Multifunctional magnetic energy biophoton health-care mattress

By designing a multifunctional magnetic energy biophoton health mattress, using rotary block adjustment support layer and elastic layer, combined with high-density foam layer and electromagnetic components, the coordinated adjustment of magnetic energy and photon functions is achieved, and the problems of soft and hardness fixation and functional isolation of existing mattresses are solved, improving the comfort and health benefits of use.

CN120167768APending Publication Date: 2025-06-20GUANGDONG JIADA MAGNETIC ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510559391.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

Existing magnetic energy mattresses are prone to local depressions after long-term use, and the softness and hardness are fixed, which cannot be adjusted according to user habits. The magnetic field strength and photon function design are isolated, so synergistic effects cannot be achieved, reducing health effects.

Method used

A multifunctional magnetic energy biophoton health mattress is designed, including a support layer, an elastic layer, a functional layer and a comfort layer. The support layer structure is adjusted by rotating blocks, the compression degree of the elastic layer is adjusted, and the high-density foam layer and electromagnetic components are combined to achieve coordinated adjustment of magnetic energy and photon functions.

Benefits of technology

By adjusting the softness and hardness of the mattress and the magnetic field strength, the pressure distribution is improved and the comfort of use is improved. At the same time, the synergy between magnetic energy and photon functions improves the overall health benefits and comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a multifunctional magnetic energy biophoton health-care mattress which comprises a supporting layer structure, an elastic layer structure, a functional layer structure, a comfortable layer structure, side edge layers and rotating blocks. The supporting layer structure is adjusted through the rotating block, so that the supporting height position of the supporting layer structure on the elastic layer structure is changed, the compression degree of the elastic layer structure can be adjusted according to the weight and use habits of a user, the pressure distribution of the body in contact with the mattress can be improved, and the use comfort is improved; in addition, in the elastic layer structure, a steel spring group is combined with a bearing sheet with an arc-shaped structure to play an elastic role, so that the weight of a body can be dispersed, the pressure is more uniformly distributed on the mattress, the formation of local pressure points is reduced, and the health of the mattress is improved. Through the arrangement of the functional layer structure and the comfortable layer structure, the mattress has the health care effects of magnetic energy and photon functions, and the magnetic energy function intensity and the photon function intensity can be flexibly adjusted, so that the overall health benefit and comfort are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of biologic healthcare, and particularly to a multifunctional magnetic energy biophoton healthcare mattress. Background Art

[0002] In modern society, good sleep quality is crucial for people's physical and mental health. With the accelerating pace of life and increasing pressure, more and more people are facing problems such as insufficient sleep, insomnia, and various sleep-related health issues; in recent years, people's attention to health has been continuously increasing, and magnetic energy and photon therapy, as emerging healthcare means, have gradually attracted public attention.

[0003] Currently, Chinese Patent Application No.: CN200720176263.3 discloses a magnetic far-infrared mattress, which includes a mattress cover, a soft magnetic strip layer, and a far-infrared heating sheet. The soft magnetic strip layer is composed of several uniformly distributed soft permanent magnetic strips, and the soft permanent magnetic strips are equally spaced in rows and columns; the soft magnetic strip layer and the far-infrared functional heating sheet are located inside the mattress cover; the far-infrared heating sheet is connected to a plug through an electric wire.

[0004] However, although the existing magnetic energy mattress provides a certain degree of support, it is inconvenient to disperse the force received by the mattress, making it easy to produce local depressions after long-term use. Moreover, the softness and hardness of the mattress are relatively fixed, and it is inconvenient to adjust the softness and hardness of the mattress according to the user's usage habits, affecting the comfort of use; in addition, the magnetic energy function of the mattress usually only depends on a simple magnet configuration, and it is inconvenient to flexibly adjust the magnetic field strength according to the user's needs, resulting in an insignificant effect in promoting blood circulation and relieving muscle tension; furthermore, the designs of magnetic energy and photon functions are often isolated, making it inconvenient to achieve a synergistic effect and reducing the overall health effect. Summary of the Invention

[0005] The purpose of the present invention is to provide a multifunctional magnetic energy biophoton healthcare mattress to solve the problems raised in the above background art.

