Supporting device and medical equipment
By incorporating a rigid porous material and injecting a lubricating medium into the contact area between the base of the medical device's support device and the ground, the problem of difficulty in moving medical devices in confined spaces is solved, enabling convenient movement and stable support of the equipment, and reducing transportation costs and equipment damage.
Patent Information
- Application Number
- CN202423320792.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Traditional medical equipment is difficult to move in confined spaces, and traditional transportation vehicles are large, which increases the difficulty and cost of transfer and affects work efficiency.
Design a support device in which the base of the support device is made of a rigid porous material in contact with the ground. A lubricating medium is injected through a liquid injection channel to form a lubricating layer, reducing pushing resistance and enabling easy movement of the medical device. The lubricating medium is removed after the device is positioned to ensure stable support.
It enables convenient movement of medical equipment in confined spaces, reduces potential damage to the equipment, improves movement efficiency and stability, and lowers maintenance costs.
Smart Images

Figure CN223524846U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of medical equipment, and particularly relates to a supporting device and medical equipment. BACKGROUND
[0002] Medical equipment such as CT (computed tomography) and MRI (magnetic resonance imaging) first needs to be moved to a specified space during the installation stage. The traditional method is to use a transport tool to transfer these medical equipment, but the width and other dimensions of the traditional transport tool are generally larger than the size of the medical equipment itself, the space of indoor places such as hospitals is limited, and the road is generally relatively narrow, the use of the transport tool further increases the difficulty of transferring the medical equipment, and sometimes even needs to remove walls or remove other facilities, which not only seriously affects the work efficiency, but also increases unnecessary costs. SUMMARY
[0003] In view of the above-mentioned defects of the prior art, the purpose of the utility model is to provide a supporting device and medical equipment which can conveniently move medical equipment in a narrow space.
[0004] To achieve the above-mentioned purpose and other related purposes, the utility model provides a supporting device, which comprises:
[0005] A connecting part is used for connecting a supported object.
[0006] A base is fixedly arranged opposite to the connecting part, the base has a first surface for cooperating with an external supporting surface, and at least a part of the base close to the first surface is a hard porous material.
[0007] In an optional embodiment of the utility model, a liquid injection channel is further included, a first end of the liquid injection channel is in communication with the hard porous material, and a second end of the liquid injection channel is configured to be exposed when the connecting part is connected with the supported object.
[0008] In an optional embodiment of the utility model, at least part of the path of the liquid injection channel is arranged inside the connecting part.
[0009] In an optional embodiment of the utility model, the connecting part comprises a screw rod, and the liquid injection channel comprises a first through hole arranged through the screw rod along the axial direction of the screw rod.
[0010] In an optional embodiment of the utility model, the base is internally provided with a dispersion cavity in communication with the hard porous material, and the first end of the liquid injection channel is in communication with the dispersion cavity.
[0011] In an optional embodiment of the utility model, the dispersion cavity includes a second through hole penetrating through the base along a direction perpendicular to the first surface.
[0012] In an optional embodiment of the utility model, a buffer layer made of elastic material is arranged between the connecting portion and the base.
[0013] In an optional embodiment of the utility model, a buffer layer is arranged between the screw rod and the base, and the liquid injection channel further includes a third through hole penetrating through the buffer layer.
[0014] In an optional embodiment of the utility model, one end of the screw rod close to the base is provided with a flange extending along the radial direction of the screw rod, and the buffer layer is arranged between the flange and the base.
[0015] In an optional embodiment of the utility model, the buffer layer is detachably connected with the screw rod and / or the base.
[0016] In an optional embodiment of the utility model, a groove is arranged on the base, the buffer layer is at least partially accommodated in the groove, and the side wall of the buffer layer is interference-connected with the side wall of the groove.
[0017] To achieve the above object and other related objects, the utility model further provides a medical device, which comprises a body and a plurality of support devices installed at the bottom of the body.
[0018] The technical effect of the utility model lies in that: on the basis of the traditional plane support foot, the part of the support foot in contact with the ground is arranged as a porous structure, the porous structure can absorb and slowly release liquid, when it is necessary to transfer the medical device, the liquid lubricating medium can be filled in the porous structure, the lubricating medium can form a lubricating layer between the porous structure and the ground, thereby greatly reducing the pushing resistance of the medical device, so that the medical device can be easily moved without the aid of a transportation device; after the medical device is moved to the designated position, the lubricating medium on the support foot and the ground is removed, and stable support of the medical device can be realized. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is a perspective structural schematic view of the medical device provided by the embodiment of the utility model;
[0020] Figure 2 is a perspective structural schematic view of the medical device from another angle provided by the embodiment of the utility model;
[0021] Figure 3 is a perspective view of the support device provided by the embodiment of the utility model;
[0022] Figure 4 is a sectional view of the support device provided by the embodiment of the utility model;
[0023] Figure 5 is an exploded view of the support device provided by the embodiment of the utility model;
[0024] Figure 6 is an exploded view of the support device provided by the embodiment of the utility model from another perspective. DETAILED DESCRIPTION
[0025] The embodiments of the utility model will be described below through specific concrete examples, and those skilled in the art can easily understand other advantages and effects of the utility model from the content disclosed in the specification. The utility model can also be implemented or applied through other different concrete embodiments, and each detail in the specification can be modified or changed based on different viewpoints and applications without departing from the spirit of the utility model. It should be noted that the following embodiments and features in the embodiments can be combined with each other without conflict.
