Detection equipment for sealing gasket processing
By designing the first cylinder and sliding sealing sleeve structure, and combining it with air pressure sensors and pressure sensors, the shortcomings of the gasket detection device in sealing performance and quantity detection are solved, and high-precision gasket detection and screening are achieved.
Patent Information
- Application Number
- CN202520579467.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-31
AI Technical Summary
Existing gasket testing devices are prone to causing gaskets to detach from the bottle cap during sealing performance testing, and cannot accurately detect the number of gaskets inside the bottle cap, affecting subsequent production and processing.
The system employs a first cylindrical and sliding sealing sleeve structure, uses a pressure sensor to detect the sealing performance, and utilizes multiple pressure sensors to determine the number of gaskets. It also combines a material distribution plate and a brush structure for screening and cleaning.
It improves the accuracy and convenience of sealing performance testing, accurately counts the number of gaskets inside the bottle cap, facilitates subsequent processing, and prevents foreign matter from affecting the test.
Smart Images

Figure CN223910440U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to gasket detection technical field especially relates to a detection equipment for sealing gasket processing. BACKGROUND
[0002] Sealing gasket is generally used for the sealing treatment to some bottle mouth needing sealing, and the sealing gasket is thin, so the number of sealing gaskets in each bottle cap needs to be detected in the production process to avoid overlapping of multiple gaskets and affect the sealing of the bottle mouth, and the sealing performance of the sealing gasket also needs to be detected to a certain extent.
[0003] The existing gasket detection device still has the following problems when detecting the sealing gasket:
[0004] Firstly, when detecting the sealing performance of the gasket, the existing detection device usually uses external gas for sealing performance detection, and the gasket is thin, which is easy to separate from the bottle cap under the impact of high-pressure gas, thereby affecting the subsequent production and processing.
[0005] Secondly, when detecting the number of sealing gaskets in the bottle cap, the existing detection device can only detect whether the gasket is missing or excessive, and cannot detect the number of gaskets in the bottle cap, thereby affecting the subsequent removal of the excessive gaskets. SUMMARY
[0006] The utility model discloses in order to overcome the prior art's insufficient, provides a detection equipment for sealing gasket processing, through the first cylinder and the structure's setting, when the device detects the sealing gasket, the detection data change of the pressure sensor to the first cylinder and the sliding seal sleeve inside pressure, judges the sealing performance of detection gasket, through the setting of multiple pressure sensors and the structure, through the pressure sensor received the pressure of different size of the first cylinder, to know the number of gaskets in the bottle cap.
[0007] In order to realize the above object, the utility model provides the following technical scheme: a detection equipment for sealing gasket processing, including workbench, the upper end surface rotation of workbench is rotationally arranged with rotating disc, the upper end surface of rotating disc is annularly arranged with a plurality of placing grooves, the inside of each placing groove is slidably arranged with placing table, the upper of each placing groove is slidably arranged with moving plate on the lower end surface of moving plate, each first cylinder is slidably arranged with sliding seal sleeve outside each first cylinder, sliding seal structure is arranged between every two adjacent first cylinder and sliding seal sleeve, the inner top surface of each first cylinder is provided with air pressure sensor, the outside of each first cylinder is uniformly provided with a plurality of pressure sensors on the upper end surface of sliding seal sleeve, the lower end port of sliding seal sleeve is provided with clamping ring groove.
[0008] Optionally, the sliding sealing structure comprises a sealing sliding groove provided with an inner side wall of the sliding sealing sleeve, and an inner side of the sealing sliding groove is slidably provided with a sealing sliding ring, and an upper end surface of the sealing sliding ring is fixedly connected with a lower end surface of the first cylinder.
[0009] Optionally, a buffer ring is arranged below the sealing sliding ring and on an inner bottom surface of the sealing sliding groove.
[0010] Optionally, an inner bottom surface of each of the placing grooves is provided with a through hole, each of the through holes is slidably provided with a sliding rod, a top of each of the sliding rods is fixedly connected with a lower end surface of the placing table, a lower end surface of each of the sliding rods is provided with a limiting plate, and a second spring is arranged between the rotating disc and the limiting plate and on an outer side of each of the sliding rods.
[0011] Optionally, rotating rods are rotatably arranged on an upper end surface of the workbench and on both sides of the placing grooves, and a distributing plate is arranged above the placing grooves and on a top of each of the rotating rods.
[0012] Optionally, a lower end surface of each of the distributing plates is provided with a plurality of bristles.
[0013] Optionally, an inner side wall of each of the clamping ring grooves is provided with an anti-skid layer.
[0014] Optionally, a plurality of first springs are arranged between each of two adjacent first cylinders and sliding sealing sleeves.
