Physiological monitoring bed and physiological monitoring system
By designing multiple sleeping areas and accommodating slots on the physiological monitoring bed, and using the blocking components that are driven by the drive and the blocking plate, the problem of monitoring errors caused by the user turning over is solved, and noise is reduced through the transmission rod and elastic parts, improving the user experience and monitoring accuracy of the physiological monitoring bed.
Patent Information
- Application Number
- CN202510173017.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When the existing physiological monitoring bed monitors two or more people, the user turns over and enters the sleeping area of other people, causing monitoring errors, and blocks the component from producing noise when inflating it affects the sleep experience.
A physiological monitoring bed is designed, including multiple sleeping areas and accommodating slots. The blocking assembly is driven to the blocking plate by a drive member. When the drive member is pressed, it drives the blocking plate to rotate upward, preventing the user from turning over, and reducing noise through the transmission rod and elastic member.
Effectively block users from turning over and entering other sleeping areas, reduce noise generated by blocking components, and improve the user experience of physiological monitoring beds and the accuracy of monitoring results.
Smart Images

Figure CN120093218A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of furniture, and in particular to a physiological monitoring bed and a physiological monitoring system having the physiological monitoring bed. Background Art
[0002] The physiological monitoring bed is used to monitor the physiological signs of the user while the user is sleeping. In the prior art, in order to monitor the physiological signs of two or more people at the same time, the physiological monitoring bed is usually equipped with independent physiological monitoring devices corresponding to the number of monitored people. However, when the user turns over in sleep and enters the sleeping area of other people, the monitoring devices corresponding to the sleeping area of other people will monitor the physiological signals of both people at the same time, which will cause errors in the monitoring results of the physiological monitoring bed. In order to prevent the user from turning over and entering the sleeping area of other people, the physiological monitoring bed is provided with a blocking component. The existing blocking component inflates the airbag to expand the airbag and restrict the user from turning over, but noise is generated during the inflation process of the airbag, which affects the user's sleeping experience and reduces the user experience of the physiological monitoring bed. Summary of the invention
[0003] In order to reduce the noise generated by the blocking component, reduce the impact of the blocking component on the user's sleep, and improve the user experience of the physiological monitoring bed, the present application provides a physiological monitoring bed.
[0004] The present application further proposes a physiological monitoring system.
[0005] The present application provides a physiological monitoring bed adopting the following technical solution: A physiological monitoring bed comprises: a bed body and a mattress, wherein the mattress is arranged on the bed body, the mattress is provided with a plurality of sleeping areas, the plurality of sleeping areas are arranged in sequence along the width direction of the physiological monitoring bed, a receiving groove is provided between at least two adjacent sleeping areas, and the receiving groove is located at an end wall of the bed body close to the mattress; a physiological monitoring component, the physiological monitoring component is arranged on the mattress, and the physiological monitoring component is used to monitor physiological sign information of the human body.
[0006] A blocking assembly, at least one of the sleeping areas is provided with at least one blocking assembly, the blocking assembly is arranged in the accommodating groove, and the blocking assembly is arranged close to the sleeping area adjacent to the corresponding sleeping area, the blocking assembly includes a blocking plate and a driving member, one end of the blocking plate close to the corresponding sleeping area is pivotally connected to the bed body, and the top wall of the blocking plate and the mattress are stopped, the driving member is movably arranged in the accommodating groove and is suitable for extending into or moving out of the mattress, the driving member is transmission-connected with the blocking plate, and when the driving member is pressed, the driving member drives the blocking plate to rotate upward around the pivot axis of the blocking plate.
[0007] By adopting the above technical solution, the driving member is connected to the blocking plate through transmission. When the driving member is pressed by the user's body, the driving member drives the blocking plate to rotate upward, and the blocking plate drives the central area of the mattress to bulge upward to prevent the user from turning over from one of the two adjacent sleeping areas to the other. Compared with the prior art, when the blocking component prevents the user from turning over, the noise generated by the blocking component is smaller, thereby reducing the impact of the blocking component on the user's sleep, thereby improving the user experience of the physiological monitoring bed.
[0008] Preferably, the blocking assembly also includes a driving rack, a transmission rod and an elastic member, the driving rack being movably arranged in the accommodating groove, the transmission rod being pivotally mounted in the accommodating groove and connected to the blocking plate, the transmission rod being provided with a driving gear, the driving gear being meshingly connected to the driving rack, the driving member being transmission-connected to the driving rack, the driving member being used to drive the driving rack to drive the transmission rod to rotate around the central axis of the transmission rod, so that the transmission rod drives the blocking plate to rotate upward around the pivot axis of the blocking plate.
[0009] The elastic member is elastically deformably arranged between the driving rack and the side wall of the accommodating groove, and the elastic member is used to drive the driving rack to drive the transmission rod to rotate around the central axis of the transmission rod, so that the transmission rod drives the blocking plate to rotate downward around the pivot axis of the blocking plate.
[0010] By adopting the above technical solution, when the driving member is pressed, the driving member drives the driving rack to move closer to the central area of the mattress, the driving rack drives the driving gear to drive the transmission rod to rotate around the central axis of the transmission rod, and the transmission rod drives the blocking plate to rotate, so that the driving member drives the blocking plate to rotate upward around the pivot axis of the blocking plate. Moreover, when the driving member is not pressed, the elastic member drives the driving rack to move away from the central area of the mattress, the driving rack drives the driving gear to drive the transmission rod to rotate around the central axis of the transmission rod, and the transmission rod drives the blocking plate to rotate, so that the driving member drives the blocking plate to rotate downward around the pivot axis of the blocking plate.
