Automatic production equipment and production process for dry and comfortable antibacterial paper diapers

Through automated production equipment and processes, the problem of low braiding efficiency of diaper belts in diaper production is solved, rapid weaving and efficient bonding are achieved, and manual strength and equipment footprint are reduced.

CN120241391AActive Publication Date: 2025-07-04GUANGDONG XINROU PAPER CO LTD
View PDF 6 Cites 0 Cited by

Patent Information

Application Number
CN202510413744.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2025-07-04
Estimated Expiration
2045-04-02

AI Technical Summary

Technical Problem

During the production process of diaper, the braiding operation of the stopper at the heat dissipation port relies on manual labor, resulting in low working efficiency.

Method used

A dry and antibacterial diaper automation production equipment is designed, including conveying equipment, splitting components, belt insertion components, diaper flip components and dispensing components. Through the cooperation of the lifting frame and the lower pressing frame, the automatic weaving of the belt at the diaper heat dissipation port is realized, and the belt insertion is assisted by using the edge-cutting and hooking structures. Combining the diaper flip and dispensing components, the tearable bonding of the belt to the side wings is completed.

Benefits of technology

The rapid weaving of the diaper heat dissipation port is realized, which reduces the work intensity of staff, improves production efficiency, and reduces processing time and equipment footprint.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120241391A_ABST
    Figure CN120241391A_ABST
Patent Text Reader

Abstract

The invention discloses automatic production equipment and a production process for dry and comfortable antibacterial paper diapers, relates to the technical field of paper diaper production, and aims to solve the technical problems that during current paper diaper production, workers need to weave paper diapers, and the working efficiency is low. According to the device, the blocking belt penetrating assembly is arranged, the jacking frame and the pressing frame on the blocking belt penetrating assembly are provided with the buckle supporting blocks and the jacking protruding blocks, and the buckle supporting blocks and the jacking protruding blocks are matched with the paper diaper heat dissipation opening, so that the paper diaper heat dissipation opening can be supported when penetrating through the blocking belt, and the paper diaper heat dissipation opening is of a wave-shaped structure; therefore, the blocking belt can be quickly inserted into the wave-shaped heat dissipation opening of the paper diaper, and the heat dissipation opening of the paper diaper and the blocking belt form a woven structure. According to the device, the stop belt can be quickly woven into the heat dissipation opening of the paper diaper to form a woven structure, so that the working intensity of workers is reduced, and the working efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of diaper production, and more specifically, to an automated production device and production process for a dry and bacteriostatic diaper. Background Art

[0002] The most important function of a diaper is to absorb and store urine, which can quickly transfer urine from the skin surface to the absorbent core layer, avoiding long-term contact of urine with the skin, keeping the skin dry, thus greatly reducing the irritation of urine to the skin and reducing the occurrence probability of skin problems such as diaper rash. For adults with urinary incontinence, it can also prevent urine from soaking clothes and bedding, keep the body clean and dry, and help prevent problems such as skin inflammation and bedsore.

[0003] According to the usage requirements at different temperatures in winter and summer, it is necessary to provide detachable side wings and retaining bands, as well as diapers adapted to heat dissipation openings to ensure heat dissipation and heat preservation performance. However, when producing diapers, since the retaining band is not easily detached when inserted into the heat dissipation opening by a weaving method, the retaining band is often fixed by a weaving method. The traditional weaving method is often completed by workers, and the work efficiency is not high. In view of this, we propose an automated production device and production process for a dry and bacteriostatic diaper. Summary of the Invention

[0004] The purpose of the present invention is to overcome the deficiencies of the prior art, adapt to the actual needs, and provide an automated production device and production process for a dry and bacteriostatic diaper to solve the technical problem that workers are required for weaving during the current diaper production, resulting in low work efficiency.

[0005] To solve the above technical problems, the present invention provides the following technical solutions: An automated production device for a dry and bacteriostatic diaper, including a conveying device, a cutting component arranged on the conveying device, a retaining band inserting component arranged on the conveying device, a diaper flipping component arranged on the conveying device, and a dispensing component arranged on the conveying device;

[0006] The cutting component includes two side wing cutting plates and two heat dissipation opening cutting plates. The cutting part of the side wing cutting plate is set as an arc structure, and the cutting part of the heat dissipation opening cutting plate is set as a plurality of block structures;

[0007] The retaining band inserting component includes a second bottom plate, a socket, a second cylinder, a lifting frame, a second support frame, a second guide rod, and a pressing frame;

[0008] The interior of the second base plate is provided with a groove, the socket is opened at the top of the groove, the second cylinder is installed at the bottom of the groove, the lifting frame is installed at the output end of the second cylinder, a number of snap blocks are arranged at intervals on the lifting frame, the second support frame is installed on the second base plate, the second guide rod is installed at the bottom end of the second support frame, the pressing frame is installed at the end of the second guide rod, and a number of pressing bumps are arranged at intervals on the pressing frame.

