Intelligent vibration bed with suspension bed plate

By combining a suspended bed board and a vibration device, the shortcomings of traditional beds in terms of comfort, personalization, and stability are solved. This achieves even distribution of body pressure, blood circulation, and muscle relaxation, providing a personalized sleep experience and convenient intelligent control, thus improving the ease of use and safety of the bed.

CN223529179UActive Publication Date: 2025-11-11GUANGDONG GUOZHAN TECH CO LTD
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Patent Information

Application Number
CN202422741194.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-11-11
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

Traditional beds are inadequate in terms of comfort, personalization, stability, and safety. They cannot evenly distribute body pressure, lack functions to promote blood circulation and muscle relaxation, and are cumbersome to operate with inconvenient parameter adjustments.

Method used

A smart vibrating bed with a suspended bed board was designed. The suspended bed board and vibration device achieve even distribution of body pressure. Combined with multi-point support, load-bearing columns and adjustable motor, it provides a personalized sleep experience and enables convenient smart control through a controller.

Benefits of technology

It improves sleep comfort, achieves even distribution of body pressure, promotes blood circulation and muscle relaxation, provides a personalized sleep experience, ensures the stability and safety of the bed, and enhances ease of use.

✦ 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 beds, in particular to an intelligent vibration bed with a suspension bed board, which comprises a bed frame, a mattress, a vibration device, a suspension bed board and a suspension device, the suspension bed board and the suspension device are arranged on the bed frame, and the suspension device is mounted on the bed frame, connected with the suspension bed board and used for suspending the suspension bed board above the mattress. The vibrating device is arranged below the mattress and is used for vibrating the mattress; the suspension device is mounted on the bed frame, is connected with the suspension bed plate and is used for skillfully suspending the suspension bed plate above the mattress, so that unique suspension experience is created for a user; meanwhile, the vibration device arranged below the mattress can generate vibration, the vibration is transmitted through the mattress, the massage effect can be simulated, blood circulation can be promoted, muscular tension can be relieved, the nervous system can be stimulated, the user can be helped to enter a relaxed state more quickly, the sleep quality is further improved, and the comfort of the user is improved. And brand-new and high-quality sleep feelings are brought to users.
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Description

Technical Field

[0001] This utility model relates to the field of bed technology, and in particular discloses an intelligent vibrating bed with a suspended bed board. Background Technology

[0002] In today's fast-paced life, sleep quality is crucial, and the performance of a bed directly impacts the sleep experience. Traditional beds have many shortcomings. In terms of comfort, they fail to evenly distribute body pressure, leading to localized pressure points on the back and waist, and lack functions to promote blood circulation and relieve muscle tension, thus affecting sleep comfort. Regarding personalization, they cannot meet the needs of different users' heights, body types, and sleeping habits. Stability and safety are also lacking; they are prone to wobbling during use, posing safety hazards. In terms of control, operation is cumbersome, and parameter adjustments are difficult to make convenient. In view of these problems, we have designed a new type of bed that overcomes the shortcomings of traditional beds through a unique design. This bed enhances comfort; its suspended bed board provides a floating feel, evenly distributing pressure and relieving constriction, while the vibration device promotes blood circulation and muscle relaxation. Users can also independently adjust the parameters of the suspension and vibration devices for a personalized experience. Furthermore, its multi-point support, load-bearing columns, and adjustable motor design ensure stability and safety, and a convenient controller enables precise and intelligent control. Utility Model Content

[0003] In order to overcome the shortcomings and deficiencies of the existing technology, the purpose of this utility model is to provide an intelligent vibrating bed with a suspended bed board.

[0004] To achieve the above objectives, the present invention provides an intelligent vibrating bed with a suspended bed board, comprising a bed frame, a mattress, a vibration device, and a suspended bed board and a suspension device mounted on the bed frame. The suspension device is mounted on the bed frame and connected to the suspended bed board to suspend the suspended bed board above the mattress, and the vibration device is located below the mattress to vibrate the mattress.

