Fabric thickness meter for baby wet tissue based on intelligent sensor
Through the synergistic action of the electro-hydraulic rod and the assembly, the problem of displacement and wrinkle of the fabric during the measurement process is solved, achieving more accurate thickness measurement.
Patent Information
- Application Number
- CN202510850242.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2025-09-05
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the measurement process of existing fabric thickness meter for baby wipes, the fabric is prone to displacement and wrinkle, resulting in inaccurate measurement data.
The electric hydraulic rod is used to combine fixed blocks, push blocks, hydraulic blocks, hoses, rollers and other components. The roller is rotated counterclockwise and the L-shaped guard plate is closed to ensure that the fabric does not shift or wrinkle during the measurement process. At the same time, the fabric is tightened through the lifting assembly of the fabric test bench to improve measurement accuracy.
It effectively prevents the fabric from shifting and wrinkling during the measurement process, reduces the influence of laboratory environmental factors, and improves the accuracy of thickness testing.
Smart Images

Figure CN120593686A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cloth thickness detection devices, in particular to a fabric thickness meter for baby wipes based on an intelligent sensor. Background Art
[0002] Fabric testing is related to the fabric's volume, weight, bulkiness, rigidity, flexibility, and warmth retention. The fabric's thickness depends on yarn density, fabric organization, structural phase, density, and yarn structure. Fabric thickness testing devices are primarily used to measure the thickness of various fabrics and knitted fabrics. They can also be used to measure the thickness of other uniform thin materials, such as non-woven fabrics and paper.
[0003] Chinese patent CN220853406U, authorized and published on April 26, 2024, discloses a fabric thickness gauge for baby wipes based on an intelligent sensor. The gauge includes an L-shaped stable detection frame, a positioning and anti-slip mechanism positioned at the front end of the frame, a fabric placement tray fixedly connected to the upper end of the front portion of the frame, a data detection controller fixedly connected to the upper end of the frame, and a data display panel and control buttons electrically connected to the front end of the controller. In the aforementioned application document, when the device begins operating, because the positioning and anti-slip mechanism in the L-shaped stable detection frame only secures one end of the fabric, the rear end of the fabric is prone to displacement and wrinkling during actual measurement, resulting in inaccurate measurement data. Summary of the Invention
[0004] In response to the shortcomings of the existing technology, the present invention provides a fabric thickness gauge for baby wipes based on an intelligent sensor, which solves the problems raised in the above background technology. To achieve the above objectives, the present invention is implemented through the following technical solutions: A fabric thickness gauge for baby wipes based on an intelligent sensor, comprising: A base, wherein a thickness gauge is fixedly connected to the top of the base, and an electric hydraulic rod is fixedly connected to the inner surface of the thickness gauge; The rear side of the pressure rod of the electric hydraulic rod is fixedly connected to a fixed block 1, the interior of the thickness gauge is fixedly connected to a hydraulic block 1, the top of the hydraulic block 1 is movably connected to a push block 1, the bottom of the hydraulic block 1 is fixedly connected to a hydraulic block 2 via a hose 1, the front side of the thickness gauge is fixedly connected to a support plate, the side of the support plate is slidably connected to a slider 1 via a slide groove provided on its surface, the top of the slider 1 is fixedly connected to a push block 2, the top of the push block 2 is movably connected to the hydraulic block 2, the top of the hydraulic block 2 is fixedly connected to the top of the slide groove, a spring 1 is fixedly connected between the slider 1 and the bottom of the slide groove, and the hydraulic block 2 is movably connected to the roller via a transmission member. By setting the roller, when the electric hydraulic rod is activated, the roller moves downward to clamp the fabric, and then rotates counterclockwise to fix the rear end of the fabric, while the front end of the fabric is tightened outward, so that the fabric will not deviate or wrinkle during the test, making the test results more accurate.
