Production equipment for hand bag
By setting the handle installation unit downstream of the bag forming unit in the handbag production equipment and using the bag conveying unit for transportation, the waste problem caused by the handle installation in the prior art is solved, and the production efficiency and yield rate are improved.
Patent Information
- Application Number
- CN202520833538.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2035-04-29
AI Technical Summary
The existing handbag production equipment installs handles before pressing and forming the handbag, which may produce waste handbags.
A handbag production equipment is designed, the handle installation unit is located downstream of the bag body forming unit and is conveyed through the bag body conveying unit. The handle installation process is arranged at the rear end of the bag body forming process.
It avoids the handle hanging on the mold or machine components during the molding process, which reduces the scrap rate and improves the stability of the production process and operational safety.
Smart Images

Figure CN222959356U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field related to bag making, in particular to a production device for handbags. Background Art
[0002] A handbag is a common bag. When in use, the handbag is usually stretched out into a cube shape. There is a handle at the opening of the handbag. The handbag is usually made of various materials, such as cloth, leather, plastic, paper, etc. The handle of the handbag is very important and greatly affects the user's comfort in using the handbag.
[0003] In the prior art, when producing handbags and installing handles, there are two common installation methods. One is to install the handles manually by threading the rope, which is inefficient. Another installation method is to install the handles on the sheet material before the handbag is pressed and formed, and then the sheet material is pressed and formed into a three-dimensional handbag. For example, the Chinese patent with publication number CN119704777A discloses a three-dimensional bag manufacturing device and manufacturing process, which sets the handle fixing mechanism at the front end of the bag body forming mechanism. This setting method is to set the handle installation mechanism upstream of the bag body forming mechanism, but after the handle is installed and fixed on the sheet material, it will affect the bag body forming. Specifically, during the pressing and forming process, the handle is in a free state and there is no way to fix it. There is a risk that the handle will be hung on the forming mold or other components of the machine, which has high requirements for transportation, and the handle may also tear the handbag to form a waste bag. There is a hidden danger of process defects when installing the handle before pressing and forming the handbag.
[0004] Therefore, the bag production equipment in the prior art may produce waste bags when installing the handles before pressing and forming the bags. Utility Model Content
[0005] The purpose of the present application is to solve the problem in the prior art that waste packaging bags may be produced when installing handles before pressing and forming the handbags in the handbag production equipment.
[0006] In order to solve the above technical problems, the embodiment of the present application discloses a production equipment for handbags, which includes a bag body forming unit and a handle installation unit. Along the production line direction of the production equipment, the handle installation unit is located downstream of the bag body forming unit, and a bag body conveying unit is provided between the handle installation unit and the bag body forming unit. The bag body forming unit forms a sheet-like base material into a bag body with an opening at one end, and the handle installation unit installs the ends of each handle of the handbag at a position on the bag body close to the opening.
[0007] The bag body conveying unit is arranged to extend between the bag body forming unit and the handle mounting unit. The bag body conveying unit includes a driving mechanism and a moving conveying mechanism. The power output end of the driving mechanism is in transmission connection with the moving conveying mechanism, and the moving conveying mechanism can convey the bag body from the outlet end of the bag body forming unit to the inlet end of the handle mounting unit.
[0008] With the above technical solution, along the production line direction of the production equipment, the handle mounting unit is arranged downstream of the bag body forming unit. With this structural design, the handle is mounted after the handbag is formed. Therefore, in the process of forming the sheet substrate into a bag body with an opening and in the processes before forming, there is no handle on the sheet substrate. In this way, there is no handle on the sheet substrate during the conveying and forming processes, so the risk of the handle hanging on the forming die or other components of the machine is avoided, and the contact and friction between the sheet substrate and the forming die and other components of the machine during the conveying process are not interfered by the handle. And there will be no problem that the handle is caught and tears the handbag, so the hidden danger of process defects in mounting the handle before pressing and forming the handbag is solved.
[0009] Adopting the design of the present application can also improve the stability of the production process, reduce equipment failures, avoid material losses caused by the defective product rate, and further enhance the operation safety, having the advantages of higher production efficiency and finished product rate.
[0010] Further preferably, in the present application, the driving mechanism includes a driving motor, and the moving conveying mechanism includes a driving conveying wheel, a driven conveying wheel and a conveyor belt. The output end of the driving motor is in transmission connection with the driving conveying wheel, and the conveyor belt surrounds the outer ends of the driving conveying wheel and the driven conveying wheel and is in transmission connection; the driving conveying wheel and the driven conveying wheel are respectively arranged at positions close to the outlet end of the bag body forming unit and the inlet end of the handle mounting unit. And the conveyor belt extends and moves between the outlet end of the bag body forming unit and the inlet end of the handle mounting unit.
