Embedded framework of practical intelligent mattress
By employing a double-sided mesh design and a rationally arranged motor mounting bracket on the smart mattress frame, the problems of insufficient thickness and motor movement space in smart mattresses are solved, resulting in better elasticity, extended service life, and enhanced diversity in firmness selection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG QIANYOU QIANXUN SMART HOME CO LTD
- Filing Date
- 2025-05-23
- Publication Date
- 2026-04-24
AI Technical Summary
Existing smart mattresses are generally quite thick, making it difficult for consumers to agree on their needs. Furthermore, insufficient space for motor movement can easily lead to mechanical breakage and affect the lifespan of the mattress.
The motor mounting bracket, featuring a double-sided grid design and a reasonable layout, ensures ample space for motor movement. Stable splicing of various components is achieved through U-shaped iron blocks and connectors, while diagonal bracing prevents breakage.
This results in better mattress elasticity and thickness, while also improving lifespan and fatigue resistance, and enhancing consumers' choices in firmness.
Smart Images

Figure CN224155375U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mattress frame technology, specifically relating to an embedded frame for a practical smart mattress. Background Technology
[0002] The mattress frame refers to the core support structure inside the mattress. It is a key component that determines the mattress's support and lifespan. As the mattress's "skeleton system," it distributes body pressure through springs or rigid materials (such as palm or jute) to maintain the mattress's shape stability. When used in conjunction with the bed frame (such as pine or beech wood), the gap between the frames must be ≤3cm to protect the spring system and prevent localized collapse.
[0003] Most existing smart mattresses have some design differences, such as the arrangement of the frame or the choice of motor, which lead to differences in product use. Among these differences, there is a significant pain point for consumers: the finished smart mattresses on the market are generally thick, which consumers are quite concerned about, making it difficult for consumers to have a unified demand for the firmness and thickness of the mattress. Utility Model Content
[0004] To address the problems mentioned in the background section, this invention provides an embedded frame for a practical smart mattress, characterized by high strength, reasonable design, and strong applicability.
[0005] To achieve the above objectives, the present invention provides the following technical solution: an embedded frame for a practical smart mattress, including a head assembly, a head drive motor disposed inside the upper end of the head assembly, a waist assembly disposed on one side of the head assembly, a leg assembly disposed on one side of the waist assembly, a foot assembly disposed on one side of the leg assembly, and a foot drive motor disposed inside the upper end of the leg assembly.
[0006] Preferably, the head assembly includes a U-shaped connecting buckle, a head connecting tube, a head connecting frame, a head motor long tube one, a head long tube one, a head metal mesh, a head bend, a supporting long tube, a head motor long tube two, a head intermediate connecting tube, a head long tube two, and a head intermediate mesh. The head long tube one is symmetrically arranged on both sides of the head bend, and a head long tube two is arranged on the opposite side of the head long tube one. Two sets of supporting long tubes are symmetrically arranged on the surface of the head long tube two. A head intermediate connecting tube is arranged at one end of each supporting long tube. A head motor long tube one is arranged between the head intermediate connecting tubes. A head motor long tube two is arranged on one side of the head motor long tube one. A U-shaped connecting buckle is arranged on the surface of the head motor long tube two. A head intermediate mesh is arranged on the side of the head motor long tube two away from the U-shaped connecting buckle. A head metal mesh is arranged on both the upper and lower surfaces of the head bend. A head connecting tube is arranged at the upper part of both ends of the head bend, and a head connecting frame is arranged on one side of the head connecting tube.