[0005] The suspended bed frame design creates a feeling of floating above the mattress. When lying on it, body pressure is distributed more evenly, reducing the formation of localized pressure points compared to traditional beds. This effectively alleviates pressure on the body's contact points with the bed surface, providing better support, especially for areas prone to soreness such as the back and waist, thus improving overall sleep comfort. The vibration device under the mattress generates regular vibrations. This vibration can simulate a massage effect, promoting blood circulation. For those with muscle tension after a busy day, it can help relax muscles and relieve fatigue. Furthermore, the gentle vibrations can stimulate the nervous system to some extent, making it easier to enter a relaxed state and further improving sleep quality. Some suspension and vibration devices can be designed with adjustable modes. Sleepers can adjust the suspension height, vibration frequency, and intensity according to their preferences and physical condition to achieve a personalized sleep experience and meet the needs of different users.

[0006] Furthermore, the suspension device includes a load-bearing belt mounted on the bed frame for supporting the suspension of the bed board, and an adjustment mechanism for adjusting the length of the load-bearing belt and thus adjusting the suspension height of the bed board.

[0007] The adjustment mechanism allows users to change the length of the support belt to adjust the suspension height of the suspended bed board, providing personalized sleeping height options. Users of different heights and body types can find the most comfortable bed board height according to their needs. For example, taller people may need a higher suspension height to ensure that their legs can stretch naturally and avoid leg compression during sleep, thereby improving overall sleep comfort. The adjustment mechanism makes adjusting the height of the suspended bed board simple and convenient. Users can easily change the bed board height without complicated tools or professional assistance. Whether it is a minor daily adjustment or a larger adjustment required due to special circumstances (such as injury, recovery period, etc.), it can be completed quickly, increasing the convenience of using the bed. As a key component supporting the suspended bed board, the support belt is designed to ensure the stability of the bed. A high-quality support belt can evenly distribute the weight of the bed board and the human body, avoiding excessive local pressure, making the bed more stable during use, reducing shaking and noise, and creating a quiet and comfortable sleeping environment for users.

[0008] Furthermore, the number of load-bearing belts, adjustment mechanisms, and suspended bed boards are all set to be multiple, with multiple suspended bed boards spaced apart, the central axes of the multiple suspended bed boards being consistent, and multiple load-bearing belts arranged around the central axis of the suspended bed boards.

[0009] The multiple load-bearing belts, adjustment mechanisms, and suspended bed boards provide multi-point support for the entire bed. Compared to a single support structure, this multi-point support distributes the weight of the bed and the user more evenly, making the bed more stable during use. Whether the user turns over, moves, or performs minor activities in bed, the bed remains stable without noticeable wobbling or tilting, providing a safe and reliable sleeping environment.

[0010] Furthermore, the bed frame is equipped with support columns, and the interior of the support columns is formed into a grid-shaped hollow structure to accommodate the support belt. The support columns are provided with a first perforation and a second perforation, through which the support belt passes and connects to the suspension bed board and the adjustment mechanism respectively.

[0011] The internal structure of the support column is a hollow, grid-like design, providing a stable space for the support belt. This grid structure offers high strength and stability, effectively bearing the tensile and compressive forces transmitted by the support belt. Simultaneously, the hollow structure reduces the weight of the support column, making the entire bed frame lighter and easier to transport and install. The support belt passes through the first and second perforations on the support column, connecting to the suspension bed board and the adjustment mechanism respectively. This design standardizes the belt's path, making it more stable during operation. The position and size of the perforations are carefully designed to ensure that the support belt does not slip, twist, or jam when passing through, thus guaranteeing the smooth raising and lowering of the suspension bed board and the normal operation of the adjustment mechanism. The hollow structure inside the support column protects the support belt, preventing direct exposure to the external environment and reducing damage caused by friction, wear, dust, and moisture. This extends the service life of the support belt and reduces maintenance and replacement costs.

[0012] Furthermore, the adjustment mechanism has an adjustment motor mounted on the bed frame. The output shaft of the adjustment motor is equipped with a rotating wheel, which is connected to the load-bearing belt. The output shaft of the adjustment motor rotates forward or backward to cause the load-bearing belt to be wound or unwound on the rotating wheel, thereby controlling the raising or lowering of the suspended bed board.