[0009] Preferably, the cutting component further includes a waste cleaning structure, a first support frame, a guide frame, a first cylinder, a driving frame, and a first guide rod;

[0010] The waste cleaning structure is arranged on the conveying device, the first support frame is installed on the waste cleaning structure, the guide frame is installed below the first support frame, the first cylinder is installed on the guide frame, the driving frame is installed at the output end of the first cylinder, the side wing cutting plate and the heat dissipation opening cutting plate are both installed on the driving frame, and a number of the first guide rods are respectively installed on the side wing cutting plate and the heat dissipation opening cutting plate, and the first guide rods are slidably connected to the guide frame.

[0011] Preferably, the waste cleaning structure includes a first base plate, a chute, a sliding rod, a slider, a side wing support plate, and a heat dissipation opening support plate;

[0012] The first base plate is installed on the conveying device, the chute is opened on the first base plate, the sliding rod is installed in the chute, the slider is slidably connected to the sliding rod, the side wing support plate and the heat dissipation opening support plate are respectively installed on a number of sliders, and the side wing support plate and the heat dissipation opening support plate are inserted into the recesses on the surface of the first base plate.

[0013] Preferably, the tape threading component further includes a threading edge structure, and the threading edge structure includes a third cylinder, a mounting plate, and a threading edge block;

[0014] The third cylinder is installed on the second support frame, the mounting plate is installed at the output end of the third cylinder, and the threading edge blocks are installed on both sides of the bottom end of the mounting plate.

[0015] Preferably, the tape threading component further includes a hemming structure, and the hemming structure includes a linear driving device, a mounting frame, a driving motor, a screw rod, a clamping plate, and a hemming rod;

[0016] The linear driving device is installed in the groove of the second base plate, the mounting frame is installed at the output end of the linear driving device, the driving motor is installed on one side of the mounting frame, the screw rod is rotatably connected in the mounting frame and is installed at the output end of the driving motor, the thread directions on both sides of the screw rod are opposite, the two clamping plates are respectively threadedly connected to both sides of the screw rod, and the hemming rod is installed on the clamping plate.

[0017] Preferably, the diaper flipping assembly includes a clamping structure, a mounting shaft, a shaft seat, a gear, a rack, a slide rail, and a fourth cylinder;

[0018] The clamping structure is arranged on the conveying device. The mounting shaft is arranged on the clamping structure, and both ends of the mounting shaft are rotatably connected to two shaft seats. The shaft seats are mounted on the conveying device. The gear is mounted at one end of the mounting shaft. The rack is meshed and connected to the bottom end of the gear, and the rack is slidably connected to the slide rail. The slide rail is mounted on the conveying device. The fourth cylinder is mounted on the slide rail, and the output end of the fourth cylinder is mounted on the rack.

[0019] Preferably, the clamping structure includes a transmission roller plate, a fifth cylinder, a mounting block, a limiting block, and a limiting plate;

[0020] The two transmission roller plates are arranged in parallel. The fifth cylinder is mounted on one transmission roller plate. The mounting block is mounted on the other transmission roller plate, and the output end of the fifth cylinder is connected to the mounting block. The two transmission roller plates are both slidably connected to the limiting block. The limiting block is mounted on the limiting plate, and the limiting plate is connected to the mounting shaft.

[0021] Preferably, the dispensing assembly includes a third bottom plate, a two-axis driving device, a dispensing device, and a rotary driving device;

[0022] The third bottom plate is mounted on the conveying device. The two-axis driving device is mounted on the third bottom plate. The dispensing device is mounted at the output end of the two-axis driving device. The rotary driving device is mounted inside the third bottom plate, and the output end of the rotary driving device is slightly higher than the top end of the third bottom plate.

[0023] An automated production process for a dry and bacteriostatic diaper includes the following steps:

[0024] S1: Feed the diaper into the cutting assembly through the conveying device. The first cylinder on the cutting assembly drives the driving frame to move. Through the cooperation of the first guide rod and the guiding frame, the side wing cutting plate and the heat dissipation port cutting plate cut the diaper. After the diaper is cut and enters the tape passing-in part, the staff or an external robotic arm discharges the cut waste through the movable part on the waste cleaning structure;

[0025] S2: Feed the cut diapers into the tape threading assembly through a conveying device. The second cylinder on the tape threading assembly drives the lifting frame to move. The lifting frame holds up the connecting part at the diaper heat dissipation opening through the snap block, and at the same time, the pressing convex block on the pressing frame restricts the other connecting part at the diaper heat dissipation opening, so that the diaper heat dissipation opening expands in the vertical direction. The staff inserts the tape into the heat dissipation opening to achieve a weaving effect. Subsequently, the third cylinder on the edge threading structure drives the edge threading block to work, causing a part of the tape to sink into the heat dissipation openings at both ends. The driving motor on the edge hooking structure drives the clamping plate to move through the screw, and the clamping plate inserts the edge hooking rod into the part where the tape sinks to hook the tape. Subsequently, the linear driving device pulls the tape, causing the remaining part of the tape to pass through the heat dissipation openings at both ends completely. The staff or an external robotic arm takes out the diaper, and the diaper enters the diaper flipping assembly through the conveying device;

