Snap spring positioning installation type automobile water tank rubber ring

By designing the annular groove of the retaining spring positioning installation type automobile water tank rubber ring and the linkage structure of the operating component and the auxiliary locking component, the problems of conventional rubber rings being inconvenient to operate in a small space and having insufficient sealing effect are solved, the retaining spring can be quickly opened and closed, and the installation convenience and efficiency are improved.

CN120593043AInactive Publication Date: 2025-09-05GUANGZHOU TAIWEI RUBBER PRODUCTS CO LTD
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Patent Information

Application Number
CN202510866741.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-26
Publication Date
2025-09-05
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Conventional retaining spring mounted automobile water tank rubber rings are inconvenient to operate in a small space and multiple retaining springs cannot be opened at the same time, resulting in a decrease in sealing effect and an inability to enhance sealing at specific locations.

Method used

A retaining spring positioning and installation type automobile water tank rubber ring is designed, which adopts a linkage structure of a clip in an annular groove and an operating component and an auxiliary locking component. The retaining spring can be quickly opened and closed by a simple pressing action, allowing multiple retaining springs to operate synchronously and the fixed position can be adjusted.

Benefits of technology

It improves the convenience and efficiency of installation, avoids the inconvenience of operation in a small space, realizes the synchronous opening and closing of multiple retaining springs, and adapts to the sealing requirements of different water tanks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of rubber rings, and discloses a snap spring positioning installation type automobile water tank rubber ring which comprises a sealing rubber ring body, an annular groove is formed in the inner side face of the sealing rubber ring body, clamping pieces are movably clamped in the annular groove at equal intervals in the axial direction, and the clamping pieces slide relative to the annular groove. A clamping spring located on the outer side face of the sealing rubber ring is installed on the outer side face of the clamping piece, installation pieces are fixedly installed at the left end and the right end of the clamping spring, auxiliary locking assemblies are arranged at the bottom ends of the installation pieces, and the left side and the right side of the top end of each auxiliary locking assembly are connected with the bottom ends of the two installation pieces in an adsorption mode. According to the clamp spring opening device, the clamp spring can be rapidly opened through the linkage effect of the control assembly and the auxiliary locking assembly by using the simple pressing action, the whole process can be rapidly completed, opening of the clamp spring can be achieved without using a specific tool, the problem that operation is inconvenient in a narrow space is avoided, and the installation convenience is remarkably improved.
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Description

Technical Field

[0001] The invention belongs to the technical field of rubber rings, in particular to a retaining spring positioned and installed automobile water tank rubber ring. Background Art

[0002] A car's radiator rubber ring is a crucial sealing component in the vehicle's cooling system. It's typically installed between the radiator and other connected components to prevent coolant leaks. Made of a high-temperature and corrosion-resistant rubber material, it offers excellent elasticity and sealing properties. The radiator rubber ring ensures a tight seal between the radiator and the piping, preventing coolant leaks in high-temperature and high-pressure environments, thereby maintaining proper engine operation and temperature control.

[0003] In order to maintain the sealing performance, conventional water tank rubber rings need to be deformed during installation. In order to maintain the sealing performance, some rubber rings are provided with a retaining spring on the outer side of the rubber ring, and the elastic force of the retaining spring is used to assist in sealing. However, in actual use, the retaining spring requires a specific tool to open, which is extremely inconvenient to operate in a small space. At the same time, multiple retaining springs cannot be operated at the same time, and the practicality is poor.

[0004] Conventional retaining rings are mainly installed in a circular shape on the outer side of the rubber ring, and the position of the retaining ring is relatively fixed. However, in actual use, this fixed-position retaining ring cannot provide enhanced sealing at a specific position, and cannot improve the sealing effect at a specific position, resulting in a decrease in the sealing effect. Summary of the Invention

[0005] The purpose of the present invention is to provide a retaining spring positioning installation type automobile water tank rubber ring to solve the problems raised in the above background technology.

