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| DSH 391.mod. A
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. w1 _9 U9 l& v# Q6 B- S+ Y | Ball pressure test
( v- [5 A" @+ B- J8 ?5 d. Q | 5 – 7.1, Fig. 1 – Fig. 2
# d9 V% d! ]( v | 60695-10-2(ed.1)* e4 ? }/ G; t d0 Z! b- b' D6 m
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% W0 O* {( f5 I: {$ mStandard(s): IEC 60695-10-2/2003 No. Year
! T! y7 B# i, H0 [- _ iCorrigendum 1 (February 2006)
6 A/ d; I# l. [6 TDSH
, ` R E, N- z$ F d2 e391.mod. A
, u- h& }" U) V& H2 D2009
A7 p0 F' {4 c- `Category: VARIOUS
* j3 ^- V E1 ^/ @3 v8 P: `Subclause(s): 5 – 7.1$ x+ p* ], T! M1 s
Fig. 1 – Fig. 2
, Y9 a* [8 x* S* O8 eDeveloped by: WG4
0 y) ~" c' O$ b; k; W( I) FSubject: Ball pressure test K e y w o r d s :
' n0 ^0 G/ t5 {9 g1 C" ^6 @- Lens with a reticule
# m B' y' I! J8 s- Diameter of the- U* W& W0 T* Y5 e
indentation
# F! n& B8 g. I: Y; u9 u- Steel ball
' x2 Z% f; b( I2 {- Test specimen support
2 M1 W0 `: H/ Z- Loading device. H' K' G' f6 z6 `
Decision approved at the
; p# i! b- p) V E46th CTL Plenary Meeting, in& ~* T J- l- e- j" E
2009
7 s( B8 }& m. e( w; N2 OQuestion:& C; q9 `* N7 [" v0 x8 L
Define the “best practice” test procedure for ball pressure test consistent with the requirements in
7 ?" V7 s. h) |) E0 k( wthe standard.
* h4 P/ w6 Z1 ^ jDecision:2 W0 s9 X; x# E
Clause 7.1 – Conduct the test in air, in a heating cabinet at the required temperature within a tolerance of3 q: h) A# v$ H1 F& ^
+/- 2°C.
( _ Z# ^, n2 L: W% }$ mBefore introducing the test specimen, bring the test apparatus, the test specimen support and loading- ?+ v# e* U& K `) h* w$ @
device to the required temperature and maintain them at the required temperature for 24 h or until7 _# W" K# C$ U/ p
equilibrium conditions are reached, whichever occurs sooner. Measure the temperature as close as* f' ~$ @1 U' w" ^& l
possible to the test specimen.
3 A. J0 P: ^- C1 kPlace the test specimen in a forced air convection single cabinet according to sub clauses 4.1.5 and 4.1.6
6 C0 O2 W- l( g) w8 Gof IEC 60216-4-1/1990. Support the specimen on a block, such as stainless steel block, with adequate
, n8 N4 u" e) S! |2 idimensions, so that its upper surface is horizontal. Apply the ball pressure apparatus so that the steel ball
: H; B/ G" `8 F I, X! L1 ais pressed against the surface with a force of 20 N +/- 0,2 N. Take care to ensure the ball does not move% p9 T( \5 z& |
during the test. After the ball pressure apparatus has been applied for 60 + 2/0 minutes, remove it and( Y b! P# G0 ?. t4 B
immerse the test specimen in ambient temperature water within 10 s. Allow the test specimen to cool in
: Y V/ _8 w2 H1 ?- J/ {# Xthe water to approximately room temperature for no longer than 8 minutes and remove all traces of water.
, ~& r; I$ X: I+ h4 @* B; zClause 7.2 – Within 3 minutes after removal from the water, measure the diameter of the indentation2 L; G: T: Z, n2 k- X
caused by the ball to one decimal place. The spherical portion of the indentation to be measured excludes
, p3 A) R( N3 s5 @1 lany material deformation around the spherical indentation, as shown in figure 2. In case of doubt, make
+ ^( B5 ~4 O+ \+ Otwo further tests and measure the diameter of the indentation to one decimal place; both of these tests shall( A y/ P* \/ g7 ?9 b( u
meet the requirements of clause 9. The result is expressed as pass if the diameter of the indentation(s)% R; k& X" A8 b( l( F! S: K
does not exceed 2,0 mm. The diameter of the indentation caused by the ball is measured by a lens
1 u X! _3 g u( V8 @(approximate magnification of 10x) equipped with a reticule, a cross-travel measuring table and a lighting+ f+ c$ T2 ?, }
device to enable the illumination of the surface of the test specimen. For measuring the diameter of the
( C; N9 ?- E+ s/ i+ k+ U& Bindentation, the reticule is moved from one side to the other.
9 e2 F2 j5 L0 k) Q! ~5 r" g1 j+ GIn case of doubt, other instruments may be used, i.e. microscope or profile projector. In case of nonround
4 m; _& K% n2 s& ?# I- ^4 nindentation obtained, indicate on the Report the longest measurement observed, maximum. K q, [; D+ d* N' | f
allowable difference between the longest and shortest measurement: 0,2 mm.$ _4 _$ }, ^( e0 H
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