Variable epidemic prevention isolation fence

By designing a variable-sized epidemic prevention isolation barrier, and utilizing a horizontally movable support frame and connecting frame, the spacing and height of the barriers can be flexibly adjusted, solving the problems of poor isolation effect and low adaptability of existing epidemic prevention isolation barriers, and improving the isolation effect and applicability.

CN223824742UActive Publication Date: 2026-01-23SICHUAN XINDE AGRI & ANIMAL HUSBANDRY CO LTD
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Patent Information

Application Number
CN202520204690.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-01-23
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

The existing epidemic prevention isolation barriers have excessively large spacing between the bars, resulting in poor isolation effect, and the height cannot be adjusted according to needs, affecting adaptability.

Method used

The design incorporates a variable-sized epidemic prevention barrier, featuring a horizontally movable support frame and connecting frame, combined with an interlaced railing structure and adjustable height. This allows for flexible adjustment of the railing spacing and height, while the use of a plug-in and locking structure enhances stability and adaptability.

Benefits of technology

It effectively reduces the number of people entering the isolation area through gaps, improves the isolation effect, adapts to the isolation needs of different areas, and enhances the effectiveness of epidemic prevention isolation barriers.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of epidemic prevention isolation fences, in particular to a variable epidemic prevention isolation fence which comprises a first supporting frame, a first butt joint frame is inserted into the top of the first supporting frame, a second supporting frame is inserted into one end of the first supporting frame, and a second butt joint frame is inserted into the top of the second supporting frame. A butt joint assembly is installed on one side of the second supporting frame, and a connecting assembly is installed on one side of the second butt joint frame. According to the improved anti-epidemic isolation fence, the supporting frame and the butt joint frame which can move transversely are arranged in the improved anti-epidemic isolation fence, and the handrails which are arranged in a staggered mode are matched, so that when isolation is needed, the distance between the staggered handrails is adjusted, people are prevented from entering an isolation area through a large distance, and the isolation effect of the anti-epidemic isolation fence is improved; and meanwhile, the butt joint frame with the height capable of being adjusted and locked is arranged inside to adjust the height of the epidemic prevention isolation fence, the adaptability of the epidemic prevention isolation fence is improved in cooperation with the rotatable butt joint and the connector, and use of the epidemic prevention isolation fence is facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of epidemic prevention isolation fence technology, specifically a variable epidemic prevention isolation fence. Background Technology

[0002] The epidemic prevention isolation barrier is an isolation device consisting of a barrier body, connectors, and anchoring devices. It is commonly used in scenarios such as epidemic prevention and control, isolation of public places, and temporary event sites. It can effectively prevent the gathering of people and the spread of the epidemic, and protect the life and health of the people.

[0003] By systematically connecting and setting up multiple epidemic prevention isolation barriers, it is possible to effectively conduct epidemic prevention testing on people coming and going, better control the flow of people passing through each time, facilitate the implementation of disinfection, testing and isolation, avoid the phenomenon of missed detection due to crowds, and also effectively prevent stampede incidents.

[0004] In the process of realizing this utility model, the following problems were found in the existing technology: 1. Most common epidemic prevention isolation barriers are of the same specifications. In actual use, if the spacing between the railings of the epidemic prevention isolation barrier is too large, people will enter the isolation area through the gaps, which will not be able to play the isolation effect of the epidemic prevention isolation barrier well, resulting in poor isolation effect; 2. Common epidemic prevention isolation barriers often cannot be adjusted in height according to needs, which reduces the adaptability of the epidemic prevention isolation barrier and thus affects the use effect of the epidemic prevention isolation barrier. Utility Model Content

[0005] The purpose of this utility model is to provide a variable-sized epidemic prevention isolation barrier to solve the problems mentioned in the background art, such as the fact that most epidemic prevention isolation barriers have the same specifications, and that excessive spacing between the bars allows people to enter the isolation area through the gaps, failing to achieve the isolation effect of the barrier. Furthermore, the height of the isolation barrier cannot be easily adjusted according to needs, resulting in reduced adaptability and affecting its effectiveness. To achieve the above objective, this utility model provides the following technical solution: a variable-sized epidemic prevention isolation barrier, including a first support frame, a first connecting frame inserted into the top of the first support frame, a second support frame inserted into one end of the first support frame, a second connecting frame inserted into the top of the second support frame, a connecting component installed on one side of the second support frame, and a connecting component installed on one side of the second connecting frame.