[0011] Preferably, the driving rack is provided with a driving groove, the bottom wall of the driving groove is configured as a transmission slope, the end wall of the driving member away from the mattress is configured as a driving slope, and in the direction from the inside to the outside of the mattress, the driving slope and the transmission slope are both inclined downward, and the driving slope is stopped against the transmission slope, and the driving member moves downward along the driving slope when pressed, and the accommodating groove is provided with a guide member, and the driving member cooperates with the guide member for guidance.
[0012] By adopting the above technical solution, when the driving member is pressed, the driving member moves out of the mattress and moves along the driving inclined surface close to the bottom wall of the accommodating groove. When the driving member moves along the driving inclined surface close to the bottom wall of the accommodating groove, the driving member applies a force toward the center area of the mattress to the transmission inclined surface through the driving inclined surface. Under the action of the force, the driving rack moves close to the center area of the mattress, thereby achieving the technical effect that the driving member drives the driving rack to move close to the center area of the mattress.
[0013] Preferably, the accommodating groove is provided with a first guiding structure, the driving rack is provided with a second guiding structure, and the first guiding structure and the second guiding structure are guided and matched.
[0014] By adopting the above technical solution, through the guiding cooperation of the first guide structure and the second guide structure, it is possible to avoid the driving rack deviating from the preset motion trajectory so that the driving rack cannot mesh with the driving gear, and it is possible to avoid the driving member being unable to drive the blocking plate to rotate upward, thereby further improving the working reliability of the physiological monitoring bed.
[0015] Preferably, there are multiple drive racks, multiple transmission rods and multiple elastic members, and multiple drive parts are provided at the end of the drive member away from the mattress. The multiple drive racks, multiple transmission rods, multiple elastic members and multiple drive parts are arranged at intervals along the length direction of the physiological monitoring bed, and the multiple drive racks, multiple transmission rods, multiple elastic members and multiple drive parts are arranged in one-to-one correspondence, and the drive parts are transmission connected to the drive racks.
[0016] By adopting the above technical solution, multiple driving parts of the driving member simultaneously drive the corresponding driving racks to move close to the central area of the mattress, the driving racks drive the corresponding transmission rods to rotate, and the multiple transmission rods jointly drive the blocking plate to rotate upward around the pivot axis of the blocking plate. Compared with driving the blocking plate to rotate upward around the pivot axis of the blocking plate by a single transmission rod, such an arrangement can avoid that when one of the multiple transmission rods is damaged, the remaining transmission rods among the multiple transmission rods can drive the blocking plate to rotate around the pivot axis of the blocking plate, thereby improving the working reliability of the physiological monitoring bed.
[0017] Preferably, a plurality of pressing parts are provided at one end of the driving member close to the mattress, and the plurality of pressing parts are spaced apart along the length direction of the physiological monitoring bed, and the plurality of pressing parts are suitable for extending into or moving out of the mattress, and the plurality of pressing parts are suitable for being pressed.
[0018] By adopting the above technical solution, by arranging multiple pressing parts on the upper end of the driving member, the multiple pressing parts can increase the contact area of the driving member suitable for being pressed, thereby avoiding the contact area of the driving member suitable for being pressed being too small, and avoiding the driving member being unable to be pressed by the user's body when the user turns over from one of two adjacent sleeping areas to another, thereby improving the reliability of use of the physiological monitoring bed.
[0019] Preferably, the accommodating groove is provided with a plurality of supporting members, the plurality of supporting members are arranged at intervals along the radial direction of the physiological monitoring bed, and the plurality of supporting members are all suitable for abutting against the bottom wall of the blocking plate.
[0020] By adopting the above technical solution, by arranging multiple support members in the accommodating groove, the multiple support members are all used to support the blocking plate, so as to avoid the blocking plate being unable to support the mattress and causing the mattress located between two adjacent sleeping areas to sink downward, and to avoid the user being unable to lie flat on the mattress to rest, thereby improving the user experience of the physiological monitoring bed.
[0021] Preferably, there are a plurality of the accommodating slots and the blocking assemblies, and the plurality of the accommodating slots and the plurality of the blocking assemblies are arranged in sequence along the length direction of the physiological monitoring bed, and the plurality of the accommodating slots and the plurality of the blocking assemblies are arranged in one-to-one correspondence.
[0022] By adopting the above technical solution, by arranging multiple blocking components on the physiological monitoring bed, the multiple blocking components can be used to block different areas of the user's body respectively, and the multiple blocking components can completely cover all areas of the user's body, thereby preventing the area of the user's body not covered by the blocking components from turning over from one of two adjacent sleeping areas to another, thereby improving the reliability of the use of the physiological monitoring bed, and further improving the accuracy of the monitoring results of the physiological monitoring bed.
[0023] Preferably, the physiological monitoring component includes a plurality of physiological monitoring parts, and the plurality of physiological monitoring parts are arranged in sequence along the width direction of the physiological monitoring bed, and the plurality of physiological monitoring parts are arranged in one-to-one correspondence with the plurality of sleeping areas, and the physiological monitoring parts are used to monitor the physiological signs information of the human body in the corresponding sleeping areas.
