Spring pad combined by slider connecting body

By combining the slider connector with the support spring, the problem of existing spring pads being unable to provide independent support and softness is solved, achieving both independent support and softness, extending service life, and enhancing the healthy rest experience.

CN224522757UActive Publication Date: 2026-07-21YANTAI SANQI INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YANTAI SANQI INTELLIGENT TECH CO LTD
Filing Date
2025-07-29
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

The existing connection method of spring pads means that the support springs cannot provide independent support, which affects comfort and softness. In addition, the filling material is easily damaged and cannot meet the requirements of independent support and soft support.

Method used

By combining a slider connector with a support spring, and connecting the slide module with a tension spring and a connecting soft strap, independent lifting of adjacent slide modules can be achieved, reducing the use of filler material.

Benefits of technology

It achieves independent support function for spring pads, improves softness and comfort, reduces the use of filling materials, extends service life, and enhances the effect of healthy rest.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a spring pad combined through sliding block connecting body, including bottom plate, be equipped with elastic support on the bottom plate, the elastic support includes support spring and sliding block connecting body, the sliding block connecting body includes slide plate module, be equipped with tension spring, soft band slot, soft band gyro wheel on the slide plate module, the tension spring is connected with the connection soft band, through setting up side slide plate and gyro wheel group and sliding partition plate etc. combined connecting piece respectively in the side of slide plate module, can fully improve the independent support effect of mutual combination connection and smooth mutual lifting of adjacent slide plate module on spring pad, to give full play to the lasting resilience function of support spring, reduce the use amount of pollution, easy to concave deformation, easy to age material greatly, can reach comfortable support effect to the body convex part, can adjust the tension of tension spring to the connection soft band in time, reach the purpose that big or small sliding block module bearing force is adjusted, promote good rest and health.
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Description

Technical Field

[0001] This utility model relates to the field of household goods technology, and more specifically to a spring pad assembled by a slider connector. Background Technology

[0002] Currently, most spring mattresses and sofa cushions on the market use traditional connection methods for the top of the support springs, such as snap-fit ​​connections and spring insert connections. This tightly packed connection method has the disadvantage that it doesn't fully utilize the independent support function of each spring group. To compensate for this, excessive filling materials such as sponge, latex, and silk are added to the top of the spring mattress. However, this excessive filling affects the long-term resilience of the support springs. After a period of use, the added material weakens its resilience, and the spring mattress loses its soft support effect, resulting in surface depressions that affect rest and health. Patent number ZL201110035759.X, an invention patent for an adjustable combination mattress, discloses a support plate, combination modules, and a cover plate that are interconnected via adjusting bolts, hinges, water pipe channels, and connecting springs. The combination modules are controlled by the aforementioned connecting components and cannot rise or fall independently. The support plate also cannot rise or fall independently; the combination modules are supported by the support plate and can only move laterally. The spring pads are connected but cannot rise or fall vertically to each other, meaning they cannot rise or fall independently. Therefore, they cannot achieve the independent support function required by spring pads. Spring pads with this type of structural connection provide uncomfortable, rigid, and uncomfortable support during use, failing to achieve a comfortable support effect. Furthermore, the presence of water pipe channels and the installation of temperature-controlled water pipes will affect the soft, independent support function of the spring pads, interfering with their flexibility. (Patent No. ZL202322872997.7, Utility Model of a Spring Pad with Soft Straps). This patent describes a design where the soft belt connects to two adjacent upper supports and two lower supports via rollers B and C, respectively. The soft belt serves to connect adjacent supports. The spacer separates the upper rollers A and C to prevent them from colliding. Since both the upper and lower supports are vertically controlled by the guide rod, they do not come into contact with each other. However, when using the spring pad, the user experiences discomfort due to its rigid and stiff feel, losing the soft support that a spring pad should provide. The patent number is ZL202322873001.4. A utility model patent for a spring pad with roller connection discloses that roller assembly II is connected to two adjacent support frames. After the support frames are connected and controlled by the combination of guide rods, roller assembly II, roller frames, and slide rails, they will not squeeze against each other. However, when using the spring pad, the user experiences an uncomfortable, rigid, and stiff support effect. The above-mentioned connection via soft belts or roller assembly II requires vertical control of the guide rod to prevent tilting. This technical solution is beneficial for vertically stable lifting and lowering without squeezing or collision. The disadvantage is that the spring pad loses its comfortable and soft support performance with lateral swaying function, and loses the comfortable swaying and vibrating effect unique to spring pads. The drum springs, tension springs, and connecting springs in the above patent all have a connecting tension function, but they all lose the flexible and swaying connection function of the spring pad, failing to achieve the required comfortable support effect. Furthermore, the tension of the connecting spring is difficult to control; it cannot be adjusted to be too large or too small. Excessive or insufficient tension will cause the combined connecting parts to squeeze and collide, damaging the connection structure. Utility Model Content

