Modular scaffolding support structure and ultrasound tumor treatment system

CN224655850UActive Publication Date: 2026-08-21SHENYANG CHANGJIANGYUAN TECH DEV CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521575521.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-28
Publication Date
2026-08-21
Estimated Expiration
2035-07-28

AI Technical Summary

Technical Problem

[0004]采用焊接形式的骨架支撑结构,主要是焊接后的骨架支撑结构的精度无法保证,因为骨架材料在焊接过程中的高温高热会使骨架材料焊接后出现应力变形情况,导致整体的骨架支撑结构精度无法满足要求

Benefits of technology

[0010]基于上述技术方案可知,本实用新型的技术方案相对于现有技术,至少具备如下有益效果之一:采用模块化设计,提高了骨架支撑结构的安装精度,同时提高整体结构的稳固性;同时模块化安装的可替换性提高,可调节性强,便于拆卸安装和维修。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224655850U_ABST
    Figure CN224655850U_ABST
Patent Text Reader

Abstract

The application discloses a modular framework support structure and an ultrasonic tumor treatment system, and belongs to the technical field of medical instruments.The modular framework support structure comprises a base module, a leveling foot is arranged at the bottom of the base module; a side support module, the side support module comprises a first support and a second support which are arranged at the two sides of the base module; a top frame module which is arranged at the top end of the side support module; and a bracket module which is arranged at the upper part of the side support module and is combined with the top frame module to form a bracket area.The modular framework support structure meets the installation precision requirement, improves the stability and adjustability of the equipment, and is convenient for disassembly, replacement and maintenance.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of medical device technology, and in particular to a modular skeleton support structure and an ultrasound tumor treatment system. Background Technology

[0002] In recent years, with the increasing development of ultrasound therapy equipment, the stability of such equipment has received more and more attention. Equipment stability refers not only to the stability of the operating structure but also crucially to the stability of the supporting structure. Currently, most ultrasound therapy equipment operates at high precision, which places higher demands on the design of the equipment's skeletal support mechanism.

[0003] Currently, there are two main types of skeletal support structures for ultrasound therapy devices. One type uses welding, where metal parts are connected to form a complete skeleton. The other type uses a single piece of material, cut into the support skeleton using a machine tool.

[0004] The main problem with using a welded frame support structure is that the accuracy of the welded frame support structure cannot be guaranteed. This is because the high temperature and heat during the welding process can cause stress deformation in the frame material after welding, resulting in the overall frame support structure failing to meet the accuracy requirements.

[0005] The skeleton support structure, which adopts the form of cutting the whole material, mainly requires a whole piece of metal material and is formed by CNC machine tools. The processing cost is very high, and some complex support structures cannot be processed by CNC machine tools. The processing is difficult, wasteful of materials, and costly.

[0006] Therefore, it is urgent to develop a new skeletal support structure to address the current defects and shortcomings. Utility Model Content

[0007] In view of this, the main purpose of this utility model is to provide a modular skeleton support structure and an ultrasound tumor treatment system to meet the installation accuracy requirements of the skeleton support structure, improve the stability and adjustability of the equipment, and facilitate disassembly, replacement and maintenance.

[0008] To achieve the above objectives, as a first aspect of this utility model, a modular frame support structure is proposed, comprising: a base module with leveling feet at the bottom; a side support module, including a first support and a second support installed at the bottom ends on both sides of the base module; a top frame module installed at the top of the side support module; and a bracket module with both ends installed on the upper part of the side support module, forming a bracket area together with the top frame module.

[0009] In a second aspect, an ultrasound tumor treatment system is proposed, comprising: an ultrasound tumor treatment device and a skeleton support structure, wherein the skeleton support structure adopts the above-mentioned skeleton support structure, is disposed on the periphery of the ultrasound tumor treatment device, and is used to support the ultrasound tumor treatment device.

[0010] Based on the above technical solution, it can be seen that the technical solution of this utility model has at least one of the following beneficial effects compared with the prior art: the modular design improves the installation accuracy of the skeleton support structure and enhances the overall structural stability; at the same time, the modular installation improves the replaceability and adjustability, making it easy to disassemble, install and maintain.

