CN201867178U - Radioactive source type thickness measurement device and radioactive source type thickness measurement monitoring system - Google Patents

Radioactive source type thickness measurement device and radioactive source type thickness measurement monitoring system Download PDF

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Publication number
CN201867178U
CN201867178U CN2010206407080U CN201020640708U CN201867178U CN 201867178 U CN201867178 U CN 201867178U CN 2010206407080 U CN2010206407080 U CN 2010206407080U CN 201020640708 U CN201020640708 U CN 201020640708U CN 201867178 U CN201867178 U CN 201867178U
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China
Prior art keywords
radioactive source
unit
thickness
information
measuring
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Expired - Fee Related
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CN2010206407080U
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Chinese (zh)
Inventor
陈钦亮
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Foshan JM Environmental Protection Technology Co., Ltd.
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陈钦亮
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Priority to CN2010206407080U priority Critical patent/CN201867178U/en
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Abstract

The embodiment of the utility model discloses a radioactive source type thickness measurement device, which comprises a thickness measurement sensor, a sensing circuit, an amplification circuit, an information processing unit, a display unit and also a real-time monitoring unit. The real-time monitoring unit is connected with the amplification circuit and is used for transmitting sensing information amplified by the amplification circuit to a monitoring platform through wired or wireless communication. When the radioactive source type thickness measurement device is used, the thickness of an object can be measured through rays of a radioactive source, and real-time transmission of thickness information can be realized through the wired or wireless communication, so remote thickness measurement and remote monitoring of operation of the thickness measurement device can be achieved. Meanwhile, real-time monitoring of the state of the radioactive source can be realized to ensure the safety application of the f radioactive source to the largest extent.

