Integrated quality detection equipment for silica gel product
Through the integrated quality inspection equipment, combined with the design of pressurized detection cylinder and ultra-thin electrode sheet, synchronous detection of the airtightness and strength of silicone products is achieved, solving the problem of low step-by-step detection efficiency in the existing technology, and improving the detection efficiency and accuracy.
Patent Information
- Application Number
- CN202510613404.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-13
- Publication Date
- 2025-07-18
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing silicone product testing methods require step-by-step inspection of airtightness and tensile strength, resulting in large workloads and low efficiency for users, and the detection results cannot be feedback in time.
An integrated quality testing equipment is designed, combining a detection table, detection cylinder, pressurized tube, silicone sealing ring and fixture. By pressurized detection of the air pressure changes in the cylinder and the deformation of the ultra-thin pole sheet, synchronous detection of the air tightness and sample strength of the silicone sealing ring is achieved, and the detection results are promptly feedbacked using a two-color display lamp.
The synchronous inspection of airtightness and strength of silicone products is achieved, the detection efficiency and accuracy are improved, and it is suitable for sealing rings of different diameters, and provides immediate feedback on the detection result.
Smart Images

Figure CN120333707A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of detection equipment, and specifically relates to an integrated quality detection equipment for silicone products. Background Technique
[0002] Silica gel is a granular, glassy, porous form of silicon dioxide prepared synthetically from sodium silicate. Silica gel is harder than ordinary household gel-like gelatin and agar. Silicone products are usually used for airtight components and waterproof components. After production, such products need to be tested for various items, such as airtightness testing and tensile strength testing.
[0003] The existing silicone detection method is that after the user takes a small sample, a fixture is used to clamp the sample, and the sample is manually pressed down to complete the strength detection operation. For airtightness detection, the silicone sealing ring needs to be placed into the equipment for airtightness detection operation. Although the detection effect can be achieved, due to the two steps being carried out separately, the workload of the user is increased, and the manual detection method has low efficiency, and the detection results cannot be promptly reported to the operator. For this reason, we propose an integrated quality detection equipment for silicone products. Summary of the Invention
[0004] The present invention provides an integrated quality detection equipment for silicone products, which has the advantages of strong practicability, good detection effect, and high precision, and solves the problems proposed in the above background technique.
[0005] The present invention provides the following technical solution: An integrated quality detection equipment for silicone products, including a detection table, on the top of which a detection cylinder and a fixture are respectively fixedly assembled. A sample is arranged in the middle of the fixture. A pressure pipe is communicated inside the detection cylinder. A placement groove is opened on the front of the detection cylinder. A silicone sealing ring is placed on the inner wall of the placement groove. A circular groove is opened on the inner wall of the placement groove. A sliding groove is opened on the top of the detection table. A micro electric telescopic rod is fixedly assembled on the front of the detection table. The output shaft of the micro electric telescopic rod is fixedly assembled with a sliding seat. A sealing cover is fixedly assembled on the top of the sliding seat. A connecting pipe corresponds to the silicone sealing ring, and the outer wall of the connecting pipe is fixedly assembled with the outer wall of the sealing cover. A fixed table is fixedly assembled on the outer wall of the sealing cover. A motor is fixedly assembled on the top of the fixed table. A toothed column is fixedly assembled on the output shaft of the motor. A circular ring is meshed with the outer wall of the toothed column. A toothed groove is opened on the outer wall of the circular ring. A sleeve is communicated inside the detection cylinder. A lifting rod is slidably sleeved on the inner wall of the sleeve. The top end of the lifting rod is rotatably connected with a rotating rod. A pressing rod is fixedly assembled at the end of the rotating rod.
