[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

CN106198743A - The display packing of a kind of Railway wheelset flaw detection data and device - Google Patents

The display packing of a kind of Railway wheelset flaw detection data and device Download PDF

Info

Publication number
CN106198743A
CN106198743A CN201610799938.3A CN201610799938A CN106198743A CN 106198743 A CN106198743 A CN 106198743A CN 201610799938 A CN201610799938 A CN 201610799938A CN 106198743 A CN106198743 A CN 106198743A
Authority
CN
China
Prior art keywords
defect
image
sound path
ultrasound wave
probe
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201610799938.3A
Other languages
Chinese (zh)
Inventor
彭朝勇
赵波
赵全轲
高晓蓉
王黎
王泽勇
杨凯
彭建平
张渝
王峰
伍丽芳
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
BEIJING ANTIE SOFTWARE TECHNOLOGY Co Ltd
Original Assignee
BEIJING ANTIE SOFTWARE TECHNOLOGY Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by BEIJING ANTIE SOFTWARE TECHNOLOGY Co Ltd filed Critical BEIJING ANTIE SOFTWARE TECHNOLOGY Co Ltd
Priority to CN201610799938.3A priority Critical patent/CN106198743A/en
Publication of CN106198743A publication Critical patent/CN106198743A/en
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N29/00Investigating or analysing materials by the use of ultrasonic, sonic or infrasonic waves; Visualisation of the interior of objects by transmitting ultrasonic or sonic waves through the object
    • G01N29/04Analysing solids
    • G01N29/06Visualisation of the interior, e.g. acoustic microscopy
    • G01N29/0654Imaging
    • G01N29/069Defect imaging, localisation and sizing using, e.g. time of flight diffraction [TOFD], synthetic aperture focusing technique [SAFT], Amplituden-Laufzeit-Ortskurven [ALOK] technique
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N29/00Investigating or analysing materials by the use of ultrasonic, sonic or infrasonic waves; Visualisation of the interior of objects by transmitting ultrasonic or sonic waves through the object
    • G01N29/44Processing the detected response signal, e.g. electronic circuits specially adapted therefor
    • G01N29/4445Classification of defects
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2291/00Indexing codes associated with group G01N29/00
    • G01N2291/02Indexing codes associated with the analysed material
    • G01N2291/023Solids
    • G01N2291/0234Metals, e.g. steel
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2291/00Indexing codes associated with group G01N29/00
    • G01N2291/26Scanned objects
    • G01N2291/269Various geometry objects
    • G01N2291/2696Wheels, Gears, Bearings

Landscapes

  • Physics & Mathematics (AREA)
  • Analytical Chemistry (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Signal Processing (AREA)
  • Engineering & Computer Science (AREA)
  • Acoustics & Sound (AREA)
  • Investigating Or Analyzing Materials By The Use Of Ultrasonic Waves (AREA)

Abstract

This application discloses display packing and the device of a kind of Railway wheelset flaw detection data, described method includes: according to multiple first image of the flaw detection data genaration of the Railway wheelset got and defect information list;Wherein, described first image includes that certain probe sends the detection position of ultrasound wave and detects the sound path of ultrasonic echo corresponding to position;Defect information list includes that each probe detects the parameters information of defect;Described defect information list is shown on display interface;Receive the to defect parameters arbitrary in described defect list first selection instruction;Respond described first and select instruction, second position at described display interface shows the first image of the sound path value of ultrasonic echo corresponding to detection position and detection position detecting that the probe of described defect sends ultrasound wave, and highlight the defect in the first image with predetermined manner, achieve, by technique scheme, the most comprehensive and relatedness that result of detection shows.