[0011] With the above technical solution, using the method of cooperating the driving motor and the conveyor belt to convey the bag body, the conveyor belt has the advantages of fast transmission speed, high transmission efficiency and good transmission controllability. And it also has the advantages of flexible layout, higher adjustability and adaptability.
[0012] Further preferably, in the production equipment of the handbag disclosed in the present application, the handle mounting unit includes a string threading machine. Among them, the string threading machine includes a bag body placement table and a handle transfer assembly arranged on one side of the bag body placement table. The bag body from the bag body forming unit is conveyed and placed on the bag body placement table, and the handle transfer assembly can drive the end of the handle rope to pass through the string threading hole of the bag body near the opening.
[0013] With the above technical solution, the handle transfer assembly of the string threading machine can accurately and quickly pass the end of the handle rope through the string threading hole to complete the string threading operation.
[0014] Further preferably, the handle mounting unit further includes a punching component, which is located upstream of the string threading machine along the production line direction. The punching component includes a punching table and a punching part. The bag body is conveyed and placed on the punching table, and the punching part moves relative to one end of the bag body close to the opening and punches a string threading hole in the corresponding part of the bag body.
[0015] Further preferably, in this application, the carrying cord includes a round cord or a flat cord.
[0016] In the production equipment of the handbag disclosed in another embodiment of this application, the bag body forming unit includes a forming mechanism and a hemming mechanism located upstream of the forming mechanism along the production line direction. Among them, the hemming mechanism turns inwards two sides of the sheet base material to form bag mouth hems.
[0017] The forming mechanism includes a forming table, a forming die and a lifting drive component. The sheet base material is laid flat on the forming table, and the lifting drive component drives the forming die to press the sheet base material into a three-dimensional bag body.
[0018] Further preferably, the production equipment of the handbag disclosed in this application further includes a feeding unit. The feeding unit includes a feeding mechanism and a storage unit. Among them, the storage unit stacks a plurality of sheet base materials, and the feeding mechanism is used to convey the plurality of sheet base materials to the downstream stations one by one.
[0019] Even more preferably, the production equipment of the handbag disclosed in this application further includes a head card placing unit, which is located downstream of the feeding unit. Among them, the head card placing unit includes a head card glue spraying mechanism and a head card placing mechanism. The head card glue spraying mechanism includes a nozzle facing the sheet base material. The head card glue spraying mechanism sprays glue at a position close to the side edge of the sheet base material, and the head card placing mechanism places the head card at the part of the sheet base material sprayed with glue.
[0020] Even more preferably, the production equipment of the handbag disclosed in this application further includes a bag folding unit, which is located downstream of the bag body forming unit along the production line direction and upstream of the handle mounting unit. Among them, the bag folding unit includes a bag folding mechanism, and the bag folding channel in the bag folding mechanism is used to fold the three-dimensional bag body.
[0021] Even more preferably, the production equipment of the handbag disclosed in this application further includes a bag sorting unit, which is located downstream of the handle mounting unit along the production line direction. And the bag sorting unit stacks and sorts the finished handbags after installing the handles in sequence. Description of the Drawings
[0022] Figure 1One of the schematic diagrams of the bag body forming unit and the handle mounting unit of the production equipment for the handbag provided by the embodiment of the present utility model;
[0023] Figure 2 One of the schematic diagrams of the handle mounting unit of the production equipment for the handbag provided by the embodiment of the present utility model, which includes a string threading machine and a punching component;
[0024] Figure 3 One of the schematic diagrams of the forming mechanism and the hemming mechanism in the bag body forming unit of the production equipment for the handbag provided by the embodiment of the present utility model;
[0025] Figure 4 Another schematic diagram of the forming mechanism and the hemming mechanism in the bag body forming unit of the production equipment for the handbag provided by the embodiment of the present utility model;
[0026] Figure 5 Schematic diagram of the production process of the production equipment for the handbag provided by the embodiment of the present utility model.
[0027] Explanation of reference numerals:
[0028] 100, bag body forming unit;
[0029] 110, forming mechanism; 120, hemming mechanism;
[0030] 200, handle mounting unit;
[0031] 210, string threading machine; 220, punching component;
[0032] 300, bag body conveying unit; 400, feeding unit; 500, head card placing unit; 600, bag folding unit; 700, bag sorting unit;
[0033] A, production line direction of the production equipment. Detailed implementation manners
[0034] With the development of technology, the technology of automatic production of handbags by the production equipment for handbags is becoming more and more mature. More and more handbags are produced by the production equipment for handbags. The existing production equipment for handbags generally includes a feeding mechanism, a fixed handle mechanism, a forming mechanism, a bag folding mechanism and a bag sorting mechanism. The production process of handbags is generally that the feeding mechanism conveys a single sheet material to the downstream, then fixes the handle through the fixed handle mechanism, continues to convey it to the forming mechanism to punch and form a three-dimensional bag body, and finally folds and flattens the three-dimensional bag body through the bag folding mechanism and conveys it to the bag sorting mechanism for sequential sorting.