[0006] To achieve the above object, the present invention adopts the following technical solutions: A multifunctional magnetic energy biological photon health care mattress, comprising a support layer structure, an elastic layer structure, a functional layer structure, and a comfort layer structure arranged in sequence from bottom to top. Side layers are provided on all four sides of the support layer structure, the elastic layer structure, the functional layer structure, and the comfort layer structure. A protective cover is wrapped around the outside of the side layers, and the top side of the protective cover is folded inward to contact above the comfort layer structure. A rotating block is provided at the bottom side of the front part of the protective cover, and the middle side of the rear part of the rotating block is connected to the support layer structure. A control panel is embedded in the rear side of the right part of the side layer. The support layer structure includes an anti-slip frame connected to the bottom side of the side layer, an adjustment component installed in the middle of the top of the anti-slip frame, a first auxiliary support component and a second auxiliary support component respectively arranged on the left and right sides of the top of the anti-slip frame, and a support piece connected to the top side of the adjustment component. The left and right sides of the bottom of the support piece are respectively connected to the first auxiliary support component and the second auxiliary support component, and the top side of the support piece is connected to the elastic layer structure. The functional layer structure includes a high-density foam layer bonded to the top side of the elastic layer structure. Grooves are arranged in a rectangular array inside the high-density foam layer. A photon component is provided on each of the left and right sides of the grooves in the rectangular array, and electromagnetic components are embedded in the grooves at the remaining positions. The top side of the high-density foam layer is attached to the comfort layer structure.

[0007] Preferably, ventilation holes are provided inside the high-density foam layer, and the grooves arranged in a rectangular array are communicated through the ventilation holes to enhance air circulation.

[0008] Preferably, the adjustment component includes a worm with the front end fastened to the rotating block, a worm wheel meshing and driving on the left side of the worm, a driving pulley fixed to the middle of the top of the worm wheel, a transmission belt drivingly connected to the front side of the driving pulley, and four top support components drivingly connected to the rear four sides of the transmission belt. Bearing blocks are provided on both the front and rear sides of the worm, and the bottom of the bearing blocks is fixed to the anti-slip frame. The middle of the bottom of the worm wheel is rotatably connected to the anti-slip frame. The four top support components are distributed in a rectangular shape, and the bottoms of the four top support components are rotatably connected to the anti-slip frame. The tops of the four top support components are all connected to the support piece.

[0009] Preferably, the top support component includes a driven pulley with the side part drivingly connected to the transmission belt, a rotating seat fixedly penetrated in the middle of the inside of the driven pulley, a screw rod fixedly connected to the middle of the top of the rotating seat, and an internally threaded socket seat threadedly connected to the outer surface of the screw rod. The bottom of the rotating seat is rotatably connected to the anti-slip frame. The top side of the internally threaded socket seat is connected to the support piece.

[0010] Preferably, the first auxiliary support component and the second auxiliary support component have the same structure and size, and are arranged symmetrically left and right in the middle of the anti-slip frame.

[0011] Preferably, the first auxiliary support assembly includes a backing plate fixedly connected to the anti-slip frame at the bottom, a first short rod rotatably connected to the left side of the top of the backing plate, a damping rotating rod connected to the top end of the first short rod, a second short rod rotatably connected to the end of the damping rotating rod, a slider slidably connected to the right side of the top of the backing plate, and a long rod rotatably connected to the rear side of the slider. Both the top of the second short rod and the long rod are rotatably connected to the support piece. There are two first short rods, second short rods, sliders and long rods, which are respectively located on the front and rear sides of the top of the backing plate.

[0012] Preferably, chutes are formed on both the front and rear sides of the top of the backing plate, and the bottoms of the two sliders are respectively inserted and slid inside the two chutes.

[0013] Preferably, the elastic layer structure includes a steel spring group arranged on the top side of the support layer structure and distributed in no less than eight rows. The top side of the steel spring group is in contact with a bearing piece having an arc-shaped structure. The middle side of the top of the bearing piece is in contact with a positioning piece. The top side of the positioning piece is connected to the functional layer structure. The steel spring group is composed of no less than seventeen steel springs distributed at equal intervals, and the lengths of the steel springs gradually decrease from the middle of the bearing piece to the outside.

[0014] Preferably, the electromagnetic assembly includes a coil body arranged inside the groove of the high-density foam layer, a reinforcement frame wrapped outside the coil body, an iron core arranged in the middle side of the coil body, and a gel sheet arranged on the top side of the iron core. The gel sheet is bonded to the top side inside the groove, and the top side of the gel sheet is connected to the comfort layer structure. The top side of the iron core has a disc-shaped structure. The photon assembly includes an LED lamp bead, an optical lens arranged above the LED lamp bead, and a buffer sheet connected to the top side of the optical lens. The middle part of the inside of the buffer sheet is hollow, and the top side of the buffer sheet is connected to the comfort layer structure.

[0015] Preferably, the comfort layer structure includes a natural latex, an optical fiber mesh structure layer and a polyurethane foam layer which are sequentially laminated from top to bottom. The bottom side of the polyurethane foam layer is bonded to the high-density foam layer. The optical fiber mesh structure layer is woven by plastic optical fibers and nylon fibers. The plastic optical fibers are arranged in a parallel manner to avoid the intersection and overlap of the optical fibers. The plastic optical fibers are respectively gathered on the left and right sides, and optical fiber ports are connected to both the gathered left and right sides. The two optical fiber ports are respectively embedded in the left and right sides inside the polyurethane foam layer, and the bottom sides of the two optical fiber ports are respectively connected to the two photon assemblies.

