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Flaw detector Product List and Ranking from 44 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

Flaw detector Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. 菱電湘南エレクトロニクス 検査計測事業 Kanagawa//Other manufacturing
  2. 日本ベーカーヒューズ株式会社&ベーカーヒューズ・エナジージャパン株式会社  (旧)GEセンシング&インスペクション・テクノロジーズ株式会社 & GEエナジー・ジャパン株式会社 Tokyo//Testing, Analysis and Measurement
  3. KS-NET Osaka//Industrial Machinery
  4. 4 Eddyfi Technologies ジャパンオフィス Osaka//Industrial Electrical Equipment
  5. 5 レックス Hyogo//Testing, Analysis and Measurement

Flaw detector Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. Digital Ultrasonic Flaw Detector 'UI-29' Latest Model 菱電湘南エレクトロニクス 検査計測事業
  2. Portable Ultrasonic Flaw Detector USM36 日本ベーカーヒューズ株式会社&ベーカーヒューズ・エナジージャパン株式会社  (旧)GEセンシング&インスペクション・テクノロジーズ株式会社 & GEエナジー・ジャパン株式会社
  3. Portable Ultrasonic Flaw Detector Krautkramer USM100 日本ベーカーヒューズ株式会社&ベーカーヒューズ・エナジージャパン株式会社  (旧)GEセンシング&インスペクション・テクノロジーズ株式会社 & GEエナジー・ジャパン株式会社
  4. 4 Ultrasonic flaw detector 'USM38 JE' KS-NET
  5. 5 Digital Ultrasonic Flaw Detector 'UI-S7α' 菱電湘南エレクトロニクス 検査計測事業

Flaw detector Product List

331~345 item / All 373 items

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Material Surface Acoustic Diagnosis Device 'USH-SD/SN'

Display of material surface diagnostics! There are numerous implementation results in fields such as aerospace and automotive.

We would like to introduce the material surface acoustic diagnosis device 'USH-SD/SN' handled by GINAS Corporation. It displays diagnostics of material surfaces such as metals and rubber using SH ultrasonic sensors. It can be used for measuring hardening depth, hardness, plating thickness, residual stress, coating thickness, metal fatigue, and deterioration assessment. 【Features】 ■ Applicable in fields such as aerospace, automotive, and materials ■ Displays diagnostics of material surfaces such as metals and rubber using SH ultrasonic sensors ■ Usable for measuring hardening depth, hardness, plating thickness, residual stress, coating thickness, metal fatigue, and deterioration assessment *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Testing Equipment and Devices

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Detection defect size of airborne ultrasonic testing.

Ultrasound propagates through the air without the need for a coupling medium! It can detect materials that cannot be applied to water or oil, etc.

In ultrasonic testing, a contact medium (such as water, oil, or glycerin) was necessary to transmit ultrasonic waves to the test specimen; however, this testing method allows ultrasonic waves to propagate through the air without the need for a contact medium. Therefore, it can detect items that cannot be tested with water or oil. Our company offers the non-destructive testing image processing system, the air ultrasonic flaw detection device 'GSCAN type.AERO', which can conduct material inspections without a contact medium. 【Features】 ■ Air ultrasonic waves do not require a contact medium compared to the water immersion method, which is an advantage, but the condition of the defect size in air ultrasonic flaw detection should be confirmed. ■ A resin plate test specimen with paper artificial defects of φ9mm, φ7mm, φ5mm, and φ3mm was prepared, with the transmitting and receiving probes arranged opposite each other for flaw detection, and the detection status was confirmed. ■ For artificial defects up to φ3mm, the height of the transmitted pulse decreased, but it was still sufficiently possible to distinguish between the defect and the sound part. *For more details, please refer to the PDF document or feel free to contact us.

  • Image Processing Equipment
  • Flaw detection testing

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Aerial ultrasonic testing of plywood.

Identifying joints and defective joints! A significant decrease in the transmission pulse of defective joints was observed.

The issue is the bonding defects (delamination between layers) that occur during the plywood lamination process, and the aim is to detect them. We confirmed the condition of the adhesive joints using air-coupled ultrasonic testing. In the case of bonding defects (delamination between layers), the transmitted pulse decreases, allowing us to distinguish between the bonded area (blue) and the defective area (yellow/red) in the testing results. Additionally, the bonding areas of the plywood are less affected by material noise, and the transmission rate is good, making the decrease in the transmitted pulse of the defective areas clearly observable. Our company offers the air-coupled ultrasonic testing device 'GSCAN type.AERO,' which allows for non-destructive testing and image processing of materials without contact. 【Features】 ■ In the experiment, plywood (450mm long × 150mm wide × 18mm high) was prepared, and the transmitting probe and receiving probe were arranged opposite each other, with the plywood placed in between for testing. ■ The transmitted ultrasound passes through the plywood, and the ultrasonic signals are received. ■ In the case of bonding defects, part or all of the ultrasound is obstructed, resulting in a lower height of the received transmitted pulse compared to the sound areas. *For more details, please refer to the PDF document or feel free to contact us.

