CN104318967A - Radiation protection structure - Google Patents
Radiation protection structure Download PDFInfo
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- CN104318967A CN104318967A CN201410660835.XA CN201410660835A CN104318967A CN 104318967 A CN104318967 A CN 104318967A CN 201410660835 A CN201410660835 A CN 201410660835A CN 104318967 A CN104318967 A CN 104318967A
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- Prior art keywords
- radiation
- radiation proof
- described framework
- framework
- stereotype
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- G—PHYSICS
- G21—NUCLEAR PHYSICS; NUCLEAR ENGINEERING
- G21F—PROTECTION AGAINST X-RADIATION, GAMMA RADIATION, CORPUSCULAR RADIATION OR PARTICLE BOMBARDMENT; TREATING RADIOACTIVELY CONTAMINATED MATERIAL; DECONTAMINATION ARRANGEMENTS THEREFOR
- G21F7/00—Shielded cells or rooms
- G21F7/02—Observation devices permitting vision but shielding the observer
- G21F7/03—Windows, e.g. shielded
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- Physics & Mathematics (AREA)
- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- High Energy & Nuclear Physics (AREA)
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Abstract
The invention discloses a radiation protection structure which comprises a rectangular frame. One end of a conductive wire is connected with the frame, and the other end of the conductive wire is grounded. The upper surface of the frame is provided with a radiation protection lead glass plate. The bottom face and the side faces of the frame are provided with radiation protection lead plates. The middles of the radiation protection lead plates on the four side faces of the frame are each provided with an operation hole. One ends of four operation rods penetrate through the four operation holes to be located in the frame. The other ends of the four operation rods are located outside the frame. A frame body on the bottom face of the frame is provided with a sliding groove. The side face of the radiation protection lead plate on the bottom face of the frame is provided with a sliding wheel, and the radiation protection lead plate on the bottom face of the frame is embedded in the sliding groove through the sliding wheel and connected with the frame in a sliding mode. The radiation protection structure has the advantages that the structure is reasonable and simple in design, convenient and flexible to install and move, lower in cost and better in radiation protection effect.
Description
?
Technical field
The present invention relates to radiation proof equipment research field, particularly relate to a kind of radiation proof structure.
Background technology
Radiation refers to energy with the form of electromagnetic wave or particle (as alpha particle, beta particle etc.) to external diffusion.All objects of occurring in nature, as long as temperature at absolute temperature above zero, all with the form moment of electromagnetic wave and particle ceaselessly outside transfer of heat, this energy-delivering mode is called as radiation.The energy of radiation is from radiation source outside all directions straight radial.The energy that object is released by radiation, is called radiation energy.Radiation calculates by roentgen/hour (R).Radiation has an important feature, be exactly it is " equity ".No matter object (gas) temperature height is all to external radiation, first object can to second object radiation, and second also can to first radiation simultaneously.Generally generally this noun is used in ionising radiation.Radiation itself is neutral words, but the radiation of Cucumber may bring harm.
Therefore, radiation proof becomes the topic often contacting or exist radiation risk personnel growing interest.In the prior art, in the production and processing workshop with radiation or the place had compared with intense radiation, as the CT Room of hospital, all be provided with large-scale radiation proof equipment, these large-scale radiation proof device structures are complicated, install trouble, mobile inconvenient, and cost is higher, when needs need when laboratory is tested to prevent radiation, adopt large-scale radiation proof equipment then that cost performance is lower.
In sum, present inventor, in the process realizing invention technical scheme in the embodiment of the present application, finds that above-mentioned technology at least exists following technical matters:
In the prior art, there is complex structure in existing radiation proof equipment, installs trouble, mobile inconvenient, and the technical matters that cost is higher.
Summary of the invention
The invention provides a kind of radiation proof structure, solve existing radiation proof equipment and there is complex structure, trouble is installed, mobile inconvenient, and the technical matters that cost is higher, achieve shielding structural design advantages of simple, install and conveniently moving flexibly, and lower-cost technique effect.
For solving the problems of the technologies described above, the embodiment of the present application provides a kind of radiation proof structure, and described structure comprises:
Rectangular parallelepiped framework, described framework adopts angle steel to make, one end of conductive lead wire is connected with described framework, the other end ground connection of described conductive lead wire, the upper surface of described framework is provided with radiation proof lead glass plate, the bottom surface of described framework and side are provided with radiation proof stereotype, a handle hole is equipped with in the middle part of described radiation proof stereotype on described framework 4 sides, one end of 4 hook sticks is each passed through described 4 handle holes and is positioned at described framework, the other end of described 4 hook sticks is positioned at outside described framework, described framework bottom surface support body is provided with chute, the described radiation proof stereotype side of described framework bottom surface is provided with pulley, the described radiation proof stereotype of described framework bottom surface is embedded in described chute by described pulley and is slidably connected with described framework.
