Document OEO7woXB2JgqDV6wRkpZ957KK
FILE NAME: McGraw-Edison (ME)
DATE: 1952 Aug 6
DOC#: ME024
DOCUMENT DESCRIPTION: Patent - High temp transformer construction or the like [Approved - 1958 Mar 18]
March 18, 1958
m. l. m a n n in g
2,827,616
HIGH TEMPERATURE TRANSFORMER CONSTRUCTION OR THE LIKE
F ile d Aug. 6, 1952
2 Sheets-Sheet. 1
March 18, 1958
m. l. m a n n in g
2,827,616
HIGH TEMPERATURE TRANSFORMER CONSTRUCTION OR THE LIKE
F ile d Aug. 6, 1952
2 Sheets-Sheet 2
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United States Patent Office Patented Ma2r.,81287, ,1691568
1
2,827,616
HIGH TEMPERATURE TRANSFORMER CONSTRUCTION OR THE LIKE
Melvin L. Manning, Upper St. Clair Township, Allegheny County, Pa., assignor to McGraw-Edison Company (Pennsylvania Transformer Division), a corporation of Delaware
Application August 6, 1952, Serial No. 302,887
13 Claims. (Cl. 336--196)
This invention relates to a new high temperature trans former construction or the like. More particularly, it pertains to a new kind of transformer or the like in which silicone and fiber insulating materials are combined.
High temperature transformers and other high tempera ture electrical induction constructions have been an objective of various manufacturers for some time. The work in that direction received added impetus upon the widespread introduction of silicone materials a few years ago. Despite the recognition of the electrical qualities of such materials, a number of drawbacks attended use of them. One manufacturer despite the availability of such silicone materials provided heat-resistant glass cyl inders for insulating barriers.
I have discovered a new construction which enables the remarkable properties of. silicone materials to be fully employed for insulation and support.purposes to provide a transformer or the like with a class-H rating. At the same time, I am enabled to shield the leads and windings by means of my new construction in a manner which pre serves the advantages thereof without risk of creepage or breakdown in that area. Other advantages of my new construction are that it provides protection against .local dielectric and thermal weakness points and permits effi cient construction practices to!he employed.
Other objects and advantages of this Invention will be apparent from the following description and from the drawings, which are illustrative only, in which
Figure 1 is a plan view, partly schematic, of low and high voltage windings, barriers and spacers of a high .tem perature dry transformer embodying my invention;
Figure 2 is a view in elevation of the structure ..shown in Figure 1 taken along line II--II of Figure 1;
Figure 3 is a somewhat detailed view of the portion of the. structure shown in. Figure 1;adjace.nt the low voltage winding, leads and shielding, taken along the .line III--III of Figure 1;
Figure 4 is an illustrative dissected view of a .formable silicone resin laminate employed in my new construction;
.Figure 5 is an-illustrative dissected view of a flexible silicone rubber and fiber ply material employed in my new construction;
.Figure 6 is a section through a core to low voltage wind ing, barrier in my new construction.showing the silicone materials of Figures ,4 and dim an interleaved combina tion; and
Figure 7 is a.diagrammatic, showing.of one end of a transformer embodying my ..invention in the course of being constructed.
Referring to the drawings, a power transformer 10 is shown in Figures 1-and 12 in sufficient, detail to illustrate the new construction features, in one embodiment of my invention. In that embodiment, a .cruciform laminated core leg 11 of a conventional magnetic core may be illus trated as shown-in Figure 1 by dot-and-dash lines. A core-to low voltage winding. (CL) barrier envelope 12 sur rounds .core leg 11 in close,proximity thereto. Axial spacers 13 may be positioned around the outside of CL
2
barrier 12 in spaced arrangement where they are held in the course of the winding of the concentric layers 14 and 15 of a helically wound low voltage winding. Spacers 13 may be held against barrier 12 by a suitable silicone adhe5 sive or other means. The conductors employed in winding the low voltage winding layers 14 and 15 may be wire which is served with a glass silicone resin bonded tape insu lation prior to winding. In other cases, such conductors may be served with other materials such as flexible asbes10 tos or glass cloth silicone tape or "Teflon" tape. Insula tion in the form of a cylindrical envelope 16 may be inter posed between the layers 14 and 15 by using, for example, silicone rubber ply material similar to that employed In the construction of CL barrier 12.
