Fault inspection system, fault inspection method, and fault inspection program
By designing the function of displaying and reflecting key monitoring information in the defect inspection system, the problem of difficulty in accurately and efficiently recording the continuous repeated inspection results of equipment in the prior art is solved, and effective monitoring of key areas and accurate recording of inspection results is achieved.
Patent Information
- Application Number
- JP2021067680
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-04-13
- Publication Date
- 2025-05-12
- Estimated Expiration
- 2041-04-13
AI Technical Summary
The prior art is difficult to accurately and efficiently record inspection results in continuous repeated inspection of equipment.
A defect inspection system is designed, which includes an input area that displays defect inspection results and a key monitoring information input area. When displaying the current inspection results input area, it reflects the key monitoring information entered in the previous inspection results.
By reflecting the key monitoring information in previous inspection results, we ensure that inspectors can focus on the areas that need to be monitored when entering the current inspection results, avoid omissions and errors, and achieve accurate and efficient recording of continuous repeated inspection results.
Smart Images

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Abstract
Description
[Technical field]
[0001] The defect inspection system, defect inspection method, and defect inspection program according to the present application relate to a technique for repeatedly and continuously inspecting an inspection target for defects. [Background technology]
[0002] An example of a defect inspection system that inspects defects in various devices is the technology disclosed in the below-mentioned Patent Document 1. This defect inspection technology is a system that acquires information on defective parts that have occurred in machines to be inspected, such as aircraft.
[0003] In this system, the server 6 takes in the image captured by the mobile terminal 5 and the current location information of the mobile terminal 5, generates a model image of the captured location from the design model 25 stored in advance in the memory unit 20, and transmits the image to the mobile terminal 5.
[0004] When an inspection worker finds a defective part such as a crack or corrosion, he or she refers to the model image and inputs a drawing of the defective part from mobile terminal 5 to generate drawing information, which is then sent to server 6. Server 6 quantifies the shape of the defective part based on this drawing information and dimensional information of the part, and generates defect information related to the dimensions of the crack, the area of corrosion, etc. [Prior art documents] [Patent documents]
[0005] [Patent Document 1] JP 2017-199263 A Summary of the Invention [Problem to be solved by the invention]
[0006] Since malfunctions of various devices usually occur and progress gradually over time, malfunction inspections must be repeatedly and continuously performed at predetermined intervals. Furthermore, accurate and efficient recording of inspection results is required. However, the technology disclosed in the above-mentioned Patent Document 1 does not assume that inspections are repeatedly and continuously performed, and is therefore unable to accurately and efficiently record the results of inspections that are repeatedly performed.
[0007] In order to solve these problems, the defect inspection system, defect inspection method, and defect inspection program of the present application have the objective of providing a defect inspection system, defect inspection method, and defect inspection program that can accurately and efficiently record the results of repeated inspections. [Means for solving the problem]
[0008] The defect inspection system according to the present application comprises: A defect inspection system for use in defect inspection that continuously inspects defects in an inspection target two or more times, a display means for displaying a test result input area associated with an inspection site in a specific inspection object, the test result being input therein, and a priority monitoring information input area into which priority monitoring information indicating that the specific inspection site should be monitored with priority in the future is input; A storage means for storing the input inspection results and priority monitoring information of the inspection object each time; a control means for, when displaying an inspection result input area for a current inspection on a display means for a specific inspection object, reflecting, in the inspection result input area, if priority monitoring information has been input for the corresponding inspection object in the inspection results from the previous or previous inspection; The present invention is characterized by comprising:
[0009] In addition, the defect inspection method according to the present application includes: A defect inspection method for inspecting a defect of an inspection object two or more times continuously, comprising: the display means displays a test result input area associated with an inspection site in a specific inspection object, in which the inspection result is input, and a priority monitoring information input area in which priority monitoring information indicating that the specific inspection site should be monitored with priority in the future is input; The storage means stores the inspection results and the priority monitoring information of the inspection object each time they are input, the control means, when displaying an inspection result input area for a particular inspection object on the display means for a current inspection, reflects the focus monitoring information in the inspection result input area when focus monitoring information has been input for the corresponding inspection object in the inspection results from the previous or previous inspection; It is characterized by:
[0010] Furthermore, the defect inspection program according to the present application is A defect inspection program used in defect inspection for inspecting defects of an inspection target two or more times continuously, a display function for displaying a test result input area associated with an inspection site in a specific inspection subject, the test result being input therein, and a priority monitoring information input area into which priority monitoring information indicating that the specific inspection site should be monitored with priority in the future is input therein; A memory function that stores the test results and key monitoring information of the test subjects entered each time; a control function for, when displaying an inspection result input area for a particular inspection target on a display means for the current inspection, reflecting the focus monitoring information in the inspection result input area when the focus monitoring information for the corresponding inspection target has been input in the inspection results from the previous or previous inspection; The present invention is characterized in that the above-mentioned is executed by a computer. Effect of the Invention
[0011] In the defect inspection system, defect inspection method, and defect inspection program of the present application, when an inspection result input area for a specific inspection object is displayed on a display means for the current inspection, if key monitoring information has been input for the corresponding inspection object in the inspection results from the previous or previous inspection, the key monitoring information is reflected in the inspection result input area.
