A mattress with vibration-assisted sleep, shock absorption, and conformal support functions.

CN224698921UActive Publication Date: 2026-09-01FOSHAN LINZHI POLYMER MATERIALS SCI & TECH CO LTD
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Patent Information

Application Number
CN202521328827.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-26
Publication Date
2026-09-01
Estimated Expiration
2035-06-26

AI Technical Summary

Technical Problem

[0005]针对现有技术中存在的缺陷,本实用新型的目的在于提供一种具有震动助眠、隔震及贴合支撑功能的床垫,以解决现有的床垫功能较为单一的问题

Benefits of technology

通过采用上述具有震动助眠、隔震及贴合支撑功能的床垫,利用将床垫本体采用人工软骨仿生智能材料制作而成,这使得睡眠者在进行睡眠时,床垫本体可以很好地进行支撑,床垫本体可根据睡眠者的体型进行自适应变形,将人体与床垫接触的点面积转化为面面积,使身体各部位所承受的压力均匀分布,这种贴合支撑功能能够有效改善血液循环,提高睡眠舒适度,减少因床垫支撑不当导致的身体不适;同时,通过在床垫本体的底部设置有ACF减震材料层,ACF减震材料层可有效减弱地面的震动传递至床垫本体上的震动能量,减少震动向上传递到人体,为使用者提供稳定、安静的睡眠环境,有助于使用者进入深度睡眠状态,提高睡眠质量;此外还通过在床垫本体的内部设置有微震动模块,微震动模块能够产生频率较低、强度较弱的震动,模拟轻柔的按摩效果,帮助使用者放松肌肉,缓解疲劳,从而快速进入睡眠状态。

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Abstract

This invention provides a mattress with vibration-assisted sleep, shock absorption, and conformal support functions. It includes a mattress body, multiple micro-vibration modules, and an ACF (Anti-Fluorescent Fluorescent) shock-absorbing material layer. The micro-vibration modules are spaced apart inside the mattress body, and the ACF shock-absorbing material layer is fixedly installed at the bottom of the mattress body. The mattress body is made of memory foam, which allows for excellent support during sleep and enables the mattress body to adapt to the sleeper's body shape. The ACF shock-absorbing material layer at the bottom of the mattress body effectively reduces the vibration energy transmitted from the ground to the mattress body, minimizing the upward transmission of vibration to the body and providing a stable and quiet sleep environment. The micro-vibration modules inside the mattress body generate low-frequency, low-intensity vibrations, simulating a gentle massage effect and promoting rapid sleep.
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Description

Technical Field

[0001] This utility model relates to the field of bedding technology, specifically to a mattress with vibration-assisted sleep, shock absorption, and conformal support functions. Background Technology

[0002] In today's fast-paced life, many people suffer from sleep problems and find it difficult to fall asleep quickly. Traditional mattresses only provide basic support and lack effective sleep aids. Research shows that soothing vibrations and suitable music can relax the nervous system, help relieve tension, and thus promote sleep. However, the market currently lacks mattress products that effectively combine vibration and music to achieve sleep-aiding functions.

[0003] Meanwhile, when a user sleeps on a mattress, vibrations in the room's floor, such as the vibrations from shoes and luggage dragging in a hotel corridor, the vibrations from a car going over a speed bump, the continuous vibrations from train tracks, the vibrations from passing subway trains, family members getting up and walking, unusual noises from neighbors late at night, or children playing, can easily be transmitted to the sleeper on the mattress, potentially disrupting sleep and causing problems such as decreased sleep quality and sleep interruptions. Ordinary mattresses cannot effectively block ground vibrations and cannot provide a stable and quiet sleeping environment for users.

[0004] Furthermore, during sleep, the pressure of different parts of the body on the mattress is unevenly distributed. Traditional mattress materials cannot adaptively adjust to changes in body shape, causing some parts of the body to bear excessive pressure, affecting blood circulation and sleep comfort. Prolonged use of such mattresses that do not conform to the human body may also cause physical discomfort symptoms such as back pain. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a mattress with vibration-assisted sleep, shock absorption and conformal support functions, so as to solve the problem that the existing mattresses have relatively simple functions.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows: This application provides a mattress with vibration-assisted sleep, shock absorption, and conformal support functions, including a mattress body, and further comprising: Multiple micro-vibration modules are spaced apart inside the mattress body, and the micro-vibration modules are used to generate vibrations on the surface of the mattress body; An ACF shock-absorbing material layer is fixedly installed at the bottom of the mattress body. The ACF shock-absorbing material layer is used to reduce vibrations transmitted from the bottom of the mattress body. The mattress body is made of memory foam.

[0007] Furthermore, it also includes a music playback device, which is disposed on the mattress body.

[0008] Furthermore, it also includes a control panel, which is communicatively connected to both the music playback device and the micro vibration module. The control panel controls the vibration intensity and frequency of the micro vibration module based on the audio signal of the music played by the music playback device.

[0009] Furthermore, the ACF shock-absorbing material layer is fixed to the bottom surface of the mattress body by adhesive.