[0007] Preferably, the waist assembly includes a waist motor support frame, a U-shaped iron block, a waist metal mesh, a waist connecting tube, a waist long tube one, a waist long tube two, a waist long tube three, a waist long tube four, a waist long tube five, and a waist intermediate mesh. A U-shaped iron block is connected to one side of the head connecting tube, a waist connecting tube is located on one side of the U-shaped iron block, a waist long tube one is located at the bottom of the waist connecting tube, waist long tube five is symmetrically located at both ends of waist long tube one, waist long tube four is located at one end of waist long tube five, waist long tube three is located on one side of the bottom end of waist long tube four, a waist motor support frame is located at the upper end of waist long tube four, a waist long tube two is located between the waist motor support frames, a waist intermediate mesh is located on the surface of waist long tube two, and a waist metal mesh is located on the upper and lower surfaces of waist long tube one.
[0008] Preferably, the leg assembly includes a leg frame, a leg metal mesh, a side connecting frame, a motor bracket, a motor positioning seat, and a receiving frame. A receiving frame is connected to one side of the waist motor support frame, a motor bracket is installed inside the receiving frame, a motor positioning seat is installed on the surface of the motor bracket, a side connecting frame is symmetrically connected to one side of the waist section of the waist frame, a leg frame is symmetrically installed on one side of the side connecting frame, and leg metal mesh is installed on the upper and lower surfaces of the leg frame.
[0009] Preferably, the foot assembly includes a motor driven frame, a diagonal brace, a first foot tube, a foot metal mesh, a plug, a second foot tube, a bent foot tube, and a third foot tube. One end of the receiving frame is connected to the motor driven frame. The second foot tube is located on one side of the motor driven frame. A plug is located inside the second foot tube. A diagonal brace is located on one side of the second foot tube. One end of the side connecting frame is connected to the first foot tube. Foot metal mesh is located on both the upper and lower surfaces of the first foot tube. A bent foot tube is located at one end of the first foot tube. The third foot tube is located inside the bent foot tube, corresponding to the second foot tube.
[0010] Preferably, U-shaped iron blocks are provided at the connection points of the waist motor support frame, the waist long tube, the motor driven frame, and the foot long tube.
[0011] Compared with the prior art, the beneficial effects of this utility model are:
[0012] 1. This utility model, by setting a double-sided mesh on the mattress frame, can better distribute the pressure brought by the human body. At the same time, the presence of the mesh will make the mattress more elastic in actual use. Compared with other mattress frame styles, the overall thickness of the mattress frame after installing soft materials such as foam will be relatively thinner. Furthermore, due to the reasonable design of the frame, consumers can have more diverse choices of soft materials.
[0013] 2. By setting up a motor mounting bracket, support bracket and receiving bracket, this utility model can reasonably avoid the motor's movement space. The diagonal brace design of the foot component can avoid breakage caused by repeated mechanical movements and improve the service life of the product. The U-shaped part of the motor mounting and fixing position is thickened to increase its service life and enhance its fatigue resistance. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the flat state of this utility model;
[0016] Figure 3 This is a schematic diagram of the head assembly structure of this utility model;
[0017] Figure 4 This is a schematic diagram of the waist component structure of this utility model;
[0018] Figure 5 This is a schematic diagram of the leg component structure of this utility model;
[0019] Figure 6 This is a schematic diagram of another part of the leg assembly of this utility model;
[0020] Figure 7 This is a schematic diagram of the foot component structure of this utility model.
[0021] In the diagram: 1. Head drive motor; 2. Head assembly; 21. U-shaped connecting buckle; 22. Head connecting tube; 23. Head connecting frame; 24. Head motor long tube one; 25. Head long tube one; 26. Head metal mesh; 27. Head bent tube; 28. Support long tube; 29. Head motor long tube two; 210. Head middle connecting tube; 211. Head long tube two; 212. Head middle mesh; 3. Waist assembly; 31. Waist motor support frame; 32. U-shaped iron block; 33. Waist metal mesh; 34. Waist connecting tube; 35. Waist long tube 1. Waist tube 2; 36. Waist tube 3; 38. Waist tube 4; 39. Waist tube 5; 310. Waist middle mesh; 4. Leg assembly; 41. Leg frame; 42. Leg metal mesh; 43. Side connecting frame; 44. Motor bracket; 45. Motor positioning seat; 46. Support frame; 5. Foot assembly; 51. Motor driven frame; 52. Diagonal brace; 53. Foot tube 1; 54. Foot metal mesh; 55. End cap; 56. Foot tube 2; 57. Foot bend tube; 58. Foot tube 3; 6. Foot drive motor. Detailed Implementation
[0022] 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 of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] Please see Figure 1-7 The present invention provides the following technical solution: an embedded frame for a practical smart mattress, including a head assembly 2, a head drive motor 1 disposed inside the upper end of the head assembly 2, a waist assembly 3 disposed on one side of the head assembly 2, a leg assembly 4 disposed on one side of the waist assembly 3, a foot assembly 5 disposed on one side of the leg assembly 4, and a foot drive motor 6 disposed inside the upper end of the leg assembly 4.