[0035] However, as mentioned in the background art, in common handbag production equipment such as those with the publication number CN119704777A, etc., the handle fixing mechanism is set at the front end of the bag body forming mechanism. When producing a handbag, the handle of the handbag is first fixedly installed and then stamped into a three-dimensional bag body. However, after the handle is installed first, during the subsequent conveying and forming processes, there is a certain probability that the handle of the handbag will be rubbed or caught on the forming die or other components of the machine, which may cause the handle to be pulled off or the handle to tear the handbag, resulting in defective bags. Therefore, installing the handle before pressing and forming the handbag may result in the production of defective handbags.
[0036] For this reason, the present application provides a new handbag production equipment. The handle installation unit is arranged downstream of the bag body forming unit along the production line direction of the production equipment and is conveyed through the bag body conveying unit. The handle installation process is arranged at the rear end of the bag body forming process, thereby avoiding the potential hidden danger of process defects existing after the handle is installed in advance before the bag body is formed.
[0037] It should be noted that in the handbag production equipment disclosed in the present application, the produced handbags can be handbags made of various common materials such as non-woven bags, paper bags, leather bags, plastic bags, etc. This embodiment does not make specific limitations on this. Next, a more detailed explanation of the handbag production equipment disclosed in the present application will be given.
[0038] The implementation mode of this embodiment discloses a handbag production equipment. First, please refer to Figure 1 , the handbag production equipment at least includes a bag body forming unit 100 and a handle installation unit 200. Along the production line direction of the production equipment, the handle installation unit 200 is located downstream of the bag body forming unit 100, and a bag body conveying unit 300 is arranged between the handle installation unit 200 and the bag body forming unit 100. Among them, the bag body forming unit 100 forms a sheet-like base material into a bag body with an opening at one end, and the handle installation unit 200 installs the ends of the handles of the handbag at positions near the opening on the bag body.
[0039] Specifically, in this embodiment, in Figure 1Only the bag body forming unit 100 and the handle mounting unit 200 in the production equipment of the handbag are shown, which can more clearly illustrate the arrangement of the bag body forming unit 100 and the handle mounting unit 200 in the production line direction in the present application. Those skilled in the art should understand that the production equipment of the handbag disclosed in the present application should at least further include other mechanisms such as a frame, a feeding unit, a bag folding unit, etc. Similarly, the production line direction of the production equipment refers to the direction in which the equipment processes the sheet substrate through multiple processes in sequence to produce a finished handbag, and its actual direction can be adjusted according to the specific model and the arrangement of the equipment. In this embodiment, in Figures 1 to 5 the direction of arrow A is used as an example to illustrate the production line direction of the production equipment.
[0040] More specifically, in this embodiment, when the handle mounting unit 200 mounts the ends of the handles of the handbag at positions near the opening on the bag body, the ends of the handles can be fixedly connected by bonding or heat sealing, or the ends of the handles can be passed through the rope holes near the opening on the bag body. And the handle ropes of the handbag include but are not limited to round ropes or flat ropes.
[0041] For example, when the handle rope is set as a round rope, generally, rope holes need to be provided at positions near the opening on the bag body, and then the round rope is passed through the rope holes to complete the installation of the ends of the handle ropes. The ends of the round rope can pass through the rope holes or can be fixed to the handbag after passing through the rope holes. When the handle rope is set as a flat rope, it can be bonded or heat sealed to the part of the bag body near the opening, or rope holes can be provided at positions near the opening on the bag body, and then the flat rope is passed through the rope holes and then bonded or heat sealed to the bag body. This embodiment does not make specific limitations on this.
[0042] With this structural design, along the production line direction of the production equipment, the handle mounting unit 200 is arranged downstream of the bag body forming unit 100, and the handles are installed after the handbag is formed. Therefore, in the process of forming the sheet substrate into a bag body with an opening and in the processes before forming, there are no handles on the sheet substrate. In this way, there will be no handles on the sheet substrate during the transportation and forming processes. Therefore, the risk of the handles hanging on the forming die or other components of the machine is avoided. During the transportation process, the sheet substrate will not come into contact and friction with the forming die and other components of the machine, nor will it be interfered by the handles. In particular, the risk that the handles may be hooked by the sharp corners and protruding parts of the machine during the transportation process is eliminated, and the problem that the handles are hooked and the handbag is torn will not occur. Therefore, the hidden danger of technological defects in installing the handles before pressing and forming the handbag is solved, and the downtime caused by handle problems is reduced.
[0043] Furthermore, the use of such a design in the present application can improve the stability of the production process, reduce equipment failures, and reduce material loss caused by defective rates. Moreover, since the operator's manual inspection and processing actions are eliminated, operational safety is further enhanced, and the situation of handles getting caught and torn handbags is reduced, thereby reducing the generation of waste and improving the overall product qualification rate.
