An intelligent detection device for leather accessories production

By designing intelligent detection equipment to simulate arm friction and the wear of the suede layer or fleece layer in different environments, the problem of the existing technology being unable to detect the wear and pilling resistance of the suede layer or fleece layer of leather bracelets has been solved, achieving efficient detection and user experience assurance.

CN119198410BActive Publication Date: 2025-09-23YIWU OMAR JEWELRY CO LTD
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Patent Information

Application Number
CN202411057160.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-09-23
Estimated Expiration
2044-08-02

AI Technical Summary

Technical Problem

There is currently no effective equipment to test the wear resistance and pilling resistance of the suede layer or fleece layer of leather bracelets, which affects the wearing comfort of users.

Method used

An intelligent inspection device for leather accessories production was designed, which includes a friction ring, a camera, an airbag, an electric push rod and a heating device. It simulates arm friction and the wear of the suede layer or the fleece layer in different environments, and uses the camera to detect its wear resistance and anti-pilling ability.

Benefits of technology

Effectively test the wear resistance and anti-pilling capabilities of the suede or fleece layer of leather bracelets to ensure that the user's wearing experience is not affected and adapt to usage needs in different environments and conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of leather accessory inspection, and more particularly to an intelligent inspection device for leather accessory production, comprising a first mounting frame, a mounting rod, a friction ring, and a first handle. The first mounting frame is fixedly connected to the mounting rod; the friction ring is rotatably connected to the middle portion of the mounting rod, and the outer surface of the friction ring is configured to mimic skin material; and the first handle is rotatably connected to the middle portion of the mounting rod. A leather bracelet is first worn on the friction ring, and then the friction ring is driven to rotate back and forth by the first handle, causing the friction ring to rub back and forth within the leather bracelet, simulating a scene of an arm rubbing against the inner hair layer of the bracelet. A camera is then used to intelligently observe whether the inner leather layer of the leather bracelet is worn or pilling, thereby detecting the wear resistance and anti-pilling capabilities of the inner hair layer of the leather bracelet, ensuring that the user's wearing experience is not affected.
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Description

Technical Field

[0001] The present application relates to the technical field of leather accessory detection, and in particular to an intelligent detection device for leather accessory production. Background Art

[0002] A leather bracelet is a type of leather accessory, usually made of various leather materials. It not only has an aesthetically pleasing appearance, but is also loved for its unique texture and durability. To increase the wearing comfort of users, a velvet layer or a suede layer is usually provided on the inside of the leather bracelet to reduce the discomfort of direct skin contact. When users wear leather bracelets, their arms will rub against the velvet layer or the suede layer from time to time. Prolonged friction can cause the fibers on the surface of the velvet layer or the suede layer to be damaged and tangled, forming small balls or signs of wear, which will affect the wearing comfort of users. Therefore, it is necessary to test the wear resistance and anti-pilling capabilities of the velvet layer or the suede layer to ensure the quality of the leather bracelet. However, there is currently no equipment to test the wear resistance and anti-pilling capabilities of the velvet layer or the suede layer of leather bracelets. Summary of the Invention

[0003] In order to overcome the shortcoming that there is currently no equipment for detecting the anti-wear and anti-pilling capabilities of the suede layer or the fleece layer of a leather bracelet, the present invention provides an intelligent detection equipment for leather accessories production.

[0004] The technical implementation plan of the present invention is: an intelligent detection equipment for leather accessories production, including a first mounting frame and a mounting rod; the mounting rod is fixedly connected to the first mounting frame; it also includes a friction ring, a first handle, a rotating ring, a connecting rod, and a camera; the friction ring is rotatably connected to the middle of the mounting rod, and the outer surface of the friction ring is set to a skin-like material; the first handle is rotatably connected to the middle of the mounting rod; the first handle is fixed to the friction ring; two rotating rings are fixed to the middle of the mounting rod, and the rotating ring on the right is in contact with the friction ring; a number of connecting rods are fixedly connected in a ring at equal distances between the two rotating rings; a number of cameras are fixedly connected in a ring at equal distances in the middle of the mounting rod; all cameras are located on the inside of the several connecting rods.