[0013] The introduction of the adjustable motor automates the height adjustment of the suspended bed board. Users no longer need to perform laborious manual operations; simply controlling the forward or reverse rotation of the adjustable motor allows for easy winding or unwinding of the support belt, thus precisely controlling the raising or lowering of the suspended bed board. This convenient operation significantly improves the user experience, especially for users with limited mobility or those who need to frequently adjust the bed board height. The adjustable motor connects to the support belt via a rotating wheel, ensuring even force distribution on the support belt during winding or unwinding. This makes the suspended bed board more stable during raising or lowering, preventing dangerous situations such as swaying, tilting, or sudden falls. Simultaneously, the stable operation of the adjustable motor extends the service life of the support belt and the entire adjustment mechanism, improving the bed's reliability and safety.

[0014] Furthermore, the vibration device has a base frame set on an external bearing plane, a vibration mechanism and a vibration frame connected to the vibration mechanism are mounted on the base frame, and the vibration frame and the base frame are slidably connected.

[0015] The base frame is mounted on an external bearing surface, providing a stable foundation for the vibration device. This design effectively reduces swaying and displacement during operation, ensuring the stability and reliability of the vibration. The sliding connection between the vibration frame and the base frame ensures more even vibration transmission. This design avoids excessive localized stress, reducing wear and damage to various components of the vibration device, thus extending its lifespan. Simultaneously, the sliding connection also reduces vibration noise, providing a quieter and more comfortable sleeping environment for users. The connection between the vibration mechanism and the vibration frame allows for adjustment of the vibration intensity. Users can select different vibration intensities according to their needs and preferences to achieve the best relaxation effect.

[0016] Furthermore, the vibration mechanism has a vibration motor mounted on the base frame, a first sliding member, a transmission assembly rotatably mounted on the base frame, and a second sliding member mounted on the vibration frame. The transmission assembly is connected to the vibration frame, and the first and second sliding members are slidably connected. The vibration motor drives the vibration frame to slide on the base frame via the two sliding members through the transmission assembly.

[0017] The vibration motor, as a power source, provides stable and powerful vibration energy. Its professional design ensures that the vibration frequency and amplitude can be precisely adjusted according to needs, meeting the personalized requirements of different users for vibration intensity. The transmission component plays a crucial connecting role between the vibration motor and the vibration frame. It accurately transmits the power of the vibration motor to the vibration frame, ensuring uniform and stable vibration. Through a carefully designed transmission ratio and structure, efficient energy transmission is achieved, reducing energy loss and improving the working efficiency of the vibration device. The sliding connection between the first and second sliding parts makes the movement of the vibration frame on the base frame smoother. This design reduces frictional resistance, ensuring that the vibration frame can respond quickly under the drive of the vibration motor and achieve smooth sliding. Whether in fast or slow vibration modes, the movement of the vibration frame is guaranteed to be smooth and without jamming or instability. Through the control of the vibration motor and the cooperation of the transmission component, various vibration modes can be achieved.

[0018] Furthermore, the transmission assembly includes a first gear, a second gear, a first belt, a second belt, and a first shaft and a second shaft rotatably mounted on the base frame. The first gear is connected to the output shaft of the vibration motor. The first belt is sleeved on the outer periphery of the first gear and the second gear. The second belt is sleeved on the outer periphery of the first shaft and the second shaft. The second gear and the second shaft are coaxially arranged. The second belt is connected to the vibration frame.

[0019] The transmission assembly achieves multi-stage transmission through a combination of a first gear, a second gear, a first belt, a second belt, and a first and second rotating shaft. This design effectively transmits and amplifies the power of the vibration motor, ensuring the vibration frame receives sufficient power for sliding. Simultaneously, multi-stage transmission optimizes the power transmission process, resulting in smoother and more uniform vibration. By selecting gears and belts of different sizes, different transmission ratios can be achieved. This allows the vibration device to be adjusted according to various needs, such as adjusting the vibration frequency and amplitude. Users can choose the appropriate transmission ratio based on their preferences and physical condition to obtain the optimal vibration effect.

[0020] Furthermore, a first ball and a second ball are provided between the first sliding member and the second sliding member. Both the first sliding member and the second sliding member are formed with a first arc-shaped portion for cooperating with the first ball rolling and a second arc-shaped portion for cooperating with the second ball rolling. A limiting member for abutting and stopping the second sliding member is installed on the first sliding member.