[0044] More specifically, see Figure 1 In the present application, the bag conveying unit 300 is extended between the bag forming unit 100 and the handle installation unit 200. The bag conveying unit 300 includes a driving mechanism and a mobile conveying mechanism. The power output end of the driving mechanism is transmission-connected with the mobile conveying mechanism. The mobile conveying mechanism can convey the bag from the outlet end of the bag forming unit 100 to the inlet end of the handle installation unit 200.
[0045] In the present application, the bag conveying unit 300 is used to convey the formed bag from the bag forming unit 100 to the handle installation unit 200, so the bag conveying unit 300 needs to be extended and set in the bag forming unit 100 and the handle installation unit 200, wherein the driving mechanism of the bag conveying unit 300 is used to drive the mobile conveying mechanism, and then the formed bag is sequentially conveyed by the mobile conveying mechanism, for example, after a bag is output from the outlet end of the bag forming unit 100, the bag is conveyed to the handle installation unit 200 by the mobile conveying mechanism to install the handle. Therefore, the bag conveying unit 300 can be various common conveying mechanisms, for example, it can be a driving motor to drive the conveyor belt or conveyor belt to rotate, and then the bag is transmitted on the conveyor belt or conveyor belt, or it can be set to drive the clamping member to move, and then the bag is clamped by the clamping member for transmission. Those skilled in the art can make settings according to actual needs, and this embodiment does not make specific limitations on this.
[0046] Further preferably, in one of the preferred implementation manners disclosed in this embodiment, the driving mechanism includes a driving motor, and the moving and conveying mechanism includes a driving conveying wheel, a driven conveying wheel, and a conveyor belt. The output end of the driving motor is in transmission connection with the driving conveying wheel, and the conveyor belt surrounds the outer ends of the driving conveying wheel and the driven conveying wheel and is in transmission connection therewith; the driving conveying wheel and the driven conveying wheel are respectively arranged at positions close to the outlet end of the bag body forming unit 100 and the inlet end of the handle mounting unit 200. Moreover, the conveyor belt extends and moves between the outlet end of the bag body forming unit 100 and the inlet end of the handle mounting unit 200. It should be noted that the extension movement of the conveyor belt means that: the conveyor belt surrounds the driving conveying wheel and the driven conveying wheel. Therefore, when the driving conveying wheel rotates to drive the conveyor belt to move, the conveyor belt rotates around the driving conveying wheel and the driven conveying wheel, and at this time, the conveyor belt is continuously moving between the outlet end of the bag body forming unit 100 and the inlet end of the handle mounting unit 200, providing a conveying channel for the transmission of the shopping bag.
[0047] For example, the driving conveying wheel is arranged on one side close to the bag body forming unit 100, the output end of the driving motor is in transmission connection with the driving conveying wheel and drives the driving conveying wheel to rotate, the driven conveying wheel is arranged on one side close to the driven conveying wheel, the conveyor belt surrounds the driving conveying wheel and the driven conveying wheel respectively, and the conveyor belt can be a friction belt, a synchronous belt, etc. When the driving motor drives the driving conveying wheel to rotate, the conveyor belt will rotate around the driving conveying wheel, and at this time, the driven conveying wheel will also rotate. For example, the side of the conveyor belt close to the bag body forming unit 100 is arranged below the outlet end. After the formed bag body drops downward onto the conveyor belt, the bag body will be conveyed to the inlet end of the handle mounting unit 200 along with the conveyor belt, and then the handle is installed through the handle mounting unit 200.
[0048] With the design of this structure, the driving motor and the conveyor belt are used in cooperation to convey the bag body. The conveyor belt has the advantages of fast transmission speed, high transmission efficiency, and good transmission controllability. The conveyor belt can be reasonably adjusted according to the production speed of different processes to ensure a tight connection between the bag body forming unit 100 and the handle mounting unit 200. Moreover, it also has the advantages of flexible layout, higher adjustability, and better adaptability.
[0049] Further preferably, please refer to Figure 2, in the production equipment of the handbag disclosed in the present application, the handle mounting unit 200 includes a punching assembly 220 and a string threading machine 210. The punching assembly 220 is located upstream of the string threading machine 210 along the production line direction. The punching assembly 220 includes a punching table and a punching component. The bag body is conveyed and placed on the punching table. The punching component moves relative to the end of the bag body close to the opening and punches a string threading hole at the corresponding part of the bag body. The string threading machine 210 includes a bag body placement table and a handle transfer assembly arranged on one side of the bag body placement table. The bag body from the bag body forming unit 100 is conveyed and placed on the bag body placement table. The handle transfer assembly can drive the end of the handle string to pass through the string threading hole of the bag body close to the opening. It should be noted that in this embodiment, the punching assembly 220 is a functional component on the handle mounting unit 200 that can realize the punching function.