[0012] Therefore, when inputting the test results in the test result input area, attention is drawn to specific test sites that should be monitored with priority, and oversights and input errors are easily and reliably prevented. Therefore, the test results that are repeatedly and continuously performed can be recorded accurately and efficiently. [Brief description of the drawings]
[0013] [Figure 1] 1 is a block diagram showing the hardware configuration of an inspection system according to a first embodiment of a defect inspection system, a defect inspection method, and a defect inspection program of the present application. [Diagram 2] 2 is a flowchart of a test data recording process executed by a server control unit 2 shown in FIG. [Diagram 3] FIG. 2 is a diagram showing an example of a screen display of the display unit 15 shown in FIG. 1, showing an example of the screen display when there is no previous input data. [Figure 4] FIG. 2 is a diagram showing an example of a screen display of the display unit 15 shown in FIG. 1, showing an example of the screen display when there is previously input data. [Diagram 5] FIG. 2 is a diagram showing an example of the screen display of the display unit 15 shown in FIG. 1, showing an example of the screen display when there is previous input data and there is a priority monitoring check. [Figure 6] FIG. 1 is a layout diagram of various devices installed in an industrial plant. [Figure 7] 13 is a flowchart of an inspection data recording process in a second embodiment of the defect inspection system, the defect inspection method, and the defect inspection program according to the present application. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0014] [Terminology used in the embodiments] The main terms used in the embodiments correspond to the following elements of the defect inspection system, defect inspection method, and defect inspection program according to the present application.
[0015] Server control unit 2: Control means, control function Memory 3: Storage means, storage function Display section 15...Display means, display function Equipment 21: Inspection target Input window 41, 42, 43, 44, 45, 61, 62, 63, 64, 65, 71, 72, 73, 74, 75, 81, 82, 83, 84, 85...Test result input area Priority monitoring check section 41b, 45b, 71b, 81b: Priority monitoring information input area Thick frame 81f...Highlighted
[0016] [First embodiment] A first embodiment of a fault inspection system, a fault inspection method, and a fault inspection program according to the present application will be described. In this embodiment, an inspection system for various devices installed in an industrial plant is exemplified as a fault inspection system.
[0017] Fig. 6 is a layout diagram of various devices installed in an industrial plant. In an area 20 shown in Fig. 6, a large number of various devices 21, indicated by icon marks, are placed, and one or more inspection workers bring their own mobile terminals to inspect these devices 21 for corrosion, deformation, damage, etc. This inspection is continuously and repeatedly carried out, for example, once a year. The inspection workers input the inspection results into their mobile terminals, and this inspection data is wirelessly transmitted to a server that centrally manages the system.
[0018] (Explanation of the hardware configuration of the inspection system) The hardware configuration of the inspection system in this embodiment will be described with reference to Fig. 1. The server 1 includes a server control unit 2, a memory 3, and a communication unit 4. The mobile terminal 10 includes a mobile control unit 11, an input unit 12, an imaging unit 13, a memory 14, a display unit 15, and a communication unit 16. The server 1 and the mobile terminal 10 communicate wirelessly via the communication units 4 and 16, respectively, to transmit and receive data.
[0019] When an inspection is performed, the display unit 15 of the mobile terminal 10 displays a screen of a diagram or the like corresponding to the equipment to be inspected, and the inspection worker inputs various commands and characters through the input unit 12, takes an image of the inspection object using the photographing unit 13 which is a camera, and displays it on the display unit 15. This input data is stored in the memory 14 and is also transmitted to the server 1.