[0005] Furthermore, it also includes a soft air tube; the friction ring is configured as an annular air bag; the soft air tube is passed through the mounting rod; and the soft air tube is communicated with the friction ring.

[0006] Furthermore, it also includes a water storage cylinder, a water injection pipe, a first electric push rod, a sliding ring and an elastic sheet; the left and right parts of the mounting rod are respectively connected to a water storage cylinder; the right side of the left water storage cylinder is in contact with the left rotating ring; each water storage cylinder is connected to a water injection pipe, and each water injection pipe is detachably connected to a cover; each water storage cylinder is respectively provided with a plurality of water outlet holes; each water outlet hole is respectively fixed with a plurality of elastic sheets; all elastic sheets in the same water outlet hole are in contact with each other and block the water outlet hole; a plurality of first electric push rods are respectively fixed to the left and right parts of the first mounting frame; the telescopic ends of all the first electric push rods on the same side are commonly fixed with a sliding ring; each sliding ring is respectively slidably connected to a water storage cylinder.

[0007] Furthermore, a plurality of electric heating belts are fixedly connected in an annular manner at equal intervals in the water storage cylinder; and a temperature sensor is provided in the water storage cylinder.

[0008] Furthermore, the connection between the friction ring and the first handle is arranged to be inclined.

[0009] Furthermore, the left portion of the right water storage cylinder is arranged to be inclined.

[0010] Furthermore, it also includes a second mounting bracket, a mounting plate and a ventilation pipe; two second mounting brackets are fixedly connected to the rear side of the first mounting bracket, and the two second mounting brackets are symmetrically arranged in an upper and lower manner; each second mounting bracket is respectively connected to a mounting plate; and each mounting plate is respectively fixed to a number of ventilation pipes.

[0011] Furthermore, a second electric push rod is included; each second mounting frame is fixedly connected to a second electric push rod; and the telescopic end of each second electric push rod is fixedly connected to a mounting plate.

[0012] Furthermore, it also includes a second handle, a rotating disk and a stirring plate; the right part of the first mounting frame is rotatably connected to the rotating disk; the rotating disk is fixedly connected to several first electric push rods on the right; the water storage cylinder on the right is rotatably connected to the mounting rod; the left side of the right water storage cylinder is fixedly connected to the second handle; the second handle is rotatably connected to the mounting rod; the lower part of the right water storage cylinder is fixedly connected to the stirring plate; the stirring plate is slidably connected to the sliding ring.

[0013] Furthermore, a plurality of grooves are formed on the outer surfaces of the first handle and the second handle.

[0014] The beneficial effects of the present invention are as follows: 1. First, the leather bracelet is worn on the friction ring, and then the friction ring is driven to rotate back and forth by the first grip, so that the friction ring rubs back and forth inside the leather bracelet to simulate the scene of the arm rubbing the hair layer inside the bracelet. Then, the camera is used to intelligently observe whether the inner leather layer of the leather bracelet is worn and pilling, so as to detect the wear resistance and anti-pilling ability of the inner hair layer of the leather bracelet, ensuring that the user's wearing experience is not affected.

[0015] 2. The present invention sprays the testing liquid on the inside of the leather bracelet to soak the velvet layer and the suede layer inside the leather bracelet, simulating the scene of the leather bracelet's velvet layer and the suede layer being soaked, and then tests the wear resistance and anti-pilling ability of the leather bracelet's inner velvet layer. The wear resistance and anti-pilling ability of the leather bracelet's inner velvet layer and the suede layer after being soaked are tested to ensure that the user's wearing experience is not affected.

