Comprehensive paper diaper production equipment

This comprehensive diaper production equipment, which combines a clamping stretch detection structure with a video positioning scanner and a metal scanner, solves the problems of low efficiency and unstable quality of existing equipment. It achieves fully automated, metal-free detection, thus improving the testing standards and safety of diapers.

CN224005100UActive Publication Date: 2026-03-17SHANDONG KANGSHUN DAILY PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-05
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing diaper production equipment mainly relies on manual or semi-automated testing, which is inefficient and easily affected by human factors, resulting in unstable product quality. Tensile performance testing is subjective, and there is a risk of metal objects falling into the diapers, affecting safety.

Method used

It adopts a clamping and stretching detection structure, combined with video positioning scanning and a metal scanner, to achieve fully automated detection, ensuring the accuracy of diaper positioning and the detection of no metal objects. The mechanical structure performs clamping and stretching and metal scanning to ensure the consistency of detection standards.

Benefits of technology

It has achieved fully automated testing in diaper production, improving testing efficiency and quality stability, preventing metal residue, and ensuring user safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a comprehensive paper diaper production device which comprises a device base, a clamping and stretching detection structure, a clamping and stretching detection mechanism and a clamping and stretching detection mechanism. The utility model relates to the technical field of paper diaper production and detection equipment, and has the beneficial effects that the problems that most of the existing paper diaper production equipment adopts a manual or semi-automatic mode to carry out quality detection, the mode is low in efficiency and is easily influenced by human factors, so that the product quality is unstable, and the detection efficiency is high are solved; the problems that in the prior art, tensile property detection is subjective, the detection quality cannot be guaranteed, meanwhile, metal objects possibly fall into paper diapers in the production and conveying process, and the use safety of subsequent users is affected are solved.
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Description

Technical Field

[0001] This utility model relates to the technical field of diaper production and testing equipment, specifically a comprehensive diaper production equipment. Background Technology

[0002] In the field of adult care, diapers are essential daily necessities, playing an irreplaceable role. They not only keep users dry and comfortable, prevent skin problems, and improve quality of life and dignity, but also reduce the intensity of caregiving and enable personalized care. Most existing diaper production equipment uses manual or semi-automated methods for quality inspection. This method is not only inefficient but also easily affected by human factors, leading to unstable product quality. Tensile performance testing is also subjective and cannot guarantee testing quality. In addition, metal objects may fall into the diapers during production and transportation, affecting the safety of subsequent users. Utility Model Content

[0003] To achieve the above objectives, this utility model is implemented through the following technical solution: a comprehensive diaper production equipment, comprising: an equipment base, on which a clamping and stretching detection structure is installed;

[0004] The clamping and tensile testing structure includes: a testing conveyor belt, a first mounting bracket, a video positioning scanning probe, a drive motor, a rotating rod, a mounting plate, a pair of first telescopic push rods, a pair of adjusting blocks, a pair of linear module translation stages, a pair of second telescopic push rods, a pair of third telescopic push rods, two pairs of connecting frames, two pairs of drive clamping assemblies, a second mounting bracket, and a metal scanner.

[0005] The inspection conveyor belt is mounted on the equipment base. The first mounting bracket is mounted on the outer left side of the inspection conveyor belt. The video positioning scanning probe is mounted on the top left wall of the first mounting bracket. The drive motor is mounted on the first mounting bracket with its output end extending downwards. The rotating rod is mounted on the output end of the drive motor. The mounting plate is mounted on the lower end of the rotating rod. A pair of first telescopic push rods are embedded in the mounting plate. A pair of adjusting blocks are mounted on the output ends of the pair of first telescopic push rods. A pair of linear module translation stages are mounted at the front and rear positions of the inspection conveyor belt. A pair of second telescopic push rods are mounted on the linear module translation stages. A pair of third telescopic push rods are mounted on the moving ends of the pair of linear module translation stages. Two pairs of connecting frames are respectively mounted on the output ends of the pair of second telescopic push rods and the pair of third telescopic push rods. Two pairs of drive clamping assemblies are respectively mounted on the two pairs of connecting frames in horizontal and vertical directions. The second mounting bracket is mounted on the outer right side of the inspection conveyor belt. The metal scanner is mounted on the second mounting bracket.

