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| DSH 391C- n, x5 D1 l" j9 F+ o0 `
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| Ball pressure test
: W9 e+ p2 P$ }& @7 ]# O& ~ | 4, 7, 9, Figure 22 h. Y; }, Y6 e
| 60695-10-2(ed.2)
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Standard-
( m8 ]; H4 Z" Z. BIEC 60695-10-2:2003, Ed.2
N- k, ~2 J8 a4 uSubclause(s):4 B# ?" t8 e3 K! w' ^# W
4$ |9 z+ Z2 c1 [) J8 p/ q$ U
7
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0 P3 X: R, Y1 ]) q2 C/ }Figure 2. @0 O) Z- G" Q$ a
No. Year
" J1 Z( ?# A7 g6 b) |DSH
$ [6 s. O5 j, R0 I. @1 d, J7 N0391C 2010
+ h, q6 t7 K: P* UCategory:
2 {6 X3 z! k2 J8 P* j5 M. j( F; B8 MVARIOUS, GENERAL
$ N0 m" ~3 N- PDeveloped by:6 l0 v- \5 \4 b% J- e
CTL-WG2 + WG4
. X% H' }) x! k! c* }) f8 hSubject:) W3 K8 W" U; t7 k) y/ F7 j
Ball pressure test: V8 I! i6 e1 N- V# D
Key words: h# C( o2 E% g
-Diameter of indentation8 k+ g3 c7 l7 A- d6 N# V
-Pressure Ball
$ W& B; _1 y+ ]+ ~-Test Specimen Support$ X' O# U# ?+ ]2 { z
Approved at the 48th CTL
( H+ k% X7 s* Y8 yPlenary Meeting, year3 X: v; M |! Q) o
2011.; o4 y. V/ X% K
Replaces DSH 391 and
( g# x( u [ r+ b2 c, @0 jDSH 391mod.7 f! b" |/ C- _, k& J8 R2 n1 |0 T& n# S
Question:/ k9 E, r, l6 ~7 v/ l
Define the “best practice” test procedure for the ball pressure test based on the
- L8 M6 q2 B: f; D- Srequirements of the standard, and for practical reasons also based on 89/1011/CD, which' h6 E2 a$ t8 W
is not in all respects identical with the requirements of the standard.
[# B" m8 c, W& EDecision:
4 m, j( @- d6 C: pIn addition to clause 4.1 of the standard and due to various qualities of steel balls for rolling3 i# A, Z9 ~4 _$ x
bearings, the tolerance for the steel ball diameter shall not exceed ±1% to ensure
( a' b4 q' c- s6 q' x/ r, M2 N5 r. Qcomparable results.
2 b! p: Y, m; F/ gIn addition to clause 4.2 of the standard, the specimen support shall be a metal block of) e/ n! ~) B8 |7 R
steel, with a diameter 50 mm and a height of 100 mm or equivalent volume and mass.
9 H1 P( w7 c8 [( L; z- d% Z/ KIn addition to 4.3 of the standard, a forced air convection single cabinet according to IEC+ F' S' B/ C3 X3 X g! j
60216-4-1:1990, clauses 4.1.5 and 4.1.6 shall be used." F2 b1 B1 d; Z2 Y) f6 _8 e9 p
In addition to 7.1 of the standard conduct the test in air, in a heating cabinet being capable to$ A6 u5 U, D/ W& v
return within 5 min and without any temperature overshoot exceeding +5°C to the
0 [, c" u4 C/ Hpreviously adjusted and required air temperature within a tolerance of +/- 2°C .3 @. |$ Y" o/ ?: i: Z' ?, W
Measure the air temperature as close as possible to the test specimen.( x" ?$ h$ x2 K; L: \. U0 W
Before introducing the test specimen, bring the cabinet, the test apparatus and the test: C9 ^% I6 Z: ?% k) M# L6 z. J( `! b
specimen support to the required temperature and maintain the required test temperature for
; w, C# T W! I" g/ S: W24 h or until equilibrium conditions are reached, whichever occurs sooner.
' V% C! I; e8 V* O6 ?When thermal equilibrium conditions are reached, place the test specimen on the approximate: A8 }- |6 `1 T) M/ a2 r/ C; r
centre of the test specimen support so that its upper surface is horizontal. Gently lower the
6 `, v' C0 @5 k0 T* A- p8 Zpressure ball on to the approximate centre of the test specimen. Ensure that no conditions exist
' n& @& l/ ^8 n( F* tthat will cause the pressure ball to move other than in a downward direction during the test.% j' N5 {$ }4 t0 O# F
After the ball pressure apparatus has been applied for 60 +2/-0 minutes, remove it and within 10
- \% M1 g& m; X% v/ Hs immerse the test specimen in ambient temperature water for 6 min ±2 min.
+ i7 {5 b* P% @1 ?0 {# G( AWithin 3 minutes of removal from the water, measure the diameter of the indentation caused by' u# E- D# B- I% ^9 M7 L
the pressure ball to one decimal place.
/ F/ S4 s8 G: |6 _Deviant from 7.2 of the standard, but in accordance with 89/1011/CD, the diameter “d” of5 |% k( [ T: V* G' \' c
the indentation is to be measured as close as possible to the diameter of the “solid edge”8 D! ~$ [4 i- ?, N+ N
of the indentation according to both a) figure 2a shown below and b) picture examples$ o* i2 v- \" x f- C" g! r8 M
given in Annex A. The diameter of the solid edge of the indentation (dimension d ) shall3 ], V" s! d* c$ S: R5 F& y% e) G; m
exclude any material deformation as shown in figure 2c below.: u+ u s9 Q, S+ y" ?9 J
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