[0026] S3: Drive the mounting block to approach through the fifth cylinder on the diaper flipping assembly, and the transmission roller plate clamps the diaper. Subsequently, the fourth cylinder on the diaper flipping assembly drives the rack to move along the slide rail, the rack drives the gear to rotate, and the gear drives the mounting shaft to rotate along the shaft seat. Thus, through the limiting plate connected to the mounting shaft, the transmission roller plate is flipped to the other side, and the transmission roller plate enables the diaper to enter the dispensing assembly through the conveying device;

[0027] S4: Drive the dispensing device to move through the two-axis driving device on the dispensing assembly, and the dispensing device performs tearable bonding on the tape of the diaper. After bonding, drive the diaper to rotate through the rotary driving device. Subsequently, the staff or an external robotic arm places the side wings of the diaper on the dispensing assembly, and the dispensing device performs tearable bonding on the side wings of the diaper.

[0028] Preferably, tearable side wings are provided on both sides of the diaper in step S1. A plurality of heat dissipation openings are provided at both ends of the diaper, and a tape is woven into the plurality of heat dissipation openings in a woven shape. A tearable structure is provided between both ends of the tape and the diaper.

[0029] Compared with the prior art, the beneficial effects of the present invention are:

[0030] 1. By providing a tape threading assembly, on the lifting frame and the pressing frame of the tape threading assembly, there are snap blocks and pressing convex blocks matching the diaper heat dissipation openings, which can support the diaper heat dissipation opening when threading the tape, forming a wavy structure for the diaper heat dissipation opening. Thus, the tape can be quickly inserted into the wavy diaper heat dissipation opening, and the diaper heat dissipation opening and the tape form a woven structure. The present invention can quickly weave the tape into the diaper heat dissipation opening and form a woven structure, thereby reducing the working intensity of the staff and improving work efficiency.

[0031] 2. The present invention is provided with a threading edge structure and a hemming edge structure on the basis of the tape threading structure. Through the cooperation of the threading edge structure and the hemming edge structure, both ends of the tape after passing through the heat dissipation opening of the diaper can enter the other side of the diaper, facilitating the subsequent bonding work. By setting the threading edge structure and the hemming edge structure, the present invention can insert both ends of the tape into the other side of the diaper after the tape is woven, saving subsequent processing time.

[0032] 3. The present invention is provided with a diaper flipping assembly. After the diaper is woven with the tape, the diaper is flipped so that the tape at the lower part of the flipped diaper faces upward, preparing for the subsequent bonding process. By setting the diaper flipping assembly, the diaper after inserting the tape can be automatically flipped, thus facilitating the subsequent bonding process.

[0033] 4. The present invention is provided with a dotting assembly. After the diaper is flipped by the dotting assembly, the tape is first adhesively bonded in a tearable manner, and then by rotating the diaper, the side wings are adhesively bonded in a tearable manner, bonding the tape and the side wings to the diaper to complete the processing. By setting the dotting assembly, the present invention can adhesively bond the tape and the side wings of the diaper in a tearable manner at one station, thereby reducing the number of stations and the floor area of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Figure 1 is a schematic structural diagram of the present invention;

[0035] Figure 2 is a schematic structural diagram of the cutting component of the present invention;

[0036] Figure 3 is a schematic bottom view of the cutting component of the present invention after removing the waste cleaning structure;

[0037] Figure 4 is a schematic structural diagram of the waste cleaning structure of the present invention after removing the side wing support plate and the heat dissipation opening support plate;

[0038] Figure 5 is a schematic structural diagram of the tape threading assembly of the present invention;

[0039] Figure 6 is a schematic structural diagram of the second bottom plate of the present invention;

[0040] Figure 7 is a schematic structural diagram of the tape threading assembly of the present invention after removing the second bottom plate;

[0041] Figure 8 is a schematic structural diagram of the diaper flipping assembly of the present invention;

[0042] Figure 9 is a schematic structural diagram of the dotting assembly of the present invention;

[0043] Figure 10 Structural schematic diagram of the disposable diaper produced by the present invention.