[0021] By placing a first ball bearing and a second ball bearing between the first and second sliding members, the frictional resistance between them is greatly reduced. When the vibration frame slides on the base frame, the ball bearings can roll quickly, making the sliding process smoother. Whether it's rapid sliding driven by the vibration motor or slow movement for fine-tuning, it can be easily achieved, improving the response speed and accuracy of the vibration device. Both the first and second sliding members have a first arc-shaped portion for cooperating with the rolling of the first ball bearing and a second arc-shaped portion for cooperating with the rolling of the second ball bearing. This arc-shaped design ensures that the ball bearings maintain stable contact during rolling, preventing deviation or jumping. Simultaneously, the arc-shaped portion also provides a certain degree of limit on the ball bearings, preventing them from falling off during sliding and ensuring the reliability of the sliding. The limiting component installed on the first sliding member can abut and stop the second sliding member, providing a limiting protection function. When the vibration frame slides to a certain position, the limiting component can prevent excessive sliding, avoiding structural damage or safety accidents caused by exceeding the design range. The presence of the limiting component allows for precise control of the sliding range of the vibration frame. By adjusting the position of the limiting component, the maximum and minimum sliding positions of the vibration frame can be set according to actual needs, meeting different usage scenarios and user requirements.

[0022] Furthermore, the bed frame is equipped with a controller, which is electrically connected to the suspension device and the vibration device to control their operating parameters.

[0023] The controller allows users to centrally control the suspension and vibration systems through a single device. There's no need to operate multiple switches or adjustments separately; simple operations on the controller allow for easy adjustment of operating parameters such as suspension height and vibration intensity. The controller enables precise control of the suspension and vibration system parameters. Users can accurately adjust parameters such as the height of the suspension board, vibration frequency, and intensity according to their physical condition, sleep preferences, and different usage scenarios. The controller can connect to smart home systems for intelligent control. Users can remotely control the bed's suspension and vibration systems via smartphones, tablets, and other smart devices, or set timed starts and automatic adjustments. This intelligent control method not only improves the bed's usability but also provides users with a more comfortable and convenient living experience.

[0024] The beneficial effects of this invention are as follows: Enhanced comfort: The suspended bed board provides a feeling of floating, evenly distributing body pressure and relieving constriction; the vibration device promotes blood circulation, relaxes muscles, and improves sleep quality. The combination of these two features enhances the user's sleep comfort. Personalized experience: Users can independently adjust the operating parameters of the suspension and vibration devices to meet their own sleep needs. Stability and safety: Multi-point support, load-bearing column design, adjustable motor, and related structural designs of the vibration device effectively ensure stable and safe sleep. Convenient control: The controller enables centralized, precise, and intelligent control, improving ease of use. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the overall structure of an intelligent vibrating bed with a suspended bed board according to the present invention;

[0026] Figure 2 This is a first cross-sectional view of the present invention;

[0027] Figure 3 This is a second cross-sectional view of the present invention;

[0028] Figure 4 This is a schematic diagram of the first structure of the first sliding member and the second sliding member of this utility model;

[0029] Figure 5 This is a schematic diagram of the second structure of the first sliding member and the second sliding member of this utility model;

[0030] Figure 6 This is a schematic diagram of the transmission component of this utility model;

[0031] Figure 7 This is a schematic diagram of the structure of the load-bearing column of this utility model.

[0032] The reference numerals in the attached drawings include: 1. Bed frame; 11. Support column; 12. First perforation; 13. Second perforation; 2. Mattress; 3. Suspended bed board; 4. Suspension device; 41. Support belt; 42. Adjustment mechanism; 421. Adjustment motor; 422. Rotating wheel; 5. Vibration device; 51. Base frame; 52. Vibration mechanism; 521. Vibration motor; 522. First sliding member; 523. Second sliding member; 524. Transmission assembly; 5241. First gear; 5242. Second gear; 5243. First belt; 5244. Second belt; 5245. First rotating shaft; 5246. Second rotating shaft; 525. First ball bearing; 526. Second ball bearing; 527. First arc-shaped part; 528. Second arc-shaped part; 529. Limiting member; 53. Vibration frame; 6. Controller. Detailed Implementation

[0033] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.