[0006] In order to achieve the above-mentioned purpose, the present invention provides the following technical solution: a retaining spring positioning and installation type automobile water tank rubber ring, including a sealing rubber ring, the inner side of the sealing rubber ring is provided with an annular groove, the inside of the annular groove is axially and evenly spaced and movably connected with a clamping part, the clamping part slides relative to the annular groove, the outer side of the clamping part is installed with a retaining spring located on the outer side of the sealing rubber ring, the left and right ends of the retaining spring are fixedly installed with mounting parts, the bottom end of the mounting part is provided with an auxiliary locking assembly, the left and right sides of the top of the auxiliary locking assembly are adsorbed and connected with the bottom ends of the two mounting parts, one side of the sealing rubber ring is provided with an operating assembly, the number of the auxiliary locking assemblies is not less than four, and the operating assembly is movably connected to the four auxiliary locking assemblies.

[0007] Before installing the sealing rubber ring, the operating assembly and the auxiliary locking assembly are in a separated state. At this time, the sealing rubber ring can be placed at the water tank opening and kept in close contact with the opening to complete the preliminary preparations before installation.

[0008] As a further technical solution of the present invention, the auxiliary locking assembly includes a first passive telescopic rod, the top end of the first passive telescopic rod is magnetically connected to the bottom end of the retaining spring, and a movable frame is fixedly installed at the bottom end of the first passive telescopic rod, and the movable frame is located directly below the retaining spring.

[0009] As a further technical solution of the present invention, a first fixed seat is installed on both sides of the left and right sides of the top of the movable frame, the end of the first fixed seat away from the movable frame is movably connected to a connecting rod through a rotating shaft, and the end of the connecting rod away from the first fixed seat is movably connected to a second fixed seat through a rotating shaft.

[0010] As a further technical solution of the present invention, the top of the second fixing seat is magnetically connected to the bottom of the mounting member, and an extended ear plate is fixedly installed in the middle of the bottom end of the movable frame, and the extended ear plate is movably connected to the operating assembly.

[0011] Before installing the sealing rubber ring, it is necessary to magnetically connect the top ends of the two second fixing seats to the bottom ends of the mounting parts, and at the same time, it is necessary to magnetically connect the top end of the first passive telescopic rod to the bottom end of the retaining spring to complete the fixation between the retaining spring and the auxiliary locking assembly. At the same time, in the initial state, that is, the retaining spring is in a clamped state, and the auxiliary locking assembly and the retaining spring are fixed, the first passive telescopic rod is in its longest state, and the movable frame is in the lowest point state, that is, close to the center of the sealing rubber ring. After preparation is completed, the operating assembly and the auxiliary locking assembly can be clamped.

[0012] As a further technical solution of the present invention, the operating assembly includes a limit plate, which is located on one side of the sealing rubber ring. The front of the limit plate is provided with a circumferential limit groove, and the number of the limit grooves is the same as that of the auxiliary locking assembly.

[0013] As a further technical solution of the present invention, a second passive telescopic rod is movably connected inside the limiting groove, and the second passive telescopic rod is movably connected between one end away from the limiting plate and the extension ear plate.

[0014] As a further technical solution of the present invention, a support rod is fixedly installed on the middle part of the limit plate away from the sealing rubber ring, and a buckle plate is fixedly installed on one end of the support rod away from the limit plate.

[0015] As a further technical solution of the present invention, a third fixed seat is fixedly installed at an axially equal interval on one end of the buckle plate close to the limit plate, and a linkage limit rod is movably connected to the end of the third fixed seat away from the buckle plate through a rotating shaft, and a fourth fixed seat is movably connected to the end of the linkage limit rod away from the third fixed seat through a rotating shaft, and the bottom end of the fourth fixed seat is connected to the top end of the second passive telescopic rod.

[0016] As a further technical solution of the present invention, the second passive telescopic rod is movably connected to the extended ear plate, and when the buckle plate moves forward and backward, it drives the movable frame to move up and down, and drives the second fixed seat to move, and finally drives the two sides of the retaining spring to open.

[0017] When operating, it is necessary to insert the second passive telescopic rod into all the extended ear plates, maintain the clamping state between the second passive telescopic rod and the extended ear plates, and after the clamping is completed, the operating component is in the initial state, and the buckle plate can be pressed inwardly, that is, the buckle plate is driven to move toward the direction of the limit plate. At this time, the support rod is compressed, and the distance between the buckle plate and the limit plate is reduced, which drives the multiple linked limit rods to deflect toward the outer side, and finally drives the multiple second passive telescopic rods to move toward the center of the circle away from the limit plate; At this time, the multiple extended ear plates are displaced in the direction away from each other, that is, they are displaced in the direction close to the sealing rubber ring. At this time, the first passive telescopic rod can be compressed, and the distance between the movable frame and the retaining spring is reduced, and the two connecting rods are driven to deflect. At this time, the connecting rod can apply tension to the second fixed seat and apply tension to both ends of the retaining spring, so that the two ends of the retaining spring are broken apart, completing the opening of the retaining spring.