[0016] 3. The present invention sprays a test liquid containing impurities on the inside of a leather bracelet, thereby soaking the velvet layer and the suede layer on the inside of the leather bracelet, causing impurities to adhere to the velvet layer and the suede layer on the inside of the leather bracelet. The wear resistance and anti-pilling capabilities of the velvet layer and the suede layer on the inside of the leather bracelet are then tested. The wear resistance and anti-pilling capabilities of the velvet layer and the suede layer on the inside of the leather bracelet when doped with impurities are tested to ensure that the user's wearing experience is not affected. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the first-perspective three-dimensional structure of the intelligent detection device for leather accessories production of the present invention;

[0018] Figure 2 This is a schematic diagram of the third perspective structure of the intelligent detection device for leather accessories production according to the present invention;

[0019] Figure 3 This is a schematic diagram of the three-dimensional structure of the friction ring, first handle, rotating ring and connecting rod assembly of the intelligent detection equipment for leather accessories production of the present invention;

[0020] Figure 4 This is a schematic diagram of the installation position of the soft air tube of the intelligent detection equipment for leather accessories production of the present invention;

[0021] Figure 5 This is a schematic diagram of the combined installation position of the second handle, rotating disk and stirring plate of the intelligent detection equipment for leather accessories production of the present invention;

[0022] Figure 6 This is a sectional view of the three-dimensional structure of the water storage cylinder, elastic sheet and electric heating belt of the intelligent detection equipment for leather accessories production of the present invention.

[0023] Explanation of the accompanying drawings: 1-first mounting bracket, 2-mounting rod, 3-water storage cylinder, 3a-water outlet, 4-water injection pipe, 5-first electric push rod, 6-sliding ring, 7-elastic sheet, 8-electric heating belt, 21-friction ring, 22-first handle, 23-rotating ring, 24-connecting rod, 25-camera, 31-second mounting bracket, 32-second electric push rod, 33-mounting plate, 34-ventilation pipe, 35-soft air pipe, 41-second handle, 42-rotating disk, 43-stirring plate. DETAILED DESCRIPTION

[0024] The following description is merely a preferred embodiment of the present invention and does not limit the scope of protection of the present invention.

[0025] Example 1

[0026] An intelligent testing device for leather accessories production, such as Figure 1-6 As shown, it includes a first mounting frame 1 and a mounting rod 2; the first mounting frame 1 is welded with the mounting rod 2;

[0027] It also includes a friction ring 21, a first handle 22, a rotating ring 23, a connecting rod 24, and a camera 25; the friction ring 21 is rotatably connected to the middle of the mounting rod 2, and the outer surface of the friction ring 21 is set to be a skin-like material; the first handle 22 is rotatably connected to the middle of the mounting rod 2; the first handle 22 is fixed to the friction ring 21; two rotating rings 23 are fixed to the middle of the mounting rod 2, and the rotating ring 23 on the right is in contact with the friction ring 21; six connecting rods 24 are welded in a circular manner at equal intervals between the two rotating rings 23; three cameras 25 are fixed in a circular manner at equal intervals in the middle of the mounting rod 2; all cameras 25 are located on the inner side of the six connecting rods 24.

[0028] Furthermore, it also includes a soft air tube 35; the friction ring 21 is configured as an annular airbag; the soft air tube 35 is passed through the mounting rod 2; and the soft air tube 35 is communicated with the friction ring 21.

[0029] Step 1: Manually wear the leather bracelet on the friction ring 21. The outer surface of the friction ring 21 is set to imitate skin material. Then, the left hand is used to fix the leather bracelet, and the right hand is used to hold the first handle 22 and rotate the first handle 22 back and forth. The friction ring 21 is driven to rotate back and forth by the first handle 22, so that the friction ring 21 is rubbed back and forth inside the leather bracelet to simulate the scene of the arm rubbing the fur layer inside the bracelet.

[0030] Step 2: After rubbing for a certain period of time, manually pull the leather bracelet to the left so that the leather bracelet is located on the connecting rod 24 and the camera 25 is located on the inner side of the leather bracelet. In this way, the camera 25 can intelligently observe whether the inner leather layer of the leather bracelet is worn and pilling, so as to detect the wear resistance and anti-pilling ability of the inner hair layer of the leather bracelet, ensuring that the user's wearing experience is not affected.

