A compatible transfer spreader for a nuclear magnetic resonance machine cabin cover
By designing a compatible transfer spreader, and utilizing a combination of lower and upper chain, the problem of poor compatibility of existing spreaders was solved, enabling compatible lifting of nacelle covers of various sizes, reducing operating costs and improving transportation efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANG SU DONG KE COMPOSITES CO LTD
- Filing Date
- 2025-09-19
- Publication Date
- 2026-08-04
AI Technical Summary
The existing MRI machine cabin cover lifting tools have poor adaptability. Each type of lifting tool can only be used for one type of size, resulting in a heavy burden on users and making it impossible to achieve diverse adaptability.
A compatible transport lifting device for nuclear magnetic resonance (NMR) nacelle canopy was designed. By combining a lower chain and an upper ring chain, it achieves diverse adaptability. Utilizing flexible shock-absorbing support components and external binding components, including bolt-assembled lifting parts, it enables compatible lifting of nacelle canopies of various sizes.
It has enabled compatible hoisting of nuclear magnetic resonance imaging (MRI) chamber covers of various sizes, reducing operating costs and improving equipment adaptability and transportation efficiency.
Smart Images

Figure CN224590517U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of nuclear magnetic resonance imaging (NMR) nacelle cover hoisting technology, and in particular to a compatible transfer hoisting tool for NMR nacelle covers. Background Technology
[0002] Magnetic resonance imaging (MRI) involves placing the human body in a special magnetic field and using radio frequency pulses to excite the hydrogen nuclei within the body. This causes the hydrogen nuclei to resonate and absorb energy. After the radio frequency pulses stop, the hydrogen nuclei emit radio signals at a specific frequency and release the absorbed energy. These signals are then captured by an external receiver and processed by a computer to obtain an image. This process is called magnetic resonance imaging. The MRI machine enclosure is a key component of the MRI equipment, primarily used to shield against external interference, protect the core components of the equipment, and enhance the patient experience.
[0003] Existing compatible transfer spreaders typically involve securing and fixing the product before using lifting equipment to load, unload, and transfer it. However, these spreaders often have poor compatibility, with a single type generally only suitable for one size of MRI machine cover. This reliance on multiple spreaders creates a significant operational burden. Therefore, this invention proposes a compatible transfer spreader for MRI machine covers to address the problems existing in the prior art. Utility Model Content
[0004] To address the aforementioned issues, this utility model proposes a compatible transport hoist for a nuclear magnetic resonance imaging (MRI) chamber cover. This compatible transport hoist mainly utilizes a lower iron chain in conjunction with an upper enclosed iron chain. When compatible use is required, the lower iron chain and the enclosed iron chain can be connected and placed as needed, thus effectively achieving a diverse compatibility effect during equipment use, thereby significantly reducing the cost of product and equipment use.
[0005] To achieve the purpose of this utility model, the utility model is implemented through the following technical solution: a compatible transfer lifting device for a nuclear magnetic resonance nacelle cover, including a flexible shock-absorbing support assembly and an outer binding component, wherein a bolt-assembled outer binding component is provided on the outer side of the middle part of the flexible shock-absorbing support assembly, and a bolt-assembled lifting component is provided above the outer binding component;
[0006] The peripheral binding component includes a lower bolt seat, a lower iron chain, a central ring plate, an inner shock absorber, an arc-shaped plate, an arc-shaped flexible pad, an outer bolt seat, a peripheral rod, and a surrounding iron chain. The lower bolt seat is bolted to the outer side of the central part of the flexible shock-absorbing support assembly, and a lower iron chain is provided at the outer end of the lower bolt seat. A central ring plate is provided above the lower iron chain, and an inner shock absorber is provided on the inner side of the central ring plate. An arc-shaped plate is provided on the inner side of the inner shock absorber, and an arc-shaped flexible pad is provided on the inner side of the arc-shaped plate. An outer bolt seat is provided on the outer side of the central ring plate, and a peripheral rod is provided at the outer end of the outer bolt seat. A surrounding iron chain is provided at the outer end of the peripheral rod.