[0018] By utilizing the cooperation between the operating component and the auxiliary locking component, the retaining spring can be quickly opened through the linkage action of the operating component and the auxiliary locking component with a simple pressing action. The whole process can be completed quickly without the need for using specific tools to open the retaining spring, and the problem of inconvenient operation in a small space is avoided, which significantly improves the convenience of installation.

[0019] Due to the action of the operating assembly and the auxiliary locking assembly, multiple retaining springs can be opened at the same time. When all the retaining springs are opened, the sealing rubber ring can be positioned and installed on the water tank opening. After positioning is completed, the second passive telescopic rod is directly pulled out to release the clamping connection between the second passive telescopic rod and the extended ear plate. At this time, the auxiliary locking assembly is no longer subjected to the force of the operating assembly, and the auxiliary locking assembly automatically resets. The two ends of the retaining spring are no longer subjected to force, and the deformation is restored, and pressure is applied to the sealing rubber ring to achieve the auxiliary fixing process.

[0020] By reusing the cooperation between the auxiliary locking assembly and the operating assembly, that is, utilizing the disassembly process of the operating assembly and the auxiliary locking assembly, the auxiliary locking assembly can be quickly reset, and the retaining spring can be closed by resetting the auxiliary locking assembly. The synchronous closure of multiple retaining springs can be achieved, and the sealing rubber ring can be quickly locked by utilizing multiple retaining springs. The entire process is completed quickly, and there is no need for traditional devices to operate the retaining springs one by one, thereby further improving the installation efficiency.

[0021] When the positioning locking position needs to be adjusted, the operating component and the auxiliary locking component can be clamped and fixed, and a force can be applied to the auxiliary locking component to complete the opening process of multiple retaining springs. At this time, the operating component can be rotated to drive the multiple auxiliary locking components to rotate circumferentially, and finally drive the multiple retaining springs to rotate relative to the annular groove until the multiple retaining springs reach the positioning position. Repeat the above installation process to complete the adjustment process of the fixed position.

[0022] By clamping and fixing the annular groove and the clamping part, and utilizing the cooperation between the auxiliary locking component and the operating component, the device can quickly adjust the fixed position of the retaining spring and quickly fix it, which can effectively avoid the problem that traditional devices cannot adjust the fixed position to a specific position, improve the applicability of the sealing ring, and meet the sealing requirements of different water tanks.

[0023] The beneficial effects of the present invention are as follows: (1) The present invention utilizes the cooperation between the operating component and the auxiliary locking component to enable the quick opening of the retaining spring through the linkage of the operating component and the auxiliary locking component with a simple pressing action. The entire process can be completed quickly without the need for using specific tools to open the retaining spring, and avoids the problem of inconvenient operation in a small space, thereby significantly improving the convenience of installation.

[0024] (2) The present invention reuses the cooperation between the auxiliary locking assembly and the operating assembly, that is, utilizes the disassembly process of the operating assembly and the auxiliary locking assembly to quickly reset the auxiliary locking assembly, and realizes the closing of the retaining spring through the reset of the auxiliary locking assembly, and can realize the synchronous closing of multiple retaining springs, and utilize multiple retaining springs to quickly lock the sealing rubber ring. The whole process is completed quickly, and there is no need for the traditional device to operate the retaining springs one by one, which further improves the installation efficiency.

