Document 3J5OEyBOLmrdYwgOxpJmYqxXn
FILE NAME:McGraw-Edison (ME)
DATE: &
DOC#: ME0
DOCUMENT DESCRIPTION: WTerminal means for fusible element of current limiting fuse ZEZ BC Note: Discloses asbestos as a preferred material in spiders for current limiting fuse
Nov. 22, 1966
H, W, MIKULECKY
3,287,525
TERMINAL MEANS FOR FUSIBLE ELEMENT OF CURRENT LIMITING FUSE
Filed Feb. 26, 1965
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INVENTOR. BY
United States Patent Office
3,287,525
Patented Nov. 22, 1966
1
2
nals of the fuse and to merge together adjacent the end
TERMINAL MEANs3,2F87,?5F25USIBLE ELEMENT
terminals because the path from conductor-to-conductor
in an axial direction is shorter than the helical path along
OF CURRENT LIMITING FUSE
Harvey W. Mikulecky, Racine, Wis., assignor to McGraw
the conductor. As a consequence, the individual arcs do
Edison Company, Milwaukee, Wis., a corporation of not continue along the entire length of the individual con
Delaware
ductors but rather concentrate in a single fulgurite adja
Filed Feb. 26, 1965, Ser. No. 435,436
cent the fuse end terminals. This heavy concentration of
7 Claims. (Cl. 200-120)
arc heating in a single fulgurite adjacent the fuse end
terminals often scorches the fuse casing and can result in
This invention relates to electrical fuses and, more par 10 release of hot gases, flashover of the fuse, or mechanical
ticularly, to fuses of the current limiting type which limit failure of the fuse.
the flow of current in a circuit to a substantially smaller It is an object of the invention to provide a high am
magnitude than the available fault current of the circuit. perage current limiting fuse construction which prevents
Current limiting fuses usually open with such speed scorching of the fuse casing, flashover of the fuse, and
that the fuse arc resistance is introduced during the first 15 mechanical failure of the fuse caused by excessive arc
half cycle of the short circuit current, and the actual "let heating.
through" current is reduced to much less than the avail This and other objects and advantages of the invention
able current which would flow in the circuit if the fusible will be more readily apparent from the following detailed
element were intact. Current limiting fuses conventional description when taken in conjunction with the accom
y comprise a fusible element embedded in a granular inert 20 panying drawing wherein:
material of high dielectric strength such as sand or finely FIG. 1 is a partial longitudinal view through a current
divided quartz. Usually the fusible element is in the limiting fuse embodying the invention; and
form of one or more thin conductors of silver wound on FIG. 2 is a view taken on line 2-2 of FIG. 1.
a Supporting core, or spider, of high temperature resist Referring to the drawing, a tubular enclosing casing 10
ant ceramic material. As fault current begins to flow 25 for a current limiting fuse is constructed of suitable in
the element melts and an arc is formed. When subjected Sulating material such as glass, fiber, or glass fiber im
to current of high magnitude, the fusible element attains pregnated with epoxy resin. A metallic end piece 11R
fusing temperature and vaporizes almost instantaneously, may be secured to the right end of casing 10 by means
whereupon arcing occurs along the entire length of the of any suitable seal such as epoxy cement, and a metallic
element and the metal vapors rapidly expand to many 30 end piece 11 L may have external threads engaging in
times the volume occupied by the fusible element and are ternal threads near the left end of casing 10 to affix end
thrown into the spaces between the granules of inert filler piece 11L to casing 10. A metallic hinge assembly 12 .
material where they condense and are no longer available may be secured to the end piece 11R at the right end of
for current conduction. The physical contact between fuse casing 10 by screws 14 engaged within threaded aper
the hot arc and the relatively cool granules causes a rapid 35 tures in the end piece 11R. The end piece 11IL has a
transfer of heat from the arc to the granules, thereby dis smaller diameter tubular portion 15 and an axial bore
sipating most of the arc energy with very little pressure 16. A tubular metallic terminal member 17 extends into
buildup within the fuse enclosure. Consequently, a high axial bore 16 with a force fit and is rigidly secured to end
resistance is, in effect, inserted into the path of the cur piece 11L, by pins 18 extending radially through terminal
rent and initially limits the current to a magnitude which 40 member 17 and smaller diameter portion 15 of end piece
is only a small fraction of that available in the circuit. 11.L. Terminal member 17 is adapted to fit within a
The inserted resistance increases rapidly and results in stationary jaw contact (not shown) of an electrical switch,
rapid decay of current and subsequent interruption of and an insulating member 19 provided with an eye (not
current with negligible generation of gas and noise. The shown) for receiving a hook-stick may be secured in the
sand particles in the immediate vicinity of the arc fuse end of tubular member 17 by suitable means such as:
and become partial conductors at the high temperature epoxy cement. An arc extinguishing sleeve member 20.