[0024] By adopting the above technical solution and arranging a plurality of physiological monitoring components on the physiological monitoring bed, the technical effect of the physiological monitoring bed simultaneously monitoring the physiological signs information of multiple persons can be achieved.
[0025] The present application provides a physiological monitoring system that adopts the following technical solution: A physiological monitoring system includes at least one physiological monitoring bed, wherein the physiological monitoring bed is one of the above-mentioned physiological monitoring beds.
[0026] By adopting the above technical solution, the driving member is connected to the blocking plate through transmission. When the driving member is pressed by the user's body, the driving member drives the blocking plate to rotate upward, and the blocking plate drives the central area of the mattress to bulge upward to prevent the user from turning over from one of the two adjacent sleeping areas to the other. Compared with the prior art, when the blocking component prevents the user from turning over, the noise generated by the blocking component is smaller, thereby reducing the impact of the blocking component on the user's sleep, thereby improving the user experience of the physiological monitoring bed.
[0027] In summary, the present application includes at least one of the following beneficial technical effects: 1. The driving member is connected to the blocking plate through transmission. When the driving member is pressed by the user's body, the driving member drives the blocking plate to rotate upward, and the blocking plate drives the central area of the mattress to bulge upward to prevent the user from turning over from one of the two adjacent sleeping areas to the other. Compared with the prior art, when the blocking component prevents the user from turning over, the noise generated by the blocking component is smaller, thereby reducing the impact of the blocking component on the user's sleep, thereby improving the user experience of the physiological monitoring bed; 2. By arranging multiple support members in the receiving groove, the multiple support members are used to support the blocking plate, so as to avoid the blocking plate failing to support the mattress, causing the mattress between two adjacent sleeping areas to sag downward, and prevent the user from being unable to lie flat on the mattress to rest, thereby improving the user experience of the physiological monitoring bed; 3. By arranging multiple blocking components on the physiological monitoring bed, the multiple blocking components can be used to block different areas of the user's body respectively, and the multiple blocking components can completely cover all areas of the user's body, thereby preventing the area of the user's body not covered by the blocking components from turning over from one of two adjacent sleeping areas to another, thereby improving the reliability of the use of the physiological monitoring bed, and further improving the accuracy of the monitoring results of the physiological monitoring bed. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 is a schematic diagram of a physiological monitoring bed according to an embodiment of the present application; Figure 2 is a cross-sectional view of a physiological monitoring bed according to an embodiment of the present application; Figure 3 yes Figure 2 The enlarged schematic diagram of point A in the middle; Figure 4 yes Figure 2 The enlarged schematic diagram of point B in the middle; Figure 5 is a cross-sectional view of a partial structure of a physiological monitoring bed according to an embodiment of the present application; Figure 6 is a schematic diagram of a partial structure of a physiological monitoring bed according to an embodiment of the present application; Figure 7 yes Figure 6 The enlarged schematic diagram of the center C; Figure 8 It is a schematic diagram of another part of the structure of the physiological monitoring bed in the embodiment of the present application.
[0029] Description of reference numerals: 100. Physiological monitoring bed; 1. bed body; 11. receiving groove; 111. guide member; 112. first guide structure; 113. support member; 2. Mattress; 21. Sleeping area; 3. Physiological monitoring components; 31. Physiological monitoring components; 4. Blocking assembly; 41. Blocking plate; 42. Driving member; 421. Driving inclined surface; 422. Driving part; 423. Pressing part; 43. Driving rack; 431. Driving groove; 432. Transmission inclined surface; 433. Second guide structure; 44. Transmission rod; 441. Driving gear; 45. Elastic member. DETAILED DESCRIPTION
[0030] The following is combined with Figure 1-Figure 8 This application is described in further detail.
[0031] The embodiment of the present application discloses a physiological monitoring bed 100 .
[0032] Reference Figure 1-Figure 3 According to the embodiment of the present application, the physiological monitoring bed 100 includes: a bed body 1, a mattress 2, a physiological monitoring component 3 and a blocking component 4. In the height direction of the physiological monitoring bed 100, the mattress 2 is arranged on the upper end wall of the bed body 1, and the mattress 2 is provided with a plurality of sleeping areas 21. In the width direction of the physiological monitoring bed 100, the plurality of sleeping areas 21 are arranged in sequence, and a receiving groove 11 is provided between at least two adjacent sleeping areas 21, and the receiving groove 11 is located on the end wall of the bed body 1 close to the mattress 2, that is, the receiving groove 11 is provided on the upper end wall of the bed body 1 and between two adjacent sleeping areas 21. In some specific embodiments, the mattress 2 can be provided with two sleeping areas 21, and a receiving groove 11 is provided between the two sleeping areas 21. In other specific embodiments, the mattress 2 can be provided with three sleeping areas 21, and a receiving groove 11 can be provided between any two adjacent sleeping areas 21.
[0033] It should be noted that the user can rest in the sleeping area 21, and the height direction of the physiological monitoring bed 100 can refer to Figure 2 The width direction of the physiological monitoring bed 100 may refer to the up-down direction. Figure 2 The left and right direction in .
[0034] The physiological monitoring component 3 is disposed on the mattress 2. The physiological monitoring component 3 is used to monitor the physiological signs of the human body. In some specific embodiments, the physiological signs of the human body may be the body temperature, but the present application is not limited thereto. The physiological signs of the human body may also be the heart rate and blood oxygen, etc. In other specific embodiments, the physiological monitoring component 3 may be disposed on the upper end wall of the mattress 2, but the present application is not limited thereto. The physiological monitoring component 3 may also be embedded in the mattress 2.