[0016] Preferably, a dimmer for controlling the current magnitude of the LED lamp bead is integrated inside the control panel to adjust the output intensity of the photons. Different brightnesses and wavelengths of the LED lamp bead can be selected through the control panel. An adjustable power module for adjusting the current intensity of the coil body is also integrated to change the magnetic field intensity, and different intensities and frequencies can be selected according to needs.

[0017] Preferably, the electromagnetic components can be arranged in a special array to form a magnetic energy quantum array biofield, which promotes the production of longevity proteins and CD28 mechanism in the human body. Longevity proteins help maintain the health of the human body and prevent age-related diseases by regulating cell functions and delaying the aging process. CD28 enhances the activity of immune cells, improves the immunity of the human body, and helps resist diseases such as infections and cancers.

[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0019] In the present invention, the support layer structure is adjusted by the rotating block, so that the support height position of the support layer structure on the elastic layer structure is changed. Thus, the compression degree of the elastic layer structure can be adjusted according to the user's weight and usage habits, which can improve the pressure distribution of the body contacting the mattress and enhance the comfort of use. Moreover, in the elastic layer structure, the combination of the steel spring group and the arc-shaped bearing piece is adopted to play an elastic role, which can help disperse the body weight, make the pressure more evenly distributed on the mattress, reduce the formation of local pressure points, and the mattress has the health care functions of magnetic energy and photon functions through the setting of the functional layer structure and the comfort layer structure. The intensity of the magnetic energy function and the intensity of the photon function can be flexibly adjusted, thereby enhancing the overall health benefits and comfort.

[0020] Four top support components are provided in the present invention and are distributed in a rectangular shape. Under the rotation of the driving pulley, the transmission belt drives the driven pulley to rotate. Under the rotation of the driven pulley, the screw rotates inside the internal thread socket, so that the internal thread socket moves up or down in the longitudinal direction, realizing the change of the height position of the support piece, thereby changing the compression degree of the elastic layer structure. At the same time, a buffering force is formed by the first auxiliary support component and the second auxiliary support component to play an auxiliary support role on the bottom side of the support piece, facilitating the adjustment of the softness and hardness of the overall mattress and improving the comfort of use.

[0021] The bearing piece in the present invention has an arc-shaped structure. The steel spring group is composed of no less than seventeen steel springs distributed at equal intervals, and the lengths of the steel springs gradually decrease from the middle of the bearing piece to the outside to ensure the supporting effect on the bearing piece. The arc-shaped bearing piece can help disperse the body weight, make the pressure more evenly distributed on the mattress, reduce the formation of local pressure points, and when the user lies down, the elastic steel sheet can provide additional rebound force to a certain extent, enhance the elasticity of the mattress, and improve the lying comfort.

[0022] The present invention enhances the magnetic field strength through the setting of the iron core. The gel sheet can absorb the pressure from above, reduce the direct extrusion on the coil, and the top side of the iron core is in a disc-shaped structure, which increases the contact area to avoid damaging the gel sheet after extrusion. The fiber optic mesh structure layer is woven from plastic optical fibers and nylon fibers. The plastic optical fibers are arranged in parallel to avoid the intersection and overlap of the optical fibers. The woven fiber optic mesh structure layer can increase the air permeability, help regulate the temperature of the mattress, and improve the overall comfort. At the same time, the phototherapy function can be integrated to promote blood circulation and provide health benefits to users.

[0023] The electromagnetic components of the present invention can be arranged in a special array to form a magnetic energy quantum array biofield, which promotes the production of longevity proteins and CD28 mechanism in the human body. Longevity proteins help maintain the healthy state of the human body and prevent age-related diseases by regulating cell functions and delaying the aging process. CD28 enhances the activity of immune cells, improves the human body's immunity, and helps resist diseases such as infections and cancers. Brief Description of the Drawings

[0024] Figure 1 is a structural schematic diagram of the present invention;

[0025] Figure 2 is a structural connection schematic diagram below the comfort layer structure of the present invention;

[0026] Figure 3 is a structural schematic diagram of the support layer structure of the present invention;

[0027] Figure 4 is a structural schematic diagram of the adjustment component of the present invention;

[0028] Figure 5 is a structural schematic diagram of the connection between the elastic layer structure and the functional layer structure of the present invention;

[0029] Figure 6 is a structural schematic diagram of the electromagnetic component and the photon component of the present invention;

[0030] Figure 7 is a structural schematic diagram of the comfort layer structure of the present invention;

[0031] Figure 8 is a structural schematic diagram of the special array distribution adopted by the electromagnetic component of the present invention in a 0.9m * 1.9m mattress;

[0032] Figure 9 is a structural schematic diagram of the special array distribution adopted by the electromagnetic component of the present invention in a 1.2m * 1.9m mattress.