  • Image Processing Equipment
  • Flaw detection testing

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Detection of defects such as "cracks" and "fissures" in building materials (refractory materials).

Attach paper artificial defects of φ18mm and φ15mm and check the detection status! It is sufficiently possible to distinguish them from healthy parts.

Until now, due to significant transmission loss to the test specimen, it was not possible to inspect thick materials with high attenuation. However, high-sensitivity inspection has become possible. In the experiment, refractory materials (300mm long × 300mm wide × 75mm thick) were prepared, and artificial defects made of paper with diameters of 18mm and 15mm, simulating cracks and fissures, were attached to check the detection status. As a result, it was found that for the artificial defects of 18mm and 15mm, the height of the transmitted pulse decreased, but sufficient identification from the sound parts was possible. Our company handles the airborne ultrasonic testing device 'GSCAN type.AERO,' which allows for non-destructive testing of materials using a non-contact medium. 【Features】 ■ High-sensitivity inspection has become possible, and in the experiment, refractory materials were prepared, and artificial defects made of paper with diameters of 18mm and 15mm, simulating cracks and fissures, were attached to check the detection status. ■ For the artificial defects of 18mm and 15mm, the height of the transmitted pulse decreased, but sufficient identification from the sound parts was possible. *For more details, please refer to the PDF document or feel free to contact us.

  • Image Processing Equipment
  • Flaw detection testing

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A Comprehensive Guide to Nondestructive Testing and Ultrasonic Testing Basics Taught by Professionals!

"Types and Characteristics of Non-Destructive Testing" and "Utilization of Inline Ultrasonic Imaging Processing Systems," among others, provide a detailed explanation of non-destructive testing and ultrasonic flaw detection!

This document provides an explanation of the basic knowledge related to non-destructive testing and ultrasonic flaw detection. It includes information on non-destructive testing, the types and characteristics of non-destructive testing, the fundamentals of ultrasound, and the generation and reception of ultrasound. 【Contents (Excerpt)】 ■ What is non-destructive testing ■ Types and characteristics of non-destructive testing ■ Fundamentals of ultrasound ■ Generation and reception of ultrasound ■ Reception of ultrasound *For more details, please refer to the PDF document or feel free to contact us.

  • Contract Inspection

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Overview and Features of the Ultrasonic Scanner Device GSCAN System Rev. 1.0

Introduction of materials featuring image processing examples, reflection and transmission methods, and automatic aggregation functions!

This document introduces the overview and features of the ultrasonic scanner device "GSCAN System." It clearly presents various aspects, including image processing examples, freely connectable probes, automatic aggregation functions, and backlash-free direct motion probe rotation mechanisms, along with diagrams and photos. Please take a moment to read it. 【Contents (partial)】 ■ Overview ■ Image processing examples ■ Reflection and transmission methods supported ■ Freely connectable probes ■ High-speed processing and signal output (online compatible) *For more details, please refer to the PDF document or feel free to contact us.

  • Scanner
  • Other inspection equipment and devices

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I would like to try an ultrasound examination. We accept trial test commissioned examinations!

You can conduct trial tests to check for any defects in products or materials under development, as well as before implementing a full inspection system for the manufacturing process and finished products.

We will respond to such requests! "I want to commercialize the product if there are no issues with the materials or products under development, but I'm worried about defects. I want to know the internal conditions without destruction." "We have decided to conduct 100% inspection in the manufacturing process and would like to introduce an automated non-destructive testing system, but first, I want to test whether defects can be properly detected." After conducting the contracted tests, we will issue a report and provide useful advice based on the results obtained from the inspection.

  • Contract Inspection
  • Defect Inspection Equipment

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Presentation of easy-to-understand lecture materials: Introduction to ultrasonic testing technology

This is an explanation of the ultrasonic testing technology that forms the foundation of all our products. You will also understand the unique challenges associated with ultrasound.

This is the material from the presentation given by our company's director of technology at the corporate group meeting. The ultrasonic testing technology is explained clearly with various examples, and various challenges are also discussed. Our company will continue to provide solutions while addressing these challenges.

  • Other inspection equipment and devices

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"AT1320A" Food Radioactivity (Cesium) Screening System

Analyzing the radioactivity concentrations of I-131, Cs-134, Cs-137, and K-40!

We handle the 'AT1320A' food radiation screening system manufactured by ATOMTEX, which has many years of experience in the development and manufacturing of radiation measurement instruments. The 'AT1320A' food radiation screening system measures the radioactivity (Cs-137) of water samples (1 liter) in the range of 3.7 (*1) to 100,000 Bq/kg. Please feel free to contact us if you have any requests. 【Features】 ■ Simple spectrometer using a 2.5”×2.5” NaI (Tl) detector ■ Uses 1-liter Marinelli containers, as well as 0.5 and 0.1-liter flat containers ■ Equipped with a 50mm thick lead shield ■ Automatic LED stabilization function ■ Automatic background subtraction function, etc. *For more details, please download the PDF or feel free to contact us.