[0006] Preferably, the conveyor belt for testing has clamping grooves.

[0007] Preferably, the video positioning scanning probe is mounted on the first mounting bracket via a support frame.

[0008] Preferably, a pair of first telescopic push rods are mounted on the mounting plate via a fixing bracket.

[0009] Preferably, each pair of drive clamping assemblies includes: a fixing plate, a first fixing clamping plate, two pairs of mounting blocks, a pair of fourth telescopic push rods, a pair of connecting rods, and a second fixing clamping plate;

[0010] The fixing plate is installed on the connecting frame. The first fixing clamp is fixedly installed on one side wall of the fixing plate. Two pairs of mounting blocks are installed on the other side wall of the fixing plate. A pair of fourth telescopic push rods are installed on the two pairs of mounting blocks. A pair of connecting rods are installed on the output end of a pair of fourth telescopic push rods. The second fixing clamp is installed on a pair of connecting rods.

[0011] Preferably, a pair of movable slots are provided on the fixed plate.

[0012] Beneficial effects

[0013] This utility model provides a comprehensive diaper production equipment with the following advantages: This solution uses a clamping tensile testing structure to perform fully automatic tensile testing through a mechanical structure. During testing, the diaper is positioned correctly via video scanning and clamped for tensile testing through the mechanical structure, ensuring a consistent testing standard. Simultaneously, a metal scanner scans the diaper to prevent metal contamination, ensuring diaper quality. This solves the problem that most existing diaper production equipment uses manual or semi-automatic methods for quality inspection, which is not only inefficient but also susceptible to human factors, leading to unstable product quality. Furthermore, tensile performance testing is subjective and cannot guarantee testing quality. Additionally, metal objects may fall into the diaper during production and transportation, affecting the safety of subsequent users. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of a comprehensive diaper production equipment according to the present invention.

[0015] Figure 2 This is a front view structural diagram of a comprehensive diaper production equipment according to the present invention.

[0016] Figure 3 This is a side view of the structure of a comprehensive diaper production equipment according to the present invention.

[0017] Figure 4 This is a three-dimensional structural diagram of the drive clamping component of a comprehensive diaper production equipment according to the present invention.

[0018] In the diagram: 1-Equipment base; 2-Detection conveyor belt; 3-First mounting bracket; 4-Video positioning scanning probe; 5-Drive motor; 6-Rotating rod; 7-Mounting plate; 8-First telescopic push rod; 9-Adjusting block; 10-Linear module translation stage; 11-Second telescopic push rod; 12-Third telescopic push rod; 13-Connecting frame; 14-Second mounting bracket; 15-Metal scanner; 16-Clamping slot; 17-Support frame; 18-Fixing frame; 19-Fixing plate; 20-First fixing clamp; 21-Mounting block; 22-Fourth telescopic push rod; 23-Connecting rod; 24-Second fixing clamp; 25-Moving slot. Detailed Implementation

[0019] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0020] Example: Please refer to Figure 1-4 This utility model provides a technical solution: a comprehensive diaper production equipment. This solution takes into account that the existing diaper testing is carried out manually, which has low testing efficiency, strong subjectivity, and affects the testing effect. In addition, metal residues are easily left on the diapers during production and are not easily detected, affecting the safety of users. Based on the above, this invention sets up the following technical means.

