A suspended turning aid belt structure applied to the side of the bed
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI CHEST HOSPITAL
- Filing Date
- 2025-07-17
- Publication Date
- 2026-06-30
Smart Images

Figure CN224421354U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical device technology, and in particular to a suspension turning aid structure applied at the bedside. Background Technology
[0002] A turning assist belt is a nursing tool designed specifically for bedridden patients, primarily used to assist healthcare professionals in changing the position of patients who are unable to turn over independently. Turning assist belts are typically made of materials such as cotton cloth or nylon straps, and some products incorporate cotton or sponge to increase comfort.
[0003] To prevent patients from suffering damage due to prolonged pressure on the same area caused by lying in the same position for extended periods, medical staff need to periodically assist patients in turning over using a turning aid. When turning a patient, the turning pad of the turning aid is placed under the patient's body, and the fixing strap on one side of the turning pad is secured to the lower end of the bed rail on one side. Then, the medical staff pulls the turning strap on the other side of the turning pad to complete the turning operation. However, currently, it is difficult for a single medical staff member to complete the turning operation alone; multiple medical staff are required to cooperate, especially for critically ill patients with various tubes, comatose patients who cannot cooperate, and obese patients.
[0004] In addition, when multiple medical staff perform the turning operation on the patient, it is difficult to ensure that the force exerted by the multiple medical staff is synchronized, making it difficult for the patient's upper and lower body to be turned at the same time. Moreover, the patient's skin is subjected to greater shearing force during the turning process, causing greater discomfort to the patient and making the turning work of medical staff more inconvenient. Utility Model Content
[0005] To address the existing technical and practical problems, this utility model aims to provide a suspended turning assist belt structure for bedside use. This structure is rationally designed, simple in structure, and easy to operate. By effectively combining an upper body turning pad structure, a lower body turning pad structure, and a turning drive structure, it allows a single medical staff member to turn a patient independently, without the need for multiple staff members. This is particularly convenient for critically ill patients with various tubes, comatose patients who cannot cooperate, and obese patients. Furthermore, the turning drive structure simultaneously drives both the upper and lower body turning pad structures, ensuring synchronized force application and allowing the patient's upper and lower body to turn synchronously. This avoids excessive shearing force on the patient's skin during turning, providing greater comfort and significantly facilitating the turning process for medical staff.
[0006] To solve the above technical problems, this utility model adopts the following technical solution:
[0007] A suspended turning aid belt structure applied at the bedside, characterized in that it includes:
[0008] An upper body turning pad structure that allows a medical staff member to turn a patient over, the upper body turning pad structure being placed under the patient's back;
[0009] A lower body turning pad structure that allows a medical staff member to turn a patient over, the lower body turning pad structure being placed under the patient's thighs, and the two sides of the lower body turning pad structure being connected to the two sides of the upper body turning pad structure via elastic pads;
[0010] A turning drive structure that can drive the upper body turning pad structure and the lower body turning pad structure to turn the patient simultaneously when a medical staff member turns the patient over. The turning drive structure is detachably installed on the upper crossbar of the guardrail located on one side of the hospital bed.
[0011] A controller for controlling the working state of the turning-over drive structure, the controller being communicatively connected to the turning-over drive structure.
[0012] In a preferred embodiment of this utility model, the upper body turning pad structure includes
[0013] A body turning pad, wherein the body turning pad is placed on the lower side of the patient's back;
[0014] An upper body fixing strap is provided on one side of the upper body turning pad. The upper body fixing strap is detachably installed at the front end of the lower crossbar of the guardrail located on one side of the hospital bed.
[0015] An upper body turning belt is provided on the other side of the upper body turning pad. One end of the upper body turning belt is located on the other side of the upper body turning pad, and the other end is detachably mounted on the turning drive structure.
[0016] In a preferred embodiment of this utility model, a plurality of ventilation holes are provided on the upper body turning pad to improve its breathability.