[0044] Explanation of the reference numerals in the figure:

[0045] 1. Conveyor device; 2. Cutting component; 3. Tape threading component; 4. Diaper flipping component; 5. Gluing component; 6. Disposable diaper

[0046] 201. Waste cleaning structure; 202. First support frame; 203. Guide frame; 204. First cylinder; 205. Driving frame; 206. First guide rod; 207. Flank cutting plate; 208. Heat dissipation opening cutting plate

[0047] 2011. First bottom plate; 2012. Chute; 2013. Slide bar; 2014. Slide block; 2015. Flank support plate; 2016. Heat dissipation opening support plate

[0048] 301. Second bottom plate; 302. Socket; 303. Second cylinder; 304. Lifting frame; 305. Second support frame; 306. Second guide rod; 307. Pressing frame; 308. Edge threading structure; 309. Edge hooking structure

[0049] 3041. Buckle support block

[0050] 3051. Pressing convex block

[0051] 3081. Third cylinder; 3082. Mounting plate; 3083. Edge threading block

[0052] 3091. Linear driving device; 3092. Mounting frame; 3093. Driving motor; 3094. Screw; 3095. Clamping plate; 3096. Edge hooking rod

[0053] 401. Clamping structure; 402. Mounting shaft; 403. Shaft seat; 404. Gear; 405. Rack; 406. Slide rail; 407. Fourth cylinder

[0054] 4011. Transmission roller plate; 4012. Fifth cylinder; 4013. Mounting block; 4014. Limit block; 4015. Limit plate

[0055] 501. Third bottom plate; 502. Two - axis driving device; 503. Gluing device; 504. Rotary driving device

[0056] 601. Flank; 602. Heat dissipation opening; 603. Tape Detailed implementation mode

[0057] Example 1, as Figures 1 to 7As shown in the figure, the present invention relates to an automated production equipment and production process for a dry and bacteriostatic diaper, including a conveying device 1, a cutting component 2 arranged on the conveying device 1, a tape threading component 3 arranged on the conveying device 1, a diaper flipping component 4 arranged on the conveying device 1, and a dispensing component 5 arranged on the conveying device 1; the cutting component 2 includes two side wing cutting plates 207 and two heat dissipation port cutting plates 208, the cutting part of the side wing cutting plate 207 is set as an arc structure, and the cutting part of the heat dissipation port cutting plate 208 is set as eight block structures;

[0058] The tape threading component 3 includes a second bottom plate 301, a socket 302, a second cylinder 303, a lifting frame 304, a second support frame 305, a second guide rod 306, and a pressing frame 307; a groove is provided inside the second bottom plate 301, the socket 302 is opened at the top of the groove, the second cylinder 303 is installed at the bottom of the groove, the lifting frame 304 is installed at the output end of the second cylinder 303, three buckle support blocks 3041 are arranged at intervals on the lifting frame 304, the second support frame 305 is installed on the second bottom plate 301, the second guide rod 306 is installed at the bottom of the second support frame 305, the pressing frame 307 is installed at the end of the second guide rod 306, and two pressing bumps 3051 are arranged at intervals on the pressing frame 307.

[0059] In the present invention, by providing the tape threading component 3, on the lifting frame 304 and the pressing frame 307 of the tape threading component 3, there are buckle support blocks 3041 and pressing bumps 3051 that match the heat dissipation ports 602 of the diaper 6. When threading the tape 603, it can support the heat dissipation ports 602 of the diaper 6, making the heat dissipation ports 602 of the diaper 6 form a wavy structure, so as to quickly insert the tape 603 into the wavy heat dissipation ports 602 of the diaper 6, and form a braided structure between the heat dissipation ports 602 of the diaper 6 and the tape 603. The present invention can quickly braid the tape 603 into the heat dissipation ports 602 of the diaper 6 and form a braided structure, thereby reducing the working intensity of the staff and improving the working efficiency.

[0060] Specifically, such as Figures 2 to 4As shown in the figure, the splitting component 2 of the present invention further includes a waste cleaning structure 201, a first support frame 202, a guide frame 203, a first cylinder 204, a drive frame 205, and a first guide rod 206; the waste cleaning structure 201 is arranged on the conveying device 1, the first support frame 202 is installed on the waste cleaning structure 201, the guide frame 203 is installed below the first support frame 202, the first cylinder 204 is installed on the guide frame 203, the drive frame 205 is installed at the output end of the first cylinder 204, the side wing splitting plate 207 and the heat dissipation opening splitting plate 208 are both installed on the drive frame 205, and a plurality of first guide rods 206 are respectively installed on the side wing splitting plate 207 and the heat dissipation opening splitting plate 208, and the first guide rods 206 are slidably connected to the guide frame 203.

[0061] The waste cleaning structure 201 includes a first bottom plate 2011, a chute 2012, a slide rod 2013, a slider 2014, a side wing support plate 2015, and a heat dissipation opening support plate 2016; the first bottom plate 2011 is installed on the conveying device 1, the chute 2012 is opened on the first bottom plate 2011, the slide rod 2013 is installed in the chute 2012, the slider 2014 is slidably connected to the slide rod 2013, the side wing support plate 2015 and the heat dissipation opening support plate 2016 are respectively installed on a plurality of sliders 2014, and the side wing support plate 2015 and the heat dissipation opening support plate 2016 are inserted into the recesses on the surface of the first bottom plate 2011.

