Operation lamp complete machine transportation tool
By designing a complete surgical light transport tooling and utilizing the base frame and pulley assembly, the complete surgical light can be transported without disassembly, solving the problem of poor contact caused by disassembly and improving testing efficiency and safety.
Patent Information
- Application Number
- CN202422661800.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-10-31
AI Technical Summary
In the prior art, the entire surgical light needs to be disassembled and assembled during EMC testing or experiments, resulting in poor contact between parts and affecting test performance.
A complete surgical light transport tooling is designed, including a base frame, mobile components, a fixed plate, and a load-bearing plate. The surgical light is fixed to the fixed plate through a lifting flange, and the pulley set is used to achieve overall movement to prevent tipping and improve testing efficiency.
This enables the entire surgical light to be transported without disassembly, improving test efficiency, reducing performance degradation, and ensuring test reliability and safety.
Smart Images

Figure CN223371598U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of transportation technology, and in particular relates to a transportation tool for a complete surgical lamp. Background Art
[0002] The surgical shadowless lamp is an indispensable device in the operating room. In order to ensure the overall performance and functional reliability of the surgical shadowless lamp, the entire machine needs to be tested and experimented during research and development. Since most surgical lights are fixed by hanging, when EMC (electromagnetic compatibility) testing or various experiments are required, the surgical light often needs to be modularly disassembled and then installed. Repeated disassembly and installation will lead to poor contact between parts, thus affecting testing and use. Utility Model Content
[0003] The technical purpose of the present utility model is to provide a transport tool for a complete surgical light, aiming to realize the transportation of a surgical light that has not been disassembled as a whole, thereby improving the testing efficiency of the surgical light and reducing the performance degradation of the surgical light caused by testing.
[0004] In order to solve the above technical problems, the present invention is implemented as follows: a surgical light complete machine transport tooling is provided, including a base frame, a moving component, a fixed plate and a load-bearing plate, the top side of the base frame is provided with an installation space, the moving component includes a pulley group fixed to the bottom side of the base frame in a ring-shaped contour arrangement, the fixed plate is fixed to the base frame in the middle area of the bottom side of the installation space, the fixed plate is provided with a plurality of mounting holes for mounting and fixing to the hanging flange of the surgical light, and the load-bearing plate is fixed to the base frame and surrounds the circumference of the fixed plate.
[0005] Furthermore, the base frame includes a bottom annular frame, a top annular frame spaced apart on the top side of the bottom annular frame, a vertical rod fixed between the bottom annular frame and the top annular frame, and a load-bearing frame fixed in the bottom annular frame, the fixing plate and the load-bearing plate are both fixed on the top side of the load-bearing frame, and the pulley group is fixed on the bottom side of the bottom annular frame.
[0006] Furthermore, the overall outline of the base frame is cubical, the bottom annular frame is rectangular, and the load-bearing frame includes a first load-bearing beam arranged in a first direction and connected at both ends to the inner side of the bottom annular frame, and a second load-bearing beam arranged in a second direction and connected at both ends to the first load-bearing beam and / or the inner side of the bottom annular frame.
[0007] Furthermore, the first direction is perpendicular to the second direction, the load-bearing frame includes two first load-bearing beams, and two second load-bearing beams are respectively provided between adjacent first load-bearing beams and between the first load-bearing beam and the bottom annular frame. The fixing plate is fixedly assembled on the two first load-bearing beams and the corresponding second load-bearing beams. The load-bearing plates are provided in multiple pieces and are fixed on the first load-bearing beams and the second load-bearing beams.
[0008] Furthermore, the load-bearing plate includes two first plates arranged on both sides of the first direction and a second plate arranged on both sides of the second direction, the two first plates are located on two opposite sides of the fixed plate, and the two second plates are located on the other opposite sides of the fixed plate.
[0009] Furthermore, the load-bearing plate is fixed to the top side of the load-bearing frame by means of screws.
[0010] Furthermore, pads are provided at the corners of the bottom annular frame, and the pads overlap with the bottom sides of the two frame frames at the corresponding corners. The pulley set uses a universal wheel with a brake and is fixed to the bottom side of the pads.
[0011] Furthermore, at least a portion of the edge of the load-bearing plate abuts against the top side of the bottom annular frame, and at least a portion of the edge of the load-bearing plate is provided with a notch for embedding the vertical rod.
[0012] Furthermore, the base frame is formed by welding square tubes.
[0013] Furthermore, the fixing plate is provided with a clearance hole in the middle and a plurality of bolt holes spaced around the clearance hole.