[0017] In a preferred embodiment of this utility model, a soft, absorbent layer is provided on the surface of the upper body turning pad that contacts the patient's back, which can effectively reduce the friction between the patient's back and the upper body turning pad and effectively absorb the sweat from the patient's back.
[0018] In a preferred embodiment of this utility model, the lower body turning pad structure includes
[0019] A lower body turning pad is placed on the lower side of the patient's thigh, and the two sides of the lower body turning pad are connected to the two sides of the upper body turning pad through elastic pads respectively.
[0020] A lower body fixing strap is provided on one side of the lower body turning pad. The lower body fixing strap is detachably installed at the rear end of the lower crossbar of the guardrail located on one side of the hospital bed.
[0021] A lower body turning belt is provided on the other side of the lower body turning pad. One end of the lower body turning belt is located on the other side of the lower body turning pad, and the other end is detachably mounted on the turning drive structure.
[0022] In a preferred embodiment of this utility model, the turning-over drive structure includes
[0023] An upper body turning-over activation structure is provided, which is communicatively connected to the controller and is detachably installed at the front end of the upper crossbar of the guardrail located on one side of the hospital bed.
[0024] A lower body turning-over activation structure is provided, which is connected to the controller and is detachably installed at the front end of the lower crossbar of the guardrail located on one side of the hospital bed.
[0025] In a preferred embodiment of this utility model, the upper body turning-over initiation structure includes
[0026] An upper body drive fixing seat with an overall U-shape is provided with an upper body drive fixing strap on one side of the upper body drive fixing seat. The upper body drive fixing strap is detachably installed at the front end of the upper crossbar of the guardrail located on one side of the hospital bed.
[0027] The upper body drive fixing seat is provided with an upper body turning shaft that can wrap the upper body turning belt around its upper part to complete the turning action of the patient's upper body. An upper body turning shaft is provided with an upper body threading groove along its axial direction for threading the upper body turning belt.
[0028] An upper body start motor is provided on the upper body drive fixed base and located on one side of the upper body turning shaft for driving the upper body turning shaft to rotate. The output shaft of the upper body start motor is connected to one end of the upper body turning shaft, and the upper body start motor is communicatively connected to the controller.
[0029] In a preferred embodiment of this utility model, the lower body turning-over initiation structure includes
[0030] A lower body drive fixing seat with an overall U-shape, and a lower body drive fixing strap is provided on one side of the lower body drive fixing seat. The lower body drive fixing strap is detachably installed at the rear end of the upper crossbar of the guardrail located on one side of the hospital bed.
[0031] The lower body drive fixing seat is provided with a lower body turning shaft that can wrap the lower body turning belt around its upper part to complete the turning action of the patient's lower body. The lower body turning shaft is provided with a lower body threading groove along its axial direction for threading the lower body turning belt.
[0032] A lower body start motor is provided on the lower body drive fixing base and on one side of the lower body turning shaft for driving the lower body turning shaft to rotate. The output shaft of the lower body start motor is connected to one end of the lower body turning shaft, and the lower body start motor is communicatively connected to the controller.
[0033] Compared with existing technologies, this utility model has a reasonable overall design, simple structure, and convenient operation. By effectively combining the upper body turning pad structure, the lower body turning pad structure, and the turning drive structure, it enables a single medical staff member to complete the turning operation on the patient independently, without the need for multiple medical staff to cooperate. This is especially convenient for critically ill patients with various tubes, comatose patients who cannot cooperate, and obese patients. In addition, by using the turning drive structure to simultaneously drive the upper body turning pad structure and the lower body turning pad structure, it can ensure the synchronization of force, so that the patient's upper and lower body are turned synchronously, and avoid the patient's skin being subjected to large shearing forces during the turning process, bringing greater comfort to the patient and greatly facilitating the turning work of medical staff. Attached Figure Description
[0034] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0035] Figure 1 This is a schematic diagram of the structure of this utility model.
[0036] Figure 2 This is a schematic diagram of the structure of this utility model placed under the patient.