[0025] (3) The present invention fastens the annular groove and the clamping member, and utilizes the cooperation between the auxiliary locking component and the operating component to enable the device to quickly adjust the fixed position of the retaining spring and quickly fix it. This can effectively avoid the problem that traditional devices cannot adjust the fixed position to a specific position, improve the applicability of the sealing ring, and meet the sealing requirements of different water tanks. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is an exploded schematic diagram of the auxiliary locking assembly structure and the slave operating assembly structure of the present invention; Figure 3 It is a separate exploded schematic diagram of the control assembly structure of the present invention; Figure 4This is a schematic diagram of the cooperation between the sealing rubber ring and the auxiliary locking assembly structure of the present invention; Figure 5 is a separate schematic diagram of the auxiliary locking assembly structure of the present invention; Figure 6 A schematic diagram of the coordination of the retaining spring and the locking auxiliary assembly structure of the present invention; Figure 7 This is a schematic diagram of the coordination of the clamping member, the clamping spring, and the mounting member structure of the present invention; Figure 8 It is a separate schematic diagram of the auxiliary locking assembly structure of the present invention.

[0027] In the figure: 1. Sealing rubber ring; 2. Annular groove; 3. Connector; 4. Circlip; 5. Mounting part; 6. Auxiliary locking assembly; 601. First passive telescopic rod; 602. Movable frame; 603. First fixed seat; 604. Second fixed seat; 605. Connecting rod; 606. Extended ear plate; 7. Operating assembly; 701. Limiting plate; 702. Limiting groove; 703. Linkage limiting rod; 704. Buckle plate; 705. Third fixed seat; 706. Fourth fixed seat; 707. Support rod; 708. Second passive telescopic rod. DETAILED DESCRIPTION

[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0029] like Figures 1 to 8 As shown, in the embodiment of the present invention, a retaining spring positioning and mounting type automobile water tank rubber ring includes a sealing rubber ring 1, an annular groove 2 is provided on the inner side of the sealing rubber ring 1, and a clamping part 3 is movably clamped in the inner side of the annular groove 2 at axial equal intervals. The clamping part 3 slides relative to the annular groove 2, and a retaining spring 4 located on the outer side of the sealing rubber ring 1 is installed on the outer side of the sealing rubber ring 1. Mounting parts 5 are fixedly installed on the left and right ends of the retaining spring 4, and an auxiliary locking component 6 is provided at the bottom end of the mounting part 5. The left and right sides of the top of the auxiliary locking component 6 are adsorbed and connected with the bottom ends of the two mounting parts 5. An operating component 7 is provided on one side of the sealing rubber ring 1, and the number of the auxiliary locking components 6 is not less than four. The operating component 7 is movably clamped with the four auxiliary locking components 6.

[0030] Before installing the sealing rubber ring 1, the operating assembly 7 and the auxiliary locking assembly 6 are in a separated state. At this time, the sealing rubber ring 1 can be placed at the water tank opening and kept in close contact with the opening to complete the preliminary preparations before installation.

[0031] like Figure 2 and Figure 4 as well as Figure 6 and Figure 8 As shown, the auxiliary locking assembly 6 includes a first passive telescopic rod 601, the top of the first passive telescopic rod 601 is magnetically connected to the bottom end of the retaining spring 4, and the bottom end of the first passive telescopic rod 601 is fixedly installed with a movable frame 602, and the movable frame 602 is located directly below the retaining spring 4. First fixed seats 603 are installed on both sides of the top of the movable frame 602, and the end of the first fixed seat 603 away from the movable frame 602 is movably connected to a connecting rod 605 through a rotating shaft, and the end of the connecting rod 605 away from the first fixed seat 603 is movably connected to a second fixed seat 604 through a rotating shaft, and the top of the second fixed seat 604 is magnetically connected to the bottom end of the mounting member 5, and an extended ear plate 606 is fixedly installed in the middle of the bottom end of the movable frame 602, and the extended ear plate 606 is movably connected to the operating assembly 7.

[0032] Before installing the sealing rubber ring 1, it is necessary to magnetically connect the top ends of the two second fixing seats 604 with the bottom ends of the mounting parts 5, and at the same time, it is necessary to magnetically connect the top end of the first passive telescopic rod 601 with the bottom end of the retaining spring 4 to complete the fixation between the retaining spring 4 and the auxiliary locking assembly 6. At the same time, in the initial state, that is, the retaining spring 4 is in a clamped state, and the auxiliary locking assembly 6 and the retaining spring 4 are fixed, the first passive telescopic rod 601 is in its longest state, and the movable frame 602 is in the lowest point state, that is, close to the center of the sealing rubber ring 1. After preparation is completed, the operating assembly 7 and the auxiliary locking assembly 6 can be clamped.