Description

A kind of radioactive source measuring thickness device and radioactive source thickness measuring supervisory system
Technical field
The utility model relates to real-time monitoring field, relates in particular to a kind of radioactive source measuring thickness device and radioactive source thickness measuring supervisory system.
Background technology
At present, the ray that utilizes radioactive source the to send technology of carrying out thickness measuring is widely used in the industrial and mining enterprises.In the existing thickness measurement technology, measurement result is to be presented on the display of thicknessmeter self in the ordinary course of things, or is transported to in-plant display by the mode of wire transmission, checks in order to people.This information output and display mode have caused people to need the liftoff display of checking of low coverage, thereby can't be subjected to the irradiation of ray and the influence of workshop noise with avoiding.Simultaneously, if radioactive source is operated or improper storage, the illegal transfer or accident such as stolen just might be taken place, cause radioactive contamination, endanger public security in application process.Therefore, radioactive source is carried out on-line monitoring and seem extremely important.
The utility model content
The purpose of this utility model is to provide a kind of radioactive source measuring thickness device and radioactive source thickness measuring supervisory system, have the advantages that thickness measure information and relevant radioactive source roentgen dose X information to be carried out remote transmission, when realizing the object thickness test, can carry out real time and on line monitoring to radioactive source.
In order to solve the problems of the technologies described above, the utility model embodiment provides a kind of radioactive source measuring thickness device, described measuring thickness device comprises the thickness measuring inductor, sensor circuit, amplifying circuit, information process unit and display unit, described thickness measuring inductor is used to obtain the roentgen dose X that radioactive source penetrates object, described sensor circuit generates induction information according to the roentgen dose X that described thickness measuring inductor obtains, described induction information comprises voltage and/or current information, described amplifying circuit amplifies described induction information and is sent to described information process unit and carries out thickness conversion, described display unit is used to show described thickness information, and described measuring thickness device also comprises:
Link to each other with described amplifying circuit, be used for the induction information that described amplifying circuit amplifies is transferred to by wired or wireless communication modes the real-time monitoring unit of monitor supervision platform.
Further, described radioactive source measuring thickness device also comprises:
Link to each other respectively with described thickness measuring inductor, sensor circuit, amplifying circuit and real-time monitoring unit, be used for implementing the power supply unit of power supply to described thickness measuring inductor, sensor circuit, amplifying circuit and real-time monitoring unit.
Further, described real-time monitoring unit comprises:
Link to each other with described amplifying circuit, be used to gather the collecting unit of the induction information after described amplifying circuit amplifies;
Be used for linking to each other, the induction information of described collecting unit collection be sent to the communication unit of monitor supervision platform with described collecting unit.
Correspondingly, the utility model embodiment also provides a kind of radioactive source thickness measuring supervisory system, comprising:
Be used to respond to the dosage of radioactive source and change corresponding induction information, described induction information is amplified after the radioactive source measuring thickness device of monitoring unit output in real time;
The monitor supervision platform that is used for receiving the induction information of described radioactive source measuring thickness device monitoring unit transmission in real time and carries out respective handling.
Further, described monitor supervision platform comprises:
The induction information that the described real-time monitoring unit that is used for receiving sends is scaled the scaling unit of radioactive source dosage information;
Link to each other with described scaling unit, the radioactive source dosage information that is used for conversing according to described scaling unit checks described radioactive source roentgen dose X whether unusual verification unit takes place;
Link to each other with described verification unit, be used for detecting the alarm unit that warning message takes place to send when unusual described roentgen dose X when described verification unit.
Implement the utility model embodiment, have following beneficial effect:
1, can carry out the online in real time monitoring to radioactive source.Guarantee to occur radioactive source and be shifted, in time report to the police when stolen, and stopping, when cutting off the power supply under the situation, can carry out the online in real time monitoring to radioactive source, so that in time take counter-measure.
2, the object thickness information of being obtained can be carried out teletransmission, obtain the thickness parameter of object quickly and easily in real time, and can realize operated from a distance, avoid closely operating and the information inspection acquisition process in, the staff is subjected to the irradiation of ray and other pollution.
3, monitor supervision platform can fast be sent to default a plurality of contact persons by communication modes such as note or voice with information such as warnings, guarantees authenticity and reliability that information is obtained and transmitted, realizes coordinated management in many ways.
4, convert described roentgen dose X to circuit information, and, improved the degree of accuracy of information by the verification debugging of sensor circuit and the amplification of amplifying circuit.
Description of drawings
Fig. 1 is the structural representation of a kind of radioactive source thickness measuring of the utility model supervisory system embodiment.
Fig. 2 is the structural representation of radioactive source measuring thickness device 1 first embodiment in a kind of radioactive source thickness measuring of the utility model supervisory system;
Fig. 3 is the structural representation of radioactive source measuring thickness device 1 second embodiment in a kind of radioactive source thickness measuring of the utility model supervisory system;
Fig. 4 is the structural representation of monitor supervision platform 2 in a kind of radioactive source thickness measuring of the utility model supervisory system.
Embodiment
For making the purpose of this utility model, technical scheme and advantage clearer, the utility model is described in further detail below in conjunction with accompanying drawing.
Fig. 1 is the structural representation of a kind of radioactive source thickness measuring of the utility model supervisory system embodiment.
As shown in Figure 1, described radioactive source thickness measuring supervisory system comprises:
Be used to respond to the dosage of radioactive source and change corresponding induction information, described induction information is amplified after the radioactive source measuring thickness device 1 of monitoring unit output in real time;
The monitor supervision platform 2 that is used for receiving the induction information of described radioactive source measuring thickness device monitoring unit transmission in real time and carries out respective handling.
Need to prove, described monitor supervision platform 2 comprises terminals such as mobile phone, computer, it can receive the information that described radioactive source measuring thickness device 1 sends by existing GSM/GPRS/3G or telephone wire, broadband etc., realizes radioactive source is carried out the purpose of real time and on line monitoring.
Fig. 2 is the structural representation of radioactive source measuring thickness device 1 first embodiment in a kind of radioactive source thickness measuring of the utility model supervisory system.
As shown in Figure 2, described radioactive source thickness measuring supervising device 1 comprises:
Thickness measuring inductor 11, sensor circuit 12, amplifying circuit 13, information process unit 14, display unit 15 and real-time monitoring unit 16.
