[0030] Figure 14 It is the structural block diagram of the work uniform management server in the first embodiment of the present invention;

[0031] Figure 15 It is the work flow chart of the work uniform outbound in the first embodiment of the present invention;

[0032] Figure 16 It is the work flow chart of the work uniform inbound in the first embodiment of the present invention;

[0033] Figure 17 It is the structural block diagram of the work uniform intelligent management system in the second embodiment of the present invention.

[0034] Reference numerals:

[0035] Intelligent management system for work clothes 10; warehousing equipment 20; online device 21; storage track for shelving 211; warehousing elevator 212; lifting track 213; sliding inclined track 214; blocking device 22; warehousing device 23; hanging mechanism 231; receiving unit 2311; moving unit 2312; storage equipment 30; storage belt 31; bin hole 311; bin code 312; drive hole 313; belt-type storage device 32; installation track 3211; storage belt drive mechanism 322; drive motor 3221; drive gear 3222; load-bearing wheel 3223; limit wheel 3224; outbound equipment 40; outbound device 41; guiding and transferring mechanism 411; curved rail member 4111; guiding member 4112; introducing end 4112a; leading end 4112b; guiding motor 4113; lever mechanism 412; lever 4121; turntable 4122; turntable motor 4123; offline device 42; lifting mechanism 421; lifting track 4211; outbound elevator 4212; outbound inclined track 422; end of outbound inclined track 4221; warehouse control equipment 50; operation terminal 51; warehouse-side control section 501; bin positioning section 502; reference bin acquisition unit 5021; predetermined interval acquisition unit 5022; moving bin acquisition unit 5023; reference bin update unit 5024; current interval acquisition unit 5025; predetermined bin determination unit 5026; storage belt drive unit 5027; warehousing control section 503; outbound control section 504; warehouse-side communication section 505; work clothes management server 60; management terminal 61; server-side control section 601; information storage section 602; work clothes information storage unit 6021; bin information storage unit 6022; predetermined bin acquisition section 603; automatic warehousing control section 604; automatic outbound control section 605; screening section for work clothes to be cleaned 606; server-side communication section 607; work attendance system 70; attendance management server 71; attendance punching device 72; employee terminal 80; clothes hanger 100; hook part 101; hanging opening 101a; shoulder support part 102; transition part 103; clothes hanger label 1031. Detailed implementation manners

[0036] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the intelligent management system for work clothes of the present invention will be specifically described below in conjunction with embodiments and drawings.

[0037] <Embodiment 1>

[0038] This embodiment provides an intelligent management system for work clothes, which is set in an enterprise that requires employees to wear work clothes uniformly during working hours and is used for intelligent management of multiple work clothes. Among them, the thicknesses of multiple work clothes are basically the same, and a clothing label is provided at the back position of the work clothes, and the clothing label contains the work clothes identification code of the work clothes.

[0039] Figure 1 It is the structural block diagram of the work uniform intelligent management system in the embodiment of the present invention.

[0040] Figure 2 It is the structural diagram of the warehousing equipment, storage equipment and out - warehousing equipment in the embodiment of the present invention.

[0041] Figure 3 It is the structural diagram of the warehousing equipment, storage equipment and out - warehousing equipment from different angles in the embodiment of the present invention.

[0042] Figure 4 It is the orthographic projection diagram of the warehousing equipment, storage equipment and out - warehousing equipment in the embodiment of the present invention.

[0043] As Figures 1-4 shown, the work uniform intelligent management system 10 of this embodiment is a belt - type warehousing system that uses a belt - type storage track to convey and store the goods carriers (hangers) carrying goods (work uniforms). It includes a warehousing equipment 20, a storage equipment 30, an out - warehousing equipment 40, a warehousing control equipment 50, an operation terminal 51, a work uniform management server 60 and a management terminal 61.

[0044] The warehousing equipment 20 is used to put the hangers carrying sample clothes into the storage equipment 30. The storage equipment 30 stores (or classifies and stores) the hangers through a storage belt. The out - warehousing equipment 40 is used to take out the hangers from the storage equipment 30. The warehousing equipment 20, the storage equipment 30 and the out - warehousing equipment 40 are all installed at a predetermined position through a metal frame, where the warehousing equipment 20 and the out - warehousing equipment 40 are both arranged on the storage equipment 30. The warehousing control equipment 50 controls the work of the warehousing equipment 20, the storage equipment 30 and the out - warehousing equipment 40. The operation terminal 51 is used for the warehouse management personnel to operate. The work uniform management server 60 stores and manages various information of the work uniforms and the storage equipment 30. The management terminal 61 is used for the work uniform management personnel to operate and manage.

[0045] In addition, as Figure 1 shown, the work uniform intelligent management system 10 is communicatively connected to the work attendance system 70. The work attendance system 70 includes an attendance management server 71 and a plurality of attendance card punching devices 72. The plurality of attendance card punching devices 72 are respectively arranged at the entrances and exits of various areas in the enterprise and are used for employees to punch in and out when going to and from work. When an employee punches in or out, the attendance card punching device 72 obtains the employee's work - in punching information or work - out punching information. The work - in punching information includes the employee identification code and the work - in punching time of the employee, and the work - out punching information includes the employee identification code and the work - out punching time of the employee. The work attendance system 70 is prior art, so it will not be described in detail.

[0046] Figure 5It is a schematic structural diagram of a clothes hanger hanging on a storage belt in an embodiment of the present invention.

[0047] As Figure 5 shown, in this embodiment, a storage belt 31 is used to convey and store the clothes hangers 100 carrying work clothes. The storage belt 31 is composed of a steel belt, and a number of bin holes 311 are evenly spaced thereon. The clothes hanger 100 includes a hook part 101 at the top, a shoulder support part 102 at the bottom for hanging clothes, and a transition part 103 between the hook part 101 and the shoulder support part 102. The hook part 101 has a hanging opening 101a, and a hanger label 1031 is provided on the transition part 103. The hanger label 1031 stores a vehicle identification code. When the clothes hanger 100 is hung into the bin hole 311, the inner top end of the hook part 101 just contacts the bottom end of the bin hole 311.