[0003] To solve the above problems, this utility model provides a spring pad connected by a slider assembly.

[0004] The technical solution of this utility model is implemented as follows: a spring pad connected by a slider assembly includes a base plate, an elastic support body is provided on the base plate, and a face cover is provided on the top of the elastic support body. The elastic support body includes a support spring and a slider connector. The slider connector includes a sliding plate module. The sliding plate module is provided with a connecting soft strap. Adjacent sliding plate modules are connected by the tension of the connecting soft strap. Side sliding plates are provided on the side surface of the sliding plate module. Adjacent sliding plate modules are connected by pressing against each other and sliding up and down through the side sliding plates. The lower side of the sliding plate module is connected to the upper end of the support spring, and the lower end of the support spring is connected to the base plate. Preferably, the skateboard module is provided with a soft belt groove, a soft belt roller is installed in the soft belt groove, the connecting soft belt is connected to the soft belt roller through the soft belt groove, the skateboard module is provided with a tension spring, and the connecting soft belt is connected to the tension spring; Preferably, both the skateboard module and the face mask are provided with adjustment holes. A control frame A is installed inside the support spring on the lower side of the skateboard module, and a control frame B is installed inside the support spring on the base plate. An adjustment screw is installed in the adjustment hole of the skateboard module. The lower end of the adjustment screw is connected to the lower end of the control frame A. An adjustment nut is provided on the adjustment screw. The adjustment nut is connected to one end of the tension spring. A buffer spring is connected to the control frame B. A positioning bracket B is connected to the buffer spring. A positioning bracket A is connected to the lower side of the control frame A. Preferably, the skateboard module includes a skateboard module A, and a side skateboard on the side surface of the skateboard module A is provided with a roller assembly, the roller assembly is equipped with rollers, and the roller assembly is fixedly connected to the side surface of the skateboard module. Preferably, the skateboard module includes skateboard module A and skateboard module B, which are spaced apart. The side skateboard of skateboard module A is provided with a roller assembly, and the roller assembly is equipped with rollers. The skateboard module A and skateboard module B are connected by rollers pressing against each other and sliding up and down. Preferably, the sliding partition includes a sliding partition A, on which a skateboard wheel is mounted, the skateboard wheel being tactilely connected to the sliding partition A, a soft belt wheel being mounted in the soft belt hole, the connecting soft belt being tactilely connected to the soft belt wheel, and the sliding partition A being mutually pressed against and slidably connected to the side skateboard provided on the adjacent skateboard module through the skateboard wheel; Preferably, the upper projected area of ​​the skateboard module is set to 30-80 square centimeters, the height of the side skateboards provided on the side surface of the skateboard module is set to 3-6 centimeters, and the vertical sliding distance between two adjacent side skateboards is set to 1-3 centimeters.

