Auxiliary getting-up device for clinical nursing

By designing a clinical nursing standing device that includes a standing frame, a lowering frame, a sliding seat, and an electric telescopic mechanism, the problem of physical exhaustion and secondary injury caused by patients needing to move a large range of distances has been solved, achieving safe and convenient standing assistance.

CN224141083UActive Publication Date: 2026-04-21SHANGHAI PULMONARY HOSPITAL (SHANGHAI OCCUPATIONAL DISEASE PREVENTION & CONTROL INSTITUTE)
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI PULMONARY HOSPITAL (SHANGHAI OCCUPATIONAL DISEASE PREVENTION & CONTROL INSTITUTE)
Filing Date
2025-03-03
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing clinical nursing standing devices require patients to move around a lot, which puts a high demand on physical strength and can easily lead to secondary injuries.

Method used

An auxiliary standing device was designed, comprising a standing frame, a lowering frame, a sliding seat, a lifting seat, and an electric telescopic device. Through small-range movement and an adjustable support structure, it reduces the physical exertion and risk of injury to patients.

Benefits of technology

It allows patients to move within a small range, reduces physical exertion and the chance of secondary injury, and improves the support effect and safety of the standing device.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the technical scheme, the auxiliary getting-up device for clinical nursing comprises a base and a bed body, the bed body is installed at the top of the base through a supporting column, overturning grooves are formed in the middles of the two sides of the bed body, and a getting-up frame is installed in the overturning groove in one side of the bed body through a positioning shaft; a lowering frame is installed in the overturning groove in the other side of the bed body through a positioning shaft, sliding blocks are installed on the two sides of the top of the base through dovetail grooves, electric expansion pieces are installed on the tops of the sliding blocks on the two sides, lifting bases are installed on output shafts of the electric expansion pieces, and sliding bases are installed in the middles of the bottoms of the getting-up frame and the lowering frame. The auxiliary getting-up device for clinical nursing solves the problems that when an existing clinical nursing getting-up device is used, a patient needs to move many positions, the requirement for physical ability of the body of the patient is high, and the patient is prone to secondary injury due to excessive movement, the physical ability consumption of the body of the patient is reduced, and therefore the probability of secondary injury of the patient is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of clinical nursing technology, specifically to an auxiliary standing device for clinical nursing. Background Technology

[0002] Clinical nursing refers to the direct care services provided by nurses to patients in healthcare institutions, aimed at promoting patient recovery and health. This form of care encompasses many aspects, including monitoring patient conditions, administering medical orders, providing medications, assisting with medical procedures, providing emotional support, and educating patients. Bedside care is a crucial part of the healthcare system, and nurses' professional knowledge and compassionate spirit are essential for patient recovery and health. In clinical nursing, it is necessary to use bedpans to assist patients in getting up.

[0003] Existing clinical nursing standing devices require patients to move around a lot during use, which places high demands on their physical strength. Excessive movement can also easily lead to secondary injuries. Therefore, we propose an auxiliary standing device for clinical nursing. Utility Model Content

[0004] The purpose of this invention is to provide an auxiliary standing device for clinical nursing, which has the effect of small-range movement and facilitates patients to get up, in order to solve the problem that existing clinical nursing standing devices require patients to move a lot during use, which places high demands on the patient's physical strength, and excessive movement can easily lead to secondary injury to the patient.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an auxiliary standing device for clinical nursing, comprising a base and a bed, wherein the bed is mounted on the top of the base via a support column, and a turning groove is provided in the middle of both sides of the bed. A standing frame is mounted inside the turning groove on one side of the bed via a positioning shaft, and a lowering frame is mounted inside the turning groove on the other side of the bed via a positioning shaft. Slider blocks are mounted on both sides of the top of the base via dovetail grooves, and an electric telescopic device is mounted on the top of the sliders on both sides. A lifting seat is mounted on the output shaft of the electric telescopic device, and a sliding seat is mounted in the middle of the bottom of both the standing frame and the lowering frame.

[0006] Preferably, a transmission box is installed at the top center of the base, and a rotating shaft is installed inside the transmission box. The rotating shaft is sleeved inside the sliders on both sides, and the rotating shaft and the sliders are connected by a threaded connection. The threads on the outer surface of the rotating shaft are arranged in opposite directions.

[0007] Preferably, a worm gear is installed on the outer surface of the rotating shaft inside the transmission box, an adjusting motor is installed at the top of the transmission box, and a worm is installed on the output shaft of the adjusting motor on the outer surface of the worm gear, the worm meshing with the worm gear.

