SCANNER HAVING FLEXIBLE PROBE
20220317093 ยท 2022-10-06
Assignee
- FOUNDATION FOR RESEARCH AND BUSINESS, SEOUL NATIONAL UNIVERSITY OF SCIENCE AND TECHNOLOGY (Seoul, KR)
- Korea Inspection Eng.Co.,Ltd (Seoul, KR)
Inventors
- Ik Keun Park (Seoul, KR)
- Yu Min Choi (Seoul, KR)
- Seong Jin LIM (Seoul, KR)
- In Gon JUNG (Gyeonggi-do, KR)
- Hye Jin Park (Seoul, KR)
Cpc classification
G01N29/262
PHYSICS
International classification
Abstract
The present invention relates to a scanner having a flexible probe which is an apparatus capable of being utilized for an inspection on a weld zone of a general ferrite material and a stainless material and allowing an inspection to be performed on a fitting weld zone where it is difficult for a general phased array ultrasonic testing (PAUT) probe to approach. A scanner having a flexible probe according to the present invention includes a probe fixing body (110) which moves while coming into contact with a surface of a bent fitting pipe and to which a probe body (101) is fixed, a flexible connecting chain part (120) installed to be connected to one end of the probe fixing body (110) and having a freely bendable structure, a sensor installation part (130) installed on an end of the flexible connecting chain part (120) and configured to move while pressed against the surface of the fitting pipe, a sensor (140) which is connected to the probe body (101) in a flexible state and of which an end is installed on the sensor installation part (130) and scans a weld zone of the fitting pipe, and an encoder part (150) installed to be connected at one side of the probe fixing body (110) and configured to move while pressed against the fitting pipe and detect a moving distance and a position.
Claims
1. A scanner having a flexible probe, comprising: a probe fixing body (110) which moves while coming into contact with a surface of a bent fitting pipe and to which a probe body (101) is fixed; a flexible connecting chain part (120) installed to be connected to one end of the probe fixing body (110) and having a freely bendable structure; a sensor installation part (130) installed on an end of the flexible connecting chain part (120) and configured to move while pressed against the surface of the fitting pipe; a sensor (140) which is connected to the probe body (101) in a flexible state and of which an end is installed on the sensor installation part (130) and scans a weld zone of the fitting pipe; and an encoder part (150) installed to be connected at one side of the probe fixing body (110) and configured to move while pressed against the fitting pipe and detect a moving distance and a position.
2. The scanner of claim 1, wherein the probe fixing body includes ball plungers provided at four positions of a lower surface of the probe fixing body and configured to slidably move the probe fixing body along the surface of the fitting pipe.
3. The scanner of claim 1, wherein the flexible connecting chain part (120) includes: a chain (122) that is adjustable in length due to having a structure formed with a plurality of joints; and a sensor seating plate (124) which is installed to be connected to an end of the chain and on which the end of the sensor is seated.
4. The scanner of claim 3, wherein the sensor installation part (130) includes: a press-applying part coupled to the sensor seating plate and configured to apply a uniform pressure to the end of the sensor; an elastic coupling part that elastically couples the press-applying part to the sensor seating plate; and a wheel installed to be coupled to a side portion of the press-applying part and configured to move the press-applying part by rotating in a state in which the wheel is pressed against the surface of the fitting pipe by a magnetic force.
5. The scanner of claim 1, wherein the encoder part includes: an encoder coupled to the probe fixing body and configured to detect the moving distance and the position while moving along the surface of the fitting pipe; and an encoder coupling part that couples the encoder to the probe fixing body so that an angle between the encoder and the probe fixing body is adjustable.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The above and other objects, features and advantages of the present invention will become more apparent to those of ordinary skill in the art by describing exemplary embodiments thereof in detail with reference to the accompanying drawings, in which:
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS
[0019] Hereinafter a specific embodiment of the present invention will be described in detail with reference the accompanying drawings.
[0020] As illustrated in
[0021] First, as illustrated in
[0022] In addition, as illustrated in
[0023] Next, as illustrated in
[0024] To this end, in the present embodiment, the flexible connecting chain part 120 may include a chain 122 and a sensor seating plate 124 as specifically illustrated in
[0025] Next, as illustrated in
[0026] Next, as illustrated in
[0027] To this end, in the present embodiment, the sensor installation part 130 may include a press-applying part 132, elastic coupling parts 134, and wheels 136 as specifically illustrated in
[0028] In addition, the wheel 136 is a component installed to be coupled to a side portion of the press-applying part 132 and configured to move the press-applying part 132 by rotating in a state in which the wheel 136 is pressed against the surface of the fitting pipe 2 by a magnetic force.
[0029] Next, as illustrated in
[0030] Next, as illustrated in
[0031] Accordingly, in the present embodiment, the encoder part 150 includes an encoder 152 and an encoder coupling part 154 as specifically illustrated in
[0032] According to a scanner having a flexible probe, there is an advantage that an apparatus can be utilized for an inspection on a weld zone of a general ferrite material and a stainless material and can perform an inspection on a fitting weld zone where it is difficult for a general phased array ultrasonic testing (PAUT) probe to approach.
[0033] That is, there is an advantage in that data can be obtained in real time and analyzed at a weld zone formed on fitting pipes having a curvature through a flexible probe, to which a phased array ultrasonic testing (PAUT) method is applied, without using a wedge necessarily used for a conventional inspection.