[0005] The beneficial effects of this utility model are as follows: By setting up a combination connection between the slider connector and the support spring, and by connecting the slide plate module with the tension spring and the connecting soft belt, the adjacent slide plate modules can achieve mutual lifting and lowering, thus achieving the unique independent support function of the spring pad. This meets the user's need for soft support, reduces the amount of polluting and easily deformed materials used, and achieves the good effects of environmental health, long-term use without denting, soft and comfortable support, promoting healthy rest and improving the quality of life. Attached Figure Description

[0006] Figure 1 This is a schematic diagram showing the connection between the skateboard module without rollers and the sliding partition plate of this utility model; Figure 2 This is a schematic diagram showing the spacing between different skateboard modules of this utility model; Figure 3 This is a schematic diagram of the connection of the skateboard module with roller assembly of this utility model; Figure 4 This utility model Figure 1 A schematic diagram of the AA-direction cross-section; Figure 5 This utility model Figure 2 Schematic diagram of the BB-direction cross section; Figure 6 This utility model Figure 3 A schematic diagram of the CC-direction cross-section; Figure 7 This utility model Figure 1 A horizontal cross-sectional top view; Figure 8 This is a side view of the sliding partition plate A of this utility model; Figure 9 This utility model Figure 8 Schematic diagram of the DD-direction cross section.

[0007] Parts Description: 1. Base plate, 2. Elastic support body, 3. Face mask, 5. Support spring, 6. Slider connector, 8. Slide board module, 8-1. Slide board module A, 8-2. Slide board module B, 9. Tension spring, 10. Connecting soft belt, 11. Soft belt groove, 12. Soft belt roller, 13. Side slide board, 15. Adjustment hole, 16. Control frame A, 17. Control frame B, 18. Adjusting screw, 19. Adjusting nut, 20. Buffer spring, 21. Positioning bracket A, 22. Positioning bracket B, 25. Roller assembly, 26. Roller, 27. Slide board wheel, 28. Sliding partition plate, 28-1. Sliding partition plate A, 29. Elastic pull rope, 30. Soft belt hole, 31. Soft belt pulley. Detailed Implementation

[0008] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0009] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0010] See attached document Figure 1-9A spring pad assembled by a slider connector includes a base plate 1, an elastic support body 2 on the base plate 1, a cover 3 covering the elastic support body 2, the elastic support body 2 including a support spring 5 and a slider connector 6, the slider connector 6 including a slide plate module 8, the slide plate module 8 having a connecting soft strap 10, adjacent slide plate modules 8 being connected by tension through the connecting soft strap 10, the side surface of the slide plate module 8 having a side slide plate 13, adjacent slide plate modules 8 being connected by pressing against each other and sliding up and down through the side slide plate 13, the lower side of the slide plate module 8 being connected to the upper end of the support spring 5, the lower end of the support spring 5 being connected to the base plate 1, the slide plate module 8 having a soft strap groove 11, the soft strap 12 being installed in the soft strap groove 11, the connecting soft strap 10 being connected to the soft strap roller 12 through the soft strap groove 11, the slide plate module 8 having a tension spring 9, the connecting soft strap 10 being connected to the tension spring 9. Both the skateboard module 8 and the face mask 3 are provided with adjustment holes 15. A control frame A16 is installed inside the support spring 5 on the lower side of the skateboard module 8, and a control frame B17 is installed inside the support spring 5 on the base plate 1. An adjustment screw 18 is installed inside the adjustment hole 15 of the skateboard module 8. The lower end of the adjustment screw 18 is connected to the lower end of the control frame A16. An adjustment nut 19 is provided on the adjustment screw 18. The adjustment nut 19 is connected to one end of the tension spring 9. A buffer spring 20 is connected to the control frame B17. A positioning bracket B22 is connected to the buffer spring 20. A positioning bracket A21 is connected to the lower side of the control frame A16. The skateboard module 8 includes a skateboard module A8-1 and a skateboard module B8-2. A roller assembly 25 is provided on the side skateboard 13 on the side elevation of the skateboard module A8-1. Rollers 26 are installed on the roller assembly 25. The roller assembly 25 is fixedly connected to the side elevation of the skateboard module 8. The skateboard module B8-2 does not have a roller assembly. The skateboard modules A8-1 and B8-2 are spaced apart. The rollers 26 on the skateboard module A8-1 and the side skateboards on the skateboard module B8-2 are pressed against each other and slid up and down. A sliding partition 28 is provided between adjacent skateboard modules 8. The sliding partition 28 is provided with an elastic pull rope 29. Adjacent sliding partitions 28 are connected by the elastic pull rope 29. The sliding partition 28 is provided with a flexible strap hole 30. The connecting flexible strap 10 passes through the flexible strap hole 30 and connects adjacent skateboard modules 8 to the sliding partition 28 respectively. The rollers 26 on adjacent skateboard modules 8 are pressed against each other and slid up and down with the sliding partition 28.The sliding partition 28 includes a sliding partition A28-1, on which a sliding wheel 27 is mounted. The sliding wheel 27 is rotatably connected to the sliding partition A28-1. A flexible belt wheel 31 is mounted inside the flexible belt hole 30. The connecting flexible belt 10 is rotatably connected to the flexible belt wheel 31. The sliding partition A28-1 is connected to the side sliding plate 13 on the adjacent sliding plate module 8 by means of the sliding wheel 27, and they slide up and down together. The upper projected area of ​​the sliding plate module 8 is set to 30-80 square centimeters. The height of the side sliding plate 13 on the side surface of the sliding plate module 8 is set to 3-6 centimeters. The vertical sliding distance between two adjacent side sliding plates 13 is set to 1-3 centimeters.