[0006] The top of the first support frame is embedded with a first docking groove, and a first locking groove passes through one side of the first docking groove. One bottom end of the first support frame is embedded with a first adjusting groove, and a first limiting groove passes through one side of the first adjusting groove. Multiple first insert rods are installed on the outside of the first support frame.

[0007] The bottom of the first docking frame is equipped with a first docking rod, and a first locking screw is installed on one side of the first docking rod. The external thread of the first locking screw is connected to a first locking nut. A second adjusting groove is embedded in one end of the top of the first docking frame. A second limiting groove passes through one side of the second adjusting groove. Multiple first slot rods are installed on the outside of the first docking frame.

[0008] The top of the second support frame is embedded with a second mating groove, and a second locking groove runs through one side of the second mating groove. A first adjusting rod is installed at one bottom end of the second support frame, and a first limiting screw is installed on one side of the first adjusting rod. A first limiting nut is connected to the external thread of the first limiting screw, and multiple second slot rods are installed at the top of the first adjusting rod.

[0009] The bottom of the second docking frame is equipped with a second docking rod, and a second locking screw is installed on one side of the second docking rod. The external thread of the second locking screw is connected to a second locking nut. A second adjusting rod is installed at one top end of the second docking frame. A second limiting screw is installed on one side of the second adjusting rod. The external thread of the second limiting screw is connected to a second limiting nut. Multiple second insert rods are installed at the bottom of the second adjusting rod.

[0010] The docking assembly includes a docking seat, one end of which is rotatably connected to a mating joint. Pressing blocks pass through both the upper and lower ends of the mating joint, and a return spring is installed at one end of each pressing block.

[0011] The connecting assembly includes a connecting base, one end of which is rotatably connected to a connecting head, and one end of the connecting head is embedded with a connecting groove.

[0012] More preferably, the first support frame, the first docking frame, the second support frame, and the second docking frame are all L-shaped structures, and the first docking groove and the first docking rod form a plug-in connection structure, and the second docking groove and the second docking rod form a plug-in connection structure.

[0013] More preferably, the first locking screw is slidably connected to the inside of the first locking groove, and the first locking nut is threadedly connected to the outside of the first locking screw and the outside of the first support frame to form a close-fitting connection structure. The second locking screw is slidably connected to the inside of the second locking groove, and the second locking nut is threadedly connected to the outside of the second locking screw and the outside of the second support frame to form a close-fitting connection structure.

[0014] More preferably, the top of the first adjusting groove and the bottom of the second adjusting groove are both through grooves, and the first adjusting groove and the first adjusting rod form a plug-in connection structure, and the second adjusting groove and the second adjusting rod form a plug-in connection structure, and the second slot rod and the second insert rod respectively form a sliding connection structure with the through groove.

[0015] More preferably, the first insertion rod and the first slot rod are located on the outer side of the through groove, and the first insertion rod and the first slot rod form a plug-in connection structure, and the second insertion rod and the second slot rod form a plug-in connection structure, while the spacing between two adjacent first insertion rods and two adjacent second insertion rods is the same.

[0016] More preferably, the first limiting screw is slidably connected to the inside of the first limiting groove, and the first limiting nut is threadedly connected to the outside of the first limiting screw and the outside of the first support frame to form a close-fitting connection structure. The second limiting screw is slidably connected to the inside of the second limiting groove, and the second limiting nut is threadedly connected to the outside of the second limiting screw and the first docking frame to form a close-fitting connection structure.