[0026] It should be noted that the diagrams provided in the following embodiments only illustrate the basic concept of the utility model in a schematic manner, and only the components related to the utility model are shown in the diagrams without drawing the number, shape and size of the components in actual implementation, and the shape, number and proportion of each component in actual implementation can be changed arbitrarily, and the component layout pattern can also be more complex.
[0027] Please refer to Figure 1 , 2 The embodiment of the utility model provides a kind of medical equipment, including body 100, and the multiple support device 10 of installing in the bottom of body 100, in specific embodiment, medical equipment for example can be CT equipment or MRI equipment. The utility model aims at improving the support device 10 of medical equipment, while guaranteeing the stability of medical equipment, so that medical equipment can be moved more conveniently when necessary, the utility model is not related to the improvement of the medical function structure of medical equipment itself, so the application scene of the support device 10 provided by the utility model can be extended to other large-scale medical equipment which has certain requirement to stability and moving convenience.
[0028] As an example of CT equipment, the rotating part of the host needs to rotate at high speed during the operation of the CT equipment, at which time the equipment needs to have very high stability, therefore, such equipment cannot be provided with a traditional universal wheel or other movable support structure at the bottom, which also leads to the fact that such equipment is difficult to transfer. Therefore, the utility model discloses a support device 10 comprising a connecting part and a base 12. The connecting part is used to connect the supported object, such as the body 100 of the medical equipment. The base 12 is fixedly arranged opposite to the connecting part. The base 12 has a first surface 121 for cooperating with an external support surface (such as the ground). At least the part of the base 12 close to the first surface 121 is made of hard porous material. In a specific embodiment, the first surface 121 can be the bottom surface of the base 12. The hard porous material does not have special requirements for the specific components of the material. As long as the porous material has sufficient mechanical strength, it should be suitable for the utility model, such as metal foam, silicon carbide porous ceramic, etc. When the medical equipment needs to be transferred, the liquid lubricating medium is filled in the porous structure, and the lubricating layer is formed between the porous structure and the ground, so that the medical equipment can be easily moved. When the medical equipment is moved to the designated position, the lubricating medium can be removed by means of high pressure, vacuum or drying, etc. to increase the friction between the base 12 and the ground, and to ensure the stability of the medical equipment during operation.
[0029] As shown in Figures 1-6 The support device 10 provided by the utility model comprises a connecting part and a base 12. The connecting part is used to connect the supported object, such as the body 100 of the medical equipment. The base 12 is fixedly arranged opposite to the connecting part. The base 12 has a first surface 121 for cooperating with an external support surface (such as the ground). At least the part of the base 12 close to the first surface 121 is made of hard porous material. In a specific embodiment, the first surface 121 can be the bottom surface of the base 12. The hard porous material does not have special requirements for the specific components of the material. As long as the porous material has sufficient mechanical strength, it should be suitable for the utility model, such as metal foam, silicon carbide porous ceramic, etc. When the medical equipment needs to be transferred, the liquid lubricating medium is filled in the porous structure, and the lubricating layer is formed between the porous structure and the ground, so that the medical equipment can be easily moved. When the medical equipment is moved to the designated position, the lubricating medium can be removed by means of high pressure, vacuum or drying, etc. to increase the friction between the base 12 and the ground, and to ensure the stability of the medical equipment during operation.
[0030] As shown in Figure 1 , 4 In an optional embodiment of the utility model, a liquid injection channel 101 is further included. The first end of the liquid injection channel 101 is in communication with the hard porous material. The second end of the liquid injection channel 101 is configured to be exposed when the connecting part is connected to the supported object. When the lubricating medium needs to be injected, the operation can be directly performed through the liquid injection channel 101 without the need to disassemble or change any part of the equipment, which makes the operation more convenient and fast, and also reduces the potential damage to the equipment.