[0062] It should be noted that, as Figures 5 to 7 shown in the figure, the tape threading component 3 of the present invention further includes a threading edge structure 308, and the threading edge structure 308 includes a third cylinder 3081, a mounting plate 3082, and a threading edge block 3083; the third cylinder 3081 is installed on the second support frame 305, the mounting plate 3082 is installed at the output end of the third cylinder 3081, and the threading edge blocks 3083 are installed on both sides of the bottom end of the mounting plate 3082.

[0063] The tape threading component 3 further includes a hemming structure 309, and the hemming structure 309 includes a linear driving device 3091, a mounting frame 3092, a driving motor 3093, a screw rod 3094, a clamping plate 3095, and a hemming rod 3096; the linear driving device 3091 is installed in the groove of the second bottom plate 301, the mounting frame 3092 is installed at the output end of the linear driving device 3091, the driving motor 3093 is installed on one side of the mounting frame 3092, the screw rod 3094 is rotatably connected in the mounting frame 3092, and the screw rod 3094 is installed at the output end of the driving motor 3093. The thread directions on both sides of the screw rod 3094 are opposite, two clamping plates 3095 are respectively threadedly connected to both sides of the screw rod 3094, and the hemming rod 3096 is installed on the clamping plate 3095.

[0064] In the present invention, a threading edge structure 308 and a hemming edge structure 309 are provided on the basis of the threading structure of the retaining strip 603. Through the cooperation of the threading edge structure 308 and the hemming edge structure 309, both ends of the retaining strip 603 after passing through the heat dissipation opening 602 of the diaper 6 can enter the other side of the diaper 6, facilitating the subsequent bonding work. By providing the threading edge structure 308 and the hemming edge structure 309, after the retaining strip 603 is woven, both ends of the retaining strip 603 can be inserted into the other side of the diaper 6, saving subsequent processing time.

[0065] Further, as Figure 8 shown, the diaper turning assembly 4 of the present invention includes a clamping structure 401, a mounting shaft 402, a shaft seat 403, a gear 404, a rack 405, a slide rail 406, and a fourth cylinder 407; the clamping structure 401 is arranged on the conveying device 1, the mounting shaft 402 is arranged on the clamping structure 401, and both ends of the mounting shaft 402 are rotatably connected to two shaft seats 403, the shaft seats 403 are mounted on the conveying device 1, the gear 404 is mounted on one end of the mounting shaft 402, the rack 405 is meshed and connected to the bottom end of the gear 404, and the rack 405 is slidably connected to the slide rail 406, the slide rail 406 is mounted on the conveying device 1, the fourth cylinder 407 is mounted on the slide rail 406, and the output end of the fourth cylinder 407 is mounted on the rack 405.

[0066] The clamping structure 401 includes a transmission roller plate 4011, a fifth cylinder 4012, a mounting block 4013, a limiting block 4014, and a limiting plate 4015; two transmission roller plates 4011 are arranged in parallel, the fifth cylinder 4012 is mounted on one transmission roller plate 4011, the mounting block 4013 is mounted on the other transmission roller plate 4011, and the output end of the fifth cylinder 4012 is connected to the mounting block 4013, both transmission roller plates 4011 are slidably connected to the limiting block 4014, the limiting block 4014 is mounted on the limiting plate 4015, and the limiting plate 4015 is connected to the mounting shaft 402.

[0067] By providing the diaper turning assembly 4, after the diaper 6 is woven with the retaining strip 603, the diaper 6 is turned over so that the retaining strip 603 at the lower part of the turned-over diaper 6 faces upward, preparing for the subsequent bonding process. By providing the diaper turning assembly 4, the diaper 6 after the retaining strip 603 is inserted can be automatically turned over, thus facilitating the subsequent bonding process.

[0068] Still further, as Figure 9As shown in the figure, the dispensing assembly 5 involved in the present invention includes a third base plate 501, a two-axis driving device 502, a dispensing device 503, and a rotary driving device 504; the third base plate 501 is installed on the conveying device 1, the two-axis driving device 502 is installed on the third base plate 501, the dispensing device 503 is installed at the output end of the two-axis driving device 502, the rotary driving device 504 is installed inside the third base plate 501, and the output end of the rotary driving device 504 is slightly higher than the top end of the third base plate 501.

[0069] By providing the dispensing assembly 5, after the diaper 6 is turned over by the dispensing assembly 5, the tearable bonding of the retaining strip 603 is first performed, and then by rotating the diaper 6, the tearable bonding of the side wing 601 is performed, and the retaining strip 603 and the side wing 601 are bonded to the diaper 6 to complete the processing. By providing the dispensing assembly 5, the tearable bonding of the retaining strip 603 and the side wing 601 of the diaper 6 is performed at one station, thereby reducing the number of stations and the floor area of the equipment.