[0035] At least one sleeping area 21 is provided with at least one blocking assembly 4. Figure 1 and Figure 2 In the illustrated embodiment, there are two sleeping areas 21, and each of the two sleeping areas 21 is respectively provided with a blocking component 4, the blocking component 4 is disposed in the accommodating groove 11, and the blocking component 4 is disposed close to the sleeping area 21 adjacent to the corresponding sleeping area 21, that is, the blocking component 4 located on the left side of the two blocking components 4 is disposed close to the sleeping area 21 located on the left side, and the blocking component 4 located on the right side of the two blocking components 4 is disposed close to the sleeping area 21 located on the right side.
[0036] Furthermore, the blocking assembly 4 includes a blocking plate 41 and a driving member 42. The blocking plate 41 is pivotally connected to the bed body 1 at one end close to the corresponding sleeping area 21, and the top wall of the blocking plate 41 abuts against the mattress 2. Specifically, Figure 2 In the illustrated embodiment, the left end of the left blocking plate 41 of the two blocking plates 41 is pivotally connected to the bed body 1, the right end of the right blocking plate 41 of the two blocking plates 41 is pivotally connected to the bed body 1, and the upper end wall of the blocking plate 41 abuts against the mattress 2.
[0037] The driving member 42 is movably disposed in the accommodating groove 11 and is suitable for extending into or moving out of the mattress 2, and the driving member 42 is suitable for moving along the height direction of the physiological monitoring bed 100. The driving member 42 is transmission-connected with the blocking plate 41. When the driving member 42 is pressed, the driving member 42 drives the blocking plate 41 to rotate upward around the pivot axis of the blocking plate 41.
[0038] Specifically, when the driving member 42 is not pressed, the upper end of the driving member 42 extends into the mattress 2. When the user turns over from one of the two adjacent sleeping areas 21 to the other, the driving member 42 is pressed by the user's body, and the driving member 42 moves out of the mattress 2 and moves close to the bottom wall of the accommodating groove 11. The driving member 42 drives the blocking plate 41 to rotate upward around the pivot axis between the blocking plate 41 and the bed body 1. The free end of the blocking plate 41 drives the middle area of the mattress 2 to bulge upward. In the direction from the center to the edge of the mattress 2, the cross-sectional shape of the mattress 2 is a downwardly inclined slope to prevent the user from turning over from one of the two sleeping areas 21 to the other. It should be noted that the free end of the blocking plate 41 is the end of the blocking plate 41 that is not pivotally connected to the bed body 1.
[0039] When the driving member 42 is not pressed by the user's body, the driving member 42 moves away from the bottom wall of the accommodating groove 11 and extends into the mattress 2. The driving member 42 drives the blocking plate 41 to rotate downward, and the blocking plate 41 returns to its initial position to restore the mattress 2 to a flat state.
[0040] In some specific embodiments, the physiological monitoring bed 100 may further include a controller, the receiving slot 11 may be provided with a Hall sensor, the driving member 42 is suitable for being arranged opposite to the Hall sensor, a spring is arranged between the driving member 42 and the receiving slot 11, the blocking plate 41 is connected to the motor, the controller is communicatively connected with the Hall sensor and the motor, and the controller is used to control the motor to start or stop working according to the detection signal of the Hall sensor.
[0041] Specifically, when the driving member 42 is pressed, the driving member 42 moves out of the mattress 2 and moves downward and is opposite to the Hall sensor. The Hall sensor generates a first detection signal, and the controller controls the motor to drive the blocking plate 41 to rotate upward according to the first detection signal. When the driving member 42 is not pressed, the spring drives the driving member 42 to move upward and extend into the mattress 2. The driving member 42 is not opposite to the Hall sensor, and the Hall sensor generates a second detection signal. The controller controls the motor to drive the blocking plate 41 to rotate downward according to the second detection signal.
[0042] Thus, through the transmission connection between the driving member 42 and the blocking plate 41, when the driving member 42 is pressed by the user's body, the driving member 42 drives the blocking plate 41 to rotate upward, and the blocking plate 41 drives the central area of the mattress 2 to bulge upward, so as to prevent the user from turning over from one of the two adjacent sleeping areas 21 to the other. Compared with the prior art, when the blocking component 4 prevents the user from turning over, the noise generated by the blocking component 4 is smaller, thereby reducing the impact of the blocking component 4 on the user's sleep, and further improving the user experience of the physiological monitoring bed 100.
[0043] Reference Figure 2-Figure 5 In some embodiments of the present application, the blocking assembly 4 further includes a driving rack 43, a transmission rod 44 and an elastic member 45. The driving rack 43 is movably arranged in the receiving slot 11, and the driving rack 43 is suitable for moving along the width direction of the physiological monitoring bed 100. The transmission rod 44 is pivotally installed in the receiving slot 11 and is connected and matched with the blocking plate 41. The transmission rod 44 is provided with a driving gear 441. Specifically, along the length direction of the physiological monitoring bed 100, one end of the transmission rod 44 is connected and matched with the receiving slot 11, and the other end of the transmission rod 44 is provided with a driving gear 441. The driving gear 441 is meshed and connected with the driving rack 43, and the driving member 42 is transmission-connected with the driving rack 43. The length direction of the physiological monitoring bed 100 can refer to Figure 1 The front-to-back direction.