[0005] Preferably, the transmission parts include fixed block 2, hose 2, hydraulic block 3, rack, fixed block 3, fixed block 4, spring 2, gear, rotating shaft 1, roller, driven roller, rotating shaft 2, and fixed plate. The top of the slider 1 is fixedly connected to the fixed block 2, the bottom of the fixed block 2 is fixedly connected to the hydraulic block 3, the side of the hydraulic block 3 is fixedly connected to one end of the hose 2, the other end of the hose 2 is fixedly connected to the outside of the hydraulic block 2, and the bottom of the hydraulic block 3 is movably connected to the rack. Each of the sliders 1 is rotatably connected to the roller via rotating shaft 1, the outside of the rotating shaft 1 is fixedly connected to the gear, and the rack is meshed with the gear. The front side of the thickness gauge is fixedly connected to the fixed plate, and the inside of the fixed plate is rotatably connected to the driven roller via rotating shaft 2.
[0006] Preferably, the interior of the thickness gauge is fixedly connected to an electric telescopic rod, a controller is provided on the front surface of the thickness gauge, the bottom of the electric telescopic rod is fixedly connected to a pressure sensor, the inner top of the thickness gauge is movably connected to a fabric testing table, both sides of the thickness gauge are movably connected to guard plate assemblies, and the bottom of the fabric testing table is movably connected to a lifting assembly.
[0007] Preferably, the number of the hoses 1 is two, the number of the support plates is two, the number of the hydraulic blocks 2 is two, the number of the push blocks 2 is two, the number of the sliders 1 is two, the number of the fixed blocks 2 is two, the number of the hoses 2 is two, the number of the hydraulic blocks 3 is two, the number of the racks is two, and the number of the fixed blocks 3 is two.
[0008] Preferably, the guard plate assembly includes a push block three, a hydraulic block four, a fixed block five, a hose three, a hydraulic block five, a push block four, a rotating block, a rotating shaft three, a fixed block six, a fixed block seven, and an L-shaped guard plate, the inner bottom of the support plate is fixedly connected to the fixed block five, the top of the fixed block five is fixedly connected to the hydraulic block four, the top of the hydraulic block four is movably connected to the push block three, the side surface of the hydraulic block four is fixedly connected to one end of the hose three, the other end of the hose three is fixedly connected to the side surface of the hydraulic block five, the top of the hydraulic block five is fixedly connected to the fixed block six, the front side of the hydraulic block five is movably connected to the push block four, the front side of the push block four is fixedly connected to the rotating block, the top of two sides of the thickness gauge is fixedly connected to the two fixed blocks seven, the bottom of two sides of the thickness gauge is fixedly connected to the two fixed blocks six, the fixed block six and the fixed block seven are rotatably connected to the L-shaped guard plate through the rotating shaft three, and the bottom of the rotating shaft three is fixedly connected to the rotating block. By setting the guard plate assembly, the electric hydraulic rod is extended downward, and the two L-shaped guard plates are rotated inward 90 degrees to close, so that the left and right sides of the thickness gauge are surrounded as a whole, thereby reducing the impact of laboratory environmental factors on the fabric thickness test and making the test results more accurate.
[0009] Preferably, the number of the hydraulic blocks four is two, the number of the fixed blocks five is two, the number of the hoses three is two, the number of the hydraulic blocks three is two, the number of the push blocks four is two, the number of the rotating blocks is two, the number of the rotating shafts three is two, and the number of the L-shaped guard plates is two.
[0010] Preferably, the length of the L-shaped guard plate is greater than the length of the thickness gauge.
[0011] Preferably, the lifting assembly includes a fourth hose, a sixth hydraulic block, a fifth pusher block, and a mounting slot. The side of the fourth hydraulic block is fixedly connected to one end of the fourth hose, and the other end of the fourth hose is fixedly connected to the side of the sixth hydraulic block. The interior of the thickness gauge is movably connected to the fabric testing platform via a mounting slot provided on its surface. The bottom of the sixth hydraulic block is fixedly connected to the top of the mounting slot. The top of the sixth hydraulic block is movably connected to the fifth pusher block, and the top of the fifth pusher block is fixedly connected to the fabric testing platform. By configuring the lifting assembly, the fabric testing platform is lifted upward, thereby moving the center of the fabric upward, making the fabric taut, and thus ensuring more accurate thickness test data.