[0017] More preferably, docking components are installed on the outside of both the first docking frame and the second support frame, and connecting components are installed on the outside of both the first support frame and the second docking frame. The joint and the connecting groove form a plug-in connection structure, and the pressing block forms a through connection structure with the upper and lower ends of the connector by being installed on the upper and lower ends of the reset spring.

[0018] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0019] In this invention, a horizontally movable support frame and connecting frame are installed inside the epidemic prevention isolation fence. Together with the staggered railings inside, the spacing between the railings can be adjusted by the staggered arrangement of the railings when isolation is required, preventing people from entering the isolation area through large gaps and improving the isolation effect of the epidemic prevention isolation fence.

[0020] In this invention, an adjustable docking frame is installed inside the epidemic prevention isolation fence to adjust the height of the fence. Combined with a butt joint and connector that can rotate and connect at both ends, the convenience of connecting the epidemic prevention isolation fence is improved, allowing the fence to be better placed in isolation areas with curved areas, thus improving the adaptability of the epidemic prevention isolation fence and improving its effectiveness. Attached Figure Description

[0021] Figure 1 This is a front view structural diagram of the present invention;

[0022] Figure 2 This is an enlarged front view of the first support frame of this utility model;

[0023] Figure 3 This is an exploded enlarged structural diagram of the first docking frame of this utility model;

[0024] Figure 4 This is an exploded enlarged structural diagram of the second support frame of this utility model;

[0025] Figure 5 This is an exploded enlarged structural diagram of the second docking frame of this utility model;

[0026] Figure 6 This is an exploded magnified structural diagram of the internal structure of the docking assembly and connecting assembly of this utility model.

[0027] In the diagram: 1. First support frame; 101. First docking groove; 102. First locking groove; 103. First adjusting groove; 104. First limiting groove; 105. First insert rod; 2. First docking frame; 201. First docking rod; 202. First locking screw; 203. First locking nut; 204. Second adjusting groove; 205. Second limiting groove; 206. First slot rod; 3. Second support frame; 301. Second docking groove; 302. Second locking groove; 303. First adjusting rod; 304. First limiting rod 305. Screw; 306. First limiting nut; 307. Second slot rod; 4. Second docking bracket; 401. Second docking rod; 402. Second locking screw; 403. Second locking nut; 404. Second adjusting rod; 405. Second limiting screw; 406. Second limiting nut; 407. Second insertion rod; 5. Docking assembly; 501. Docking seat; 502. Docking joint; 503. Pressing block; 504. Return spring; 6. Connecting assembly; 601. Connecting seat; 602. Connecting head; 603. Connecting groove. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0029] Please see Figures 1 to 6 This utility model provides a technical solution: a variable epidemic prevention isolation fence, including a first support frame 1, a first docking frame 2 inserted into the top of the first support frame 1, a second support frame 3 inserted into one end of the first support frame 1, a second docking frame 4 inserted into the top of the second support frame 3, a docking component 5 installed on one side of the second support frame 3, and a connecting component 6 installed on one side of the second docking frame 4.

[0030] The top of the first support frame 1 is embedded with a first docking groove 101, and a first locking groove 102 passes through one side of the first docking groove 101. The bottom end of the first support frame 1 is embedded with a first adjusting groove 103, and a first limiting groove 104 passes through one side of the first adjusting groove 103. Multiple first insert rods 105 are installed on the outside of the first support frame 1.

[0031] The bottom of the first docking frame 2 is equipped with a first docking rod 201, and a first locking screw 202 is installed on one side of the first docking rod 201. The external thread of the first locking screw 202 is connected to a first locking nut 203. A second adjusting groove 204 is embedded in one end of the top of the first docking frame 2. A second limiting groove 205 passes through one side of the second adjusting groove 204. Multiple first slot rods 206 are installed on the outside of the first docking frame 2.

