Several quality classes can be applied to the inspection of bars. The applicable quality class must be agreed between the buyer and the supplier. Tables 2 and 3 detail the registration level and acceptance criteria applicable to the three quality classes for normal probes. |
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Table-1. Scanning Scope with Normal Probes |
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Shape |
Scanning Gridlines a, b |
% Scan a, b |
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Diameter D or Thickness t, mm |
Scan Line c |
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Round |
D ≤ 200 |
2 directions at 90º |
100% scanning in an area of at least 180º on the cylindrical surface |
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200 < D ≤ 400 |
3 directions at 60º or 120º |
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Tetragon |
t ≤ 150 |
1 line at 2 surface |
100% scanning from two surfaces perpendicular to each other |
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150 < t ≤ 400 |
3 line at 2 surface d |
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Hexagon |
t ≤ 150 |
1 line at 2 surface |
100% scanning from at least half adjacent surface |
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150 < t ≤ 400 |
1 line on at least half of the faces |
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a) Additional screening can be done if specifically specified in the inquiry or order. |
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b) 100% inspection means at least 10% overlap on consecutive probe lines. |
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c) For Type 1a or 1b, if the presence of a hole prevents reaching the opposite surface, the number of scan lines should be doubled symmetrically. |
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d) The distance between the guide lines should be equal to the wall thickness for parts up to 200 mm thick. |
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Manual scanning speed should not exceed 150 mm/s. |
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Classification of Discontinuities |
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Discontinuities are classified according to ecodynamic models as follows. |
a) |
Point Discontinuity; |
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If the echodynamic pattern is less than or equal to 1 and / or a beam width of –6 dB, it is called point discontinuity. |
b) |
Extended Discontinuity; |
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If the echodynamic pattern is greater than 2 and / or the dimension –6 dB width, it is called extended discontinuity. |
c) |
Isolated Discontinuities; |
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If the distance d between points corresponding to the maximum of indications of adjacent discontinuities exceeds 40 mm, they are called isolated discontinuities. |
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d) |
Grouped Discontinuities; |
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If the distance d between points corresponding to the maximum of indications for adjacent discontinuities is less than or equal to 40 mm, they are called grouped discontinuities. |
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Table-2. Quality Classes, Registration Level and Acceptance Criteria for Ferritic and Martensitic Steel Bars |
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Parameters |
Quality Classes |
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1 |
2 |
3 |
4 |
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Recording Level |
> 8 |
> 5 |
> 3 |
> 2 |
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Equivalent disc-shaped reflector diameter (EFBH) deq mma |
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The rate of decrease in rear wall echo height, R b,c |
≤ 0,10 |
≤ 0,30 |
≤ 0,50 |
≤ 0,50 |
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Accept conditions |
≤ 12 |
≤ 8 |
≤ 5 |
≤ 3 |
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EFBH (for isolated point discontinuities) deq mma |
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EFBH (for large or clustered point discontinuities) deq mma |
≤ 8 |
≤ 5 |
≤ 3 |
≤ 2 |
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a) deq = Equivalent disc-shaped reflector diameter. |
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b) R = Fn / F o,n |
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Here; |
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For t ≥ 60 mm, n=1; |
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For t < 60 mm, n=2; |
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Fn = amplitude of the nth back wall echo (screen height) |
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F o, n = the amplitude (screen height) of the nth back wall echo in an accurate region at the same sound distance as Fn |
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c) If the decrease in the height of the rear wall echo exceeds the recording level, this should be examined in more detail. The R rate is applicable only in case of a sudden decrease in reverb height due to a discontinuity. |
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Table-3. Quality Classes, Registration Level and Acceptance Criteria for Austenitic and Austenenoferritic Steel Bars |
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Bar Thickness |
Record Level deqa |
Acceptance Criteria for Isolated Point Type Discontinuities deqa |
Acceptance Criteria for Expanded or Grouped Point Type Discontinuities deqa |
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mm |
mm |
mm |
mm |
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Class 1 |
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t ≤ 75 |
> 5 |
≤ 8 |
≤ 5 |
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75 < t ≤ 250 |
> 8 |
≤ 11 |
≤ 8 |
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250 < t ≤ 400 |
> 14 |
≤ 19 |
≤ 14 |
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Class 2 |
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t ≤ 75 |
> 3 |
≤ 5 |
≤ 3 |
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75 < t ≤ 250 |
> 5 |
≤ 8 |
≤ 5 |
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250 < t ≤ 400 |
> 8 |
≤ 11 |
≤ 8 |
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Class 3 |
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t ≤ 75 |
> 2 |
≤ 3 |
≤ 2 |
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75 < t ≤ 250 |
> 3 |
≤ 5 |
≤ 3 |
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250 < t ≤ 400 |
> 5 |
≤ 8 |
≤ 5 |
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a) deq = Equivalent diameter of the flat bottom hole. |
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