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| DSH 391C- [+ \4 U* c- w/ u
$ K* p1 v/ O& k7 m5 R3 p | Ball pressure test
& C5 o3 R# w0 [ C8 y | 4, 7, 9, Figure 2+ K3 s" S4 K& f! b$ Z E
| 60695-10-2(ed.2)
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$ I( Y4 |: t: f9 Q. V* eStandard-
9 Z9 i1 H2 u& Z+ |$ LIEC 60695-10-2:2003, Ed.2; o5 y1 g2 m7 O* |: U/ }9 \4 c B
Subclause(s):) R+ r+ c C8 A: J4 q$ l
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^0 d5 f8 f/ T8 _& LFigure 2
9 ?2 D: [0 X+ j( TNo. Year4 T$ L2 Y/ W; G9 l. q/ I6 o& Y
DSH
p& k6 p0 U" v0 M# N" x* {( n0391C 2010
1 K! w7 f$ {' H' d, SCategory:
6 q: C: X' N9 ]* o+ J2 dVARIOUS, GENERAL
1 r& o; t. ]* I# B( U& N3 |Developed by:$ J$ S/ p& s, v" z: }- o% s/ |& T
CTL-WG2 + WG4
4 [* j5 B: C5 ]3 ^2 USubject:
2 G# _! ]3 g5 X: K, \# UBall pressure test) W7 d6 O8 M8 {" m' }0 Q( |& d
Key words:8 E9 a. Y. l) r" q$ a
-Diameter of indentation/ ^5 D( c, o: [ p
-Pressure Ball
* b! e8 N2 m) {& c-Test Specimen Support
( ^3 `& ?! ]2 x% O qApproved at the 48th CTL
) V- ~* F: K# _, g+ N2 _0 V3 EPlenary Meeting, year" k- X: x. z' m- e
2011.* o3 x1 U% h& f' V" h& `1 N! [
Replaces DSH 391 and8 j4 P' v% k8 Z" F. s/ O- H
DSH 391mod.
6 O7 H% M6 _/ r7 ` Z: VQuestion:
* k$ X) [% i' F$ ?# UDefine the “best practice” test procedure for the ball pressure test based on the
4 d: d4 I6 L7 F+ n, o+ Srequirements of the standard, and for practical reasons also based on 89/1011/CD, which
8 a7 o" F! q0 Gis not in all respects identical with the requirements of the standard.
+ e2 {( ^$ ]8 e" a# UDecision:
+ k- A* U; w$ }% m& NIn addition to clause 4.1 of the standard and due to various qualities of steel balls for rolling
6 j: R8 ]1 S& K/ x' O3 K3 Lbearings, the tolerance for the steel ball diameter shall not exceed ±1% to ensure' _4 ]1 i$ ?, ]3 E8 g' _/ g; ?+ f2 Y
comparable results.) W, }: c2 Q' @7 p5 N* ~2 c
In addition to clause 4.2 of the standard, the specimen support shall be a metal block of
) T4 e; S! A2 J$ L( Msteel, with a diameter 50 mm and a height of 100 mm or equivalent volume and mass.
% D' W7 ?5 M7 [6 ~+ h" V3 }In addition to 4.3 of the standard, a forced air convection single cabinet according to IEC
- S4 d; l' U6 S- t+ J# D9 I; j) \+ O9 `60216-4-1:1990, clauses 4.1.5 and 4.1.6 shall be used.# Y1 H* ^$ y0 w( M& C
In addition to 7.1 of the standard conduct the test in air, in a heating cabinet being capable to4 Z4 u/ \7 [ c) w
return within 5 min and without any temperature overshoot exceeding +5°C to the9 l1 V1 @8 Z# w, i0 w$ Z$ ?- j
previously adjusted and required air temperature within a tolerance of +/- 2°C .% S5 F% Z; i5 @* q6 S% {) B+ l# y, X
Measure the air temperature as close as possible to the test specimen.
5 ]. M( w; I5 X- Y, U2 ^" zBefore introducing the test specimen, bring the cabinet, the test apparatus and the test& {1 i) P) c! u+ T9 ]2 z' `
specimen support to the required temperature and maintain the required test temperature for! [( _0 B+ A" M
24 h or until equilibrium conditions are reached, whichever occurs sooner.% R, e: T* C0 V: V) }2 F* V9 ~
When thermal equilibrium conditions are reached, place the test specimen on the approximate
/ z5 f) |4 q' y( D/ Acentre of the test specimen support so that its upper surface is horizontal. Gently lower the
+ o9 E: W3 p! g% ~; q' W7 Ipressure ball on to the approximate centre of the test specimen. Ensure that no conditions exist' {, k1 T& e# B1 `
that will cause the pressure ball to move other than in a downward direction during the test.
2 k" l+ O. t$ |8 z8 J1 H. vAfter the ball pressure apparatus has been applied for 60 +2/-0 minutes, remove it and within 10
! m0 T' X- }3 ^( W# t: ~: a6 `s immerse the test specimen in ambient temperature water for 6 min ±2 min.$ F9 ~% g: i, v* e/ L
Within 3 minutes of removal from the water, measure the diameter of the indentation caused by
b$ S5 h" P! G* Y8 p7 ?/ Pthe pressure ball to one decimal place.
]0 e0 P$ D6 c5 I |Deviant from 7.2 of the standard, but in accordance with 89/1011/CD, the diameter “d” of7 K2 M1 X E# y: y( F: ~9 d
the indentation is to be measured as close as possible to the diameter of the “solid edge”2 C @! E; {$ `8 b
of the indentation according to both a) figure 2a shown below and b) picture examples
8 ^* D8 |0 I% a, c, t2 ngiven in Annex A. The diameter of the solid edge of the indentation (dimension d ) shall
7 T8 h6 G9 Z0 F `" `exclude any material deformation as shown in figure 2c below.
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