[0070] As Figures 1 to 10 shown, an automated production process for a dry and bacteriostatic diaper involved in the present invention includes the following steps:

[0071] S1: The diaper 6 is sent into the cutting assembly 2 through the conveying device 1. The first cylinder 204 on the cutting assembly 2 drives the driving frame 205 to move. The driving frame 205 cooperates with the first guide rod 206 and the guiding frame 203 to make the side wing cutting plate 207 and the heat dissipation port cutting plate 208 cut the diaper 6. After the diaper 6 enters the retaining strip 603 threading portion after cutting, the staff or an external robotic arm discharges the cut waste through the movable member on the waste cleaning structure 201.

[0072] S2: Feed the cut diaper 6 into the tape threading component 3 through the conveying device 1. The second cylinder 303 on the tape threading component 3 drives the lifting frame 304 to move. The lifting frame 304 holds up the connecting part at the heat dissipation opening 602 of the diaper 6 through the buckle support block 3041. At the same time, the pressing convex block 3051 on the pressing frame 307 restricts another connecting part at the heat dissipation opening 602 of the diaper 6, so that the heat dissipation opening 602 of the diaper 6 is unfolded in the vertical direction. The staff inserts the retaining tape 603 into the heat dissipation opening 602 to achieve a knitting effect. Subsequently, the third cylinder 3081 on the edge threading structure 308 drives the edge threading block 3083 to work, so that a part of the retaining tape 603 sinks into the heat dissipation openings 602 at both ends. The driving motor 3093 on the edge hooking structure 309 drives the clamping plate 3095 to move through the screw 3094. The clamping plate 3095 inserts the edge hooking rod 3096 into a part of the retaining tape 603 that has sunk to hook the retaining tape 603. Subsequently, the linear driving device 3091 pulls the retaining tape 603, so that the remaining part of the retaining tape 603 completely passes through the heat dissipation openings 602 at both ends. The staff or an external robotic arm takes out the diaper 6, and the diaper 6 enters the diaper flipping component 4 through the conveying device 1;

[0073] S3: The fifth cylinder 4012 on the diaper flipping component 4 drives the mounting block 4013 to approach, and the transmission roller plate 4011 clamps the diaper 6. Subsequently, the fourth cylinder 407 on the diaper flipping component 4 drives the rack 405 to move along the slide rail 406. The rack 405 drives the gear 404 to rotate. The gear 404 drives the mounting shaft 402 to rotate along the shaft seat 403. Thus, through the limiting plate 4015 connected to the mounting shaft 402, the transmission roller plate is flipped to the other side, and the transmission roller plate enables the diaper 6 to enter the dispensing component 5 through the conveying device 1;

[0074] S4: The two-axis driving device 502 on the dispensing component 5 drives the dispensing device 503 to move. The dispensing device 503 performs tearable bonding on the retaining tape 603 of the diaper 6. After bonding, the rotary driving device 504 drives the diaper 6 to rotate. Subsequently, the staff or an external robotic arm places the side wing 601 of the diaper 6 on the dispensing component 5, and the dispensing device 503 performs tearable bonding on the side wing 601 of the diaper 6.

[0075] As Figure 10 shown, on both sides of the diaper 6 involved in step S1 of the present invention, there are tearable side wings 601. At both ends of the diaper 6, eight heat dissipation openings 602 are provided, and a retaining tape 603 is woven into the eight heat dissipation openings 602 in a woven shape. A tearable structure is provided between both ends of the retaining tape 603 and the diaper 6.

[0076] The disposable diaper 6 provided by the present invention can play a role in increasing the warmth retention performance of the disposable diaper 6 when used in winter. When used in summer, the side wings 601 and the retaining tape 603 are detached from the disposable diaper 6 through a tearable structure, and the heat dissipation port 602 after detaching the retaining tape 603 can provide good heat dissipation performance, so that the disposable diaper 6 can meet the usage requirements at different temperatures in winter and summer.

[0077] The embodiments disclosed in the present invention are preferred embodiments, but not limited thereto. Those of ordinary skill in the art can easily understand the spirit of the present invention based on the above embodiments and make different extensions and changes. However, as long as they do not depart from the spirit of the present invention, they are within the protection scope of the present invention.