[0006] As a preferred technical solution of the present invention: a receiving groove is provided at the bottom end of the pressure rod, an extrusion ring is fixedly sleeved on the outer wall of the lifting rod, a pressure spring abuts against the top of the extrusion ring, a second contact groove is provided at the bottom end of the rotating rod, a connecting ring and a copper rod are respectively fixedly assembled on the outer wall of the sealing cover, an ultra-thin pole piece is provided on the outer wall of the connecting ring, a tension spring is sleeved on the inner wall of the detection cylinder, a piston abuts against the end of the tension spring, a first contact groove is provided at the end of the piston, a two-color display lamp is fixedly assembled at one end of the sealing cover away from the copper rod, an adjusting screw is provided on the inner wall of the connecting pipe, an adjusting plate is rotatably connected to the end of the adjusting screw, an adjusting groove is provided on the outer wall of the adjusting plate, a moving groove is provided on the outer wall of the adjusting plate, a reset spring is provided on the inner wall of the receiving groove, a limiting ring abuts against the end of the reset spring, a round rod is fixedly assembled on the outer wall of the limiting ring, a pressing plate is fixedly assembled at the end of the round rod, an electromagnet I is fixedly assembled on the inner wall of the adjusting groove, an electromagnet II is fixedly assembled on the outer wall of the pressing plate, and the electromagnet I and the electromagnet II attract each other with opposite polarities after the electromagnet I is energized.
[0007] As a preferred technical solution of the present invention: a positioning plate is further fixedly assembled on the top of the detection table, and the outer wall of the positioning plate is rotatably connected to the outer wall of the rotating rod. When the top of the extrusion ring abuts against the top of the inner wall of the sleeve, the inner wall of the receiving groove is closely attached to the outer wall of the sample.
[0008] As a preferred technical solution of the present invention: the shape of the second contact groove is adapted to the shape of the first contact groove, and the outer wall of the extrusion ring is slidably connected to the inner wall of the sleeve.
[0009] As a preferred technical solution of the present invention: the inner wall of the ring is rotatably connected to the outer wall of the sealing cover, and the inner wall of the ring is threadedly connected to the outer wall of the detection cylinder.
[0010] As a preferred technical solution of the present invention: the number of the clamps is two, and the two clamps are symmetrically distributed along the top of the detection table.
[0011] As a preferred technical solution of the present invention: the inner wall of the sliding groove is slidably connected to the outer wall of the sliding seat. After the inner wall of the ring is connected to the outer wall of the detection cylinder, the outer wall of the connecting pipe abuts against the outer wall of the silica gel sealing ring.
[0012] As a preferred technical solution of the present invention: the outer wall of the piston is slidably connected to the inner wall of the detection cylinder, and the position where the connecting pipe is connected to the silica gel sealing ring corresponds to the position of the ultra-thin pole piece.
[0013] As a preferred technical solution of the present invention: the ultra-thin pole piece is made of metallic copper, the number of the ultra-thin pole pieces is several, and the several ultra-thin pole pieces are evenly distributed along the outer wall of the connecting ring.
[0014] As a preferred technical solution of the present invention: there is a 1 cm spacing between both ends of the tooth groove and both ends of the ring, and the ultra-thin pole piece is electrically connected to the copper rod and the dual-color display lamp respectively.
[0015] The present invention has the following beneficial effects: 1. The integrated quality inspection device for silicone products, through the detection table, detection cylinder, pressure pipe, placement groove, silicone rubber seal ring, sealing cover, and ring structure, enables the user to move the piston by pressurizing the inside of the detection cylinder during the detection process, so that the internal space of the detection cylinder is reduced and the air is pressurized. When the silicone rubber seal ring is damaged or the airtightness is insufficient, the air flow formed by the air will blow the ultra-thin pole piece to deform and contact the copper rod, so that the dual-color display lamp lights up a red light, which is convenient for the user to observe the detection result. When the piston moves, the rotating rod can also use the pressing rod to press the sample, so as to synchronously complete the detection operation of the sample strength, thereby improving the operation efficiency of the user.
