CN208337985U - Iris type X-ray emission source - Google Patents

Iris type X-ray emission source Download PDF

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Publication number
CN208337985U
CN208337985U CN201821029340.7U CN201821029340U CN208337985U CN 208337985 U CN208337985 U CN 208337985U CN 201821029340 U CN201821029340 U CN 201821029340U CN 208337985 U CN208337985 U CN 208337985U
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China
Prior art keywords
ray emission
partition
protective housing
cabinet
heat dissipation
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CN201821029340.7U
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Chinese (zh)
Inventor
张和武
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Beijing beigaoshuying Technology Co.,Ltd.
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Beijing Xinyan Co-Creation Technology Co Ltd
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Priority to CN201821029340.7U priority Critical patent/CN208337985U/en
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Abstract

The utility model discloses a kind of iris type X-ray emission sources, including cabinet, partition, protective housing and X-ray emission pipe.The inside of cabinet is arranged in partition, and partition is separated out a working space in cabinet;The inside of cabinet is arranged in protective housing, and is located in working space;The inside of protective housing is arranged in X-ray emission pipe;It is corresponded on cabinet and is provided with out beam window at X-ray emission pipe;Cabinet is internally provided with oil circulating pump and filled with insulating oil;Oil inlet access is provided in the one side wall of protective housing, oil inlet access runs through partition;Fuel-displaced access is provided on another side wall of protective housing, fuel-displaced access runs through partition.The iris type X-ray emission source of the utility model, box house is separated out working space by partition, space other than working space is heat-dissipating space, under the action of oil circulating pump, the insulating oil of two spaces is recycled, heat inside protective housing is transferred in heat-dissipating space and is distributed, heat dissipation effect is strengthened, improves radiating efficiency.