[0010] Furthermore, the mattress body comprises multiple layers arranged from top to bottom, wherein the firmness of the mattress body gradually increases from the top layer to the bottom layer.

[0011] Furthermore, the surface of the mattress body is provided with a knitted layer made of nano-level anti-mite knitted fabric.

[0012] The beneficial effects of this utility model are as follows: By employing a mattress with vibration-assisted sleep aid, shock absorption, and conformal support functions, and utilizing a biomimetic intelligent material made from artificial cartilage, the mattress provides excellent support during sleep. The mattress adapts to the sleeper's body shape, transforming the point area of ​​contact between the body and the mattress into a surface area, thus evenly distributing pressure across the body. This conformal support effectively improves blood circulation, enhances sleep comfort, and reduces discomfort caused by improper mattress support. Simultaneously, an ACF shock-absorbing material layer at the bottom of the mattress effectively reduces the vibration energy transmitted from the ground to the mattress, minimizing upward transmission of vibrations to the body and providing a stable and quiet sleep environment, helping users enter deep sleep and improve sleep quality. Furthermore, a micro-vibration module inside the mattress generates low-frequency, low-intensity vibrations, simulating a gentle massage effect to help users relax muscles, relieve fatigue, and quickly fall asleep. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of a mattress with vibration-assisted sleep, shock absorption, and conformal support functions according to an embodiment of this application.

[0014] Figure 2 This is a top view structural diagram of a mattress with vibration-assisted sleep, shock absorption, and conformal support functions according to an embodiment of this application.

[0015] Figure 3 for Figure 2 A schematic diagram of the AA-direction cross-section structure.

[0016] Figure 4 This is an exploded view of the installation and assembly structure of the mattress with vibration-assisted sleep, shock absorption, and conformal support functions in the embodiments of this application.

[0017] Figure 5 This is a schematic diagram of the longitudinal cross-sectional structure of the mattress body in an embodiment of this application.

[0018] Figure 6 This is a schematic diagram of the remote control that works wirelessly with the mattress in an embodiment of this application.

[0019] In the picture: 100- Mattress; 10- Mattress body; 20-Control Panel; 30 - Miniature vibration module; 40-ACF damping material layer; 50-knit layer; 60 - Wireless remote control; 61 - Music button; 62 - Vibration amplitude adjustment button; 63 - Sleep button; 64 - Lift button. Detailed Implementation

[0020] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0021] See appendix Figure 1 To be continued Figure 4 As shown, this embodiment provides a mattress 100 with vibration-assisted sleep, shock absorption and conformal support functions, including a mattress body 10, multiple micro vibration modules 30 and an ACF shock-absorbing material layer 40.

[0022] In this embodiment, the mattress body 10 is made of memory foam and is used for direct contact with the mattress body 10 when lying on it for rest. By using artificial cartilage biomimetic smart materials to construct the mattress body, the fit and support between the mattress body and the user can be improved. This allows the mattress body to provide good support for the sleeper during sleep. The mattress body can adaptively deform according to the sleeper's body shape, transforming the point area of ​​contact between the body and the mattress into a surface area, so that the pressure on various parts of the body is evenly distributed. This fit and support function can effectively improve blood circulation, enhance sleep comfort, and reduce physical discomfort caused by improper mattress support.

[0023] In some embodiments, the ACF damping material layer is an artificial cartilage biomimetic energy-absorbing material, which has good elasticity and vibration isolation performance.

[0024] See attached document Figure 3 and attached Figure 4 As shown, in this embodiment, multiple micro-vibration modules 30 are spaced apart inside the mattress body 10. The micro-vibration modules 30 are used to generate vibrations on the surface of the mattress body 10. The micro-vibration modules can generate low-frequency, low-intensity vibrations, simulating a gentle massage effect, helping users relax their muscles, relieve fatigue, and thus quickly fall asleep.

[0025] See attached document Figure 5 As shown, in this embodiment, the ACF shock-absorbing material layer 40 is fixedly installed at the bottom of the mattress body 10. The ACF shock-absorbing material layer 40 is used to reduce vibrations transmitted from the bottom of the mattress body 10. By providing the ACF shock-absorbing material layer 40 at the bottom of the mattress body, the ACF shock-absorbing material layer 40 can effectively reduce the vibration energy transmitted from the ground to the mattress body, reduce the upward transmission of vibrations to the human body, provide the user with a stable and quiet sleeping environment, help the user enter a deep sleep state, and improve sleep quality.

[0026] In some embodiments, the ACF shock-absorbing material layer 40 is fixed to the bottom surface of the mattress body 10 by adhesive. It is understood that other fixing methods can also be used to firmly adhere the ACF shock-absorbing material layer to the bottom of the mattress, ensuring that the ACF shock-absorbing material layer will not shift or detach during long-term use.

[0027] See attached document Figure 1 As shown, to further improve the user's sleep experience, in some embodiments, a music playback device is also installed on the mattress body 10. The music playback device can be installed on the side of the mattress body 10 near the headboard, i.e., close to the user's head position when resting. It is understood that in this embodiment, the music playback device is mainly used to play music that promotes sleep. For example, the user can select their favorite sleep-inducing music through music playback software on a smart device such as a mobile phone or tablet. In some embodiments, the music playback device uses a built-in Bluetooth speaker, which features high-fidelity sound quality and low power consumption. During use, the user can transmit music to the mattress's music playback device via Bluetooth for playback.