[0034] Please see Figures 1 to 7 As shown, the present invention discloses an intelligent vibrating bed with a suspended bed board, comprising a bed frame 1, a mattress 2, a vibration device 5, a suspended bed board 3 and a suspension device 4 disposed on the bed frame 1. The suspension device 4 is installed on the bed frame 1 and connected to the suspended bed board 3 to suspend the suspended bed board 3 above the mattress 2. The vibration device 5 is disposed below the mattress 2 to vibrate the mattress 2.

[0035] In actual use, the suspended bed board 3 design gives the sleeper a feeling of floating above the mattress 2. When lying on it, the body pressure is distributed more evenly, reducing the formation of localized pressure points compared to traditional beds. This effectively alleviates pressure on the body's contact points with the bed surface, providing better support, especially for areas prone to soreness such as the back and waist, thus improving overall sleep comfort. The vibration device 5 under the mattress 2 generates regular vibrations. This vibration can simulate the effect of a massage, promoting blood circulation. For people with muscle tension after a busy day, it can help relax muscles and relieve fatigue. Furthermore, the slight vibration can stimulate the nervous system to a certain extent, making it easier to enter a relaxed state and further improving sleep quality. Some suspension devices 4 and vibration devices 5 can be designed to be adjustable. Sleepers can adjust the suspension height of the bed board, the frequency and intensity of the vibration according to their preferences and physical conditions, achieving a personalized sleep experience and meeting the needs of different users.

[0036] Specifically, the suspension device 4 has a load-bearing belt 41 mounted on the bed frame 1 for supporting the suspension of the bed board 3, and an adjustment mechanism 42 for adjusting the length of the load-bearing belt 41 and thus adjusting the suspension height of the bed board 3.

[0037] In actual use, the adjustment mechanism 42 can change the length of the support belt 41 to adjust the suspension height of the suspended bed board 3, providing users with a personalized sleeping height option. Users of different heights and body types can find the most comfortable bed board height according to their own needs. For example, taller people may need a higher suspension height to ensure that their legs can stretch naturally and avoid pressure on their legs during sleep, thereby improving overall sleep comfort. The existence of the adjustment mechanism 42 makes adjusting the height of the suspended bed board 3 simple and convenient. Users can easily change the bed board height without complicated tools or professional assistance. Whether it is a daily fine adjustment or a larger adjustment required due to special circumstances (such as injury, recovery period, etc.), it can be completed quickly, increasing the convenience of using the bed. As a key part supporting the suspended bed board 3, the support belt 41 is designed to ensure the stability of the bed. A high-quality support belt 41 can evenly distribute the weight of the bed board and the human body, avoiding excessive local pressure, making the bed more stable during use, reducing shaking and noise, and creating a quiet and comfortable sleeping environment for users.

[0038] Specifically, the number of the load-bearing belt 41, the adjustment mechanism 42, and the suspended bed board 3 are all set to be multiple, the multiple suspended bed boards 3 are spaced apart, the central axis of the multiple suspended bed boards 3 is consistent, and the multiple load-bearing belts 41 are arranged around the central axis of the suspended bed board 3.

[0039] In actual use, the multiple load-bearing belts 41, adjustment mechanism 42, and suspended bed board 3 provide multi-point support for the entire bed. Compared to a single support structure, this multi-point support can more evenly distribute the weight of the bed and the user, making the bed more stable during use. Whether the user turns over, moves, or performs some slight activities on the bed, the bed remains stable without significant shaking or tilting, providing a safe and reliable sleeping environment for the user.

[0040] Specifically, the bed frame 1 is provided with a support column 11. The inside of the support column 11 is formed into a hollow structure in the shape of a grid to accommodate the support belt 41. The support column 11 is provided with a first through hole 12 and a second through hole 13. The support belt 41 passes through the two through holes and is connected to the suspended bed board 3 and the adjustment mechanism 42 respectively.

[0041] In actual use, the support column 11 has a hollow, grid-like structure inside, which provides a stable space for the support belt 41. The grid-like structure has high strength and stability, effectively bearing the tension and pressure transmitted by the support belt 41. Simultaneously, the hollow structure reduces the weight of the support column 11, making the entire bed frame 1 lighter and easier to transport and install. The support belt 41 passes through the first perforation 12 and the second perforation 13 on the support column 11, connecting to the suspension bed board 3 and the adjustment mechanism 42 respectively. This design standardizes the path of the support belt 41, making it more stable during operation. The position and size of the perforations are carefully designed to ensure that the support belt 41 does not slip, twist, or jam when passing through, thus guaranteeing the smooth lifting and lowering of the suspension bed board 3 and the normal operation of the adjustment mechanism 42. The hollow structure inside the support column 11 protects the support belt 41, preventing it from being directly exposed to the external environment and reducing damage caused by friction, wear, dust, moisture, and other factors. This extends the service life of the load-bearing belt 41 and reduces maintenance and replacement costs.