of the arc. The fused particles cool upon extinction of slidably fitting over casing 10 may have an inner tubular
the arc and solidify into a "fulgurite," which is in the portion 21 of insulating material telescoped over terminal
bnaetcuormeeofinasulgaltaosrssbaosdy,theayndcolools.e their conductivity and 50 wmietmhbteerrm1i7naalnmdebmebeurrge1d7 abxyialalyheilnitcoalcosvperriinngg2r2elcatoiomn :
Unlike expulsion fuses, current limiting fuses are de pressed between end piece 11L and the end portion 24 of
signed to operate within a specific range of voltages. arc extinguishing member 20 for the purpose of inter
Each voltage size of current limiting fuse is designed to rupting any arc formed between terminal member 17 and
operate over its entire fault capacity range with a "per 55 the switch jaw contact as described in my copending ap-- -
missible" transient voltage surge. Each size of current plication Serial No. 298,882 filed July 31, 1963 and
limiting fuse must be designed so that this "permissible" having the same assignee as this invention.
peak arc voltage stays well below the basic impulse level Metallic end plates 25 are disposed against the internal
of the power system and below the sparkover potential of surface of end pieces 11L and 11R and are secured there
lightning arresters on the power system, and careful 60 to by screws 26. Each end plate 25 has a plurality of
choice must be made of the number and size of the silver radially extending tabs 27 adjacent its outer periphery
wires or silver ribbons which comprise the fusible elle which may be bent down and form terminals to which the
ment to assure proper clearing of the fuse from minimum fusible conductors may be electrically connected. An
melting current to maxium rating thereof.
elongated insulating core, or spider, 28 is axially mount
High amperage current limiting fuses often comprise a 65 ed within casing 10. The ends of spider 28 are affixed
number of conductors such as silver ribbons helically to metallic end plates 25 by suitable means such as epoxy
wound in parallel on the insulating spider and electrically Cement.
connected between the end terminals of the fuse. Each Spider 28 is of generally star-shaped cross section and
silver conductor rapidly vaporizes under high fault cur has a plurality of radially protruding, peripherally spaced
rent, and a fulgurite is formed along the entire length of 70 apart, longitudinally extending fins 32. Each fin 32 has
the conductor. The arcs within the individual fulgurites a plurality of depressions 33 spaced apart longitudinally
tend to assume the shortest path between the end termi of Spider 28 and forming longitudinally spaced apart,
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3,287,525
3
4.
raised shoulders 34 on each fin. The depressions 33 of peripherally successive fins are progressively staggered in a longitudinal direction of spider 28 so that the periph erally successive depressions 33 define a continuous heli cal path and the peripherally successive raised shoulders 34 form support means of helical configuration for a helically wound circuit interrupting element 36 intercon necting the end pieces 11L and 11R. A fusible wire 37 for indicating operation of the fuse may be disposed in the continuous helical path defined by the depression 33.
Spider 28 may be of a heat resistant ceramic insulat
ing material such as porcelain, but in the preferred em bodiment of the invention spider 28 is of an electrical in
sulating material adapted to evolve gas in the presence of an arc and may be of a molded thermosetting composi
arrangement of the silver ribbons 38 results in the path from ribbon-to-ribbon in an axial direction being shorter than the helical path along the ribbon. Consequently, the individual arcs do not continue along the entire
length of the individual ribbons 38 but rather concentrate
in a single fulgurite adjacent the metallic end plates 25. This heavy concentration of arc heating in a single full gurite often scorched the casing 10 of prior art fuses and can burn through the casing and release hot gases which, in turn, can ignite the casing 10 or bridge between the end pieces 11L and 11R and flashover the fuse. In em bodiments wherein casing 10 is of glass or ceramic ma terial, the intense concentration of arc heating occasion ally cracked the fuse casing and caused mechanical failure
of the fuse.
