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[OFF] DSH 392 Test of non-separable thin sheet material

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发表于 2012-11-6 17:10 | 显示全部楼层 回帖奖励 |倒序浏览 |阅读模式
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DSH 392
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Test of non-separable thin sheet material
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2.10.5.2
# C- A1 W- S) |
60950(ed.3)
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0 g/ @0 }1 D  AQuestion:
9 q8 G) C  B. d  ?0 G7 m; I- rHow is non-separable thin sheet insulation in wound components tested?& y6 k" t5 y" }
Rationale:
8 @( D- s* `9 D, h) W. lThere are non-separable thin sheet foils on the market and used in wound components,
2 |+ b/ Y0 K1 l& P4 Xwhich cannot be tested according to the requirements and test-method in the existing
6 Q- V* k! I' Kstandard. A proposal was made to TC74-WG6 how this matter can be handled. The1 U) Y) X+ i# K: W) [) ^
proposal is attached.6 b! L  }7 A2 k" H$ R/ y8 C
Decision:
: m) w+ a# G- u4 ~Use of non-separable thin sheet insulation in wound components
0 o! y: W" f- W* b# KThe following proposal shall be used until the new edition is published.
: M% h+ @& j4 B4 m6 h+ p1. Introduction
1 l. p- \! O" J! k# |' V# XThis document presents two alternative versions of the test procedure given in IEC6 x- R( R1 D5 s
61558-1 for checking the mechanical durability of thin sheet materials.
4 M, t# Q9 L7 o) FTest method X adapts the published procedure to the conventions and practices used in" \  A/ w7 F2 B4 ?  n
IEC 60950. In Method X, the metal foil is secured to the sample prior to the test.
9 x9 x( R0 A! c4 KTest method Y is the slightly different procedure observed on a video presentation,7 l: w6 K( `4 J- Q
whereby the metal foil is only added to the test assembly after the sample has been
. s. Z5 y# H* l/ B, x0 v9 Ostressed by rotating it in the test fixture.
5 z$ m4 ^; X- d1 \& STest method Y appears to be the more practical method, and is evidently how the test is2 z, a% y/ y6 l: S8 |+ t6 M
carried out in at least one test laboratory. The two methods should give the same results.. G, O; X" n9 D# J' e- Q& @
2. Proposal% x4 t5 b! K. X0 ^6 \0 q* V( g
Change the title of 2.10.5.2 to the following:
3 f2 |9 i# D* Z7 H) Q2 E- Z' V2.10.5.2 Separable thin-sheet material
2 u1 t1 W8 N1 N5 A3 D8 hModify the first paragraph of 2.10.5.2 as follows:+ R, u2 X1 P  A' K5 n
Insulation in separable thin sheet materials, and in two layers of non-separable thin sheet( o% S! ~3 N" ]  f# h
materials, is permitted, ….
; `  G. ~/ H' Z! ]Add a new sub-clause 2.10.5.X or 2.10.5.Y.2 f8 G8 C0 b) q( l
Test Method X1 U7 p- H, Z/ u- g
2.10.5.X Non-separable thin sheet material
( k/ e" B2 j. D/ N/ yInsulation in three or more layers of non-separable thin-sheet materials is permitted for use within/ G, y9 Y; D6 P- X
the equipment ENCLOSURE, and shall not be subject to handling or abrasion during servicing. It
% y  L) g) ~4 P; E) U; g) `7 q: w* dshall have adequate mechanical strength.! r, w0 `' M+ q! b4 S( b% ^0 g# R& d
NOTE - The purpose of the tests in 2.10.5.X is to reveal defects that are hidden in inner layers of insulation,  H" {( i) S% \
so there is no test for insulation in two layers. For insulation in two layers of non-separable thin-sheet' v' O4 E9 @- U$ j0 {) P) f7 `
materials, see 2.10.5.22 o& n  G, t  }! `. z
There is no requirement regarding distances through insulation, nor for all layers of insulation to be
/ K- y: o" d6 Y  J9 F0 o2 wof the same material.8 b; E5 O- _( c7 m& K+ e/ i
Compliance is checked by inspection and by the following test:' \" |% N. ^5 [9 c: M
Three test samples of thin sheet material are used, each approximately 70 mm wide.
) N! D1 T: d/ ZOne sample is fixed to the mandrel of the test fixture as shown in figure 5X.
! j9 s  e- o" p" PA sheet of aluminium or copper foil, 0,035 mm ± 0,005 mm thick, approximately 30 mm wide and at& ^+ D- a- W3 c( |# T! q$ K
least 100 mm long, is fixed to the surface of the sample. The foil is positioned so that its edges are2 N; |- W- q' R4 T9 y
approximately 20 mm from the edges of the sample (see figure 5Xd) and so that when the2 }2 L+ L, G9 I( |* S3 C) U
mandrel is in its final position, the foil overlaps the free end of the sample by at least 10 mm (see
8 E/ Y/ ?# Y" ?; x. K. }& V9 Rfigure 5Xc). The foil is tightened by a pull of approximately 1 N, using an appropriate clamping5 V' l; C" m/ L" [7 @8 m: W
device.: }' J- @8 r- r
A pull of 150 N is applied to the free end of the sample, using an appropriate clamping device. The
" ]$ q+ P/ R( _2 _4 T$ p) o( O  mmandrel is twice rotated forwards and backwards by 230°, and then forwards to the final position.
