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Panel structure for medical device housing

A technology for medical equipment and panels, which is applied to the field of panel structure of medical equipment shells, can solve problems such as poor vibration resistance, heat insulation and radiation protection, and achieve the effects of improving thermal insulation effect, reducing labor intensity and improving sound insulation effect.

Inactive Publication Date: 2018-06-15
张跃
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These medical diagnosis and treatment equipment usually have the characteristics of high precision, easy damage, and certain radiation, while the shells of traditional medical equipment are usually made of engineering plastics or metal plates, which have poor anti-vibration, heat insulation and radiation protection capabilities.

Method used

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  • Panel structure for medical device housing
  • Panel structure for medical device housing
  • Panel structure for medical device housing

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0044] Such as figure 1 Shown: a CT machine housing, including a housing 6 and a tubular inner cavity 7, the tubular inner cavity 7 is located in the middle of the housing 6, the housing 6 is formed by splicing multiple composite plates 5, when splicing, press The composite plate 5, which is pre-processed and formed in the shape of the shell, is fixedly connected into one body by means of bolt connection.

[0045] Such as figure 2 , image 3 As shown: Specifically, the horizontally connected and vertically connected composite boards are spliced ​​by the horizontal lap board 10 and the vertical lap board 8 respectively, and are fixed by bolts 9. After splicing, apply structural glue to the splicing seam of the composite board for sealing.

[0046] Such as Figure 4 Shown: Specifically, the composite board 5 includes an upper panel 1, a lower panel 2, a number of round tubes 3 in the middle, and a brazing layer 4 between the round tube 3 and the upper panel 1 and the lower panel 2. ...

Embodiment 2

[0056] Such as Image 6 Shown: a nuclear magnetic resonance instrument housing, the difference from embodiment 1 is that the composite board includes an upper panel 1', a lower panel 2', a plurality of round tubes 3'in the middle, and a round tube 3'and an upper panel 1', For the brazing layer 4'between the lower plates 2', the upper and lower ends of the round tube 3'are flanged, so that the outer diameter after flanging is larger than the diameter of the tube, and the flanging shape is also circular. The flanges 31' of the round tube 3'are brazed and connected with the upper panel 1'and the lower panel 2'. The flanges 31' of the round tube 3'are arranged at intervals, and after the arrangement, the flanges 31 are brazed 'A brazing layer 4 is formed on it'. The brazing layer 4'is punched and flanged so that the round tube 3'is sleeved and positioned on the flanging of the brazing layer 4'.

[0057] In this embodiment, the brazing material is copper brazing material, and the bra...

Embodiment 3

[0063] A shell of a radiotherapy instrument includes a shell with a hexahedral structure. The shell is provided with a cavity for placing the radiotherapy instrument. The shell is formed by splicing multiple composite plates 5. When splicing, the shape of the shell is pre-processed and formed. The composite board 5 is connected into one body by applying structural glue.

[0064] Specifically, the composite board of this embodiment includes an upper panel, a lower panel, several square tubes in the middle, and a brazing layer between the square tube, the upper panel and the lower panel. The outer diameter behind the edge is larger than the diameter of the square tube, and the shape of the flange is also square. The flanging of the square tube is brazed and connected with the upper and lower panels, and the square tubes are arranged at intervals, and after the arrangement, a brazing layer is formed on the flanging by brazing material. The brazing layer is punched and flanged so th...

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Abstract

The invention provides a panel structure used for a medical device housing. A plurality of composite plates are spliced together so as to form the panel structure; the composite plate includes an upper panel, a lower panel, a plurality of tube bodies between the upper panel and the lower panel, and brazing layers between the tube bodies and the upper panel as well as between the tube bodies and the lower panel. The panel structure of the invention has the advantages of light weight, high structural strength, convenience in replacement, long service life, radiation protection, heat insulation,sound insulation and good vibration isolation effect.

Description

Technical field [0001] The invention relates to a medical equipment housing, in particular to a panel structure for the medical equipment housing. Background technique [0002] Commonly used medical diagnostic equipment, including diagnostic equipment, can be divided into the following categories: physical diagnostic equipment (thermometer, blood pressure meter, microscope, audiometer, various physiological recorders, etc.), imaging (X-ray machine, CT scan, magnetic Resonance, B-ultrasound, etc.), analytical instruments (various types of counters, biochemical, immunological analysis instruments, etc.), electrophysiological (such as electrocardiograph, EEG, electromyography, etc.). These medical diagnosis and treatment equipment usually have the characteristics of high accuracy, easy damage, and certain radiation. Traditional medical equipment shells are usually made of engineering plastics or metal plates, which have poor vibration resistance, heat insulation and radiation resist...

Claims

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Application Information

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IPC IPC(8): H05K5/02
CPCH05K5/02
Inventor 张跃
Owner 张跃
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