Claims

1. An automated production device for a dry and bacteriostatic diaper, characterized in that, It includes a conveying device (1), a splitting component (2) arranged on the conveying device (1), a tape threading component (3) arranged on the conveying device (1), a diaper flipping component (4) arranged on the conveying device (1), and a dispensing component (5) arranged on the conveying device (1); The splitting component (2) includes two flank splitting plates (207) and two heat dissipation opening splitting plates (208). The cutting part of the flank splitting plate (207) is set as an arc structure, and the cutting part of the heat dissipation opening splitting plate (208) is set as a plurality of block structures; The tape threading component (3) includes a second bottom plate (301), a socket (302), a second cylinder (303), a jacking frame (304), a second support frame (305), a second guide rod (306), and a pressing frame (307); A groove is provided inside the second bottom plate (301). The socket (302) is opened at the top of the groove. The second cylinder (303) is installed at the bottom of the groove. The jacking frame (304) is installed at the output end of the second cylinder (303). A number of buckle support blocks (3041) are arranged at intervals on the jacking frame (304). The second support frame (305) is installed on the second bottom plate (301). The second guide rod (306) is installed at the bottom of the second support frame (305). The pressing frame (307) is installed at the end of the second guide rod (306). A number of pressing convex blocks (3051) are arranged at intervals on the pressing frame (307).

2. The automated production equipment for a dry and bacteriostatic diaper according to claim 1, characterized in that, The splitting component (2) further includes a waste cleaning structure (201), a first support frame (202), a guide frame (203), a first cylinder (204), a driving frame (205), and a first guide rod (206); The waste cleaning structure (201) is arranged on the conveying device (1). The first support frame (202) is installed on the waste cleaning structure (201). The guide frame (203) is installed below the first support frame (202). The first cylinder (204) is installed on the guide frame (203). The driving frame (205) is installed at the output end of the first cylinder (204). Both the flank splitting plate (207) and the heat dissipation opening splitting plate (208) are installed on the driving frame (205). A number of the first guide rods (206) are respectively installed on the flank splitting plate (207) and the heat dissipation opening splitting plate (208), and the first guide rod (206) is slidably connected to the guide frame (203).

3. The automated production equipment for a dry and bacteriostatic diaper according to claim 2, characterized in that, The waste cleaning structure (201) includes a first bottom plate (2011), a chute (2012), a slide rod (2013), a slider (2014), a flank support plate (2015), and a heat dissipation opening support plate (2016); The first base plate (2011) is installed on the conveying device (1). The chute (2012) is formed on the first base plate (2011). The slide bar (2013) is installed in the chute (2012). The slider (2014) is slidably connected to the slide bar (2013). The side wing support plate (2015) and the heat dissipation port support plate (2016) are respectively installed on a plurality of sliders (2014), and the side wing support plate (2015) and the heat dissipation port support plate (2016) are inserted into the recesses on the surface of the first base plate (2011).

4. An automated production equipment for a dry and bacteriostatic diaper according to claim 3, characterized in that, The tape threading-in component (3) further includes a threading edge structure (308). The threading edge structure (308) includes a third cylinder (3081), a mounting plate (3082), and a threading edge block (3083). The third cylinder (3081) is installed on the second support frame (305). The mounting plate (3082) is installed at the output end of the third cylinder (3081). The threading edge blocks (3083) are installed on both sides of the bottom end of the mounting plate (3082).

5. The automated production equipment for a dry and bacteriostatic diaper according to claim 4, characterized in that, The tape threading-in component (3) further includes a hemming structure (309). The hemming structure (309) includes a linear driving device (3091), a mounting frame (3092), a driving motor (3093), a screw rod (3094), a clamping plate (3095), and a hemming rod (3096). The linear driving device (3091) is installed in the groove of the second base plate (301). The mounting frame (3092) is installed at the output end of the linear driving device (3091). The driving motor (3093) is installed on one side of the mounting frame (3092). The screw rod (3094) is rotatably connected in the mounting frame (3092), and the screw rod (3094) is installed at the output end of the driving motor (3093). The thread directions on both sides of the screw rod (3094) are opposite. The two clamping plates (3095) are respectively threadedly connected to both sides of the screw rod (3094). The hemming rod (3096) is installed on the clamping plate (3095).

6. The automated production equipment for a dry and bacteriostatic diaper according to claim 5, characterized in that, The diaper flipping component (4) includes a clamping structure (401), a mounting shaft (402), a shaft seat (403), a gear (404), a rack (405), a slide rail (406), and a fourth cylinder (407). The clamping structure (401) is arranged on the conveying device (1). The mounting shaft (402) is arranged on the clamping structure (401), and both ends of the mounting shaft (402) are rotatably connected to two shaft seats (403). The shaft seats (403) are installed on the conveying device (1). The gear (404) is installed at one end of the mounting shaft (402). The rack (405) is meshed and connected to the bottom end of the gear (404), and the rack (405) is slidably connected to the slide rail (406). The slide rail (406) is installed on the conveying device (1). The fourth cylinder (407) is installed on the slide rail (406), and the output end of the fourth cylinder (407) is installed on the rack (405).

7. An automated production equipment for a dry and bacteriostatic diaper according to claim 6, characterized in that, The clamping structure (401) includes a transfer roller plate (4011), a fifth cylinder (4012), a mounting block (4013), a limiting block (4014), and a limiting plate (4015); The two transfer roller plates (4011) are arranged in parallel. The fifth cylinder (4012) is mounted on one transfer roller plate (4011), and the mounting block (4013) is mounted on the other transfer roller plate (4011). The output end of the fifth cylinder (4012) is connected to the mounting block (4013). The two transfer roller plates (4011) are both slidably connected to the limiting block (4014). The limiting block (4014) is mounted on the limiting plate (4015), and the limiting plate (4015) is connected to the mounting shaft (402).

