Document mDEOGNdE7pbDJEd88b1JB8z0
PLAINTIFFS EXHIBIT
JM 1051
May 11, 1943.
b. wallrath etal
2,318,821
METHOD AND APPARATUS FOR MAKING FIBROUS MINERAL MATERIAL
Filed Sept. 16, 1940
NlTC 017093
Patented May 11,1943
,2 318,821
UNITED STATES PATENT OFFICE
.2 318,821
METHOD AND APPARATUS FOR MAKING fibrous MINERAL MATERIAL
Burton WaHraUi and Leonard Barinskl, Saginaw, Mich* assignor* to Oweni-Coming Flberglaa Corporation, Toledo, Ohio, a corporation of Delaware .
Application September 16,1940, Serial No. 357,012
8 Claims. (CL 83--91)
This Invention relates to machines for convert were retained by most makers of mineral wool
ing viscous substances Into filaments, and pertains machines up to the development of our present
more particularly to machines for making mineral invention.
wool from glass, slag, or other molten materiaL
Our Improvement departs from the hitherto ac
Objects of our Invention are; to provide means 5 cepted Ideas that wool threads should originate
for increasing the hourly output rate of fibre from in a free-flying molten particle or shot whose
a machine of given size; to produce longer and momentum constituted an essential factor for
finer fibres more nearly uniform as to length and converting it into a filament. We have found that
diameter; to minimize the production of "shot,** better fibres, longer and more uniform In diame
granules, or other particles which are detrimental 10 ter and commercially void of granules can be
In high-grade mineral wool.
formed by avoiding as far as possible the creating
We attain these objects and certain others of any flying shot and also avoiding the use of
which will appear later in the specifications by high pressure air blasts or of centrifugal force or
using a rotor of improved structure, arrangement of momentum in the material being worked. In
and mode of operation described and claimed 15 stead. we draw out the fibres from molten particles
herein; and by a novel co-operative arrangement that are relatively stationary, utilizing their in
of the rotor and Its housing for the purpose of ertia Instead of momentum.
better discharging the fibres from the machine
Having explained the general purposes and na
without harming them.
ture of our Improvement, reference may now be
Our claimed improvements are exemplified in go had to the accompanying drawing showing In pre
the construction and mode of operation of a ma ferred form a machine embodying our invention;
chine for making such fibres or filaments.
typical structural modifications of the rotor and
Before describing our Improvement in detail spinners also being illustrated to indicate the na
it will be helpful to note briefly the modes of ture and scope of the claimed invention.
operation of certain earlier mineral wool ma- 25 Figs. 1. 2, and 3 are schematic diagrams for the
chines. For many years molten slag has been dis purpose of describing the function and apparent
integrated by being poured through high pressure mode of operation of the rotor and spinners;
Jets of air or gas that blew away particles of the
Fig. 4 Is a vertical sectional view of the machine
viscous material and strung them out Into fibres. and the supply source;
In other machines the molten stream has been 30 Fig. 5 is a face view of the machine, the front
Impinged by paddles rotating at high speed, each cover of the casing having been removed;.
splattering a bit of the material into spray and
Fig. 6 Is a cross-sectional detail of a modified
driving it at high speed like sparks from an emery rotor structure;
wheel, into the surrounding air ahead of the
Fig. 7 Is a face view of the parts shown In Fig. 6;
paddles where a portion of the particles threaded 35 Fig. 8 Is a cross-sectional view of a further
themselves out by their own momentum. In modified form of rotor; and
still other earlier machines molten slag was
Fig. 9 is a face view of the same, the ring being
poured onto the flat surface of a rapidly revolv broken away in part.
ing horizontal disk, where it spread out. was sub
Brief reference will first be made to schematic
jected to great centrifugal force, and when it 40 Figs. 1 and 2.
reached the rim divided Itself Into "shot" that
We have discovered that high grade filaments
flew off Into space, each "shot" drawing itself out can be created most effectively by allowing a small
into a thread during Its centrifugal flight, because stream of molten material M to drop a short dis
of its own momentum.
tance at relatively low velocity onto a series of
All of such known machine types alluded to 45 filament-drawing or spinning members, as for
were characterized by segregating molten parti example, pins or sleeves 4 traveling sidewise at
cles of shot from a supply body, giving each par relatively high velocity across the path of fall
ticle a high velocity and a free-flight into the air. of the material, as indicated by the horizontal
whereby reason of Its own momentum, each piece arrow. Fig. 1. The rate of fall is also the rate of
was expected to convert itself into fibre. But go feed to the spinners. Assuming the height of fall
always a considerable portion of undesired granu to be about one foot, the spinners 4 may travel in
lar material was developed along with the desired the order of about fourteen or fifteen thousand
fibres.
feet per minute.