[0037] Figure 3 This is a schematic diagram of the structure used to turn a patient over using this invention. Detailed Implementation
[0038] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the following description, in conjunction with specific illustrations, further elaborates on this utility model.
[0039] Reference Figures 1-3As shown in the figure, a suspended turning assist belt structure applied at the bedside is provided, including an upper body turning pad structure 100, a lower body turning pad structure 200, a turning drive structure 300, and a controller.
[0040] The upper body turning pad structure 100 allows medical staff to turn the upper body 410 of the patient 400 when performing turning operations. The upper body turning pad structure 100 is located on the lower side of the patient's back, and the upper body turning pad structure 100 can effectively turn the upper body 410 of the patient 400.
[0041] The lower body turning pad structure 200 allows medical staff to turn the patient's lower body 420 when performing turning operations. The lower body turning pad structure 200 is located on the lower side of the patient's thigh, and the lower body turning pad structure 200 can effectively turn the patient's lower body 420.
[0042] The lower body turning pad structure 200 is connected to the upper body turning pad structure 100 on both sides through elastic pads 600. The elastic pads 600 can effectively support the patient's legs, further improving the turning effect of the suspension turning aid belt structure.
[0043] The turning drive structure 300 enables medical staff to simultaneously move the upper body turning pad structure and the lower body turning pad structure when turning the patient. The turning drive structure 300 is detachably mounted on the upper crossbar of the guardrail 510 located on one side of the hospital bed 500.
[0044] The controller is used to control the working state of the turning drive structure 300. The controller is connected to the turning drive structure 300 and can effectively control the turning drive structure 300 to drive the upper body turning pad structure 100 and the lower body turning pad structure 200 to turn the patient 400.
[0045] The upper body turning pad structure 100 includes an upper body turning pad 110, which is placed on the lower side of the patient's back 400. An upper body fixing strap 120 is provided on one side of the upper body turning pad 110. One end of the upper body fixing strap 120 is connected to the upper body turning pad 110, and the other end is detachably attached to the front end of the lower crossbar of the guardrail 510 located on one side of the hospital bed 500 by a Velcro structure. This structure effectively improves the stability of the upper body fixing strap 120 connection.
[0046] An upper body turning belt 130 is provided on the other side of the upper body turning pad 110. One end of the upper body turning belt 130 is set on the other side of the upper body turning pad 110, and the other end is detachably set on the turning drive structure 300 by a Velcro structure.
[0047] The upper body turning pad 110 has multiple ventilation holes to improve its breathability. These ventilation holes effectively improve the breathability of the turning pad and further enhance the patient's back comfort.
[0048] The upper body turning pad 110 has a soft sweat-absorbing layer on the surface that contacts the patient's back. This layer effectively reduces friction between the patient's back and the upper body turning pad and effectively absorbs sweat from the patient's back. The soft sweat-absorbing layer effectively absorbs sweat from the patient's back, further improving the patient's comfort.
[0049] The lower body turning pad structure 200 includes a lower body turning pad 210, which is located on the lower side of the patient's thigh. A sweat-absorbing layer is provided on the surface of the lower body turning pad 210 that contacts the patient's thigh. The sweat-absorbing layer can effectively absorb the sweat on the patient's thigh, further improving the patient's comfort. The two sides of the lower body turning pad are connected to the two sides of the upper body turning pad through elastic pads.
[0050] A lower body fixing strap 220 is provided on one side of the lower body turning pad 210. One end of the lower body fixing strap 220 is set on the lower body turning pad 210, and the other end of the lower body fixing strap 220 is detachably set at the rear end of the lower crossbar of the guardrail 510 located on one side of the hospital bed 500 through a Velcro structure. This structure effectively improves the stability of the lower body fixing strap connection.
[0051] On the other side of the lower body turning pad 210, there is a lower body turning belt 230. One end of the lower body turning belt 230 is set on the other side of the lower body turning pad 210, and the other end is detachably set on the turning drive structure through a Velcro structure.