Description

The display packing of a kind of Railway wheelset flaw detection data and device
Technical field
The application relates to Railway wheelset detection technique field, the display packing of a kind of Railway wheelset detection data and Device.
Background technology
Railway wheelset inspection technique, the ultrasound wave that flaw detection probe can be utilized to launch realizes lacking wheel surface and inside The effective on-line checking fallen into.In actual applications, Railway wheelset is detected and obtains detection number by wheel by supersonic flaw detecting system According to, detection data are carried out process obtain testing result, by artificial be analyzed testing result determining whether defective.
In prior art, with collection of illustrative plates display format, testing result shows that a probe returns at certain inspection positions ultrasound wave The sound path value of ripple and the amplitude of correspondence, can only qualitatively judge out accordingly wheel to whether existing defects, i.e. can not be intuitively comprehensive, The display testing result of relatedness.
Summary of the invention
In view of this, the application provides the display packing of a kind of Railway wheelset flaw detection data, to solve the aobvious of flaw detection data Show the problem that result does not intuitively have relatedness comprehensively and not.
To achieve these goals, it is proposed that scheme as follows:
A kind of display packing of Railway wheelset flaw detection data, described method includes:
Obtain the flaw detection data of Railway wheelset;
According to multiple first image of described flaw detection data genaration and defect information list;
Wherein, described first image includes that certain probe sends corresponding ultrasonic in detection position and detection position of ultrasound wave The sound path of ripple echo;Defect information list includes that each probe detects the parameters information of defect;
First position at display interface shows described defect information list;
Receive the to defect arbitrary in described defect list first selection instruction;
Responding described first and select instruction, the second position at described display interface shows the spy described defect being detected Hair goes out the first image of the sound path of the ultrasonic echo corresponding to detection position and detection position of ultrasound wave, and with predetermined manner Highlight the described defect in the first image.
Alternatively, described include according to multiple first image of described flaw detection data genaration:
Described flaw detection data are analyzed, when described flaw detection data exist the data meeting default defect condition, Described defect is identified with corresponding manner in the first image.
Alternatively, also include:
According to multiple second image of described flaw detection data genaration, described second image include certain probe a certain send super The sound path of the inspection positions ultrasonic echo of sound wave and the amplitude of the ultrasound wave corresponding with the sound path of ultrasonic echo;
Receive the to defect arbitrary in the first image second selection instruction;
Respond described second and select instruction, show the spy described defect being detected in the 3rd position of described display interface Head is detecting the sound path of inspection positions ultrasonic echo of described defect and corresponding with the sound path of ultrasonic echo ultrasonic Second image of the amplitude of ripple.
Alternatively, also include:
Receive and send, to arbitrary in described first image, the sound path that ultrasound wave detects arbitrary ultrasonic echo of position Positioning instruction;
Respond described positioning instruction, in described first image, show that this sends the detection position of ultrasound wave and ultrasound wave returns The sound path value of ripple, and/or in described second image, show sound path value and the amplitude of ultrasound wave of ultrasonic echo.
Alternatively, also include:
According to described flaw detection data genaration the 3rd image, probe that described 3rd image includes defect being detected and with detection To the defect that the probe of defect is corresponding;
Described 3rd image is shown in the 4th position of described display interface;
Receive the 3rd selection instruction of arbitrary defect in described 3rd image;
Responding the described 3rd and select instruction, the second position at described display interface shows the spy described defect being detected Hair goes out the first image of the sound path of the ultrasonic echo corresponding to detection position and detection position of ultrasound wave, and with predetermined manner Highlight the defect in the first image.
The application provides the display device of a kind of Railway wheelset flaw detection data, and this device includes:
Acquiring unit, for obtaining the flaw detection data of Railway wheelset;
First signal generating unit, is used for according to multiple first image of described flaw detection data genaration and defect information list, wherein, Described first image includes that certain probe sends the detection position of ultrasound wave and detects the sound path of ultrasonic echo corresponding to position; Defect information list includes that each probe detects the parameters information of defect;
First display unit, shows described defect information list for the first position at display interface;
First instruction reception unit, for receiving the to defect arbitrary in described defect list first selection instruction;
Second display unit, is used for responding described first and selects instruction, and the second position at described display interface shows Detect that the probe of described defect sends the of the sound path of ultrasonic echo corresponding to the detection position of ultrasound wave and detection position One image, and highlight the defect in the first image with predetermined manner.
Alternatively, described first signal generating unit includes:
Analytic unit, for being analyzed described flaw detection data;
Mark unit, during for there are the data meeting default defect condition in data when detecting a flaw, in the first image with Corresponding manner identifies described defect.
Alternatively, also include:
Second signal generating unit, for according to multiple second image of described flaw detection data genaration, described second image includes certain Individual probe is at the sound path of a certain inspection positions ultrasonic echo sending ultrasound wave and corresponding with the sound path of ultrasonic echo The amplitude of ultrasound wave;
Second instruction reception unit, for receiving the to defect arbitrary in the first image second selection instruction;
3rd display unit, is used for responding described selection and instructs, in the 3rd position display detection of described display interface To described defect probe detect described defect inspection positions ultrasonic echo sound path and with ultrasonic echo Second image of the amplitude of the ultrasound wave that sound path is corresponding.
Alternatively, also include:
3rd instruction reception unit, detects appointing of position for receiving to the ultrasound wave that sends arbitrary in described first image The positioning instruction of the sound path of one ultrasonic echo,