[0032] The top of the second support frame 3 is embedded with a second docking groove 301, and a second locking groove 302 passes through one side of the second docking groove 301. A first adjusting rod 303 is installed at one bottom end of the second support frame 3. A first limiting screw 304 is installed on one side of the first adjusting rod 303. A first limiting nut 305 is threaded onto the outside of the first limiting screw 304. A plurality of second slot rods 306 are installed on the top of the first adjusting rod 303.

[0033] The bottom of the second docking frame 4 is equipped with a second docking rod 401, and a second locking screw 402 is installed on one side of the second docking rod 401. The external thread of the second locking screw 402 is connected to a second locking nut 403. The top end of the second docking frame 4 is equipped with a second adjusting rod 404, and a second limiting screw 405 is installed on one side of the second adjusting rod 404. The external thread of the second limiting screw 405 is connected to a second limiting nut 406. The bottom of the second adjusting rod 404 is equipped with multiple second insert rods 407.

[0034] The docking assembly 5 includes a docking seat 501, one end of which is rotatably connected to a mating joint 502. Both the upper and lower ends of the mating joint 502 are penetrated by pressing blocks 503, and one end of the pressing block 503 is equipped with a return spring 504.

[0035] The connecting component 6 includes a connecting base 601, one end of which is rotatably connected to a connecting head 602, and one end of the connecting head 602 is embedded with a connecting groove 603.

[0036] In this embodiment, as Figure 1 As shown, the first support frame 1, the first docking frame 2, the second support frame 3, and the second docking frame 4 are all L-shaped structures. The first docking groove 101 and the first docking rod 201 form a plug-in connection structure, and the second docking groove 301 and the second docking rod 401 also form a plug-in connection structure. The epidemic prevention isolation fence is erected by interlocking two sets of support frames and docking frames, which improves the stability of the epidemic prevention isolation fence during use, avoids deformation of the epidemic prevention isolation fence, and improves the epidemic prevention isolation effect.

[0037] In this embodiment, as Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, the first locking screw 202 is slidably connected to the inside of the first locking groove 102, and the first locking nut 203 is threadedly connected to the outside of the first locking screw 202 and the outside of the first support frame 1 to form a close-fitting connection structure. The second locking screw 402 is slidably connected to the inside of the second locking groove 302, and the second locking nut 403 is threadedly connected to the outside of the second locking screw 402 and the outside of the second support frame 3 to form a close-fitting connection structure. The two sets of locking screws and locking nuts at both ends of the epidemic prevention isolation fence facilitate the locking of the height of the epidemic prevention isolation fence, thereby satisfying the stability when adjusting the height of the isolation fence during epidemic prevention isolation, and thus improving the use effect of the epidemic prevention isolation fence.

[0038] In this embodiment, as Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, the top of the first adjusting groove 103 and the bottom of the second adjusting groove 204 both have through grooves. The first adjusting groove 103 and the first adjusting rod 303 form a plug-in connection structure, and the second adjusting groove 204 and the second adjusting rod 404 form a plug-in connection structure. The second slot rod 306 and the second insert rod 407 respectively form a sliding connection structure with the through grooves. The two sets of adjusting rods and adjusting grooves are set to adjust the lateral length of the epidemic prevention isolation fence. With the help of the internal through grooves, the second slot rod 306 and the second insert rod 407 can slide inside, which improves the length adjustment effect of the epidemic prevention isolation fence, makes it easy to adjust the isolation range of the epidemic prevention isolation fence according to the needs, and improves the adaptability of the epidemic prevention isolation fence.

[0039] In this embodiment, as Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, the first insertion rod 105 and the first slot rod 206 are located on the outer side of the through groove, and the first insertion rod 105 and the first slot rod 206 form a plug-in connection structure. The second insertion rod 407 and the second slot rod 306 also form a plug-in connection structure. At the same time, the spacing between two adjacent first insertion rods 105 and two adjacent second insertion rods 407 is the same. By setting up multiple interlocking insertion rods and slot rods, the number of railings in the epidemic prevention isolation fence is increased. Combined with the lateral movement, it is easy for the railings to interlock, reduce the spacing between the railings, and improve the isolation effect of the epidemic prevention isolation fence.