[0012] Preferably, the number of the hoses four is two, the number of the hydraulic blocks six is two, each of the hydraulic blocks six is symmetrically distributed about the center line of the thickness gauge, and the number of the push blocks five is two.
[0013] Preferably, the size of the mounting groove is consistent with the size of the fabric testing table.
[0014] The present invention provides a fabric thickness meter for baby wipes based on an intelligent sensor. It has the following beneficial effects: (1) The fabric thickness gauge for baby wipes based on the intelligent sensor starts the electric hydraulic rod, and cooperates with the fixed block 1, the push block 1, the hydraulic block 1, the hose 1, the hydraulic block 2, the push block 2, the slider 1, the hose 2, the hydraulic block 3, the rack, the gear, the shaft 1, and the driven roller to rotate the roller counterclockwise, so that the front end of the fabric is pressed by the electric hydraulic rod while the back side of the fabric is tightened by the roller, thereby avoiding wrinkles.
[0015] (2) The fabric thickness gauge for baby wipes based on the intelligent sensor, when the slider moves downward, cooperates with the push block 3, hydraulic block 4, hose 3, hydraulic block 5, push block 4, rotating block, and rotating shaft 3 to rotate the two L-shaped guard plates inward and close, thereby reducing the influence of laboratory environmental factors on the fabric thickness test and making the test results more accurate.
[0016] (3) The fabric thickness gauge for baby wipes based on the intelligent sensor increases the internal pressure of the hydraulic block 4, and cooperates with the hose 4, the hydraulic block 6, the push block 5, and the mounting slot to move the fabric test table upward, making the fabric tight, thereby making the test data more accurate. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the overall left three-dimensional structure of the present invention; Figure 2 It is a schematic diagram of the overall right three-dimensional structure of the present invention; Figure 3 It is a schematic diagram of the structure of some components of the present invention; Figure 4 It is a schematic diagram of the structure of some components of the present invention; Figure 5 It is a schematic structural diagram of the guard plate assembly of the present invention; Figure 6 For the present invention Figure 5 A in the middle is an enlarged structural diagram; Figure 7 It is a schematic diagram of the lifting assembly structure of the present invention; Figure 8 It is a schematic diagram of the internal structure of the lifting assembly of the present invention.
[0018] In the picture: 100, base; 200, thickness gauge; 300, electric telescopic rod; 400, controller; 500, pressure sensor; 600, electric hydraulic rod; 700, fabric testing table; 801. Fixed block 1; 802. Push block 1; 803. Hydraulic block 1; 804. Hose 1; 805. Support plate; 806. Hydraulic block 2; 807. Push block 2; 808. Slider 1; 809. Fixed block 2; 810. Hose 2; 811. Hydraulic block 3; 812. Rack; 813. Fixed block 3; 814. Fixed block 4; 815. Spring 1; 816. Spring 2; 817. Gear; 818. Rotating shaft 1; 819. Roller; 820. Driven roller; 821. Rotating shaft 2; 822. Fixed plate 900, guard plate assembly; 901, push block three; 902, hydraulic block four; 903, fixed block five; 904, hose three; 905, hydraulic block five; 906, push block four; 907, rotating block; 908, rotating shaft three; 909, fixed block six; 910, fixed block seven; 911, L-shaped guard plate; 1000, lifting assembly; 1001, hose four; 1002, hydraulic block six; 1003, push block five; 1004, installation slot. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0020] For example 1, please refer to Figures 1-4 , a fabric thickness gauge for baby wipes based on an intelligent sensor, comprising: Base 100, a thickness gauge 200 is fixedly connected to the top of the base 100, an electric hydraulic rod 600 is fixedly connected to the inner surface of the thickness gauge 200, an electric telescopic rod 300 is fixedly connected to the inside of the thickness gauge 200, and the electric telescopic rod 300 is provided so that the pressure sensor 500 can move up and down with the electric telescopic rod 300, a controller 400 is provided on the front surface of the thickness gauge 200, and the controller 400 is provided so that the start and stop of the thickness gauge 200 can be controlled, a pressure sensor 500 is fixedly connected to the bottom of the electric telescopic rod 300, and the pressure sensor 500 is provided so that the device reads pressure data through the pressure sensor 500 and converts it into fabric thickness, a fabric testing table 700 is movably connected to the inner top of the thickness gauge 200, and the fabric testing table 700 is provided so that the center of the fabric can be measured, guard plate assemblies 900 are movably connected to both sides of the thickness gauge 200, and a lifting assembly 1000 is movably connected to the bottom of the fabric testing table 700;The rear side of the pressure rod of the electric hydraulic rod 600 is fixedly connected to a fixed block 801, the interior of the thickness gauge 200 is fixedly connected to a hydraulic block 803, the top of the hydraulic block 803 is movably connected to a push block 802, the bottom of the hydraulic block 803 is fixedly connected to the hydraulic block 2 806 through a hose 804, the front side of the thickness gauge 200 is fixedly connected to a support plate 805, the side of the support plate 805 is slidably connected to the slider 1 808 through a slide groove opened on its surface, the top of the slider 1 808 is fixedly connected to the push block 2 807, the top of the push block 2 807 is movably connected to the hydraulic block 2 806, the top of the hydraulic block 2 806 is fixedly connected to the top of the slide groove, and the slider 805 is fixedly connected to the support plate 805. 08 is fixedly connected to the bottom of the slide trough with a spring 1 815. The spring 1 815 is provided so that the slider 1 808 can be reset after moving down. The hydraulic block 2 806 is movably connected to the roller 819 through a transmission member. The transmission member includes a fixed block 2 809, a hose 2 810, a hydraulic block 3 811, a rack 812, a fixed block 3 813, a fixed block 4 814, a spring 2 816, a gear 817, a rotating shaft 1 818, a roller 819, a driven roller 820, a rotating shaft 2 821, and a fixed plate 822. The top of the slider 1 808 is fixedly connected to the fixed block 2 809, the bottom of the fixed block 2 809 is fixedly connected to the hydraulic block 3 811, and the side of the hydraulic block 3 811 is fixed to the fixed block 2 809. One end of hose 2 810 is fixedly connected, and the other end of hose 2 810 is fixedly connected to the outside of hydraulic block 2 806. The bottom of hydraulic block 3 811 is movably connected with rack 812. Each slider 1 808 is rotatably connected with roller 819 through shaft 1 818. The outside of shaft 1 818 is fixedly connected with gear 817. Rack 812 meshes with gear 817. The front side of thickness gauge 200 is fixedly connected with fixed plate 822. The inside of fixed plate 822 is rotatably connected with driven roller 820 through shaft 2 821. Driven roller 820 is provided to make the cloth tensioning process smoother and prevent the material from slipping when tensioned. There are two hoses 1 804, which support There are two support plates 805, two hydraulic blocks 806, two push blocks 807, two sliders 808, two fixed blocks 809, two hoses 810, two hydraulic blocks 811, two racks 812, and two fixed blocks 813. A roller 819 is provided so that when the electric hydraulic rod 600 is activated, the roller 819 moves downward to clamp the fabric. The roller 819 then rotates counterclockwise to secure the rear end of the fabric while simultaneously pulling the front end outward. This prevents the fabric from shifting or wrinkling during testing, ensuring more accurate test results.