[0011] It should be understood that the description in this utility model description section is not intended to limit the key or essential features of the embodiments of this utility model, nor is it intended to restrict the scope of this utility model. Other features of this utility model will become readily apparent from the following description. Attached Figure Description

[0012] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the embodiments will be briefly described below.

[0013] Figure 1 This is a schematic diagram of the modular skeleton support structure according to an embodiment of the present invention;

[0014] Figure 2 This is a schematic diagram of the structure of the ultrasound tumor treatment system according to an embodiment of the present invention. Detailed Implementation

[0015] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0016] The terminology used in this invention is for the purpose of describing particular embodiments only and is not intended to limit the embodiments of this invention. The singular forms “a,” “the,” and “the” used in the embodiments of this invention and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise.

[0017] The first part of this utility model proposes a modular skeleton support structure, such as... Figure 1As shown, it includes: a base module 10 with leveling feet 11 at the bottom; a side support module 20, including a first support and a second support mounted on both sides of the base module at their bottom ends; a top frame module 30, mounted on the top of the side support module 20; and a bracket module 40, mounted on the upper part of the side support module 20 at both ends, forming a bracket area together with the top frame module 30. It adopts a modular assembly approach, dividing the overall skeleton support structure into multiple modules. During use, the equipment is supported and fixed by assembly, and a freely assembleable shape can be obtained by simply fixing with screws to adapt to the requirements of different equipment.

[0018] In a preferred embodiment, the first and second supports respectively include a base bar 21, a main bar 22, and a top bar 23 welded into an inverted "I" shape. The main bar 22 has mounting holes for installing supports. For equipment stability, good vertical stability is required to prevent the support structure from loosening or changing height due to equipment vibration. Therefore, an "I" shape is used to ensure structural stability, and welding is employed to increase the stability of equipment fixation and support, avoiding height errors during use that could lead to medical accidents. To increase stability and meet the requirement of lightweight equipment, the main bar 22 is designed as a hollow frame, providing a mounting location and reducing unnecessary mounting components, thus reducing the overall weight of the equipment.

[0019] In a preferred embodiment, the top frame module 30 includes a first curved beam 31 and a second curved beam 32. The two ends of the first curved beam 31 are respectively installed on the same side of the top bars 23 of the first and second supports, and the two ends of the second curved beam 32 are respectively installed on the other side of the top bars 23 of the first and second supports. The top frame module 30 and the top bars 23 of the side support module 20 form a tall space for placing certain functional components. This separate support from the main body of the equipment below reduces the load on the base module 10 and improves the applicability of the equipment. Modular installation allows for selection of the structure of the top frame module 30. The bending design of the curved beams can also be modified according to the shape of the support components to achieve support for the outer shell of the support.

[0020] In a preferred embodiment, the top frame module 30 is further provided with a reinforcing beam 33, which is installed between the first bending beam 31 and the second bending beam 32. To increase stability, one or more reinforcing beams 33 are added to improve the overall stability of the support structure. Alternatively, appropriate reinforcing beams can be provided according to the component structure of the support.

[0021] In a preferred embodiment, the first and second supports are further welded with a first auxiliary bar 24 and a second auxiliary bar 25, which are vertically welded between the bottom bar 21 and the top bar 23. The bottom ends of the first auxiliary bar 24 and the second auxiliary bar 25 are welded and fixed to the end of the bottom bar 21, and their top ends are welded and fixed to the top bar 23. The auxiliary bars can be configured in various positions and shapes according to the needs of the support components. Without affecting the use of the support, they primarily serve the following functions: firstly, to improve the stability of the side support module 20; and secondly, to provide an installation position for the bracket module 40.