[0014] Compared with the existing technology, the utility model has the following advantages when transporting the whole surgical lamp:
[0015] In this solution, a fixed plate is attached to the base frame, and the entire surgical light can be secured to the plate via a lifting flange, allowing the entire light to be assembled on the base frame. A movable assembly at the bottom allows the transport fixture to slide as a whole, driving the entire light. Because the entire light is at a higher position when mounted on the base frame, causing the center to shift upward, the load-bearing plate prevents the weight from being added, thus preventing the light from tipping over during movement. This solution's transport fixture for the entire surgical light allows for the transport of fully disassembled surgical lights, thereby improving testing efficiency and reducing performance degradation caused by testing. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the overall structure of the surgical lamp transport tooling in the embodiment of the present utility model;
[0017] Figure 2 This is a partial structural diagram of the transport tooling for the complete surgical lamp in an embodiment of the present utility model;
[0018] Figure 3 This is a diagram of the installation state of the surgical light when the complete transport tool is transporting the surgical light in the embodiment of the utility model.
[0019] In the accompanying drawings, the various reference numerals represent: 10, surgical light; 20, weight; 1, base frame; 11, bottom ring frame; 12, top ring frame; 13, vertical rod; 14, load-bearing frame; 141, first load-bearing beam; 142, second load-bearing beam; 2, moving component; 3, fixed plate; 4, load-bearing plate; 41, first plate; 42, second plate; 5, pad. DETAILED DESCRIPTION
[0020] The following describes in detail embodiments of the present invention, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and should not be construed as limiting the present invention. All other embodiments obtained by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0021] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "circumferential", "radial", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0022] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature specified as "first" or "second" may explicitly or implicitly include one or more of such features. In the description of this utility model, "plurality" means two or more, unless otherwise specifically defined.
[0023] In this embodiment, combined with Figure 1-3, provides a surgical light complete machine transportation tooling, including a base frame 1, a moving component 2, a fixed plate 3 and a load-bearing plate 4, the top side of the base frame 1 is provided with an installation space, the moving component 2 includes a pulley group fixed to the bottom side of the base frame 1 in a ring-shaped outline arrangement, the fixed plate 3 is fixed to the base frame 1 in the middle area of the bottom side of the installation space, the fixed plate 3 is provided with a plurality of mounting holes for mounting and fixing with the hanging flange of the surgical light 10, and the load-bearing plate 4 is fixed to the base frame 1 and surrounds the circumference of the fixed plate 3.
[0024] In this solution, the fixing plate 3 is fixed to the base frame 1, and the surgical light 10 can be fixed to the fixing plate 3 as a whole via a lifting flange, thereby achieving the complete assembly of the surgical light 10 on the base frame 1. The movable assembly 2 at the bottom allows the entire transport fixture to slide, thereby driving the entire surgical light 10 to move. Since the entire surgical light 10 is at a higher position when installed on the base frame 1, resulting in an upward center, the load-bearing plate 4 can prevent the weight 20 from increasing, thereby preventing the surgical light 10 from tipping over during movement. The complete surgical light transport fixture of this solution can realize the transportation of the surgical light 10 without disassembling the entire unit, thereby improving the testing efficiency of the surgical light 10 and reducing the performance degradation of the surgical light 10 caused by testing.
[0025] Furthermore, the base frame 1 includes a bottom annular frame 11, a top annular frame 12 spaced apart at the top side of the bottom annular frame 11, a vertical rod 13 fixed between the bottom annular frame 11 and the top annular frame 12, and a load-bearing frame 14 fixed in the bottom annular frame 11, the fixing plate 3 and the load-bearing plate 4 are both fixed to the top side of the load-bearing frame 14, and the pulley group is fixed to the bottom side of the bottom annular frame 11.
[0026] Specifically, the bottom annular frame 11 and the top annular frame 12 have the same shape and are arranged in parallel. There are multiple vertical rods 13 between the bottom annular frame 11 and the top annular frame 12, and they are spaced apart. The load-bearing frame 14 is located inside the bottom annular frame 11. In this way, the base frame 1 can be configured as a structure with an installation space at the top. The pulley assembly is fixed to the bottom side of the bottom annular frame 11, which can both support the entire base frame 1 and enable movement. It should be understood that the shape of the bottom annular frame 11 and the top annular frame 12 can be adjusted according to actual conditions, such as circular, square, pentagonal, hexagonal, etc., and the number and height of the vertical rods 13 can also be adaptively adjusted according to actual conditions, thereby adjusting the height and structural strength of the base frame 1.
