ULTRASONIC PROBE AND ULTRASONIC TEST SYSTEM Russian patent published in 2020 - IPC G01N29/04 

Abstract RU 2732102 C2

FIELD: monitoring and measuring equipment.

SUBSTANCE: probe (100) for ultrasonic system for nondestructive testing of material in process of relative movement of tested object and probe in testing direction comprises housing (110), which sets the longitudinal direction (L), which coincides with the testing direction, and the transverse direction (Q), perpendicular to the testing direction. Probe also includes a group of transceiving units (150-1, 150-2, 150-3). Each transceiving unit comprises transmitting component (T1, T2, T3) and corresponding receiving component (R1, R2, R3) and sets effective width (PB1, PB2, PB3) of testing in transverse direction (Q) with provision, in process of relative movement of tested object and probe in testing direction, possibility of testing track with width, equal to effective width of testing. Transceiving units form at least two rows (155-1, 155-2) located in longitudinal direction (L) one after another and having length in transverse direction (Q). Transceiving units from different rows are mutually shifted in transverse direction (Q) so that receiving components (R1, R2, R3) of mutually shifted transceiving units are located with mutual overlap in coverage area (U1-2, U2-3), so that the set of transceiving units provides a common effective scanning width (RRB) by means of a probe having no gaps. All transceiving units are located in probe housing (110). All transmitting components (T1, T2, T3) are electrically connected to common terminal transmitting component (AT) of the probe.

EFFECT: proposed are ultrasonic probe and ultrasonic test system.

12 cl, 5 dwg

Similar patents RU2732102C2

Title Year Author Number
METHOD AND DEVICE FOR ULTRASONIC FLOW METHOD MEASUREMENT AND LAYOUT DEVICE FOR CONTROLLING ULTRASONIC FLOW MEASUREMENTS BY PRACTICAL METHOD 2015
  • Funck, Bernhard
RU2660011C1
AUTOMOTIVE DEVICE 2005
  • Milark Andreas
  • Rol'Fs Mikhel'
  • Khlosta Sven
RU2380725C2
ULTRASONIC TESTING METHOD AND EQUIPMENT FOR SAID METHOD 2009
  • Ueda Josio
  • Jamano Masaki
  • Ikeda Masami
RU2447431C1
SMART ULTRASOUND SYSTEM 2018
  • Vekhter-Shtele, Irina
  • Veber, Frank, Mikhel
  • Byurger, Kristian
  • Shtele, Tomas, Khejko
RU2759235C2
ROTARY TRANSFORMER FOR ULTRASONIC INSPECTION ROTARY DEVICE AND ULTRASONIC INSPECTION ROTARY DEVICE WHERE THIS TRANSFORMER IS USED 2012
  • Sibata Sodzi
  • Fudzikake Joiti
  • Khatabara Kunikhiko
  • Isikhara Mitiaki
  • Mitsui Sokhken
RU2544304C1
METHOD FOR ULTRASONIC MEASUREMENT AND ULTRASONIC MEASURING DEVICE 2013
  • Odzeki Takafumi
  • Iidzuka Yukinori
RU2592044C1
METHOD OF DIAGNOSTICS BY MEANS OF ULTRASONIC, SONIC AND ELECTROMAGNETIC WAVES 2007
  • Kutushov Mikhail Vladimirovich
RU2378989C2
ULTRASONIC FLAW DETECTION DEVICE AND ULTRASONIC FLAW DETECTION METHOD 2019
  • Yamamoto, Setsu
  • Semboshi, Jun
  • Sugawara, Azusa
  • Tsuchihashi, Kentaro
  • Otsuka, Masaru
RU2702804C1
ULTRASONIC SPIROGRAPH 2023
  • Soldatov Andrei Alekseevich
  • Tolmachev Ivan Vladislavovich
  • Stasevskii Viktor Igorevich
  • Kaverina Irina Sergeevna
  • Brazovskii Konstantin Stanislavovich
RU2821824C1
METHOD FOR ULTRASONIC MATERIAL STRUCTURE INSPECTION 2010
  • Sokolov Igor' Vjacheslavovich
  • Kachanov Vladimir Kliment'Evich
  • Kartashev Vladimir Gerasimovich
  • Shalimova Elena Vladimirovna
  • Sinitsyn Aleksej Alekseevich
RU2442154C1

RU 2 732 102 C2

Authors

Shmajsser Mikhel

Kronenbitter Mikhel

Dates

2020-09-11Published

2017-03-27Filed