[0040] In this embodiment, as Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, the first limiting screw 304 is slidably connected to the inside of the first limiting groove 104, and the first limiting nut 305 is threadedly connected to the outside of the first limiting screw 304 and the outside of the first support frame 1 to form a close-fitting connection structure. The second limiting screw 405 is slidably connected to the inside of the second limiting groove 205, and the second limiting nut 406 is threadedly connected to the outside of the second limiting screw 405 and the first docking frame 2 to form a close-fitting connection structure. Two sets of limiting nuts and limiting screws are set to lock the length of the epidemic prevention isolation fence, improve the length adjustment effect of the epidemic prevention isolation fence, and facilitate the adjustment of the length of the epidemic prevention isolation fence according to the needs.

[0041] In this embodiment, as Figure 1 and Figure 6 As shown, docking components 5 are installed on the outside of the first docking frame 2 and the second support frame 3, and connecting components 6 are installed on the outside of the second docking frame 4 of the first support frame 1. The connector 502 and the connecting groove 603 form a plug-in connection structure. At the same time, the pressing block 503 forms a through connection structure with the upper and lower ends of the reset spring 504 and the upper and lower ends of the connector 602 through the installation. Two sets of connectors 502 and connectors 602 are set at both ends of the epidemic prevention isolation fence for docking. The pressing block 503 inside is used for locking, which facilitates the docking and installation of multiple epidemic prevention isolation fences, improves the installation efficiency of the epidemic prevention isolation fence, and thus improves the effect of epidemic prevention isolation.

[0042] The usage and advantages of this utility model: The variable epidemic prevention isolation barrier operates as follows:

[0043] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, firstly, the epidemic prevention isolation barrier is placed in the area requiring isolation; then, rotating the first limiting nut 305 and the second limiting nut 406 allows the first adjusting rod 303 and the second adjusting rod 404 to move laterally via the first limiting screw 304 and the second limiting screw 405, thereby adjusting the spacing between the two sets of slot rods and insert rods inside the barrier in an alternating manner. After adjustment, the first limiting nut 305 and the second limiting nut 406 are used to lock them; next, rotating the first locking nut 203 and the second locking nut 403 at both ends allows the height of the epidemic prevention isolation barrier to be adjusted by moving the first connecting rod 201 and the second connecting rod 401 up and down, and then fixed by the two locking nuts; finally, after the epidemic prevention isolation barrier is adjusted, multiple epidemic prevention isolation barriers are inserted sequentially through the connecting grooves 603 in the connecting heads 602 and the connecting joints 502 at both ends, and locked in place by the two pressing blocks 503 under the action of the return spring 504, thus completing the erection of the epidemic prevention isolation barrier.