[0031] The soft air tube 35 is pre-connected to an external air pump. In the first step, the friction ring 21 is configured as a ring-shaped airbag to ensure sufficient friction between the friction ring 21 and the inside of the leather bracelet. After the leather bracelet is worn on the friction ring 21, the external air pump is activated to inject air into the friction ring 21 through the soft air tube 35, causing the friction ring 21 to expand and adhere tightly to the inside of the leather bracelet. The friction ring 21 is then driven to rotate back and forth by the first handle 22, causing the friction ring 21 to rub back and forth inside the leather bracelet. Since the outer surface of the friction ring 21 adheres tightly to the inside of the leather bracelet, the friction ring 21 can fully rub the inside of the leather bracelet during rotation, thereby effectively testing the leather bracelet's ability to prevent the inner hair layer from pilling.

[0032] Example 2

[0033] On the basis of Example 1, Figure 1-6 As shown, it also includes a water storage cylinder 3, a water injection pipe 4, a first electric push rod 5, a sliding ring 6 and an elastic sheet 7; the left and right parts of the mounting rod 2 are respectively connected to a water storage cylinder 3; the right side of the left water storage cylinder 3 is in contact with the left rotating ring 23; each water storage cylinder 3 is respectively connected to a water injection pipe 4, and each water injection pipe 4 is respectively detachably connected to a cover; each water storage cylinder 3 is respectively provided with a plurality of water outlet holes 3a; four elastic sheets 7 are respectively fixed in each water outlet hole 3a; all elastic sheets 7 in the same water outlet hole 3a contact each other and block the water outlet hole 3a; two first electric push rods 5 are respectively fixed to the left and right parts of the first mounting frame 1; the telescopic ends of all the first electric push rods 5 on the same side are commonly fixed to a sliding ring 6; each sliding ring 6 is respectively slidably connected to a water storage cylinder 3.

[0034] Furthermore, in order to heat the test liquid, four electric heating belts 8 are fixedly connected in an annular manner at equal intervals in the water storage cylinder 3; in order to monitor the temperature of the test liquid, a temperature sensor is provided in the water storage cylinder 3.

[0035] Furthermore, in order to facilitate pulling the leather bracelet to the left and putting it on the friction ring 21, the connection between the friction ring 21 and the first handle 22 is set to be inclined.

[0036] Furthermore, in order to facilitate pulling the leather bracelet to the right to be put on the water storage cylinder 3 on the right, the left part of the water storage cylinder 3 on the right is set to be inclined.

[0037] Furthermore, it also includes a second mounting bracket 31, a mounting plate 33 and a ventilation pipe 34; two second mounting brackets 31 are welded to the rear side of the first mounting bracket 1, and the two second mounting brackets 31 are symmetrically arranged in the upper and lower directions; each second mounting bracket 31 is respectively connected to a mounting plate 33; and each mounting plate 33 is respectively fixed to a number of ventilation pipes 34.

[0038] Furthermore, a second electric push rod 32 is further included; each second mounting frame 31 is fixedly connected to a second electric push rod 32; and the telescopic end of each second electric push rod 32 is fixedly connected to a mounting plate 33.

[0039] When the user wears the leather bracelet, the leather bracelet may be accidentally soaked when sweating during exercise, in the rain, washing hands, diving, or taking a hot spring bath. In this wet state, the wear resistance and anti-pilling ability of the suede layer and the suede layer of the leather bracelet will be different. In order to simulate the above situation, after using the friction ring 21 to test the wear resistance and anti-pilling ability of the inner hair layer of the leather bracelet, a new leather bracelet is manually put on the left water storage cylinder 3 so that the new leather bracelet covers the water outlet 3a, and the first electric push rod 5 is pre-connected to the external power supply, and the cover of the left water injection pipe 4 is manually opened to fill the water storage cylinder 3 with the test liquid through the water injection pipe 4, and then the cover of the water injection pipe 4 is put back, and then the first electric push rod 5 is controlled to drive the sliding ring 6 to slide to the right in the water storage cylinder 3, and the sliding ring 6 squeezes the test liquid in the water storage cylinder 3 so that the test liquid The elastic sheet 7 is squeezed and deformed after being squeezed, so that gaps appear between the four elastic sheets 7 in the same water outlet 3a, and then the detection liquid can flow out from the gaps and spray on the inside of the leather bracelet, thereby soaking the velvet layer and the suede layer on the inside of the leather bracelet, simulating the scene of the velvet layer and the suede layer of the leather bracelet being soaked. Soaking the velvet layer and the suede layer from the inside to the outside can avoid the outside of the leather bracelet from being completely soaked and slippery, which affects the worker's grip on the leather bracelet. A collection box is placed under the water storage cylinder 3 in advance to collect the flowing detection liquid; then, the leather bracelet is manually pulled to the right so that the leather bracelet is put on the friction ring 21 again, and the actions of the first and second steps are repeated to test the wear resistance and anti-pilling ability of the velvet layer and the suede layer on the inside of the leather bracelet after being soaked, to ensure that the user's wearing experience is not affected.