[0015] Compared with the prior art, the beneficial effects of the scheme are as follows:
[0016] The first cylinder, the sliding sealing sleeve and the sealing sliding ring are arranged, so that when the sealing gasket is detected, after the sliding sealing sleeve contacts the upper end surface of the gasket, the first cylinder is continuously moved to increase the pressure between the first cylinder and the sliding sealing sleeve, the detection data of the internal pressure of the two is detected by the air pressure sensor, the sealing performance of the gasket is judged, and the convenience of the detection device is improved.
[0017] The plurality of pressure sensors and the first springs are arranged, so that when the gasket is detected, the pressure sensor receives different pressures of the first cylinder, the number of gaskets in the bottle cap is known, and the subsequent processing of the excess gaskets is facilitated.
[0018] The distributing plate and the bristles are arranged, the qualified and unqualified detection products are screened and stored by rotating the distributing plate, the subsequent processing of the gaskets is facilitated, the upper end surface of the placing table can be cleaned at the same time of screening, dust and sundries falling from the upper end surface of the placing table are effectively prevented from affecting the subsequent detection work. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is a perspective view of the present utility model;
[0020] Figure 2 is a side view of the present utility model;
[0021] Figure 3 is Figure 2 is a sectional view of the present utility model at A-A;
[0022] Figure 4 is Figure 3 is an enlarged view of part B
[0023] Figure 5 is Figure 3 is an enlarged view of part C;
[0024] Figure 6 is Figure 3 is an enlarged view of part D.
[0025] In the figure: workbench 10, rotating disc 11, placing groove 12, placing table 13, moving plate 14, first cylinder 15, sliding sealing sleeve 16, sealing sliding ring 17, buffer ring 18, air pressure sensor 19, first spring 20, pressure sensor 21, anti-skid protrusion 22, through hole 23, sliding rod 24, limiting plate 25, second spring 26, inclined surface 27, clamping ring groove 28, anti-skid layer 29, rotating rod 30, distribution plate 31, brush 32, first motor 33, storage basket 34, second motor 35, push cylinder 36, sealing sliding groove 37, support column 38. DETAILED DESCRIPTION
[0026] In order to make the personnel in the technical field better understand the present utility model scheme, the technical scheme in the present utility model embodiment will be described clearly and completely in combination with the drawings in the present utility model embodiment below. EMBODIMENT
[0027] As Figure 1 , Figure 2 , Figure 3 and Figure 6As shown, a sealing gasket processing detection device, including a workbench 10, the upper end face of the workbench 10 is rotatably provided with a rotating disc 11, the workbench 10 and the rotating disc 11 are fixedly provided with a support column 38 on the upper end face of the workbench 10, the support column 38 is rotatably connected with the rotating disc 11, the lower end face of the workbench 10 is provided with a second motor 35, the output end of the second motor 35 passes through the workbench 10 and the support column 38 and is fixedly connected with the lower end face of the rotating disc 11, the second motor 35 is a common motor, which is prior art, the output end of the second motor 35 drives the rotating disc 11 to rotate, which is convenient for subsequent cooperation with the distribution plate 31 to classify the detected gaskets and bottle caps, the upper end face of the rotating disc 11 is annularly provided with a plurality of placing grooves 12, the inside of each placing groove 12 is slidably provided with a placing table 13, the placing groove 12 and the placing table 13 are provided, so that the gasket is moved to the inside of the placing groove 12 under the pressing action of the sliding sealing sleeve 16 and other components during detection, so that deviation does not occur during detection, the upper end face of each placing table 13 is provided with a plurality of anti-skid protrusions 22, the plurality of anti-skid protrusions 22 effectively increase the friction force of the upper end face of the placing table 13, so that the bottle caps placed above the placing table 13 are more stable;
[0028] The upper end face of the workbench 10 is provided with a support frame, the inside of the support frame is slidably provided with a moving plate 14 above the rotating disc 11, the upper end face of the support frame is provided with a push cylinder 36, the output end of the push cylinder 36 passes through the support frame and is fixedly connected with the upper end face of the moving plate 14, the push cylinder 36 is a common push cylinder, which is prior art, the output end of the push cylinder 36 drives the moving plate 14 and other components to detect a plurality of gaskets, the lower end face of the moving plate 14 is provided with a first cylinder 15 above each placing groove 12, the outside of each first cylinder 15 is slidably provided with a sliding sealing sleeve 16, the outer circumferential surface of the lower end port of each sliding sealing sleeve 16 is provided with an inclined surface 27, the inclined surface 27 can center the slightly inclined bottle cap when the lower end port of the sliding sealing sleeve 16 extends into the inside of the bottle cap;
[0029] A sliding sealing structure is arranged between every two adjacent first cylinders 15 and sliding sealing sleeves 16, the inner top surface of each first cylinder 15 is provided with an air pressure sensor 19, the air pressure sensor 19 is a common air pressure sensor and is prior art, the air pressure sensor 19 detects the sealing performance of the gasket by monitoring the air pressure change in the first cylinder 15 and the sliding sealing sleeve 16, a plurality of pressure sensors 21 are uniformly arranged on the outer portion of each first cylinder 15 and the upper end surface of the sliding sealing sleeve 16, the pressure sensor 21 is a high-sensitivity pressure sensor and is prior art, the number of gaskets in the bottle cap is detected by the external pressure received by the pressure sensor 21, the lower end of the sliding sealing sleeve 16 is provided with a clamping ring groove 28, the clamping ring groove 28 is arranged, so that when the sealing performance of the gasket is detected, the bottle opening to be sealed is cut and installed in the clamping ring groove 28, so that when the sealing performance of the gasket is detected, the detection data is more consistent with the actual working environment of the gasket, thereby effectively improving the detection precision.