[0044] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A variable-type epidemic prevention isolation barrier, comprising a first support frame (1), characterized in that: A first docking frame (2) is inserted into the top of the first support frame (1), a second support frame (3) is inserted into one end of the first support frame (1), a second docking frame (4) is inserted into the top of the second support frame (3), a docking assembly (5) is installed on one side of the second support frame (3), and a connecting assembly (6) is installed on one side of the second docking frame (4). The top of the first support frame (1) is embedded with a first docking groove (101), and a first locking groove (102) passes through one side of the first docking groove (101). The bottom end of the first support frame (1) is embedded with a first adjusting groove (103), and a first limiting groove (104) passes through one side of the first adjusting groove (103). Multiple first insert rods (105) are installed on the outside of the first support frame (1). The bottom of the first docking frame (2) is equipped with a first docking rod (201), and a first locking screw (202) is installed on one side of the first docking rod (201). The external thread of the first locking screw (202) is connected to a first locking nut (203). A second adjusting groove (204) is embedded in one end of the top of the first docking frame (2). A second limiting groove (205) passes through one side of the second adjusting groove (204). A plurality of first slot rods (206) are installed on the outside of the first docking frame (2). The second support frame (3) has a second docking groove (301) embedded in its top, and a second locking groove (302) passes through one side of the second docking groove (301). A first adjusting rod (303) is installed at one bottom end of the second support frame (3). A first limiting screw (304) is installed on one side of the first adjusting rod (303). A first limiting nut (305) is connected to the external thread of the first limiting screw (304). A plurality of second slot rods (306) are installed on the top of the first adjusting rod (303). The bottom of the second docking frame (4) is equipped with a second docking rod (401), a second locking screw (402) is installed on one side of the second docking rod (401), a second locking nut (403) is connected to the external thread of the second locking screw (402), a second adjusting rod (404) is installed at one top end of the second docking frame (4), a second limiting screw (405) is installed on one side of the second adjusting rod (404), a second limiting nut (406) is connected to the external thread of the second limiting screw (405), and a plurality of second insert rods (407) are installed at the bottom of the second adjusting rod (404). The docking assembly (5) includes a docking seat (501), one end of which is rotatably connected to a connector (502), and both the upper and lower ends of the connector (502) are penetrated by pressing blocks (503), and one end of the pressing block (503) is equipped with a return spring (504). The connecting component (6) includes a connecting seat (601), one end of which is rotatably connected to a connecting head (602), and one end of the connecting head (602) is embedded with a connecting groove (603).

2. The variable epidemic prevention isolation fence according to claim 1, characterized in that: The first support frame (1), the first docking frame (2), the second support frame (3) and the second docking frame (4) are all L-shaped structures, and the first docking groove (101) and the first docking rod (201) form a plug-in connection structure, and the second docking groove (301) and the second docking rod (401) form a plug-in connection structure.

3. A variable epidemic prevention isolation fence according to claim 1, characterized in that: The first locking screw (202) is slidably connected to the inside of the first locking groove (102), and the first locking nut (203) is threadedly connected to the outside of the first locking screw (202) and the outside of the first support frame (1) to form a close-fitting connection structure. The second locking screw (402) is slidably connected to the inside of the second locking groove (302), and the second locking nut (403) is threadedly connected to the outside of the second locking screw (402) and the outside of the second support frame (3) to form a close-fitting connection structure.

4. A variable epidemic prevention isolation fence according to claim 1, characterized in that: The top of the first adjustment groove (103) and the bottom of the second adjustment groove (204) are both through grooves, and the first adjustment groove (103) and the first adjustment rod (303) form a plug-in connection structure, and the second adjustment groove (204) and the second adjustment rod (404) form a plug-in connection structure. The second slot rod (306) and the second insertion rod (407) respectively form a sliding connection structure with the through groove.

5. A variable epidemic prevention isolation fence according to claim 4, characterized in that: The first insertion rod (105) and the first slot rod (206) are located on the outer side of the through groove, and the first insertion rod (105) and the first slot rod (206) form a plug-in connection structure, and the second insertion rod (407) and the second slot rod (306) form a plug-in connection structure. At the same time, the spacing between two adjacent first insertion rods (105) and two adjacent second insertion rods (407) is the same.

6. A variable epidemic prevention isolation fence according to claim 1, characterized in that: The first limiting screw (304) is slidably connected to the inside of the first limiting groove (104), and the first limiting nut (305) is threadedly connected to the outside of the first limiting screw (304) and the outside of the first support frame (1) to form a close-fitting connection structure. The second limiting screw (405) is slidably connected to the inside of the second limiting groove (205), and the second limiting nut (406) is threadedly connected to the outside of the second limiting screw (405) and the first docking frame (2) to form a close-fitting connection structure.

7. A variable epidemic prevention isolation fence according to claim 1, characterized in that: The first docking frame (2) and the second support frame (3) are both equipped with docking components (5), and the second docking frame (4) of the first support frame (1) is equipped with connecting components (6). The connector (502) and the connecting groove (603) form a plug-in connection structure. At the same time, the pressing block (503) forms a through connection structure with the upper and lower ends of the connector (602) through the upper and lower ends of the reset spring (504).