[0011] Specifically: By connecting a slider connector 6 to the upper end of the support spring 5 of the elastic support body 2, the combination of the slide plate module 8 on the slider connector 6 and the support spring 5 allows the slide plate module 8 to provide a comfortable, wobbly support feel during use, improving the softness of the spring pad's support for the human body. Therefore, it reduces the need for excessive sponge or other filling materials on top of the slide plate module 8, fully utilizing the combined connection of the support spring 5 and the slide plate module 8 to create better independent support, achieving a comfortable support effect for the protruding and concave parts of the human body. The side slide plate 13 on the side of the slide plate module 8, through the connecting soft strap 10 and the tension spring 9, allows the smoother side slide plates 13 to press against each other, resulting in smooth and low-wear mutual lifting and lowering movements. This ensures the spring pad has an independent support function, achieving a balanced support effect for the protruding and concave parts of the human body produced by the slide plate module 8 combined with the support spring 5, satisfying comfort during rest and benefiting health. When using a spring mattress, it should provide significant high or low support for the lower back and buttocks. Similarly, when using a sofa cushion, it should provide substantial support for the buttocks. By combining the tension spring 9 on the slider connector 6 with the connecting soft strap 10, the connecting soft strap 10 can extend and retract, thus achieving a better effect of providing either soft support or strong overall support for the human body. The projected area of ​​the sliding plate module 8 is set to 30-80 square centimeters, mainly to determine whether the sliding plate module 8 is large or small. A setting of 30-60 square centimeters is suitable for making spring mattresses, and a setting of 50-80 square centimeters is suitable for making sofa cushions. The height of the side sliding plate 13 is set to 3-6 centimeters, mainly to determine the contact area between adjacent side sliding plates 13 when they slide up and down, that is, to ensure that the sliding plate module 5 remains stable during use and does not flip over or cause abnormal noise or damage due to excessive collision. The vertical sliding distance between adjacent side sliding plates 13 is set to 1-3 centimeters, that is, to determine the stretching distance that the connecting soft strap 10 set on the spring mattress or sofa cushion should also have, in order to meet the user's body's convex and concave parts with a balanced support effect. The combination of the sliding plate module 8, connecting soft belt 10, and tension spring 9 provides the sliding plate module 8 with a durable and stable tension connection and independent support function, achieving a trembling comfort effect of the spring pad with shaking and covering support. The smooth squeezing connection of adjacent side sliding plates 13 enhances the balanced support effect of the spring pad's soft support and overall support effect. By providing soft belt groove 11 and soft belt roller 12 on the sliding plate module 8, the connecting soft belt 10 can reduce wear and move freely within the sliding plate module 8, improving the tension connection and bendability of the connecting soft belt 10, so that adjacent sliding plate modules 8 are not obstructed by the connecting soft belt 10 when they rise and fall relative to each other.The key to the above technical solution lies in the side sliding plate 13. Through the mutual squeezing connection of adjacent side sliding plates 13, adjacent sliding plate modules 8 can be raised and lowered relative to each other, achieving a better independent support function and solving the problems existing in the background technology. The spring pad combined with the above structure has a completely different combination structure from the background technology, solving the structural problem of unreasonable combination connection at the top of the supporting spring 2 on the spring pad. The spring pad made with the above technical features has a vibration effect and an independent support effect, achieving the comfortable characteristics of tilting and wrapping the human body. It is a new technology product that is not currently available on the market. This technology has creative and novel characteristics and is a high-quality product welcomed by consumers.