4th display unit, is used for responding described positioning instruction, shows that position location is corresponding in described first image Send detection position and the sound path value of ultrasonic echo of ultrasound wave, and/or show position location pair in described second image The sound path value of the ultrasonic echo answered and the amplitude of ultrasound wave.
Alternatively, also include:
3rd signal generating unit, for according to described flaw detection data genaration the 3rd image, described 3rd image includes detecting The probe of defect and the defect corresponding with probe defect being detected;
First display unit, is additionally operable to show described 3rd image in the 4th position of described display interface;
4th instruction reception unit, for receiving the 3rd selection instruction of arbitrary defect in described 3rd image;
Second display unit, is additionally operable to respond the described 3rd and selects instruction, and the second position at described display interface shows Show the sound path of ultrasonic echo corresponding to detection position and detection position detecting that the probe of described defect sends ultrasound wave First image, and highlight the defect in the first image with predetermined manner.
From above-mentioned technical scheme it can be seen that the application is multiple according to the flaw detection data genaration of the Railway wheelset got First image and defect information list;Wherein, described first image includes that certain probe sends detection position and the inspection of ultrasound wave Location puts the sound path of the ultrasonic echo of correspondence;Defect information list includes that each probe detects the parameters letter of defect Breath;Described defect information list is shown the first position on display interface;Receive and lack arbitrary in described defect list Fall into the first selection instruction of parameter;Responding described first and select instruction, the second position at display interface shows and institute detected State that the probe of defect parameters sends the sound path value of ultrasonic echo corresponding to the detection position of ultrasound wave and detection position first Image, and highlight the defect in the first image with predetermined manner.In technique scheme, by defect in defect list The selection of information, shows the first image that this defect parameters is corresponding, i.e. can show accordingly according to the different defect selected First image information of probe, and on display interface, various location can demonstrate concrete defect information and image simultaneously Information, so achieve that result of detection shows is the most comprehensive, and relatedness, further improves user to flaw detection knot The analysis efficiency of fruit.
Accompanying drawing explanation
In order to be illustrated more clearly that the embodiment of the present application or technical scheme of the prior art, below will be to embodiment or existing In having technology to describe, the required accompanying drawing used is briefly described, it should be apparent that, the accompanying drawing in describing below is only this Some embodiments of application, for those of ordinary skill in the art, on the premise of not paying creative work, it is also possible to Other accompanying drawing is obtained according to these accompanying drawings.
Fig. 1 is the basic flow sheet of the display packing of a kind of Railway wheelset flaw detection data disclosed in the embodiment of the present application;
Fig. 2 is the method basic flow sheet that another kind of Railway wheelset flaw detection data disclosed in the embodiment of the present application show;
Fig. 3 is the method basic flow sheet that another kind of Railway wheelset flaw detection data disclosed in the embodiment of the present application show;
Fig. 4 is the method basic flow sheet that another kind of Railway wheelset flaw detection data disclosed in the embodiment of the present application show;
Fig. 5 is the display interface figure that a kind of Railway wheelset flaw detection data disclosed in the embodiment of the present application show;
The fundamental block diagram of the display device of a kind of Railway wheelset flaw detection data disclosed in Fig. 6 the embodiment of the present application;
The fundamental block diagram of the display device of another kind of Railway wheelset flaw detection data disclosed in Fig. 7 the embodiment of the present application;
The fundamental block diagram of the display device of another kind of Railway wheelset flaw detection data disclosed in Fig. 8 the embodiment of the present application;
The fundamental block diagram of the display device of another kind of Railway wheelset flaw detection data disclosed in Fig. 9 the embodiment of the present application;
The fundamental block diagram of the display device of another kind of Railway wheelset flaw detection data disclosed in Figure 10 the embodiment of the present application.
Detailed description of the invention
Below in conjunction with the accompanying drawing in the embodiment of the present application, the technical scheme in the embodiment of the present application is carried out clear, complete Describe, it is clear that described embodiment is only some embodiments of the present application rather than whole embodiments wholely.Based on Embodiment in the application, it is every other that those of ordinary skill in the art are obtained under not making creative work premise Embodiment, broadly falls into the scope of the application protection.
Embodiment one
The present embodiment provides the display packing of a kind of Railway wheelset flaw detection data, as it is shown in figure 1, the method includes:
S100: obtain the flaw detection data of Railway wheelset;
By Railway wheelset supersonic flaw detecting system, Railway wheelset is detected a flaw, collect flaw detection data, packet of detecting a flaw Include the Various types of data related to during being detected a flaw in each detection position of Railway wheelset by each probe, such as Railway wheelset data The related data (amplitude of ultrasound wave, sound path) of (Railway wheelset numbering), each defect crack, flaw detection tool data are (belonging to probe Channel number, probe type) etc..
S110: according to multiple first image of described flaw detection data genaration and defect information list;
Wherein, described first image includes that certain probe sends corresponding ultrasonic in detection position and detection position of ultrasound wave The sound path of ripple echo;Defect information list includes that each probe detects the parameters information of defect;