Wherein, the diameter of described hook stick is mated with the diameter of described handle hole.
Wherein, described radiation proof lead glass plate is transparence.
Wherein, described device side is provided with a hook, and described hook is provided with radiation-resistant gloves and radiation-proof garment.
Wherein, described radiation proof lead glass plate, described radiation proof stereotype and described framework junction are equipped with sealing gasket.
Wherein, the described hook stick termination be positioned at outside described framework is wrapped with one deck radiation proof sheet lead, and the termination that described hook stick is positioned at described framework is flat.
The one or more technical schemes provided in the embodiment of the present application, at least have following technique effect or advantage:
Owing to have employed radiation proof structural design as comprising: rectangular parallelepiped framework, described framework adopts angle steel to make, one end of conductive lead wire is connected with described framework, the other end ground connection of described conductive lead wire, the upper surface of described framework is provided with radiation proof lead glass plate, the bottom surface of described framework and side are provided with radiation proof stereotype, a handle hole is equipped with in the middle part of described radiation proof stereotype on described framework 4 sides, one end of 4 hook sticks is each passed through described 4 handle holes and is positioned at described framework, the other end of described 4 hook sticks is positioned at outside described framework, described framework bottom surface support body is provided with chute, the described radiation proof stereotype side of described framework bottom surface is provided with pulley, the described radiation proof stereotype of described framework bottom surface is embedded in the technical scheme be slidably connected with described framework in described chute by described pulley, namely, when experimenter needs to carry out experimental implementation to the material with radiation, first utilize the radiation proof stereotype of framework bottom surface and framework to be slidably connected radiation proof stereotype pulled out, then the material with radiation is put on stereotype, then stereotype is pushed and go back, and utilize the radiation proof stereotype of side and the non-browning glass plate of end face to carry out radiation proof isolation, when testing, the non-browning glass plate of end face is utilized to observe, the hook stick of surrounding is utilized to carry out experimental implementation, and utilize wire can by the electric transmission of radiation to ground, radiation-proof effect is better, easy to use, and structure is simple, cost is lower, so, efficiently solve existing radiation proof equipment and there is complex structure, trouble is installed, mobile inconvenient, and the technical matters that cost is higher, and then achieve shielding structural design advantages of simple, install and conveniently moving flexible, and cost is lower, the good technique effect of radiation-proof effect.
Accompanying drawing explanation
Fig. 1 is the structural representation of radiation proof structure in the embodiment of the present application one;
Wherein, 1-framework, 2-radiation proof stereotype, 3-radiation proof lead glass plate, 4-conductive lead wire, 5-hook stick.
Embodiment
The invention provides a kind of radiation proof structure, solve existing radiation proof equipment and there is complex structure, trouble is installed, mobile inconvenient, and the technical matters that cost is higher, achieve shielding structural design advantages of simple, install and conveniently moving flexibly, and lower-cost technique effect.
Technical scheme during the application implements is for solving the problems of the technologies described above.General thought is as follows:
To have employed radiation proof structural design as comprising: rectangular parallelepiped framework, described framework adopts angle steel to make, one end of conductive lead wire is connected with described framework, the other end ground connection of described conductive lead wire, the upper surface of described framework is provided with radiation proof lead glass plate, the bottom surface of described framework and side are provided with radiation proof stereotype, a handle hole is equipped with in the middle part of described radiation proof stereotype on described framework 4 sides, one end of 4 hook sticks is each passed through described 4 handle holes and is positioned at described framework, the other end of described 4 hook sticks is positioned at outside described framework, described framework bottom surface support body is provided with chute, the described radiation proof stereotype side of described framework bottom surface is provided with pulley, the described radiation proof stereotype of described framework bottom surface is embedded in the technical scheme be slidably connected with described framework in described chute by described pulley, namely, when experimenter needs to carry out experimental implementation to the material with radiation, first utilize the radiation proof stereotype of framework bottom surface and framework to be slidably connected radiation proof stereotype pulled out, then the material with radiation is put on stereotype, then stereotype is pushed and go back, and utilize the radiation proof stereotype of side and the non-browning glass plate of end face to carry out radiation proof isolation, when testing, the non-browning glass plate of end face is utilized to observe, the hook stick of surrounding is utilized to carry out experimental implementation, and utilize wire can by the electric transmission of radiation to ground, radiation-proof effect is better, easy to use, and structure is simple, cost is lower, so, efficiently solve existing radiation proof equipment and there is complex structure, trouble is installed, mobile inconvenient, and the technical matters that cost is higher, and then achieve shielding structural design advantages of simple, install and conveniently moving flexible, and cost is lower, the good technique effect of radiation-proof effect.