[0052] The turning drive structure 300 includes an upper body turning start structure 310 and a lower body turning start structure 320. The upper body turning start structure 310 is connected to the controller and is detachably installed at the front end of the upper crossbar of the guardrail on one side of the hospital bed 500. The upper body turning start structure 310 drives the upper body turning pad structure to turn the patient's upper body.
[0053] The lower body turning start structure 320 is connected to the controller and can be detachably installed at the front end of the lower crossbar of the guardrail on one side of the hospital bed 500. The lower body turning start structure 320 drives the lower body turning pad structure to turn the patient's lower body.
[0054] The upper body turning start structure 310 includes an upper body drive fixing seat 312, an upper body turning shaft 313, and an upper body start motor. The upper body drive fixing seat 312 has an overall U-shaped structure. An upper body drive fixing strap 311 is provided on one side of the upper body drive fixing seat 312. The upper body drive fixing strap 311 is detachably set at the front end of the upper crossbar of the guardrail 510 located on one side of the hospital bed 500 by a Velcro structure.
[0055] The upper body drive fixing seat 312 is provided with an upper body turning shaft that can wrap the upper body turning belt around its upper part to complete the turning action of the patient's upper body. The upper body turning shaft 313 is provided with an upper body threading groove 313a along its axial direction for threading the upper body turning belt.
[0056] An upper body start motor is provided on the upper body drive fixed base 312 and on one side of the upper body turning shaft 313 for driving the upper body turning shaft to rotate. The output shaft of the upper body start motor is connected to one end of the upper body turning shaft, and the upper body start motor is connected to the controller.
[0057] The lower body turning start structure 320 includes a lower body drive fixing seat 322, a lower body turning shaft 323 and a lower body start motor. The lower body drive fixing seat 322 has an overall U-shaped structure. A lower body drive fixing strap 321 is provided on one side of the lower body drive fixing seat 322. The lower body drive fixing strap 321 is detachably installed at the rear end of the upper crossbar of the guardrail located on one side of the hospital bed by means of a Velcro structure.
[0058] The lower body drive fixing seat 322 is provided with a lower body turning shaft 323, which can be wrapped around the upper part of the lower body turning belt to complete the turning action of the patient's lower body. The lower body turning shaft 323 is provided with a lower body threading groove 323a along its axis for threading the lower body turning belt.
[0059] A lower body start motor is provided on the lower body drive fixing base 322 and on one side of the lower body turning shaft for driving the lower body turning shaft to rotate. The output shaft of the lower body start motor is connected to one end of the lower body turning shaft, and the lower body start motor is communicatively connected to the controller.
[0060] In summary, this utility model features a reasonable overall design, simple structure, and convenient operation. By effectively combining the upper body turning pad structure, the lower body turning pad structure, and the turning drive structure, it enables a single medical staff member to independently perform patient turning operations without the need for multiple staff members. This is particularly convenient for critically ill patients with various tubes, comatose patients who cannot cooperate, and obese patients. Furthermore, the turning drive structure simultaneously drives both the upper and lower body turning pad structures, ensuring synchronized force application and allowing the patient's upper and lower body to turn synchronously. This avoids excessive shearing force on the patient's skin during turning, providing greater comfort and significantly facilitating the turning process for medical staff.
[0061] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A suspension turning aid belt structure applied at the bedside, characterized in that, include An upper body turning pad structure that allows a medical staff member to turn a patient over, the upper body turning pad structure being placed under the patient's back; A lower body turning pad structure that allows a medical staff member to turn a patient over, the lower body turning pad structure being placed under the patient's thighs, and the two sides of the lower body turning pad structure being connected to the two sides of the upper body turning pad structure via elastic pads; A turning drive structure that can drive the upper body turning pad structure and the lower body turning pad structure to turn the patient simultaneously when a medical staff member turns the patient over. The turning drive structure is detachably installed on the upper crossbar of the guardrail located on one side of the hospital bed. A controller for controlling the working state of the turning-over drive structure, the controller being communicatively connected to the turning-over drive structure.