[0007] In a preferred embodiment of this utility model, the arc-shaped plate has a fan-shaped arc ring structure.
[0008] In a preferred embodiment of the present invention, the flexible shock-absorbing support assembly includes a spherical pad, a lower shock absorber, a lower pad plate, an assembly plate, an extension plate, and a bottom flexible pad. The lower shock absorber is disposed above the spherical pad, and the lower pad plate is disposed above the lower shock absorber.
[0009] In a preferred embodiment of the present invention, the top of the lower pad is provided with a bolt-fitted assembly plate, and an extension plate is provided above the assembly plate, and a ring-shaped flexible bottom pad is provided above the extension plate.
[0010] In a preferred embodiment of this utility model, the hoisting component includes an upper bolt seat, an upper chain, an upper block, an inner bolt base, a tripod, a top pressure plate, steel cables, a hoisting column, and a hoisting thick ring. The upper bolt seat is bolted to the upper part of the middle ring plate. An upper chain is provided above the upper bolt seat, and an upper block is provided above the upper chain. An inner bolt base is provided on the inner side of the upper block, and a tripod is provided on the inner side of the inner bolt base.
[0011] In a preferred embodiment of this utility model, the inner end of the tripod is provided with a top pressure plate, and a bolt-assembled steel cable is provided above the top pressure plate. A hoisting column is provided above the steel cable, and a hoisting ring is provided above the hoisting column.
[0012] The beneficial effects of this utility model are as follows:
[0013] This utility model mainly utilizes a lower iron chain in conjunction with an upper encircling iron chain. When compatibility is required, the lower iron chain and the encircling iron chain can be interlocked as needed, thus achieving a versatile adaptability effect during equipment use and significantly reducing the cost of product and equipment use. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0015] Figure 2 This is a bottom-view three-dimensional structural diagram of the present invention;
[0016] Figure 3 This is a three-dimensional structural diagram of the flexible shock-absorbing support component of this utility model;
[0017] Figure 4 This is a three-dimensional structural diagram of the peripheral binding component of this utility model.
[0018] The components include: 1. Flexible shock-absorbing support assembly; 101. Spherical pad; 102. Lower shock absorber; 103. Lower pad plate; 104. Assembly plate; 105. Extension plate; 106. Bottom flexible pad; 2. External binding components; 201. Lower bolt seat; 202. Lower iron chain; 203. Middle ring plate; 204. Inner shock absorber; 205. Arc plate; 206. Arc flexible pad; 207. Outer bolt seat; 208. Outer rod; 209. Encircling iron chain; 3. Lifting components; 301. Upper bolt seat; 302. Upper iron chain; 303. Upper block; 304. Inner bolt base; 305. Triangular frame; 306. Top pressure plate; 307. Steel cable; 308. Lifting column; 309. Lifting thick ring. Detailed Implementation
[0019] To deepen the understanding of this utility model, the following detailed description will be provided in conjunction with embodiments. These embodiments are only used to explain this utility model and do not constitute a limitation on the scope of protection of this utility model.
[0020] according to Figure 1-4 As shown, this embodiment proposes a compatible transport lifting device for a nuclear magnetic resonance nacelle cover, including a flexible shock-absorbing support assembly 1 and an outer binding component 2. The outer binding component 2, which is bolted, is provided on the outer side of the middle part of the flexible shock-absorbing support assembly 1, and a lifting component 3, which is bolted, is provided above the outer binding component 2.
[0021] The outer binding component 2 includes a lower bolt seat 201, a lower iron chain 202, a middle ring plate 203, an inner shock absorber 204, an arc plate 205, an arc-shaped flexible pad 206, an outer bolt seat 207, an outer rod 208, and a surrounding iron chain 209. The lower bolt seat 201 is bolted to the outer side of the middle part of the flexible shock-absorbing support component 1, and the lower iron chain 202 is provided at the outer end of the lower bolt seat 201. The middle ring plate 203 is provided above the lower iron chain 202, and the inner side of the middle ring plate 203 is provided with the inner shock absorber 204. The inner side of the inner shock absorber 204 is provided with the arc plate 205, and the inner side of the arc plate 205 is provided with the arc-shaped flexible pad 206. The outer bolt seat 207 is provided at the outer side of the middle ring plate 203, and the outer end of the outer bolt seat 207 is provided with the outer rod 208. The outer end of the outer rod 208 is provided with the surrounding iron chain 209.