[0027] Furthermore, the base frame 1 has an overall cubical profile, while the bottom annular frame 11 is rectangular. The load-bearing frame 14 includes a first load-bearing beam 141 arranged in a first direction and connected at both ends to the inner side of the bottom annular frame 11, and a second load-bearing beam 142 arranged in a second direction and connected at both ends to the first load-bearing beam 141 and / or the inner side of the bottom annular frame 11. Specifically, in this embodiment, both the bottom annular frame 11 and the top annular frame 12 are rectangular structures. Therefore, the base frame 1 has an overall cubical profile. The first direction is the width direction, and the second direction is the length direction. Therefore, the first load-bearing beam 141 is parallel to the width direction, and the second load-bearing beam 142 is parallel to the length direction. The first and second load-bearing beams 141 and 142 are arranged in a cross-shaped pattern, thereby enhancing the structural strength of the load-bearing frame 14. In some implementations, the first and second directions may also form angles with the width direction and the length direction, respectively, as long as the first and second directions intersect.
[0028] Furthermore, the first direction and the second direction are perpendicular, the load-bearing frame 14 includes two first load-bearing beams 141, and two second load-bearing beams 142 are respectively provided between adjacent first load-bearing beams 141 and between the first load-bearing beams 141 and the bottom annular frame 11. The fixing plate 3 is fixedly assembled on the two first load-bearing beams 141 and the corresponding second load-bearing beams 142, and the load-bearing plate 4 is provided in multiple pieces and fixed on the first load-bearing beams 141 and the second load-bearing beams 142.
[0029] The two first load-bearing beams 141 are connected between the two long frames of the bottom annular frame 11, that is, the first load-bearing beam 141 is perpendicular to the long frame of the bottom annular frame 11, and two second load-bearing beams 142 are respectively provided between the two adjacent second load-bearing beams 142 and between the second load-bearing beams 142 and the short frame of the bottom annular frame 11. The positions of the second load-bearing beams 142 in each interval correspond to each other. Therefore, each second load-bearing beam 142 is located on two parallel straight lines, and the first load-bearing beams 141 and the second load-bearing beams 142 are arranged in a criss-cross shape as a whole. In this way, the structure of the load-bearing frame 14 can be made firm, and the force exerted on the fixed plate 3 and the load-bearing plate 4 can be more reliably transmitted to the bottom annular frame 11. It should be understood that the number of the first load-bearing beams 141 and the second load-bearing beams 142 can be adaptively set according to actual conditions. For example, one, three, four, etc. first load-bearing beams 141 can be set, and the second load-bearing beams 142 can be respectively set one, two, three, four, etc. between two adjacent second load-bearing beams 142 and between the second load-bearing beams 142 and the short frame of the bottom annular frame 11.
[0030] Furthermore, the load-bearing plate 4 includes two first plates 41 arranged on both sides of the first direction and a second plate 42 arranged on both sides of the second direction, the two first plates 41 are located on two opposite sides of the fixed plate 3, and the two second plates 42 are located on the other opposite sides of the fixed plate 3; the load-bearing plate 4 is fixed to the top side of the load-bearing frame 14 by means of screws; at least part of the edge of the load-bearing plate 4 abuts against the top side of the bottom annular frame 11, and at least part of the edge of the load-bearing plate 4 is provided with a notch for embedding the vertical rod 13.
[0031] Specifically, the two first plates 41 are the same length as the width of the bottom annular frame 11 and are located on the sides of the fixed plate 3 near the short frame of the bottom annular frame 11. Notches are provided at the corners of the first plates 41 and at locations corresponding to the vertical rods 13 near the edges of the bottom annular frame 11. The first plates 41 are fixed to the bottom annular frame 11 and the load-bearing frame 14 via screws, thus providing a more secure and stable connection. The two second plates 42 are located on the sides of the fixed plate 3 near the long frame of the bottom annular frame 11 and between the two first plates 41. The second plates 42 are fixed to the long frame of the bottom annular frame 11 and the first load-bearing beam 141 via screws. When the surgical light 10 is mounted on the fixed plate 3, the weights 20 can be placed on the first plates 41 and / or the second plates 42 and secured with screws, thereby preventing the surgical light 10 and the transport tooling from tipping over due to an excessively high center of gravity, making transportation safer and more reliable.