[0048] Generally, the distance d1 between the center lines of two adjacent bin holes 311 is set to be slightly larger than the width formed by the front and back sides of the clothes when hanging on the clothes hanger, so that each bin hole 311 can hang clothes. In this embodiment, d1 = 26.52 mm. In addition, in this embodiment, the designed load-bearing of each bin hole 311 is about 2.5 kg (the weight of the clothes hanger + clothing). A plurality of bin codes 312 are also provided on the storage belt 31 for uniquely identifying the corresponding bin hole 311 in the current system. The bin codes 312 correspond one-to-one with the bin holes 311 and are arranged on the steel belt above the bin holes 311. The bin code 312 of this embodiment is a two-dimensional code, and the bin serial number of the corresponding bin hole 311 is stored in the two-dimensional code.

[0049] Figure 6 It is a structural diagram of the warehousing equipment in an embodiment of the present invention.

[0050] As Figure 6 shown, the warehousing equipment 20 includes a loading device 21, a blocking and releasing device 22, and a warehousing device 23.

[0051] The loading device 21 loads the clothes hanger 100, and has an upper storage track 211 for hanging the clothes hanger 100, a warehousing elevator 212 for lifting the clothes hanger 100, a lifting track 213 extending obliquely downward, and a sliding inclined track 214 extending obliquely downward. After the clothes hanger 100 is hung on the upper storage track 211, it slides to the warehousing elevator 212 by gravity, is lifted by the warehousing elevator 212 and enters the sliding inclined track 214, and slides down along the sliding inclined track 214 by gravity. A blocking and releasing device 22 is provided at a position near the end of the sliding inclined track 214.

[0052] The blocking and releasing device 22 releases the clothes hanger 100 one by one. After the clothes hanger 100 is released, it reaches the warehousing device 23 and is hooked by the warehousing device 23.

[0053] The warehousing device 23 hangs the hanger 100 into the storage hole 311 at a predetermined warehousing hanging position. The warehousing device 23 has a hanging mechanism 231 for receiving the hanger 100 and hanging the hanger 100 onto the storage belt 31, and a separating mechanism 232 for separating the clothing located on the storage belt 31.

[0054] The hanging mechanism 231 includes a receiving unit 2311, a moving unit 2312, and a rotating unit 2313. The receiving unit 2311 is a rotatable baffle that can receive the released hanger 100 and keep it stationary, facilitating the rotating unit 2313 to hook the hanger 100. The rotating unit 2313 includes a robotic arm that can rotate horizontally and a movable receiving hook provided at the end of the robotic arm. Therefore, the rotating unit 2313 can hook the hanger 100 and drive the hanger 100 to rotate so that the hanging opening 101a faces the storage hole 311. The moving unit 2312 can drive the rotating unit 2313 to move horizontally, enabling the rotating unit 2313 to move to the blocking and releasing device 22 to pick up the hanger 100 and move the rotating unit 2313 to the storage belt 31 to hang the hanger 100. The position on the storage belt 31 corresponding to the hanging mechanism 231 is the predetermined warehousing hanging position, that is, Figure 4 the position shown as B3 in

[0055] Figure 7 Yes Figure 6 an enlarged view of the inner part of the middle frame A.

[0056] As Figure 7 shown, a vehicle identification code reader 23111 is provided at the position on the receiving unit 2311 corresponding to the hanger label 1031 of the hanger 100, for reading the hanger label 1031 of the hanger 100 that reaches this position and is blocked by the movable baffle, so as to obtain the corresponding vehicle identification code; at the same time, a clothing identification code reader is provided at the position on the receiving unit 2311 corresponding to the clothing label of the work clothes, for reading the clothing label of the work clothes on the blocked hanger 100, so as to obtain the corresponding work clothes identification code. The clothing identification code reader is provided at Figure 7 the position shown as B5 in

[0057] The separating mechanism 232 has two movable paddles for separating the clothing on both sides of the storage hole 311 towards both sides, so that the hanging mechanism 231 can smoothly hang the hanger 100.

[0058] In addition, in this embodiment, a part of the upper storage track 211 and its end (i.e., the warehousing temporary storage track) are arranged in the dressing room of the enterprise. Therefore, after the employees enter the dressing room and change their work clothes, they can hang the work clothes on the upper storage track 211. Subsequently, multiple work clothes will be warehoused uniformly.

[0059] As Figures 2-4 shown, the storage device 30 includes one or more belt storage devices 32, and the belt storage device 32 includes a steel belt storage track 321 and a storage belt drive mechanism 322.

[0060] The steel belt storage track 321 is a closed-loop track, including a mounting rail 3211 and a storage belt 31. The mounting rail 3211 is fixedly installed at a predetermined position through a metal bracket, and the storage belt 31 is movably installed on the mounting rail 3211. Only a part of the storage belt 31 on the track is shown in the figure. In fact, the storage belt 31 extends to the entire steel belt storage track 321, that is, the storage belt 31 is also a closed-loop steel belt loop.

[0061] In addition, the warehousing device 20 and the outwarehousing device 40 are also installed on the mounting rail 3211.

[0062] The storage belt drive mechanism 322 is used to drive the storage belt 31 to move along the extension direction of the mounting rail 3211.

[0063] Figure 8 It is a structural diagram of the storage belt in the embodiment of the present invention.

[0064] Figure 9 It is a structural diagram of the storage belt at different angles in the embodiment of the present invention.