[0021] Specifically, this device includes at least an equipment base 1, a detection conveyor belt 2, a first mounting bracket 3, a video positioning scanning probe 4, a drive motor 5, a rotating rod 6, a mounting plate 7, a pair of first telescopic push rods 8, a pair of adjusting blocks 9, a pair of linear module translation stages 10, a pair of second telescopic push rods 11, a pair of third telescopic push rods 12, two pairs of connecting frames 13, two pairs of drive clamping assemblies, a second mounting bracket 14, and a metal scanner 15;

[0022] Both pairs of drive clamping assemblies include: a fixing plate 19, a first fixing clamping plate 20, two pairs of mounting blocks 21, a pair of fourth telescopic push rods 22, a pair of connecting rods 23, and a second fixing clamping plate 24;

[0023] The equipment base 1 provides overall support for the equipment. During testing, the diaper is placed on the testing conveyor belt 2 and moved for transport. During this transport, the video positioning scanning probe 4, mounted on the first mounting bracket 3, scans the position. When the position tilts, the output end of the first telescopic push rod 8, mounted on the mounting plate 7, extends downwards, causing the adjusting block 9 to abut against the diaper. Simultaneously, the drive motor 5 rotates, driving the diaper to adjust its orientation via the rotating rod 6, ensuring the diaper is moved and transported in the correct orientation. When the front hook and loop fastener of the diaper moves to the position of a pair of third telescopic push rods 12, the output end of the fourth telescopic push rod 22, mounted on the fixed plate 19, retracts, driving the second fixed clamping plate 24 downwards via the connecting rod 23 to clamp and fix the front hook and loop fastener. After the positioning is completed, the moving end of the linear module translation stage 10 moves to the right to clamp and move the diaper. When the rear end of the diaper moves to the middle position of the second telescopic push rod 11, the output end of the second telescopic push rod 11 retracts. The first fixed clamping plate 20 in the vertically installed drive clamping assembly presses the hook and loop end of the diaper into the clamping groove 16, causing its tail end to lift up. The fourth telescopic push rod 22 retracts, driving the second fixed clamping plate 24 to move and cooperate with the first fixed clamping plate 20 to clamp and fix it, thereby cooperating with the linear module translation stage 10 to perform tensile testing. At the same time, when the detection conveyor belt 2 transports the diaper, the metal scanner 15 installed on the second mounting bracket 14 scans and detects the diaper to prevent metal residue and ensure the quality of the diaper.

[0024] More specifically, the detection conveyor belt 2 is installed on the equipment base 1, the first mounting bracket 3 is installed on the outer left side of the detection conveyor belt 2, the video positioning scanning probe 4 is installed on the top left side wall of the first mounting bracket 3, the drive motor 5 is installed on the first mounting bracket 3 with its output end extending downwards, the rotating rod 6 is installed on the output end of the drive motor 5, the mounting plate 7 is installed on the lower end of the rotating rod 6, a pair of first telescopic push rods 8 are embedded in the mounting plate 7, a pair of adjusting blocks 9 are installed on the output ends of the pair of first telescopic push rods 8, a pair of linear module translation stages 10 are installed at the front and rear positions of the detection conveyor belt 2, a pair of second telescopic push rods 11 are installed on the linear module translation stages 10, a pair of third telescopic push rods 12 are installed on the moving ends of the pair of linear module translation stages 10, two pairs of connecting brackets 13 are respectively installed on the output ends of the pair of second telescopic push rods 11 and the pair of third telescopic push rods 12, two pairs of drive clamping components are respectively installed on the two pairs of connecting brackets 13 in horizontal and vertical directions, the second mounting bracket 14 is installed on the outer right side of the detection conveyor belt 2, and the metal scanner 15 is installed on the second mounting bracket 14;

[0025] The fixing plate 19 is installed on the connecting frame 13. The first fixing clamp 20 is fixedly installed on one side wall of the fixing plate 19. Two pairs of mounting blocks 21 are installed on the other side wall of the fixing plate 19. A pair of fourth telescopic push rods 22 are installed on the two pairs of mounting blocks 21. A pair of connecting rods 23 are installed on the output end of the pair of fourth telescopic push rods 22. The second fixing clamp 24 is installed on the pair of connecting rods 23.