In actual application, for a Railway wheelset, the probe of multiple passage can be utilized, the diverse location of Railway wheelset is entered The whole flaw detection data obtained are generated multiple first image and defect information list by row detection flaw detection the most respectively. Described first image is the ultrasonic examination data genaration utilizing certain probe to send on each detection position of Railway wheelset Image, send the sound path of the ultrasonic echo corresponding to detection position and detection position of ultrasound wave including certain probe, this is the years old It is the detection position sending ultrasound wave that one image can arrange abscissa, and this detection position can be with the anglec of rotation to Railway wheelset Degree represents, i.e. sets the zero point anglec of rotation of Railway wheelset, determines each detection position each compared to this zero point anglec of rotation The anglec of rotation, vertical coordinate is the sound path of ultrasonic echo corresponding to detection position, and certainly, two coordinates can also set in turn Fixed.Also include popping one's head in the first image the numbering of affiliated passage.
Defect information list records defective parameters information, includes but not limited to following items: wheel is to defect Tunnel name, affiliated regional location i.e. wheel rim spoke, probe type, the axial degree of depth and the angle of circumference, defect Crest amplitude value, sentences the type etc. of wound, and the most also can have remarks column increases corresponding informance for operator.
Concrete, the first image generation process includes:
Described flaw detection data are analyzed, when exist meet the data of default defect condition time, in the first image with Corresponding manner identifies described defect.
Such as, when the amplitude detecting described flaw detection data is less than Second Threshold beyond first threshold, at the first figure Would correspond in Xiang identify with Lycoperdon polymorphum Vitt, when described flaw detection data being detected less than the position of Second Threshold part beyond first threshold Amplitude beyond Second Threshold time, would correspond in the first image the position beyond Second Threshold part with redness identify, Here first threshold and Second Threshold, represent the doubtful degree of defect, or also only can carry out defect dipoles with Second Threshold, with Time may be used without other modes and identify defect, such as the mode such as highlighted, square frame is chosen.By mark, the first image is being shown Can show image in the way of mark when showing, the display at such defective locations is different from other positions, Yong Huneng Enough by which detection position existing defects the first image is known, and the sound path section that the position of defect is i.e. positioned at, in order to user Select.
S120: the first position at display interface shows described defect information list;
First position on the display interface of display device, shows the defect information list of generation, and this is years old One position can be any position on display interface.
S130: receive the selection to defect arbitrary in described defect list and instruct;
Concrete, user can realize the selection to defect parameters by mouse, can be a mouse click, double click, Mus Mark pointer is in fault location hovering, defect etc. in frame.
S140: respond described first and select instruction, the second position at described display interface show detect described scarce The probe fallen into sends the first image of the sound path of the ultrasonic echo corresponding to detection position and detection position of ultrasound wave, and with in advance If mode highlights the defect in the first image.
For the defect parameters selected, the second position on same display interface will reveal whether to detect that this defect is joined The probe of number sends the first image of the sound path of the ultrasonic echo corresponding to detection position and detection position of ultrasound wave.Now, Described first image and described defect information list are shown in the predetermined position of same display interface simultaneously, first Position can with the adjacent second position: as described in the first image up, described defect information list also comes described first image Lower section, be the equal of with default arrangement mode, list and the first image to be shown, and then be easy to user according to institute State every terms of information to be associated analyzing.
Display the first image in, highlight defect with predetermined manner, as can choose with square frame or highlighted mark lack Fall into, so the detection position of this existing defects is made a distinction with other detection positions, make user can be visually seen the defect of selection What information was corresponding is which detects position, and the position that defect is positioned at.
First image described in the present embodiment includes that certain probe sends detection position and the detection position correspondence of ultrasound wave The sound path of ultrasonic echo;Defect information list includes that each probe detects the parameters information of defect;Lack described Fall into information list and show the first position on display interface;Receive first to defect parameters arbitrary in described defect list Select instruction;Responding described first and select instruction, the second position at display interface shows and described defect parameters detected Probe sends the first image of the sound path value of the ultrasonic echo corresponding to detection position and detection position of ultrasound wave, and to preset Mode highlights the defect in the first image.In technique scheme, by the selection of defect information in defect list, aobvious Show the first image that this defect parameters is corresponding, i.e. can show the first image of corresponding probe according to the different defect selected Information, and on display interface, various location can demonstrate concrete defect information and image information simultaneously, so realize Comprehensive and the relatedness that result of detection shows, further improves user's analysis efficiency to testing result.
Embodiment two
The present embodiment provides the display packing of a kind of Railway wheelset flaw detection data, as in figure 2 it is shown, the method includes:
S200: obtain the flaw detection data of Railway wheelset.
S210: according to multiple first image of described flaw detection data genaration, multiple second image and defect information list;Its In, the first image includes that certain probe sends the detection position of ultrasound wave and detects the sound path of ultrasonic echo corresponding to position; Defect information list includes that each probe detects the parameters information of defect, the first image and defect information list and first Related content in embodiment is identical, does not repeats them here.
Concrete, the second image is sonogram, shows with the form of two dimensional image, exists including certain probe The sound path of a certain inspection positions ultrasonic echo sending ultrasound wave and the ultrasound wave corresponding with the sound path of ultrasonic echo Amplitude, can arrange the amplitude that abscissa is ultrasound wave, and vertical coordinate is the sound path of ultrasonic echo, utilizes the amplitude of described ultrasound wave Value is appreciated that the size of described defect.
S220: the first position at display interface shows described defect information list.
S230: receive the to defect arbitrary in described defect list first selection instruction.
