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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 |阅读模式
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DSH 3926 _. u3 f" Q+ p) [

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Test of non-separable thin sheet material3 J) [: e  i. s' m4 s; d* X
2.10.5.2
$ q/ s, G1 z0 _0 b) F
60950(ed.3)9 ?2 K! x! b) ^! Z7 `

- W  M; z! r! ]; [Question:
) ^* y/ Q3 U; \3 qHow is non-separable thin sheet insulation in wound components tested?
4 {# o( k6 O4 h! p0 [; vRationale:
  ?* E; b' W- n( y- U5 tThere are non-separable thin sheet foils on the market and used in wound components,8 S- _  a+ Q% }8 k# m9 n  ]
which cannot be tested according to the requirements and test-method in the existing
. U$ g5 }4 x, c7 K4 }4 Hstandard. A proposal was made to TC74-WG6 how this matter can be handled. The
- f6 x; Y( D0 K$ `7 B1 mproposal is attached.4 j0 V6 O& f# p
Decision:# M4 b8 t" X8 Z7 r) S% _
Use of non-separable thin sheet insulation in wound components$ f7 K# L" [0 w: |+ _
The following proposal shall be used until the new edition is published.+ c7 s+ _4 _# A, w9 J5 ?
1. Introduction% B5 w5 k  I* M3 ?5 M  ?
This document presents two alternative versions of the test procedure given in IEC4 J% x$ a5 Z; x0 J3 C* h
61558-1 for checking the mechanical durability of thin sheet materials.  o4 |$ @. I$ G3 I9 m, P' w
Test method X adapts the published procedure to the conventions and practices used in
) B4 ]9 T+ S7 W1 |IEC 60950. In Method X, the metal foil is secured to the sample prior to the test.3 j9 r# ^# k1 U& p8 y+ `
Test method Y is the slightly different procedure observed on a video presentation,
+ s3 D# _- V* D* e; w# M# ~/ R  W, qwhereby the metal foil is only added to the test assembly after the sample has been8 {, a0 M$ f( U( k0 U" t
stressed by rotating it in the test fixture.
. O5 W' n- B6 _% T$ }$ T" w* BTest method Y appears to be the more practical method, and is evidently how the test is
, v+ b% C9 C3 b8 I6 pcarried out in at least one test laboratory. The two methods should give the same results.
4 @: F2 B- |% `/ i8 A6 f& b7 u! d( F2. Proposal
2 O( K3 R' }$ [$ G# t! dChange the title of 2.10.5.2 to the following:' E; T) `, `) |. L
2.10.5.2 Separable thin-sheet material
3 ~- O  e( q$ NModify the first paragraph of 2.10.5.2 as follows:. E, t" _+ ?. J1 K. N# Y
Insulation in separable thin sheet materials, and in two layers of non-separable thin sheet: w* E9 h' s/ J+ e
materials, is permitted, ….
* S, ]5 K" {5 P5 C6 d' eAdd a new sub-clause 2.10.5.X or 2.10.5.Y.% ?: v: o4 A# g8 \: B2 @
Test Method X. j) f& X9 a2 r! d: L/ y' y
2.10.5.X Non-separable thin sheet material- I0 Y5 p0 v2 N" h( U: ]
Insulation in three or more layers of non-separable thin-sheet materials is permitted for use within
0 n; _& F$ I  I" q9 H6 m& Fthe equipment ENCLOSURE, and shall not be subject to handling or abrasion during servicing. It
& |$ Q! n, I/ l8 C% p  nshall have adequate mechanical strength., u" q) z; t: c$ m
NOTE - The purpose of the tests in 2.10.5.X is to reveal defects that are hidden in inner layers of insulation,0 M2 a" b7 U6 u
so there is no test for insulation in two layers. For insulation in two layers of non-separable thin-sheet
, I+ ~* t. L# X) b3 Pmaterials, see 2.10.5.2
  i6 O+ I6 i. L2 o+ g3 TThere is no requirement regarding distances through insulation, nor for all layers of insulation to be6 U& T& g( t8 k0 P
of the same material.; H% w" M" d7 m* \( O1 n
Compliance is checked by inspection and by the following test:6 |" E& ]0 n# N6 H- |
Three test samples of thin sheet material are used, each approximately 70 mm wide.
: N1 Y+ E& D% g8 _" ]) h) tOne sample is fixed to the mandrel of the test fixture as shown in figure 5X.
7 ?* ^6 f) r. ZA sheet of aluminium or copper foil, 0,035 mm ± 0,005 mm thick, approximately 30 mm wide and at
+ R4 b0 T1 p; H# ~; aleast 100 mm long, is fixed to the surface of the sample. The foil is positioned so that its edges are( n4 k- E2 }$ y3 K. X; K' o
approximately 20 mm from the edges of the sample (see figure 5Xd) and so that when the
* n3 Y3 J4 U" S% [' P2 W8 }- umandrel is in its final position, the foil overlaps the free end of the sample by at least 10 mm (see7 h! l7 W1 P. \' s; f+ [+ a" H
figure 5Xc). The foil is tightened by a pull of approximately 1 N, using an appropriate clamping
* F! C' l5 ?7 V2 ^device.2 `  g& l* E) v1 e/ o
A pull of 150 N is applied to the free end of the sample, using an appropriate clamping device. The% [' o; j& G. L- q: F# B+ I9 y