[0026] In the specific implementation process, furthermore, a clamping groove 16 is opened on the inspection conveyor belt 2.

[0027] In the specific implementation process, the video positioning scanning probe 4 is further mounted on the first mounting bracket 3 via the support frame 17.

[0028] In the specific implementation process, a pair of first telescopic push rods 8 are further installed on the mounting plate 7 via a fixing bracket 18.

[0029] In the specific implementation process, a pair of movable slots 25 are further provided on the fixed plate 19.

[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An integrated paper diaper production apparatus comprising: Device base (1), characterized in that the device base (1) is provided with clamping and stretching detection structure; The clamping and stretching detection structure comprises a detection conveying belt (2), a first mounting bracket (3), a video positioning scanning probe (4), a driving motor (5), a rotating rod (6), a mounting plate (7), a pair of first telescopic push rods (8), a pair of adjusting blocks (9), a pair of linear module translation tables (10), a pair of second telescopic push rods (11), a pair of third telescopic push rods (12), two pairs of connecting frames (13), two pairs of driving clamping assemblies, a second mounting bracket (14) and a metal scanner (15). The detection conveying belt (2) is mounted on the device base (1), the first mounting bracket (3) is mounted on the left side of the detection conveying belt (2), the video positioning scanning probe (4) is mounted on the left side wall of the top end of the first mounting bracket (3), the driving motor (5) is mounted on the first mounting bracket (3) and the output end extends downward, the rotating rod (6) is mounted on the output end of the driving motor (5), the mounting plate (7) is mounted on the lower end of the rotating rod (6), the pair of first telescopic push rods (8) are embedded in the mounting plate (7), the pair of adjusting blocks (9) are mounted on the output end of the pair of first telescopic push rods (8), the pair of linear module translation tables (10) are mounted on the front and rear positions of the detection conveying belt (2), the pair of second telescopic push rods (11) are mounted on the linear module translation tables (10), the pair of third telescopic push rods (12) are mounted on the moving ends of the pair of linear module translation tables (10), the two pairs of connecting frames (13) are respectively mounted on the output ends of the pair of second telescopic push rods (11) and the pair of third telescopic push rods (12), the two pairs of driving clamping assemblies are mounted on the two pairs of connecting frames (13) in horizontal and vertical directions, the second mounting bracket (14) is mounted on the right side of the detection conveying belt (2), and the metal scanner (15) is mounted on the second mounting bracket (14).

2. The integrated paper diaper production apparatus according to claim 1, wherein A clamping groove (16) is formed in the detection conveying belt (2).

3. The integrated paper diaper production apparatus according to claim 1, wherein The video positioning scanning probe (4) is mounted on the first mounting bracket (3) through a support frame (17).

4. The integrated paper diaper production apparatus according to claim 1, wherein The pair of first telescopic push rods (8) are mounted on the mounting plate (7) through a fixing frame (18).

5. The integrated paper diaper production apparatus according to claim 1, wherein Each of the two pairs of driving clamping assemblies comprises a fixed plate (19), a first fixed clamping plate (20), two pairs of mounting blocks (21), a pair of fourth telescopic push rods (22), a pair of connecting rods (23) and a second fixed clamping plate (24). The fixed plate (19) is mounted on the connecting frame (13), the first fixed clamping plate (20) is fixedly mounted on one side wall of the fixed plate (19), the two pairs of mounting blocks (21) are mounted on the other side wall of the fixed plate (19), the pair of fourth telescopic push rods (22) are mounted on the two pairs of mounting blocks (21), the pair of connecting rods (23) are mounted on the output ends of the pair of fourth telescopic push rods (22), and the second fixed clamping plate (24) is mounted on the pair of connecting rods (23).

6. The integrated paper diaper production apparatus according to claim 5, wherein A pair of moving grooves (25) are formed in the fixed plate (19).