[0050] Specifically, in this embodiment, the punching assembly 220 can be various common mechanisms that can punch or open holes in the handbag. For example, the punching component of the punching assembly 220 is set to include a punching member and a punching needle. The punching member is set as a punching cylinder, a punching motor, etc. The punching needle is set as a punching needle, and the punching needle is arranged at the output end of the punching cylinder. The diameter of the punching needle is equal to the diameter of the string threading hole. For example, after the bag body is conveyed and placed on the punching table, the punching cylinder drives the punching needle to punch downward and then punches a string threading hole at the corresponding part of the bag body. It should be noted that only one punching method is exemplified in this embodiment, and those skilled in the art can also set other methods according to actual needs. This embodiment does not make specific limitations in this regard.
[0051] More specifically, in this embodiment, the string threading machine 210 can be various machines or mechanisms that can realize the string threading action. For example, the handle transfer assembly of the string threading machine 210 can be a moving cylinder and a clamp. The clamp is arranged at the output end of the moving cylinder. The clamp can hold one end of the handle string, and then the moving cylinder drives the clamp and the end of the handle string to move through the string threading hole to complete the handle installation. Another example is that the handle transfer assembly of the string threading machine 210 can be a moving cylinder and a hook. The hook is arranged at the output end of the moving cylinder. The hook can hook one end of the handle string, and then the moving cylinder drives the hook and the end of the handle string to move through the string threading hole to complete the handle installation. It should be noted that the handle string can be a round string or a flat string, but the perforation methods are similar. This embodiment does not make specific limitations in this regard.
[0052] With the design of this solution of the present application, the handle transfer assembly of the string threading machine 210 can accurately and quickly pass the end of the handle string through the string threading hole to complete the string threading operation.
[0053] In another implementation, the punching component 220 may not be provided. The string-passing holes are pre-punched on the sheet substrate and then press-formed. The formed bag body has string-passing holes near the opening part. Those skilled in the art can set it according to actual needs, and this embodiment does not make specific limitations thereto.
[0054] Further preferably, please refer to Figure 3 , in the production equipment of the handbag disclosed in another embodiment of the present application, the bag body forming unit 100 includes a forming mechanism 110 and a hemming mechanism 120 located upstream of the forming mechanism 110 along the production line direction. Among them, the hemming mechanism 120 turns inwards two sides of the sheet substrate to form bag mouth hems. The forming mechanism 110 includes a forming table, a forming die and a lifting drive assembly. The sheet substrate is laid flat on the forming table, and the lifting drive assembly drives the forming die to press the sheet substrate into a three-dimensional bag body.
[0055] Specifically, in this preferred implementation disclosed in this embodiment, the hemming mechanism 120 is arranged upstream of the forming mechanism 110, that is, hemming is performed before forming, which can prevent the bag mouth from being torn and improve the connection strength of the bag mouth. After hemming the bag mouth, the frayed edges and defects can also be hidden, and the aesthetics is better. When hemming, glue can also be sprayed at the bag mouth, and then the hem is firmly bonded to the inner side wall of the bag mouth. By using this method for hemming, and when hemming, a folding plate can be set for hemming, and then stamping is performed through the forming die. This embodiment does not make specific limitations thereto.
[0056] Even further preferably, please refer to Figure 4 , in the production equipment of the handbag disclosed in another embodiment of the present application, the bag body forming unit 100 includes a forming mechanism 110 and a hemming mechanism 120 located downstream of the forming mechanism 110 along the production line direction. Among them, the forming mechanism 110 includes a forming table, a forming die and a lifting drive assembly. The sheet substrate is laid flat on the forming table, and the lifting drive assembly drives the forming die to press the sheet substrate into a three-dimensional bag body. The hemming mechanism 120 turns inwards the bag mouth of the bag body to form a bag mouth hem.
[0057] Specifically, in this preferred implementation disclosed in this embodiment, the hemming mechanism 120 is arranged downstream of the forming mechanism 110, that is, the bag body is first formed and then hemmed. Similarly, in this embodiment, hemming the bag mouth is also to improve the connection strength and aesthetics of the bag mouth. The hemming mechanism 120 turns inwards the bag mouth of the bag body to form a bag mouth hem, and the difference is only that the hemming mechanism 120 is arranged downstream of the forming mechanism 110.
[0058] Even further preferably, please refer to Figure 5, in a preferred implementation disclosed in another embodiment of the present application, the production equipment of the handbag further includes a feeding unit 400 and a head card placing unit 500. The feeding unit 400 includes a feeding mechanism and a storage unit. In the storage unit, a plurality of sheet substrates are stacked. The feeding mechanism is used to convey the plurality of sheet substrates one by one to the downstream station. The head card placing unit 500 is located downstream of the feeding unit 400. The head card placing unit 500 includes a head card glue spraying mechanism and a head card placing mechanism. The head card glue spraying mechanism includes a nozzle facing the sheet substrate. The head card glue spraying mechanism sprays glue at a position near the side edge of the sheet substrate, and the head card placing mechanism places the head card on the part of the sheet substrate sprayed with glue.