[0008] Preferably, the top of the bed is provided with armrest grooves on both sides near the middle, and the bed is fitted with limit rods on both sides of the armrest grooves. The bottom of the limit rods on both sides is equipped with lifting plates, and the top of the limit rods on both sides is equipped with armrests inside the armrest grooves.

[0009] Preferably, a lifting motor is installed at the bottom of the bed in the middle of the lifting plate, and a lifting shaft is installed on the output shaft of the lifting motor. The lifting shaft is threaded into the inside of the lifting plate.

[0010] Preferably, support plates are installed at the four corners of the top of the bed, a lead screw is installed on the support plate on the front surface of the bed near the top gap, a displacement motor is installed at one end of the lead screw, and a slide rod is installed on the support plate on the rear surface of the bed near the top gap. A displacement plate is sleeved on the outer surface of the lead screw and the slide rod.

[0011] Preferably, a lifting box is installed on the top of the displacement plate, a winding motor is installed on one side inside the lifting box, a winding shaft is installed on the output shaft of the winding motor, winding wheels are installed on both sides of the outer surface of the winding shaft, a pull rope is clamped on the outer surface of the two winding wheels, and a lifting ring is installed at the end of the pull rope at the bottom of the displacement plate.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] 1. This utility model, by setting up a standing frame, a lowering frame, a sliding seat, a lifting seat, and an electric telescopic device, achieves the effect of facilitating small-range movement for patients, thus making it easier for patients to get up. This solves the problem that existing clinical nursing standing devices require patients to move a lot during use, which places high demands on the patient's physical strength, and excessive movement can easily lead to secondary injury. This reduces the patient's physical exertion, thereby reducing the probability of secondary injury.

[0014] 2. This utility model achieves the effect of facilitating patient support by setting a limit rod, lifting plate, lifting motor and handrail, thereby solving the problem that existing standing devices cannot adjust the support height according to the patient's needs when assisting in standing, resulting in poor auxiliary support effect and inconvenience for patients to stand up. It improves the body support effect of the standing device, thus making it more convenient for patients to use the standing device.

[0015] 3. This utility model reduces the load on patients when they stand up by setting up a lead screw, displacement plate, hanging box, winding wheel, pull rope and hanging ring. This solves the problem that existing standing devices require patients to use their arms and waist to assist in standing up, resulting in a large load and a high risk of secondary injury. This reduces the chance of secondary injury when patients stand up, thus ensuring the safety of patients when they stand up. Attached Figure Description

[0016] Figure 1This is a schematic diagram of the main structure of this utility model;

[0017] Figure 2 for Figure 1 A magnified structural diagram of A;

[0018] Figure 3 This is a cross-sectional view of the base and bed body of this utility model;

[0019] Figure 4 for Figure 3 A magnified structural diagram of B in the diagram;

[0020] Figure 5 This is a cross-sectional structural diagram of the transmission box of this utility model;

[0021] Figure 6 This is a cross-sectional structural diagram of the hoisting box of this utility model.

[0022] Reference numerals: 1. Base; 2. Support column; 3. Bed frame; 4. Lifting frame; 5. Lead screw; 6. Slide rod; 7. Displacement motor; 8. Support plate; 9. Lowering frame; 10. Rotating shaft; 11. Transmission box; 12. Lifting box; 13. Displacement plate; 14. Pull rope; 15. Lifting ring; 16. Electric telescopic device; 17. Sliding seat; 18. Lifting seat; 19. Tilting groove; 20. Dovetail groove; 21. Sliding block; 22. Positioning shaft; 23. Limiting rod; 24. Lifting plate; 25. Lifting shaft; 26. Lifting motor; 27. Handrail groove; 28. Handrail bar; 29. ​​Adjusting motor; 30. Worm gear; 31. Worm wheel; 32. Rewinding motor; 33. Rewinding wheel; 34. Rewinding shaft. Detailed Implementation

[0023] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.