[0033] In the figure: support layer structure - 1, elastic layer structure - 2, functional layer structure - 3, comfort layer structure - 4, side layer - 5, rotating block - 6, protective cover - 7, control panel - 8, anti - slip frame - 11, adjustment component - 12, first auxiliary support component - 13, second auxiliary support component - 14, support piece - 15, worm - 121, worm gear - 122, driving pulley - 123, transmission belt - 124, top - support component - 125, driven pulley - 1251, rotating base - 1252, screw rod - 1253, internally - threaded sleeve seat - 1254, backing plate - 131, first short rod - 132, damping rotating rod - 133, second short rod - 134, slider - 135, long rod - 136, steel spring group - 21, load - bearing piece - 22, positioning piece - 23, high - density foam layer - 31, electromagnetic component - 32, photon component - 33, coil body - 321, reinforcement frame - 322, iron core - 323, gel sheet - 324, LED lamp bead - 331, optical lens - 332, buffer sheet - 333, natural latex - 41, optical - fiber mesh structure layer - 42, polyurethane foam layer - 43, optical - fiber port - 44. Detailed implementation manners

[0034] In order to further explain the technical solution of the present invention, the following will be elaborated in detail through specific embodiments.

[0035] Please refer to Figure 1 and Figure 2 The present invention provides a multifunctional magnetic - energy bio - photon health - care mattress, which includes a support layer structure 1, an elastic layer structure 2, a functional layer structure 3, and a comfort layer structure 4 arranged in sequence from bottom to top. Side layers 5 are provided on the four sides of the support layer structure 1, the elastic layer structure 2, the functional layer structure 3, and the comfort layer structure 4. A protective cover 7 is wrapped outside the side layers 5, and the top side of the protective cover 7 is folded inward to contact above the comfort layer structure 4. A rotating block 6 is provided at the bottom side of the front part of the protective cover 7, and the middle side of the rear part of the rotating block 6 is connected to the support layer structure 1, so as to adjust and control the support layer structure 1 through the rotating block 6. According to the user's weight and usage habits, the compression degree of the elastic layer structure 2 can be adjusted, which can improve the pressure distribution of the body contacting the mattress and enhance the comfort of use. A control panel 8 is embedded in the rear side of the right part of the side layer 5, and the magnetic - energy function intensity and photon function intensity in the functional layer structure 3 can be flexibly adjusted through the control panel 8, thereby enhancing the overall health benefits and comfort.

[0036] Please refer to Figure 1 、 Figure 2 、 Figure 3 and Figure 4, the present invention provides a multifunctional magnetic energy biophoton health care mattress. The support layer structure 1 includes an anti-slip frame 11 connected to the bottom side of the side layer 5, an adjustment component 12 installed in the middle of the top of the anti-slip frame 11, a first auxiliary support component 13 and a second auxiliary support component 14 respectively arranged on the left and right sides of the top of the anti-slip frame 11, and a support piece 15 connected to the top side of the adjustment component 12. The left and right sides of the bottom of the support piece 15 are respectively connected to the first auxiliary support component 13 and the second auxiliary support component 14, and the top side of the support piece 15 is connected to the elastic layer structure 2. By changing the height position of the support piece 15 through the adjustment component 12, after the height position of the support piece 15 moves, the first auxiliary support component 13 and the second auxiliary support component 14 play an auxiliary support role at the bottom side to ensure the stability of the support piece 15 and the elastic layer structure 2. The structures and sizes of the first auxiliary support component 13 and the second auxiliary support component 14 are the same, and they are arranged symmetrically left and right in the middle of the anti-slip frame 11 to improve the smooth effect of the support piece 15 and ensure a stable support force for the user.