[0022] The arc plate 205 has a fan-shaped arc ring structure.
[0023] In this embodiment, the lower iron chain 202 on the outer side of the lower bolt seat 201 is then used to bind the upper middle ring plate 203 so that the inner shock absorber 204 on the inner side of the middle ring plate 203, together with the arc plate 205 and the arc flexible pad 206, is supported on the outside of the product, and the outer perimeter rod 208 on the outer side of the middle ring plate 203 is fixed in a ring with the encircling iron chain 209.
[0024] The flexible damping support assembly 1 includes a spherical pad 101, a lower shock absorber 102, a lower pad plate 103, an assembly plate 104, an extension plate 105, and a bottom flexible pad 106. The lower shock absorber 102 is disposed above the spherical pad 101, and the lower pad plate 103 is disposed above the lower shock absorber 102.
[0025] In this embodiment, when in use, the equipment is placed at the processing location by using the spherical pad 101 in conjunction with the lower shock absorber 102. Since the spherical pad 101, the lower shock absorber 102 and the lower pad plate 103 are angularly distributed, the effect of balanced support can be effectively achieved.
[0026] The top of the lower pad 103 is provided with a bolt-fitted assembly plate 104, and an extension plate 105 is provided above the assembly plate 104. A ring-shaped bottom flexible pad 106 is provided above the extension plate 105.
[0027] In this embodiment, the mounting plate 104 is then bolted onto the upper part of the lower pad 103 so that the bottom flexible pad 106 above the expansion plate 105 supports the bottom of the product.
[0028] The hoisting component 3 includes an upper bolt seat 301, an upper chain 302, an upper block 303, an inner bolt base 304, a tripod 305, a top pressure plate 306, a steel cable 307, a hoisting column 308, and a hoisting thick ring 309. The upper bolt seat 301 is bolted to the top of the middle ring plate 203. The upper chain 302 is located above the upper bolt seat 301, and the upper block 303 is located above the upper chain 302. The inner bolt base 304 is located on the inner side of the upper block 303, and the tripod 305 is located on the inner side of the inner bolt base 304.
[0029] In this embodiment, the upper bolt seat 301 is then used in conjunction with the upper chain 302 to install the upper block 303, so that the inner side of the upper block 303 is bolted to the tripod 305 using the inner bolt base 304. The top pressure plate 306 is then installed above the product for support.
[0030] The inner end of the tripod 305 is provided with a top pressure plate 306, and a bolt-assembled steel cable 307 is provided above the top pressure plate 306. A hoisting column 308 is provided above the steel cable 307, and a hoisting ring 309 is provided above the hoisting column 308.
[0031] In this embodiment, steel cables 307 and lifting columns 308, which are arranged in annular angles above the top pressure plate 306, are then installed below the lifting ring 309, so that the lifting ring 309, together with the relevant crane, can lift the product to the target position.