[0020] Then, the server 1 stores and accumulates the input data transmitted from the mobile terminal 10 in the memory 3. Furthermore, the server control unit 2 controls the display of the display unit 15 of the mobile terminal 10 according to a predetermined program for the test data recording process.
[0021] (Explanation of the inspection data recording process: When there is no previous input data) Next, the program for the inspection data recording process executed by the server control unit 2 of the server 1 will be described with reference to the flowchart in Fig. 2. First, the server control unit 2 determines whether or not an input specifying a target device has been made from the input unit 12 of the mobile terminal 10 (step S2). An inspection worker carrying the mobile terminal 10 inputs the identification number of the device to be inspected from the input unit 12 immediately before carrying out the inspection.
[0022] In this case, the display unit 15 of the mobile terminal 10 may be configured to display a layout diagram of various devices as shown in Fig. 6, and the icon mark of a specific device 21 may be tapped to input the designation of the target device. Also, a barcode or QR code (registered trademark) directly attached to the device 21 may be read by a reading device to input the designation of the device.
[0023] When an input specifying a target device is received from the mobile terminal 10, the server control unit 2 refers to the data stored in the memory 3 and determines whether or not there is data from the previous inspection for a device corresponding to the target device specified in step S2 (in this embodiment, the same device installed in the same place) (step S4). Here, it is assumed that the target inspection device is inspected for the first time, and the previous data is not stored in the memory 3.
[0024] In this case, the process proceeds to step S8, where the server control unit 2 displays a default input form for the target device on the display unit 15 of the mobile terminal 10. This display is the screen display 40 shown in Fig. 3. On the screen display 40, a drawing 49 of the target device is displayed in the center, and a title frame 48 is displayed at the top. In the title frame 48, the device name, the device identification number, and the inspection date and time (current time) are displayed.
[0025] Then, input windows 41, 42, 43, 44 associated with specific examination sites of the target device are displayed on the screen display 40. The examination sites and the input windows 41, 42, 43, 44 are connected on the screen by lines 90 to display the association. These examination sites are registered in advance as sites that must be examined for the target device specified in step S2, and are stored in the memory 3 of the server 1.
[0026] For example, the input window 41 has an examination region name display section 41a, a focus monitoring check section 41b, an image input section 41c, and a comment input section 41d. The name of the examination region is displayed in the examination region name display section 41a from the beginning, but the focus monitoring check section 41b, the image input section 41c, and the comment input section 41d are blank. Similarly to the input window 41, the input windows 42, 43, and 44 also display an examination region name display section, a focus monitoring check section, an image input section, and a comment input section.
[0027] The inspection worker inspects each inspection area while referring to screen display 40 displayed on display unit 15 of mobile terminal 10. The inspection worker performs the inspection by visual inspection and by using various inspection equipment (not shown). The inspection worker also photographs the inspection area with photographing unit 13 of mobile terminal 10, inputs the images into the image input units of input windows 41, 42, 43, and 44, and displays them, and further inputs comments into the comment input units, which display them. The state in which the images and comments have been input is shown as screen display 50 in FIG. 3.
[0028] For example, when inputting an image into the image input section 41c of the input window 41, the user taps on the image input section 41c and then photographs the target examination site with the photographing unit 13. This causes the photographed image to be displayed in the image input section 41c. In addition, by tapping on the comment input section 41d of the input window 41, the user can input text of a comment via the input unit 12.
[0029] If it is desired to add an arbitrary inspection part for the target device, a location on screen display 40 corresponding to the specific inspection part to be added is tapped. As a result, a new input window associated with the added part appears on the screen. Input window 45 on screen display 50 in Fig. 3 is the added input window, and the association with the added inspection part is displayed on the screen by line 90. Input window 45 also includes an inspection part name display section 45a, a priority monitoring check section 45b, an image input section 45c, and a comment input section 45d.
[0030] In the added input window 45, the examination region name display section 45a is blank, so the examination operator inputs the name of the examination region, and then inputs and displays the captured image and comment in the image input section 45c and comment input section 45d, respectively.
[0031] When the above input is made to the mobile terminal 10, the server control unit 2 takes in the input data each time, and stores and accumulates each input data in the memory 3 (steps S14, S16). Then, when the inspection operator inputs an end of inspection from the mobile terminal 10, the server control unit 2 receives the input, updates the inspection date and time (current time) to the latest state, and then ends the process (step S18).