S240: respond described first and select instruction, the second position at described display interface show detect described scarce The probe fallen into sends the first image of the sound path of the ultrasonic echo corresponding to detection position and detection position of ultrasound wave, and with in advance If mode highlights the defect in the first image;
Above-mentioned steps S220-240 is identical with step S120-140 in embodiment one, does not repeats them here.
S250: receive the to defect arbitrary in the first image second selection instruction.
S260: respond described second and select instruction, shows in the 3rd position of described display interface and described lacking detected The probe fallen into is detecting the sound path of inspection positions ultrasonic echo of described defect and corresponding with the sound path of ultrasonic echo Second image of amplitude of ultrasound wave.
The technical scheme of above-described embodiment, generates and includes that certain probe surpasses in a certain inspection positions sending ultrasound wave The sound path of sound echo and the second image of the amplitude of the ultrasound wave corresponding with the sound path of ultrasonic echo, by user to first The selection of the defect of image, display second image corresponding with this defect of association, in order to user is by two the first images and the Two images are associated analyzing.
Embodiment three
The present embodiment provides the display packing of a kind of Railway wheelset flaw detection data, as it is shown on figure 3, the method includes:
S300: obtain the flaw detection data of Railway wheelset.
S310: according to multiple first image of described flaw detection data genaration, multiple second image and defect information list;Its In, the first image includes that certain probe sends the detection position of ultrasound wave and detects the sound path of ultrasonic echo corresponding to position; Defect information list includes that each probe detects the parameters information of defect;Described second image includes that certain probe is at certain One sound path of the inspection positions ultrasonic echo sending ultrasound wave and shaking of the ultrasound wave corresponding with the sound path of ultrasonic echo Width.
S320: the first position at display interface shows described defect information list.
S330: receive the to defect arbitrary in described defect list first selection instruction.
S340: respond described first and select instruction, the second position at described display interface show detect described scarce The probe fallen into sends the first image of the sound path value of the ultrasonic echo corresponding to detection position and detection position of ultrasound wave, and with Predetermined manner highlights the defect in the first image.
S350: receive the to defect arbitrary in the first image second selection instruction.
S360: respond described second and select instruction, shows in the 3rd position of described display interface and described lacking detected The probe fallen into is detecting the sound path of inspection positions ultrasonic echo of described defect and corresponding with the sound path of ultrasonic echo Second image of amplitude of ultrasound wave.
Above-mentioned steps S300-360 is identical with step S200-260 in embodiment two, does not repeats them here.
S370: receive and send, to arbitrary in described first image, the sound that ultrasound wave detects arbitrary ultrasonic echo of position The positioning instruction of journey;
Location mode user can realize detecting the corresponding ultrasonic echo in position to sending ultrasound wave by mouse The location of sound path value, as can be double click, mouse pointer in fault location hovering etc., be equivalent to lock a position location.
S380: respond described positioning instruction, in described first image, display sends the detection position of ultrasound wave and ultrasonic The sound path value of ripple echo, and/or in described second image, show sound path value and the amplitude of ultrasound wave of ultrasonic echo.
Concrete, the first image shows (anglec of rotation, the sound path value) at position location, the second image shows location (sound path value, the amplitude) of position.
In the technical scheme of above-described embodiment, by the location to a certain position concrete in the first image, at the first figure Picture and the second image can demonstrate the relevant concrete numerical value of this position, in order to user's contrast is checked.
Embodiment four
The present embodiment provides the display packing of a kind of Railway wheelset flaw detection data, and as shown in Figure 4, the method includes:
S400: obtain Railway wheelset flaw detection data;
S410: according to multiple first image of described flaw detection data genaration, defect information list and the 3rd image;Wherein, One image includes that certain probe sends the detection position of ultrasound wave and detects the sound path value of ultrasonic echo corresponding to position;Defect Information list includes that each probe detects the parameters information of defect.
3rd image includes probe defect being detected and the defect corresponding with probe defect being detected, can arrange horizontal seat Be designated as detecting position, vertical coordinate is the numbering of passage belonging to defect probe to be detected, it is thus shown which inspection of which probe Location is put and is detected defect, and it, during generating, has carried out the mark of predetermined manner, in order to it can be with this mark to defect Knowledge mode shows.
S420: the first position at described display interface shows described defect information list, the 4th position display institute State the 3rd image;
S430: receive the to defect arbitrary in described defect list first selection instruction, or receive described 3rd image In arbitrary defect the 3rd selection instruction;
S440: responding described first and select instruction, or the 3rd selects instruction, the second position at described display interface shows Show the sound path of ultrasonic echo corresponding to detection position and detection position detecting that the probe of described defect sends ultrasound wave First image, and highlight the defect in the first image with predetermined manner.
The technical scheme of above-described embodiment, for generating display the 3rd image, also on the basis of first embodiment technical scheme The generation that can carry out the 3rd image on the basis of other embodiments shows.In such scheme, generating the 3rd image, it includes All the probes of defect being detected in each detection position, compared to information list, it is more simple and clear, and user is by the 3rd Image is able to know which is popped one's head in, and which detection position detects defect, and arbitrary defect can be selected to carry out checking on display circle The first image of the probe correspondence this defect being detected is checked on face.