Described thickness measuring inductor 11 is used to obtain the roentgen dose X that radioactive source penetrates object, and described sensor circuit 12 generates induction information according to the described roentgen dose X that described thickness measuring inductor 11 obtains, described induction information comprise voltage and/information of voltage;
Described amplifying circuit 13 amplifies described induction informations and is sent to described information process unit 14 and carries out thickness conversion;
Described display unit 115 links to each other with described information process unit 14, is used to show described thickness information.
Described real-time monitoring unit 16 links to each other with described amplifying circuit 13, is used for the induction information that described amplifying circuit 13 amplifies is transferred to by wired or wireless communication modes the real-time monitoring unit of monitor supervision platform 2.
Need to prove that the described radioactive source roentgen dose X that described thickness measuring inductor 11 obtains comprises that at least described radioactive source penetrates the roentgen dose X of object and the roentgen dose X of described radioactive source direct projection.Induction generates induction information to described sensor circuit 12 according to described roentgen dose X, described induction information comprise voltage and/information of voltage, described induction information comprises that voltage becomes corresponding relation with/information of voltage with the size of roentgen dose X.
Described real-time monitoring unit 16 can send to described monitor supervision platform 2 with wired or wireless communication modes with the induction information that amplifies through described amplifying circuit 13, with the purpose that realizes described radioactive source is monitored in real time, guarantee to occur that described radioactive source is shifted or stolen, radiation losses too much and normally during abnormal conditions such as thickness measuring, provide relevant monitoring situation, in order in time taking counter-measure.
As preferably, monitor supervision platform can note or communication mode such as voice fast be sent to default a plurality of contact persons, guarantee information transmission and authenticity of obtaining and reliability, realized coordinated management in many ways.
Need to prove that described real-time monitoring unit 16 can utilize ready-made wireless communication technique, as GSM/GPRS/3G or existing telephone wire, broadband etc., carries out the transmission of information, has saved the expense of system's construction greatly.
As preferably, the thickness of the induction information conversion testee that also can send according to described real-time monitoring unit 16 at the described monitor supervision platform 2 of thickness measuring work, with avoid closely operating and the information inspection acquisition process in, the staff is subjected to irradiation or other pollution of ray.
Need to prove that described real-time monitoring unit 16 can form by installing additional on existing measuring thickness device basis.Realize the effect that thickness measuring function and monitoring function are implemented simultaneously jointly.And it is simple in structure, to described radioactive source in application process because operation or improper storage or the loss problem that causes such as excessive all can be carried out real time and on line monitoring, avoided the generation of illegal transfer or accident such as stolen.
Fig. 3 is the structural representation of radioactive source measuring thickness device 1 second embodiment in a kind of radioactive source thickness measuring of the utility model supervisory system.
Fig. 3 links to each other respectively with described thickness measuring inductor 11, sensor circuit 12, amplifying circuit 13 and real-time monitoring unit 15, is used for implementing to described thickness measuring inductor 11, sensor circuit 12, amplifying circuit 13 and real-time monitoring unit 15 power supply unit 17 of power supply.
Need to prove, it is that described thickness measuring inductor 11, sensor circuit 12, amplifying circuit 13 and real-time monitoring unit 15 are implemented power supply that described power supply unit 17 can utilize existing alternating current, be provided with the high-performance reserve battery in the described power supply unit 17 simultaneously, when the alternating current powering-off state takes place when, described high-performance reserve battery still can be implemented effectively power supply to described thickness measuring inductor 11, sensor circuit 12, amplifying circuit 13 and real-time monitoring unit 15, guarantees the operate as normal of described radioactive source measuring thickness device 1.
Described real time monitoring apparatus 16 also comprises:
Link to each other with described amplifying circuit 13, be used to gather the collecting unit 161 of the induction information after described amplifying circuit amplifies.
Be used for linking to each other, the induction information of described collecting unit collection be sent to the communication unit 162 of monitor supervision platform with described collecting unit.
Fig. 4 is the structural representation of monitor supervision platform 2 in a kind of radioactive source thickness measuring of the utility model supervisory system.
As shown in Figure 4, described monitor supervision platform 2 comprises:
The induction information that the described real-time monitoring unit 16 that is used for receiving sends is scaled the scaling unit 21 of radioactive source dosage information.
Link to each other with described scaling unit 21, be used for checking described radioactive source roentgen dose X whether unusual verification unit 22 takes place according to the radioactive source dosage information that described scaling unit 21 converses.
Link to each other with described verification unit 22, be used for detecting the alarm unit 23 that warning message takes place to send when unusual described roentgen dose X when described verification unit 22.
Need to prove, can be in described monitor supervision platform 2 the preset reference data, reference data as the corresponding corresponding induction information of corresponding roentgen dose X, scaling unit 21 is compared described real-time monitoring unit 16 induction information that sends and the reference data that prestores, by the dosage information of obtaining current radioactive source after the automatic computational analysis of software, monitor with states such as dosage information to described radioactive source.
Also can in monitor supervision platform 2, will preset the corresponding different object thickness of various dose information simultaneously, thereby can converse the thickness information of testee by scaling unit 21.
The radioactive source dosage information that converses when the described scaling unit 21 of described verification unit 22 checks takes place when unusual, and when displacement or stolen or situation that own loss is too much took place radioactive source as described, monitor supervision platform 2 sent the information of warning by alarm unit 23.
Among other embodiment, described verification unit 22 also can be used for detecting the fault of other type that described radioactive source takes place.
Need to prove that monitor supervision platform can be sent to default a plurality of contact persons in the mode of note or voice simultaneously with described warning message, realizes round-the-clock collaborative supervision.
Need to prove that described warning message comprises information and/or other failure messages of described radioactive source roentgen dose X.
Radioactive source measuring thickness device 1 among a kind of radioactive source measuring thickness device of the utility model and the said system embodiment is roughly the same on 26S Proteasome Structure and Function, is not described in detail in this.
In sum, implement the utility model, utilize the accurate Measuring Object thickness of described radioactive source, and the object thickness information of being obtained can be passed through wired or wireless communication mode real-time Transmission, can not only work have realized operated from a distance to thickness measuring quickly and easily, avoid closely operating and the information inspection process in, the staff is subjected to the irradiation of ray and other pollution.Simultaneously, can also carry out real time and on line monitoring to the dosage state of radioactive source, farthest to guarantee the safe handling of radioactive source.
The above is a preferred implementation of the present invention; should be pointed out that for those skilled in the art, under the prerequisite that does not break away from the principle of the invention; can also make some improvements and modifications, these improvements and modifications also are considered as protection scope of the present invention.