15 A further series of axial spacers 17 may be held against and spaced around the exterior of the low voltage wind ing coil comprising layers 14 and 15. A further insulat ing (HL) barrier envelope 18 between the low voltage coil 14-- 15 and a high voltage coil 19 may be provided under
20 my new construction entirely of silicone and fiber matrix materials. HL barrier 18 may comprise a combination of more of the interleaved plies than the number-used for the CL barrier as shown in Figure 6. Barrier 18 insulates
_ the lw voltage windings from the high voltage windings 25 and must withstand the relatively high voltage potentials
and thermal increases to which it is subjected. A further series of axial spacers 20 of solid or molded U shapes may be fastened at uniform intervals around and to the exterior of HL barrier 18. Alternate spacers 21 in the series-of 30 spacers 20 may be of keytone shape, if desired, to permit keying engagement with and movement during assembly for lateral spacers 22.
The high voltage coil 19 may comprise a plurality of double layer horizontal pancake windings 23 in vertically 3o stacked arrangement as shown in Figure 2, respective, ones of said such windings being interconnected electrically by crossover.conductors 2.4. The radial spacers 22 may be
made of a mechanically and electrically strong material like porcelain. Axial spacers 13,17 and 20 may be made 40 of class-H insulating .material in the form of solid ,or channel-shaped spacers. As an example, I have discov ered that glass cloth or asbestos cloth bonded with silicone resin materials may be molded or otherwise shaped and ..cured to provide axial spacers of markedly superior,me0 chanical and dielectric strengths. The annular pressure plates and tie rods which respectively bear endwise, on the respective windings and lateral.spacers 22 have.not been illustrated as such.features will be well understood by those skilled in the art. .The vertical, ducts 25 between the axial spacers .13,.the vertical ducts .26 between the axial spacers 17, the vertical ducts 27 between the axial.spacers .21 and the lateral ducts..28.between the.lateral spacers 22 afford access to the turns of the respective windings for 65 whatever cooling or ambient fluid may be employed. in the case of a sealed dry-type transformer embodiment, a gas like nitrogen may be used to fill the, gas space within a transformer tank in which my new construction is. placed.
In construction the embodiment shown ,in Figures ,1 qq and 2, one mode, of making the new barrier envelope is
illustrated in connection with making a barrier. 18.and other barrier 12 may be similarly made. In the, trans former or the like being constructed, any entire or other partial barriers, whether cylindrical or arcuate, may be gg constructed in accordance with my invention. In that invention, one or more sheets 29 of a formable.silicone resin and fiber laminate is combined in interleaved man ner with one or more plies 30 of flexible silicone rubber and fiber material. Generally, in preparing a cylindrical 70 envelope barrier in accordance with this invention, each kind of . material is formed into the desired cylindrical
shape beginning with the innermost layer. Thus, a cylin der of the laminate may be provided and the ends over
lapped' and fastened by a silicone adhesive, for example, ply 30 are provided and inserted in place as shov/n in
or by class-H tapes of sufficient strength, enough turns Figures 1 and 3 generally in the course of the construc
being made in the laminate layer to provide a due share tion winding as on lathe 31. The surface of the insula
of the total insulation of the new combination. Then tion exposed to the lead or leads is preferably faced with
; one or more layers of the silicone rubber and fiber ma 5 a silicone rubber coated glass cloth or asbestos cloth.