[0016] 2. The integrated quality inspection device for silicone products, through the piston, contact groove one, contact groove two, rotating rod, pressing rod, and pressure spring structure set, during the process of detecting the sample strength, the internal air pressure of the detection cylinder will increase due to the continuous movement of the piston, so that the device can respectively detect the maximum strength of the silicone rubber seal ring and the sample. The user can directly know the limit state that both can reach through the induction of the pressure by the pressure spring, which is convenient for the user to collect the detection results and data, improves the detection accuracy of the user for silicone products, and the device is also applicable to the detection operation of seals with different diameters. At the same time, pressure can be applied to the seal to detect its sealing performance under different pressure states, improving the detection range and detection effect of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a three-dimensional structure diagram of the present invention; Figure 2 is a side view structure diagram of the present invention; Figure 3 is of the present invention Figure 2 the enlarged structure diagram at A in Figure 4 is a side sectional structure diagram of the present invention; Figure 5 is a rotating rod structure diagram of the present invention; Figure 6 is of the present invention Figure 5 the enlarged structure diagram at B in Figure 7 is a connecting ring structure diagram of the present invention; Figure 8 is of the present inventionFigure 7 Schematic diagram of the enlarged structure at position C Figure 9 Schematic diagram of the structure of the piston and contact groove 1 of the present invention Figure 10 For the present invention Figure 2 Schematic diagram of the enlarged structure at position D Figure 11 Schematic diagram of the movable groove structure of the present invention
[0018] In the figure: 1, detection table; 2, detection cylinder; 3, pressure pipe; 4, placement groove; 5, silica gel sealing ring; 6, sealing cover; 7, ring; 8, tooth groove; 9, circular groove; 10, sliding groove; 11, micro electric telescopic rod; 12, fixture; 13, sample; 14, sleeve; 15, lifting rod; 16, rotating rod; 17, fixed table; 18, motor; 19, tooth column; 20, piston; 21, contact groove 1; 22, contact groove 2; 23, pressure spring; 24, sliding seat; 25, connecting pipe; 26, tension spring; 27, two-color display lamp; 28, pressing rod; 29, storage groove; 30, connecting ring; 31, ultra-thin pole piece; 32, copper rod; 33, extrusion ring; 34, adjusting plate; 35, adjusting groove; 36, pressing plate; 37, round rod; 38, electromagnet 1; 39, movable groove; 40, adjusting screw; 41, return spring. Specific embodiments
[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0020] Please refer to Figures 1-9, An integrated quality inspection device for silicone products, including an inspection table 1. At the top of the inspection table 1, an inspection cylinder 2 and a fixture 12 are fixedly assembled respectively. A sample 13 is arranged in the middle of the fixture 12. A pressure pipe 3 is connected to the inside of the inspection cylinder 2. A placement groove 4 is opened on the front of the inspection cylinder 2. A silicone rubber sealing ring 5 is placed on the inner wall of the placement groove 4. A circular groove 9 is opened on the inner wall of the placement groove 4. A sliding groove 10 is opened on the top of the inspection table 1. A micro electric telescopic rod 11 is fixedly assembled on the front of the inspection table 1. The output shaft of the micro electric telescopic rod 11 is fixedly assembled with a sliding seat 24. A sealing cover 6 is fixedly assembled on the top of the sliding seat 24. A connecting pipe 25 corresponds to the silicone rubber sealing ring 5, and the outer wall of the connecting pipe 25 is fixedly assembled with the outer wall of the sealing cover 6. A fixed table 17 is fixedly assembled on the outer wall of the sealing cover 6. A motor 18 is fixedly assembled on the top of the fixed table 17. The output shaft of the motor 18 is fixedly assembled with a tooth column 19. A circular ring 7 is engaged with the outer wall of the tooth column 19. Tooth grooves 8 are opened on the outer wall of the circular ring 7. A sleeve 14 is connected to the inside of the inspection cylinder 2. A lifting rod 15 is slidably sleeved on the inner wall of the sleeve 14. The top end of the lifting rod 15 is rotatably connected to a rotating rod 16. A pressing rod 28 is fixedly assembled at the end of the rotating rod 16.
[0021] In the above structure, through the structures of the inspection table 1, inspection cylinder 2, pressure pipe 3, placement groove 4, silicone rubber sealing ring 5, sealing cover 6, and circular ring 7, during the operation of the device, the user can place the silicone rubber sealing ring 5 into the placement groove 4 by moving the sealing cover 6, so that the sealing cover 6 resets and the circular ring 7 rotates to seal the space between the inspection table 1 and the sealing cover 6 to form a cavity. When the pressure pipe 3 pressurizes the inside of the inspection cylinder 2, the piston 20 will squeeze the air between the inspection cylinder 2, the sealing cover 6, and the circular ring 7 to increase the pressure. In this way, when the silicone rubber sealing ring 5 is damaged or cannot block the air, the air will leak from the contact point between the silicone rubber sealing ring 5 and the connecting pipe 25, causing the ultra-thin pole piece 31 to be blown and attached to the copper rod 32. The user can directly observe whether the dual-color display lamp 27 lights up red to know the quality and sealing effect of the silicone rubber sealing ring 5, which is convenient for the user to detect the silicone rubber sealing ring 5 and improves the user's operation efficiency.