Referring to Fig. 5,4 positions on same display interface show 3 images and a list simultaneously.? The position being labeled as 1 in the first image that display interface shows is that when being analyzed flaw detection data, amplitude is more than Second Threshold Corresponding sound path section, when have selected this defect in a defect list, then it is chosen by square frame and i.e. highlights with predetermined manner, The position being designated 2 is flaw detection data to be analyzed amplitude be less than, more than first threshold, the sound path that Second Threshold is corresponding Section, other positions are not belonging to defective locations, it is possible to use other colors show (this figure does not indicates);Corresponding to the second image, mark Note is the position of the position laterally correspondence of 1, and the amplitude of waveform is the highest, is labeled as the position of the position laterally correspondence of 2 Place, the amplitude of waveform is higher.
Embodiment five
The application also provides for the display device of a kind of Railway wheelset flaw detection data, and as described in Figure 6, this device includes:
Acquiring unit 600, for obtaining the flaw detection data of Railway wheelset;
First signal generating unit 610, is used for according to multiple first image of described flaw detection data genaration and defect information list, its In, described first image includes that certain probe sends the detection position of ultrasound wave and detects the sound of ultrasonic echo corresponding to position Journey;Defect information list includes that each probe detects the parameters information of defect;
First display unit 620, shows described defect information list for the first position at display interface;
First instruction reception unit 630, for receiving the to defect arbitrary in described defect list first selection instruction;
Second display unit 640, is used for responding described first and selects instruction, and the second position at described display interface shows Show the sound path of ultrasonic echo corresponding to detection position and detection position detecting that the probe of described defect sends ultrasound wave First image, and highlight the defect in the first image with predetermined manner.
Concrete, as it is shown in fig. 7, the first signal generating unit 610 includes described in this device:
Analytic unit 611, for being analyzed described flaw detection data;
, for when there are, in data of detecting a flaw, the data meeting default defect condition, in the first image in mark unit 612 Described defect is identified with corresponding manner.
Embodiment six
The application also provides for the display device of a kind of Railway wheelset flaw detection data, and as described in Figure 8, this device includes: obtain Unit the 600, first signal generating unit the 610, first display unit the 620, first instruction reception unit 630 and the second display unit 640; And,
Second signal generating unit 700, for according to multiple second image of described flaw detection data genaration, described second image includes Certain probe is at the sound path of a certain inspection positions ultrasonic echo sending ultrasound wave and corresponding with the sound path of ultrasonic echo The amplitude of ultrasound wave;
Second instruction reception unit 710, for receiving the to defect arbitrary in the first image second selection instruction;
3rd display unit 720, is used for responding described second and selects instruction, aobvious in the 3rd position of described display interface Show that the probe described defect being detected is at the sound path of inspection positions ultrasonic echo and and the ultrasound wave described defect being detected Second image of the amplitude of the ultrasound wave that the sound path of echo is corresponding.
Embodiment seven
The application also provides for the display device of a kind of Railway wheelset flaw detection data, and as described in Figure 9, this device includes: obtain Unit the 600, first signal generating unit the 610, first display unit the 620, first instruction reception unit 630 and the second display unit 640, Second signal generating unit the 700, second instruction reception unit 710 and the 3rd display unit 720;And,
3rd instruction reception unit 800, for receiving the detection position sending ultrasound wave arbitrary in described first image The positioning instruction of sound path of arbitrary ultrasonic echo,
4th display unit 810, is used for responding described positioning instruction, shows that this sends ultrasound wave in described first image Detection position and the sound path value of ultrasonic echo, and/or show in described second image ultrasonic echo sound path value and The amplitude of ultrasound wave.
Embodiment eight
The application also provides for the display device of a kind of Railway wheelset flaw detection data, and as described in Figure 10, this device includes: obtain Unit the 600, first signal generating unit the 610, first display unit the 620, first instruction reception unit 630 and the second display unit 640; And,
3rd signal generating unit 900, for according to described flaw detection data genaration the 3rd image, described 3rd image includes detection Probe and the defect corresponding with probe defect being detected to defect;
First display unit 620, is additionally operable to show described 3rd image in the 4th position of described display interface;
4th instruction reception unit 910, for receiving the 3rd selection instruction of arbitrary defect in described 3rd image;
Second display unit 640, is additionally operable to respond the described 3rd and selects instruction, in the second position of described display interface Display detects that the probe of described defect sends the detection position of ultrasound wave and detects the sound path of ultrasonic echo corresponding to position First image of value, and highlight the defect in the first image with predetermined manner.
Finally, in addition it is also necessary to explanation, in this article, the relational terms of such as first and second or the like be used merely to by One entity or operation separate with another entity or operating space, and not necessarily require or imply these entities or operation Between exist any this reality relation or order.And, term " includes ", " comprising " or its any other variant meaning Containing comprising of nonexcludability, so that include that the process of a series of key element, method, article or equipment not only include that A little key elements, but also include other key elements being not expressly set out, or also include for this process, method, article or The key element that equipment is intrinsic.In the case of there is no more restriction, statement " including ... " key element limited, do not arrange Except there is also other identical element in including the process of described key element, method, article or equipment.
In this specification, each embodiment uses the mode gone forward one by one to describe, and what each embodiment stressed is and other The difference of embodiment, between each embodiment, identical similar portion sees mutually.
Described above to the disclosed embodiments, makes professional and technical personnel in the field be capable of or uses the application. Multiple amendment to these embodiments will be apparent from for those skilled in the art, as defined herein General Principle can realize in the case of without departing from spirit herein or scope in other embodiments.Therefore, the application It is not intended to be limited to the embodiments shown herein, and is to fit to and principles disclosed herein and features of novelty phase one The widest scope caused.