[0044] In addition, the driving member 42 is used to drive the driving rack 43 to drive the transmission rod 44 to rotate around the central axis of the transmission rod 44, so that the transmission rod 44 drives the blocking plate 41 to rotate upward around the pivot axis of the blocking plate 41. The elastic member 45 is elastically deformably arranged between the driving rack 43 and the side wall of the accommodating groove 11. The elastic member 45 is used to drive the driving rack 43 to drive the transmission rod 44 to rotate around the central axis of the transmission rod 44, so that the transmission rod 44 drives the blocking plate 41 to rotate downward around the pivot axis of the blocking plate 41.
[0045] Specifically, there are two sleeping areas 21, and an elastic member 45 is connected between the left side wall of the driving rack 43 near the left sleeping area 21 and the left side wall of the receiving groove 11, and an elastic member 45 is connected between the right side wall of the driving rack 43 near the right sleeping area 21 and the right side wall of the receiving groove 11. When the driving member 42 is pressed, the driving member 42 drives the driving rack 43 to move near the center area of the mattress 2, and the driving rack 43 near the left sleeping area 21 drives the driving gear 441 to drive the transmission rod 44 to rotate counterclockwise around the central axis of the transmission rod 44, and the transmission rod 44 drives the blocking plate 41 near the left sleeping area 21 to rotate counterclockwise, and the driving rack 43 near the right sleeping area 21 drives the driving gear 441 to drive the transmission rod 44 to rotate clockwise around the central axis of the transmission rod 44, and the transmission rod 44 drives the blocking plate 41 near the right sleeping area 21 to rotate clockwise, thereby achieving the technical effect that the driving member 42 drives the blocking plate 41 to rotate upward around the pivot axis of the blocking plate 41. It should be noted that the pivot axis of the blocking plate 41 is the central axis of the transmission rod 44.
[0046] Furthermore, in the process of the driving rack 43 moving close to the central area of the mattress 2, the elastic member 45 is stretched by the driving rack 43. When the driving member 42 is not pressed, the elastic member 45 drives the driving rack 43 to move away from the central area of the mattress 2. The driving rack 43 close to the left sleeping area 21 drives the driving gear 441 to drive the transmission rod 44 to rotate clockwise around the central axis of the transmission rod 44, and the transmission rod 44 drives the blocking plate 41 close to the left sleeping area 21 to rotate clockwise. The driving rack 43 close to the right sleeping area 21 drives the driving gear 441 to drive the transmission rod 44 to rotate counterclockwise around the central axis of the transmission rod 44, and the transmission rod 44 drives the blocking plate 41 close to the right sleeping area 21 to rotate counterclockwise, thereby achieving the technical effect that the driving member 42 drives the blocking plate 41 to rotate downward around the pivot axis of the blocking plate 41. Furthermore, when the driving rack 43 moves away from the central area of the mattress 2 , the driving rack 43 drives the driving member 42 to move away from the bottom wall of the accommodating groove 11 and extend into the mattress 2 , so that the driving member 42 is reset.
[0047] In some specific embodiments, the elastic member 45 may be a spring, but the present application is not limited thereto, and the elastic member 45 may also be a tension spring or the like.
[0048] Reference Figure 3-Figure 5 In some embodiments of the present application, the driving rack 43 is provided with a driving slot 431 . Specifically, along the length direction of the physiological monitoring bed 100 , the driving slot 431 can be provided on the front side wall or the rear side wall of the driving rack 43 . The bottom wall of the driving groove 431 is configured as a transmission slope 432, and the end wall of the driving member 42 away from the mattress 2 is configured as a driving slope 421. In the direction from the inside to the outside of the mattress 2, the driving slope 421 and the driving slope 432 are both arranged to be tilted downward. Specifically, along the width direction of the physiological monitoring bed 100, the driving slope 432 of the driving rack 43 near the left sleeping area 21 is arranged to be tilted downward in a direction from right to left, the driving slope 421 of the driving member 42 near the left sleeping area 21 is arranged to be tilted downward in a direction from right to left, the driving slope 432 of the driving rack 43 near the right sleeping area 21 is arranged to be tilted downward in a direction from left to right, and the driving slope 421 of the driving member 42 near the right sleeping area 21 is arranged to be tilted downward in a direction from left to right.
[0049] In addition, the driving inclined surface 421 and the transmission inclined surface 432 are stopped, and the driving member 42 moves downward along the driving inclined surface 421 when being pressed. Specifically, when the driving member 42 is pressed, the driving member 42 moves out of the mattress 2 and moves along the driving inclined surface 421 close to the bottom wall of the accommodating groove 11. When the driving member 42 moves along the driving inclined surface 421 close to the bottom wall of the accommodating groove 11, the driving member 42 applies a force toward the central area of the mattress 2 to the transmission inclined surface 432 through the driving inclined surface 421. Under the action of the force, the driving rack 43 moves close to the central area of the mattress 2, thereby achieving the technical effect that the driving member 42 drives the driving rack 43 to move close to the central area of the mattress 2.