[0033] like Figure 1 and Figure 2 as well as Figure 3As shown, the operating assembly 7 includes a limit plate 701, which is located on one side of the sealing rubber ring 1. The front side of the limit plate 701 is circumferentially provided with a limit groove 702. The number of the limit grooves 702 is the same as that of the auxiliary locking assembly 6. The interior of the limit grooves 702 is movably connected with a second passive telescopic rod 708. The second passive telescopic rod 708 is movably connected between the end away from the limit plate 701 and the extended ear plate 606. A support rod 707 is fixedly installed in the middle of the side of the limit plate 701 away from the sealing rubber ring 1. A gusset plate 704 is fixedly installed on the end of the support rod 707 away from the limit plate 701. The gusset plate 704 is close to the limit One end of the disk 701 is fixedly installed with a third fixed seat 705 at an axially equal interval. The end of the third fixed seat 705 away from the buckle plate 704 is movably connected to the linkage limit rod 703 through a rotating shaft. The end of the linkage limit rod 703 away from the third fixed seat 705 is movably connected to the fourth fixed seat 706 through a rotating shaft. The bottom end of the fourth fixed seat 706 is connected to the top of the second passive telescopic rod 708. The second passive telescopic rod 708 is movably engaged with the extended ear plate 606. When the buckle plate 704 moves forward and backward, the movable frame 602 is driven to move up and down, and the second fixed seat 604 is driven to move, and finally the two sides of the retaining spring 4 are driven to open.

[0034] When the second telescopic rod 708 is inserted into all the extension ear plates 606, the second telescopic rod 708 and the extension ear plates 606 are kept in a locked state. After the locking is completed, the operating assembly 7 is in the initial state, and the buckle plate 704 can be pressed inward, that is, the buckle plate 704 is driven to move toward the direction of the limit plate 701. At this time, the support rod 707 is compressed, and the distance between the buckle plate 704 and the limit plate 701 is reduced, which drives the multiple linkage limit rods 703 to deflect toward the outer side, and finally drives the multiple second telescopic rods 708 to move toward the center of the circle away from the limit plate 701. At this time, the multiple extended ear plates 606 are displaced in the direction away from each other, that is, they are displaced in the direction close to the sealing rubber ring 1. At this time, the first passive telescopic rod 601 can be compressed, and the distance between the movable frame 602 and the retaining spring 4 is reduced, and the two connecting rods 605 are driven to deflect. At this time, the connecting rod 605 can apply a pulling force to the second fixed seat 604, and apply a pulling force to the two ends of the retaining spring 4, so that the two ends of the retaining spring 4 are broken apart, completing the opening of the retaining spring 4.

[0035] By utilizing the cooperation between the operating component 7 and the auxiliary locking component 6, a simple pressing action can be used to quickly open the retaining spring 4 through the linkage action of the operating component 7 and the auxiliary locking component 6. The whole process can be completed quickly without the need to use specific tools to open the retaining spring 4, and the problem of inconvenient operation in a small space is avoided, which significantly improves the convenience of installation.

[0036] Embodiment: Due to the action of the operating assembly 7 and the auxiliary locking assembly 6, multiple retaining springs 4 can be opened at the same time. When all the retaining springs 4 are opened, the sealing rubber ring 1 can be positioned and installed at the water tank opening. After positioning is completed, the second passive telescopic rod 708 is directly pulled out to release the connection between the second passive telescopic rod 708 and the extended ear plate 606. At this time, the auxiliary locking assembly 6 is no longer subjected to the force of the operating assembly 7, and the auxiliary locking assembly 6 is automatically reset. The two ends of the retaining spring 4 are no longer subjected to force, and the deformation is restored, and pressure is applied to the sealing rubber ring 1 to realize the auxiliary fixing process.

[0037] By reusing the cooperation between the auxiliary locking component 6 and the operating component 7, that is, utilizing the decomposition process of the operating component 7 and the auxiliary locking component 6, the auxiliary locking component 6 can be quickly reset, and the closing of the retaining spring 4 can be achieved through the reset of the auxiliary locking component 6. The synchronous closing of multiple retaining springs 4 can be achieved, and the sealing rubber ring 1 can be quickly locked by utilizing multiple retaining springs 4. The whole process is completed quickly, and there is no need for traditional devices to operate the retaining springs 4 one by one, which further improves the installation efficiency.

