Insulin pump anti-magnetization protection bag

By designing an insulin pump anti-magnetization protection bag, the Faraday cage is formed using the anti-magnetization layer and the outer guide mesh layer, the problem of the insulin pump damage of the strong magnetic field of the nuclear magnetic resonance meter is solved, and the effective anti-magnetization protection of the equipment is achieved and convenient carrying.

CN120053807AInactive Publication Date: 2025-05-30LISHUI CENT HOSPITAL
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Patent Information

Application Number
CN202510235615.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The strong magnetic field and radio frequency signals of the NMR instrument may damage the electronic components of the insulin pump, causing equipment failure, and the damaged equipment is usually unable to be repaired, causing economic losses.

Method used

An insulin pump anti-magnetization protection bag is designed, including an inner bearing layer, an anti-magnetization layer, an outer guide mesh layer and an outer cover layer. Through the arrangement of the support mechanism, the outer guide mesh layer and the anti-magnetization layer are tightly crimped to form a Faraday cage to isolate the external strong magnetic field.

Benefits of technology

Effectively prevent the insulin pump from being affected by the strong magnetic field of the nuclear magnetic resonance instrument, prevent equipment failure and economic losses, and provide a convenient way to carry it.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an insulin pump anti-magnetization protection bag which comprises an inner bearing layer and an anti-magnetization layer arranged on the outer side of the inner bearing layer, an outer guide net layer is arranged on the outer side of the anti-magnetization layer, an outer cover layer is arranged on the outer side of the outer guide net layer, and an anti-magnetization head cover is arranged on one side of the anti-magnetization layer. A hood head is arranged on one side of the outer cover layer, and the anti-magnetization hood is mounted in the hood head; an inner layer plate is mounted at one port of the inner bearing layer, an anti-magnetization plate is arranged on one side of the inner layer plate, an outer guide mesh is arranged on one side of the anti-magnetization plate, and a cover layer is arranged on one side of the outer guide mesh; and bearing mechanisms are arranged on the inner layer plate, the anti-magnetization plate, the outer guide mesh, the cover layer and the inner bearing layer. Under the arrangement of the bearing mechanism, magnetism is effectively isolated through the anti-magnetization layer, the anti-magnetization head cover and the anti-magnetization plate, the port of the outer guide net layer and the outer guide net piece are attached and pressed to form the Faraday cage, external strong magnetism can be effectively isolated and tend to the outside, and therefore anti-magnetic protection is effectively conducted on the insulin pump.
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Description

Technical Field

[0001] The present invention belongs to the technical field of insulin pump protection, and particularly relates to an anti-magnetization protection bag for an insulin pump. Background Art

[0002] The strong magnetic field and radio frequency signals generated by nuclear magnetic resonance can interfere with or damage the electronic components of an insulin pump, resulting in equipment failure; insulin pumps are expensive, and generally cannot be repaired after being damaged by a strong magnetic field, causing great economic losses; for severely hyperglycemic inpatients, the pump is usually not separated from the body. Therefore, when undergoing a physical examination through a nuclear magnetic resonance instrument, it is necessary to set up an anti-magnetization protection bag for the insulin pump to meet the actual needs. Summary of the Invention

[0003] The purpose of the present invention is to provide an anti-magnetization protection bag for an insulin pump to solve the problems existing in the prior art.

[0004] To achieve the above purpose, the present invention provides the following technical solution: An anti-magnetization protection bag for an insulin pump, including an inner bearing layer and an anti-magnetization layer arranged outside the inner bearing layer. An outer guide net layer is arranged outside the anti-magnetization layer, and an outer cover layer is arranged outside the outer guide net layer. An anti-magnetization head cover is arranged on one side of the anti-magnetization layer. A cover head is arranged on one side of the outer cover layer, and the anti-magnetization head cover is installed inside the cover head. The anti-magnetization head cover is used to insert the liquid discharge joint of the insulin pump; An inner layer board is installed at one port of the inner bearing layer. An anti-magnetization board is arranged on one side of the inner layer board. An outer guide net piece is arranged on one side of the anti-magnetization board. A cover layer is arranged on one side of the outer guide net piece; A supporting mechanism is arranged on the inner layer board, the anti-magnetization board, the outer guide net piece, the cover layer and the inner bearing layer. The supporting mechanism is used for pull-out loading of the insulin pump, and when fixed, the end side of the anti-magnetization board effectively presses against the port of the anti-magnetization layer, and the port of the outer guide net layer effectively presses against the outer guide net piece.