[0050] When the driving member 42 is not pressed, the elastic member 45 drives the driving rack 43 to move away from the central area of the mattress 2. In the process of the driving rack 43 moving away from the central area of the mattress 2, the transmission slope 432 applies an upward force to the driving member 42 through the driving slope 421. Under the action of the force, the driving member 42 moves away from the bottom wall of the accommodating groove 11, so that the driving member 42 extends into the mattress 2 and returns to the initial position.
[0051] Furthermore, the accommodating groove 11 is provided with a guide member 111, and the driving member 42 is guided and cooperated with the guide member 111. Specifically, along the height direction of the physiological monitoring bed 100, the lower end of the driving member 42 passes through the guide member 111 and is transmission-connected with the driving rack 43. The guide member 111 is used to guide the driving member 42 so that the driving member 42 moves along the height direction of the physiological monitoring bed 100, thereby preventing the driving member 42 from deviating from the preset motion trajectory, and preventing the driving member 42 from being unable to be pressed, resulting in the driving member 42 being unable to drive the blocking plate 41 to rotate upward, thereby improving the working reliability of the physiological monitoring bed 100.
[0052] Reference Figure 5 In some embodiments of the present application, the accommodating groove 11 is provided with a first guiding structure 112 , and the driving rack 43 is provided with a second guiding structure 433 , and the first guiding structure 112 and the second guiding structure 433 are guided and matched.
[0053] Specifically, along the height direction of the physiological monitoring bed 100, the first guide structure 112 can be set on the bottom wall of the accommodating groove 11, and the second guide structure 433 can be set on the lower end wall of the driving rack 43. Through the guiding cooperation of the first guide structure 112 and the second guide structure 433, it is possible to prevent the driving rack 43 from deviating from the preset motion trajectory, resulting in the driving rack 43 being unable to engage with the driving gear 441, and it is possible to prevent the driving member 42 from being unable to drive the blocking plate 41 to rotate upward, thereby further improving the working reliability of the physiological monitoring bed 100.
[0054] In some specific embodiments, the first guide structure 112 can be constructed as a "T"-shaped protrusion, and the second guide structure 433 can be constructed as a "T"-shaped groove. In other specific embodiments, the first guide structure 112 can be constructed as a triangular protrusion, and the second guide structure 433 can be constructed as a triangular groove.
[0055] Reference Figure 5-Figure 7 In some embodiments of the present application, the driving rack 43, the transmission rod 44 and the elastic member 45 are all multiple, and the end of the driving member 42 away from the mattress 2 is provided with multiple driving parts 422. Specifically, along the height direction of the physiological monitoring bed 100, the driving part 422 is located at the lower end of the driving part 42, and the driving inclined surface 421 is the lower end wall of the driving part 422. The multiple driving racks 43, the multiple transmission rods 44, the multiple elastic members 45 and the multiple driving parts 422 are all arranged at intervals along the length direction of the physiological monitoring bed 100, and the multiple driving racks 43, the multiple transmission rods 44, the multiple elastic members 45 and the multiple driving parts 422 are all arranged one by one, and the driving parts 422 are drivingly connected with the driving racks 43.
[0056] In some specific embodiments, there are two drive racks 43, transmission rods 44, elastic members 45 and drive parts 422, and each transmission rod 44 is provided with a drive gear 441. When the upper end of the driving member 42 is pressed, the two driving parts 422 of the driving member 42 simultaneously drive the corresponding drive racks 43 to move close to the central area of the mattress 2, and the drive racks 43 drive the corresponding transmission rods 44 to rotate. The multiple transmission rods 44 jointly drive the blocking plate 41 to rotate upward around the pivot axis of the blocking plate 41. Compared with a single transmission rod 44 driving the blocking plate 41 to rotate upward around the pivot axis of the blocking plate 41, such a setting can avoid that when one of the multiple transmission rods 44 is damaged, the remaining transmission rods 44 in the multiple transmission rods 44 can all drive the blocking plate 41 to rotate around the pivot axis of the blocking plate 41, thereby improving the working reliability of the physiological monitoring bed 100.
[0057] When the driving member 42 is not pressed, multiple elastic members 45 simultaneously drive the corresponding driving racks 43 to move away from the central area of the mattress 2, multiple transmission rods 44 jointly drive the blocking plate 41 to rotate downward around the pivot axis of the blocking plate 41, and multiple driving racks 43 jointly drive the driving member 42 to move away from the bottom wall of the accommodating groove 11 and extend into the mattress 2.
[0058] Reference Figure 5 and Figure 6 In some embodiments of the present application, a plurality of pressing portions 423 are provided at one end of the driving member 42 close to the mattress 2. Specifically, along the height direction of the physiological monitoring bed 100, the plurality of pressing portions 423 are all located at the upper end of the driving member 42, and the plurality of pressing portions 423 are spaced apart along the length direction of the physiological monitoring bed 100. The plurality of pressing portions 423 are all suitable for extending into or moving out of the mattress 2, and the plurality of pressing portions 423 are all suitable for being pressed.
[0059] Specifically, when the user turns over from one of two adjacent sleeping areas 21 to another, one or more of the multiple pressing parts 423 are pressed by the user's body. After one or more of the multiple pressing parts 423 are pressed by the user's body, the multiple pressing parts 423 simultaneously move close to the bottom wall of the accommodating groove 11 and move out of the mattress 2. The multiple pressing parts 423 simultaneously drive the multiple driving parts 422 to drive the corresponding driving racks 43 to move close to the central area of the mattress 2. The multiple driving racks 43 drive the corresponding transmission rods 44 to rotate, so that the multiple transmission rods 44 jointly drive the blocking plate 41 to rotate upward.
