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[Various] DSH 391.mod. A Ball pressure test

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DSH 391.mod. A
( a9 i' q2 o3 W9 C- N
3 K/ |! f) p# B! G5 c& Q
Ball pressure test; G5 q$ A, F: k6 J; M: D5 O4 Q
5 – 7.1, Fig. 1 – Fig. 2
; [7 d0 b) [' w$ X! X% D
60695-10-2(ed.1)  L: @8 m0 G! M0 H, d! r
# K" {1 I2 B& L; `% ^
Standard(s): IEC 60695-10-2/2003 No. Year
, W7 C# E6 I+ l* d0 L/ N* F) UCorrigendum 1 (February 2006)+ i* F- G" }1 H1 u- |" G  m
DSH
- i' p! c+ P: ~! j391.mod. A$ h2 V& t  D8 W' D! @
2009; R, r$ B9 B. d( ~
Category: VARIOUS  Y4 L2 C, I! ^. W; e6 \0 h
Subclause(s): 5 – 7.1
6 B9 s' I) V( }: C9 |Fig. 1 – Fig. 2
9 u7 x5 v) I- G$ |5 i: kDeveloped by: WG4
1 j# q, P5 B( t7 ^Subject: Ball pressure test K e y w o r d s :, f) M, C6 o! X9 |2 e# v+ |
- Lens with a reticule
$ m. `# p. T: r1 D# u2 I- Diameter of the
! o$ p7 G, p7 ~! P9 v6 O) ~indentation
5 q' P, ]+ C' D& L! P- Steel ball
6 P: d2 j; u7 \3 P3 M& M" O8 `$ m- Test specimen support
+ Y4 g* E  z* j3 d! x- Loading device- p3 T  J5 N. Z( P
Decision approved at the; n5 p) u3 S1 N3 k
46th CTL Plenary Meeting, in1 c/ H. }3 f+ i/ d  b; Q
2009) c" T, _2 S! U1 X" F3 o- M- {$ b
Question:
/ `1 n* W" j% \+ c* _# oDefine the “best practice” test procedure for ball pressure test consistent with the requirements in
0 z  \! s: c. E$ @4 y$ P, Nthe standard.* P  J6 j3 g2 G1 q& W% ^  k4 H$ n
Decision:
8 E% V2 E& y) c' f$ v& ?Clause 7.1 – Conduct the test in air, in a heating cabinet at the required temperature within a tolerance of3 S+ R, i4 }4 i: {$ h
+/- 2°C.) @& K- x$ N6 g3 f6 a2 c: p: b
Before introducing the test specimen, bring the test apparatus, the test specimen support and loading
& l& _8 f5 H( ~4 s5 R0 udevice to the required temperature and maintain them at the required temperature for 24 h or until
( ~5 f2 a5 ^$ D0 P& P( {, Z* A! \equilibrium conditions are reached, whichever occurs sooner. Measure the temperature as close as7 ]1 t2 p( E, H& Z- u
possible to the test specimen.5 w, R: a. |( Y% |' _
Place the test specimen in a forced air convection single cabinet according to sub clauses 4.1.5 and 4.1.6
4 `" j" h9 v" H0 V3 Aof IEC 60216-4-1/1990. Support the specimen on a block, such as stainless steel block, with adequate
* J5 v& {1 P) A7 A  n6 P. H! tdimensions, so that its upper surface is horizontal. Apply the ball pressure apparatus so that the steel ball( d6 L+ ]% W0 J; ?1 R8 Q9 t6 C- f
is pressed against the surface with a force of 20 N +/- 0,2 N. Take care to ensure the ball does not move2 F5 F! w  N$ p9 `+ t5 g7 X
during the test. After the ball pressure apparatus has been applied for 60 + 2/0 minutes, remove it and
# a: d* w" K/ ~* p0 Y% Rimmerse the test specimen in ambient temperature water within 10 s. Allow the test specimen to cool in
7 ]6 Y7 |7 O3 ]7 N4 T  }6 Nthe water to approximately room temperature for no longer than 8 minutes and remove all traces of water.% R) C. O& I. h5 V4 m
Clause 7.2 – Within 3 minutes after removal from the water, measure the diameter of the indentation8 C, T' |0 [* r" W
caused by the ball to one decimal place. The spherical portion of the indentation to be measured excludes
: x6 _6 O: C; J; e3 n/ p. n' Z- Gany material deformation around the spherical indentation, as shown in figure 2. In case of doubt, make* V6 \: x2 F  b) R  n
two further tests and measure the diameter of the indentation to one decimal place; both of these tests shall
7 D1 }0 M- N$ y7 m- Bmeet the requirements of clause 9. The result is expressed as pass if the diameter of the indentation(s)
# W& V1 @' F* p( h- l7 w  ]2 |does not exceed 2,0 mm. The diameter of the indentation caused by the ball is measured by a lens
5 D: m* u4 l5 H- e# \. {4 w( _(approximate magnification of 10x) equipped with a reticule, a cross-travel measuring table and a lighting
% |+ Q3 W+ @8 j9 Ddevice to enable the illumination of the surface of the test specimen. For measuring the diameter of the, Q. |6 I; t: Z: B1 p
indentation, the reticule is moved from one side to the other.# D$ t/ A, ?8 x5 ]) }/ P
In case of doubt, other instruments may be used, i.e. microscope or profile projector. In case of nonround
' Q5 I* t4 [) h; O6 B. E# gindentation obtained, indicate on the Report the longest measurement observed, maximum% h4 X9 B2 B. ^& p% F# F) Q( n
allowable difference between the longest and shortest measurement: 0,2 mm.) S3 s3 r. a0 U5 g' Q, a& H1 T0 J
0 L6 j, \0 g; D

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