[0031] As shown in Figure 4As shown in an optional embodiment of the utility model, at least part of the path of the liquid injection channel 101 is arranged inside the connecting part. By embedding part of the path of the liquid injection channel 101 inside the connecting part, the overall size and complexity of the support device 10 can be effectively reduced, and this design makes the support device 10 more compact. By arranging part of the path of the liquid injection channel 101 inside the connecting part, the exposure of the liquid injection channel 101 can be reduced, thereby reducing the risk of damage to the liquid injection channel 101 caused by accidental collision or damage. The internally arranged liquid injection channel 101 can simplify the design of the external interface, making the process of injecting lubricating medium more convenient.
[0032] In some other alternative embodiments, the liquid injection channel 101 can also be a pipe arranged separately outside the support device 10.
[0033] Please refer to Figures 3-6 As shown in an optional embodiment of the utility model, the connecting part includes a screw rod 11, and the liquid injection channel 101 includes a first through hole 111 arranged through the screw rod 11 along the axial direction of the screw rod 11. By arranging the first through hole 111 of the liquid injection channel 101 directly through the screw rod 11 along the axial direction, additional pipes or complex connection structures can be avoided, which simplifies the overall structure of the support device 10, reduces the number of components, and makes the manufacturing and assembly process more convenient. The screw rod 11 is a key component for connecting the body 100 and the base 12 in the support device 10, and has high mechanical strength. By arranging a through hole in the screw rod 11, fragile pipes or interfaces can be avoided in other parts of the support device 10, thereby maintaining the overall strength and stability. By arranging an axially through hole in the screw rod 11, the operator can more conveniently inject lubricating medium, as the lubricating medium can automatically flow to the hard porous material by injecting it into one end of the through hole, simplifying the operation process and improving efficiency. Since the through hole of the liquid injection channel 101 is arranged directly inside the screw rod 11, maintenance personnel can more easily check and maintain the condition of the liquid injection channel 101. If it is necessary to clean or replace the lubricating medium, only the operation from one end of the through hole is required, without the need to disassemble a large number of external components, thereby simplifying the maintenance process.
[0034] Please refer to Figure 4 As shown in an optional embodiment of the utility model, the base 12 is internally provided with a dispersion cavity in communication with the hard porous material, and the first end of the liquid injection channel 101 is in communication with the dispersion cavity. The design of the dispersion cavity can ensure that the lubricating medium is evenly distributed to each part of the hard porous material after injection, which helps to form a uniform lubricating layer on the entire contact surface, thereby improving the smoothness during movement and further reducing the pushing resistance.
[0035] Please refer to Figure 4As shown in an optional embodiment of the utility model, the dispersion cavity includes a second through hole 122 arranged through the base 12 in a direction perpendicular to the first surface 121. The dispersion cavity is arranged as a through hole through the base 12, which can more conveniently discharge the excess lubricating medium after the medical equipment is moved into position, for example, the medical equipment can be jacked up by using a jacking device, and then the lubricating medium remaining in the liquid injection channel 101 is blown or sucked from one end of the liquid injection channel 101 by using high pressure or vacuum, so that the lubricating medium remaining in the liquid injection channel 101 is removed.
[0036] Please refer to Figures 3-6 As shown in an optional embodiment of the utility model, a buffer layer 13 made of elastic material is arranged between the connecting part and the base 12, and in a specific embodiment, the buffer layer 13 can be a rubber pad or other elastic solid material. The buffer layer 13 made of elastic material can absorb vibration and impact when the medical equipment is running, which is particularly important for precise medical equipment such as CT equipment or MRI equipment, which requires extremely high stability to ensure imaging quality and diagnostic accuracy. Through the design of the buffer layer 13, the influence of external vibration on the internal structure of the equipment can be effectively reduced, and the anti-vibration performance of the equipment can be improved. The buffer layer 13 can reduce mechanical wear between the connecting part and the base 12, and prolong the service life of the support device 10, which can significantly reduce the maintenance cost of large medical equipment.
[0037] Please refer to Figures 4-6 As shown, the liquid injection channel 101 further includes a third through hole 131 arranged through the buffer layer 13, and the third through hole 131 ensures that the first through hole 111 and the second through hole 122 can be effectively through, so that the lubricating medium filled in the first through hole 111 can smoothly flow to the hard porous material.
[0038] Please refer to Figures 3-6 As shown in an optional embodiment of the utility model, the screw rod 11 is provided with a flange 112 arranged along the radial direction of the screw rod 11 at one end close to the base 12, and the buffer layer 13 is arranged between the flange 112 and the base 12. The design of the flange 112 increases the contact area between the screw rod 11 and the base 12, and provides a larger support surface for the connection between the two, which can reduce the relative movement that may occur between the screw rod 11 and the base 12 under stress, thereby enhancing the stability of the connection. The flange 112 can disperse the load received by the screw rod 11 to a larger area, which helps to reduce local stress concentration and improve the carrying capacity of the overall structure.