[0040] When the leather bracelet is soaked in water of different temperatures, the effects on the velvet layer and the suede layer of the leather bracelet are also different. For example, when the user is taking a hot spring bath, the higher temperature hot spring water will change the properties of the velvet layer and the suede layer of the leather bracelet. In this state, the wear resistance and anti-pilling ability of the velvet layer and the suede layer of the leather bracelet will be affected; in order to simulate the above situation, the electric heating belt 8 can be connected to an external power supply, and the detection liquid is heated by the electric heating belt 8, so that the detection liquid is heated and the temperature of the detection liquid is intelligently monitored by the temperature sensor in the water storage cylinder 3. When the detection liquid reaches the specified temperature, the temperature sensor controls the electric heating belt 8 to stop the heating operation, and then the leather bracelet is tested. A new leather bracelet is used for each test for comparative observation, and then the wear resistance and anti-pilling ability of the inner velvet layer and the suede layer of the leather bracelet after being soaked in water of different temperatures are detected.

[0041] When a user wears a leather bracelet for diving, tiny impurities in the water, such as sand, microorganisms or seawater salt, will penetrate into the inner velvet layer or suede layer of the bracelet. When the user's arm moves or rubs against the bracelet, these hard impurities are like tiny abrasive particles, causing wear on the internal structure of the bracelet. In order to simulate the above situation, the detection liquid with impurities is filled into the right water storage cylinder 3 through the right water filling pipe 4, and then the cover of the water filling pipe 4 is put back. After using the friction ring 21 to test the wear resistance and anti-pilling ability of the inner hair layer of the leather bracelet, the leather bracelet is manually pulled to the left and put on the right water storage cylinder 3, and then the first electric push rod 5 is controlled to drive the sliding ring 6 to slide to the right in the water storage cylinder 3. The sliding ring 6 squeezes the impurities in the water storage cylinder 3. The detection liquid with impurities is squeezed on the elastic sheet 7, and the elastic sheet 7 is deformed after being squeezed, so that gaps appear between the four elastic sheets 7 in the same water outlet 3a, and then the detection liquid with impurities can flow out from the gaps and spray on the inside of the leather bracelet, thereby soaking the velvet layer and the suede layer on the inside of the leather bracelet, so that impurities are attached to the velvet layer and the suede layer on the inside of the leather bracelet. A collection box is placed under the water storage cylinder 3 in advance to collect the flowing detection liquid; then, the leather bracelet is manually pulled to the left so that the leather bracelet is put on the friction ring 21 again, and the first and second steps are repeated to test the wear resistance and anti-pilling ability of the velvet layer and the suede layer on the inside of the leather bracelet when doped with impurities, to ensure that the user's wearing experience is not affected.

[0042] After the inspection, when the leather bracelet is removed from the friction ring 21, impurities that have fallen from the velvet layer and the fleece layer inside the leather bracelet will remain on the friction ring 21, which will affect the subsequent inspection of the leather bracelet; therefore, the vent pipe 34 is pre-connected to an external air pump, and the external air pump is controlled to spray air onto the friction ring 21 through the vent pipe 34 to remove the impurities remaining on the friction ring 21; during this process, the external air pump can be controlled to start and air can be injected into the friction ring 21 through the soft air pipe 35, so that the friction ring 21 further expands, and the surface of the friction ring 21 becomes loose from the impurities, making it easier to blow them away.