mandrel is twice rotated forwards and backwards by 230°, and then forwards to the final position.
+ m- y* S2 [/ H' \9 O" x; iWhile the mandrel is in its final position, and within the 60 s following the final positioning, an" u# ^( g! K" ]- D) v- N
electric strength test is applied between the mandrel and the metal foil in accordance with 5.2.2,4 v- p' O, ~: g' x9 `0 B" q
using a test voltage of 1,5 times the value specified in table 5B.
8 S7 e9 Y3 D9 UThe test is repeated with the other two samples+ ~" F3 j# J) B/ Z1 w
If a sample breaks at the clamping device during rotation, the test is repeated on a fresh sample. If
& {) G# e7 \( R6 {one or more samples breaks at any other place, the test has failed., |' u. ~7 O2 }3 M+ z' H! L
............................0 C7 M) Y2 s' w! {6 L0 E
Add new Figure 5X (adapted from Figure 6 of IEC 61558-1)6 q. P( v: o" ]: [7 ?
Figure 5Xa is as figure 6a of IEC 61558-1, modified as follows:' m9 v; e/ x+ B  \, _8 g4 |
Replace "3 x R = 0,5 ± 0,02" by "R = 0,5 ± 0,02 (typ)"
& X# V  F6 r# ~& h2 u$ X5 EReplace "Material: steel nickel plated or brass" by "Material: metal"
8 e  X; O6 U. ?: Z( J" gFigure 5Xd is the same as figure 6c of IEC 61558-10 I$ F6 e. D6 K
Test Method Y
) S: h; i7 d7 {! ~' F2.10.5.Y Non-separable thin sheet material
! ^8 V9 a1 `( h( k4 I' kInsulation in three or more layers of non-separable thin-sheet materials is permitted for use within
; S6 k9 _; c$ J4 _  S# C. ythe equipment ENCLOSURE, and shall not be subject to handling or abrasion during servicing. It) z' ^* f: s/ g1 [: Z
shall have adequate mechanical strength.  ~7 G+ y0 J4 L$ x; ~) L! o
NOTE - The purpose of the tests in 2.10.5.y is to reveal defects that are hidden in inner layers of insulation,' S8 V7 ?0 P7 C5 r( W9 l. f4 O
so there is no test for insulation in two layers. For insulation in two layers of non-separable thin-sheet& t7 i7 E: L+ l3 z7 `
materials, see 2.10.5.2& I3 T. K8 H+ k# C0 v/ ~3 n& t
There is no requirement regarding distances through insulation, nor for all layers of insulation to be6 ~2 ]5 D( G4 F0 w! X
of the same material.1 c8 d: m7 W8 o1 \( f
Compliance is checked by inspection and by the following test:
& f2 Y7 O* u8 [' o( I7 I9 a9 oThree test samples of thin sheet material are used, each approximately 70 mm wide.# p9 S. U9 z' I& u. T
One sample is fixed to the mandrel of the test fixture as shown in figure 5Y.
* x$ {4 k9 A8 C5 BA pull of 150 N is applied to the free end of the sample, using an appropriate clamping device. The
. F% _5 \* o! _! Umandrel is twice rotated forwards and backwards by 230°, and then forwards to the final position.
6 s/ A2 `( _# P+ `1 B0 yA sheet of aluminium or copper foil, 0,035 mm ± 0,005 mm thick, approximately 30 mm wide and at
) S, u0 i4 o; z) P+ Y* R& Ileast 200 mm long, is placed across is the surface of the sample, hanging down on each side of! |$ ]  Q5 E5 O7 h$ s  X6 z
the mandrel. The foil is tightened by a pull of approximately 1 N at each end, using appropriate: m2 f' n9 D0 S+ h4 j1 s
clamping devices.. The foil is positioned so that its edges are approximately 20 mm from the edges
1 h! S& m7 D+ J- a/ x, bof the sample (see figure 5Yd).
/ `8 w! s& w0 i/ N$ |' f4 {6 OWhile the mandrel is in its final position, and within the 60 s following the final positioning, an0 H' P- i) G$ D# P
electric strength test is applied between the mandrel and the metal foil in accordance with 5.2.2,
) M: I# q. b6 l3 Husing a test voltage of 1,5 times the value specified in table 5B.& N/ q: N" E  B* ]1 G6 m! `
The test is repeated with the other two samples
; Z% {  P3 d6 `. d* h3 T3 `- g, R+ mIf a sample breaks at the clamping device during rotation, the test is repeated on a fresh sample. If
# }  h% _8 q4 r: M1 A8 i/ {! none or more samples breaks at any other place, the test has failed.
9 E5 D1 Y/ @& i: N; A7 X.............................../ K' k0 Z; Y; d4 f
Add new Figure 5Y (adapted from Figure 6 of IEC 61558-1)5 f; e7 H7 Z# [% G, G* K& m0 J
Figure 5Ya is as figure 6a of IEC 61558-1, modified as follows:
/ ^! i7 F; t) ~Replace "3xR = 0,5 ± 0,02" by "R = 0,5 ± 0,02 (typ)"1 _1 B$ {/ R1 [2 l, N
Replace "Material : steel nickel plated or brass" by "Material: metal"
4 s! F/ }; a' Z* s$ E. P9 ]Figure 5Yd is the same as figure 6c of IEC 61558-1$ v/ Q, n4 v7 c' q1 x5 S) f

" r6 d1 k. W5 [! E6 n) s- W7 X  @, ]9 T' c/ Q& U, Q

/ ~( x  m  A" n4 j" X0 O; I  x5 X  J) s& {

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