2. The suspension turning aid belt structure applied to the side of the bed as described in claim 1, characterized in that: The upper body turning pad structure includes A body turning pad, wherein the body turning pad is placed on the lower side of the patient's back; An upper body fixing strap is provided on one side of the upper body turning pad. The upper body fixing strap is detachably installed at the front end of the lower crossbar of the guardrail located on one side of the hospital bed. An upper body turning belt is provided on the other side of the upper body turning pad. One end of the upper body turning belt is located on the other side of the upper body turning pad, and the other end is detachably mounted on the turning drive structure.
3. The suspension turning aid structure applied to the side of the bed as described in claim 2, characterized in that: The upper body turning pad has multiple ventilation holes to improve its breathability.
4. The suspension turning aid structure applied to the side of the bed as described in claim 2, characterized in that: The surface of the upper body turning pad that contacts the patient's back is provided with a soft, absorbent layer that can effectively reduce the friction between the patient's back and the upper body turning pad and effectively absorb the sweat from the patient's back.
5. The suspension turning aid structure applied to the side of the bed as described in claim 1, characterized in that: The lower body turning pad structure includes A lower body turning pad is placed on the lower side of the patient's thigh, and the two sides of the lower body turning pad are connected to the two sides of the upper body turning pad through elastic pads respectively. A lower body fixing strap is provided on one side of the lower body turning pad. The lower body fixing strap is detachably installed at the rear end of the lower crossbar of the guardrail located on one side of the hospital bed. A lower body turning belt is provided on the other side of the lower body turning pad. One end of the lower body turning belt is located on the other side of the lower body turning pad, and the other end is detachably mounted on the turning drive structure.
6. The suspension turning aid structure applied to the side of the bed as described in claim 1, characterized in that: The turning-over drive structure includes An upper body turning-over activation structure is provided, which is communicatively connected to the controller and is detachably installed at the front end of the upper crossbar of the guardrail located on one side of the hospital bed. A lower body turning-over activation structure is provided, which is connected to the controller and is detachably installed at the front end of the lower crossbar of the guardrail located on one side of the hospital bed.
7. The suspension turning aid structure applied to the side of the bed as described in claim 6, characterized in that: The upper body turning-over initiation structure includes An upper body drive fixing seat with an overall U-shape is provided with an upper body drive fixing strap on one side of the upper body drive fixing seat. The upper body drive fixing strap is detachably installed at the front end of the upper crossbar of the guardrail located on one side of the hospital bed. The upper body drive fixing seat is provided with an upper body turning shaft that can wrap the upper body turning belt around its upper part to complete the turning action of the patient's upper body. An upper body turning shaft is provided with an upper body threading groove along its axial direction for threading the upper body turning belt. An upper body start motor is provided on the upper body drive fixed base and located on one side of the upper body turning shaft for driving the upper body turning shaft to rotate. The output shaft of the upper body start motor is connected to one end of the upper body turning shaft, and the upper body start motor is communicatively connected to the controller.
8. The suspension turning aid structure applied to the side of the bed as described in claim 6, characterized in that: The lower body turning-over initiation structure includes A lower body drive fixing seat with an overall U-shape, and a lower body drive fixing strap is provided on one side of the lower body drive fixing seat. The lower body drive fixing strap is detachably installed at the rear end of the upper crossbar of the guardrail located on one side of the hospital bed. The lower body drive fixing seat is provided with a lower body turning shaft that can wrap the lower body turning belt around its upper part to complete the turning action of the patient's lower body. The lower body turning shaft is provided with a lower body threading groove along its axial direction for threading the lower body turning belt. A lower body start motor is provided on the lower body drive fixing base and on one side of the lower body turning shaft for driving the lower body turning shaft to rotate. The output shaft of the lower body start motor is connected to one end of the lower body turning shaft, and the lower body start motor is communicatively connected to the controller.