terial may be. formed in cylindrical shape around the
In such construction, as an example, the innermost
laminate and the outermost end of said material fastened plate 34 may be pinched between and held between the
again by silicone adhesive or other means. In some top turns of layer 14 and the adjacent axial spacers 13
cases, the laminate material may have a silicone rubber on the other side of that plate 34. On the other hand,
-layer affixed to one or both surfaces of the laminate be 10 if keep-back insulation of a class-K category is inter
fore the laminate is formed. Around the silicone rubber posed between the plates 34 above the topmost turn of
and fiber material, another one or more layers of lami the layers 14 and 15, and, on each side of leads 33 in a
' nate material may be wound against the exterior of the circumferential direction, as shown in Figure 3, then the
silicone rubber and fiber material layer or layers to com plates 34 may respectively be held between such keep
plete the interleaving. As shov/n in Figure 6, barrier 12, 15 back insulation 35 and the axial spacers 13 and 20 re
for example, may be made in the form of a right cylin spectively. The height of the plates 34 above the bar
der, the innermost layer of which as shown is a layer of riers 12 and 18 guards against creepage and any possi
formable laminate surrounded by two layers of silicone bility of short-circuiting at the outlet shown of the taps
rubber and fiber in turn surrounded by a single layer of 33 relative to parts of the transformer at different voltage
laminate again, the entire construction comprising a 20 potentials.
single barrier envelope with markedly superior features,
Laminate sheets such as sheets 29 may now be ob
both dielectrically and mechanically, to any insulation tained as a commercial article having a fiber cloth matrix
heretofore provided.
of an inorganic material like heat-cleaned glass or as
The construction of a new barrier envelope may be bestos. Such fibrous matrix in the case of glass, for performed in a winding lathe such as those used in the 25 example, may be in part a staple cloth 35 woven of short
transformer industry. For example, as illustrated in lengths of glass filaments in the manner of a staple vege
Figure 7, a barrier such as HL barrier 18 is shown being table fiber cloth. Laminate 29 also preferably employs
formed in place. The CL barrier has already been a fiber matrix cloth 37 woven of continuous glass fila
formed and is molded in a lathe 31 which rotates in the ments placed in juxtaposition to the cloth 36. These direction of the arrow. If desired, a steel cylinder may 30 cloths 36 and 37 are impregnated v/ith a silicone resin
be used as the innermost mold to initiate the construc which enters the interstices of the cloth and wholly
tion of barrier 12 thereagainst in which event a mold covers them to form, when solidified, the laminate sheets
release compound, for example, may be used between 29. In place of such fiber matrix, it may also be possible
the exterior of the mold cylinder and the interior cylin to use such inorganic fibers in the form of a felted cloth drical" surface of the CL barrier 12. In the partially 35 or matte highly resistant to electrical, mechanical and
completed construction shown in Figure 7, the axial thermal deterioration. The silicone resins may be of a
series of spacers 18 has been positioned, the low voltage kind such as those sold by Dow Corning Corporation
winding 14--15 has been wound on the lathe around the under the trade identification "DC 2104." A silicone ma
spacers 13, the spacers 17 have been positioned.and the terial laminate of suitable character for employment in lathe is in the midst of winding the HL barrier 18 as 40 my invention is one such as that made by Mica Insulator
aforesaid with a strip 29 of laminate. Enough layers of Company of Schenectady, New York, having the trade
silicone laminate and silicone rubber material will be designation "E-724 Lamacoid." In preparing laminate
utilized in the new interleaved relation to provide the 29, usually from 40 to 60 percent of the weight thereof
necessary mechanical and dielectric strength required for will be the partially or wholly cured and solidified sili the high-low voltage barrier envelope service in the par 45 cone resin. In applying the laminate 29, it is preferable
ticular transformer or the like under construction. When to place the staple cloth 36 on the inside of the bend and
such winding of barrier 18 is completed, that barrier, the continuous fiber cloth 37 on the outside, generally
as is the case of bander 12, will have sheets 29 and 30 with the warp of both cloths parallel to the longitudinal
interleaved throughout. Preferably, the sheets 29 and axis of the insulation envelope or cylinder being con 30 are of a width equal to the entire height of the trans 50 structed.