[0024] Specifically, the head assembly 2 includes a U-shaped connecting buckle 21, a head connecting tube 22, a head connecting frame 23, a head motor long tube 1 24, a head long tube 1 25, a head metal mesh 26, a head bent tube 27, a support long tube 28, a head motor long tube 29, a head intermediate connecting tube 210, a head long tube 211, and a head intermediate mesh 212. The head bent tube 27 has a head long tube 1 25 symmetrically arranged on both sides, and a head long tube 211 is arranged on the opposite side of the head long tube 1 25. Two sets of support long tubes 28 are symmetrically arranged on the surface of the head long tube 211. One end of the tube 28 is provided with a head intermediate connecting tube 210. A head motor long tube 1 24 is provided between the head intermediate connecting tubes 210. A head motor long tube 29 is provided on one side of the head motor long tube 1 24. A U-shaped connecting iron buckle 21 is provided on the surface of the head motor long tube 29. A head intermediate grid 212 is provided on the side of the head motor long tube 29 away from the U-shaped connecting iron buckle 21. A head metal grid 26 is provided on the upper and lower sides of the head bend tube 27. A head connecting tube 22 is provided at the upper part of both ends of the head bend tube 27. A head connecting frame 23 is provided on one side of the head connecting tube 22.
[0025] By adopting the above technical solution, it is ensured that the head drive motor 1 can be installed at the U-shaped connecting iron buckle 21 through the pin, and has sufficient room to move to drive the head tube 25 for adjustment, thus ensuring the effectiveness of the equipment.
[0026] Specifically, the waist component 3 includes a waist motor support frame 31, a U-shaped iron block 32, a waist metal mesh 33, a waist connecting tube 34, a waist long tube 1 35, a waist long tube 2 36, a waist long tube 37, a waist long tube 4 38, a waist long tube 5 39, and a waist middle mesh 310. The head connecting tube 22 has a U-shaped iron block 32 connected to one side, a waist connecting tube 34 is located on one side of the U-shaped iron block 32, and a waist long tube 1 35 is located at the bottom end of the waist connecting tube 34. The two ends of the waist tube 1 35 are symmetrically provided with waist tube 5 39, one end of the waist tube 5 39 is provided with waist tube 4 38, one side of the bottom end of the waist tube 4 38 is provided with waist tube 37, the upper end of the waist tube 4 38 is provided with waist motor support frame 31, waist tube 2 36 is provided between the waist motor support frames 31, the surface of waist tube 2 36 is provided with waist middle grid 310, and the upper and lower sides of the waist tube 1 35 are provided with waist metal grid 33.
[0027] By adopting the above technical solution, the head long tube 25 and the waist long tube 35 are spliced by connecting the U-shaped iron block 32 to the head connecting frame 23, and the head motor long tube 24 and the waist motor support frame 31 can be spliced at the same time to ensure the integrity of the mattress frame.