[0022] In a preferred embodiment: a receiving groove 29 is provided at the bottom end of the pressure rod 28, an extrusion ring 33 is fixedly sleeved on the outer wall of the lifting rod 15, a pressure spring 23 abuts against the top of the extrusion ring 33, a second contact groove 22 is provided at the bottom end of the rotating rod 16, a connecting ring 30 and a copper rod 32 are respectively and fixedly assembled on the outer wall of the sealing cover 6, an ultra-thin pole piece 31 is provided on the outer wall of the connecting ring 30, a tension spring 26 is sleeved on the inner wall of the detection cylinder 2, a piston 20 abuts against the end of the tension spring 26, a first contact groove 21 is provided at the end of the piston 20, a two-color display lamp 27 is fixedly assembled at one end of the sealing cover 6 away from the copper rod 32, an adjusting screw 40 is provided on the inner wall of the connecting pipe 25, the end of the adjusting screw 40 is rotatably connected to an adjusting plate 34, an adjusting groove 35 is provided on the outer wall of the adjusting plate 34, a movable groove 39 is provided on the outer wall of the adjusting plate 34, a return spring 41 is provided on the inner wall of the movable groove 39, the end of the return spring 41 abuts against a limiting ring 30, a round rod 37 is fixedly assembled on the outer wall of the limiting ring 30, a pressing plate 36 is fixedly assembled at the end of the round rod 37, an electromagnet 38 is fixedly assembled on the inner wall of the adjusting groove 35, an electromagnet is fixedly assembled on the outer wall of the pressing plate 36, and when the electromagnet 38 is energized, it attracts the electromagnet with opposite polarity.
[0023] In the above structure, through the structures of the first contact groove 21, the second contact groove 22, the pressure spring 23, the piston 20, the lifting rod 15, and the rotating rod 16, during the process of pressurizing the inside of the detection cylinder 2 by the pressurizing pipe 3, the bottom end of the lifting rod 15 is pushed and moved upward by using the first contact groove 21 on the piston 20 and the movement of the piston 20, so that the rotating rod 16 and the pressure rod 28 both apply pressure to the sample 13, and then the strength of the sample 13 is detected synchronously, improving the practicability of the device. Moreover, the position of the adjusting plate 34 can be adjusted by rotating the adjusting screw 40, so that the distance between the four adjusting plates 34 changes, and the device can also be applicable to detecting operations of sealing rings of different sizes. During the detection process, the magnetic force between the electromagnet 38 and the electromagnet is adjusted by the magnitude of the energized current of the electromagnet 38 and the electromagnet, so as to achieve the effect of adjusting the suction force, enabling the pressing plate 36 to apply different pressures to the sealing ring, and realizing the effect of detecting the sealing performance of the sealing ring under different pressure conditions, thereby improving the detection function and detection range of the device for the sealing ring.
[0024] In a preferred embodiment: a positioning plate is further fixedly assembled on the top of the detection table 1, and the outer wall of the positioning plate is rotatably connected to the outer wall of the rotating rod 16. When the top of the extrusion ring 33 abuts against the top of the inner wall of the sleeve 14, the inner wall of the receiving groove 29 is closely attached to the outer wall of the sample 13.
[0025] In the above structure, through the arranged extrusion ring 33 structure, after the detection of a single silicone sealing ring 5 is completed, the user can take out the detected silicone sealing ring 5 by moving the sealing cover 6, and the air pressure inside the detection cylinder 2 becomes normal. The elastic force of the pressure spring 23 and the disappearance of the pressure are used to drive the extrusion ring 33 to drive the lifting rod 15 to reset downward, ensuring that the subsequent use of the device will not be affected.