[0043] In addition, the mounting plate 33 can also be used to test the elasticity of the leather bracelet. A leather bracelet with good elasticity can better adapt to the shape and movement of the wrist during wearing, reduce damage to the bracelet caused by wrist movement, and improve wearing comfort. If the elasticity is insufficient, the bracelet may be too tight or too loose, affecting the wearing experience. During the test, the leather bracelet is manually worn on the friction ring 21, and then the external air pump is controlled to extract the air in the friction ring 21 so that the friction ring 21 can be flattened. Then, the second electric push rod 32 is controlled to drive the mounting plate 33 and the vent tube 34 to move toward the leather bracelet, so that the two mounting plates 33 contact the leather bracelet, apply pressure to the leather bracelet, and then flatten the leather bracelet. Then, the second electric push rod 32 is controlled to drive the mounting plate 33 and the vent tube 34 to move and reset. Then, the external camera 25 is used to observe whether the leather bracelet can recover from the deformation, and the speed of deformation recovery is recorded, thereby testing the elasticity of the leather bracelet.

[0044] Example 3

[0045] On the basis of Example 2, Figure 1-5 As shown, it also includes a second handle 41, a rotating disk 42 and a stirring plate 43; the right part of the first mounting frame 1 is rotatably connected to the rotating disk 42; the rotating disk 42 is fixedly connected to the two first electric push rods 5 on the right; the water storage cylinder 3 on the right is rotatably connected to the mounting rod 2; the left side of the water storage cylinder 3 on the right is fixedly connected to the second handle 41; the second handle 41 is rotatably connected to the mounting rod 2; the lower part of the water storage cylinder 3 on the right is fixedly connected to the stirring plate 43; the stirring plate 43 is slidably connected to the sliding ring 6.

[0046] Furthermore, in order to facilitate manual gripping, the outer surfaces of the first handle 22 and the second handle 41 are both provided with a plurality of grooves.

[0047] After the detection liquid containing impurities is filled into the right water storage cylinder 3 through the right water filling pipe 4, the impurities will sink to the bottom and gather at the bottom of the right water storage cylinder 3, resulting in that when the detection liquid containing impurities is subsequently sprayed on the fluff layer or suede layer on the inner side of the leather bracelet, a large amount of impurities are attached to the fluff layer or suede layer at the bottom of the leather bracelet, while only a few impurities are attached to the rest of the parts, affecting the evaluation of the wear resistance and anti-pilling ability of the fluff layer and suede layer on the inner side of the leather bracelet when doped with impurities; therefore, before soaking the fluff layer and suede layer on the inner side of the leather bracelet, the water storage cylinder 3 and its connected parts are manually driven to rotate back and forth through the second handle 41, so that the stirring plate 43 moves upward with the impurities that have sunk to the bottom of the right water storage cylinder 3, so that the impurities are repeatedly mixed in the detection liquid, so that the fluff layer or suede layer on the inner side of the leather bracelet is attached to impurities everywhere, ensuring that the detection results fully reflect the true performance in daily use.

[0048] Although the present invention has been described in detail with reference to the above embodiments, it will be apparent to those skilled in the art from this disclosure that various changes or modifications may be made to the present invention without departing from the principles and spirit of the invention as defined in the claims. Therefore, the detailed description of the disclosed embodiments is intended to be illustrative only and not to limit the present invention, which is to be defined by the claims.