[0037] Among them, the adjustment component 12 includes a worm 121 whose front end is fastened to a rotating block 6, a worm gear 122 meshing and driving on the left side of the worm 121, a driving pulley 123 fixed to the middle of the top of the worm gear 122, a transmission belt 124 drivingly connected to the front side of the driving pulley 123, and four top support components 125 drivingly connected to the four sides of the rear part of the transmission belt 124. Rotating the rotating block 6 causes the worm 121 to drive the driving pulley 123 to rotate through the cooperation with the worm gear 122. Bearing blocks are arranged on both the front and rear sides of the worm 121, and the bottom of the bearing blocks is fixed to the anti-slip frame 11 to ensure the stability of the rotation of the worm 121. The middle of the bottom of the worm gear 122 is rotatably connected to the anti-slip frame 11. The four top support components 125 are distributed in a rectangular shape, and the bottoms of the four top support components 125 are all rotatably connected to the anti-slip frame 11. The tops of the four top support components 125 are all connected to the support piece 15 to improve the support stability of the support piece 15. The top support component 125 includes a driven pulley 1251 whose side is drivingly connected to the transmission belt 124, so that the transmission belt 124 drives the driven pulley 1251 to rotate under the rotation of the driving pulley 123. A rotating seat 1252 fixedly penetrated in the middle of the inside of the driven pulley 1251, a screw rod 1253 fixedly connected to the middle of the top of the rotating seat 1252, and an internal thread socket 1254 threadedly connected to the outer surface of the screw rod 1253. The bottom of the rotating seat 1252 is rotatably connected to the anti-slip frame 11, and the top side of the internal thread socket 1254 is connected to the support piece 15. Under the rotation of the driven pulley 1251, the screw rod 1253 rotates inside the internal thread socket 1254, so that the internal thread socket 1254 moves up or down in the longitudinal direction, realizing the change of the height position of the support piece 15, thereby changing the compression degree of the elastic layer structure 2, adjusting and changing the soft hardness of the overall mattress, and improving the comfort of use.

[0038] Among them, the first auxiliary support assembly 13 includes a backing plate 131 whose bottom is fixed to the anti-slip frame 11, a first short rod 132 rotatably connected to the left side of the top of the backing plate 131, a damping rotating rod 133 connected to the top end of the first short rod 132, a second short rod 134 rotatably connected to the end of the damping rotating rod 133. The damping rotating rod 133 forms a buffering force between the first short rod 132 and the second short rod 134, a slider 135 slidably connected to the right side of the top of the backing plate 131, and a long rod 136 rotatably connected to the rear side of the slider 135. The tops of the second short rod 134 and the long rod 136 are both rotatably connected to the support piece 15. After the height position of the support piece 15 changes, the second short rod 134 and the long rod 136 are lifted upward to play an auxiliary support role on the bottom side of the support piece 15, further ensuring the stability of the support piece 15. There are two first short rods 132, second short rods 134, sliders 135 and long rods 136, and they are respectively located on the front and rear sides of the top of the backing plate 131, so as to form a fulcrum with a rectangular structure on the bottom side of the support piece 15. Chutes are provided on the front and rear sides of the top of the backing plate 131, and the bottoms of the two sliders 135 are respectively inserted and slid in the inner sides of the two chutes, so as to facilitate the rotation, lifting and lowering of the long rod 136, and improve the support stability effect on the support piece 15.

[0039] Please refer to Figure 1 、 Figure 2 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 and Figure 9 ,The present invention provides a multifunctional magnetic energy biophoton health care mattress. The elastic layer structure 2 includes steel spring groups 21 arranged on the top side of the support layer structure 1 and distributed in no less than eight rows. The top side of the steel spring groups 21 is in contact with a bearing piece 22 having an arc-shaped structure. The bearing piece 22 with an arc-shaped structure can help disperse the body weight, so that the pressure is more evenly distributed on the mattress, reducing the formation of local pressure points. And when the user lies down, the elastic steel sheet can provide additional resilience to a certain extent, enhancing the elasticity of the mattress and improving the lying comfort. The middle side of the top of the bearing piece 22 is in contact with a positioning piece 23, and the top side of the positioning piece 23 is connected to the functional layer structure 3. The steel spring groups 21 are composed of no less than seventeen steel springs distributed at equal intervals, and the lengths of the steel springs gradually decrease from the middle of the bearing piece 22 to the outside, so as to ensure the support effect on the bearing piece 22 and improve the comfort of the user.

