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X-ray tube and mobile CT scanner based on thermal emission of lab6 nanomaterials

A technology of X-ray tubes and nanomaterials, applied in the field of X-ray tubes and mobile CT scanners, can solve the problems of reducing imaging sensitivity, tube scrapping, and reducing the life of X-ray tubes, so as to reduce the probability, stability and Effects of improved life and reduced imaging sensitivity

Active Publication Date: 2016-06-08
THE MILITARY GENERAL HOSPITAL OF BEIJING PLA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] The prior art X-ray tube based on tungsten (W) filament thermal emission has at least the following disadvantages: the tungsten used in the cathode of the existing X-ray tube has a high electron work function (φw=4.52eV), and the emission current density is small , when the pure tungsten material is at 2200 ℃, its thermal emission current density is only 0.3A / cm 2
If you want to obtain a larger total emission current, you usually increase the cathode temperature, but increasing the cathode temperature will increase the evaporation rate of the cathode material, and the evaporation of the cathode material will make the tungsten wire thinner, and the thinner tungsten wire cathode will make As the temperature of the cathode increases, the evaporation of the cathode intensifies, thus forming a vicious cycle; in addition, the evaporated tungsten cathode material will be deposited on the tube shell, forming a continuous or intermittent tungsten conductive film, which destroys the dielectric strength of the X-ray tube and makes the tube The pressure drops and the tube is scrapped, which reduces the life of the X-ray tube; at the same time, this tungsten conductive film also blocks the X-ray intensity of the output window, reducing the imaging sensitivity
Therefore the overall performance of prior art X-ray tubes based on tungsten (W) filament thermal emission is poor

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  • X-ray tube and mobile CT scanner based on thermal emission of lab6 nanomaterials
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  • X-ray tube and mobile CT scanner based on thermal emission of lab6 nanomaterials

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Embodiment Construction

[0023] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments It is a part of embodiments of the present invention, but not all embodiments. Elements and features described in one drawing or one embodiment of the present invention may be combined with elements and features shown in one or more other drawings or embodiments. It should be noted that representation and description of components and processes that are not related to the present invention and known to those of ordinary skill in the art are omitted from the drawings and descriptions for the purpose of clarity. Based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the ar...

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Abstract

An X-ray tube based on thermal emission of a LaB6 nanomaterial, and a movable CT scanner. The X-ray tube based on thermal emission of a LaB6 nanomaterial comprises anode (10), a cathode (11), and a tube case (12). The tube case (12) is used for supporting the anode (10) and the cathode (11), and enables a working environment of the anode (10) and the cathode (11) to be insulated from the outside, thereby keeping the working environment to be vacuum. The cathode (11) is manufactured by using the LaB6 nanomaterial, and when the cathode (11) is heated to the working temperature of the LaB6 nanomaterial, electrons of thermal emission bombard the anode (10), so as to generate X-rays. According to the cathode manufactured by using the LaB6 nanomaterial, in a case in which the a same emission current density is obtained, the working temperature of the cathode manufactured by using the LaB6 nanomaterial is lower than that of a wolfram filament cathode by more than 1000 degrees centigrade, thereby greatly reducing the evaporation rate of the cathode material; in addition, the emission current, the stability and the service life of the used thermal emission cathode X-ray tube are greatly improved.

Description

technical field [0001] The invention relates to the field of medical devices, in particular to an X-ray tube and a mobile CT scanner based on thermal emission of lanthanum hexaboride (LaB6) nanomaterials. Background technique [0002] With the development of medical science and technology, various medical condition detectors (Computertomography; CT) equipment have emerged. The X-ray tube is a common small medical CT equipment. The cathode is the core component of the X-ray tube, which directly determines the performance of the X-ray tube, the quality of imaging such as resolution and contrast, and the working efficiency of the whole machine. [0003] In the prior art, the X-ray tube is usually based on the thermal emission of tungsten (W) wire, that is, the cathode of the X-ray tube is made of tungsten (W) wire, and its working principle is that the tungsten (W) wire is heated to its working temperature Electrons are emitted thermally, and the thermally emitted electrons b...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A61B6/03
CPCH01J35/064
Inventor 徐如祥林祖伦高枫
Owner THE MILITARY GENERAL HOSPITAL OF BEIJING PLA