Claims (5)

1. radioactive source measuring thickness device, described measuring thickness device comprises thickness measuring inductor, sensor circuit, amplifying circuit, information process unit and display unit, described thickness measuring inductor is used to obtain the roentgen dose X that radioactive source penetrates object, described sensor circuit generates induction information according to the roentgen dose X that described thickness measuring inductor obtains, described induction information comprises voltage and/or current information, described amplifying circuit amplifies described induction information and is sent to described information process unit and carries out thickness conversion, described display unit is used to show described thickness information, it is characterized in that:
Described measuring thickness device also comprises with described amplifying circuit and linking to each other, and is used for the induction information that described amplifying circuit amplifies is transferred to by wired or wireless communication modes the real-time monitoring unit of monitor supervision platform.
2. radioactive source measuring thickness device as claimed in claim 1 is characterized in that, also comprises:
Link to each other respectively with described thickness measuring inductor, sensor circuit, amplifying circuit and real-time monitoring unit, be used for implementing the power supply unit of power supply to described thickness measuring inductor, sensor circuit, amplifying circuit and real-time monitoring unit.
3. radioactive source measuring thickness device according to claim 2 is characterized in that, described real-time monitoring unit comprises:
Link to each other with described amplifying circuit, be used to gather the collecting unit of the induction information after described amplifying circuit amplifies;
Be used for linking to each other, the induction information of described collecting unit collection be sent to the communication unit of monitor supervision platform with described collecting unit.
4. a radioactive source thickness measuring supervisory system is characterized in that, comprising:
As each described radioactive source measuring thickness device of claim 1~3;
The monitor supervision platform that is used for receiving the induction information of described radioactive source measuring thickness device monitoring unit transmission in real time and carries out respective handling.
5. radioactive source thickness measuring supervisory system according to claim 4 is characterized in that described monitor supervision platform comprises:
The induction information that the described real-time monitoring unit that is used for receiving sends is scaled the scaling unit of radioactive source dosage information;
Link to each other with described scaling unit, the radioactive source dosage information that is used for conversing according to described scaling unit checks described radioactive source roentgen dose X whether unusual verification unit takes place;
Link to each other with described verification unit, be used for detecting the alarm unit that warning message takes place to send when unusual described roentgen dose X when described verification unit.
CN2010206407080U 2010-12-03 2010-12-03 Radioactive source type thickness measurement device and radioactive source type thickness measurement monitoring system Expired - Fee Related CN201867178U (en)

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CN2010206407080U CN201867178U (en) 2010-12-03 2010-12-03 Radioactive source type thickness measurement device and radioactive source type thickness measurement monitoring system

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Application Number Priority Date Filing Date Title
CN2010206407080U CN201867178U (en) 2010-12-03 2010-12-03 Radioactive source type thickness measurement device and radioactive source type thickness measurement monitoring system

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105251697A (en) * 2015-10-28 2016-01-20 昆山洺九机电有限公司 Keyboard assembling detecting device
CN107152906A (en) * 2017-05-04 2017-09-12 唐山钢铁集团微尔自动化有限公司 A kind of potable metal thickness gauge

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105251697A (en) * 2015-10-28 2016-01-20 昆山洺九机电有限公司 Keyboard assembling detecting device
CN107152906A (en) * 2017-05-04 2017-09-12 唐山钢铁集团微尔自动化有限公司 A kind of potable metal thickness gauge

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Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
ASS Succession or assignment of patent right

Owner name: FOSHAN JM ENVIRONMENT TECHNOLOGY CO., LTD.

Free format text: FORMER OWNER: CHEN QINLIANG

Effective date: 20120427

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20120427

Address after: 528000, Guangdong, Foshan province Chancheng District Huayuan road 13, twenty-third floor (25 word building) H room

Patentee after: Foshan JM Environmental Protection Technology Co., Ltd.

Address before: 528000, No. 29 Huayuan East Road, Chancheng District, Guangdong, Foshan province P10

Patentee before: Chen Qinliang

CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20110615

Termination date: 20161203

CF01 Termination of patent right due to non-payment of annual fee