In order to better understand technique scheme, below in conjunction with Figure of description and concrete embodiment, technique scheme is described in detail.
Embodiment one:
In embodiment one, provide a kind of radiation proof structure, please refer to Fig. 1, described structure comprises:
Rectangular parallelepiped framework 1, described framework 1 adopts angle steel to make, one end of conductive lead wire 4 is connected with described framework 1, the other end ground connection of described conductive lead wire 4, the upper surface of described framework 1 is provided with radiation proof lead glass plate 3, bottom surface and the side of described framework 1 are provided with radiation proof stereotype 2, a handle hole is equipped with in the middle part of described radiation proof stereotype on 4 sides of described framework 1, one end of 4 hook sticks 5 is each passed through described 4 handle holes and is positioned at described framework, the other end of described 4 hook sticks 5 is positioned at outside described framework, described framework bottom surface support body is provided with chute, the described radiation proof stereotype side of described framework bottom surface is provided with pulley, the described radiation proof stereotype of described framework bottom surface is embedded in described chute by described pulley and is slidably connected with described framework.
Wherein, in actual applications, utilize wire the electronics be radiated on stereotype and glass plate and other materials can be discharged to ground, ensure radiation-resistant effect.
Wherein, in actual applications, Frame Design being made for adopting angle steel, the intensity of framework can be ensured.
Wherein, in the embodiment of the present application, the diameter of described hook stick is mated with the diameter of described handle hole.
Wherein, in the embodiment of the present application, described radiation proof lead glass plate is transparence.
Wherein, in actual applications, radiation proof lead glass plate is that transparence can so that experimenter observes when experimental implementation.
Wherein, in the embodiment of the present application, described device side is provided with a hook, and described hook is provided with radiation-resistant gloves and radiation-proof garment.
Wherein, in actual applications, experimenter can carry out dual radiation proof in conjunction with radiation-resistant gloves and radiation-proof garment, thus realizes the multiple protective to experimenter.
Wherein, in the embodiment of the present application, described radiation proof lead glass plate, described radiation proof stereotype and described framework junction are equipped with sealing gasket.
Wherein, in the embodiment of the present application, the described hook stick termination be positioned at outside described framework is wrapped with one deck radiation proof sheet lead, and the termination that described hook stick is positioned at described framework is flat.
Wherein, in actual applications, arranging radiation proof sheet lead can protect the operator of experimenter, also can convenient operation librarian use hook stick, termination is designed to flat and experimenter's operation experiments article can be facilitated to roll.
Technical scheme in above-mentioned the embodiment of the present application, at least has following technique effect or advantage:
Owing to have employed radiation proof structural design as comprising: rectangular parallelepiped framework, described framework adopts angle steel to make, one end of conductive lead wire is connected with described framework, the other end ground connection of described conductive lead wire, the upper surface of described framework is provided with radiation proof lead glass plate, the bottom surface of described framework and side are provided with radiation proof stereotype, a handle hole is equipped with in the middle part of described radiation proof stereotype on described framework 4 sides, one end of 4 hook sticks is each passed through described 4 handle holes and is positioned at described framework, the other end of described 4 hook sticks is positioned at outside described framework, described framework bottom surface support body is provided with chute, the described radiation proof stereotype side of described framework bottom surface is provided with pulley, the described radiation proof stereotype of described framework bottom surface is embedded in the technical scheme be slidably connected with described framework in described chute by described pulley, namely, when experimenter needs to carry out experimental implementation to the material with radiation, first utilize the radiation proof stereotype of framework bottom surface and framework to be slidably connected radiation proof stereotype pulled out, then the material with radiation is put on stereotype, then stereotype is pushed and go back, and utilize the radiation proof stereotype of side and the non-browning glass plate of end face to carry out radiation proof isolation, when testing, the non-browning glass plate of end face is utilized to observe, the hook stick of surrounding is utilized to carry out experimental implementation, and utilize wire can by the electric transmission of radiation to ground, radiation-proof effect is better, easy to use, and structure is simple, cost is lower, so, efficiently solve existing radiation proof equipment and there is complex structure, trouble is installed, mobile inconvenient, and the technical matters that cost is higher, and then achieve shielding structural design advantages of simple, install and conveniently moving flexible, and cost is lower, the good technique effect of radiation-proof effect.
