Tranverse Wave Angle Beam Probe

Tranverse Wave Angle Beam Probe

The YUSHI Tranverse Wave Angle Beam Probe is widely used for flaw detection or welding inspection,such as cracks,holes and pores.. The tranverse wave is then reflected by the flaws in the test object. Compared to longitudinal waves, shear waves have lower attenuation and shorter wavelength, which makes them capable of detecting smaller defects.
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Description
Technical Parameters
General Introduction

 

The YUSHI Tranverse Wave Angle Beam Probe is widely used for flaw detection or welding inspection,such as cracks,holes and pores.. The tranverse wave is then reflected by the flaws in the test object. Compared to longitudinal waves, shear waves have lower attenuation and shorter wavelength, which makes them capable of detecting smaller defects.YUSHI can provide customers with various of frequency tranverse wave probes and supply OEM service.

 

 

Operating Principle

 

The shear wave oblique probe is a transverse wave detection, which is a probe with an incident angle between the first critical angle and the second critical angle and the refracted wave is a pure shear wave, which is mainly used to detect defects perpendicular to the detection surface or at a certain angle, and is widely used in the detection of welds, pipes and forgings

 

Why are the YUSHI Tranverse Wave Probe more sensitive?

 

● Adopt piezoelectric wafers made of composite materials

● Selectable connector

● Surface anodic oxidation process

● PMMA-Wearable Probe Wedge

product-795-431

 

The Application of Tranverse Wave Probe

 

General welding cracks Inspection

Pipeline,pressure vessels

Axle,casting,forging

Railway wheels and rails

Pumps,valve sleeves

Turbine blades

product-796-434

 

Probe Specification

 

Model

Frequency

Size of element

Angle of refraction

Near field length

MHz

Mm.

In.

Steel

mm

in

2.5P13x13K1

2.5

13x13

.51x.51

45°

44

1.7

2.5P13x13K1.5

2.5

13x13

.51x.51

56.3°

44

1.7

2.5P13x13K2

2.5

13x13

.51x.51

63.4°

44

1.7

2.5P13x13K2.5

2.5

13x13

.51x.51

68.2°

44

1.7

2.5P13x13K3

2.5

13x13

.51x.51

71.6°

44

1.7

5P13x13K1

5

13x13

.51x.51

45°

88

3.5

5P13x13K1.5

5

13x13

.51x.51

56.3°

88

3.5

5P13x13K2

5

13x13

.51x.51

63.4°

88

3.5

5P13x13K2.5

5

13x13

.51x.51

68.2°

88

3.5

5P13x13K3

5

13x13

.51x.51

71.6°

88

3.5

2.5P10x16K1

2.5

10x16

.39x.63

45°

42

1.7

2.5P10x16K1.5

2.5

10x16

.39x.63

56.3°

42

1.7

2.5P10x16K2

2.5

10x16

.39x.63

63.4°

42

1.7

2.5P10x16K2.5

2.5

10x16

.39x.63

68.2°

42

1.7

2.5P10x16K3

2.5

10x16

.39x.63

71.6°

42

1.7

5P10x16K1

5

10x16

.39x.63

45°

84

3.3

5P10x16K1.5

5

10x16

.39x.63

56.3°

84

3.3

5P10x16K2

5

10x16

.39x.63

63.4°

84

3.3

5P10x16K2.5

5

10x16

.39x.63

68.2°

84

3.3

5P10x16K3

5

10x16

.39x.63

71.6°

84

3.3

2.5P9x9K1

2.5

9x9

.35x.35

45°

21

0.8

2.5P9x9K1.5

2.5

9x9

.35x.35

56.3°

21

0.8

2.5P9x9K2

2.5

9x9

.35x.35

63.4°

21

0.8

2.5P9x9K2.5

2.5

9x9

.35x.35

68.2°

21

0.8

2.5P9x9K3

2.5

9x9

.35x.35

71.6°

21

0.8

5P9x9K1

5

9x9

.35x.35

45°

42

1.7

5P9x9K1.5

5

9x9

.35x.35

56.3°

42

1.7

5P9x9K2

5

9x9

.35x.35

63.4°

42

1.7

5P9x9K2.5

5

9x9

.35x.35

68.2°

42

1.7

5P9x9K3

5

9x9

.35x.35

71.6°

42

1.7

2.5P8x12K1

2.5

8x12

.31x.47

45°

25

1.0

2.5P8x12K1.5

2.5

8x12

.31x.47

56.3°

25

1.0

2.5P8x12K2

2.5

8x12

.31x.47

63.4°

25

1.0

2.5P8x12K2.5

2.5

8x12

.31x.47

68.2°

25

1.0

2.5P8x12K3

2.5

8x12

.31x.47

71.6°

25

1.0

5P8x12K1

5

8x12

.31x.47

45°

50

2.0

5P8x12K1.5

5

8x12

.31x.47

56.3°

50

2.0

5P8x12K2

5

8x12

.31x.47

63.4°

50

2.0

5P8x12K2.5

5

8x12

.31x.47

68.2°

50

2.0

5P8x12K3

5

8x12

.31x.47

71.6°

50

2.0

 

product-796-429
product-796-431
product-795-434

 

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