[0021] During use, the electric hydraulic rod 600 is started to move the fixed block 801 downward, the push block 1 802 downward, the internal pressure of the hydraulic block 1 803 increased, and the internal pressure of the hydraulic block 1 803 is transmitted to the inside of the hydraulic block 2 806 through the hose 1 804, so that the internal pressure of the hydraulic block 2 806 increases, the push block 2 807 is pushed downward, the slider 1 808 moves downward, and the roller 819 moves downward to clamp the cloth. At the same time, the excess pressure inside the hydraulic block 2 806 is transmitted to the inside of the hydraulic block 3 811 through the hose 2 810, so that the internal pressure of the hydraulic block 3 811 increases, the rack 812 moves downward, the gear 817 rotates counterclockwise, the rotating shaft 1 818 rotates counterclockwise, and the roller 819 rotates counterclockwise, so that the cloth is pulled backward, so that the cloth will not deviate or wrinkle during the test, and the test results will be more accurate.
[0022] For example 2, please refer to Figures 1-6On the basis of the first embodiment, the guard plate assembly 900 includes a push block 3 901, a hydraulic block 4 902, a fixed block 5 903, a hose 3 904, a hydraulic block 5 905, a push block 4 906, a rotating block 907, a rotating shaft 3 908, a fixed block 6 909, a fixed block 7 910, and an L-shaped guard plate 911. The inner bottom of the support plate 805 is fixedly connected to the fixed block 5 903, the top of the fixed block 5 903 is fixedly connected to the hydraulic block 4 902, the top of the hydraulic block 4 902 is movably connected to the push block 3 901, and the hydraulic block 4 906. The side of 02 is fixedly connected to one end of hose three 904, and the other end of hose three 904 is fixedly connected to the side of hydraulic block five 905. Hose three 904 is set to make the interior of hydraulic block five 905 communicate with the interior of hydraulic block four 902. The top of hydraulic block five 905 is fixedly connected to fixed block six 909. The front side of hydraulic block five 905 is movably connected to push block four 906. The front side of push block four 906 is fixedly connected to rotating block 907. Two fixed blocks seven 910 are fixedly connected to the top of both sides of thickness gauge 200. There are two fixed blocks 6 909 fixedly connected to the bottom of the side. There is an L-shaped guard plate 911 between the fixed block 6 909 and the fixed block 7 910 through the rotating shaft 3 908. The L-shaped guard plate 911 is set to prevent the equipment from being disturbed by the external environment during measurement. The bottom of the rotating shaft 3 908 is fixedly connected with a rotating block 907. The rotating block 907 is set so that when the rotating block 907 rotates, it can drive the rotating shaft 3 908 to rotate. The number of hydraulic blocks 4 902 is two, the number of fixed blocks 5 903 is two, the number of hoses 3 904 is two, and the hydraulic block There are two blocks 811, two push blocks 906, two rotating blocks 907, two rotating shafts 908, and two L-shaped guard plates 911. The length of the L-shaped guard plates 911 is greater than the length of the thickness gauge 200. The guard plate assembly 900 is set to extend the electric hydraulic rod 600 downward, so that the two L-shaped guard plates 911 are rotated inward ninety degrees and closed, so that the left and right sides of the thickness gauge 200 are surrounded, thereby reducing the influence of laboratory environmental factors on the fabric thickness test and making the test results more accurate.
[0023] During use, based on Example 1, when the slider 1 808 moves downward, the push block 3 901 moves downward, the internal pressure of the hydraulic block 4 902 increases, and the internal pressure of the hydraulic block 4 902 is transmitted to the inside of the hydraulic block 5 905 through the hose 3 904, so that the internal pressure of the hydraulic block 5 905 increases, the push block 4 906 is pushed outward, the rotating block 907 rotates 90 degrees counterclockwise, the rotating shaft 3 908 rotates 90 degrees counterclockwise, and the two L-shaped guard plates 911 rotate and close, thereby reducing the influence of laboratory environmental factors on the fabric thickness test and making the test results more accurate.