[0038] When the positioning locking position needs to be adjusted, the operating component 7 and the auxiliary locking component 6 can be clamped and fixed, and a force can be applied to the auxiliary locking component 6 to complete the opening process of multiple retaining springs 4. At this time, the operating component 7 can be rotated to drive the multiple auxiliary locking components 6 to rotate circumferentially, and finally drive the multiple retaining springs 4 to rotate relative to the annular groove 2 until the multiple retaining springs 4 reach the positioning position. Repeat the above installation process to complete the adjustment process of the fixed position.

[0039] By clamping and fixing the annular groove 2 and the clamping part 3, and utilizing the cooperation between the auxiliary locking component 6 and the operating component 7, the device can quickly adjust the fixed position of the retaining spring 4 and quickly fix it, which can effectively avoid the problem that traditional devices cannot adjust the fixed position to a specific position, improve the applicability of the sealing ring, and meet the sealing requirements of different water tanks.

[0040] Working principle and usage process: Before installing the sealing rubber ring 1, the operating assembly 7 and the auxiliary locking assembly 6 are in a separated state. At this time, the sealing rubber ring 1 can be placed on the water tank opening and kept in close contact with the opening to complete the preliminary preparation before installation; Before installing the sealing rubber ring 1, it is necessary to magnetically connect the top ends of the two second fixing seats 604 to the bottom ends of the mounting member 5, and at the same time, it is necessary to magnetically connect the top end of the first passive telescopic rod 601 to the bottom end of the retaining spring 4 to complete the fixation between the retaining spring 4 and the auxiliary locking assembly 6. At the same time, in the initial state, that is, the retaining spring 4 is in a clamped state, and after the auxiliary locking assembly 6 and the retaining spring 4 are fixed, the first passive telescopic rod 601 is in its longest state, and the movable frame 602 is in its lowest point, that is, close to the center of the sealing rubber ring 1. After preparation is completed, the operating assembly 7 and the auxiliary locking assembly 6 can be clamped. When operating, it is necessary to insert the second passive telescopic rod 708 into all the extended ear plates 606 to maintain the clamping state between the second passive telescopic rod 708 and the extended ear plates 606. After the clamping is completed, the operating component 7 is in the initial state, and the buckle plate 704 can be pressed inward, that is, the buckle plate 704 is driven to move toward the direction of the limit plate 701. At this time, the support rod 707 is compressed, and the distance between the buckle plate 704 and the limit plate 701 is reduced, which drives the multiple linked limit rods 703 to deflect toward the outer side, and finally drives the multiple second passive telescopic rods 708 to move toward the center of the circle away from the limit plate 701; At this time, the multiple extended ear plates 606 are displaced in a direction away from each other, that is, they are displaced in a direction close to the sealing rubber ring 1. At this time, the first passive telescopic rod 601 can be compressed, and the distance between the movable frame 602 and the clamping spring 4 is reduced, which drives the two connecting rods 605 to deflect. At this time, the connecting rod 605 can apply a pulling force to the second fixing seat 604 and apply a pulling force to the two ends of the clamping spring 4, so that the two ends of the two clamping springs 4 are broken apart, completing the opening of the clamping spring 4; Due to the action of the operating assembly 7 and the auxiliary locking assembly 6, multiple retaining springs 4 can be opened at the same time. When all retaining springs 4 are opened, the sealing rubber ring 1 can be positioned and installed at the water tank opening. After positioning, the second passive telescopic rod 708 is directly pulled out to release the clamping connection between the second passive telescopic rod 708 and the extended ear plate 606. At this time, the auxiliary locking assembly 6 is no longer subjected to the force of the operating assembly 7, and the auxiliary locking assembly 6 is automatically reset. The two ends of the retaining spring 4 are no longer subjected to force, and the deformation is restored, and pressure is applied to the sealing rubber ring 1 to achieve the auxiliary fixing process. When the positioning locking position needs to be adjusted, the operating component 7 and the auxiliary locking component 6 can be clamped and fixed, and a force can be applied to the auxiliary locking component 6 to complete the opening process of multiple retaining springs 4. At this time, the operating component 7 can be rotated to drive the multiple auxiliary locking components 6 to rotate circumferentially, and finally drive the multiple retaining springs 4 to rotate relative to the annular groove 2 until the multiple retaining springs 4 reach the positioning position. Repeat the above installation process to complete the adjustment process of the fixed position.