[0065] As Figure 2 , Figure 3 , Figure 8 and Figure 9 shown, the storage belt drive mechanism 322 includes a drive motor 3221, a drive gear 3222, a plurality of load-bearing wheels 3223, and a plurality of limit wheels 3224. A plurality of drive holes 313 are also formed in the storage belt 31. Among them, a plurality of drive holes 313 located at the drive gear 3222 are respectively engaged with a plurality of teeth of the drive gear 3222. The plurality of load-bearing wheels 3223 and the plurality of limit wheels 3224 are installed on the storage belt 31 at intervals, and their wheel bodies are movably fitted in the mounting rail 3211. Therefore, the drive motor 3221 drives the drive gear 3222 to rotate, and drives the storage belt 31 to move along the extension direction of the mounting rail 3211 through a meshing transmission method, which is the prior art and will not be described in detail here.

[0066] Figure 10 It is a structural diagram of the outwarehousing device in the embodiment of the present invention.

[0067] As Figure 10 shown, the outwarehousing device 40 includes a warehousing-out device 41 and a down-line device 42. The warehousing-out device 41 is used to move the hanger 100 on the storage belt 31 out of the storage hole 311, and the down-line device 42 is used to down-line or store the hanger 100 from the warehousing-out device 41.

[0068] The offline device 42 has a lifting mechanism 421 and an outbound inclined rail 422. Among them, the lifting mechanism 421 includes a lifting track 4211 connecting the out-of-warehouse device 41 and the outbound inclined rail 422, and an outbound elevator 4212 for transporting the hanger 100 along the lifting track 4211 to the outbound inclined rail 422. As Figure 2 shown, a baffle 4221 for blocking the hanger 100 is provided at the end of the outbound inclined rail 422, so that the taken hanger 100 can be temporarily stored here.

[0069] In addition, in this embodiment, a part of the outbound inclined rail 422 and its end (i.e., the outbound temporary storage track) are also arranged in the dressing room of the enterprise. Therefore, employees can enter the dressing room, take the work clothes on the temporarily stored hanger 100, and directly change in the dressing room.

[0070] Figure 11 is the structural diagram of the out-of-warehouse device in the embodiment of the present invention.

[0071] Figure 12 is a partial structural diagram of the out-of-warehouse device in the embodiment of the present invention.

[0072] As Figure 11 and Figure 12 shown, the out-of-warehouse device 41 includes a guiding and transferring mechanism 411 and a lever mechanism 412. The guiding and transferring mechanism 411 is used to guide and transfer the hanger 100 on the storage belt 31 to the lifting track 4211 of the offline device 42, and the lever mechanism 412 is used to push the hanger 100 guided out by the guiding and transferring mechanism 411.

[0073] Among them, the guiding and transferring mechanism 411 has a curved rail member 4111, a guiding member 4112, and a guiding motor 4113. The guiding member 4112 is used to transfer the hanger 100 located on the storage belt 31 to the curved rail member 4111, and the guiding motor 4113 is used to drive the guiding member 4112 to rotate.

[0074] As Figure 12 shown, the middle of the guiding member 4112 has a channel for the storage belt 31 to pass through. The guiding member 4112 also has an introducing end 4112a and an extracting end 4112b. The introducing end 4112a is used to introduce the hanger 100 from the storage belt 31 onto the guiding member 4112, and the extracting end 4112b is used to extract the hanger 100 from the guiding member 4112 onto the curved rail member 4111. The position on the storage belt 31 corresponding to the guiding member 411 is the predetermined outbound extraction position, that is, Figure 4 the position shown as B2 in

[0075] In the initial state, the guiding member 4112 is in a horizontal position relative to the storage belt 31, that is, the length direction of the guiding member 4112 is substantially parallel to the extending direction of the storage belt 31; when the clothes hanger 100 is to be taken out, under the drive of the guiding motor 4113, the guiding member 4112 rotates upward to a position that cooperates with the curved rail member 4111, that is Figure 16 the position shown in, at this time, the clothes hanger 100 is lifted obliquely upward, leaves the storage bin hole 311, and then enters the curved rail member 4111 along the guiding member 4112, and is then pushed and moved by the lever mechanism 412.

[0076] The lever mechanism 412 includes a plurality of levers 4121, a turntable 4122, and a turntable motor 4123. The plurality of levers 4121 are evenly installed at the side of the turntable 4122. Under the drive of the turntable motor 4123, the turntable 4122 rotates, driving the levers 4121 to move along an arc, thereby pushing the clothes hanger 100 on the curved rail member 4111 to move along the extending direction of the curved rail member 4111 to the offline device 42, and then the offline device 42 moves the clothes hanger 100 to the end of the outbound inclined rail 422 for temporary storage.

[0077] The warehousing control device 50 controls the operations of the above-mentioned inbound device 20, storage device 30, and outbound device 40.

[0078] Figure 13 It is the structural block diagram of the warehousing control device in the invention embodiment.

[0079] As Figure 13 shown, the warehousing control device 50 includes a warehousing side control unit 501, a bin positioning unit 502, an inbound control unit 503, an outbound control unit 504, and a warehousing side communication unit 505.

[0080] The bin positioning unit 502 locates the predetermined bin hole according to the bin serial number received from the management server 60 (denoted as the predetermined bin x). The bin positioning unit 502 includes a reference bin acquisition unit 5021, a predetermined interval acquisition unit 5022, a moving bin acquisition unit 5023, a reference bin update unit 5024, a current interval acquisition unit 5025, a predetermined bin determination unit 5026, and a storage belt drive unit 5027.

[0081] The reference bin acquisition unit 5021 includes a camera arranged at a predetermined reference position beside the storage belt 31. As Figure 4 shown, when the storage belt 31 is in a stationary state, the reference bin acquisition unit 522 takes a picture of the bin code 312 at the reference position through the camera, obtains an image containing the bin code 312, and then decodes the image to obtain the bin serial number contained in the bin code 312, denoted as the reference bin i.

[0082] The predetermined interval acquisition unit 5022 obtains a predetermined bin interval d between a predetermined bin hole and a predetermined storage-in hanging position or a storage-out taking position according to a predetermined bin x and a reference bin i, that is, the distance of how many bin holes 311 are there between them.

