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| DSH 391C% F2 {& z- `+ e" Q) C& v9 M1 X
7 s! W/ h7 d w h& g" M4 I- ` | Ball pressure test0 X' R0 D8 ], h1 @1 t
| 4, 7, 9, Figure 2( R$ B5 n: N# n B8 d; T4 ]6 w
| 60695-10-2(ed.2)- j% v7 `2 U! A' s/ d v
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' F$ X$ q; R9 m$ y# p' {+ gStandard-
+ ]1 g- E( D) P4 [IEC 60695-10-2:2003, Ed.20 m1 h3 h; k% b' n/ h
Subclause(s):
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7
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Figure 2
1 Q! ~# [5 m7 [' g6 y2 kNo. Year( u, a# x- I/ k0 s
DSH
2 a' r' G# o6 C% |2 y0391C 2010
! G$ o) i% c T3 |: b1 P; g% |Category:
- H' n8 b' n# h3 [# D- v) W" Q" GVARIOUS, GENERAL1 r% I1 m. E5 ?( V- ^/ |
Developed by:
* Z7 g, k" s( O: OCTL-WG2 + WG4# I4 Z3 ~( W7 F5 n: T* h" l
Subject:: h e/ i) X3 d8 m" l2 g+ i& \3 y" z5 ]
Ball pressure test1 q# n3 V' [. ^/ _: D
Key words:
* C4 J, ?. ~5 [3 f) R- h1 x! c-Diameter of indentation
* V- b9 c1 p- A; ^- {-Pressure Ball" x% U# y. }" f
-Test Specimen Support
% J; x* t: J/ PApproved at the 48th CTL
9 s+ H! H+ d+ F0 X E/ o5 LPlenary Meeting, year
8 a; M) r3 u: T0 x: x8 |2011.( V* H. m. {" s) ~& e2 `! d
Replaces DSH 391 and
. ?" E5 |. _- i+ q: sDSH 391mod.+ E4 p0 d( I3 Y) o* U
Question:
' V& Q6 Y6 y! e& s5 H& ~0 sDefine the “best practice” test procedure for the ball pressure test based on the! w! m; N: O: y
requirements of the standard, and for practical reasons also based on 89/1011/CD, which) q( e% Q4 T( X9 g7 }1 M
is not in all respects identical with the requirements of the standard.
$ w6 k6 G; c7 v+ s( R, EDecision:2 O0 O. g4 w4 Y2 H* q; |, H
In addition to clause 4.1 of the standard and due to various qualities of steel balls for rolling. U; O; k1 @" {2 ]4 i/ W9 { k
bearings, the tolerance for the steel ball diameter shall not exceed ±1% to ensure; r/ b! E) G2 Z S8 R
comparable results.6 S7 W; y2 G5 H2 b
In addition to clause 4.2 of the standard, the specimen support shall be a metal block of/ H+ e8 ], Y4 h* Q
steel, with a diameter 50 mm and a height of 100 mm or equivalent volume and mass.. D6 S# R2 z3 R
In addition to 4.3 of the standard, a forced air convection single cabinet according to IEC
+ K s Z! z5 d: u# e7 W6 W6 o60216-4-1:1990, clauses 4.1.5 and 4.1.6 shall be used.
; t- s- Z9 T( O' f! GIn addition to 7.1 of the standard conduct the test in air, in a heating cabinet being capable to
V, u/ G1 d+ ]! p& Rreturn within 5 min and without any temperature overshoot exceeding +5°C to the, }/ c# e. Y) t1 c& a
previously adjusted and required air temperature within a tolerance of +/- 2°C .7 H3 c0 `) v2 z- w, ?* r
Measure the air temperature as close as possible to the test specimen.) L! A/ j: ^& \6 K% ^5 u' G8 N* C. z
Before introducing the test specimen, bring the cabinet, the test apparatus and the test/ P7 h `( S" y- A; C
specimen support to the required temperature and maintain the required test temperature for0 D* q$ _! m4 J8 w8 ]
24 h or until equilibrium conditions are reached, whichever occurs sooner.# e4 E0 q" O/ o8 {8 U- j. \- \5 i6 X* H
When thermal equilibrium conditions are reached, place the test specimen on the approximate. r5 f# }' R _- E
centre of the test specimen support so that its upper surface is horizontal. Gently lower the
& z+ k- P" [$ f* e+ S' Npressure ball on to the approximate centre of the test specimen. Ensure that no conditions exist+ W0 w+ U/ A+ o7 f
that will cause the pressure ball to move other than in a downward direction during the test.
6 _8 Z+ a* k/ ]2 G, z4 m$ {After the ball pressure apparatus has been applied for 60 +2/-0 minutes, remove it and within 10/ ~# P3 J2 u( m, f4 F5 \
s immerse the test specimen in ambient temperature water for 6 min ±2 min.: O4 ~6 C: d( t9 D* \& z& I
Within 3 minutes of removal from the water, measure the diameter of the indentation caused by8 G/ h0 Y" O8 Q9 P0 C w( U U
the pressure ball to one decimal place. q+ ~: m6 t; Y5 E4 W+ y: y
Deviant from 7.2 of the standard, but in accordance with 89/1011/CD, the diameter “d” of1 |. k2 K a! E9 R6 j" Z1 T
the indentation is to be measured as close as possible to the diameter of the “solid edge”' s8 P2 M6 v0 G
of the indentation according to both a) figure 2a shown below and b) picture examples
g+ H: @2 }7 x; t q9 M7 F' ]given in Annex A. The diameter of the solid edge of the indentation (dimension d ) shall
0 B6 `" [, S) v* Cexclude any material deformation as shown in figure 2c below.8 V* L q; f) \1 g* h
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