[0024] For example three, please refer to Figures 1-8On the basis of the first and second embodiments, the lifting assembly 1000 includes a fourth hose 1001, a sixth hydraulic block 1002, a fifth push block 1003, and a mounting groove 1004. The side of the fourth hydraulic block 902 is fixedly connected to one end of the fourth hose 1001, and the other end of the fourth hose 1001 is fixedly connected to the side of the sixth hydraulic block 1002. The fourth hose 1001 is provided to communicate the interior of the sixth hydraulic block 1002 with the interior of the fourth hydraulic block 902. The interior of the thickness gauge 200 is movably connected to the fabric test table 700 through the mounting groove 1004 opened on its surface. The mounting groove 1004 is provided so that the fabric test table 700 can be retracted into the mounting groove 1004 after the test is completed without affecting the subsequent unloading process. In the process, the bottom of the hydraulic block 6 1002 is fixedly connected to the top of the mounting groove 1004. The size of the mounting groove 1004 is consistent with the size of the fabric test table 700. The top of the hydraulic block 6 1002 is movably connected to the push block 5 1003. The top of the push block 5 1003 is fixedly connected to the fabric test table 700. There are two hoses 4 1001 and two hydraulic blocks 6 1002. Each hydraulic block 6 1002 is symmetrically distributed about the center line of the thickness gauge 200. There are two push blocks 5 1003. A lifting component 1000 is provided to lift the fabric test table 700 upward, thereby driving the center of the fabric to move upward, making the fabric taut, and making the thickness test data more accurate.
[0025] During use, based on the first and second embodiments, when the internal pressure of the hydraulic block 4 902 increases, the excess pressure inside the hydraulic block 4 902 is transmitted to the inside of the hydraulic block 6 1002 through the hose 4 1001, so that the internal pressure of the hydraulic block 6 1002 increases, and the push block 5 1003 is pushed upward, so that the fabric testing table 700 moves upward, and the fabric is tightened, thereby making the thickness test data more accurate.
[0026] The above are only preferred specific embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with this technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solutions and inventive concepts of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A fabric thickness gauge for baby wipes based on an intelligent sensor, characterized in that: include: A base, wherein a thickness gauge is fixedly connected to the top of the base, and an electric hydraulic rod is fixedly connected to the inner surface of the thickness gauge; The rear side of the pressure rod of the electric hydraulic rod is fixedly connected to a fixed block 1, the interior of the thickness gauge is fixedly connected to a hydraulic block 1, the top of the hydraulic block 1 is movably connected to a push block 1, the bottom of the hydraulic block 1 is fixedly connected to the hydraulic block 2 through a hose 1, the front side of the thickness gauge is fixedly connected to a support plate, the side of the support plate is slidably connected to the slider 1 through a slide groove opened on its surface, the top of the slider 1 is fixedly connected to a push block 2, the top of the push block 2 is movably connected to the hydraulic block 2, the top of the hydraulic block 2 is fixedly connected to the top of the slide groove, a spring 1 is fixedly connected between the slider 1 and the bottom of the slide groove, and the hydraulic block 2 is movably connected to the roller through a transmission member.
2. The fabric thickness meter for baby wipes based on an intelligent sensor according to claim 1, characterized in that: The transmission parts include fixed block 2, hose 2, hydraulic block 3, rack, fixed block 3, fixed block 4, spring 2, gear, rotating shaft 1, roller, driven roller, rotating shaft 2, and fixed plate. The top of the slider 1 is fixedly connected to the fixed block 2, the bottom of the fixed block 2 is fixedly connected to the hydraulic block 3, the side of the hydraulic block 3 is fixedly connected to one end of the hose 2, the other end of the hose 2 is fixedly connected to the outside of the hydraulic block 2, and the bottom of the hydraulic block 3 is movably connected to the rack. Each of the sliders 1 is rotatably connected to the roller via rotating shaft 1, the outside of the rotating shaft 1 is fixedly connected to the gear, and the rack is meshed with the gear. The front side of the thickness gauge is fixedly connected to the fixed plate, and the inside of the fixed plate is rotatably connected to the driven roller via rotating shaft 2.