[0042] Specifically, the adjustment mechanism 42 has an adjustment motor 421 mounted on the bed frame 1. The output shaft of the adjustment motor 421 is provided with a rotating wheel 422. The rotating wheel 422 is connected to the bearing belt 41. The output shaft of the adjustment motor 421 rotates forward or backward to cause the bearing belt 41 to be wound or unwound on the rotating wheel 422, so as to control the rise or fall of the suspended bed board 3.

[0043] In practical use, the introduction of the adjusting motor 421 automates the height adjustment of the suspended bed board 3. Users no longer need to perform laborious manual operations; they can easily control the winding or unwinding of the support belt 41 by simply controlling the forward or reverse rotation of the adjusting motor 421, thereby precisely controlling the raising or lowering of the suspended bed board 3. This convenient operation greatly improves the user experience, especially for users with limited mobility or those who need to frequently adjust the bed board height, making it of significant practical importance. The adjusting motor 421 is connected to the support belt 41 via the rotating wheel 422, ensuring that the support belt 41 is evenly stressed during winding or unwinding. This makes the suspended bed board 3 more stable during raising or lowering, preventing dangerous situations such as swaying, tilting, or sudden falls. Simultaneously, the stable operation of the adjusting motor 421 extends the service life of the support belt 41 and the entire adjusting mechanism 42, improving the reliability and safety of the bed.

[0044] Specifically, the vibration device 5 has a base frame 51 set on an external bearing plane, a vibration mechanism 52 and a vibration frame 53 connected to the vibration mechanism 52 on the base frame 51, and the vibration frame 53 is slidably connected to the base frame 51.

[0045] In practical use, this design effectively reduces the shaking and displacement of the vibration device 5 during operation, ensuring the stability and reliability of the vibration. The sliding connection between the vibration frame 53 and the base frame 51 makes the vibration more evenly distributed during transmission. This design avoids excessive localized stress, reducing wear and damage to various components of the vibration device 5, thereby extending its service life. Simultaneously, the sliding connection also reduces noise generated by the vibration, providing users with a quieter and more comfortable sleeping environment. The connection between the vibration mechanism 52 and the vibration frame 53 allows for adjustment of the vibration intensity. Users can select different vibration intensities according to their needs and preferences to achieve the best relaxation effect.

[0046] Specifically, the vibration mechanism 52 has a vibration motor 521 mounted on the base frame 51, a first sliding member 522, a transmission assembly 524 rotatably mounted on the base frame 51, and a second sliding member 523 mounted on the vibration frame 53. The transmission assembly 524 is connected to the vibration frame 53, and the first sliding member 522 and the second sliding member 523 are slidably connected. The vibration motor 521 drives the vibration frame 53 to slide on the base frame 51 through the two sliding members via the transmission assembly 524.

[0047] In practical use, the vibration motor 521 serves as the power source, providing stable and powerful vibration energy. Its professional design ensures that the vibration frequency and amplitude can be precisely adjusted according to needs, meeting the personalized requirements of different users for vibration intensity. The transmission component 524 plays a crucial connecting role between the vibration motor 521 and the vibration frame 53. It accurately transmits the power of the vibration motor 521 to the vibration frame 53, ensuring uniform and stable vibration effects. Through a carefully designed transmission ratio and structure, efficient energy transmission is achieved, reducing energy loss and improving the working efficiency of the vibration device 5. The sliding connection between the first sliding member 522 and the second sliding member 523 makes the movement of the vibration frame 53 on the base frame 51 smoother. This design reduces frictional resistance, ensuring that the vibration frame 53 can respond quickly under the drive of the vibration motor 521, achieving smooth sliding. Whether in a fast or slow vibration mode, the movement of the vibration frame 53 is guaranteed to be smooth without jamming or instability. Through the control of the vibration motor 521 and the cooperation of the transmission component 524, various vibration modes can be achieved.