8. An automated production device for a dry and bacteriostatic diaper according to claim 7, characterized in that, The dispensing assembly (5) includes a third base plate (501), a two-axis driving device (502), a dispensing device (503), and a rotary driving device (504). The third base plate (501) is mounted on the conveying device (1). The two-axis driving device (502) is mounted on the third base plate (501). The dispensing device (503) is mounted on the output end of the two-axis driving device (502). The rotary driving device (504) is mounted inside the third base plate (501), and the output end of the rotary driving device (504) is slightly higher than the top end of the third base plate (501).

9. An automated production process for a dry and bacteriostatic diaper, which is applicable to an automated production device for a dry and bacteriostatic diaper according to claim 8, characterized in that, It includes the following steps: S1: The diaper (6) is fed into the cutting assembly (2) through the conveying device (1). The first cylinder (204) on the cutting assembly (2) drives the driving frame (205) to move. The driving frame (205) cooperates with the first guide rod (206) and the guiding frame (203) to enable the side wing cutting plate (207) and the heat dissipation opening cutting plate (208) to cut the diaper (6). After the diaper (6) is cut and enters the threading portion of the retaining belt (603), the staff or an external robotic arm discharges the cut waste through the movable part on the waste cleaning structure (201). S2: The segmented diaper (6) is sent into the tape threading component (3) through the conveying device (1). The second cylinder (303) on the tape threading component (3) drives the lifting frame (304) to move. The lifting frame (304) holds up the connecting part at the heat dissipation opening (602) of the diaper (6) through the buckle support block (3041). At the same time, the pressing convex block (3051) on the pressing frame (307) restricts the other connecting part at the heat dissipation opening (602) of the diaper (6), so that the heat dissipation opening (602) of the diaper (6) is unfolded in the vertical direction. The staff inserts the retaining tape (603) into the heat dissipation opening (602) to achieve a knitting effect. Subsequently, the third cylinder (3081) on the edge threading structure (308) drives the edge threading block (3083) to work, so that a part of the retaining tape (603) sinks into the heat dissipation openings (602) at both ends. The drive motor (3093) on the edge hooking structure (309) drives the clamping plate (3095) to move through the screw rod (3094). The clamping plate (3095) inserts the edge hooking rod (3096) into a part of the retaining tape (603) that has sunk to hook the retaining tape (603). Subsequently, the linear drive device (3091) pulls the retaining tape (603) so that the remaining part of the retaining tape (603) completely passes through the heat dissipation openings (602) at both ends. The staff or an external robotic arm takes out the diaper (6), and the diaper (6) enters the diaper flipping component (4) through the conveying device (1). S3: The fifth cylinder (4012) on the diaper flipping component (4) drives the mounting block (4013) to approach, and the transmission roller plate (4011) clamps the diaper (6). Subsequently, the fourth cylinder (407) on the diaper flipping component (4) drives the rack (405) to move along the slide rail (406). The rack (405) drives the gear (404) to rotate. The gear (404) drives the mounting shaft (402) to rotate along the shaft seat (403). Thus, through the limiting plate (4015) connected to the mounting shaft (402), the transmission roller plate is flipped to the other side, and the transmission roller plate enables the diaper (6) to enter the dispensing component (5) through the conveying device (1). S4: The two-axis drive device (502) on the dispensing component (5) drives the dispensing device (503) to move. The dispensing device (503) performs tearable bonding on the retaining tape (603) of the diaper (6). After bonding, the rotary drive device (504) drives the diaper (6) to rotate. Subsequently, the staff or an external robotic arm places the side wings (601) of the diaper (6) on the dispensing component (5), and the dispensing device (503) performs tearable bonding on the side wings (601) of the diaper (6).

10. A dry and bacteriostatic disposable diaper automatic production process according to claim 9, characterized in that, The two sides of the diaper (6) in the step S1 are provided with tearable side wings (601). A plurality of heat dissipation openings (602) are opened at both ends of the diaper (6), and a retaining tape (603) is woven into the plurality of heat dissipation openings (602) in a woven shape. A tearable structure is provided between both ends of the retaining tape (603) and the diaper (6).

Citation Information

Patent Citations

  • Paper diaper conveying mechanism of automatic paper diaper packaging machine

    CN107031910A

  • Diaper packaging assembly machine

    CN108974508A

  • Turnover conveying device for paper diapers

    CN209064966U

  • Non-woven fabric slitting and glue spraying device

    CN213476436U

  • Improved apparatus and method for applying coating materials to individual sheet members

    WO1997029985A1