Although describe the preferred embodiments of the present invention, those skilled in the art once obtain the basic creative concept of cicada, then can make other change and amendment to these embodiments.So claims are intended to be interpreted as comprising preferred embodiment and falling into all changes and the amendment of the scope of the invention.
Obviously, those skilled in the art can carry out various change and modification to the present invention and not depart from the spirit and scope of the present invention.Like this, if these amendments of the present invention and modification belong within the scope of the claims in the present invention and equivalent technologies thereof, then the present invention is also intended to comprise these change and modification.
Claims (6)
1. a radiation proof structure, is characterized in that, described structure comprises:
Rectangular parallelepiped framework, described framework adopts angle steel to make, one end of conductive lead wire is connected with described framework, the other end ground connection of described conductive lead wire, the upper surface of described framework is provided with radiation proof lead glass plate, the bottom surface of described framework and side are provided with radiation proof stereotype, a handle hole is equipped with in the middle part of described radiation proof stereotype on described framework 4 sides, one end of 4 hook sticks is each passed through described 4 handle holes and is positioned at described framework, the other end of described 4 hook sticks is positioned at outside described framework, described framework bottom surface support body is provided with chute, the described radiation proof stereotype side of described framework bottom surface is provided with pulley, the described radiation proof stereotype of described framework bottom surface is embedded in described chute by described pulley and is slidably connected with described framework.
2. structure according to claim 1, is characterized in that, the diameter of described hook stick is mated with the diameter of described handle hole.
3. structure according to claim 1, is characterized in that, described radiation proof lead glass plate is transparence.
4. structure according to claim 1, is characterized in that, described device side is provided with a hook, and described hook is provided with radiation-resistant gloves and radiation-proof garment.
5. structure according to claim 1, is characterized in that, described radiation proof lead glass plate, described radiation proof stereotype and described framework junction are equipped with sealing gasket.
6. structure according to claim 1, is characterized in that, the described hook stick termination be positioned at outside described framework is wrapped with one deck radiation proof sheet lead, and the termination that described hook stick is positioned at described framework is flat.
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CN201410660835.XA CN104318967B (en) | 2014-11-19 | 2014-11-19 | A kind of radiation proof structure |
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CN201410660835.XA CN104318967B (en) | 2014-11-19 | 2014-11-19 | A kind of radiation proof structure |
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CN104318967B CN104318967B (en) | 2016-08-24 |
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CN201854918U (en) * | 2010-11-18 | 2011-06-08 | 郝铮 | Anti-radiation cabinet of microwave oven |
CN202027597U (en) * | 2011-04-19 | 2011-11-09 | 张瑞明 | Anti-radiation device |
CN202647945U (en) * | 2012-03-15 | 2013-01-02 | 李荣亮 | Anti-radiation shield for induction cooker |
CN103584519A (en) * | 2013-11-11 | 2014-02-19 | 山东大华医特环保工程有限公司 | Medical radioactive source storage cabinet |
CN203850006U (en) * | 2014-05-28 | 2014-09-24 | 国家电网公司 | Shielding protection device for onsite ray inspection |
CN204166912U (en) * | 2014-11-19 | 2015-02-18 | 成都实景信息技术有限公司 | A kind of shielding |
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2014
- 2014-11-19 CN CN201410660835.XA patent/CN104318967B/en active Active
Patent Citations (8)
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JP2005134305A (en) * | 2003-10-31 | 2005-05-26 | Toshiba Corp | Glove box device, and installation method thereof |
CN201111968Y (en) * | 2007-10-17 | 2008-09-10 | 董逢泉 | Movable window type intervention protection |
CN201854918U (en) * | 2010-11-18 | 2011-06-08 | 郝铮 | Anti-radiation cabinet of microwave oven |
CN202027597U (en) * | 2011-04-19 | 2011-11-09 | 张瑞明 | Anti-radiation device |
CN202647945U (en) * | 2012-03-15 | 2013-01-02 | 李荣亮 | Anti-radiation shield for induction cooker |
CN103584519A (en) * | 2013-11-11 | 2014-02-19 | 山东大华医特环保工程有限公司 | Medical radioactive source storage cabinet |
CN203850006U (en) * | 2014-05-28 | 2014-09-24 | 国家电网公司 | Shielding protection device for onsite ray inspection |
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Effective date of registration: 20191121 Address after: 239000 comprehensive economic development zone of Quanjiao County, Anhui, Chuzhou Patentee after: Chuzhou City Zhongnuo Equipment Mould Manufacturing Co., Ltd. Address before: 610000 Sichuan city of Chengdu province high tech Zone No. 8 North Lane 1 days long 4 storey building No. 417 Patentee before: CHENGDU SHIJING INFORMATION TECHNOLOGY CO., LTD. |