Description

Iris type X-ray emission source
Technical field
The utility model relates to X-ray emission source technology fields, more particularly to a kind of iris type X-ray emission source.
Background technique
Traditional X-ray emission source is a closed case, and inside lining sets the protective layer of one layer of lead, for shielding and Absorb the X-Ray that X-ray emission pipe is emitted.
But stereotype is the non-conductor of heat, is not easy to distribute across thicker lead protection layer heat, although in entire cabinet It is radiated full of insulating oil, but only by the free convection and tank wall itself of built-in electrical insulation oil, and company larger for input power For continuous working time longer X-ray emission source, radiates not prompt enough, overheat is easy to produce, to be easy to cause emission source Cisco unity malfunction, also, work at high temperature also will affect the component service life for a long time.
Utility model content
The purpose of this utility model is to provide a kind of iris type X-ray emission sources, to solve X existing in the prior art The technical issues of ray emission source heat-dissipating is not prompt enough, is easy to produce overheat.
To achieve the goals above, the utility model uses following technical scheme:
A kind of iris type X-ray emission source provided by the utility model, including cabinet, partition, protective housing and X-ray emission Pipe;
The inside of the cabinet is arranged in the partition, and the partition is separated out a working space in the cabinet;
The inside of the cabinet is arranged in the protective housing, and is located in the working space;
The inside of the protective housing is arranged in the X-ray emission pipe;
It is corresponded on the cabinet and is provided with out beam window at the X-ray emission pipe;
The cabinet is internally provided with oil circulating pump and filled with insulating oil;
Oil inlet access is provided in the one side wall of the protective housing, the oil inlet access runs through the partition;
Fuel-displaced access is provided on another side wall of the protective housing, the fuel-displaced access runs through the partition.
Further, the cabinet includes case ontology and upper heat dissipation case lid;
The top of the case ontology is arranged in the upper heat dissipation case lid.
Further, the material of the upper heat dissipation case lid is aluminium alloy.
Further, radiating groove is provided on the inner wall of the upper heat dissipation case lid.
Further, the cabinet further includes lower heat dissipation case lid;
The bottom of the case ontology is arranged in the lower heat dissipation case lid.
Further, the material of the lower heat dissipation case lid is aluminium alloy.
Further, radiating groove is provided on the inner wall of the lower heat dissipation case lid.
Further, the cross sectional shape of the partition is L shape.
Further, the partition recline the protective housing outer wall setting.
Further, the oil inlet access is the through-hole through the partition and the protective housing;
The fuel-displaced access is the through-hole through the partition and the protective housing.
Box house is separated out working space by iris type X-ray emission provided by the utility model source, partition, and work is empty Between other than space be heat-dissipating space, under the action of oil circulating pump, the insulating oil of working space and heat-dissipating space is recycled, Insulating oil and X-ray emission pipe carry out heat exchange, distribute so that the heat inside protective housing is transferred in heat-dissipating space, Heat dissipation effect is strengthened, radiating efficiency is improved, it is not prompt enough to solve existing X-ray emission source heat-dissipating, is easy to produce The problem of heat.
Detailed description of the invention
It, below will be right in order to illustrate more clearly of specific embodiment of the present invention or technical solution in the prior art Specific embodiment or attached drawing needed to be used in the description of the prior art are briefly described, it should be apparent that, it is described below In attached drawing be that some embodiments of the utility model are not paying creativeness for those of ordinary skill in the art Under the premise of labour, it is also possible to obtain other drawings based on these drawings.
Fig. 1 is a kind of schematic cross-sectional view in iris type X-ray emission source that the utility model embodiment one provides.
Appended drawing reference:
1- oil circulating pump;Radiate case lid on 2-;3- oil inlet access;
4- cabinet;5- protective housing;The fuel-displaced access of 6-;
7- partition;Radiate case lid under 8-.
Specific embodiment
The technical solution of the utility model is clearly and completely described below in conjunction with attached drawing, it is clear that described Embodiment is the utility model a part of the embodiment, instead of all the embodiments.Based on the embodiments of the present invention, originally Field those of ordinary skill every other embodiment obtained without making creative work belongs to practical Novel protected range.
It is in the description of the present invention, it should be noted that term " center ", "upper", "lower", "left", "right", " perpendicular Directly ", the orientation or positional relationship of the instructions such as "horizontal", "inner", "outside" is to be based on the orientation or positional relationship shown in the drawings, and is only For ease of description the utility model and simplify description, rather than the device or element of indication or suggestion meaning must have it is specific Orientation, be constructed and operated in a specific orientation, therefore should not be understood as limiting the present invention.In addition, term " the One ", " second ", " third " are used for descriptive purposes only and cannot be understood as indicating or suggesting relative importance.
In the description of the present invention, it should be noted that unless otherwise clearly defined and limited, term " is pacified Dress ", " connected ", " connection " shall be understood in a broad sense, for example, it may be being fixedly connected, may be a detachable connection, or integrally Connection;It can be mechanical connection, be also possible to be electrically connected;Can be directly connected, can also indirectly connected through an intermediary, It can be the connection inside two elements.For the ordinary skill in the art, above-mentioned art can be understood with concrete condition The concrete meaning of language in the present invention.
Embodiment one:
In the optinal plan of the present embodiment, as shown in Figure 1, a kind of 7 Formula X ray emission source of partition provided in this embodiment (not shown), including cabinet 4, partition 7, protective housing 5 and X-ray emission pipe;The inside of cabinet 4, partition is arranged in partition 7 7 are separated out a working space in cabinet 4;The inside of cabinet 4 is arranged in protective housing 5, and is located in working space;X-ray hair Penetrate the inside that protective housing 5 is arranged in pipe;It is corresponded on cabinet 4 and is provided with out beam window at X-ray emission pipe;The inside of cabinet 4 is set It is equipped with oil circulating pump 1 and filled with insulating oil;Oil inlet access 3 is provided in the one side wall of protective housing 5, oil inlet access 3 runs through partition 7;Fuel-displaced access 6 is provided on another side wall of protective housing 5, fuel-displaced access 6 runs through partition 7.
In the present embodiment, partition 7 will be separated out working space inside cabinet 4, and the space other than working space is heat dissipation Space, under the action of oil circulating pump 1, the insulating oil of working space and heat-dissipating space is recycled, insulating oil and X-ray emission Pipe carries out heat exchange, distributes so that the heat inside protective housing 5 is transferred in heat-dissipating space, strengthens heat dissipation effect, Improve radiating efficiency.
In the present embodiment, specifically, insulating oil is pressed into working space by oil inlet access 3 by oil circulating pump 1, insulating oil with X-ray emission pipe carries out heat exchange, cools down to X-ray emission pipe, and then insulating oil flows into heat dissipation sky by fuel-displaced access 6 Between, insulating oil is conducted in the heat that working space absorbs in heat-dissipating space outward to be distributed, and then insulating oil is drawn by oil circulating pump 1 In the pump housing, be pressed into working space again, loop back and forth like this, realize by working space X-ray emission pipe and other members The heat that part work generates is transmitted to heat-dissipating space and then is dispersed into the purpose outside cabinet 4, accelerates radiating rate.
It should be noted that protective housing 5 as more classical ray protection structure, has, at low cost, protective action is reliable The characteristics of, but protective housing 5 is usually lead matter, is unfavorable for radiating and cooling, this is always the lance that X-ray emission source industry is faced Shield;The present apparatus solves this contradiction, remains traditional 5 structure of protective housing, additional heat-dissipating space is established, by insulating oil The heat-dissipating space is introduced, heat dissipation is reinforced.
In the present embodiment, protective housing 5 is in addition to being equipped with aperture, other parts closing, for shielding with beam window corresponding position out Cover and absorb the unwanted X-Ray of work that X-ray emission pipe is emitted.
In this embodiment, it is preferred that oil circulating pump 1 is located at outside working space, it is arranged on the side wall of cabinet 4.
In the present embodiment, circuit module, i.e. automatically controlled circuit board are arranged in cabinet 4 together with X-ray emission pipe.
In the optinal plan of the present embodiment, cabinet 4 includes case ontology and upper heat dissipation case lid 2;The upper setting of heat dissipation case lid 2 exists The top of case ontology.
In the present embodiment, the heat dissipation effect for reinforcing heat-dissipating space using upper heat dissipation case lid 2, keeps temperature inside working space Degree is normal.
In the optinal plan of the present embodiment, the material of upper heat dissipation case lid 2 is aluminium alloy.
In the present embodiment, aluminum alloy material, it is thermally conductive fast, so that upper heat dissipation case lid 2 has radiator function, accelerate to lead Heat.
In the optinal plan of the present embodiment, radiating groove is provided on the inner wall of upper heat dissipation case lid 2.
In the present embodiment, the inner wall of upper heat dissipation case lid 2 opens up several radiating grooves, increased thermal conductivity energy, beneficial to heat dissipation.
In the optinal plan of the present embodiment, cabinet 4 further includes lower heat dissipation case lid 8;Lower heat dissipation case lid 8 is arranged in case ontology Bottom.
In the present embodiment, heat-dissipating space does not have the package of protective housing 5, and upper heat dissipation case lid 2, lower heat dissipation case lid 8 are as scattered The boundary of heat space, optimization heat distribute.
In the present embodiment, upper heat dissipation case lid 2 and lower 8 mating reaction of heat dissipation case lid, reinforce the heat dissipation effect of heat-dissipating space, The heat of X-ray emission pipe is quickly distributed, keeps working space internal temperature normal, it is long convenient for emission source Time Continuous work, is beneficial to extend the service life of each component.
In the optinal plan of the present embodiment, the material of lower heat dissipation case lid 8 is aluminium alloy.
In the present embodiment, aluminum alloy material, it is thermally conductive fast, so that lower heat dissipation case lid 8 has radiator function, accelerate to lead Heat.
In the optinal plan of the present embodiment, radiating groove is provided on the inner wall of lower heat dissipation case lid 8.
In the present embodiment, the inner wall of lower heat dissipation case lid 8 opens up several radiating grooves, increased thermal conductivity energy, beneficial to heat dissipation.
In the optinal plan of the present embodiment, the cross sectional shape of partition 7 is L shape.
In the present embodiment, by the sufficiently package of protective housing 5, wherein, the both ends of partition 7 are both connected to the partition 7 of L shape On the inner wall of cabinet 4.
In the optinal plan of the present embodiment, partition 7 recline protective housing 5 outer wall setting.
In the present embodiment, mutually recline setting partition 7 and protective housing 5, realize improve heating conduction while, protect Maximum space utilization rate is demonstrate,proved.
In the optinal plan of the present embodiment, oil inlet access 3 is the through-hole through partition 7 and protective housing 5;Fuel-displaced access 6 For through the through-hole of partition 7 and protective housing 5.
In the present embodiment, oil inlet access 3 passes through pipeline and circulation that is, by running through the through-hole of partition 7 and protective housing 5 Oil pump 1 is connected to, so that insulating oil directly, compared with great dynamics is pressed into protective housing 5, increases heat exchanger effectiveness.
In the present embodiment, settable blower outside the present apparatus, blows heat dissipation case lid 2 and/or lower heat dissipation case lid 8, with into The heat-sinking capability of one step raising device entirety.
Embodiment two:
In the optinal plan of the present embodiment, a kind of 7 Formula X ray emission source of partition provided in this embodiment, including cabinet 4, partition 7, protective housing 5 and X-ray emission pipe;The inside of cabinet 4 is arranged in partition 7, and partition 7 is separated out a work in cabinet 4 Make space;The inside of cabinet 4 is arranged in protective housing 5, and is located in working space;X-ray emission pipe is arranged in protective housing 5 Portion;It is corresponded on cabinet 4 and is provided with out beam window at X-ray emission pipe;Cabinet 4 is internally provided with oil circulating pump 1 and filled with exhausted Edge oil;Oil inlet access 3 is provided in the one side wall of protective housing 5, oil inlet access 3 runs through partition 7;On another side wall of protective housing 5 It is provided with fuel-displaced access 6, fuel-displaced access 6 runs through partition 7.
In the present embodiment, partition 7 will be separated out working space inside cabinet 4, and the space other than working space is heat dissipation Space, under the action of oil circulating pump 1, the insulating oil of working space and heat-dissipating space is recycled, insulating oil and X-ray emission Pipe carries out heat exchange, distributes so that the heat inside protective housing 5 is transferred in heat-dissipating space, strengthens heat dissipation effect, Improve radiating efficiency.
In the present embodiment, specifically, insulating oil is pressed into working space by oil inlet access 3 by oil circulating pump 1, insulating oil with X-ray emission pipe carries out heat exchange, cools down to X-ray emission pipe, and then insulating oil flows into heat dissipation sky by fuel-displaced access 6 Between, insulating oil is conducted in the heat that working space absorbs in heat-dissipating space outward to be distributed, and then insulating oil is drawn by oil circulating pump 1 In the pump housing, be pressed into working space again, loop back and forth like this, realize by working space X-ray emission pipe and other members The heat that part work generates is transmitted to heat-dissipating space and then is dispersed into the purpose outside cabinet 4, accelerates radiating rate.
It should be noted that protective housing 5 as more classical ray protection structure, has, at low cost, protective action is reliable The characteristics of, but protective housing 5 is usually lead matter, is unfavorable for radiating and cooling, this is always the lance that X-ray emission source industry is faced Shield;The present apparatus solves this contradiction, remains traditional 5 structure of protective housing, additional heat-dissipating space is established, by insulating oil The heat-dissipating space is introduced, heat dissipation is reinforced.
In the present embodiment, protective housing 5 is in addition to being equipped with aperture, other parts closing, for shielding with beam window corresponding position out Cover and absorb the unwanted X-Ray of work that X-ray emission pipe is emitted.
In this embodiment, it is preferred that oil circulating pump 1 is located in working space, it is arranged on the side wall of protective housing 5;Out Oily access 6 is connected to by pipeline with oil circulating pump 1, and insulating oil is extruded protective housing 5 by oil circulating pump 1.
In the present embodiment, circuit module, i.e. automatically controlled circuit board are arranged in cabinet 4 together with X-ray emission pipe.
In the optinal plan of the present embodiment, cabinet 4 includes case ontology and upper heat dissipation case lid 2;The upper setting of heat dissipation case lid 2 exists The top of case ontology.
In the present embodiment, the heat dissipation effect for reinforcing heat-dissipating space using upper heat dissipation case lid 2, keeps temperature inside working space Degree is normal.
In the optinal plan of the present embodiment, the material of upper heat dissipation case lid 2 is aluminium alloy.
In the present embodiment, aluminum alloy material, it is thermally conductive fast, so that upper heat dissipation case lid 2 has radiator function, accelerate to lead Heat.
In the optinal plan of the present embodiment, cabinet 4 further includes lower heat dissipation case lid 8;Lower heat dissipation case lid 8 is arranged in case ontology Bottom.
In the present embodiment, heat-dissipating space does not have the package of protective housing 5, and upper heat dissipation case lid 2, lower heat dissipation case lid 8 are as scattered The boundary of heat space, optimization heat distribute.
In the present embodiment, upper heat dissipation case lid 2 and lower 8 mating reaction of heat dissipation case lid, reinforce the heat dissipation effect of heat-dissipating space, The heat of X-ray emission pipe is quickly distributed, keeps working space internal temperature normal, it is long convenient for emission source Time Continuous work, is beneficial to extend the service life of each component.
In the optinal plan of the present embodiment, the material of lower heat dissipation case lid 8 is aluminium alloy.
In the present embodiment, aluminum alloy material, it is thermally conductive fast, so that lower heat dissipation case lid 8 has radiator function, accelerate to lead Heat.
In the optinal plan of the present embodiment, the chamfered shape of the cross sectional shape and protective housing 5 of partition 7 matches.
In the present embodiment, by the sufficiently package of protective housing 5, wherein, the edge of partition 7 is connected to the interior of cabinet 4 to partition 7 On wall.
In the optinal plan of the present embodiment, partition 7 recline protective housing 5 outer wall setting.
In the present embodiment, mutually recline setting partition 7 and protective housing 5, realize improve heating conduction while, protect Maximum space utilization rate is demonstrate,proved.
In the optinal plan of the present embodiment, oil inlet access 3 is the through-hole through partition 7 and protective housing 5;Fuel-displaced access 6 For through the through-hole of partition 7 and protective housing 5.
In the present embodiment, fuel-displaced access 6 is connected to by pipeline with oil circulating pump 1, so that insulating oil is by directly, more energetically Degree ground extrudes protective housing 5, increases heat exchanger effectiveness.
Finally, it should be noted that the above various embodiments is only to illustrate the technical solution of the utility model, rather than it is limited System;Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should Understand: it is still possible to modify the technical solutions described in the foregoing embodiments, or to some or all of Technical characteristic is equivalently replaced;And these are modified or replaceed, it does not separate the essence of the corresponding technical solution, and this is practical new The range of each embodiment technical solution of type.