[0032] (Explanation of inspection data recording process: If there is previous input data) Next, the inspection data recording process for the second and subsequent inspections of the various devices shown in the layout diagram of Fig. 6 will be described with reference to the flowchart of Fig. 2. In the second and subsequent inspections, the inspection worker inputs the identification number of the target device from the input unit 12 of the mobile terminal 10 in order to specify the target device for inspection.
[0033] The server control unit 2 determines whether or not there is data from the previous inspection for the same device installed in the same place (step S2). In this case, since this is the second or subsequent inspection, the previous data is recorded in the memory 3 of the server 1. The content of the previous input data is displayed on screen 50 in FIG. 4.
[0034] Since there is previous data, the server control unit 2 proceeds from step S4 to step S6 and determines whether or not a check in the priority monitoring check section is recorded in any of the input windows in the previous data. The check in the priority monitoring check section is a check entered in the priority monitoring check section (for example, priority monitoring check section 41b of input window 41) of input windows 41, 42, 43, 44, and 45 displayed on the screen display 50, and is a check entered and recorded by an inspection worker tapping on the priority monitoring check section for an inspection part that does not require immediate repair, replacement, or other measures as a result of the inspection, but should be monitored with priority in future inspections.
[0035] In this case, as shown in screen display 50, since there is no record of a check by the priority monitoring check section in any of input windows 41, 42, 43, 44, and 45, the process proceeds from step S6 to step S10, and an input window identical to the previous data is displayed as the current input form on display unit 15 of mobile terminal 10. This display is screen display 60 in FIG.
[0036] In each of the input windows 61, 62, 63, 64, and 65, only the name of the examination part is displayed in the examination part name display section, and the other parts, the priority monitoring check section, the image input section, and the comment input section, are all left blank. For the input window 45 that was added during the previous examination, an input window 65 is displayed on the screen display 60 with only the name of the examination part displayed in the examination part name display section 45a.
[0037] The inspection operator then inspects each inspection site and inputs photographed images and comments into the respective input windows 61, 62, 63, 64, and 65 of the screen display 60. The server control unit 1 records the input data in the memory 3 (steps S14 and S16), and when an end instruction is input, updates the inspection date and time (current time) to the latest state and then terminates the process (step S18).
[0038] (Explanation of inspection data recording process: When previous input data is available and a priority monitoring check is performed) Next, the inspection data recording process in the case where a priority monitoring check is recorded in the previous data in the second or subsequent inspection will be described with reference to the flowchart of FIG.
[0039] Steps S2 and S4 are the same as those described above, and the server control unit 2 proceeds from step S4 to step S6 to determine whether or not there is a record of a check by the priority monitoring check unit in any of the input windows in the previous data. The display showing the contents of the previous input data is screen display 70 in FIG.
[0040] A check is recorded and displayed in the priority monitoring check section 71b of the input window 71 displayed on the screen display 70. That is, during the previous inspection of this target device, a defect was identified in the inspection part connected to the input window 71 by a line 90 that does not require immediate repair or replacement, but should be monitored with priority in future inspections, and the inspection worker taps the priority monitoring check section 71b to input and record the check. Also, a comment about the defect is input in the comment input section 71d. That is, at least data indicating that a check has been input and recorded in the priority monitoring check section 71b for this target device and data for displaying a comment about the defect in the comment input section 71d are stored in the memory 3.
[0041] When it is determined that data indicating that a check has been input and recorded in the priority monitoring check section 71b for the target device is present in the memory 3, the server control section 2 proceeds from step S6 to step S12, and when displaying the screen display 80, which is the current input form, on the display section 15 of the mobile terminal 10, the input window 81 corresponding to the input window 71 in which a check was recorded in the priority monitoring check section 71b in the previous data is highlighted with a thick frame 81f.
[0042] In the input window 81, the name of the examination site is displayed in the examination site name display section 81a and a check is displayed in the priority monitoring check section 81b, but the image input section 81c and the comment input section 81d are blank. Since a check has been recorded in the priority monitoring check section 81b from the beginning in the current input form, when the next examination is performed, the input window corresponding to the input window 81 in the next input form will be similarly highlighted.
[0043] By highlighting with a bold frame the input window corresponding to the input window in which a check has been recorded in the priority monitoring check section in the previous data, attention is drawn to the specific examination site that should be monitored with priority, and oversights and input errors are easily and reliably prevented. Therefore, the recording of the results of repeated and continuous examinations can be performed accurately and efficiently.