[0032] Furthermore, pads 5 are provided at the corners of the bottom annular frame 11. The pads 5 overlap with the bottom sides of the two frames at the corresponding corners, and the pulley assembly uses a universal wheel with a brake and is fixed to the bottom side of the pads 5. In this embodiment, each corner of the bottom annular frame 11 is provided with a pad 5, and the pads 5 are provided with a universal wheel with a brake, that is, the pulley assembly includes four pulleys respectively located at the corners of the bottom annular frame 11. The arrangement of the pulleys and pads 5 can achieve support for both the long frame and the short frame of the bottom annular frame 11, and the support effect is better. The use of universal wheels with brakes can easily achieve the movement, direction change and stop of the transport tooling, making transportation more convenient and flexible, and having good adaptability. It should be understood that the number of pulleys in the pulley group can be set according to actual conditions. Generally, at least three can be set and spaced apart from each other, as long as the overall support of the base frame 1 can be achieved. For example, when the base frame 1 is circular, three equally spaced pulleys are set; when the base frame 1 is square, four pulleys are set at the corners; when the base frame 1 is pentagonal, five pulleys are set at the corners; when the base frame 1 is hexagonal, six pulleys are set at the corners.
[0033] Furthermore, the base frame 1 is formed by welding square tubes. Specifically, the bottom annular frame 11, the top annular frame 12, the vertical rods 13, the first load-bearing beam 141, and the second load-bearing beam 142 are all made of square tubes. Square tubes are simple, strong, and low-cost profiles, making the transport tooling easy to manufacture, strong, and low-cost. It should be understood that the base frame 1 can also be made of other profiles, such as angle steel, channel steel, etc.
[0034] Furthermore, the fixing plate 3 has a central clearance hole and multiple bolt holes spaced around the clearance hole. When installing the surgical light 10 and the transport fixture, simply align the flange of the surgical light 10 with the fixing plate 3 and then bolt them together. This is quick and easy, and provides a stable fixation.
[0035] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A complete surgical lamp transport tool, characterized in that: It includes a base frame, a moving component, a fixed plate and a load-bearing plate. The top side of the base frame is provided with an installation space. The moving component includes a pulley group fixed to the bottom side of the base frame in a ring-shaped outline arrangement. The fixed plate is fixed to the base frame in the middle area of the bottom side of the installation space. The fixed plate is provided with a plurality of mounting holes for mounting and fixing to the hanging flange of the surgical lamp. The load-bearing plate is fixed to the base frame and surrounds the circumference of the fixed plate.
2. The complete surgical light transport tooling according to claim 1, characterized in that: The base frame includes a bottom annular frame, a top annular frame spaced apart from the top side of the bottom annular frame, a vertical rod fixed between the bottom annular frame and the top annular frame, and a load-bearing frame fixed in the bottom annular frame. The fixing plate and the load-bearing plate are both fixed to the top side of the load-bearing frame, and the pulley set is fixed to the bottom side of the bottom annular frame.
3. The complete surgical light transport tooling according to claim 2, characterized in that: The overall outline of the base frame is cubical, the bottom annular frame is rectangular, and the load-bearing frame includes a first load-bearing beam arranged in a first direction and connected at both ends to the inner side of the bottom annular frame, and a second load-bearing beam arranged in a second direction and connected at both ends to the first load-bearing beam and / or the inner side of the bottom annular frame.
4. The complete surgical lamp transport tooling according to claim 3, characterized in that: The first direction is perpendicular to the second direction, and the load-bearing frame includes two first load-bearing beams. Two second load-bearing beams are respectively provided between adjacent first load-bearing beams and between the first load-bearing beam and the bottom annular frame. The fixing plate is fixedly assembled on the two first load-bearing beams and the corresponding second load-bearing beams. The load-bearing plates are provided in multiple pieces and are fixed on the first load-bearing beams and the second load-bearing beams.
5. The complete surgical light transport tooling according to claim 4, characterized in that: The load-bearing plate includes two first plates arranged on both sides of the first direction and a second plate arranged on both sides of the second direction. The two first plates are located on two opposite sides of the fixed plate, and the two second plates are located on the other opposite sides of the fixed plate.
6. The complete surgical light transport tooling according to claim 2, characterized in that: The load-bearing plate is fixed to the top side of the load-bearing frame by means of screws.
7. The complete surgical lamp transport tool according to claim 2, characterized in that: The corners of the bottom annular frame are provided with pads, which overlap with the bottom sides of the two frame frames at the corresponding corners. The pulley group adopts a universal wheel with a brake and is fixed to the bottom side of the pad.
8. The complete surgical lamp transport tool according to claim 7, characterized in that: At least a portion of the edge of the load-bearing plate abuts against the top side of the bottom annular frame, and at least a portion of the edge of the load-bearing plate is provided with a notch for embedding the vertical rod.
9. The complete surgical light transport tool according to claim 1, characterized in that: The base frame is formed by welding square tubes.
10. The complete surgical lamp transport tool according to claim 1, characterized in that: The fixing plate is provided with a clearance hole in the middle and a plurality of bolt holes spaced around the clearance hole.