[0030] Further, as shown in Figure 4 The sliding sealing structure includes a sealing sliding groove 37 arranged on the inner side wall of the sliding sealing sleeve 16, the sealing sliding groove 37 is slidably arranged with a sealing sliding ring 17, the upper end surface of the sealing sliding ring 17 is fixedly connected with the lower end surface of the first cylinder 15, the sealing sliding ring 17 is made of sealing material, the cooperation of the sealing sliding ring 17 and the sealing sliding groove 37 can limit the sliding between the first cylinder 15 and the sliding sealing sleeve 16, and also improve the sealing performance when the first cylinder 15 and the sliding sealing sleeve 16 slide, so that the subsequent sealing performance detection of the gasket is more accurate.
[0031] Further, as shown in Figure 4 The lower portion of the sealing sliding ring 17 is provided with a buffer ring 18 on the inner bottom surface of the sealing sliding groove 37, the buffer ring 18 is made of elastic material, the buffer ring 18 can prevent the collision between the sealing sliding ring 17 and the inner bottom surface of the sealing sliding groove 37, reduce the noise during the operation of the device, and also improve the service life of the device.
[0032] Further, as shown in Figure 5 The inner bottom surface of each placement groove 12 is provided with a through hole 23, each through hole 23 is slidably arranged with a sliding rod 24, the top of each sliding rod 24 is fixedly connected with the lower end surface of the placement table 13, the lower end surface of each sliding rod 24 is provided with a limiting plate 25, and a second spring 26 is arranged between the rotating disc 11 and the limiting plate 25 on the outer portion of each sliding rod 24, by the elastic tension of the second spring 26 itself, one end of the second spring 26 pulls the limiting plate 25 to move upward after the gasket detection is completed, and then the placement table 13 is driven by the sliding rod 24 to move the gasket and the bottle cap out of the inside of the placement groove 12, thereby facilitating the discharging of the bottle cap and the gasket.
[0033] Further, as shown in Figure 1 the upper end surface of the workbench 10 are rotatably provided with rotating rods 30, the top of each rotating rod 30 is provided with a distribution plate 31 above the placement groove 12, one end of the distribution plate 31 is arc-shaped, which can fold the inside of the storage basket 34 when the bottle cap and gasket are discharged, preventing the bottle cap and gasket from falling, the lower end of each rotating rod 30 is provided with a first motor 33 on the lower end surface of the workbench 10, the output end of the first motor 33 is fixedly connected with the lower end surface of the rotating rod 30 through the workbench 10, and the output end of each first motor 33 drives the rotating rod 30 and the distribution plate 31 adjacent to it to rotate, so as to respectively store the qualified and unqualified products.
[0034] Further, as shown in Figure 6 the inner side wall of each clamping ring groove 28 is provided with an anti-skid layer 29, which increases the friction between the sealed bottle mouth and the clamping ring groove 28 for detection, effectively preventing the sealed bottle mouth from falling off.
[0035] Further, as shown in Figure 4 a plurality of first springs 20 are arranged between every two adjacent first cylinders 15 and sliding sealing sleeves 16, which can effectively prevent the sliding sealing sleeve 16 from being unable to reset when the friction between the sealing sliding ring 17 and the sealing sliding groove 37 is too large after the gasket is detected.
[0036] First, place the gasket to be detected on the upper end surface of each placement table 13, then start the push cylinder 36, the output end of the push cylinder 36 drives the moving plate 14 and other components to move vertically downward, then the lower end of each sliding sealing sleeve 16 contacts the gasket placed on the inner bottom surface of the bottle cap, continue to move the moving plate 14, at this time the lower end of the first cylinder 15 drives the sealing sliding ring 17 to slide downward, the combined space of the first cylinder 15 and the sliding sealing sleeve 16 is reduced, if the sealing performance of the gasket meets the requirements, the pressure detected by the pressure sensor 19 in each first cylinder 15 will continue to increase, if the pressure does not change, it means that the sealing performance of the gasket is poor, and if the number of gaskets inside the bottle cap is too large, the lower end of the sliding sealing sleeve 16 will contact the gasket earlier, then the downward pressure distance of the plurality of pressure sensors 21 by the first cylinder 15 will increase, at this time the pressure received by the sliding sealing sleeve 16 will also be different, if the number of gaskets inside the bottle cap is more, it means that the more gaskets, and the pressure change of the plurality of pressure sensors 21 is used to calculate the number of gaskets inside the bottle cap.