former windings plus the additional height equal to the
Suitable silicone rubber plies such as the sheet 30 are
keep-back insulation length desired at the respective axial also now commercially available on the market for
ends of the transformer or the like.
employment, in my invention. Such a silicone rubber
The new construction of this invention also effects a material may comprise a cloth of inorganic fiber like marked improvement in taking care of lead outlets par 55 glass or asbestos, thoroughly heat-cleaned to remove
ticularly in the case of the more interior windings such organic binders, which cloth forms a matrix for a silicone
as the low voltage coil 14--15 shown in the illustrated rubber coating. One suitable silicone elastomer for such
embodiment. Leads 32 from the high voltage coil 19 do coating purpose is "Silastic," a trade name of Dow
not generally present any particular problem in the case Corning Corporation, which corporation also makes a of an embodiment such as that shown because of their 60 suitable silicone rubber and fiber matrix material suitable
presence in the vicinity of the exterior of the transformer for the sheets 30. The fiber glass which may be utilized in
where they can, for example, be readily conducted up the construction of the new insulation components of this
wardly through an insulating tube, which, again, may be invention should have characteristics suitable for satis
made of tubular silicone material now available on the factory electrical, mechanical and thermal service in a
market.
65 class-H transformer. Certain of the glass products
On the other hand, conductor leads 33 are generally termed "Fiberglas" by Owens Corning Fiberglas Corpora
connected not only to the ends of the low voltage coil tion are suitable in making up the matrices for silicone
--15 but also to intermediate points therein and all sheet materials like sheets 29 and 30.
of the leads or taps have to have an outlet from the in
70
In my employment of such new insulation in a trans former or the like, I have also found it useful to have the
terior of the embodiment of the new transformer which dielectric constants of the interleaved sheet materials like
is shown. In my invention, cylindrical insulation plates sheets 29 and 30 of about the same dielectric constant,
34 which are arcuate and may be preformed of inter which may be in the neighborhood of 3.5. Thereby, the
leaved layers of laminate like laminate 29 alternating gradient through the materials in series because of their
with interleaved layers of silicone rubber material like 75 interleaved relation appears to be relatively uniform and
2, 827,818
6 ....................
the voltage strength throughout the new insulation struc former than those described herein will be of suitable
ture will also be generally uniform and foci of weakness electrical and mechanical characteristics for the intended
for breakdown in the course of use are avoided. The use purpose. The invention is applicable not only to dry
of various filler materials such as titanium dioxide or but also to wet transformers or the like and to ventilated
zinc oxide may be employed in the manufacture of the 5 and sealed transformers and the like.
silicone rubber material, as will be well understood by
Various changes may be made in the practice of the
those in the art to whom this invention is disclosed, to present invention without departing from the spirit there
achieve relative equality of the dielectric constants of of or the scope of the appended claims.
the component laminate and silicone rubber materials in
I claim:
the composite insulation. Other ways may be employed 10 1. In an electrical transformer, in combination, an at
to harmonize the respective constants of the two sheet least partially cured silicone resin impregnated insulating
materials.
sheet having a heat-cleaned inorganic fiber base material
In constructing the new transformer the laminate may and an at least partially cured silicone rubber insulating
be formed cold for bent diameters exceeding about 10 sheet having a heat-cleaned inorganic fiber base material,
inches whereas formerly it was believed that such kind 15 said sheets being contiguous and positioned between and
of material had to be heat formed. I find, however, that insulating portions of said transformer having a potential
not only may such material be cold formed but that such difference therebetween, said fibers being selected from a
cold forming for laminates not in excess of about yS2 of group consisting of glass and asbestos.