[0028] Specifically, the leg assembly 4 includes a leg frame 41, a leg metal mesh 42, a side connecting frame 43, a motor bracket 44, a motor positioning seat 45, and a support frame 46. The support frame 46 is connected to one side of the waist motor support frame 31. The motor bracket 44 is installed inside the support frame 46. The motor positioning seat 45 is installed on the surface of the motor bracket 44. The side connecting frame 43 is symmetrically connected to one side of the waist tube 35 of the waist frame. The leg frame 41 is symmetrically arranged on one side of the side connecting frame 43. The leg metal mesh 42 is installed on the upper and lower surfaces of the leg frame 41.
[0029] By adopting the above technical solution, the two sets of side connecting frames 43 are assembled with the waist tube 35 to achieve leg support and stability, and a support frame 46 is set to connect with the waist motor support frame 31 to ensure that the motor has enough room to move so that the subsequent components can be adjusted when the support frame 46 is adjusted.
[0030] Specifically, the foot assembly 5 includes a motor driven frame 51, a diagonal brace 52, a first foot tube 53, a foot metal mesh 54, a plug 55, a second foot tube 56, a foot bend 57, and a third foot tube 58. One end of the receiving frame 46 is connected to the motor driven frame 51. The second foot tube 56 is provided on one side of the motor driven frame 51. A plug 55 is provided inside the second foot tube 56. The diagonal brace 52 is provided on one side of the second foot tube 56. One end of the side connecting frame 43 is connected to the first foot tube 53. The first foot tube 53 has a foot metal mesh 54 on both the upper and lower surfaces. The first foot tube 53 has a foot bend 57 at one end. The third foot tube 58 is provided inside the foot bend 57 corresponding to the second foot tube 56.
[0031] By adopting the above technical solution, the connection between the motor driven frame 51 and the receiving frame 46 ensures that the leg tube 53 can be adjusted during angle adjustment, thus guaranteeing the quality of angle adjustment. At the same time, the inclined support frame 52 can prevent breakage caused by repeated mechanical activities and improve the service life of the equipment.
[0032] Specifically, U-shaped iron blocks 32 are provided at the connection points of the waist motor support frame 31, waist long tube 35, motor driven frame 51, and foot long tube 53.
[0033] By adopting the above technical solutions, the convenience and stability of the connection between the various components of the mattress frame are ensured, the integrity of the equipment is guaranteed, and the quality of use is guaranteed.
[0034] The working principle and usage process of this utility model are as follows: When using this utility model with the mattress frame, the U-shaped iron block 32 at one end of the waist connecting tube 34 is inserted into the head connecting frame 23 on one side of the head connecting tube 22. Then, a pin is passed through the inside of the U-shaped iron block 32 and the head connecting frame 23 to assemble the head tube 25 and the waist tube 35. At the same time, the head motor tube 24 and the waist motor support frame 31 are assembled in the same way. Then, the side connecting frame 43, the support frame 46 and the foot tube 53 are assembled in sequence to ensure the convenience of the overall installation of the mattress frame. At the same time, the foot drive motor 6 can be installed inside the motor positioning seat 45 through the pin, and the head drive motor 1 is simultaneously installed into the U-shaped connecting iron buckle 21 for limiting, so that the head drive motor 1 and the foot drive motor 6 can drive the frame angle to adjust.
[0035] The double-sided mesh distribution can better distribute the pressure from the human body. At the same time, the mesh will make the mattress more elastic in actual use. Also, when the frame is used, the overall thickness will be relatively thinner after installing soft materials such as foam.
[0036] Furthermore, due to the reasonable design of the frame, consumers can have more diverse choices in terms of software. The head motor tube 24, waist motor support frame 31, support frame 46 and motor driven frame 51 are higher than the surface of the frame, which can reasonably avoid the movement space of the head drive motor 1 and foot drive motor 6, ensuring the stability of adjustment.