[0048] Specifically, the transmission assembly 524 includes a first gear 5241, a second gear 5242, a first belt 5243, a second belt 5244, and a first shaft 5245 and a second shaft 5246 rotatably mounted on the base frame 51. The first gear 5241 is connected to the output shaft of the vibration motor 521. The first belt 5243 is sleeved on the outer periphery of the first gear 5241 and the second gear 5242. The second belt 5244 is sleeved on the outer periphery of the first shaft 5245 and the second shaft 5246. The second gear 5242 and the second shaft 5246 are coaxially arranged. The second belt 5244 is connected to the vibration frame 53.

[0049] In actual use, the transmission assembly 524 achieves multi-stage transmission through a combination of the first gear 5241, the second gear 5242, the first belt 5243, the second belt 5244, the first shaft 5245, and the second shaft 5246. This design effectively transmits and amplifies the power of the vibration motor 521, ensuring that the vibration frame 53 receives sufficient power for sliding. Simultaneously, multi-stage transmission optimizes the power transmission process, making the vibration smoother and more uniform. By selecting gears and belts of different sizes, different transmission ratios can be achieved. This allows the vibration device 5 to be adjusted according to different needs, such as adjusting the vibration frequency and amplitude. Users can select a suitable transmission ratio based on their preferences and physical condition to obtain the optimal vibration effect.

[0050] Specifically, a first ball 525 and a second ball 526 are provided between the first sliding member 522 and the second sliding member 523. The first sliding member 522 and the second sliding member 523 are each formed with a first arc-shaped portion 527 for cooperating with the first ball 525 to roll and a second arc-shaped portion 528 for cooperating with the second ball 526 to roll. A limiting member 529 for resisting and stopping the second sliding member 523 is installed on the first sliding member 522.

[0051] In actual use, a first ball bearing 525 and a second ball bearing 526 are arranged between the first sliding member 522 and the second sliding member 523, which greatly reduces the frictional resistance between them. When the vibration frame 53 slides on the base frame 51, the balls can roll quickly, making the sliding process smoother. Whether it is the rapid sliding driven by the vibration motor 521 or the slow movement during fine adjustment, it can be easily achieved, improving the response speed and accuracy of the vibration device 5. Both the first sliding member 522 and the second sliding member 523 have a first arc-shaped portion 527 for cooperating with the rolling of the first ball bearing 525 and a second arc-shaped portion 528 for cooperating with the rolling of the second ball bearing 526. This arc-shaped design can ensure that the balls maintain stable contact during the rolling process and will not deviate or jump. At the same time, the arc-shaped portion can also play a certain limiting role for the balls, preventing the balls from falling off during the sliding process and ensuring the reliability of the sliding. The limiting member 529 installed on the first sliding member 522 can abut and stop the second sliding member 523, playing a limiting protection role. When the vibration frame 53 slides to a certain position, the limiting member 529 prevents it from sliding excessively, avoiding structural damage or safety accidents caused by exceeding the design range. The presence of the limiting member 529 allows for precise control of the sliding range of the vibration frame 53. By adjusting the position of the limiting member 529, the maximum and minimum sliding positions of the vibration frame 53 can be set according to actual needs, meeting different usage scenarios and user requirements.

[0052] Specifically, the bed frame 1 is equipped with a controller 6, which is electrically connected to the suspension device 4 and the vibration device 5 to control their operating parameters.

[0053] In practical use, the controller 6 allows users to centrally control the suspension device 4 and vibration device 5 through a single device. There's no need to operate multiple switches or adjustment devices separately; simple operations on the controller 6 allow for easy adjustment of operating parameters such as the bed's suspension height and vibration intensity. The controller 6 enables precise control of the operating parameters of the suspension device 4 and vibration device 5. Users can accurately adjust parameters such as the height of the suspended bed board 3, the frequency and intensity of vibration, according to their physical condition, sleep preferences, and different usage scenarios. The controller 6 can connect to a smart home system for intelligent control. Users can remotely control the bed's suspension device 4 and vibration device 5 via smartphones, tablets, or other smart devices, or set timed start-ups and automatic adjustments. This intelligent control method not only improves the bed's usability but also provides users with a more comfortable and convenient living experience.