Claims (10)

1. a kind of iris type X-ray emission source, which is characterized in that including cabinet, partition, protective housing and X-ray emission pipe;
The inside of the cabinet is arranged in the partition, and the partition is separated out a working space in the cabinet;
The inside of the cabinet is arranged in the protective housing, and is located in the working space;
The inside of the protective housing is arranged in the X-ray emission pipe;
It is corresponded on the cabinet and is provided with out beam window at the X-ray emission pipe;
The cabinet is internally provided with oil circulating pump and filled with insulating oil;
Oil inlet access is provided in the one side wall of the protective housing, the oil inlet access runs through the partition;
Fuel-displaced access is provided on another side wall of the protective housing, the fuel-displaced access runs through the partition.
2. iris type X-ray emission according to claim 1 source, which is characterized in that the cabinet include case ontology and on Radiate case lid;
The top of the case ontology is arranged in the upper heat dissipation case lid.
3. iris type X-ray emission according to claim 2 source, which is characterized in that it is described it is upper heat dissipation case lid material be Aluminium alloy.
4. iris type X-ray emission according to claim 2 source, which is characterized in that on the inner wall of the upper heat dissipation case lid It is provided with radiating groove.
5. iris type X-ray emission according to claim 2 source, which is characterized in that the cabinet further includes lower heat dissipation tank Lid;
The bottom of the case ontology is arranged in the lower heat dissipation case lid.
6. iris type X-ray emission according to claim 5 source, which is characterized in that it is described it is lower heat dissipation case lid material be Aluminium alloy.
7. iris type X-ray emission according to claim 5 source, which is characterized in that on the inner wall of the lower heat dissipation case lid It is provided with radiating groove.
8. iris type X-ray emission according to claim 1 source, which is characterized in that the cross sectional shape of the partition is " L " Shape.
9. iris type X-ray emission according to claim 1 source, which is characterized in that the partition reclines the protective housing Outer wall setting.
10. iris type X-ray emission according to claim 9 source, which is characterized in that the oil inlet access is through described The through-hole of partition and the protective housing;
The fuel-displaced access is the through-hole through the partition and the protective housing.
CN201821029340.7U 2018-07-02 2018-07-02 Iris type X-ray emission source Active CN208337985U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821029340.7U CN208337985U (en) 2018-07-02 2018-07-02 Iris type X-ray emission source

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821029340.7U CN208337985U (en) 2018-07-02 2018-07-02 Iris type X-ray emission source

Publications (1)

Publication Number Publication Date
CN208337985U true CN208337985U (en) 2019-01-04

Family

ID=64785840

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821029340.7U Active CN208337985U (en) 2018-07-02 2018-07-02 Iris type X-ray emission source

Country Status (1)

Country Link
CN (1) CN208337985U (en)

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Address after: 101300 Room 501, building 13, yard 12, Juyuan Middle Road, Mapo Town, Shunyi District, Beijing

Patentee after: Beijing beigaoshuying Technology Co.,Ltd.

Address before: 100000 2-6, floor 1, building 2, yard 52, Dianchang Road, Fengtai District, Beijing

Patentee before: BEIJING XINYAN HECHUANG TECHNOLOGY Co.,Ltd.

CP03 Change of name, title or address