[0083] In this embodiment, the predetermined storage-in hanging position corresponds to the setting of the hanging mechanism 231, that is, Figure 4 at the position shown as B1 in; the predetermined storage-out taking position corresponds to the setting of the out-of-store device 41, that is, Figure 4 at the position shown as B2 in.

[0084] Taking the storage-in hanging position as an example, the management server 60 also stores the distance between the reference position and the storage-in hanging position, denoted as the reference hanging interval D. Denote the bin number of the bin hole 311 currently located at the predetermined hanging position as the hanging bin a, and denote the total number of bin holes 311 on the storage belt 31 as the total number S. Then, the above-mentioned predetermined bin interval d can be obtained according to the following formula:

[0085] Hanging bin a = reference bin i + reference hanging interval D;

[0086] Predetermined bin interval d = hanging bin a - predetermined bin x.

[0087] In the formula, the predetermined bin interval d can be a positive number or a negative number. When it is a positive number, the storage belt 31 moves in the predetermined conveying direction, and when it is a negative number, the storage belt 31 moves in the reverse direction.

[0088] The moving bin acquisition unit 5023 includes an infrared photoelectric sensor arranged at a predetermined detection position beside the storage belt 31. As Figure 4 shown, once a bin hole 311 passes through this position, the infrared photoelectric sensor senses the bin hole 311 and generates a corresponding electrical signal. The moving bin acquisition unit 5023 makes a count, thereby obtaining the moving bin number k of the predetermined bin hole, that is, how many bin holes 311 the predetermined bin hole has moved. Among them, when the storage belt 31 moves in the predetermined conveying direction and the infrared photoelectric sensor senses the bin hole 311, the moving bin number k + 1; when the storage belt 31 moves in the reverse direction and the infrared photoelectric sensor senses the bin hole 311, the moving bin number k - 1.

[0089] The reference bin update unit 5024 updates the reference bin i in real time according to the moving bin number k obtained by the moving bin acquisition unit 523, that is:

[0090] Reference bin i' = reference bin i + moving bin number k.

[0091] The current interval acquisition unit 5025 calculates and acquires the current interval b of the predetermined bin hole according to the real-time updated reference bin position i', that is, the number of bin positions that the predetermined bin hole still needs to move continuously. Taking the inbound hanging position as an example, it is:

[0092] The hanging bin position a' = the reference bin position i' + the reference hanging interval D;

[0093] The current interval b = the hanging bin position a' - the predetermined bin position x.

[0094] The current interval b = 0, that is, the predetermined bin hole reaches the inbound hanging position or the outbound taking position.

[0095] The predetermined bin position determination unit 5026 determines whether the predetermined bin hole reaches the inbound hanging position or the outbound taking position according to the current interval b acquired by the current interval acquisition unit 5025 and the inbound or outbound instruction. When the received instruction is an inbound instruction and the current interval b = 0, it reaches the predetermined hanging position; when the received instruction is an outbound instruction and the current interval b = 0, it reaches the predetermined taking position.

[0096] The storage belt driving unit 5027 drives the storage belt 31 to move, decelerate or stop according to the current interval b and the determination result of the predetermined bin position determination unit 5026, so as to move the reserved bin hole to the inbound hanging position or the outbound taking position. Specifically, for the inbound hanging position:

[0097] When the predetermined bin position determination unit 5026 determines that it has not reached and the current interval b ≥ 20 bin holes 311, the storage belt driving unit 527 drives the storage belt 31 to move at a predetermined high speed. In this embodiment, the predetermined high speed is 18 m / min - 28 m / min;

[0098] When the predetermined bin position determination unit 5026 determines that it has not reached and 5 bin holes 311 ≤ the current interval b < 20 bin holes 311, the storage belt driving unit 5027 drives the storage belt 31 to move at a predetermined medium speed. In this embodiment, the predetermined medium speed is 12 m / min;

[0099] When the predetermined bin position determination unit 5026 determines that it has not reached and the current interval b < 5 bin holes 311, the storage belt driving unit 5027 drives the storage belt 31 to move at a predetermined low speed. In this embodiment, the predetermined low speed is 6 m / min;

[0100] When the predetermined bin position determination unit 5026 determines that it reaches the inbound hanging position, the storage belt driving unit 5027 controls the storage belt driving mechanism 322 to pause and makes the storage belt 31 stationary. At this time, the hanging mechanism 231 can hang the hanger 100 into the bin hole 311 located at the inbound hanging position.

[0101] Similarly, for the outbound taking position:

[0102] When the predetermined bin determination unit 5026 determines that it has not reached and the current interval b ≥ 20 bin holes 311, the storage tape drive unit 5027 drives the storage tape 31 to move at a predetermined high speed;

[0103] When the predetermined bin determination unit 5026 determines that it has not reached and 5 bin holes 311 ≤ the current interval b < 20 bin holes 311, the storage tape drive unit 5027 drives the storage tape 31 to move at a predetermined medium speed;

[0104] When the predetermined bin determination unit 5026 determines that it has not reached and the current interval b < 5 bin holes 311, the storage tape drive unit 5027 drives the storage tape 31 to move at a predetermined low speed;

[0105] When the predetermined bin determination unit 5026 determines that it has reached the predetermined take-out position, the storage tape drive unit 5027 drives the storage tape 31 to maintain a predetermined low speed. At this time, the out-of-warehouse device 41 can pick out the hanger 100 from the bin hole 311 at the predetermined take-out position.

[0106] The warehousing control unit 503 controls the process of clothing warehousing, and controls the warehousing device 20 to hang the hanger 100 into the bin hole 311 at the predetermined warehousing hanging position.

[0107] The out-of-warehouse control unit 504 controls the process of clothing out-of-warehouse. When the designated hanger 100 reaches the out-of-warehouse take-out position, it issues a pick-up instruction, that is, controls the out-of-warehouse device 41 to pick out the hanger 100 from the bin hole 311 at the out-of-warehouse take-out position, and then controls the offline device 42 to transfer the hanger 100 out of the warehouse.