[0005] Compared with the prior art, the beneficial effects of the present invention are: In the present invention, under the setting of the supporting mechanism, not only is the insulin pump stably installed, but also the port of the outer guide net layer is tightly pressed against the outer edge of the outer guide net piece, and the port of the anti-magnetization layer and the outer edge of the anti-magnetization board are tightly pressed. The anti-magnetization layer, the anti-magnetization head cover and the anti-magnetization board effectively isolate the magnetic field, and a Faraday cage is formed by the pressing of the port of the outer guide net layer against the outer guide net piece, which can effectively isolate the external strong magnetic field and guide it to the outside, thereby effectively protecting the insulin pump from magnetic interference. Description of the Drawings

[0006] Figure 1 It is the front view schematic diagram of the protection bag of the present invention; Figure 2 For Figure 1 Partial sectional view; Figure 3 Schematic top view of the protective bag of the present invention; Figure 4 is Figure 3 Partial sectional view; Figure 5 Schematic diagram of the storage rack of the present invention; Figure 6 is Figure 4 Enlarged structural view at position a of Figure 7 Schematic diagram of the installation of the loading mechanism in the first embodiment of the present invention; Figure 8 Schematic diagram of the installation of the loading mechanism in the second embodiment of the present invention; Figure 9 Schematic diagram of the installation of the loading mechanism in the third embodiment of the present invention.

[0007] In the figure: 1 inner bearing layer, 2 anti-magnetization layer, 3 outer conductive mesh layer, 4 outer cover layer, 5 cover head, 6 anti-magnetization head cover, 7 inner layer board, 8 anti-magnetization board, 9 outer conductive mesh piece, 10 cover layer, 11 handle, 12 support frame, 13 inner strip groove, 14 elastic support strip, 15 abutting strip, 101 card scraping, 102 installation block, 103 hanging belt, 104 hanging ring, 105 binding belt, 106 clamping ring. Detailed implementation manners

[0008] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention.

[0009] Refer to Figure 1 , Figure 2 , Figure 3 and Figure 4 , an insulin pump anti-magnetization protection bag, including an inner bearing layer 1 and an anti-magnetization layer 2 provided outside the inner bearing layer 1. The material of the inner bearing layer 1 is ABS plastic, the material of the anti-magnetization layer 2 is lead, the outer side of the anti-magnetization layer 2 is bonded with an outer conductive mesh layer 3 by resin glue, an outer cover layer 4 is provided outside the outer conductive mesh layer 3, the material of the outer cover layer 4 is ABS plastic, an anti-magnetization head cover 6 is integrally provided at the lower left of the anti-magnetization layer 2, a cover head 5 is integrally provided at the lower left of the outer cover layer 4 and the anti-magnetization head cover 6 is bonded in the cover head 5, and the anti-magnetization head cover 6 is used for inserting the drainage joint of the insulin pump; An inner layer board 7 is pressed against the right port of the inner bearing layer 1. The material of the inner layer board 7 is ABS plastic, an anti-magnetization board 8 is welded to the right side of the inner layer board 7. The material of the anti-magnetization board 8 is lead, an outer conductive mesh piece 9 is adhesively bonded to the right side of the anti-magnetization board 8 by resin glue, and a cover layer 10 is adhesively bonded to the right side of the outer conductive mesh piece 9 by resin glue. The material of the cover layer 10 is ABS plastic; A supporting mechanism is provided on the inner layer board 7, the anti-magnetic plate 8, the outer guide mesh sheet 9, the cover layer 10 and the inner bearing layer 1. The supporting mechanism is used for pull-out loading of the insulin pump. When fixed, the end side of the anti-magnetic plate 8 is effectively press-connected to the port of the anti-magnetic layer 2, and the port of the outer guide mesh layer 3 is effectively press-connected to the outer guide mesh sheet 9.

[0010] Refer to Figure 2 and Figure 4 , the thickness of the anti-magnetic layer 2 and the anti-magnetic plate 8 is 8 mm.

[0011] Refer to Figure 2 and Figure 4 , the material of the outer guide mesh layer 3 and the outer guide mesh sheet 9 is copper. The mesh rib diameter of the outer guide mesh layer 3 and the outer guide mesh sheet 9 is 0.5 mm, and each grid is a hexagonal hole.