[0059] The storage unit can stack hundreds of sheet substrates at a time. For example, the storage unit stacks 200 sheet substrates, and then the feeding mechanism conveys the sheet substrates one by one to the downstream. After a sheet substrate is conveyed to the station where the head card placing unit 500 is located, the nozzle of the head card glue spraying mechanism sprays glue at a position near the side edge of the sheet substrate, and then the head card placing mechanism places the head card on the part of the sheet substrate sprayed with glue. With this structural design, setting the head card can enhance the structural strength of the bag mouth.
[0060] More preferably, please refer to Figure 5 , the production equipment of the handbag disclosed in the present application further includes a bag folding unit 600. The bag folding unit 600 is located downstream of the bag body forming unit 100 along the production line direction and is arranged upstream of the handle mounting unit 200. The bag folding unit 600 includes a bag folding mechanism. There is a bag folding channel in the bag folding mechanism, and the bag folding channel in the bag folding mechanism is used to fold the three-dimensional bag body.
[0061] It should be noted that in this embodiment, the bag folding unit 600 can be a bag folding mechanism. There is a "V"-shaped bag folding channel inside the bag folding mechanism. The opening of the bag folding channel gradually decreases, and the bag body is gradually flattened and folded when being conveyed in the bag folding channel, and then the three-dimensional bag body is flattened and folded.
[0062] More preferably, please refer to Figure 5 , the production equipment of the handbag disclosed in the present application further includes a bag sorting unit 700. The bag sorting unit 700 is located downstream of the handle mounting unit 200 along the production line direction. The bag sorting unit 700 stacks and sorts the finished handbags after installing the handles in sequence. The bag sorting unit 700 can be a bag sorting mechanism or a bag pushing mechanism, etc. The bag sorting unit 700 can stack and sort the finished products after installing the handles in sequence. Specifically, the finished handbags after installing the handles can be stacked and sorted horizontally or vertically. This embodiment does not make specific limitations on this.
[0063] Further, please refer to Figure 5, a brief description is given of the production process of the handbag production equipment disclosed in the present application: the feeding unit 400 stacks a plurality of sheet base materials, and then the feeding mechanism transports the sheet base materials one by one downstream to the head card placement unit 500, where the head card placement unit 500 first sprays glue on the position of the sheet base material near the side, and then the head card is placed on the position of the sheet base material sprayed with glue through the head card placement mechanism. Next, the sheet base material with the head card attached is further conveyed to the folding mechanism 120 to complete the folding, and then conveyed to the forming mechanism 110 to be stamped and formed by the forming mold, and then conveyed to the bag folding unit 600 through the bag body conveying unit 300 for bag folding. After the bag is folded, it is conveyed to the punching assembly 220 through the bag body conveying unit 300 to punch the rope hole, and then the hand rope is passed through the rope threading machine 210 to pass the hand rope into the rope threading hole, and finally conveyed to the bag sorting unit 700 for bag sorting. It should be noted that the stations and actions of feeding, placing head cards, forming, folding bags, and sorting bags are the same as those of the handbag production equipment in the prior art, so this application will not go into details.
[0064] In another preferred embodiment disclosed in the present application, a production device for handbags is also provided, wherein the driving mechanism includes a linear driving member, and the mobile conveying mechanism includes a guide assembly, a moving assembly, and a clamping assembly. The guide assembly extends from the outlet end of the bag body forming unit 100 to the inlet end of the handle installation unit 200, the moving assembly is transmission-connected with the output end of the linear driving member, the moving assembly is movably arranged on the guide assembly, the clamping assembly is arranged on a side of the moving assembly away from the guide assembly, the clamping assembly can clamp the bag body, and the linear driving member can drive the moving assembly to reciprocate between the bag body forming unit 100 and the handle installation unit 200 along the guide assembly.
[0065] In the production equipment of the handbag disclosed in this embodiment, the linear drive component can be a drive cylinder, a linear drive motor, etc., the guide component can be a common guide rail, a slide rail, etc., the moving component can be a common moving guide block, and the clamping component is arranged on the moving guide block. The clamping component can be a clamp, etc., and technical personnel in this field can design it according to actual needs.
[0066] Take the example in which the linear driving component is set as a driving cylinder, the guiding component is set as a guide rail, the moving component is set as a moving guide block, and the clamping component is set as a clamping claw: the guide rail extends from the outlet end of the bag forming unit 100 to the inlet end of the handle installation unit 200, and the moving guide block is movably set on the guide rail. The driving cylinder drives the moving guide block to reciprocate along the guide rail between the outlet end of the bag forming unit 100 and the inlet end of the handle installation unit 200. After the clamping claw clamps the bag body from the outlet end of the bag forming unit 100, the driving cylinder drives the moving guide block to slide along the guide rail to the inlet end of the handle installation unit 200 to complete a conveying, and then the clamping claw releases the bag body and returns to the starting point, waiting for the next clamping and conveying.