[0022] In a preferred embodiment, the bracket module 40 includes a first connecting rod 41 and a second connecting rod 42 fixed between the first bracket and the second bracket. The first connecting rod 41 and the second connecting rod 42 are respectively fixed to the first curved beam 31 and the second curved beam 32 via mounting blocks 50. Since the top frame module 30 is the outer frame, to create a placement space, the bracket module 40 is placed below the top frame module 30 and positioned inwards relative to the outer frame. Specifically, the first connecting rod 41 forms a stepped gradient with the first curved beam 31, and the second connecting rod 42 forms a stepped gradient with the second curved beam 32. To ensure structural stability, the first connecting rod 41 and the second connecting rod 42 are respectively fixed to the first curved beam 31 and the second curved beam 32 via mounting blocks 50. The mounting block 50 has a certain length, the size of which depends on the size of the support. The top of one end of the mounting block 50 is fixed to the curved beam, and the bottom of the other end is fixed to the connecting rod; these can be secured by screws.

[0023] In a preferred embodiment, the ends of the first curved beam 31 and the second curved beam 32 are also fixed to the first bracket and the top bar 23 of the first bracket respectively by mounting blocks 50. Due to the curved beam's curved design, the vertical distances between the two ends of the curved beam and the ground are different. In order to maintain the horizontal setting of the curved beam, mounting blocks 50 of different heights are used to fix the two ends. The height of the mounting blocks 50 also needs to be set according to the height of the support components to ensure that the bracket area fits against the outer periphery of the equipment components, thus playing a supporting and fixing role.

[0024] In a preferred embodiment, pads 12 are provided on both sides of the top of the base module 10 near the side support module 20. The base module 10 can be made from a single sheet of material or composed of several rectangular steel pipes, serving as a support for the overall equipment. The pads 12 are installed on the sheet material or on the rectangular steel pipes, serving to support the equipment. Specifically, as shown... Figure 1As shown, the frame of the base module 10 consists of two rectangular steel pipes, one inner and one outer, with two rectangular intermediate bars in the middle. Pads 12 are installed at both ends of the intermediate bars. The base module 10 serves to support the equipment. To ensure stability, leveling feet 11 are provided for leveling, ensuring the precision required for the equipment's treatment.

[0025] The second part of this utility model proposes an ultrasound tumor treatment system, including: an ultrasound tumor treatment device and a skeletal support structure, wherein the skeletal support structure adopts the aforementioned skeletal support structure and is disposed on the periphery of the ultrasound tumor treatment device for supporting the ultrasound tumor treatment device. Figure 2 As shown, the ultrasound tumor treatment device includes components that require height adjustment, a slide rail 61 that allows the upper and lower components to slide vertically, and a medical water tank 62 located at a fixed position above the treatment device. Due to the high stability requirements of the ultrasound tumor treatment device, a modular design of the skeletal support structure was implemented. This allows the support structure to absorb vibrations from the device, further achieving shock absorption and making its operation more stable while providing stable support.

[0026] In a preferred embodiment, the slide rails 61 of the treatment system are vertically fixed to the first and second supports of the side support module 20, respectively. For example... Figure 2 As shown, the slide rail 61 is fixed to the main bar 22 of the side support module 20 with screws to provide support and fixation. To increase stability, a pad 12 is also installed below the slide rail 61, which serves two purposes: firstly, to protect and support the equipment, and secondly, to reduce vibration.

[0027] In a preferred embodiment, the treatment device includes a medical water tank 62, and the medical water tank 62 is fixed by a bracket area formed by a bracket module 40 and a top frame module 30. Specifically, as shown... Figure 2 As shown, the height and size of the medical water tank 62 are determined by selecting mounting blocks 50 of different heights and lengths for modular assembly of the top frame module 30 and bracket module 40.

[0028] In the above embodiments, the fixed connection between modules can be achieved by using internal hexagon countersunk screws and skeleton threads, which facilitates assembly and disassembly.

[0029] The specific assembly process is as follows:

[0030] S1: Fix the base 10 to the bottom of the first bracket and the second bracket with screws;

[0031] S2: Fix the pad 12 onto the base 10;

[0032] S3: The first bending beam 31 and the second bending beam 32 are fixedly installed on the top bar 23 of the first bracket and the second bracket by mounting block 50 screws;

[0033] S4: Fix the first connecting rod 41 and the second connecting rod 42 to the auxiliary rod 24 of the first bracket and the second bracket with screws, and then fix them to the first bending beam 31 and the second bending beam 32 with screws through the mounting block 50.