[0028] Continue to refer to the appendix Figure 1As shown, a control panel 20 is also provided on the mattress body 10. The control panel 20 is communicatively connected to both the music playback device and the micro vibration module 30. The control panel 20 can control the vibration intensity and frequency of the micro vibration module 30 according to the audio signal of the music played by the music playback device. It can be understood that the control panel 20 in this embodiment is used to collect and analyze the audio signal of the music played by the music playback device, and to drive the vibration intensity and frequency of the micro vibration module 30 according to the collected audio signal. That is, the control panel 20 is used for audio signal collection and analysis, so existing control panel 20 devices for processing audio signals can be directly used. A touch control panel 20 is provided on the surface of the mattress body 10, allowing the user to conveniently adjust the vibration intensity and frequency of the vibration module, as well as the music volume, playback mode, and other parameters. The touch control panel 20 is connected to the control circuit board, transmitting the user's operation commands to the control circuit board for processing.

[0029] By combining the music playback device and the micro-vibration module 30, the vibration intensity and frequency of the micro-vibration module 30 are driven according to the music audio signal played by the music playback device, so that the music playback device and the micro-vibration module 30 are matched and work together to achieve a better sleep aid effect.

[0030] See attached document Figure 5 As shown, in this embodiment, the mattress body comprises multiple layers arranged from top to bottom. The firmness of the mattress body gradually increases from the top layer to the bottom layer. The firmness and elasticity coefficient of each layer of artificial cartilage bionic intelligent metamaterial are optimized according to the support needs of different parts of the human body. For example, the layer of artificial cartilage bionic intelligent metamaterial near the mattress surface is relatively soft to provide a better fit; while the layer of artificial cartilage bionic intelligent metamaterial near the bottom is relatively hard to provide sufficient overall support. This arrangement can simultaneously take into account the softness and support strength of the mattress body.

[0031] In some embodiments, the surface of the mattress body is provided with a knitted layer 50 made of nano-level anti-mite knitted fabric to achieve a certain anti-mite effect.

[0032] See attached document Figure 6As shown, in this embodiment, the micro-vibration module 30 and music playback device on the mattress body 10 can also be controlled by the matching wireless remote control 60. That is, by pressing the corresponding command indicator button on the wireless remote control 60, the micro-vibration module 30 and music playback device can be controlled to perform corresponding actions. For example, the music button 61 of the music playback device can be adjusted, such as adjusting the volume, music switching, and music play or pause functions; or the vibration amplitude adjustment button 62 of the micro-vibration module 30 can be adjusted, for example, equipped with a first-level vibration button, a second-level vibration button, and a third-level vibration button with vibration amplitude ranging from small to large; a sleep button 63 can also be provided, that is, pressing this button will stop the micro-vibration module 30 and the music playback device at the same time; in addition, a lifting button 64 can be configured for adjusting the head or tail of the mattress to lift upwards. It can be understood that lifting devices are installed at the bottom of the head and tail of the mattress, such as the lifting structure of the electric nursing bed used in hospitals in the prior art. It should be noted that the wireless communication technology between the wireless remote control, the micro vibration module 30, the music playback device, and the lifting structure in this embodiment is existing technology and can be directly adopted from commercially available wireless remote control structures.

[0033] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.

Claims

1. A mattress with vibration-assisted sleep, shock absorption, and conformal support functions, comprising a mattress body, characterized in that, Also includes: Multiple micro-vibration modules are spaced apart inside the mattress body, and the micro-vibration modules are used to generate vibrations on the surface of the mattress body; An ACF shock-absorbing material layer is fixedly installed at the bottom of the mattress body. The ACF shock-absorbing material layer is used to reduce vibrations transmitted from the bottom of the mattress body. The mattress body is made of memory foam.

2. The mattress with vibration-assisted sleep, shock absorption, and conformal support functions according to claim 1, characterized in that, It also includes a music playback device, which is mounted on the mattress body.

3. A mattress with vibration-assisted sleep, shock absorption, and conformal support functions as described in claim 2, characterized in that, It also includes a control panel, which is communicatively connected to the music playback device and the micro vibration module. The control panel controls the vibration intensity and frequency of the micro vibration module according to the audio signal of the music played by the music playback device.

4. A mattress with vibration-assisted sleep, shock absorption, and conformal support functions as described in claim 1, characterized in that, The ACF shock-absorbing material layer is fixed to the bottom surface of the mattress body by adhesive.

5. A mattress with vibration-assisted sleep, shock absorption, and conformal support functions as described in claim 1 or 3, characterized in that, The mattress body comprises multiple layers arranged from top to bottom, wherein the firmness of the mattress body gradually increases from the top layer to the bottom layer.

6. A mattress with vibration-assisted sleep, shock absorption, and conformal support functions as described in claim 1, characterized in that, The surface of the mattress body is covered with a knitted layer made of nano-level anti-mite knitted fabric.