[0108] The warehousing side communication unit 505 is used to communicate with the management server 60, and the above-mentioned bin number receiving unit is the warehousing side communication unit 505.

[0109] The work uniform management server 60 is used to store and manage various information of work uniforms, hangers 100, and bin holes.

[0110] Figure 14 It is the structural block diagram of the warehousing control device in the embodiment of the present invention.

[0111] As Figure 14 shown, the work uniform management server 60 includes a server side control unit 601, an information storage unit 602, an automatic warehousing control unit 603, an automatic out-of-warehouse control unit 604, a work uniform to be cleaned screening unit 605, and a server side communication unit 606.

[0112] The information storage unit 602 is used to store various information, including a work uniform information storage unit 6021 and a bin information storage unit 6022.

[0113] The work uniform information storage unit 6021 stores a work uniform information table.

[0114] Table 1 Work Uniform Information Table

[0115]

[0116] As shown in Table 1, the work uniform information table stores information such as the work uniform identification code of each work uniform, the employee identification code of the corresponding employee, the in-stock situation of the work uniform, the warehousing time, the outbound time, and the last cleaning time of the work uniform.

[0117] The bin location information storage unit 6022 stores a bin location information table.

[0118] Table 2 Bin Location Information Table

[0119]

[0120]

[0121] As shown in Table 2, the bin location information table stores the bin location serial number of each bin location hole 311, the bin location code, the carrier identification code of the hanger 100 hung in the bin location hole 311, and the work uniform identification code of the work uniform placed on the hanger 100. Among them, the bin location serial number represents the position of the bin location hole 311 on the storage belt 31, and the bin location serial numbers are sorted in sequence along the extension direction of the storage belt 31.

[0122] In this embodiment, the distance between the center lines of two bin location holes 311 is 26.52 mm. This data is obtained by taking an ordinary T-shirt as an example (the sum of the thicknesses of the front and back sides of the clothing plus the width of the shoulder support part 102 of the hanger 100 is approximately equal to 26 mm). Therefore, when the total thickness of the hanger 100 carrying the clothing is less than 26 mm, one hanger 100 can be hung in each bin location hole 311; when the total thickness is between 26 mm and 50 mm, one hanger 100 is hung in every two bin location holes 311; when the total thickness is between 50 mm and 73 mm, one hanger 100 is hung in every three bin location holes 311. Work uniforms are usually unified clothing with the same standard thickness. Therefore, for the convenience and clarity of description in this embodiment, it is assumed that the work uniform is a thin outerwear, and the total thickness of the work uniform plus the hanger 100 is approximately 35 mm. Therefore, as shown in Table 2, one work uniform is hung at every other bin location serial number (that is, every other bin location hole 311).

[0123] In addition, in this embodiment, when all work clothes are first put into storage, corresponding storage holes 311 have been allocated to these work clothes, and the storage hole code 312 of the storage hole 311 is stored in correspondence with the work clothes identification code. Thereafter, the storage hole code 312 and the corresponding work clothes identification code are always stored in correspondence, and remain unchanged when the work clothes are put into storage or taken out of storage, so that the corresponding storage hole 311 can be located simply and quickly according to the work clothes identification code. As shown in the storage hole number 5 in Table 2, the work clothes with the work clothes identification code of GZF003 have been taken out, so there is no record of the corresponding carrier identification code of the hanger 100.

[0124] The scheduled bin acquisition unit 603 is used to acquire the above-mentioned scheduled bin x, that is, the bin serial number of the scheduled bin hole for hanging the hanger 100, or the bin serial number of the scheduled bin hole where the hanger 100 to be taken out is hung. For the hanger 100 to be put into storage, the scheduled bin acquisition unit 603 queries the bin information table according to the work clothes identification code read by the RFID reader on the storage device 20 to obtain the corresponding bin serial number; for the hanger 100 to be taken out of the storage, the scheduled bin acquisition unit 603 queries the work clothes information table according to the employee identification code received from the attendance management server 71 to obtain the corresponding work clothes identification code, and then queries the bin information table according to the work clothes identification code to obtain the corresponding bin serial number.

[0125] The automatic warehousing control unit 604 is used to control the warehouse control device 50 to automatically put one or more pieces of clothing into the warehouse. When employees get off work, they change their work clothes, hang them on a hanger 100, and hang the hanger 100 on the shelf storage track 211. Then, at the scheduled warehousing time, the management personnel operate the management terminal 61 to carry out unified warehousing.

[0126] During unified warehousing, the hanger 100 is lifted by the elevator 212 and enters the sliding ramp 214, and slides to the blocking device 22. After the automatic warehousing control unit 603 sends a warehousing instruction to the warehouse control device 50, the blocking device 22 releases a hanger 100, and the hanger 100 continues to slide and is blocked by the receiving unit 2311. At this time, the RFID reader on the receiving unit 2311 reads the carrier identification code of the hanger 100 and sends it to the management server 60. After receiving the carrier identification code, the reserved location acquisition unit 603 obtains the reserved location x according to the carrier identification code, and the automatic warehousing control unit 604 sends the reserved location x to the warehouse control device 50. After the warehouse control device 50 receives it, the warehousing control unit 503 controls the warehousing device 20 to hang the hanger 100 in the corresponding location hole 311 according to the reserved location x.

[0127] The automatic outbound control unit 605 is used to control the warehousing control device 50 to automatically discharge one or more pieces of clothing. When an employee goes to work, they punch in through the attendance punching device 72. The attendance management server 71 receives the work attendance punching information and sends it to the work uniform management server 60. The work attendance punching information contains the employee identification code of the employee. The reserved storage location obtaining unit 603 queries the corresponding reserved storage location x according to the employee identification code, and sends the reserved storage location x and the outbound instruction to the warehousing control device 50. After receiving it, the outbound control unit 504 controls the outbound device 40 to take out the corresponding hanger 100 according to the reserved storage location x.