Claims (10)

1. the display packing of Railway wheelset flaw detection data, it is characterised in that described method includes:
Obtain the flaw detection data of Railway wheelset;
According to multiple first image of described flaw detection data genaration and defect information list;
Wherein, described first image includes that certain probe sends the ultrasound wave corresponding to detection position and detection position of ultrasound wave and returns The sound path of ripple;Defect information list includes that each probe detects the parameters information of defect;
First position at display interface shows described defect information list;
Receive the to defect arbitrary in described defect list first selection instruction;
Responding described first and select instruction, the second position at described display interface shows that the probe described defect being detected is sent out The detection position going out ultrasound wave and the first image of the sound path detecting ultrasonic echo corresponding to position, and highlight with predetermined manner Show the described defect in the first image.
2. method as claimed in claim 1, it is characterised in that described according to the multiple first image bag of described flaw detection data genaration Include:
Described flaw detection data are analyzed, when described flaw detection data exist meet the data of default defect condition time, the One image identifies described defect with corresponding manner.
3. method as claimed in claim 1 or 2, it is characterised in that described method also includes:
According to multiple second image of described flaw detection data genaration, described second image includes that certain probe sends ultrasound wave a certain The sound path of inspection positions ultrasonic echo and the amplitude of the ultrasound wave corresponding with the sound path of ultrasonic echo;
Receive the to defect arbitrary in the first image second selection instruction;
Respond described second and select instruction, show that the probe described defect being detected exists in the 3rd position of described display interface The sound path of the inspection positions ultrasonic echo of described defect and the ultrasound wave corresponding with the sound path of ultrasonic echo detected Second image of amplitude.
4. method as claimed in claim 3, it is characterised in that also include:
Receive and send, to arbitrary in described first image, the location of sound path that ultrasound wave detects arbitrary ultrasonic echo of position Instruction;
Respond described positioning instruction, in described first image, show that this sends the detection position of ultrasound wave and ultrasonic echo Sound path value, and/or in described second image, show sound path value and the amplitude of ultrasound wave of ultrasonic echo.
5. method as claimed in claim 1 or 2, it is characterised in that described method also includes:
According to described flaw detection data genaration the 3rd image, probe that described 3rd image includes defect being detected and scarce with detecting The defect of the probe correspondence fallen into;
Described 3rd image is shown in the 4th position of described display interface;
Receive the 3rd selection instruction of arbitrary defect in described 3rd image;
Responding the described 3rd and select instruction, the second position at described display interface shows that the probe described defect being detected is sent out The detection position going out ultrasound wave and the first image of the sound path detecting ultrasonic echo corresponding to position, and highlight with predetermined manner Show the defect in the first image.
6. the display device of Railway wheelset flaw detection data, it is characterised in that described device includes:
Acquiring unit, for obtaining the flaw detection data of Railway wheelset;
First signal generating unit, for according to multiple first image of described flaw detection data genaration and defect information list, wherein, described First image includes that certain probe sends the detection position of ultrasound wave and detects the sound path of ultrasonic echo corresponding to position;Defect Information list includes that each probe detects the parameters information of defect;
First display unit, shows described defect information list for the first position at display interface;
First instruction reception unit, for receiving the to defect arbitrary in described defect list first selection instruction;
Second display unit, is used for responding described first and selects instruction, and the second position at described display interface shows detection Probe to described defect sends the first figure of the sound path of the ultrasonic echo corresponding to detection position and detection position of ultrasound wave Picture, and highlight the defect in the first image with predetermined manner.
7. device as claimed in claim 6, described first signal generating unit includes:
Analytic unit, for being analyzed described flaw detection data;
, for when there are, in data of detecting a flaw, the data meeting default defect condition, with accordingly in the first image in mark unit Mode identifies described defect.
Device the most as claimed in claims 6 or 7, it is characterised in that also include:
Second signal generating unit, for according to multiple second image of described flaw detection data genaration, described second image includes that certain is visited Head is at the sound path of a certain inspection positions ultrasonic echo sending ultrasound wave and corresponding with the sound path of ultrasonic echo ultrasonic The amplitude of ripple;
Second instruction reception unit, for receiving the to defect arbitrary in the first image second selection instruction;
3rd display unit, is used for responding described selection and instructs, show in the 3rd position of described display interface and institute detected State the probe of defect detect described defect inspection positions ultrasonic echo sound path and with the sound path of ultrasonic echo Second image of the amplitude of corresponding ultrasound wave.
9. device as claimed in claim 8, it is characterised in that also include:
3rd instruction reception unit, detects the arbitrary super of position for receiving to the ultrasound wave that sends arbitrary in described first image The positioning instruction of the sound path of sound echo,
4th display unit, is used for responding described positioning instruction, shows corresponding the sending in position location in described first image The detection position of ultrasound wave and the sound path value of ultrasonic echo, and/or show that position location is corresponding in described second image The sound path value of ultrasonic echo and the amplitude of ultrasound wave.
Device the most as claimed in claims 6 or 7, it is characterised in that also include:
3rd signal generating unit, for according to described flaw detection data genaration the 3rd image, described 3rd image includes defect being detected Probe and with defect corresponding to probe defect being detected;
First display unit, is additionally operable to show described 3rd image in the 4th position of described display interface;
4th instruction reception unit, for receiving the 3rd selection instruction of arbitrary defect in described 3rd image;
Second display unit, is additionally operable to respond the described 3rd and selects instruction, and the second position at described display interface shows inspection Measure that the probe of described defect sends the sound path of ultrasonic echo corresponding to the detection position of ultrasound wave and detection position first Image, and highlight the defect in the first image with predetermined manner.
CN201610799938.3A 2016-08-31 2016-08-31 The display packing of a kind of Railway wheelset flaw detection data and device Pending CN106198743A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610799938.3A CN106198743A (en) 2016-08-31 2016-08-31 The display packing of a kind of Railway wheelset flaw detection data and device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610799938.3A CN106198743A (en) 2016-08-31 2016-08-31 The display packing of a kind of Railway wheelset flaw detection data and device