[0012] Under the setting of the supporting mechanism, the port of the outer guide mesh layer 3 is tightly press-connected to the outer edge of the outer guide mesh sheet 9, and the port of the anti-magnetic layer 2 and the outer edge of the anti-magnetic plate 8 are tightly press-connected. The anti-magnetic layer 2, the anti-magnetic head cover 6 and the anti-magnetic plate 8 effectively isolate the magnetic field, and a Faraday cage is formed by the pressing of the port of the outer guide mesh layer 3 and the outer guide mesh sheet 9, which can effectively isolate the external strong magnetic field and tend to the outside, thus effectively protecting the insulin pump against magnetism.

[0013] Refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 , the supporting mechanism includes a handle 11 embedded on the inner layer board 7, the anti-magnetic plate 8, the outer guide mesh sheet 9 and the cover layer 10. The material of the handle 11 is polytetrafluoroethylene. The handle 11 penetrates through the left end of the inner layer board 7 and is integrally provided with a support frame 12. The support frame 12 is used for pressing and inserting the insulin pump; Inner strip grooves 13 are evenly opened on the inner rear side of the inner bearing layer 1. The inner strip grooves 13 are grooves with an isosceles trapezoidal cross-section. Elastic support strips 14 are bonded in the inner strip grooves 13 with resin glue. The material of the elastic support strips 14 is chloroprene rubber. It is a strip structure with a hollow state inside. The end of the elastic support strip 14 is bonded with a resisting strip 15 with resin glue. The material of the resisting strip 15 is a cylindrical structure. The side of the resisting strip 15 is in sliding contact with the port of the inner strip groove 13, and resisting grooves are evenly arranged on the rear side of the support frame 12. The resisting strip 15 is inserted into the resisting grooves.

[0014] In the natural state, half of the resisting strip 15 is outside the port of the inner strip groove 13. When the resisting strip 15 is inserted into the resisting groove, the support frame 12 can be stably held, thus preventing the support frame 12 from disengaging from the inner bearing layer 1. Moreover, the port of the outer guide mesh layer 3 is tightly press-connected to the outer edge of the outer guide mesh sheet 9, and the port of the anti-magnetic layer 2 and the outer edge of the anti-magnetic plate 8 are tightly press-connected.

[0015] When disassembling, simply pull the handle 11 outwards, so that the inner wall of the pressing groove presses against the pressing strip 15, and the elastic supporting strip 14 is compressed. The pressing strip 15 enters the inner strip groove 13. In this way, until the carrier 12 is pulled out of the inner supporting layer 1.

[0016] When loading, simply insert the carrier 12 into one port of the inner supporting layer 1. One port of the inner supporting layer 1 presses against the pressing strip 15 and enters the inner strip groove 13. When the pressing strip 15 aligns with the pressing groove, it is subjected to the resilience of the elastic supporting strip 14, so that the pressing strip 15 is bounced into the inner strip groove 13.

[0017] Refer to Figure 7 、 Figure 8 and Figure 9 At the rear side of the outer cover layer 4, a loading mechanism is provided. The loading mechanism is used to load the insulin pump anti-magnetization protection bag on the patient. Embodiment

[0018] Refer to Figure 7 The loading mechanism is a hanging hook 101 fixed to the rear part of the outer cover layer 4 by plastic screws. The hanging hook 101 is made of polyvinyl chloride and can be used to hang on the waistband of the patient's clothing. Embodiment

[0019] Refer to Figure 8 The loading mechanism is a mounting block 102 fixed to the rear part of the outer cover layer 4 by plastic screws. The mounting block 102 is made of polyethylene. A groove is provided in the mounting block 102, and a hanging strap 103 is bonded in the groove. The hanging strap 103 is used to hang on the patient's neck. Embodiment

[0020] Refer to Figure 9 The loading mechanism is a hanging ring 104 fixed to the rear part of the outer cover layer 4 by plastic screws. A binding strap 105 is inserted through the hanging ring 104. The binding strap 105 is made of nylon fiber. Two clamping rings 106 are sewn on the binding strap 105. The two clamping rings 106 are inserted through the binding strap 105 in the positive and negative directions, so as to adjust the binding length of the binding strap 105 to adapt to different obese patients to be bound around the waist.