[0024] Example 1

[0025] like Figure 1 , Figure 3 and Figure 5As shown, to achieve the above objectives, this utility model provides the following technical solution: A clinical nursing auxiliary standing device, comprising a base 1 and a bed 3, wherein the bed 3 is mounted on the top of the base 1 via a support column 2, and a flipping groove 19 is provided in the middle of both sides of the bed 3. A standing frame 4 is mounted inside the flipping groove 19 on one side of the bed 3 via a positioning shaft 22, and a lowering frame 9 is mounted inside the flipping groove 19 on the other side of the bed 3 via a positioning shaft 22. Slider blocks 21 are mounted on both sides of the top of the base 1 via dovetail grooves 20, and electric telescopic devices 16 are mounted on the top of the sliders 21 on both sides. A lifting seat 18 is mounted on the output shaft of the electric telescopic device 16. Both the frame 4 and the lower frame 9 have sliding seats 17 installed at the bottom center. The base 1 has a transmission box 11 installed at the top center. The transmission box 11 has a rotating shaft 10 installed inside. The rotating shaft 10 is sleeved inside the sliders 21 on both sides. The rotating shaft 10 and the sliders 21 are connected by a thread. The threads on the outer surface of the rotating shaft 10 are reversed. The rotating shaft 10 drives the sliders 21 to move in opposite directions. The outer surface of the rotating shaft 10 is located inside the transmission box 11 and has a worm gear 31 installed inside. The top of the transmission box 11 has an adjusting motor 29 installed inside. The output shaft of the adjusting motor 29 is located on the outer surface of the worm gear 31 and has a worm 30 installed thereon. The worm 30 meshes with the worm gear 31.

[0026] like Figure 3 and Figure 4 As shown, the top of the bed frame 3 has armrest grooves 27 on both sides near the middle. Inside the bed frame 3, limit rods 23 are sleeved on both sides of the armrest grooves 27. Lifting plates 24 are installed at the bottom of the limit rods 23 on both sides. Armrest bars 28 are installed inside the armrest grooves 27 at the top of the limit rods 23 on both sides. A lifting motor 26 is installed at the bottom of the bed frame 3 in the middle of the lifting plate 24. A lifting shaft 25 is installed on the output shaft of the lifting motor 26. The lifting shaft 25 is threaded into the lifting plate 24. The lifting plate 24 is moved by the lifting shaft 25, thereby adjusting the height of the armrest bars 28.

[0027] The working principle of a clinical nursing assistive sitting device based on Embodiment 1 is as follows: After the device is installed, the patient lies on the bed 3. When the patient needs to sit up, the patient moves to the top of the sitting frame 4 and the lowering frame 9. Then, the adjusting motor 29 is activated. The adjusting motor 29 drives the worm gear 30 to rotate, which in turn drives the worm wheel 31 to rotate. The worm wheel 31 drives the rotating shaft 10 to rotate, which in turn drives the two sliders 21 to move towards each other. The sliders 21 then drive the lifting seat 18 to move. The lifting seat 18 presses against the sliding seat 17 at the bottom of the sitting frame 4, thereby causing the sitting frame 4 to flip upward. At the same time, the lifting seat 18 releases pressure on the sliding seat 17 at the bottom of the lowering frame 9. The device restricts movement, causing the lowering frame 9 to descend. Then, the electric telescopic device 16 at the bottom of the standing frame 4 extends, causing the lifting seat 18 to move upward, increasing the upward tilting angle of the standing frame 4. Simultaneously, the electric telescopic device 16 at the bottom of the lowering frame 9 retracts, causing the lifting seat 18 to move downward, increasing the downward tilting angle of the lowering frame 9, thus facilitating the patient's ascent. When the patient needs handrail support, the lifting motor 26 is activated, which drives the lifting shaft 25 to rotate. The lifting shaft 25 drives the lifting plate 24 to move upward, which in turn drives the limit rod 23 to move upward, thereby causing the handrail 28 to move upward. The patient can then use the handrail 28 for support. At this point, the workflow of the device is complete.

[0028] Example 2

[0029] like Figure 1 , Figure 2 and Figure 6 As shown, the present invention proposes an auxiliary standing device for clinical nursing, which, compared with Embodiment 1, further includes: support plates 8 installed at the four corners of the top of the bed 3; a lead screw 5 installed near the top gap of the support plate 8 on the front surface of the bed 3; a displacement motor 7 installed at one end of the lead screw 5; a slide rod 6 installed near the top gap of the support plate 8 on the rear surface of the bed 3; the slide rod 6 facilitates the movement of the displacement plate 13; the lead screw 5 and the slide rod 6 are sleeved on the outer surface of the displacement plate 13; a hanging box 12 is installed on the top of the displacement plate 13; a winding motor 32 is installed on one side inside the hanging box 12; a winding shaft 34 is installed on the output shaft of the winding motor 32; winding wheels 33 are installed on both sides of the outer surface of the winding shaft 34 to wind and unwind the pull rope 14, thereby driving the lifting ring 15 to rise and fall; the pull rope 14 is clamped on the outer surface of the winding wheels 33 on both sides; and the lifting ring 15 is installed at the end of the pull rope 14 at the bottom of the displacement plate 13.