tion comprising a water insoluble binder and an anti In accordance with the invention, an elongated metallic
tracking substance selected from the class consisting of clip 43 of U-shaped cross section extending in a direction
the hydrates and oxides of aluminum and magnesium as parallel to the axis of the fuse is disposed over a raised
disclosed in my copending application Serial No. 313,640 shoulder 34 at each end of spider 28 in abutting relation
filed October 3, 1963 entitled Current Limiting Fuse and 20 to end plate 25 and in a position wherein the three
having the same assignee as the subject invention. The helical silver ribbons 38 are wound in axially spaced apart
composition of spider 28 may also include other fillers relation over the longitudinally extending clip 43. One
such as mica, glass fiber, asbestos, or silica, and one suit of the radially extending tabs 27A on end plate 25 is bent
able material comprises approximately 60 percent alumi down and soldered to clip 43 so that clip 43 is connected
num hydrate filler, 20 percent melamine resin binder, 25 electrically to the end plate 25 and end piece 11. When
and approximately 20 percent asbestos. The active gas a high magnitude fault current vaporizes the silver rib
generating and anti-tracking ingredient may be com bons 38, the arcs formed along the ribbons terminate
mercial grade aluminum hydrate Al (OH)3, magnesium on the longitudinally extending metallic clips 43 rather
hydrate Mg(OH)2, an oxide of aluminum such as alu than on the end plates 25. Inasmuch as clips 43 extend
mina Al2O3, or magnesium oxide. In addition to or in 30 in an axial direction, no fulgurite-to-fulgurite path in an
place of the melamine resin, other resins may be em axial direction exists adjacent the fuse terminals which
ployed as the binder of the molding composition, for is shorter than the path along the ribbons, and the indi
example, phenolic, urea, polyester or silicone resin.
vidual ribbon fulgurites thus terminate on the clips 43
The casing 10 is filled with a body of suitable pulver and have no tendency to merge together or concentrate
ulent refractory arc quenching material 46 such as quartz 35 at a single point. The disclosed construction prevents
sand so that the spider 28 and the fusible element 36 are concentration of the arc and excessive arc heating which
directly embedded in the quartz sand filler.
in prior art fuses often scorched the fuse tube and re
Fusible element 36 is illustrated in the high amperage leased hot gases that flashed over the fuse tube.
current limiting fuse shown in the drawing as comprising On low magnitude faults, the gas generated by the
three silver ribbons 38 helically wound in parallel, spaced 40 material of spider 28 at the points of contact with fusible
apart relation on the raised shoulders 34 so as to be in ribbons 38 is blown into the arc stream and coolis the
approximate line contact with fins 32 and touch only fulgurite and produces a deionizing action on the arc
peripherally spaced apart points on spider 28. Ribbons products so that the inert sand particles quickly lose their
38 may be secured at their ends by suitable means such conductivity and become conductors.
as solder to bent-down tabs 27 on the end plates 25 45 While only a single embodiment of the invention has
which are affixed to the end pieces 11L and 11R. The been illustrated and described, many modifications and
silver ribbons 38 may have a plurality of circular perfora variations thereof will be readily apparent to those skilled
tions, or holes, 39 spaced apart along the length thereof in the art, and consequently it is intended to cover in
which determine the points where fusion of the ribbon the appended claims all such modifications and variations
is initiated when the fault current and its rate of rise are 50 which fall within the true spirit and scope of the in
high. The perforations 39 form portions of reduced cross vention.
sectional area so that each ribbon 38 has a number of
I claim:
serially related portions of relatively small cross sec 1. In a high amperage current limiting fuse, a tubular
tional area and intermediate portions of relatively large insulating casing, an inert granular material of high di
cross sectional area. Beads 44 of low melting tempera 55 electric strength within said casing, an insulating spider
ture alloy such as tin-lead solder are in intimate contact eXtending parallel to the axis of said casing and em
with the silver ribbons 38 preferably adjacent the mid bedded in said inert granular material and having periph
point thereof. At melting currents flowing for prolonged erally spaced apart, radially protruding portions extend
periods, the fusible ribbons 38 become hot enough to ing longitudinally thereof, a plurality of silver ribbons
melt the alloy bodies 44, and the amalgamation of the 60 helically wound in parallel spaced apart relation on said
silver and alloy causes a hot spot with high enough re radially protruding portions of said spider and being
sistance to melt the ribbons 38 at this point. This con embedded in said granular inert material, and a metallic
struction, known as the "M" effect, allows the fusible terminal on each end of said casing, said metallic ter
ribbons 38 to melt at a temperature in the 400--600 F. minals each including a portion extending axially with
range, when subjected over a long period of time to low respect to said casing and engaging said ribbons, said
magnitude currents, as compared to the 1760 IF. Imelt ribbons engaging and electrically connected to said axial
ing temperature for pure silver.