  • Radioactive material testing

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Simple repair material (Fast Repair)

Customizable! The powder and liquid come in one package, so there's no need to measure!

We would like to introduce our "Simple Measure Material (Fast Repair)" that prevents water intrusion and the expansion of peeling areas. It can be mixed in the bag and squeezed out for use, so no tools are required. With a curing time of 10 minutes and a usable time of 3 hours, it can be used even in busy work environments. Additionally, it is available in colors such as brick red, blue, yellow, green, and white to match bricks and tiles. Fine adjustments are also possible, so please feel free to consult with us. 【Features】 ■ Powder and liquid in one package ■ Mixed in the bag and squeezed out for use ■ Usable even without much strength ■ Curing time of 10 minutes, usable time of 3 hours ■ Custom-made options available *For more details, please refer to the PDF document or feel free to contact us.

  • Repair Agent

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【Delivery Example】Copper Rod Ultrasonic Inspection Device

Detecting internal defects in round steel bars using ultrasound! The results are displayed on the control panel monitor.

We would like to introduce a case study of the inspection equipment "Copper Rod Ultrasonic Inspection Device" that we manufactured. Using an ultrasonic probe fixed to a jig, we perform water immersion vertical flaw detection from the circumferential direction of the workpiece to detect internal defects. After setting the target workpiece, the system automatically transports and inspects the workpieces continuously, allowing for sorting into OK and NG categories based on the inspection results. 【Features】 ■ The inspection results are displayed on the monitor of the control and operation panel. ■ The data of the inspection results is saved on a data processing PC, allowing for verification after inspection. *For more details, please refer to the related links or feel free to contact us.

  • Flaw detection testing

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[Case Study] Forged Cross-Roll Ultrasonic Testing Device

By placing a sensor on the inspection point and rotating the workpiece, inspection around the entire circumference is possible!

We would like to introduce a case study of the inspection equipment we manufactured, the "Forged Cross Roll Ultrasonic Flaw Detector." This device performs ultrasonic testing to detect cracks that occur inside the shaft of the forged cross roll. By using simple jigs and commercially available portable flaw detectors, it is also possible to establish a simplified inspection system. 【Features】 ■ Full circumferential inspection is possible due to work rotation. *For more details, please refer to the related links or feel free to contact us.

  • Flaw detection testing
  • Other inspection equipment and devices

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Technical Data: Measurement of Defect Depth in Composite Materials - Comparison of Ultrasound and Infrared

Measurement of Defect Depth in Composite Materials: Data Comparison between Ultrasonic Method and Infrared Method

[Technical Information] Measurement of Defect Depth in Composite Materials: A Comparison of Data between Ultrasonic and Infrared Methods. ■□■Content of the Document■□■ In recent years, the application range of composite materials has expanded beyond artificial satellites to include aircraft. This document summarizes a comparison of non-destructive testing methods for CFRP, which is representative of composite materials. During the manufacturing phase of aircraft, phased array ultrasonic deep scanning is mainstream; however, this time, we conducted a scanning test using a 25MHz focused deep probe as a precision inspection and compared the results with those obtained from phase analysis using pulsed light excitation from infrared. ⇒ For more details, please download the catalog and read further. For inquiries, please contact us.

  • Company:KJTD
  • Price:Other
  • Technical and Reference Books

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[Technical Document] Development of an Online Inspection Phased Array UT Device

Development of an online inspection UT device using ultrasonic phased array technology.

We have developed an online inspection UT device using an ultrasonic phased array method. Instead of the conventional rotating probe method, array probes are arranged around the entire circumference of pipes and round bars, allowing for electronic rotation of the ultrasonic sound field to perform full surface inspection. This significantly simplifies the mechanism and improves maintainability. Additionally, it can accommodate a wide range of focus points, enabling the detection of smaller defects and improving the signal-to-noise ratio. ⇒ For more information, please download the catalog to read further. For details, please contact us.

  • Company:KJTD
  • Price:Other
  • Other inspection equipment and devices

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Technical Data: High-Speed Ultrasonic Testing Scanner

The ultrasonic flaw detection imaging device can display inspection results with easy-to-understand image data.

One method for detecting internal defects in materials is the use of ultrasound. Among these, ultrasonic flaw detection imaging devices, which can display inspection results as easily understandable image data, have now spread across various fields in the industry and are being used effectively. Recently, we developed a new system called the "High-Speed Ultrasonic Flaw Detection Scanner," which incorporates a portable phased array ultrasonic flaw detector into a conventional single-probe flaw detection scanner. By using this device, it has become possible to detect small defects at the level of several tens of micrometers and to perform high-speed flaw detection on large materials. In this article, we will introduce the features of the high-speed ultrasonic flaw detection scanner that utilizes the latest phased array technology. ⇒ For more details, please download the catalog and read further. For inquiries, please contact us.

  • Company:KJTD
  • Price:Other
  • Other inspection equipment and devices

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