3. The fabric thickness meter for baby wipes based on an intelligent sensor according to claim 1, characterized in that: An electric telescopic rod is fixedly connected to the interior of the thickness gauge, a controller is provided on the front surface of the thickness gauge, a pressure sensor is fixedly connected to the bottom of the electric telescopic rod, a fabric testing table is movably connected to the inner top of the thickness gauge, guard plate assemblies are movably connected to both sides of the thickness gauge, and a lifting assembly is movably connected to the bottom of the fabric testing table.
4. The fabric thickness meter for baby wipes based on an intelligent sensor according to claim 1, characterized in that: The number of the hoses 1 is two, the number of the support plates is two, the number of the hydraulic blocks 2 is two, the number of the push blocks 2 is two, the number of the sliders 1 is two, the number of the fixed blocks 2 is two, the number of the hoses 2 is two, the number of the hydraulic blocks 3 is two, the number of the racks is two, and the number of the fixed blocks 3 is two.
5. The fabric thickness gauge for baby wipes based on an intelligent sensor according to claim 3, characterized in that: The guard plate assembly includes a push block three, a hydraulic block four, a fixed block five, a hose three, a hydraulic block five, a push block four, a rotating block, a rotating shaft three, a fixed block six, a fixed block seven, and an L-shaped guard plate. The inner bottom of the support plate is fixedly connected to the fixed block five, the top of the fixed block five is fixedly connected to the hydraulic block four, the top of the hydraulic block four is movably connected to the push block three, the side surface of the hydraulic block four is fixedly connected to one end of the hose three, the other end of the hose three is fixedly connected to the side surface of the hydraulic block five, the top of the hydraulic block five is fixedly connected to the fixed block six, the front side of the hydraulic block five is movably connected to the push block four, the front side of the push block four is fixedly connected to the rotating block, the top of the two sides of the thickness gauge is fixedly connected to two fixed blocks seven, the bottom of the two sides of the thickness gauge is fixedly connected to two fixed blocks six, the fixed block six and the fixed block seven are rotatably connected to the L-shaped guard plate via the rotating shaft three, and the bottom of the rotating shaft three is fixedly connected to the rotating block.
6. The fabric thickness gauge for baby wipes based on an intelligent sensor according to claim 5, characterized in that: The number of the hydraulic blocks four is two, the number of the fixed blocks five is two, the number of the hoses three is two, the number of the hydraulic blocks three is two, the number of the push blocks four is two, the number of the rotating blocks is two, the number of the rotating shafts three is two, and the number of the L-shaped guard plates is two.
7. The fabric thickness meter for baby wipes based on an intelligent sensor according to claim 5, characterized in that: The length of the L-shaped guard plate is greater than the length of the thickness gauge.
8. The fabric thickness gauge for baby wipes based on an intelligent sensor according to claim 5, characterized in that: The lifting assembly includes a hose four, a hydraulic block six, a push block five, and a mounting groove. The side of the hydraulic block four is fixedly connected to one end of the hose four, and the other end of the hose four is fixedly connected to the side of the hydraulic block six. The interior of the thickness gauge is movably connected to the fabric test bench through a mounting groove opened on its surface. The bottom of the hydraulic block six is fixedly connected to the top of the mounting groove. The top of the hydraulic block six is movably connected to the push block five, and the top of the push block five is fixedly connected to the fabric test bench.
9. The fabric thickness meter for baby wipes based on an intelligent sensor according to claim 8, characterized in that: There are two hoses four, two hydraulic blocks six, and each hydraulic block six is symmetrically distributed about the center line of the thickness gauge. There are two push blocks five.
10. The fabric thickness meter for baby wipes based on an intelligent sensor according to claim 8, characterized in that: The size of the mounting groove is consistent with the size of the fabric testing table.
Citation Information
Patent Citations
Cloth thickness detection device
CN220853406U
Cited By
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