[0040] Among them, the functional layer structure 3 includes a high-density foam layer 31 adhered to the top side of the elastic layer structure 2. Grooves are arranged in a rectangular array inside the high-density foam layer 31. A photon component 33 is provided on each of the left and right sides of the grooves in the rectangular array, and electromagnetic components 32 are embedded in the grooves at other positions. The top side of the high-density foam layer 31 is attached to the comfort layer structure 4. After the electromagnetic component 32 generates a magnetic field, a weak and uniform magnetic field environment is created around the human body to generate a beneficial resonance with the human body, which can promote blood circulation, accelerate metabolism, effectively relieve muscle tension and pain, help the user enter a relaxed state faster, cause the microscopic vibration frequencies inside human cells to resonate, thereby activating cell vitality, promoting the self-repair and regeneration ability of cells, adjusting the body's energy balance, enhancing immunity, improving the function of the endocrine system, and playing a role in relieving stress, improving mood, and enhancing mental state. Ventilation holes are provided inside the high-density foam layer 31, and the grooves arranged in a rectangular array are connected through the ventilation holes to enhance air circulation. The electromagnetic component 32 includes a coil body 321 provided on the inner side of the groove of the high-density foam layer 31, a reinforcement frame 322 wrapped around the outer side of the coil body 321, an iron core 323 provided in the middle of the inner side of the coil body 321, and a gel sheet 324 provided on the top side of the iron core 323. The magnetic field intensity is enhanced by the setting of the iron core 323. The gel sheet 324 is adhered to the top side of the inner part of the groove, and the top side of the gel sheet 324 is connected to the comfort layer structure 4. The gel sheet 324 can absorb the pressure from above to reduce the direct extrusion on the coil. The top side of the iron core 323 is in a disc-shaped structure to increase the contact area to avoid damaging the gel sheet 324 after extrusion. The photon component 33 includes an LED lamp bead 331, an optical lens 332 provided above the LED lamp bead 331, and a buffer sheet 333 connected to the top side of the optical lens 332. The middle part of the inner side of the buffer sheet 333 is hollow, and the top side of the buffer sheet 333 is connected to the comfort layer structure 4. The optical lens 332 is used to optimize the output of light and avoid scattering, so that the light source of the LED lamp bead 331 is more evenly dispersed into the comfort layer structure 4. A dimmer for controlling the current magnitude of the LED lamp bead 331 is integrated inside the control panel 8, so as to adjust the output intensity of photons. Different brightness and wavelengths of the LED lamp bead 331 can be selected through the control panel 8, and an adjustable power module for adjusting the current intensity of the coil body 321 is also integrated, so as to change the magnetic field intensity and select different intensities and frequencies according to needs.

[0041] Among them, the electromagnetic component 32 can be arranged in a special array to form a magnetic energy quantum array biofield, which promotes the human body to produce longevity proteins and CD28 mechanisms. Longevity proteins help maintain the health of the human body, prevent age-related diseases by regulating cell functions and delaying the aging process. CD28 enhances the activity of immune cells, improves the body's immunity, and helps resist diseases such as infections and cancers. The magnetic energy quantum array biofield has unique penetrability and resonance fluctuations. It can not only promote blood circulation, accelerate metabolism, effectively relieve muscle tension and pain, help the user enter a relaxed state faster, but also cause the microscopic vibration frequencies in human cells to resonate, thereby activating cell vitality and promoting the cell's self-repair and regeneration ability. During sleep, quantum magnetic resonance helps penetrate all levels of the body, adjust the body's energy balance, enhance immunity, and improve the function of the endocrine system, which plays a role in relieving stress, improving mood, and enhancing mental state; when the electromagnetic component 32 is arranged in a special array in a mattress of 0.9m * 1.9m, as Figure 8 shown; when the electromagnetic component 32 is arranged in a special array in a mattress of 1.2m * 1.9m, as Figure 9 shown.

[0042] Among them, the comfort layer structure 4 includes a natural latex 41, an optical fiber mesh structure layer 42, and a polyurethane foam layer 43 that are sequentially bonded from top to bottom. The bottom side of the polyurethane foam layer 43 is bonded to the high-density foam layer 31. The natural latex 41 provides good elasticity and support, can effectively relieve pressure, and at the same time has antibacterial and anti-allergic properties, improving the safety and comfort of use. The polyurethane foam layer 43 provides additional comfort and support, can deform appropriately according to the user's weight and body temperature, relieve pressure points, and improve sleep quality. The optical fiber mesh structure layer 42 is woven from plastic optical fibers and nylon fibers. The plastic optical fibers are arranged in parallel to avoid the intersection and overlap of optical fibers. The plastic optical fibers are collected on the left and right sides respectively, and optical fiber ports 44 are connected to the collected positions on the left and right sides. The two optical fiber ports 44 are respectively embedded in the left and right sides inside the polyurethane foam layer 43, which can effectively protect the plastic optical fibers from external damage and extend their service life. The bottom sides of the two optical fiber ports 44 are respectively connected to two photon components 33. The woven optical fiber mesh structure layer 42 can increase air permeability, help regulate the temperature of the mattress, and improve the overall comfort. At the same time, light therapy functions can be integrated to promote blood circulation and provide health benefits to users.