[0128] The work uniforms to be cleaned screening unit 606 is used to obtain the work uniform identification codes of all work uniforms to be cleaned according to the preset cleaning date interval. In this embodiment, the preset cleaning time interval is set to 7 days, that is, work uniforms that have not been cleaned for more than 7 days should be uniformly discharged for cleaning. The work uniforms to be cleaned screening unit 507 traverses the work uniform information table, finds all work uniforms whose date interval between the last cleaning date and the current date is greater than or equal to 7 days and are currently in the warehouse, and obtains the work uniform identification codes of these work uniforms.

[0129] The warehousing side communication unit 607 is used to communicate with the attendance management server 61, and the above-mentioned attendance information receiving unit is the warehousing side communication unit 607.

[0130] The management terminal 61 is held by the management staff of the work uniforms and is communicatively connected to the work uniform management server 60. In this embodiment, the management terminal 61 is a tablet computer held by the management staff. The management staff can obtain the above-mentioned work uniform information table through the management terminal 61, and can perform certain screening on the work uniform information table according to the preset screening conditions, so as to timely discover work uniforms that have not been returned on time, and find out all work uniforms that have not been cleaned overdue, etc.

[0131] Figure 15 It is the work flow chart of the work uniform outbound in the embodiment of the present invention.

[0132] As Figure 15 shown, in this embodiment, when an employee punches in for work, the work flow of the work uniform intelligent management system 10 discharging the corresponding work uniforms specifically includes the following steps:

[0133] Step S1-1, the employee punches in for work through the attendance punching device 72, the attendance server 71 obtains the work attendance punching information of the employee, and then enters step S1-2;

[0134] Step S1-2, the attendance server 71 sends the work attendance punching information to the work uniform management server 60, and then enters step S1-3;

[0135] Step S1-3: The work uniform management server 60 receives the work attendance check-in information. The reserved bin acquisition unit 603 acquires the corresponding reserved bin x according to the employee identification code therein, and then proceeds to step S1-4;

[0136] Step S1-4: The work uniform management server 60 sends the reserved bin x and the outbound instruction to the warehouse control device 50, and then proceeds to step S1-5;

[0137] Step S1-5: The warehouse control device 50 receives the reserved bin x and the outbound instruction. The bin positioning unit 502 moves the reserved bin hole to the outbound retrieval position according to the reserved bin x, and then proceeds to step S1-6;

[0138] Step S1-6: The outbound control unit 504 controls the outbound device 40 to take out the hanger 100 from the reserved bin hole and convey it to the outbound ramp 422 for temporary storage, and then enters the end state.

[0139] By repeating the above steps S1-1 to S1-6, the corresponding work uniforms for multiple employees can be taken out. One or more work uniforms taken out are temporarily stored on the track section of the outbound ramp 422 in the dressing room.

[0140] Figure 16 It is the work flow chart for the warehousing of work uniforms in the embodiment of the present invention.

[0141] As Figure 16 shown, based on the above work uniform intelligent management system 10, after the employee gets off work and changes out of the work uniform, the work flow for warehousing the work uniforms temporarily stored on the online storage track 211 by the work uniform intelligent management system 10 specifically includes the following steps:

[0142] Step S2-1: The management staff starts unified warehousing through the management terminal 61, and then proceeds to step S2-2;

[0143] Step S2-2: The work uniform management server 60 sends the warehousing instruction to the warehouse control device 50, and then proceeds to step S2-3;

[0144] Step S2-3: The warehouse control device 50 receives the warehousing instruction. The warehousing control unit 503 controls the blocking and releasing device 22 to release one hanger 100, and then proceeds to step S2-4;

[0145] Step S2-4: The hanger 100 slides to the receiving unit 2311. The RFID reader on the receiving unit 2311 reads the carrier identification code of the hanger 100 and the work uniform identification code of the work uniform, and sends the carrier identification code and the work uniform identification code to the work uniform management server 60, and then proceeds to step S2-5;

[0146] Step S2-5: The work uniform management server 60 receives the vehicle identification code and the work uniform identification code, stores the vehicle identification code and the work uniform identification code in the corresponding storage location information table, and then proceeds to Step S2-6;

[0147] Step S2-6: The reserved storage location acquisition unit 603 obtains the corresponding reserved storage location x according to the work uniform identification code, and sends it to the warehousing control device 50, and then proceeds to Step S2-7;

[0148] Step S2-7: The warehousing control device 50 receives the reserved storage location x, and the storage location positioning unit 502 moves the reserved storage location hole to the warehousing hanging position according to the reserved storage location x, and then proceeds to Step S2-8;

[0149] Step S2-8: The warehousing control unit 503 controls the hanging mechanism 231 to hang the hanger 100 into the reserved storage location hole, and then enters the end state.

[0150] Repeating the above Steps S2-2 to S2-8 can warehousing multiple work uniforms temporarily stored on the online storage track 211. A photoelectric sensor is provided at the blocking device 22, and different electrical signals are generated when there is a hanger 100 and when there is no hanger 100 at this position. Therefore, when all the hangers 100 are on the shelves, the warehousing control device 50 can receive the corresponding signals from the photoelectric sensor and feedback the information of the hangers 100 without subsequent work uniforms to be warehoused to the work uniform management server 60.

[0151] In addition, when preparing to uniformly clean the work uniforms, after the work uniforms to be cleaned screening unit 606 obtains the work uniform identification codes of all the work uniforms to be cleaned, all the work uniforms to be cleaned can be taken out one by one through the above Steps S1-1 to S1-6 in the same way. After the work uniforms are uniformly cleaned and hung on the online storage track 211, the cleaned work uniforms can be warehoused one by one again through the above Steps S2-1 to S2-8 in the same way.

[0152] <Embodiment 2>

[0153] Figure 17 is the structural block diagram of the work uniform intelligent management system in this embodiment.