[0026] In a preferred embodiment: The shape of the second contact groove 22 is adapted to the shape of the first contact groove 21, and the outer wall of the extrusion ring 33 is slidably connected to the inner wall of the sleeve 14.
[0027] In the above structure, through the arranged first contact groove 21 and second contact groove 22 structures, when the piston 20 moves, it can also push the lifting rod 15 to rise, so that the lifting rod 15 rotates with the rotating rod 16 and the pressing rod 28 presses the sample 13, thereby realizing the effect of synchronously detecting the sealing performance of the silicone sealing ring 5 and the strength of the sample 13.
[0028] In a preferred embodiment: The inner wall of the ring 7 is rotatably connected to the outer wall of the sealing cover 6, and the inner wall of the ring 7 is threadedly connected to the outer wall of the detection cylinder 2.
[0029] In the above structure, through the arranged ring 7 structure, after the connecting pipe 25 is attached to the silicone sealing ring 5, the ring 7 is used to mask the space where the two are located, thereby forming a cavity and isolating it from the outside world. Further, it is ensured that when the piston 20 squeezes the air inside the detection cylinder 2, there will be no direct leakage, thus completing the effect of detecting the air tightness of the silicone sealing ring 5.
[0030] In a preferred embodiment: The number of the clamps 12 is two, and the two clamps 12 are symmetrically distributed along the top of the detection table 1.
[0031] In the above structure, through the arranged two-clamp 12 structure, both ends of the sample 13 can be clamped, so that the sample 13 deforms after being pressed. The pressing of the pressing rod 28 is used to complete the detection operation of the strength of the sample 13, without the need for manual operation by the user, further improving the practicability of the device.
[0032] In a preferred embodiment: The inner wall of the sliding groove 10 is slidably connected to the outer wall of the sliding seat 24, and after the inner wall of the ring 7 is connected to the outer wall of the detection cylinder 2, the outer wall of the connecting pipe 25 abuts against the outer wall of the silicone sealing ring 5.
[0033] In the above structure, through the silicone rubber sealing ring 5 and the connecting pipe 25 arranged, the connecting pipe 25 is inserted into the placement groove 4 by docking the silicone rubber sealing ring 5 and the connecting pipe 25. Thus, after the placement groove 4 is sleeved with the silicone rubber sealing ring 5, a tubular structure is formed to conduct air. In this way, when the air pressure increases and air leaks, the ultra-thin pole piece 31 is deformed by the blowing, and then the airtightness of the silicone rubber sealing ring 5 is detected, improving the precise fit of the internal components of the device and facilitating the user to obtain the detection result.
[0034] In a preferred embodiment: The outer wall of the piston 20 is slidably connected to the inner wall of the detection cylinder 2, and the connection position of the connecting pipe 25 and the silicone rubber sealing ring 5 corresponds to the position of the ultra-thin pole piece 31.
[0035] In the above structure, through the ultra-thin pole piece 31 arranged, when the air inside the detection cylinder 2 leaks due to damage or insufficient airtightness of the silicone rubber sealing ring 5, the air will form an air current due to the pressure, so that the ultra-thin pole piece 31 is blown and adheres to the copper rod 32, thereby making the dual-color display lamp 27 light up red, and then realizing the effect of intelligent detection of the airtightness of the silicone rubber sealing ring 5.
[0036] In a preferred embodiment: The ultra-thin pole piece 31 is made of metallic copper. The number of ultra-thin pole pieces 31 is several, and several ultra-thin pole pieces 31 are evenly distributed along the outer wall of the connecting ring 30.
[0037] In the above structure, metallic copper has good ductility and electrical conductivity, thus ensuring that the ultra-thin pole piece 31 can be deformed in time when blown and contact the copper rod 32, thereby realizing the effect that the dual-color display lamp 27 is powered on in time and lights up red, and then ensuring the normal operation of the device and improving the automation of the device.
[0038] In a preferred embodiment: There is a 1 cm spacing between both ends of the tooth groove 8 and both ends of the circular ring 7, and the ultra-thin pole piece 31 is electrically connected to the copper rod 32 and the dual-color display lamp 27 respectively.