[0043] The working principle of a multifunctional magnetic energy bio-photon health care mattress of the present invention is as follows:

[0044] First, when the user lies on the natural latex 41 of the mattress, the body weight will exert pressure on each layer of the mattress. According to the user's weight and usage habits, the compression degree of the steel spring group 21 can be adjusted by rotating the rotary block 6. When rotating the rotary block 6, the worm 121 is driven to rotate. The worm 121 drives the driving pulley 123 to rotate through the cooperation with the worm wheel 122. Under the rotation of the driving pulley 123, the transmission belt 124 drives the driven pulleys 1251 of the four top support components 125 to rotate. Under the rotation of the driven pulley 1251, the screw 1253 rotates inside the inner thread socket 1254, so that the inner thread socket 1254 moves up or down in the longitudinal direction, realizing the change of the height position of the support piece 15. After the height position of the support piece 15 moves, the second short rod 134 and the long rod 136 move along with the support piece 15. The damping rotating rod 133 forms a buffering force between the first short rod 132 and the second short rod 134, so as to play an auxiliary supporting role on the bottom side of the support piece 15, further ensuring the stability of the support piece 15. Thus, the change of the height position where the support piece 15 moves changes the compression degree of the steel spring group 21, adjusts and changes the softness and hardness of the overall mattress, and ensures the comfort of the user;

[0045] Second, while the user lies on the natural latex 41 of the mattress, a downward pressure is applied to the arc-shaped bearing piece 22. The arc-shaped bearing piece 22 helps to disperse the body weight, making the pressure more evenly distributed on the mattress, reducing the formation of local pressure points. And when the user lies down, the elastic steel sheet can provide additional rebound force to a certain extent, enhancing the elasticity of the mattress and improving the lying comfort;

[0046] Third, when the user needs to carry out health care, the size of the current passing through the inside of the coil body 321 and the brightness and wavelength of the LED lamp beads 331 lighting up and working can be adjusted and controlled through the control panel 8. The coil body 321 enhances the magnetic field intensity through the setting of the internal iron core 323. And the user can control the current intensity to further change the magnetic field intensity, so that the generated magnetic field can create a weak and uniform magnetic field environment around the user, promoting blood circulation, relieving muscle tension, and improving the overall health benefits;

[0047] Fourth, after the LED lamp beads 331 are controlled to light up, the light source is optimized through the optical lens 332 to avoid scattering, so that the light source of the LED lamp beads 331 is more evenly dispersed into the plastic optical fibers of the optical fiber mesh structure layer 42 through the optical fiber port 44. The light generated in the plastic optical fibers can penetrate to the user's skin, promoting blood circulation, increasing cell vitality. And the plastic optical fibers are arranged in a parallel manner to avoid the intersection and overlap of the optical fibers. The woven optical fiber mesh structure layer 42 can increase the air permeability, help regulate the temperature of the mattress, and improve the overall comfort.

[0048] The above are only the preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A multifunctional magnetic biophoton health mattress, characterized by: The invention relates to a support layer structure (1), an elastic layer structure (2), a functional layer structure (3) and a comfort layer structure (4) which are arranged in sequence from bottom to top. The support layer structure (1), the elastic layer structure (2), the functional layer structure (3) and the comfort layer structure (4) are all provided with side layers (5) on four sides. The outer side of the side layer (5) is wrapped with a protective cover (7), and the top side of the protective cover (7) is folded inwards to contact the top of the comfort layer structure (4). A rotary block (6) is provided on the bottom side of the front of the protective cover (7), and the middle side of the rear of the rotary block (6) is connected to the support layer structure (1). A control panel (8) is embedded on the right rear side of the side layer (5). The support layer structure (1) comprises an anti-slip frame (11) connected to the bottom side of the side layer (5), an adjustment component (12) installed on the middle side of the top of the anti-slip frame (11), and a plurality of control components (13) are provided. A first auxiliary support component (13) and a second auxiliary support component (14) are arranged on the left and right sides of the top of the anti-slip frame (11), and a support sheet (15) connected to the top side of the adjustment component (12); the left and right sides of the bottom of the support sheet (15) are respectively connected to the first auxiliary support component (13) and the second auxiliary support component (14), and the top side of the support sheet (15) is connected to the elastic layer structure (2); the functional layer structure (3) comprises a high-density foam layer (31) bonded to the top side of the elastic layer structure (2); the high-density foam layer (31) has grooves in a rectangular array, and a photon component (33) is arranged on both sides of the grooves of the rectangular array, and electromagnetic components (32) are embedded in the grooves at other positions; the top side of the high-density foam layer (31) is in contact with the comfort layer structure (4).

2. The multifunctional magnetic biophoton health mattress according to claim 1, characterized in that: The high-density foam layer (31) is provided with ventilation holes on the inner side, and the grooves distributed in a rectangular array are connected through the ventilation holes, thereby enhancing air circulation.

3. The multifunctional magnetic biophoton health mattress according to claim 1, characterized in that: The adjustment assembly (12) comprises a worm (121) whose front end is fastened to a rotating block (6), a worm wheel (122) meshingly driven on the left side of the worm (121), a driving pulley (123) fixed to the middle side of the top of the worm wheel (122), a transmission belt (124) connected to the front side of the driving pulley (123), and four supporting components (125) connected to the four sides of the rear of the transmission belt (124), the front and rear sides of the worm (121) are both provided with bearing blocks, and the bottom of the bearing blocks is fixed to the anti-slip frame (11), the middle side of the bottom of the worm wheel (122) is rotatably connected to the anti-slip frame (11), the four supporting components (125) are distributed in a rectangular shape, and the bottoms of the four supporting components (125) are all rotatably connected to the anti-slip frame (11), and the tops of the four supporting components (125) are all connected to the support sheet (15).