1 r  S) \# t: I# D- o' eWhile the mandrel is in its final position, and within the 60 s following the final positioning, an
! ~3 x7 B  G) Nelectric strength test is applied between the mandrel and the metal foil in accordance with 5.2.2,7 P. |5 e: _8 a, B) F' Y, O) ^9 l
using a test voltage of 1,5 times the value specified in table 5B.3 a7 N8 _* _" _
The test is repeated with the other two samples
0 T  e7 \' P; QIf a sample breaks at the clamping device during rotation, the test is repeated on a fresh sample. If5 S0 q$ ^) @  x4 V0 D2 T
one or more samples breaks at any other place, the test has failed.
" ^. G/ ]" H5 R) S8 ^6 p............................
! b7 N! L6 {! ^& XAdd new Figure 5X (adapted from Figure 6 of IEC 61558-1)8 B8 n% g! o7 ~- V
Figure 5Xa is as figure 6a of IEC 61558-1, modified as follows:0 c1 R# _6 ?+ R" f' n! b0 X+ g
Replace "3 x R = 0,5 ± 0,02" by "R = 0,5 ± 0,02 (typ)"! B4 V; d& t  A% @, Q
Replace "Material: steel nickel plated or brass" by "Material: metal"( p8 s9 ~7 Q: u8 d. V
Figure 5Xd is the same as figure 6c of IEC 61558-1  s8 s) r- m$ b* Z- o
Test Method Y* K7 N/ n) o  J1 Q! z
2.10.5.Y Non-separable thin sheet material* |  \. B  E% Q- W5 t$ z
Insulation in three or more layers of non-separable thin-sheet materials is permitted for use within0 j' o0 z7 q& O1 \
the equipment ENCLOSURE, and shall not be subject to handling or abrasion during servicing. It
6 E" z3 |- G& Eshall have adequate mechanical strength.
+ t, W7 X% ?0 }NOTE - The purpose of the tests in 2.10.5.y is to reveal defects that are hidden in inner layers of insulation,
. p3 n3 ?4 P+ e( Uso there is no test for insulation in two layers. For insulation in two layers of non-separable thin-sheet# O6 Z2 R7 b# i5 U" w- ^' z
materials, see 2.10.5.2
5 z. @: V" b, X6 p! HThere is no requirement regarding distances through insulation, nor for all layers of insulation to be
* x2 p' ?5 A( _0 cof the same material.$ n. J. C2 Y% |8 M1 ~
Compliance is checked by inspection and by the following test:' h$ L# N7 p+ ^1 g: b  S- Z
Three test samples of thin sheet material are used, each approximately 70 mm wide.
, N. a, J8 \& cOne sample is fixed to the mandrel of the test fixture as shown in figure 5Y.
# B1 y/ ^1 n5 sA pull of 150 N is applied to the free end of the sample, using an appropriate clamping device. The" f0 z* T% _7 M0 ^. n) U
mandrel is twice rotated forwards and backwards by 230°, and then forwards to the final position.
+ x2 y* X; @) U. Y& aA sheet of aluminium or copper foil, 0,035 mm ± 0,005 mm thick, approximately 30 mm wide and at/ W0 E! l! z7 r+ y& J  o
least 200 mm long, is placed across is the surface of the sample, hanging down on each side of! z" u& Y/ K" X( r3 o* b
the mandrel. The foil is tightened by a pull of approximately 1 N at each end, using appropriate
1 B1 P6 C4 J5 H& Zclamping devices.. The foil is positioned so that its edges are approximately 20 mm from the edges- P  X6 p" h  E; y
of the sample (see figure 5Yd).
7 ~6 r# D3 c3 Z! s7 Q; NWhile the mandrel is in its final position, and within the 60 s following the final positioning, an
; P! A9 |. f+ l( [& D0 j$ Pelectric strength test is applied between the mandrel and the metal foil in accordance with 5.2.2,
! J) a5 j% T- Susing a test voltage of 1,5 times the value specified in table 5B.+ U5 G# L+ Z! k9 T
The test is repeated with the other two samples0 A# c6 }/ e+ H3 V6 P6 q: L- t/ r
If a sample breaks at the clamping device during rotation, the test is repeated on a fresh sample. If
8 a9 k# T' _- {+ s% Hone or more samples breaks at any other place, the test has failed.
; C6 K; W: |- z+ a2 }) B1 d9 v! b.............................../ ~6 Z# t$ X. r) L0 Y" C' |
Add new Figure 5Y (adapted from Figure 6 of IEC 61558-1)
6 V7 K1 I4 h# A  z) l" `% bFigure 5Ya is as figure 6a of IEC 61558-1, modified as follows:
& j; T8 g1 G- q7 k( Z; CReplace "3xR = 0,5 ± 0,02" by "R = 0,5 ± 0,02 (typ)"
7 L3 Z' Q: G9 `3 }: O8 u- EReplace "Material : steel nickel plated or brass" by "Material: metal"5 h  {, |! c, A4 z
Figure 5Yd is the same as figure 6c of IEC 61558-1
  |& T1 f7 m1 ?2 G) D
2 Y; ]2 F2 h* Q) q; Z) p1 J& C1 z4 u( L. t& W" E
8 R' g$ U  J9 r9 j  l; ^  U2 r
0 @2 g# C/ }4 M# Y% t) p& x

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