[0039] In the above structure, through the circular ring 7 and the tooth groove 8 arranged, after the sealing cover 6 moves, the user can rotate the circular ring 7 through the operation of the motor 18. Due to the threaded connection between the circular ring 7 and the detection cylinder 2, the circular ring 7 will move towards the detection cylinder 2, and the tooth column 19 will move forward due to the action of the tooth groove 8 and pull the sealing cover 6 to move forward synchronously, thereby ensuring that the connecting pipe 25 can be closely attached to the silicone rubber sealing ring 5 to form a complete cavity, avoiding the risk of air leakage due to the gap between the detection cylinder 2 and the sealing cover 6, and then improving the detection accuracy of the airtightness of the silicone rubber sealing ring 5 of the device.
[0040] Working principle: First, after the user assembles the device, the silica gel sealing ring 5 can be placed in the placement groove 4 first. Then, the output shaft of the micro electric telescopic rod 11 extends to make the connecting pipe 25 approach the silica gel sealing ring 5 until they fit. Subsequently, the motor 18 operates to rotate the tooth column 19, so that the ring 7 is threadedly connected to the detection cylinder 2, thereby forming a cavity between the detection cylinder 2, the ring 7 and the sealing cover 6. Then, the inside of the detection cylinder 2 is pressurized through the pressure pipe 3 to make the piston 20 move towards the silica gel sealing ring 5, squeezing the air inside the detection cylinder 2 to produce a pressurizing effect. If the airtightness of the silica gel sealing ring 5 is insufficient, the air will form a wind current to blow the ultra-thin pole piece 31 to deform and fit the copper bar 32. The user can directly observe the color of the illuminated lamp tube of the two-color display lamp 27 to know the airtightness of the silica gel sealing ring 5, which is convenient for the user to operate and detect the silica gel sealing ring 5. At the same time, when the piston 20 moves, it will push the lifting rod 15 to lift upward through the fitting of the first contact groove 21 and the second contact groove 22, so that the pressing rod 28 presses the sample 13, making the sample 13 fit tightly against the inner wall of the storage groove 29 and deform, thereby realizing the effect of synchronously detecting the strength of the sample 13, improving the operation efficiency of the user and the practicability of the device. During the operation of the device, the user can change the distance between the adjusting plates 34 by rotating the adjusting screw 40, so that the user can place sealing rings with different diameters between the four adjusting plates 34. At this time, the sealing ring will fit against the outer wall of the pressure plate 36, so that the sealing ring will also seal and block between the circular groove 9 and the sealing cover 6 after the sealing cover 6 moves, thereby cooperating with the pressure plate 36 in different pressure states to detect the sealing performance of the sealing ring, improving the detection effect and detection range of the device on the sealing ring.
[0041] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.
[0042] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An integrated quality inspection device for silicone products, comprising an inspection table (1), characterized in that: The top of the detection table (1) is fixedly equipped with a detection cylinder (2) and a fixture (12) respectively. A sample (13) is provided in the middle of the fixture (12). A pressure pipe (3) is communicated inside the detection cylinder (2). A placement groove (4) is opened on the front of the detection cylinder (2). A silica gel sealing ring (5) is placed on the inner wall of the placement groove (4). A circular groove (9) is opened on the inner wall of the placement groove (4). A sliding groove (10) is opened on the top of the detection table (1). A micro electric telescopic rod (11) is fixedly assembled on the front of the detection table (1). A sliding seat (24) is fixedly assembled on the output shaft of the micro electric telescopic rod (11). A sealing cover (6) is fixedly assembled on the top of the sliding seat (24). A connecting pipe (25) is correspondingly arranged for the silica gel sealing ring (5), and the outer wall of the connecting pipe (25) is fixedly assembled with the outer wall of the sealing cover (6). A fixed table (17) is fixedly assembled on the outer wall of the sealing cover (6). A motor (18) is fixedly assembled on the top of the fixed table (17). A toothed column (19) is fixedly assembled on the output shaft of the motor (18). A circular ring (7) is meshed with the outer wall of the toothed column (19). Tooth grooves (8) are opened on the outer wall of the circular ring (7). A sleeve (14) is communicated inside the detection cylinder (2). A lifting rod (15) is slidably sleeved on the inner wall of the sleeve (14). The top end of the lifting rod (15) is rotatably connected with a rotating rod (16). A pressing rod (28) is fixedly assembled at the end of the rotating rod (16).