[0044] The inspection worker inspects each inspection part and inputs the photographed images and comments into each input window 81, 82, 83, 84, and 85 of the screen display 80. For the inspection part related to the input window 81 that requires priority monitoring, appropriate measures such as repair or replacement are taken according to the inspection results.
[0045] [Second embodiment] Next, a second embodiment of the defect inspection system, defect inspection method, and defect inspection program according to the present application will be described with reference to the flowchart of Fig. 7. The hardware configuration and the screen display on the display unit of the mobile terminal are the same as those of the first embodiment.
[0046] The flowchart (FIG. 7) of the test data recording process in this embodiment is also almost the same as the flowchart (FIG. 2) in the first embodiment described above, and steps S52, S56, S58, S60, S62, S64, S66, and S68 in the flowchart in FIG. 7 correspond to steps S2, S6, S8, S10, S12, S14, S16, and S18 in the flowchart in FIG. 2, and the substantial process contents are the same. The flowchart in FIG. 7 in this embodiment substantially differs from the first embodiment in the process of step S55.
[0047] In the following, the differences from the first embodiment will be mainly described, and the rest will not be described. In step S4 of the flowchart in the first embodiment described above, it is determined whether there is data from the previous inspection for the "same device installed in the same place" as the target device specified in step S2, and in steps S10 and S12, an input window corresponding to the previous data of the same device is displayed on the display unit 15 of the mobile terminal 10.
[0048] In contrast, in step S55 of this embodiment, "the same device installed in a different location" and "the same type of device" are taken as devices corresponding to the target device designated in step S52, and the presence or absence of previous data is determined. Here, "the same device installed in a different location" refers to devices that have the same model or model number, but are installed in different locations, and "the same type of device" refers to devices that were installed at the same time, devices that are installed in locations that are close in position, devices that are installed in similar environments, and devices that are used similarly, and one or more "the same device installed in a different location" or "the same type of device" for each device are registered and stored in advance in the memory 3 of the server 1.
[0049] In step S55, it is determined whether or not there is previous data for at least one of the "same device installed in a different location" or "same type of device." Then, in step S56, if a priority monitoring check has been recorded for any of the "same device installed in a different location" or "same type of device" for which there is previous data, the process proceeds from step S56 to step S62, where an input window identical to the previous data in which the priority monitoring check has been recorded is displayed, and the input window with the priority monitoring check is highlighted with a thick frame.
[0050] In other words, if there is recorded data of key monitoring checks in the previous data of "the same equipment installed in a different location" or "equipment of the same type," there is a high possibility that a similar malfunction will occur in the current target equipment at the same time. Therefore, by reflecting and highlighting the key monitoring checks of the previous data of the same type of equipment in the input window of the current input form, attention is drawn to specific inspection areas that should be monitored with priority, and oversights and input errors are easily and reliably prevented. Therefore, the recording of test results that are repeatedly and continuously performed can be performed accurately and efficiently.
[0051] If in step S56 no priority monitoring check has been recorded for either the "same equipment installed in different locations" or the "same type of equipment" for which there is previous data, the process proceeds from step S56 to step S60 and displays the same input window as the one with the largest number of input windows among the previous data for the "same equipment installed in different locations" or the "same type of equipment."
[0052] As in the first embodiment, first, it is determined whether or not there is previous data for "the same device installed in the same location," and if there is, the previous data is used for subsequent processing; if there is no previous data, it is determined whether or not there is previous data for "the same device installed in a different location" or "the same type of device" as in this embodiment, and thereafter, the processing of this embodiment is executed.
[0053] [Other embodiments] In the above-described embodiment, an inspection system for various equipment installed in an industrial plant was used as an example of a defect inspection, but this is not limited to this, and the defect inspection system, defect inspection method, and defect inspection program of the present application can be applied to any inspection that is performed repeatedly and continuously.
[0054] Furthermore, the screen displays 40, 50, 60, 70, and 80 shown in the above-described embodiment are examples of the display contents on the display unit 15 (display means), and the layout and design, etc. of the drawing of the target device, the input window (test result input area) or the key monitoring check unit (key monitoring information input area) are not limited to these, and other layouts and designs, etc. may be adopted.
[0055] Furthermore, in the above-described embodiment, it was determined whether or not there was previous data for "the same target device installed in the same location," "the same device installed in different locations," or "the same type of device" (step S4 in FIG. 2, step S55 in FIG. 7), but it is also possible to determine not only the previous data, but also the presence or absence of data from an inspection prior to the previous one.