[0030] In this embodiment, when the patient needs to use the sling 15 to assist in getting up, the displacement motor 7 is activated. The displacement motor 7 drives the lead screw 5 to rotate, which in turn drives the displacement plate 13 to move. The displacement plate 13 then drives the sling 15 to move to the top of the usage position. Next, the winding motor 32 is activated, which drives the winding shaft 34 to rotate. The winding shaft 34 then drives the winding wheel 33 to rotate, which in turn winds and unwinds the pull rope 14, making it easier for the patient to hold. The winding motor 32 then drives the sling 15 to move along the Z-axis, and the displacement motor 7 drives the sling 15 to move along the X-axis, thus facilitating the patient's getting up.

[0031] The above specific embodiments are merely several preferred embodiments of this utility model. Based on the technical solution of this utility model and the relevant teachings of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.

Claims

1. An auxiliary standing-up device for clinical care, comprising a base (1) and a bed body (3), characterized in that: The base (1) is mounted on the top of the bed frame (3) via a support column (2). The bed frame (3) has a flip groove (19) on both sides. The flip groove (19) on one side of the bed frame (3) is mounted on a lifting frame (4) via a positioning shaft (22). The flip groove (19) on the other side of the bed frame (3) is mounted on a lowering frame (9) via a positioning shaft (22). The top of the base (1) is mounted on sliders (21) via dovetail grooves (20). The top of the sliders (21) on both sides is mounted on an electric telescopic device (16). The output shaft of the electric telescopic device (16) is mounted on a lifting seat (18). The bottom of the lifting frame (4) and the lowering frame (9) are both mounted on a sliding seat (17).

2. The assisted sitter for clinical care of claim 1, wherein: A transmission box (11) is installed in the middle of the top of the base (1). A rotating shaft (10) is installed inside the transmission box (11). The rotating shaft (10) is sleeved inside the sliders (21) on both sides. The rotating shaft (10) and the sliders (21) are connected by a threaded connection. The threads on the outer surface of the rotating shaft (10) are reversed.

3. The assisted sitter for clinical care of claim 2, wherein: The outer surface of the rotating shaft (10) is equipped with a worm gear (31) inside the transmission box (11). An adjusting motor (29) is installed at the top inside the transmission box (11). The output shaft of the adjusting motor (29) is equipped with a worm (30) on the outer surface of the worm gear (31). The worm (30) meshes with the worm gear (31).

4. The assisted sitter for clinical care of claim 1, wherein: The top of the bed (3) is provided with armrest grooves (27) on both sides near the middle. The bed (3) is fitted with limit rods (23) on both sides of the armrest grooves (27). The bottom of the limit rods (23) on both sides is equipped with lifting plates (24). The top of the limit rods (23) on both sides is equipped with armrests (28) inside the armrest grooves (27).

5. The assisted sitter for clinical care of claim 4, wherein: The bottom of the bed (3) is equipped with a lifting motor (26) located in the middle of the lifting plate (24). The output shaft of the lifting motor (26) is equipped with a lifting shaft (25), which is threaded into the inside of the lifting plate (24).

6. The assisted sitter for clinical care of claim 1, wherein: Support plates (8) are installed at the four corners of the top of the bed (3). A lead screw (5) is installed on the support plate (8) on the front surface of the bed (3) near the top gap. A displacement motor (7) is installed at one end of the lead screw (5). A slide rod (6) is installed on the support plate (8) on the rear surface of the bed (3) near the top gap. A displacement plate (13) is sleeved on the outer surface of the lead screw (5) and the slide rod (6).

7. The assisted sitter for clinical care of claim 6, wherein: A lifting box (12) is installed on the top of the displacement plate (13). A winding motor (32) is installed on one side inside the lifting box (12). A winding shaft (34) is installed on the output shaft of the winding motor (32). Winding wheels (33) are installed on both sides of the outer surface of the winding shaft (34). A pull rope (14) is clamped on the outer surface of the two sides of the winding wheels (33). A lifting ring (15) is installed at the end of the pull rope (14) at the bottom of the displacement plate (13).