[0041] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A retaining spring positioning installation type automobile water tank rubber ring, comprising a sealing rubber ring (1), characterized in that: The inner side surface of the sealing rubber ring (1) is provided with an annular groove (2), and the inside of the annular groove (2) is axially and evenly spaced with a clamping member (3) movably engaged, and the clamping member (3) slides relative to the annular groove (2). The outer side surface of the clamping member (3) is provided with a retaining spring (4) located on the outer side surface of the sealing rubber ring (1), and the left and right ends of the retaining spring (4) are fixedly provided with mounting members (5), and the bottom end of the mounting member (5) is provided with an auxiliary locking assembly (6), and the left and right sides of the top of the auxiliary locking assembly (6) are adsorbed and connected with the bottom ends of the two mounting members (5). One side of the sealing rubber ring (1) is provided with an operating assembly (7), and the number of the auxiliary locking assemblies (6) is not less than four, and the operating assembly (7) is movably engaged with the four auxiliary locking assemblies (6).

2. The automobile radiator rubber ring with a retaining spring for positioning installation according to claim 1, characterized in that: The auxiliary locking assembly (6) comprises a first passive telescopic rod (601), the top end of the first passive telescopic rod (601) is magnetically connected to the bottom end of the retaining spring (4), and a movable frame (602) is fixedly mounted on the bottom end of the first passive telescopic rod (601), and the movable frame (602) is located directly below the retaining spring (4).

3. The automobile radiator rubber ring with a retaining spring for positioning installation according to claim 2, characterized in that: A first fixed seat (603) is installed on both the left and right sides of the top of the movable frame (602); one end of the first fixed seat (603) away from the movable frame (602) is movably connected to a connecting rod (605) via a rotating shaft; and one end of the connecting rod (605) away from the first fixed seat (603) is movably connected to a second fixed seat (604) via a rotating shaft.

4. The automobile radiator rubber ring with a retaining spring for positioning installation according to claim 3 is characterized in that: The top end of the second fixing seat (604) is magnetically connected to the bottom end of the mounting member (5), and an extended ear plate (606) is fixedly installed in the middle of the bottom end of the movable frame (602), and the extended ear plate (606) is movably connected to the operating component (7).

5. The automobile radiator rubber ring with a retaining spring for positioning installation according to claim 4 is characterized in that: The operating assembly (7) includes a limiting plate (701), the limiting plate (701) is located on one side of the sealing rubber ring (1), and the front side of the limiting plate (701) is provided with a limiting groove (702) in a circumferential shape, and the number of the limiting grooves (702) is the same as that of the auxiliary locking assembly (6).

6. The automobile radiator rubber ring with a retaining spring for positioning installation according to claim 5, characterized in that: A second passive telescopic rod (708) is movably engaged inside the limiting groove (702), and one end of the second passive telescopic rod (708) away from the limiting plate (701) is movably engaged with the extension ear plate (606).

7. The automobile radiator rubber ring with a retaining spring for positioning installation according to claim 6, characterized in that: A support rod (707) is fixedly mounted on the middle portion of the limiting plate (701) away from the sealing rubber ring (1), and a buckle plate (704) is fixedly mounted on one end of the supporting rod (707) away from the limiting plate (701).

8. The automobile radiator rubber ring with a retaining spring for positioning installation according to claim 7, characterized in that: A third fixed seat (705) is fixedly installed at an axially equidistant interval on one end of the buckle plate (704) close to the limit plate (701); an end of the third fixed seat (705) away from the buckle plate (704) is movably connected to a linkage limit rod (703) via a rotating shaft; an end of the linkage limit rod (703) away from the third fixed seat (705) is movably connected to a fourth fixed seat (706) via a rotating shaft; and a bottom end of the fourth fixed seat (706) is connected to the top end of the second passive telescopic rod (708).

9. The automobile radiator rubber ring with a retaining spring for positioning installation according to claim 8, characterized in that: The second passive telescopic rod (708) is movably connected to the extended ear plate (606), and when the buckle plate (704) moves forward and backward, it drives the movable frame (602) to move up and down, and drives the second fixed seat (604) to move, and finally drives the two sides of the retaining spring (4) to open.