[0154] As Figure 17 shown, compared with Embodiment 1, the difference in this embodiment is that the work uniform intelligent management system 10 further includes a plurality of employee terminals 80.

[0155] The employee terminal 80 is a smart phone held by each employee, installed with a corresponding program, and communicatively connected to the work uniform management server 60. The employee identification code of the employee, that is, the account information entered when the employee logs in, is stored in the employee terminal 80. Correspondingly, the work uniform management server 60 can receive the employee identification code and the outbound instruction for fetching work uniforms sent by each employee terminal 80 through the server-side communication unit 606 (that is, the above-mentioned employee identification code receiving unit).

[0156] Therefore, when there is a problem with the attendance management server 71 or the attendance punching device 72 and it is impossible to normally fetch work uniforms by punching in for work, the employee can also operate the employee terminal 80 to fetch work uniforms.

[0157] In this embodiment, other structures and working principles are the same as those in the first embodiment, so they will not be repeated here.

[0158] Functions and effects of the embodiment

[0159] According to the work uniform intelligent management system 10 provided in this embodiment, which is communicatively connected to the work attendance system 60, it includes an inbound device 20, a storage device 30, an outbound device 40, a warehouse control device 50, and a work uniform management server 60. Since the storage belt 31 with multiple storage holes 311 is used to store the hangers 100 carrying work uniforms, high-density storage of work uniforms can be achieved. Since the work uniform management server 60 has a warehouse-side communication unit 508 (that is, the attendance information receiving unit), when an employee punches in for work, it can receive the work attendance information containing the employee identification code from the attendance management server 61. Since it has a work uniform information storage unit 6021 and a warehouse position information storage unit 6022, it can obtain the warehouse position number of the storage hole 311 where the corresponding work uniform is hung according to the received employee identification code, and send the warehouse position number and the outbound instruction to the warehouse control device 50. The warehouse control device 50 has a position positioning unit 504, so it can move the corresponding storage hole 311 to a predetermined outbound fetching position according to the received warehouse position number. Then, the outbound control unit 504 can control the outbound device 40 to fetch the hanger 100 with the corresponding work uniform hung from the storage hole 311 at this position. As described above, the work uniform intelligent management system 10 of the embodiment of the present invention can achieve high-density storage of work uniforms in an enterprise, automatically fetch the corresponding work uniforms when employees punch in for work, save a large amount of storage space, save manpower and material resources, and improve the efficiency and automation degree of work uniform management.

[0160] Furthermore, the end of the outgoing inclined rail 422 of the outgoing equipment 40 and a part of its track section are arranged in the dressing room. Therefore, after the employees go to work, during the process of the employees walking to the dressing room, their work uniforms are automatically taken out and temporarily stored on the track section of the outgoing inclined rail 422 in the dressing room. After the employees enter the dressing room, they can directly pick up their work uniforms for replacement, thus saving a large amount of queuing time. The employees do not have to go to the dressing room after getting the work uniforms, so the dressing time is also saved, providing one-stop convenience for the employees.

[0161] Furthermore, when the employees get off work, after changing their work uniforms, they only need to hang the work uniforms on the hanger 100 and hang the hanger 100 on the track section of the incoming storage track 211 which is also located in the dressing room, and then the employees can leave work. Subsequently, at a predetermined time, the management staff operates through the management terminal 61 to uniformly store the hanger 100, thus saving a large amount of queuing time for the employees to return the work uniforms when getting off work.

[0162] In addition, the work uniform management server 60 also has a to-be-cleaned work uniform screening unit 606, which can screen out all the to-be-cleaned work uniforms according to the last cleaning time in the work uniform information table and the predetermined cleaning frequency, and obtain the work uniform identification codes of these work uniforms. Then, the automatic outgoing control unit 605 can successively take out the to-be-cleaned work uniforms according to these work uniform identification codes. Therefore, the work uniform intelligent management system 10 of this embodiment can also automatically take out the to-be-cleaned work uniforms. After the work uniforms are uniformly cleaned, they only need to be hung on the incoming storage track 211, and then the cleaned work uniforms can be uniformly stored in the same way as above. Therefore, the automation degree of the outgoing and incoming storage of the to-be-cleaned work uniforms is high, saving a large amount of manpower and avoiding the mistakes and omissions caused by manual outgoing and incoming storage.

[0163] In addition, the work uniform management server 60 is also connected to a management terminal 61. Therefore, the management staff can conveniently view the records in the work uniform information table and the bin location information table through the management terminal 61, and contact the employees in time to verify the situation when finding that the work uniforms are not returned on time. Similarly, when finding that the work uniforms are not cleaned on time, contact the cleaning staff in time for cleaning. Therefore, the work uniforms can be conveniently managed, and abnormal situations can be handled in time, saving manpower and material resources and avoiding corresponding losses.

[0164] The above embodiments are only used to illustrate the specific implementation manners of the present invention, and the present invention is not limited to the description scope of the above embodiments.

[0165] In the above embodiment, the steel belt type storage track 321 is a planar closed loop track. In other solutions of the present invention, the steel belt type storage track 321 can also be a closed track of other shapes, such as a spiral closed track or an X-shaped closed track.

[0166] In the above embodiment, the distance between two adjacent bin holes 311 is 26.52 mm. In other solutions of the present invention, according to the style and size of the work clothes, the distance between two adjacent bin holes 311 can also be set to 15 mm - 30 mm.

[0167] In the above embodiment, the bin code 312 is a two-dimensional code, and the information contained in the two-dimensional code is the bin serial number of the corresponding bin hole 311. In other solutions of the present invention, the bin code 312 can also adopt other machine-readable recognizable graphics, and the recognizable graphics contain the bin serial number of the corresponding bin hole 311.

[0168] In the above embodiment, the bin code 312 corresponds to the bin hole 311 one by one. In other solutions of the present invention, the bin code 312 and the bin hole 311 can also be spaced corresponding. For example, every 10 bin holes 311 correspond to one bin code 312. When the system is started, the staff manually adjusts and moves one of the bin codes 312 to the reference position, and the technical effect of the present invention can also be achieved, and a large amount of time for pasting two-dimensional codes can be saved during deployment.