[0034] S5: Install the reinforcing beam 33 between the first bending beam 31 and the second bending beam 32 to complete the assembly of the support structure.

[0035] Each module of the skeleton support structure in this design is made of steel and CNC machined. Welding would not meet medical precision requirements, and CNC machining of the entire skeleton support structure without modular design would be difficult and wasteful of materials. Therefore, a modular design is adopted, with each module CNC machined separately. This simplifies the operation and indirectly increases the practicality and stability of the support structure. CNC machining ensures minimal machining accuracy, with the flatness and parallelism errors of the contact surfaces between modules guaranteed to be less than 0.01mm. When all modules are finally assembled, the installation accuracy is maintained below ±0.5mm. This high installation accuracy increases the structural stability and meets the medical requirements of medical devices.

[0036] The main beneficial technical effects of this utility model include:

[0037] 1. Modular installation offers high precision and strong adjustability. The support structure consists of individual frame modules connected by screws, and the precision of the support structure can be ensured by adjusting the gap between the screws and the frame threads.

[0038] 2. Modular installation ensures high replaceability. If any part of the skeleton module is damaged, the corresponding module can be directly replaced.

[0039] 3. Modular installation ensures good stability. Due to the modular assembly feature, the support structure can absorb some of the vibrations from the equipment, making the equipment operate more stably.

[0040] The foregoing has described specific embodiments of the present invention. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps described in the claims may be performed in a different order than that shown in the embodiments and still achieve the desired results. Furthermore, the processes depicted in the drawings do not necessarily require a specific or sequential order to achieve the desired results. In some embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0041] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A modular skeleton support structure, characterized in that, include: The base module has leveling feet at the bottom; The side support module includes a first support and a second support with the bottom ends mounted on both sides of the base module; The top frame module is installed on top of the side support module; The bracket module is installed at both ends on the upper part of the side support module, forming a bracket area together with the top frame module.

2. The skeleton support structure according to claim 1, characterized in that, The first bracket and the second bracket respectively include a bottom bar, a main bar and a top bar welded into an inverted "I" shape, wherein the main bar is provided with mounting holes for mounting the support.

3. The skeleton support structure according to claim 2, characterized in that, The top frame module includes a first curved beam and a second curved beam, wherein... The two ends of the first curved beam are respectively installed on the same side of the top bar of the first bracket and the second bracket, and the two ends of the second curved beam are respectively installed on the other side of the top bar of the first bracket and the second bracket.

4. The skeleton support structure according to claim 3, characterized in that, The top frame module is also provided with a reinforcing beam, which is installed between the first bending beam and the second bending beam.

5. The skeleton support structure according to claim 3, characterized in that, The first bracket and the second bracket are also welded with a first auxiliary bar and a second auxiliary bar, which are vertically welded between the bottom bar and the top bar. The bottom ends of the first auxiliary bar and the second auxiliary bar are welded and fixed to the end of the bottom bar, and the top ends are welded and fixed to the top bar.

6. The skeleton support structure according to claim 5, characterized in that, The bracket module includes a first connecting rod and a second connecting rod fixed to the first bracket and the second bracket, wherein... The first connecting bar and the second connecting bar are fixed to the first bending beam and the second bending beam respectively by mounting blocks.

7. The skeleton support structure according to claim 1, characterized in that, The top of the base module is provided with pads on both sides near the side support module.

8. An ultrasound-guided tumor treatment system, characterized in that, include: Ultrasound-guided tumor treatment equipment and its supporting skeletal structure, among which, The aforementioned skeleton support structure adopts the skeleton support structure as described in any one of claims 1-7, and is disposed on the periphery of the ultrasound tumor treatment device for supporting the ultrasound tumor treatment device.

9. The ultrasound tumor treatment system according to claim 8, characterized in that, The slide rails of the treatment device are respectively vertically fixed to the first and second supports of the side support module of the skeleton support structure.

10. The ultrasound tumor treatment system according to claim 8, characterized in that, The treatment device includes a medical water tank, and the medical water tank is fixed by a bracket area composed of a bracket module and a top frame module.