[0056] In the above embodiment, the bold frame 81f of the input window is used as an example of highlighting the input window (test result input area), but other display formats can be used as long as they draw the attention of the inspection operator to a specific inspection site that should be monitored with priority in the future. For example, the input window (test result input area) may be highlighted using a color different from other display parts on the screen. Also, the input window (test result input area) may be highlighted by blinking.
[0057] In the above embodiment, an example was shown in which one highlight was displayed on the screen, but if there were multiple input windows in which key monitoring checks were entered in the previous data, multiple input windows will be highlighted accordingly in the current input form as well.
[0058] Furthermore, in the above embodiment, an example was shown in which only a front view of the target device was displayed in the input window (examination result input area), but drawings in other directions, such as a back view and a side view, may be displayed along with the front view. Also, a configuration may be adopted in which only one drawing is displayed and a drawing in another direction can be selected and the display can be switched. In this case, the display of the input window (examination result input area), which can be displayed in association with the examination site of the displayed drawing, can also be switched in response to the switching of the drawing. Also, a three-dimensional view of the target device can be displayed in the input window (examination result input area). [Explanation of symbols]
[0059] 2: Server control unit 3: Memory 15: Display unit 21: Equipment 41, 42, 43, 44, 45, 61, 62, 63, 64, 65, 71, 72, 73, 74, 75, 81, 82, 83, 84, 85: Input window 41b, 45b, 71b, 81b: Key monitoring check section 81f: Bold frame
Claims
1. A defect inspection system for use in defect inspection for inspecting an object to be inspected two or more times continuously, comprising: a display means for displaying a test result input area associated with an inspection site in a specific inspection object, the test result being input therein, and a priority monitoring information input area into which priority monitoring information indicating that the specific inspection site should be monitored with priority in the future is input; A storage means for storing the input inspection results and priority monitoring information of the inspection object each time; a control means for, when displaying an inspection result input area for a current inspection for a specific inspection object on a display means, if priority monitoring information has been input for the same inspection object installed at the same location in the previous or previous inspection results, highlighting the frame of the inspection result input area having a blank space before the inspection results were input to reflect the priority monitoring information, and for, when priority monitoring information has not been input for the same inspection object installed at the same location in the previous or previous inspection results and priority monitoring information has been input for an identical device or a device of the same type as the inspection object installed at a different location, highlighting the frame of the inspection result input area having a blank space before the inspection results were input to reflect the priority monitoring information; A defect inspection system comprising:
2. A defect inspection method for inspecting a defect of an inspection object two or more times continuously, comprising: the display means displays a test result input area associated with an inspection site in a specific inspection object, in which the inspection result is input, and a priority monitoring information input area in which priority monitoring information indicating that the specific inspection site should be monitored with priority in the future is input; The storage means stores the inspection results and the priority monitoring information of the inspection object each time they are input, When displaying an inspection result input area for a specific inspection object on the display means for the current inspection, if priority monitoring information has been input for the same inspection object installed at the same location in the inspection results from the previous or previous inspection, the control means highlights the frame of the inspection result input area having a blank space before the inspection results were input to reflect the priority monitoring information, and if priority monitoring information has not been input for the same inspection object installed at the same location in the inspection results from the previous or previous inspection, and priority monitoring information has been input for an identical device as the inspection object or a device of the same type as the inspection object installed at a different location, the control means highlights the frame of the inspection result input area having a blank space before the inspection results were input to reflect the priority monitoring information. A defect inspection method comprising:
3. A defect inspection program for use in defect inspection for inspecting a defect of an inspection target two or more times in succession, a display function for displaying a test result input area associated with an inspection site in a specific inspection subject, the test result being input therein, and a priority monitoring information input area into which priority monitoring information indicating that the specific inspection site should be monitored with priority in the future is input; A memory function that stores the test results and key monitoring information of the test subjects entered each time; a control function for displaying an inspection result input area for a current inspection for a specific inspection object on a display means, where, if priority monitoring information has been input for the same inspection object installed at the same location in the previous or previous inspection results, highlighting the frame of the inspection result input area having blank spaces before the inspection results were input to reflect the priority monitoring information, and where, if priority monitoring information has not been input for the same inspection object installed at the same location in the previous or previous inspection results and priority monitoring information has been input for the same equipment as the inspection object installed at a different location or equipment of the same type as the inspection object, highlighting the frame of the inspection result input area having blank spaces before the inspection results were input to reflect the priority monitoring information; A defect inspection program that causes a computer to execute the above steps.
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