[0169] In the above embodiment, when the current interval b ≥ 20 bin holes 311, the storage belt 31 moves at a predetermined high speed. When 5 bin holes 311 ≤ current interval b < 20 bin holes 311, the storage belt 31 moves at a predetermined medium speed. When the current interval b < 5 bin holes 311, the storage belt 31 moves at a predetermined low speed. In other solutions of the present invention, the above thresholds can also be set to other values according to the actual situation.

Claims

1. An intelligent work uniform management system for managing employees' work uniforms, which is communicatively connected to the work attendance system. The work attendance system has an attendance management server for storing work attendance information and an attendance punching device for employees to punch in for work. The work attendance information includes the employee identification code of the employee and the work attendance punching time. It is characterized in that, Comprising: A storage device for storing a cargo carrier carrying the work clothes, having at least one storage belt with a plurality of storage holes for hanging the cargo carrier; An outbound device for taking out the cargo carrier in the storage device; A warehousing control device; And A work clothes management server, wherein the bin control device at least includes: A bin serial number receiving unit for receiving the bin serial number of a predetermined storage hole from the management server as a predetermined bin; A bin positioning unit for moving the corresponding predetermined storage hole to a predetermined outbound taking-out position according to the received outbound instruction and the predetermined bin; and An outbound control unit for controlling the outbound device to take out the cargo carrier from the storage hole at the outbound taking-out position, The work clothes management server at least includes: An attendance information receiving unit for receiving the work attendance clock-in information of each employee from the attendance management server; A work clothes information storage unit storing the work clothes identification code of each work clothes and the corresponding employee identification code; A bin information storage unit storing the bin serial number of the storage hole, the carrier identification code of the corresponding cargo carrier, and the work clothes identification code of the corresponding work clothes; A predetermined bin obtaining unit for obtaining the corresponding bin serial number as the predetermined bin according to the received employee identification code; and An automatic outbound control unit for sending the outbound instruction and the predetermined bin to the warehousing control device, so that the bin positioning unit positions the predetermined storage hole, and further enabling the outbound control unit to control the outbound device to take out the cargo carrier.

2. The intelligent work uniform management system according to claim 1, characterized in that, Wherein, The outbound device has an outbound temporary storage track for temporarily storing the outbound cargo carrier, and this outbound temporary storage track is located in the dressing room of the employee.

3. The intelligent work uniform management system according to claim 1, characterized in that, Further comprising: An inbound device for storing the cargo carrier into the storage device, having a work clothes identification code reader for reading the work clothes identification code of the work clothes to be stored, wherein the predetermined bin obtaining unit also obtains the corresponding bin serial number as the predetermined bin according to the work clothes identification code, The bin positioning unit also moves the predetermined storage hole to a predetermined inbound hanging position according to the received inbound instruction and the predetermined bin, The warehousing control device further includes: An inbound control unit for controlling the inbound device to hang the cargo carrier into the storage hole at the hanging position, The work clothes management server further includes: An automatic inbound control unit for sending the inbound instruction and the predetermined bin to the warehousing control device, so that the bin positioning unit positions the predetermined storage hole, and further enabling the inbound control unit to control the inbound device to store the cargo carrier.

4. The intelligent work uniform management system according to claim 3, characterized in that: Wherein, The inbound device has an inbound temporary storage track for temporarily storing the cargo carrier to be stored, and this inbound temporary storage track is located in the dressing room of the employee.

5. The intelligent work uniform management system according to claim 1, characterized in that: Wherein, The work clothes information storage unit also stores the last cleaning time of the work clothes, The work clothes management server further includes: The work uniform screening department to be cleaned is used to screen out all the work uniforms to be cleaned according to the last cleaning time and the predetermined cleaning rules, obtain the work uniform identification codes of the work uniforms to be cleaned, and then obtain the corresponding bin numbers according to the screened work uniform identification codes. The automatic outbound control department also sends out the work uniforms to be cleaned according to the screened bin numbers.

6. The intelligent management system for work clothes according to claim 1, wherein, It further includes: Multiple employee terminals, respectively held by multiple employees, are communicatively connected to the work uniform management server and store the employee identification codes of the employees. Among them, the work uniform management server further includes: The employee identification code receiving department is used to receive the corresponding employee identification codes from multiple employee terminals. The automatic outbound control department sends out the goods carrier according to the corresponding predetermined bin.

7. The intelligent management system for work clothes according to claim 1, wherein, It further includes: At least one management terminal, held by a manager, is communicatively connected to the work uniform management server and is used to view the information of the work uniforms.

8. The intelligent management system for work clothes according to claim 3, It is characterized in that: Among them, The bin positioning department includes: The reference bin acquisition unit is set at a predetermined reference position beside the storage belt and is used to read the bin number at this position as the reference bin. The predetermined interval acquisition unit is used to obtain the predetermined bin interval between the predetermined bin hole and the inbound hanging position or the outbound taking position according to the predetermined bin and the reference bin. The moving bin acquisition unit is set at a predetermined detection position beside the storage belt and is used to sense and count the bin holes passing through this position, so as to obtain the number of moving bins of the predetermined bin hole. The reference bin update unit is used to update the reference bin according to the number of moving bins. The current interval acquisition unit is used to obtain the current interval of the predetermined bin hole according to the updated reference bin. The predetermined bin determination unit is used to judge whether the predetermined bin hole reaches the outbound taking position according to the current interval; and The storage belt driving unit is used to control the movement or stop of the storage belt according to the determination result of the predetermined bin determination unit, so as to move the predetermined bin hole to the inbound hanging position or the outbound taking position.

9. The intelligent management system for work clothes according to claim 8, wherein: Wherein, The storage belt driving unit also controls the storage belt to move at a predetermined speed according to the current interval.

Citation Information

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