ly extending portions at points spaced axially thereon
On fault currents of high magnitude, the alloy element with respect to said casing so that all of the arcs formed
44 has little or no effect, and the silver ribbons 38 vapor upon vaporization of said ribbons, incident to high mag
ize almost instantaneously at the fusion temperature for 70 nitude fault current carried by said fuse, terminate on
silver and form fulgurites along the entire length of the said axially extending terminal portions and do not tend
ribbons 38. The arcs within the individual fulgurites to merge together and cause excessive arc heating.
tend to assume the shortest path between the metallic 2. In a high amperage current limiting fuse, a tubular
end plates 25, and the fulgurites tend to merge together insulating casing, an inert granular material of high di
adjacent the end plates because the parallel, side-by-side 75 electric strength within said casing, an insulating spider
3,287,525
5
extending parallel to the axis of said casing and em bedded in said inert granular material and having periph erally spaced apart, radially protruding portions extend ing longitudinally thereof, a plurality of silver ribbons helically wound in parallel spaced apart relation on said radially protruding portions of said spider and being embedded in said granular inert material, each of said rib bons having a body of low melting temperature alloy in contact therewith, said radially protruding portions along
at least the surface thereof in contact with said silver
6 bons at points spaced axially thereon with respect to said casing so that, all of the arcs formed upon vaporization of said ribbons terminate on said axially extending terminal portions and do not tend to merge and to cause excessive
arc heating.
5. In a fuse in accordance with claim 4 wherein said
spider is of an insulating material capable of generat ing gas in the presence of an arc and each of said rib bons has a body of low melting temperature alloy in
contact therewith.
ribbons being of an electrical insulating material adapted 6. In a fuse in accordance with claim 5 wherein said
to generate gas in the presence of an arc and being ca insulating material includes a water insoluble binder and
pable of continuously withstanding temperatures up to an anti-tracking substance selected from a group consist
250 F. without degradation and up to 500 F. for ing of the hydrates and oxides of aluminum and mag
periods of up to one hour without substantial decom nesiunm.
position, and a metallic terminal on each end of said 7. In a high amperage current limiting fuse, a tubular
casing and electrically connected to all of said ribbons, insulating casing, an inert granular material within said
said metallic terminals including a portion extending casing, an insulating support core extending parallel to
axially with respect to said casing across the helical path the axis of said casing and embedded in said inert granu
of and electrically connected to all of said ribbons, said 20 lar material, a plurality of fusible elements helically
ribbons engaging and electrically connected to said axial wound in generally parallel spaced relation on said sup
ly extending portions at points spaced axially thereon port core and embedded in said inert granular material,
with respect to said casing so that all of the arcs formed and a metallic terminal at each end of said casing, said
upon vaporization of said ribbons, incident to high mag metallic terminals each including a portion extending
nitude fault current carried by said fuse, terminate on 25 axially with respect to said casing and engaging said fu
said axially extending terminal portions and do not tend sible elements, said fusible elements engaging and elec
to merge together and cause excessive arc heating.
trically connected to said axially extending portion at
3. In a fuse in accordance with claim 2 wherein said points spaced axially thereon so that all of . the arcs
insulating material includes a water insoluble binder formed upon vaporization of said fusible elements ter
and an anti-tracking substance selected from a group 30 minate on said axially extending terminal portions at said
consisting of the hydrates and oxides of aluminum and axially spaced points and do not tend to merge together
magnesium.
and cause excessive heating.
4. In a high amperage current limiting fuse, a tubular
insulating casing, an inert granular material of high di
References Cited by the Examiner
electric strength within said casing, an insulating spider 35
UNITED STATES PATENTS
extending parallel to the axis of said casing and embedded in said inert granular material and having peripherally
2,230,207 1/1941 Thommen et al. -- 200-120 X
spaced apart, radially protruding portions extending lon 2,667,549 1/1954 Fahmoe et al.
gitudinally thereof, a plurality of silver ribbons helically 2,768,264 10/1956 Jones et al. -------- 200-144
wound in parallel spaced apart relation on said radially 40 3,138,682 6/1964 Dannenberg et al. - 200-120
protruding portions of said spider and being embedded
OTHER REFERENCES
in said granular inert material, a metallic terminal on each end of said casing having a plurality of circumfer
Metals Handbook, 1939 ed., Cleveland, Ohio, Ameri
entially spaced apart portions individually affixed to said can Society For Metals, p. 1523, TA472, A3--1939.
helically wound ribbons and also having a portion ex tending axially with respect to said casing across the heli
BERNARD A. GILHEANY, Primary Examiner.
cal path of and electrically connected to all of said rib H. B. GILSON, Assistant Examiner.