4. The multifunctional magnetic biophoton health mattress according to claim 3, characterized in that: The supporting component (125) comprises a driven pulley (1251) whose side is connected to the driving belt (124), a rotating seat (1252) penetrating and fixed to the middle side of the driven pulley (1251), a screw rod (1253) fixedly connected to the middle side of the top of the rotating seat (1252), and an internal thread sleeve (1254) threadedly connected to the outer surface of the screw rod (1253); the bottom of the rotating seat (1252) is rotatably connected to the anti-slip frame (11), and the top side of the internal thread sleeve (1254) is connected to the support sheet (15).

5. The multifunctional magnetic biophoton health mattress according to claim 1, characterized in that: The first auxiliary support component (13) and the second auxiliary support component (14) have the same structure and size, and are located in the middle of the anti-slip frame (11) in a bilaterally symmetrical arrangement.

6. The multifunctional magnetic biophoton health mattress according to claim 1, characterized in that: The first auxiliary support assembly (13) comprises a pad (131) whose bottom is fixed to the anti-slip frame (11), a first short rod (132) rotatably connected to the left side of the top of the pad (131), a damping rotating rod (133) connected to the top end of the first short rod (132), a second short rod (134) rotatably connected to the end position of the damping rotating rod (133), a slider (135) slidably connected to the right side of the top of the pad (131), and a long rod (136) rotatably connected to the rear side of the slider (135), the tops of the second short rod (134) and the long rod (136) are both rotatably connected to the support sheet (15), and the first short rod (132), the second short rod (134), the slider (135) and the long rod (136) are each provided with two, and are respectively located at the front and rear sides of the top of the pad (131).

7. The multifunctional magnetic biophoton health mattress according to claim 6, characterized in that: The top of the pad (131) is provided with sliding grooves on both the front and rear sides, and the bottoms of the two sliding blocks (135) are respectively inserted and slidable inside the two sliding grooves.

8. The multifunctional magnetic biophoton health mattress according to claim 1, characterized in that: The elastic layer structure (2) comprises a steel spring group (21) arranged on the top side of the supporting layer structure (1) and distributed in no less than eight rows, the top side of the steel spring group (21) contacts a load-bearing sheet (22) having an arc-shaped structure, the top middle side of the load-bearing sheet (22) contacts a positioning sheet (23), the top side of the positioning sheet (23) is connected to the functional layer structure (3), the steel spring group (21) is composed of no less than seventeen steel springs distributed equidistantly, and the length of the steel springs decreases in sequence as they extend outward from the middle of the load-bearing sheet (22).

9. The multifunctional magnetic biophoton health mattress according to claim 1, characterized in that: The electromagnetic component (32) comprises a coil body (321) arranged inside the groove of the high-density foam layer (31), a reinforcement frame (322) wrapped around the outside of the coil body (321), an iron core (323) arranged inside the middle of the coil body (321), and a gel sheet (324) arranged on the top side of the iron core (323); the gel sheet (324) is bonded to the top side of the groove, and the top side of the gel sheet (324) is connected to the comfort layer structure (4); the top side of the iron core (323) is a disc-shaped structure; the photon component (33) comprises an LED lamp bead (331), an optical lens (332) arranged above the LED lamp bead (331), and a buffer sheet (333) connected to the top side of the optical lens (332); the middle part of the inner side of the buffer sheet (333) is hollow, and the top side of the buffer sheet (333) is connected to the comfort layer structure (4).

10. The multifunctional magnetic biophoton health mattress according to claim 1, characterized in that: The comfort layer structure (4) comprises a natural latex (41), a fiber optic mesh structure layer (42) and a polyurethane foam layer (43) which are sequentially arranged from top to bottom. The bottom side of the polyurethane foam layer (43) is bonded to the high-density foam layer (31). The fiber optic mesh structure layer (42) is woven from plastic optical fibers and nylon fibers. The plastic optical fibers are arranged in parallel to avoid interlacing and overlapping of the optical fibers. The plastic optical fibers are respectively collected on the left and right sides. The collected left and right sides are connected to optical fiber ports (44). The two optical fiber ports (44) are respectively embedded on the left and right sides of the polyurethane foam layer (43). The bottom sides of the two optical fiber ports (44) are respectively connected to two photon components (33).

Citation Information

Patent Citations

  • Magnetic far-infrared bed mattress

    CN201085854Y