[0021] The working principle of this embodiment is as follows: Under the setting of the supporting mechanism, not only the insulin pump is stably installed, but also the port of the outer guiding net layer 3 is tightly pressed against the outer edge of the outer guiding net piece 9, and the port of the anti-magnetization layer 2 is tightly pressed against the outer edge of the anti-magnetization plate 8. The anti-magnetization layer 2, the anti-magnetization head cover 6 and the anti-magnetization plate 8 effectively isolate the magnetic field, and a Faraday cage is formed by the pressing of the port of the outer guiding net layer 3 against the outer guiding net piece 9, which can effectively isolate the external strong magnetic field and tend to the outside, so as to effectively protect the insulin pump against magnetism; By setting the loading mechanism, it is convenient for the patient to carry the insulin pump through the insulin pump anti-magnetization protection bag.

[0022] The above are only the preferred embodiments of the present invention and are not intended to limit the protection scope of the present invention.

Claims

1. An anti-magnetization protection bag for an insulin pump, characterized in that: The invention comprises an inner bearing layer (1) and an anti-magnetization layer (2) arranged outside the inner bearing layer (1); an outer guide mesh layer (3) is arranged outside the anti-magnetization layer (2); an outer cover layer (4) is arranged outside the outer guide mesh layer (3); an anti-magnetization head cover (6) is arranged on one side of the anti-magnetization layer (2); a cover head (5) is arranged on one side of the outer cover layer (4); and the anti-magnetization head cover (6) is installed in the cover head (5); and the anti-magnetization head cover (6) is used to be inserted into a discharge connector of an insulin pump; An inner layer plate (7) is installed at one end of the inner bearing layer (1), an anti-magnetization plate (8) is arranged on one side of the inner layer plate (7), an outer guide mesh (9) is arranged on one side of the anti-magnetization plate (8), and a cover layer (10) is arranged on one side of the outer guide mesh (9); A supporting mechanism is provided on the inner plate (7), the anti-magnetization plate (8), the outer conductive mesh sheet (9), the cover layer (10) and the inner supporting layer (1). The supporting mechanism is used for pulling out and loading the insulin pump, and when fixed, the end side of the anti-magnetization plate (8) is effectively pressed into contact with the port of the anti-magnetization layer (2), and the port of the outer conductive mesh sheet (3) is effectively pressed into contact with the outer conductive mesh sheet (9).

2. The anti-magnetization protection bag for insulin pump according to claim 1, characterized in that: The thickness of the anti-magnetic layer (2) and the anti-magnetic plate (8) is 8 mm.

3. The anti-magnetization protection bag for insulin pump according to claim 1, characterized in that: The material of the outer conductive mesh layer (3) and the outer conductive mesh sheet (9) is copper, and the mesh ribs of the outer conductive mesh layer (3) and the outer conductive mesh sheet (9) have a diameter of 0.5 millimeters.

4. An insulin pump anti-magnetization protection bag according to any one of claims 1 to 3, characterized in that: The supporting mechanism comprises a handle (11) fixedly arranged on the inner plate (7), the anti-magnetization plate (8), the outer guide mesh (9) and the cover layer (10); one end of the handle (11) passing through the inner plate (7) is provided with a support frame (12); the support frame (12) is used for pressing and inserting the insulin pump; The inner rear side of the inner supporting layer (1) is uniformly provided with inner grooves (13), elastic supporting strips (14) are installed in the inner grooves (13), and the ends of the elastic supporting strips (14) are provided with abutment strips (15), and the rear side of the supporting frame (12) is uniformly provided with abutment grooves, and the abutment strips (15) are inserted into the abutment grooves.

5. The anti-magnetization protection bag for insulin pump according to claim 4, characterized in that: A loading mechanism is provided on the rear side of the outer cover layer (4), and the loading mechanism is used to load the anti-magnetization protection bag of the insulin pump onto the patient.

6. The anti-magnetization protection bag for insulin pump according to claim 5, characterized in that: The loading mechanism is a hook (101) arranged at the rear of the outer cover layer (4).

7. The anti-magnetization protection bag for insulin pump according to claim 5, characterized in that: The loading mechanism is a mounting block (102) arranged at the rear of the outer cover layer (4), and a hanging belt (103) is fixedly arranged on the mounting block (102).

8. The anti-magnetization protection bag for insulin pump according to claim 5, characterized in that: The loading mechanism is a hanging ring (104) arranged at the rear of the outer cover layer (4), a binding belt (105) is inserted through the hanging ring (104), and two clamping rings (106) are fixedly arranged at one end of the binding belt (105).