[0060] By arranging a plurality of pressing portions 423 at the upper end of the driving member 42, the plurality of pressing portions 423 can increase the contact area of the driving member 42 suitable for being pressed, thereby preventing the contact area of the driving member 42 suitable for being pressed from being too small, and preventing the driving member 42 from being unable to be pressed by the user's body when the user turns over from one of two adjacent sleeping areas 21 to another, thereby improving the reliability of use of the physiological monitoring bed 100.
[0061] Reference Figure 5 and Figure 7 In some embodiments of the present application, the accommodating groove 11 is provided with a plurality of support members 113, and the plurality of support members 113 are spaced apart along the radial direction of the physiological monitoring bed 100. Along the height direction of the physiological monitoring bed 100, the plurality of support members 113 are all located above the blocking plate 41, and the plurality of support members 113 are all suitable for abutting against the bottom wall of the blocking plate 41.
[0062] When the blocking plate 41 is not driven to rotate upward around the pivot axis of the blocking plate 41, the support member 113 stops at the bottom wall of the blocking plate 41. By arranging multiple support members 113 in the accommodating groove 11, the multiple support members 113 are all used to support the blocking plate 41, thereby preventing the blocking plate 41 from being unable to support the mattress 2, causing the mattress 2 located between two adjacent sleeping areas 21 to sag downward, and preventing the user from being unable to lie flat on the mattress 2 to rest, thereby improving the user experience of the physiological monitoring bed 100.
[0063] Reference Figure 8 In some embodiments of the present application, there are multiple receiving slots 11 and multiple blocking components 4, and the multiple receiving slots 11 and the multiple blocking components 4 are arranged in sequence along the length direction of the physiological monitoring bed 100, and the multiple receiving slots 11 and the multiple blocking components 4 are arranged in one-to-one correspondence.
[0064] By providing a plurality of blocking components 4 on the physiological monitoring bed 100, the plurality of blocking components 4 can be used to block different areas of the user's body respectively, and the plurality of blocking components 4 can completely cover all areas of the user's body, thereby preventing the area of the user's body not covered by the blocking components 4 from turning over from one of two adjacent sleeping areas 21 to another, thereby improving the reliability of use of the physiological monitoring bed 100, and further improving the accuracy of the monitoring results of the physiological monitoring bed 100.
[0065] In some specific embodiments, there are three blocking components 4, and the blocking component 4 near the front end of the mattress 2 among the three blocking components 4 is used to block the user's head, the blocking component 4 near the rear end of the mattress 2 among the three blocking components 4 is used to block the user's legs, and the blocking component 4 located between the front end of the mattress 2 and the rear end of the mattress 2 among the three blocking components 4 is used to block the user's waist.
[0066] Reference Figure 1 In some embodiments of the present application, the physiological monitoring component 3 includes a plurality of physiological monitoring components 31, and the plurality of physiological monitoring components 31 are arranged in sequence along the width direction of the physiological monitoring bed 100, and the plurality of physiological monitoring components 31 are arranged one by one corresponding to the plurality of sleeping areas 21, and the physiological monitoring components 31 are used to monitor the physiological signs information of the human body in the corresponding sleeping area 21.
[0067] In some specific embodiments, the physiological monitoring component 31 may be a body temperature sensor, but the present application is not limited thereto. The physiological monitoring component 31 may also be a blood oxygen sensor, etc. It should be noted that when the physiological monitoring component 31 is a blood oxygen sensor, the physiological monitoring component 31 may be mounted on the outside of the user's finger to monitor the user's blood oxygen signal.
[0068] By arranging a plurality of physiological monitoring components 31 on the physiological monitoring bed 100 , the physiological monitoring bed 100 can achieve the technical effect of simultaneously monitoring the physiological sign information of multiple persons.
[0069] Based on this, the present application further discloses a physiological monitoring system. The physiological monitoring system according to the embodiment of the present application includes: at least one physiological monitoring bed 100, which is used to monitor physiological signs information of the human body. The physiological monitoring bed 100 is the physiological monitoring bed 100 described in the above embodiment.
[0070] According to the physiological monitoring system described in the embodiment of the present application, the physiological monitoring bed 100 is arranged in the physiological monitoring system, and is connected to the blocking plate 41 through the driving member 42. When the driving member 42 is pressed by the user's body, the driving member 42 drives the blocking plate 41 to rotate upward, and the blocking plate 41 drives the central area of the mattress 2 to bulge upward to prevent the user from turning over from one of the two adjacent sleeping areas 21 to the other. Compared with the prior art, when the blocking component 4 prevents the user from turning over, the noise generated by the blocking component 4 is smaller, thereby reducing the impact of the blocking component 4 on the user's sleep, and further improving the user experience of the physiological monitoring bed 100.