[0067] In the production equipment of another handbag disclosed in the present application, the driving mechanism includes a linear driving member, and the moving conveying mechanism includes a guiding component, a moving component, and a sucking component. The guiding component extends from the outlet end of the bag body forming unit 100 to the inlet end of the handle mounting unit 200. The moving component is in transmission connection with the output end of the linear driving member. The moving component is movably arranged on the guiding component. The sucking component is arranged on the side of the moving component away from the guiding component. The sucking component can suck and fix the bag body. The linear driving member can drive the moving component to reciprocate between the bag body forming unit 100 and the handle mounting unit 200 along the guiding component.
[0068] In the production equipment of this handbag disclosed in this embodiment, the linear driving member can be a driving cylinder, a linear driving motor, etc. The guiding component can be common guide rails, slide rails, etc. The moving component can be a common moving guide block. The sucking component is arranged on the moving guide block. The sucking component can be a suction cup, etc. Those skilled in the art can design according to actual needs.
[0069] Taking the linear driving member being set as a driving cylinder, the guiding component being set as a guide rail, the moving component being set as a moving guide block, and the sucking component being set as a suction cup as an example for illustration: The guide rail extends from the outlet end of the bag body forming unit 100 to the inlet end of the handle mounting unit 200. The moving guide block is movably arranged on the guide rail. The driving cylinder drives the moving guide block to reciprocate between the outlet end of the bag body forming unit 100 and the inlet end of the handle mounting unit 200 along the guide rail. After the suction cup adsorbs the bag body from the outlet end of the bag body forming unit 100, the driving cylinder drives the moving guide block to slide along the guide rail to the inlet end of the handle mounting unit 200 to complete one conveyance. Then, after the suction cup releases the bag body, it returns to the starting point and waits for the next adsorption and conveyance. It should be noted that those skilled in the art can also adopt other ways for conveyance, and this embodiment does not make specific limitations in this regard.
[0070] It should be noted that, in addition to the embodiments of the present utility model described in the above specific embodiments, those skilled in the art can easily understand other advantages and effects of the present utility model from the content disclosed in this specification. Although the description of the present utility model is introduced in combination with preferred embodiments, this does not mean that the features of this utility model are limited to this embodiment. On the contrary, the purpose of introducing the utility model in combination with the embodiment is to cover other alternatives or modifications that may be extended based on the claims of the present utility model. In order to provide a deep understanding of the present utility model, many specific details are included in the above description, and the present utility model can also be implemented without using these details. In addition, in order to avoid confusing or obscuring the key points of the present utility model, some specific details will be omitted in the description. It should be noted that, without conflict, the embodiments in the present utility model and the features in the embodiments can be combined with each other.
[0071] It should be noted that in this specification, similar reference numerals and letters denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.
[0072] In the description of this embodiment, it should be noted that the orientation or positional relationship indicated by terms such as "upper", "lower", "inner", "bottom", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of this utility model is usually placed during use. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present utility model.
[0073] Terms such as "first", "second", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.
[0074] In the description of this embodiment, it should also be noted that unless otherwise clearly specified and defined, the terms "set", "connected", "connected to" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in this embodiment can be understood according to specific situations.
[0075] Although the present utility model has been illustrated and described by referring to some preferred embodiments thereof, those of ordinary skill in the art should understand that the above content is a further detailed description of the present utility model in conjunction with specific embodiments, and it cannot be determined that the specific implementation of the present utility model is only limited to these descriptions. Those skilled in the art can make various changes in form and detail, including making several simple deductions or substitutions, without departing from the spirit and scope of the present utility model.
Claims
1. A handbag production equipment, characterized in that: The handbag production equipment comprises a bag body forming unit and a handle installation unit. Along the production line direction of the production equipment, the handle installation unit is located downstream of the bag body forming unit, and a bag body conveying unit is arranged between the handle installation unit and the bag body forming unit; The bag body forming unit forms the sheet base material into a bag body having an opening at one end, and the handle installation unit installs the ends of each handle of the handbag at a position on the bag body close to the opening; and The bag conveying unit is extended between the bag forming unit and the handle installation unit, and includes a driving mechanism and a mobile conveying mechanism. The power output end of the driving mechanism is transmission-connected to the mobile conveying mechanism, and the mobile conveying mechanism can convey the bag from the outlet end of the bag forming unit to the inlet end of the handle installation unit.
2. The production equipment for handbags according to claim 1, characterized in that: The driving mechanism includes a driving motor, and the mobile conveying mechanism includes a driving conveying wheel, a driven conveying wheel and a conveying belt; in The output end of the driving motor is in transmission connection with the active conveying wheel, and the conveying belt is wrapped around the outer ends of the active conveying wheel and the driven conveying wheel and is in transmission connection with them; the active conveying wheel and the driven conveying wheel are respectively arranged at the exit end of the bag forming unit and the entrance end of the handle installation unit; and The conveyor belt extends and moves between an outlet end of the bag forming unit and an inlet end of the handle mounting unit.