[0032] The working principle of the compatibility transport hoist for the MRI machine cabin cover is as follows: During use, the equipment is placed at the processing location using a spherical pad 101 in conjunction with a lower shock absorber 102. Because the spherical pad 101, the lower shock absorber 102, and the lower pad plate 103 are angularly distributed along their central axes, a balanced support effect is effectively achieved. Then, an assembly plate 104 is bolted to the upper part of the lower pad plate 103, allowing the bottom flexible pad 106 above the expansion plate 105 to support the bottom of the product. Next, the lower chain 202 on the outer side of the lower bolt seat 201 is used to bind the upper middle ring plate 203, allowing the inner shock absorber 204 on the inner side of the middle ring plate 203 to work in conjunction with the arc-shaped plate. 205 and the arc-shaped flexible pad 206 support the outside of the product, and the outer perimeter rod 208 on the outer side of the central ring plate 203 is fixed in a ring with the encircling iron chain 209. Then, the upper bolt seat 301 is used to install the upper block 303 with the upper iron chain 302. The inner side of the upper block 303 is bolted to the tripod 305 with the inner bolt base 304. The top pressure plate 306 is installed above the product for support. Then, the ring-shaped steel cable strips 307 and the hoisting column 308 are installed on the top pressure plate 306 and installed below the hoisting thick ring 309. Thus, the hoisting thick ring 309, together with the relevant crane, hoists the product to the target position.
[0033] 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 compatible transfer spreader for a nuclear magnetic resonance capsule, comprising a flexible shock absorbing support assembly (1) and a peripheral binding member (2), characterized in that: The flexible shock-absorbing support assembly (1) is provided with a bolt-assembled peripheral binding member (2) on the outer side of the middle part, and a bolt-assembled hoisting component (3) is provided above the peripheral binding member (2). The outer binding component (2) includes a lower bolt seat (201), a lower chain (202), a central ring plate (203), an inner shock absorber (204), an arc-shaped plate (205), an arc-shaped flexible pad (206), an outer bolt seat (207), an outer rod (208), and a surrounding chain (209). The lower bolt seat (201) is bolted to the outer side of the middle part of the flexible shock-absorbing support component (1), and the lower chain (202) is provided at the outer end of the lower bolt seat (201). Above the lower chain (202) is a... A central ring plate (203) is provided, and an inner shock absorber (204) is provided on the inner side of the central ring plate (203). An arc-shaped plate (205) is provided on the inner side of the inner shock absorber (204), and an arc-shaped soft pad (206) is provided on the inner side of the arc-shaped plate (205). An outer bolt seat (207) is provided on the outer side of the central ring plate (203), and an outer rod (208) is provided at the outer end of the outer bolt seat (207). A circular iron chain (209) is provided at the outer end of the outer rod (208).
2. A compatible transfer hanger for a NMR nacelle cover according to claim 1, characterized in that: The arc-shaped plate (205) has a fan-shaped arc ring structure.
3. The compatible transfer hanger for a NMR nacelle cover as claimed in claim 1, characterized in that: The flexible shock-absorbing support assembly (1) includes a spherical pad (101), a lower shock absorber (102), a lower pad plate (103), an assembly plate (104), an extension plate (105), and a bottom flexible pad (106). The lower shock absorber (102) is disposed above the spherical pad (101), and the lower pad plate (103) is disposed above the lower shock absorber (102).
4. A compatible transfer hanger for a NMR nacelle cover according to claim 3, characterized in that: The top of the lower pad (103) is provided with a bolt-fitted assembly plate (104), and an extension plate (105) is provided above the assembly plate (104). A ring-shaped bottom flexible pad (106) is provided above the extension plate (105).
5. The compatible transfer hanger for a NMR nacelle cover of claim 1, wherein: The hoisting component (3) includes an upper bolt seat (301), an upper chain (302), an upper block (303), an inner bolt base (304), a tripod (305), a top pressure plate (306), a steel cable (307), a hoisting column (308), and a hoisting ring (309). The upper bolt seat (301) is bolted to the upper part of the middle ring plate (203). An upper chain (302) is provided above the upper bolt seat (301), and an upper block (303) is provided above the upper chain (302). An inner bolt base (304) is provided on the inner side of the upper block (303), and a tripod (305) is provided on the inner side of the inner bolt base (304).
6. A compatible transfer hanger for a NMR nacelle cover according to claim 5, characterized in that: The inner end of the tripod (305) is provided with a top pressure plate (306), and a bolt-assembled steel cable (307) is provided above the top pressure plate (306). A hoisting column (308) is provided above the steel cable (307), and a hoisting ring (309) is provided above the hoisting column (308).