[0054] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. A smart vibrating bed with a suspended bed board, comprising a bed frame (1) and a mattress (2), characterized in that: It also includes a vibration device (5) and a suspended bed board (3) and a suspension device (4) installed on the bed frame (1). The suspension device (4) is installed on the bed frame (1) and connected to the suspended bed board (3) to suspend the suspended bed board (3) above the mattress (2). The vibration device (5) is installed under the mattress (2) to make the mattress (2) vibrate.

2. The intelligent vibrating bed with a suspended bed board according to claim 1, characterized in that: The suspension device (4) has a load-bearing belt (41) installed on the bed frame (1) for supporting the suspension of the bed board (3) and an adjustment mechanism (42) for adjusting the length of the load-bearing belt (41) and thus adjusting the suspension height of the bed board (3).

3. The intelligent vibrating bed with a suspended bed board according to claim 2, characterized in that: The number of load-bearing belts (41), adjustment mechanisms (42) and suspended bed boards (3) are all set to be multiple, the central axes of the multiple suspended bed boards (3) are consistent, and the multiple load-bearing belts (41) are arranged around the central axis of the suspended bed boards (3).

4. The intelligent vibrating bed with a suspended bed board according to claim 2, characterized in that: The bed frame (1) is provided with a support column (11). The support column (11) has a hollow structure in the shape of a grid to accommodate the support belt (41). The support column (11) is provided with a first through hole (12) and a second through hole (13). The support belt (41) passes through the two through holes and is connected to the suspended bed board (3) and the adjustment mechanism (42) respectively.

5. The intelligent vibrating bed with a suspended bed board according to claim 2, characterized in that: The adjustment mechanism (42) has an adjustment motor (421) installed on the bed frame (1). The output shaft of the adjustment motor (421) is provided with a rotating wheel (422). The rotating wheel (422) is connected to the carrying belt (41). The output shaft of the adjustment motor (421) rotates forward or backward to make the carrying belt (41) wind up or unwind on the rotating wheel (422) to control the rise or fall of the suspended bed board (3).

6. The intelligent vibrating bed with a suspended bed board according to claim 1, characterized in that: The vibration device (5) has a base frame (51) set on an external bearing plane. The base frame (51) is provided with a vibration mechanism (52) and a vibration frame (53) connected to the vibration mechanism (52). The vibration frame (53) is slidably connected to the base frame (51).

7. The intelligent vibrating bed with a suspended bed board according to claim 6, characterized in that: The vibration mechanism (52) has a vibration motor (521) mounted on the base frame (51), a first sliding member (522), a transmission assembly (524) rotatably mounted on the base frame (51), and a second sliding member (523) mounted on the vibration frame (53). The transmission assembly (524) is connected to the vibration frame (53), and the first sliding member (522) and the second sliding member (523) are slidably connected. The vibration motor (521) drives the vibration frame (53) to slide on the base frame (51) via the transmission assembly (524).

8. The intelligent vibrating bed with a suspended bed board according to claim 7, characterized in that: The transmission assembly (524) has a first gear (5241), a second gear (5242), a first belt (5243), a second belt (5244), and a first shaft (5245) and a second shaft (5246) rotatably mounted on the base frame (51). The first gear (5241) is connected to the output shaft of the vibration motor (521). The first belt (5243) is sleeved on the outer periphery of the first gear (5241) and the second gear (5242). The second belt (5244) is sleeved on the outer periphery of the first shaft (5245) and the second shaft (5246). The second gear (5242) and the second shaft (5246) are coaxially arranged. The second belt (5244) is connected to the vibration frame (53).

9. A smart vibrating bed with a suspended bed board according to claim 7, characterized in that: A first ball (525) and a second ball (526) are provided between the first sliding member (522) and the second sliding member (523). The first sliding member (522) and the second sliding member (523) are each formed with a first arc-shaped portion (527) for cooperating with the first ball (525) to roll and a second arc-shaped portion (528) for cooperating with the second ball (526) to roll. A limiting member (529) for resisting and stopping the second sliding member (523) is installed on the first sliding member (522).

10. The intelligent vibrating bed with a suspended bed board according to claim 1, characterized in that: The bed frame (1) is equipped with a controller (6), which is electrically connected to the suspension device (4) and the vibration device (5) to control their working parameters.