2. The integrated quality inspection device for silicone products according to claim 1, characterized in that: The bottom end of the pressure rod (28) is provided with a storage groove (29). An extrusion ring (33) is fixedly sleeved on the outer wall of the lifting rod (15). A pressure spring (23) abuts against the top of the extrusion ring (33). A second contact groove (22) is formed at the bottom end of the rotating rod (16). A connecting ring (30) and a copper rod (32) are respectively and fixedly assembled on the outer wall of the sealing cover (6). An ultra-thin pole piece (31) is arranged on the outer wall of the connecting ring (30). A tension spring (26) is sleeved on the inner wall of the detection cylinder (2). A piston (20) abuts against the end of the tension spring (26). A first contact groove (21) is formed at the end of the piston (20). A two-color display lamp (27) is fixedly assembled at one end of the sealing cover (6) away from the copper rod (32). An adjusting screw rod (40) is arranged on the inner wall of the connecting pipe (25). The end of the adjusting screw rod (40) is rotatably connected to an adjusting plate (34). An adjusting groove (35) is formed on the outer wall of the adjusting plate (34). An activity groove (39) is formed on the outer wall of the adjusting plate (34). A return spring (41) is arranged on the inner wall of the activity groove (39). The end of the return spring (41) abuts against a limiting ring (30). A round rod (37) is fixedly assembled on the outer wall of the limiting ring (30). A pressing plate (36) is fixedly assembled at the end of the round rod (37). An electromagnet I (38) is fixedly assembled on the inner wall of the adjusting groove (35). An electromagnet II is fixedly assembled on the outer wall of the pressing plate (36), and when the electromagnet I (38) is powered on, it attracts the electromagnet II with opposite polarity.
3. An integrated quality inspection device for silicone products according to claim 2, characterized in that: A positioning plate is further fixedly assembled on the top of the detection table (1), and the outer wall of the positioning plate is rotatably connected to the outer wall of the rotating rod (16). When the top of the extrusion ring (33) abuts against the top of the inner wall of the sleeve (14), the inner wall of the storage groove (29) is closely attached to the outer wall of the sample (13).
4. An integrated quality inspection device for silicone products according to claim 2, characterized in that: The shape of the second contact groove (22) is adapted to the shape of the first contact groove (21), and the outer wall of the extrusion ring (33) is slidably connected to the inner wall of the sleeve (14).
5. An integrated quality inspection device for silicone products according to claim 1, characterized in that: The inner wall of the ring (7) is rotatably connected to the outer wall of the sealing cover (6), and the inner wall of the ring (7) is threadedly connected to the outer wall of the detection cylinder (2).
6. An integrated quality inspection device for silicone products according to claim 1, characterized in that: The number of the clamps (12) is two, and the two clamps (12) are symmetrically distributed along the top of the detection table (1).
7. An integrated quality inspection device for silicone products according to claim 1, characterized in that: The outer wall of the sliding seat (24) is slidably connected to the inner wall of the sliding groove (10). After the inner wall of the ring (7) is connected to the outer wall of the detection cylinder (2), the outer wall of the connecting pipe (25) abuts against the outer wall of the silica gel sealing ring (5).
8. An integrated quality inspection device for silicone products according to claim 2, characterized in that: The outer wall of the piston (20) is slidably connected to the inner wall of the detection cylinder (2), and the position where the connecting pipe (25) is connected to the silica gel sealing ring (5) corresponds to the position of the ultra-thin pole piece (31).
9. An integrated quality inspection device for silicone products according to claim 2, characterized in that: The ultra-thin pole piece (31) is made of metallic copper. The number of the ultra-thin pole pieces (31) is several, and several ultra-thin pole pieces (31) are evenly distributed along the outer wall of the connecting ring (30).
10. An integrated quality inspection device for silicone products according to claim 1, characterized in that: Both ends of the tooth groove (8) and both ends of the circular ring (7) have a distance of 1 cm, and the ultra-thin pole piece (31) is electrically connected to the copper rod (32) and the two-color display lamp (27) respectively.