[0012] By setting the adjustment hole 15, the adjustment screw 18 can be manually adjusted on the surface of the spring pad. The adjustment nut 19 drives the tension spring 9 to rise and fall, thereby adjusting the tension of the connecting soft belt 10, thus adjusting the mutual squeezing and connection tension of adjacent skateboard modules 8, achieving the purpose of the spring pad providing either soft or firm support to the user. By setting the roller group 25 on the side of the skateboard module A8-1, multiple rollers 26 are rolled and connected to the side skateboard 13. Taking full advantage of the smooth and noiseless rolling connection of the rollers, the effect is better and more durable than the squeezing and sliding connection of the side skateboard 13. By setting a sliding partition 28 between the two side slides 13 of two adjacent slide modules 8, the manufacturing process of the side slides 13 can be reduced, the cost can be lowered, and the upper projected area of ​​the slide module 8 can be reduced, thus reducing the volume of the slide module 8. Through the combination and connection of the slide module 8 and the sliding partition 28, the volume of the slide module 8 is reduced and the softness of the spring pad is improved. Furthermore, by setting a sliding partition 28 between two adjacent slide modules A8-1, and through the rolling connection between the roller 26 and the sliding partition 28, the volume of the slide module 8 is reduced and the softness of the spring pad is improved. The connection allows adjacent sliding plate modules A8-1 to rise and fall more smoothly. The more connecting parts of the slider connector 6, the better the soft support function of the spring pad. The interconnection of adjacent sliding partition plates 28 via elastic cords 29 ensures stable rising and falling, preventing collisions. A soft belt pulley 31 is installed inside the soft belt hole 30, and the soft belt pulley 31 is in rolling connection with the connecting soft belt 10. When adjacent sliding plate modules 8 and sliding partition slide plates A28-1 rise and fall relative to each other, the sliding plate wheels 27 on the sliding partition plates A28-1... The separation and connection function of the soft belt 10 and the rolling function of the soft belt pulley 31 are beneficial to improving the bending effect and flexible connection of the soft belt 10, preventing the soft belt 10 from being damaged due to excessive bending and thus affecting its service life. Furthermore, when the soft belt 10 pulls one end of the tension spring 9 up and down, the distance between one end of the tension spring 9 and the lower side of the slide plate module 8 can be set to control the movement distance of one end of the soft belt 10, which indirectly helps to control the vertical sliding distance between the two adjacent side slide plates 13. The spring pad product made by combining the above technical solutions is creative and novel. The product made by this utility model is pollution-free, durable, and more popular with consumers.