Publications (1)

Publication Number Publication Date
CN106198743A true CN106198743A (en) 2016-12-07

Family

ID=58066463

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610799938.3A Pending CN106198743A (en) 2016-08-31 2016-08-31 The display packing of a kind of Railway wheelset flaw detection data and device

Country Status (1)

Country Link
CN (1) CN106198743A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109272504A (en) * 2018-10-17 2019-01-25 广汽丰田汽车有限公司 The detection of vehicle bumps defect, retroactive method, apparatus and system
CN112598654A (en) * 2020-12-25 2021-04-02 北京安铁软件技术有限公司 Train wheel ultrasonic damage judging method and system
CN114612430A (en) * 2022-03-10 2022-06-10 江阴市浩盛电器线缆制造有限公司 Heating water pipe ground depth acquisition system
CN116500140A (en) * 2023-06-28 2023-07-28 新创碳谷集团有限公司 Automatic gain compensation method, device, equipment and storage medium for ultrasonic detection

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1900709A (en) * 2006-07-12 2007-01-24 广东汕头超声电子股份有限公司 Display method for multiple path ultrasonic flaw detector
CN101047756A (en) * 2006-03-30 2007-10-03 富士施乐株式会社 Image processing apparatus and image data list display method
CN101356518A (en) * 2005-11-04 2009-01-28 特克特朗尼克公司 Methods, systems, and apparatus for multi-field mark
CN101396285A (en) * 2008-10-07 2009-04-01 深圳市蓝韵实业有限公司 Ultrasonic image prognosis information system
CN103239208A (en) * 2013-04-18 2013-08-14 深圳市科曼医疗设备有限公司 Monitor waveform display method and monitor waveform display system
CN103558291A (en) * 2013-11-13 2014-02-05 北京安铁软件技术有限公司 Method and device for displaying wheel detection data

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101356518A (en) * 2005-11-04 2009-01-28 特克特朗尼克公司 Methods, systems, and apparatus for multi-field mark
CN101047756A (en) * 2006-03-30 2007-10-03 富士施乐株式会社 Image processing apparatus and image data list display method
CN1900709A (en) * 2006-07-12 2007-01-24 广东汕头超声电子股份有限公司 Display method for multiple path ultrasonic flaw detector
CN101396285A (en) * 2008-10-07 2009-04-01 深圳市蓝韵实业有限公司 Ultrasonic image prognosis information system
CN103239208A (en) * 2013-04-18 2013-08-14 深圳市科曼医疗设备有限公司 Monitor waveform display method and monitor waveform display system
CN103558291A (en) * 2013-11-13 2014-02-05 北京安铁软件技术有限公司 Method and device for displaying wheel detection data

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109272504A (en) * 2018-10-17 2019-01-25 广汽丰田汽车有限公司 The detection of vehicle bumps defect, retroactive method, apparatus and system
CN112598654A (en) * 2020-12-25 2021-04-02 北京安铁软件技术有限公司 Train wheel ultrasonic damage judging method and system
CN112598654B (en) * 2020-12-25 2023-12-08 北京安铁软件技术有限公司 Ultrasonic train wheel damage judging method and system
CN114612430A (en) * 2022-03-10 2022-06-10 江阴市浩盛电器线缆制造有限公司 Heating water pipe ground depth acquisition system
CN116500140A (en) * 2023-06-28 2023-07-28 新创碳谷集团有限公司 Automatic gain compensation method, device, equipment and storage medium for ultrasonic detection
CN116500140B (en) * 2023-06-28 2023-08-29 新创碳谷集团有限公司 Automatic Gain Compensation Method, Device, Equipment and Storage Medium for Ultrasonic Detection

Similar Documents

Publication Publication Date Title
CN106198743A (en) The display packing of a kind of Railway wheelset flaw detection data and device
US6193657B1 (en) Image based probe position and orientation detection
US9207639B2 (en) Transforming A-scan data samples into a three-dimensional space for facilitating visualization of flaws
US6532820B1 (en) Combined ultrasonic techniques for evaluations (CUTE)
CN103558291B (en) Wheel detection data display method and device
CN110687208A (en) Non-reference Lamb wave damage monitoring method based on hyperbolic positioning
JP2010530526A (en) Nondestructive detection method and apparatus for rotational movement of sample, and test unit
WO2021250986A1 (en) Inspection device, inspection method, and inspection program
CN103278565A (en) Method for fast encapsulating and analyzing cyclically-scanned ultrasonic flaw detection data
JP5167402B2 (en) Ultrasonic flaw detection data processing method, flaw detection data processing program and ultrasonic flaw detection
CN102695958B (en) The accurate measurement of waveform
CN110363757A (en) Ultrasound image measurement result display methods, device, equipment and readable storage medium storing program for executing
KR100967084B1 (en) Crack Monitoring System, Crack Monitoring Method and Computer Readable Medium on which Crack Monitoring Program is Recorded
JP2010175259A (en) Ultrasonic flaw detector and ultrasonic flaw detecting method
JPH05312787A (en) Method for determination for eddy current examination of piping
JP4969145B2 (en) Ultrasonic flaw detection data processing method, flaw detection data processing program, and ultrasonic flaw detection data processing apparatus
KR102105503B1 (en) Method and apparatus for automatically evaluating weld quality
JPH08110326A (en) Pattern generating method for neural network system
JP2006275977A (en) Support system for decision from ultrasonic inspection
JP4209220B2 (en) Ultrasonic signal processing method
JPH116820A (en) Method for ultrasonic probe imaging
CN114987577B (en) 3D laser steel rail profile detection method and system based on space-time calibration
JPH0815230A (en) Eddy current flaw detecting signal processor
WO2000040960A1 (en) Combined ultrasonic techniques for evaluations (cute)
CN100559153C (en) The method and apparatus that is used for diagnosing technical equipment

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20161207