Claims

1. An intelligent detection device for leather accessories production, comprising a first mounting frame (1) and a mounting rod (2); the first mounting frame (1) is fixedly connected to the mounting rod (2); and the characteristics are: It also includes a friction ring (21), a first grip (22), a rotating ring (23), a connecting rod (24), and a camera (25); the middle part of the mounting rod (2) is rotatably connected to the friction ring (21), and the outer surface of the friction ring (21) is set to be a skin-like material; the middle part of the mounting rod (2) is rotatably connected to the first grip (22); the first grip (22) and the friction ring (21) are fixedly connected; two rotating rings (23) are fixedly connected to the middle part of the mounting rod (2), and the right rotating ring (23) is in contact with the friction ring (21); a plurality of connecting rods (24) are fixedly connected in an annular manner at equal distances between the two rotating rings (23); a plurality of cameras (25) are fixedly connected in an annular manner at equal distances to the middle part of the mounting rod (2); all the cameras (25) are located inside the plurality of connecting rods (24); It also includes a soft air tube (35); the friction ring (21) is configured as an annular air bag; the soft air tube (35) is passed through the mounting rod (2); the soft air tube (35) is communicated with the friction ring (21); It also includes a water storage cylinder (3), a water injection pipe (4), a first electric push rod (5), a sliding ring (6) and an elastic sheet (7); the left and right parts of the mounting rod (2) are respectively connected to a water storage cylinder (3); the right side of the left water storage cylinder (3) contacts the left rotating ring (23); each water storage cylinder (3) is respectively connected to a water injection pipe (4), and each water injection pipe (4) is respectively detachably connected to a cover; each water storage cylinder (3) is respectively opened with a plurality of water outlet holes (3a); each water outlet hole (3a) is respectively fixed with a plurality of elastic sheets (7); all elastic sheets (7) in the same water outlet hole (3a) contact each other and block the water outlet hole (3a); the left and right parts of the first mounting frame (1) are respectively fixed with a plurality of first electric push rods (5); the telescopic ends of all the first electric push rods (5) on the same side are commonly fixed with a sliding ring (6); each sliding ring (6) is respectively slidably connected to a water storage cylinder (3); The invention also includes a second handle (41), a rotating disk (42) and a stirring plate (43); the right part of the first mounting frame (1) is rotatably connected to the rotating disk (42); the rotating disk (42) is fixedly connected to a plurality of first electric push rods (5) on the right; the water storage cylinder (3) on the right is rotatably connected to the mounting rod (2); the left side of the water storage cylinder (3) on the right is fixedly connected to the second handle (41); the second handle (41) is rotatably connected to the mounting rod (2); the lower part of the water storage cylinder (3) on the right is fixedly connected to the stirring plate (43); the stirring plate (43) is slidably connected to the sliding ring (6).

2. The intelligent detection device for leather accessories production according to claim 1, characterized in that: A plurality of electric heating belts (8) are fixedly connected in an annular manner at equal intervals inside the water storage cylinder (3); and a temperature sensor is provided inside the water storage cylinder (3).

3. The intelligent detection device for leather accessories production according to claim 2, characterized in that: The connection between the friction ring (21) and the first handle (22) is arranged in an inclined shape.

4. The intelligent detection device for leather accessories production according to claim 2, characterized in that: The left portion of the water storage cylinder (3) on the right is arranged in an inclined shape.

5. The intelligent detection device for leather accessories production according to claim 2, characterized in that: It also includes a second mounting frame (31), a mounting plate (33) and a ventilation pipe (34); two second mounting frames (31) are fixedly connected to the rear side of the first mounting frame (1), and the two second mounting frames (31) are symmetrically arranged in an upper and lower manner; each second mounting frame (31) is respectively connected to a mounting plate (33); and each mounting plate (33) is respectively fixed to a plurality of ventilation pipes (34).

6. The intelligent detection device for leather accessories production according to claim 5, characterized in that: It also includes a second electric push rod (32); each second mounting frame (31) is fixedly connected to a second electric push rod (32); and the telescopic end of each second electric push rod (32) is fixedly connected to a mounting plate (33).

7. The intelligent detection device for leather accessories production according to claim 1, characterized in that: The outer surfaces of the first handle (22) and the second handle (41) are both provided with a plurality of grooves.

Citation Information

Patent Citations

  • Wear resistance testing device

    CN210465184U

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    CN217765917U