3. The production equipment for handbags according to claim 1, characterized in that: The driving mechanism includes a linear driving component, and the moving conveying mechanism includes a guiding component, a moving component and a clamping component; wherein The guide assembly extends from the outlet end of the bag body forming unit to the inlet end of the handle installation unit, the moving assembly is transmission-connected to the output end of the linear drive member, the moving assembly is movably disposed on the guide assembly, the clamping assembly is disposed on a side of the moving assembly away from the guide assembly, the clamping assembly can clamp the bag body, and the linear drive member can drive the moving assembly to reciprocate along the guide assembly between the bag body forming unit and the handle installation unit.
4. The production equipment for handbags according to claim 1, characterized in that: The driving mechanism includes a linear driving component, and the moving conveying mechanism includes a guiding component, a moving component and a suction component; wherein The guide component extends from the outlet end of the bag body forming unit to the inlet end of the handle installation unit, the moving component is transmission-connected with the output end of the linear driving member, the moving component is movably arranged on the guide component, the suction component is arranged on the side of the moving component away from the guide component, the suction component can suck and fix the bag body, and the linear driving member can drive the moving component to reciprocate along the guide component between the bag body forming unit and the handle installation unit.
5. The production equipment for handbags according to any one of claims 1 to 4, characterized in that: The handle installation unit includes a rope threading machine, wherein The rope threading machine includes a bag body placement table and a handle transfer assembly arranged on one side of the bag body placement table. The bag body from the bag body forming unit is transported and placed on the bag body placement table. The handle transfer assembly can drive the end of the hand rope to pass through the rope threading hole of the bag body close to the opening.
6. The production equipment for handbags according to claim 5, characterized in that: The handle installation unit also includes a punching assembly, which is located upstream of the rope threading machine along the direction of the production line. The punching assembly includes a punching table and a punching component. The bag body is conveyed and placed on the punching table. The punching component moves relative to the end of the bag body close to the opening and punches holes at the corresponding positions of the bag body to form the rope threading holes.
7. The production equipment for handbags according to claim 5, characterized in that: The hand rope comprises a round rope or a flat rope.
8. The production equipment for handbags according to claim 5, characterized in that: The bag forming unit comprises a forming mechanism and a folding mechanism located upstream of the forming mechanism along the production line direction; wherein The folding mechanism folds two side edges of the sheet base material inward to form a bag opening fold; The forming mechanism comprises a forming table, a forming mold and a lifting and driving assembly. The sheet base material is spread on the forming table, and the lifting and driving assembly drives the forming mold to press the sheet base material to form the three-dimensional bag body.
9. The production equipment for handbags according to claim 5, characterized in that: The bag forming unit comprises a forming mechanism and a folding mechanism located downstream of the forming mechanism along the production line direction; wherein The molding mechanism comprises a molding table, a molding die and a lifting and driving assembly, the sheet base material is laid flat on the molding table, and the lifting and driving assembly drives the molding die to press the sheet base material to form the three-dimensional bag body; The folding mechanism folds the bag opening of the bag body inwardly to form a folded edge of the bag opening.
10. The production equipment for handbags according to claim 5, characterized in that: It also includes a feeding unit, which includes a feeding mechanism and a storage unit; The material storage unit is stacked with a plurality of sheet-like base materials, and the material feeding mechanism is used for conveying the plurality of sheet-like base materials one by one to a downstream workstation.
11. The production equipment for handbags according to claim 10, characterized in that: It also includes a head card placement unit, which is located downstream of the feeding unit; The head card placement unit includes a head card glue spraying mechanism and a head card placement mechanism. The head card glue spraying mechanism includes a nozzle arranged toward the sheet base material. The head card glue spraying mechanism sprays glue toward a position close to the side of the sheet base material. The head card placement mechanism places the head card at a position on the sheet base material where the glue is sprayed.
12. The production equipment for handbags according to claim 11, characterized in that: It also includes a bag folding unit, which is located downstream of the bag body forming unit along the production line direction and is arranged upstream of the handle installation unit; The bag folding unit comprises a bag folding mechanism, wherein the bag folding mechanism has a bag folding channel therein, and the bag folding channel in the bag folding mechanism is used to fold the three-dimensional bag body.
13. The production equipment for handbags according to claim 12, characterized in that: The machine also comprises a bag sorting unit, which is located downstream of the handle installation unit along the production line direction, and the bag sorting unit stacks and arranges the finished handbags after the handles are installed in sequence.
Citation Information
Patent Citations
Manufacturing equipment and manufacturing process of three-dimensional bag
CN119704777A