[0071] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. A physiological monitoring bed, characterized in that: include: A bed body (1) and a mattress (2), wherein the mattress (2) is arranged on the bed body (1), and the mattress (2) is provided with a plurality of sleeping areas (21), and along the width direction of the physiological monitoring bed (100), the plurality of sleeping areas (21) are arranged in sequence, and a receiving groove (11) is provided between at least two adjacent sleeping areas (21), and the receiving groove (11) is located on the end wall of the bed body (1) close to the mattress (2); A physiological monitoring component (3), the physiological monitoring component (3) being arranged on the mattress (2), and the physiological monitoring component (3) being used to monitor physiological sign information of a human body; A blocking assembly (4), at least one of the sleeping areas (21) is provided with at least one blocking assembly (4), the blocking assembly (4) is arranged in the receiving groove (11), and the blocking assembly (4) is arranged close to the sleeping area (21) adjacent to the corresponding sleeping area (21), the blocking assembly (4) comprises a blocking plate (41) and a driving member (42), one end of the blocking plate (41) close to the corresponding sleeping area (21) is pivotally connected to the bed body (1), and the top wall of the blocking plate (41) and the mattress (2) are abutted, the driving member (42) is movably arranged in the receiving groove (11) and is suitable for extending into or moving out of the mattress (2), the driving member (42) is transmission-connected to the blocking plate (41), and when the driving member (42) is pressed, the driving member (42) drives the blocking plate (41) to rotate upward around the pivot axis of the blocking plate (41).
2. A physiological monitoring bed according to claim 1, characterized in that: The blocking assembly (4) further comprises a driving rack (43), a transmission rod (44) and an elastic member (45); the driving rack (43) is movably arranged in the accommodating groove (11); the transmission rod (44) is pivotally mounted in the accommodating groove (11) and is connected and cooperated with the blocking plate (41); the transmission rod (44) is provided with a driving gear (441); the driving gear (441) is meshedly connected with the driving rack (43); the driving member (42) is transmission-connected with the driving rack (43); the driving member (42) is used to drive the driving rack (43) to drive the transmission rod (44) to rotate around the central axis of the transmission rod (44), so that the transmission rod (44) drives the blocking plate (41) to rotate upward around the pivot axis of the blocking plate (41); The elastic member (45) is elastically deformably arranged between the driving rack (43) and the side wall of the accommodating groove (11), and the elastic member (45) is used to drive the driving rack (43) to drive the transmission rod (44) to rotate around the central axis of the transmission rod (44), so that the transmission rod (44) drives the blocking plate (41) to rotate downward around the pivot axis of the blocking plate (41).
3. A physiological monitoring bed according to claim 2, characterized in that: The driving rack (43) is provided with a driving groove (431), the bottom wall of the driving groove (431) is configured as a transmission slope (432), the end wall of the driving member (42) away from the mattress (2) is configured as a driving slope (421), in the direction from the inside to the outside of the mattress (2), the driving slope (421) and the transmission slope (432) are both arranged to be inclined downward, and the driving slope (421) and the transmission slope (432) are abutted against each other, and the driving member (42) moves downward along the driving slope (421) when pressed, and the accommodating groove (11) is provided with a guide member (111), and the driving member (42) is guided and matched with the guide member (111).
4. A physiological monitoring bed according to claim 2, characterized in that: The accommodating groove (11) is provided with a first guiding structure (112), and the driving rack (43) is provided with a second guiding structure (433), and the first guiding structure (112) and the second guiding structure (433) are guided and matched.
5. The physiological monitoring bed according to claim 2, characterized in that: The driving rack (43), the transmission rod (44) and the elastic member (45) are all multiple, and the end of the driving member (42) away from the mattress (2) is provided with multiple driving parts (422), and the multiple driving racks (43), the multiple transmission rods (44), the multiple elastic members (45) and the multiple driving parts (422) are all arranged at intervals along the length direction of the physiological monitoring bed (100), and the multiple driving racks (43), the multiple transmission rods (44), the multiple elastic members (45) and the multiple driving parts (422) are all arranged in a one-to-one correspondence, and the driving parts (422) are drivingly connected to the driving rack (43).
6. The physiological monitoring bed according to claim 1, characterized in that: A plurality of pressing parts (423) are provided at one end of the driving member (42) close to the mattress (2); the plurality of pressing parts (423) are arranged at intervals along the length direction of the physiological monitoring bed (100); the plurality of pressing parts (423) are all suitable for extending into or moving out of the mattress (2), and the plurality of pressing parts (423) are all suitable for being pressed.
7. The physiological monitoring bed according to claim 1, characterized in that: The receiving groove (11) is provided with a plurality of support members (113), the plurality of support members (113) are arranged at intervals along the radial direction of the physiological monitoring bed (100), and the plurality of support members (113) are all suitable for abutting against the bottom wall of the blocking plate (41).
8. The physiological monitoring bed according to claim 1, characterized in that: The plurality of receiving slots (11) and the plurality of blocking assemblies (4) are arranged in sequence along the length direction of the physiological monitoring bed (100), and the plurality of receiving slots (11) and the plurality of blocking assemblies (4) are arranged in one-to-one correspondence.
9. The physiological monitoring bed according to claim 1, characterized in that: The physiological monitoring component (3) comprises a plurality of physiological monitoring components (31), wherein the plurality of physiological monitoring components (31) are arranged in sequence along the width direction of the physiological monitoring bed (100), and the plurality of physiological monitoring components (31) are arranged in a one-to-one correspondence with the plurality of sleeping areas (21), and the physiological monitoring components (31) are used to monitor the physiological sign information of the human body in the corresponding sleeping area (21).
10. A physiological monitoring system, characterized in that: include: At least one physiological monitoring bed (100), wherein the physiological monitoring bed (100) is a physiological monitoring bed (100) according to any one of claims 1-9.