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Standard-
( l5 ^5 d8 z3 ~+ Y7 \7 f8 {2 WIEC 60695-10-2:2003, Ed.2" {/ w' x' f1 g) C5 C
Subclause(s):
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Figure 26 n4 Q6 g7 i+ z' s' y b# h
No. Year% D2 e7 p2 {* |, L
DSH; J' O l" T' g# ]
0391C 2010
* r; `8 M6 [2 O9 m* `3 ACategory:( n5 W4 a* h; ]
VARIOUS, GENERAL6 x% X9 N! k, h/ l- {
Developed by:# C# Y: Z* j! s; }3 |' R
CTL-WG2 + WG42 G: w% _3 @7 I* z. K3 U
Subject:" F6 x3 G# D7 F1 X. N
Ball pressure test
) q& _, Y3 ]" [$ M! K( R* qKey words:$ B. U" B6 _- r( L: t/ c6 }" r% G
-Diameter of indentation
1 |1 [0 U; @) C-Pressure Ball" W' p Y1 s, T% K- Y
-Test Specimen Support: Z, p: S1 p6 f* W9 P
Approved at the 48th CTL
# u& e: |* S: k( S# i: {Plenary Meeting, year$ [6 Z1 o* o3 v
2011.4 r; \' B& w, `
Replaces DSH 391 and) d& b Z! L! |7 Y# T2 F
DSH 391mod.# A: T2 Z1 o/ @% e7 S
Question:
, Z' c; C9 m# `3 ~/ K6 K3 c0 cDefine the “best practice” test procedure for the ball pressure test based on the7 i Y f& v/ Q6 E+ s3 N" A0 W6 s
requirements of the standard, and for practical reasons also based on 89/1011/CD, which
" Q) c! r+ W4 p* R( Zis not in all respects identical with the requirements of the standard.# F2 ?- k" ~+ x& d/ l& t
Decision:% M* M4 _1 E2 e0 _' L& z( N# m
In addition to clause 4.1 of the standard and due to various qualities of steel balls for rolling' f0 @0 s; `# o. c; u/ k# E
bearings, the tolerance for the steel ball diameter shall not exceed ±1% to ensure
& G$ f: n! n' q+ G5 n% Wcomparable results., u0 A- L) @( g5 U
In addition to clause 4.2 of the standard, the specimen support shall be a metal block of
/ z8 y8 O2 E8 O% z3 w0 ksteel, with a diameter 50 mm and a height of 100 mm or equivalent volume and mass.
3 V1 G% i4 l% [* g5 _In addition to 4.3 of the standard, a forced air convection single cabinet according to IEC
6 b' x) i m% D1 F* E60216-4-1:1990, clauses 4.1.5 and 4.1.6 shall be used.* x9 f* {2 f1 K0 t
In addition to 7.1 of the standard conduct the test in air, in a heating cabinet being capable to
' l; X" K# K8 g, \% ?0 S- m! n$ ireturn within 5 min and without any temperature overshoot exceeding +5°C to the, Y2 h e$ }( } K
previously adjusted and required air temperature within a tolerance of +/- 2°C .; y& S2 D p9 ]8 X. _
Measure the air temperature as close as possible to the test specimen." i# u# @& o0 r' i! t! I/ [! [; D. K$ T4 f
Before introducing the test specimen, bring the cabinet, the test apparatus and the test* u$ f1 N5 @' {2 C) h0 o. w. B
specimen support to the required temperature and maintain the required test temperature for2 B1 F ]7 t/ L4 _# ?# p
24 h or until equilibrium conditions are reached, whichever occurs sooner.% Q* Y4 a/ X6 Q( w# \! D
When thermal equilibrium conditions are reached, place the test specimen on the approximate
h; O6 n! @" }! P1 f: Jcentre of the test specimen support so that its upper surface is horizontal. Gently lower the
# Y+ v, J7 R) V1 ~' f% Y8 rpressure ball on to the approximate centre of the test specimen. Ensure that no conditions exist" x( F* L7 i" g
that will cause the pressure ball to move other than in a downward direction during the test.% Y3 f5 |; [. D& Z- V+ p$ i& G
After the ball pressure apparatus has been applied for 60 +2/-0 minutes, remove it and within 10% V; f. L3 ^0 p8 K
s immerse the test specimen in ambient temperature water for 6 min ±2 min.
1 W, @9 j# N: [5 ?" n" b! nWithin 3 minutes of removal from the water, measure the diameter of the indentation caused by
% Z% r& e5 x% i4 u, [ Fthe pressure ball to one decimal place.
/ u9 G% p& }( z$ f% ]+ }Deviant from 7.2 of the standard, but in accordance with 89/1011/CD, the diameter “d” of
- @1 H9 g( T3 s# sthe indentation is to be measured as close as possible to the diameter of the “solid edge”: B' u( C% `. v1 [5 }
of the indentation according to both a) figure 2a shown below and b) picture examples- Q" i' |5 {' [$ c
given in Annex A. The diameter of the solid edge of the indentation (dimension d ) shall
$ W# w* s+ Y" V# r' K& H; t8 ?exclude any material deformation as shown in figure 2c below.
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