[0037] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An embedded frame for a practical smart mattress, comprising a head assembly (2), characterized in that: The head assembly (2) has a head drive motor (1) inside its upper end, a waist assembly (3) on one side of the head assembly (2), a leg assembly (4) on one side of the waist assembly (3), a foot assembly (5) on one side of the leg assembly (4), and a foot drive motor (6) inside its upper end. The head assembly (2) includes a U-shaped connecting buckle (21), a head connecting tube (22), a head connecting frame (23), a head motor long tube one (24), a head long tube one (25), a head metal mesh (26), a head bent tube (27), a support long tube (28), a head motor long tube two (29), a head middle connecting tube (210), a head long tube two (211), and a head middle mesh (212). The head bent tube (27) has a head long tube one (25) symmetrically arranged on both sides. The head long tube two (211) is arranged on the opposite side of the head long tube one (25). The surface of the head long tube two (211) has two sets of support long tubes (28) symmetrically arranged to support... One end of the long tube (28) is provided with a head intermediate connecting tube (210), and a head motor long tube one (24) is provided between the head intermediate connecting tubes (210). A head motor long tube two (29) is provided on one side of the head motor long tube one (24). A U-shaped connecting iron buckle (21) is provided on the surface of the head motor long tube two (29). A head intermediate grid (212) is provided on the side of the head motor long tube two (29) away from the U-shaped connecting iron buckle (21). A head metal grid (26) is provided on the upper and lower sides of the head bend tube (27). A head connecting tube (22) is provided on the upper part of both ends of the head bend tube (27). A head connecting frame (23) is provided on one side of the head connecting tube (22). The waist component (3) includes a waist motor support frame (31), a U-shaped iron block (32), a waist metal mesh (33), a waist connecting tube (34), a waist long tube one (35), a waist long tube two (36), a waist long tube three (37), a waist long tube four (38), a waist long tube five (39), and a waist middle mesh (310). A U-shaped iron block (32) is connected to one side of the head connecting tube (22), a waist connecting tube (34) is provided on one side of the U-shaped iron block (32), and a waist long tube one (35) is provided at the bottom end of the waist connecting tube (34). The waist tube 1 (35) is symmetrically provided with waist tube 5 (39) at both ends, waist tube 4 (38) is provided at one end of waist tube 5 (39), waist tube 3 (37) is provided on one side of the bottom end of waist tube 4 (38), waist motor support frame (31) is provided at the upper end of waist tube 4 (38), waist tube 2 (36) is provided between waist motor support frames (31), waist middle grid (310) is provided on the surface of waist tube 2 (36), and waist metal grid (33) is provided on the upper and lower sides of waist tube 1 (35). The leg assembly (4) includes a leg frame (41), a leg metal mesh (42), a side connecting frame (43), a motor bracket (44), a motor positioning seat (45), and a support frame (46). The support frame (46) is connected to one side of the waist motor support frame (31). The motor bracket (44) is installed inside the support frame (46). The motor positioning seat (45) is installed on the surface of the motor bracket (44). The side connecting frame (43) is symmetrically connected to one side of the waist tube (35) of the waist frame. The leg frame (41) is symmetrically installed on one side of the side connecting frame (43). The leg metal mesh (42) is installed on the upper and lower surfaces of the leg frame (41). The foot assembly (5) includes a motor driven frame (51), a diagonal brace (52), a foot tube one (53), a foot metal mesh (54), a plug (55), a foot tube two (56), a foot bend (57), and a foot tube three (58). One end of the receiving frame (46) is connected to the motor driven frame (51). A foot tube two (56) is provided on one side of the motor driven frame (51). A plug (55) is provided inside the foot tube two (56). A diagonal brace (52) is provided on one side of the foot tube two (56). One end of the side connecting frame (43) is connected to the foot tube one (53). A foot metal mesh (54) is provided on the upper and lower surfaces of the foot tube one (53). A foot bend (57) is provided at one end of the foot tube one (53). A foot tube three (58) is provided inside the foot bend (57) corresponding to the foot tube two (56).
2. The embedded frame of a practical smart mattress according to claim 1, characterized in that: The connection points of the waist motor support frame (31), waist tube 1 (35), motor driven frame (51), and foot tube 1 (53) are all equipped with U-shaped iron blocks (32).