[0039] Please refer to Figures 4-6As shown in an optional embodiment of the utility model, the buffer layer 13 is connected with the screw rod 11 and / or the base 12 in a detachable manner. For example, the buffer layer 13 can be connected with the flange 112 on the screw rod 11 through bolts, the base 12 is provided with a groove 123, the buffer layer 13 is at least partially accommodated in the groove 123, and the side wall of the buffer layer 13 is connected with the side wall of the groove 123 in interference fit. The interference fit makes the side wall of the buffer layer 13 tightly fit with the side wall of the groove 123, and the buffer layer 13 is not prone to loosening or sliding, so that the buffer layer 13 is ensured not to be displaced in the working process due to external force, and meanwhile, the fastener is avoided to be arranged on the hard porous material, and the structural strength of the base 12 is improved. Since the buffer layer 13 is connected with the screw rod 11 and the base 12 in a detachable manner, when the buffer layer 13 needs to be maintained or replaced, the operation can be conveniently performed, the entire support device 10 does not need to be disassembled, and the buffer layer 13 can be replaced or adjusted only by loosening the bolts, so that the maintenance efficiency and convenience are greatly improved.
[0040] In summary, the utility model discloses the basis on the traditional plane support foot, the part of support foot and ground contact is set to porous structure, and the porous structure can absorb and slowly release liquid, when needing to transfer medical equipment, can fill in the porous structure in liquid lubricating medium, and lubricating medium can form lubricating layer between porous structure and ground, and then greatly reduce the push resistance of medical equipment, so that medical equipment can be moved easily without the help of transport device, when medical equipment moves to the designated position, only needs to clear the lubricating medium on the support foot and ground, can realize the stable support of medical equipment, the utility model discloses directly to hard porous material through liquid injection channel fills lubricating medium, and does not need to disassemble or change any part of equipment, this makes operation more convenient and fast, and also reduces the potential damage to equipment, the buffer layer of elastic material can absorb vibration and impact when medical equipment runs, this is particularly important for precision medical equipment like CT equipment or MRI equipment, these devices need extremely high stability to guarantee imaging quality and diagnostic accuracy, through the design of buffer layer, the influence of external vibration on the internal structure of equipment can be effectively reduced, and the shock resistance of equipment is improved.
[0041] The above embodiments only exemplarily illustrate the principle and effect of the utility model, and are not used to limit the utility model. Any person skilled in the art can modify or change the above embodiments without departing from the spirit and category of the utility model. Therefore, all equivalent modifications or changes completed by those skilled in the art under the spirit and technical thought disclosed by the utility model still should be covered by the claims of the utility model.
[0042] In the description herein, numerous specific details are provided, such as examples of components and / or methods, to provide a thorough understanding of embodiments of the present application. Persons of ordinary skill in the art will recognize, however, that the application can be practiced without one or more of the specific details. In other instances, well-known structures and operations are not shown or described in detail in order to avoid obscuring aspects of the present application.
Claims
1. A support device, characterized in that, The support device comprises: a connecting portion for connecting a supported object; a base fixedly arranged opposite to the connecting portion, the base having a first surface for cooperating with an external supporting surface, at least a portion of the base near the first surface being a hard porous material.
2. The support device of claim 1, wherein The support device further comprises a liquid injection channel, a first end of the liquid injection channel being in communication with the hard porous material, a second end of the liquid injection channel being configured to be exposed when the connecting portion is connected to the supported object.
3. The support device of claim 2, wherein, At least a portion of the liquid injection channel is arranged inside the connecting portion.
4. The support device of claim 3, wherein, The connecting portion comprises a screw rod, and the liquid injection channel comprises a first through hole arranged through the screw rod along an axial direction of the screw rod.
5. The support apparatus of claim 2, wherein The base is internally provided with a dispersion cavity in communication with the hard porous material, and the first end of the liquid injection channel is in communication with the dispersion cavity.
6. The support apparatus of claim 5, wherein The dispersion cavity comprises a second through hole arranged through the base along a direction perpendicular to the first surface.
7. The support device of claim 1, wherein, A buffer layer made of elastic material is arranged between the connecting portion and the base.
8. The support apparatus of claim 4, wherein A buffer layer is arranged between the screw rod and the base, and the liquid injection channel further comprises a third through hole arranged through the buffer layer.
9. The support apparatus of claim 8, wherein, An end of the screw rod near the base is provided with a flange arranged along a radial direction of the screw rod, and the buffer layer is arranged between the flange and the base.
10. The support apparatus of claim 8, wherein, The buffer layer is detachably connected to the screw rod and / or the base.
11. The support apparatus of claim 7, wherein, The base is provided with a recess, and the buffer layer is at least partially accommodated in the recess, and a side wall of the buffer layer is interference-connected to a side wall of the recess.
12. A medical device, characterized by The support device comprises a machine body and a plurality of support devices as claimed in any one of claims 1-11 mounted at a bottom of the machine body.