Claims

1. A spring pad assembled by a slider connector, comprising a base plate (1), wherein an elastic support (2) is provided on the base plate (1), and a face shield (3) is covered above the elastic support (2), characterized in that... The elastic support body (2) includes a support spring (5) and a slider connector (6). The slider connector (6) includes a slide plate module (8). The slide plate module (8) is provided with a connecting soft strap (10). The adjacent slide plate modules (8) are connected by the connecting soft strap (10) with tension. The side slide plate (13) is provided on the side surface of the slide plate module (8). The adjacent slide plate modules (8) are connected by squeezing each other and sliding up and down through the side slide plate (13). The lower side of the slide plate module (8) is connected to the upper end of the support spring (5). The lower end of the support spring (5) is connected to the base plate (1).

2. A spring pad assembled by a slider connector as described in claim 1, characterized in that... The skateboard module (8) is provided with a soft belt groove (11), and a soft belt roller (12) is installed in the soft belt groove (11). The connecting soft belt (10) is connected to the soft belt roller (12) through the soft belt groove (11). The skateboard module (8) is provided with a tension spring (9), and the connecting soft belt (10) is connected to the tension spring (9).

3. A spring pad assembled by a slider connector as described in claim 1 or 2, characterized in that, The skateboard module (8) and the mask (3) are both provided with adjustment holes (15). The support spring (5) on the lower side of the skateboard module (8) is equipped with a control frame A (16). The support spring (5) on the base plate (1) is equipped with a control frame B (17). The adjustment hole (15) of the skateboard module (8) is equipped with an adjustment screw (18). The lower end of the adjustment screw (18) is connected to the lower end of the control frame A (16). The adjustment screw (18) is equipped with an adjustment nut (19). The adjustment nut (19) is connected to one end of the tension spring (9). The control frame B (17) is connected with a buffer spring (20). The buffer spring (20) is connected with a positioning bracket B (22). The lower side of the control frame A (16) is connected with a positioning bracket A (21).

4. A spring pad assembled by a slider connector as described in claim 1 or 2, characterized in that... The skateboard module (8) includes a skateboard module A (8-1) and a skateboard module B (8-2). The skateboard module A (8-1) and the skateboard module B (8-2) are spaced apart. The side skateboard (13) of the skateboard module A (8-1) is provided with a roller group (25). The roller group (25) is equipped with rollers (26). The skateboard module A (8-1) and the skateboard module B (8-2) are connected by mutual squeezing and sliding up and down through the rollers (26).

5. A spring pad assembled by a slider connector as described in claim 1 or 2, characterized in that... A sliding partition (28) is provided between adjacent sliding plate modules (8). An elastic pull rope (29) is provided on the sliding partition (28). Adjacent sliding partitions (28) are connected by the elastic pull rope (29). A soft strap hole (30) is provided on the sliding partition (28). The connecting soft strap (10) passes through the soft strap hole (30) to connect the adjacent sliding plate modules (8) to the sliding partition (28) respectively. The side sliding plates (13) on the adjacent sliding plate modules (8) are squeezed against each other and rolled up and down to connect with the sliding partition (28).

6. A spring pad assembled by a slider connector as described in claim 5, characterized in that the sliding partition plate (28) includes a sliding partition plate A (28-1), a sliding plate wheel (27) is mounted on the sliding partition plate A (28-1), the sliding plate wheel (27) is tactilely connected to the sliding partition plate A (28-1), a soft belt wheel (31) is mounted in the soft belt hole (30), the connecting soft belt (10) is tactilely connected to the soft belt wheel (31), and the sliding partition plate A (28-1) is mutually squeezed and slidably connected to the side sliding plate (13) provided on the adjacent sliding plate module (8) through the sliding plate wheel (27).

7. A spring pad assembled by a slider connector as described in claim 1 or 2, characterized in that... The upper projection area of ​​the skateboard module (8) is set to 30-80 square centimeters, the height of the side skateboard (13) on the side facade of the skateboard module (8) is set to 3-6 centimeters, and the vertical sliding distance between two adjacent side skateboards (13) is set to 1-3 centimeters.