an inch in thickness does not produce any tendency to
2. In a transformer, in combination, at least one form-
craze it, particularly when used in cooperation with a 20 able silicone resin impregnated sheet having a heat-
silicone rubber material like the sheets 30 having a thick cleaned, continuous filament, inorganic fiber cloth, and
ness between about %4 of an inch and %2 of an inch. In at least one silicone rubber sheet having a heat-cleaned
some cases the laminate, particularly for smaller diameter inorganic fiber cloth, said fibers being of a material se
uses or thicker sheets, may be heated to about 165 C. lected from a group consisting of glass and asbestos, said
for a relatively few minutes generally not in excess of 25 sheets being contiguous and disposed between and insulat
four.
ing portions of said transformer having a potential dif
It appears that the new composite insulation forms ference therebetween.
a unitary mass which functions ideally as the supporting
3. In a transformer, in combination, a relatively thin,
framework for the windings of the new transformer and bendable, at least partially cured silicone resin impreg
provides dielectric characteristics and strength between 30 nated sheet having heat-cleaned inorganic continuous
the various parts of the transformer, at different potentials filament and staple fiber cloths in superposed relation, and
to enable a new transformer to function in the class-H a relatively thin, at least partially cured silicone rubber
category without the disabilities of prior transformers in such category. The sheet materials 29 and .30 so em
sheet, said sheets being contiguous and positioned between and insulating portions of said transformer having a po
ployed may in'the case of the laminate be partly Or fully 35 tential difference therebetween.
cured whereas in the case of the silicone rubber and fiber matrix material it will generally be in a partly cured
4. In a transformer, in combination, an insulation barrier comprising silicone resin impregnated sheets inter
state. Curing of the insulation after completion of the winding assemblies may be performed at a temperature
leaved with silicone rubber sheets, said barrier being positioned between and insulating portions of said trans
at about 250 C. Prior to such curing, the winding 40 former having a potential difference therebetween, said assembly may be dipped into a silicone type of varnish, sheets having approximately the same dielectric constant.
as one example, to complete the mechanical binding of
5. In a transformer, in combination, a bendable silicone
the new transformer windings and assembly. One ad resin impregnated sheet having an inorganic heat resistant
vantage of such a varnish is that its high gloss reduces any opportunity for the settlement of dust or other con
45
and electrically insulating heat-cleaned fibrous cloth, and
taminant which might constitute a leakage path and a flexible, at least paritally cured silicone rubber coated
another is its high craze resistance. Thereafter, if not sheet having an inorganic heat resistant and electrically
earlier, any mold cylinder which has been employed will insulating heat-cleaned fibrous cloth, said sheets being
be removed before the completion and performance test contiguous and positioned between and insulating portions
ing of the entire transformer or the like.
50 of said transformer having a potential difference there
_ A study of the advantages of my new composite
between, said sheets further having approximately the same dielectric constant.
insulation and cooperation in a transformer or the like leads to the belief that the interleaved substances com
6. In an electrical transformer, the combination with a
plement one another in the course of use to a marked and closed magnetic core having a winding leg and an elec
unusual extent. For example, the silicone rubber and 55 trical coil surrounding said winding leg of a tubular in
fiber matrix material appears to at least hinder the aging sulating barrier disposed between and insulating said leg
of the silicone resin and fiber matrix laminate and also to and said coil comprising interleaved at least partially
cooperate in dissipating any tendency to craze or crack cured silicone resin impregnated sheets having a heat-
which the laminate might otherwise have. Further, the cleaned, inorganic fiber, base material and at least par
heat conductive properties of the silicone rubber material 60 tially cured silicone rubber sheets having a heat-cleaned,
appear to be superior to those of a silicone laminate such inorganic fiber, base material, said fibers being selected
as that described with the consequence that the thermal from a group consisting of glass and asbestos, said leg,
lag of the one material like sheet 29 is materially aided if said barrier, and said coil being bound together by a
not overcome by the thermal conductivity of sheet mate silicone varnish.
rial like sheets 30. Thereby the new transformers or the 65 7. In an electrical transformer, the combination with
like can be consistently worked and operated at higher concentric high and low voltage windings of a tubular in
levels and/or for longer times as in the case of varying sulating barrier interposed between and insulating said
load cycles or load demands on transformers, without windings comprising interleaved silicone resin impreg
detriment.