[0037] Then, after the test is completed, the push cylinder 36 is started again. The push cylinder 36 drives the moving plate 14 and other components to move upward. During this process, the placement platform 13 moves vertically upward under the elastic tension of the second spring 26 until the bottle cap is pushed out of the placement groove 12.
[0038] Finally, the first motor 33 is started to sort the detected bottle caps. Example
[0039] Based on Example 1, further examples are made, such as... Figure 1 As shown, each sorting plate 31 has multiple bristles 32 on its lower end face. The bristles 32 can clean the upper end face of the placement platform 13 when sorting and collecting bottle caps, preventing other debris from falling onto the upper end face of the placement platform 13 and affecting the subsequent detection accuracy.
[0040] The specification and claims use certain terms to refer to specific components. Those skilled in the art will understand that hardware manufacturers may use different names to refer to the same component. This specification and claims do not distinguish components based on differences in name, but rather on differences in function. The term "comprising" throughout the specification and claims is an open-ended term and should be interpreted as "comprising but not limited to." "Approximately" means that within an acceptable margin of error, those skilled in the art can solve the technical problem and substantially achieve the technical effect within a certain margin of error.
[0041] It should be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a product or system comprising a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a product or system. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the product or system that includes said element.
[0042] The foregoing description illustrates and describes several preferred embodiments of this application. However, as previously stated, it should be understood that this application is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the application concept described herein through the foregoing teachings or techniques or knowledge in related fields. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of this application should be protected within the scope of the appended claims.
Claims
1. A detection device for gasket processing, comprising a worktable (10), a rotary disc (11) is rotatably arranged on the upper end surface of the worktable (10), characterized in that, The upper end face of the rotating disc (11) is annularly provided with a plurality of placing grooves (12), the inside of each placing groove (12) is slidably provided with a placing table (13), the upper side of the rotating disc (11) is slidably provided with a moving plate (14), the lower end face of the moving plate (14) is provided with a first cylinder (15) above each placing groove (12), the outside of each first cylinder (15) is slidably provided with a sliding sealing sleeve (16), a sliding sealing structure is arranged between each two adjacent first cylinders (15) and sliding sealing sleeves (16), the inner top face of each first cylinder (15) is provided with an air pressure sensor (19), the outside of each first cylinder (15) is uniformly provided with a plurality of pressure sensors (21) on the upper end face of the sliding sealing sleeve (16), and the lower end of the sliding sealing sleeve (16) is provided with a clamping ring groove (28).
2. The gasket processing inspection apparatus according to claim 1, wherein The sliding sealing structure comprises a sealing sliding groove (37) provided with an inner side wall of the sliding sealing sleeve (16), and the inside of the sealing sliding groove (37) is slidably provided with a sealing sliding ring (17), and the upper end face of the sealing sliding ring (17) is fixedly connected with the lower end face of the first cylinder (15).
3. The gasket processing inspection apparatus according to claim 2, wherein The lower side of the sealing sliding ring (17) is provided with a buffer ring (18) on the inner bottom face of the sealing sliding groove (37).
4. The gasket processing inspection apparatus according to claim 1, wherein The inner bottom face of each placing groove (12) is provided with a through hole (23), the inside of each through hole (23) is slidably provided with a sliding rod (24), the top of each sliding rod (24) is fixedly connected with the lower end face of the placing table (13), the lower end face of each sliding rod (24) is provided with a limiting plate (25), and the outside of each sliding rod (24) is provided with a second spring (26) between the rotating disc (11) and the limiting plate (25).
5. The gasket processing inspection apparatus according to claim 1, wherein The upper end face of the workbench (10) is rotatably provided with a rotating rod (30) on both sides of the placing groove (12), and the top of each rotating rod (30) is provided with a distributing plate (31) above the placing groove (12).
6. The gasket processing inspection apparatus according to claim 5, wherein The lower end face of each distributing plate (31) is provided with a plurality of bristles (32).
7. The gasket processing inspection apparatus according to claim 1, wherein The inner side wall of each clamping ring groove (28) is provided with an anti-skid layer (29).
8. The gasket processing inspection apparatus according to claim 1, wherein A plurality of first springs (20) are arranged between each two adjacent first cylinders (15) and sliding sealing sleeves (16).