nated sheets having a heat-cleaned, continuous filament,
The hot spot temperature standard of 180 C. set some 70 inorganic fiber cloth and silicone rubber sheets having a years ago for class-H insulation can be materially ex heat-cleaned inorganic fiber cloth, said fibers being of a
ceeded by means of the present invention without any material selected from a group consisting of glass and
observable deterioration. In constructing the new trans asbestos, said barrier and windings being bound together
former or the like, it will be understood that other insulat by a silicone varnish.
ing materials that may be used for other parts of the trans- 75 8. In an electrical transformer, the combination with
2,827,016
7 concentric windings of a tubular insulating barrier inter
s staple fiber cloth, said continuous filament cloth being
posed between-and insulating said windings comprising disposed radially outward from said staple fiber cloth and
formable silicone resin impregnated sheets interleaved having the warp thereof parallel to the axis of said tubular
with silicone rubber sheets, each of said sheets having a barrier, each of said silicone rubber sheets having at least heat-cleaned inorganic fiber base material, said sheets 5 one inorganic fiber cloth, said cloths being of a material
further having approximately the same dielectric constant. selected from a group consisting of glass fiber and asbestos
9. In an electrical transformer, an insulation barrier fiber.
comprising at least one formable silicone resin impreg
12.
In stationary induction apparatus, in combination,
nated sheet having a glass fiber base material and at least at least one formable silicone resin impregnated sheet one silicone rubber sheet having a glass fiber base ma 10 having a heat-cleaned inorganic filler and at least one
terial, said sheets having approximately the same di silicone rubber sheet having a heat-cleaned inorganic
electric constant and being disposed between portions of filler, said sheets being contiguous and disposed between
said transformer having a potential difference there and insulating portions of said stationary induction ap
between.
paratus having a potential difference therebetween.
10. In an electrical transformer, the combination of a 13 13. In an electrical transformer, the combination of a
cylindrical winding and an arcuate insulating barrier, cylindrical winding and an arcuate insulating barrier, said
said barrier comprising silicone resin impregnated sheets barrier comprising silicone resin impregnated sheets inter
interleaved wtih silicone rubber sheets, each of said sili- leaved with silicone rubber sheets, each of said sheets hav
.cone resin sheets having at least one heat-cleaned con ing a heat-cleaned inorganic filler, said barrier being ad-
tinuous filament cloth and at least one heat-cleaned staple 20 jacent said cylindrical winding and insulating said wind
fiber cloth, said continuous filament cloth being disposed ing from portions of said transformer at potentials differ
radially outward from said staple fiber cloth and having ing from that of said winding.
its warp parallel to the axis of said cylindrical winding, each of said silicone rubber sheets having at least one
References Cited in the file of this patent
heat-cleaned cloth, said cloths being of fibers selected 25 .from a group consisting of glass and asbestos, said barrier being adjacent said cylindrical winding and insulating said winding from portions of said transformer at poten tial1s1.diIfnferainngeflreocmtrictahlattraonfssfaoirdmwerin, dtihneg.combination with 30 concentric windings of a tubular insulating barrier inter posed between said windings, said barrier comprising sili cone resin impregnated sheets interleaved with silicone rautblbeearstshoenetes,ceoancthinoufosuasidfirleasminenimt pcrleogthnaatenddshaeteltesahsatvoinnge 35
1,452,158 1,639,145 1,664,541
2,348,239 2,454,218 2,460,795 2,527,236 2,571,418 2,601,337
UNITED STATES PATENTS
Horelick------------------------ Apr. 17, 1923 Niemann----------------------- Aug. 16,1927 C ooper------------------------- Apr. 3, 1928 B eldi__________________ May 9, 1944 Schulman---------------------- Nov. 16, 1948 W arrick_______________ Feb. 1, 1949 W hitman_______________ Oct. 24, 1950 Castenschiold------------------ Oct. 16, 1951 Smith-Johannsen------------- June 24, 1952