Certain disadvantages of those earlier methods,
The bottom end of the stream touches the up
although apparent to the trade for many years 66 per surface of a spinner. Fig. 1, and some adheres
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at A, while some also is dislodged and splatters Fig. 3, about 4 inches long. The place of dis
off the pm due to the high speed of the pin. Hie charge of fibres from the rotors will be in a
splattered part or droplet D, Fig. 2, has at first zone corresponding to the bottom part of the
no appreciable velocity sidewise. The spinner 4 circle of revolution where the material is sup-
departs from the droplet at D so quickly as to <> plied to the spinners.
instantaneously draw the droplet out into a thin
Due to the rotor and spinners, a current of air
filament F. So the droplet disappears, leaving is set up in the direction Indicated by the arrow
practically no granular residue. Apparently it is the inertia of the splattered
B, Figs. 3 and S, between successive pins, tend ing to waft the newly formed filaments radially
particles released from the end of the falling li outward and thus prevent their breakage by the
stream by the wiping action of the top surfaces next advancing pin. In other words, the spinners
of the spinners that enables the droplets to be create their own fibre-clearing action by creating
so completely drawn out into fine even fibres. the outward air flow at B.
The exact action is not known to us because of
It is to be noted that the air circulation here
the brilliant glare and the high speed and the u; mentioned is not a blast or Jet as employed In
great numbers of fibres being generated simul the earlier devices alluded to for the purpose of
taneously.
disintegrating the molten material.
Referring now to Figs. 4 and 5, a rotor com
Having described the rotor and its mode of
prising a disk-like member I is mounted for ro operation, we shall now explain the housing and
tation 'in its own plane around an axis 1, being (1 its co-operative action with the rotor or spinner
driven as by a pulley S from a source of power, for the purpose of removing filaments from the
not shown. On the face of the member f and machine without breaking them and without
arranged in a circle are upstanding pins or pro clogging the outlet The casing Is like that of a
jections spaced apart in the peripheral direction, conventional helical air blower with axial air ln-
as shown in Fig. 5. A preferred structure for ,,5; take and tangential discharge for air and fibres.
such a pin is shown in Fig. 4, where a heat re The whirling of the rotor sets up a current of
sistant tubular sleeve 4 is mounted on a pintle I air, as above described, drawing it in through
fixed to the member I. Preferably, an annular openings II at the back of the casing, and if
ring I is fixed to the outer ends of all of the desired, through similar openings 14 at the front
pintles, as shown, to give strength and rigidity 30 of the casing, as shown in Fig. 4. The openings
to the members and to facilitate the filament- may be adjusted as to size by providing them
spinning action and the fibre removing action of with louvers 15, as shown. Regulating the louver
the rotor In use. For purposes of description we openings controls the volume of air permitted
term the members I and 4, or their equivalents, to circulate through the casing, between the pins
"spinners."
ss and out through the discharge opening.
The axis 2 of the disk I is mounted in an
Too much air would cool and solidify the fila
inclined bearing 2 so as to rotate in a plane at ments too soon, making them too coarse; but by
an acute angle to the vertical, as shown in Fig. 4. varying the speed of the rotor and the size of
By this arrangement the spinners are so ar the air openings in the casing, the machine can
ranged that the molten material to be worked 40 be quickly adapted to suit any physical or chemi
can drop in a stream from source I either directly cal composition of the molten material at various
onto the spinner 4. or else onto the disk I close degrees of viscosity so as to produce thin even
to the spinner, as shown in Figs. 4 and 5. The filaments practically void of granules.
contact point of the material with the spinners,
The initial action of the air current as it passes
or with the disk adjacent the spinners, is near out between the pins at B is, as stated, to permit
the bottom of the circle of revolution defined by the trailing end of the filament to be deflected
the spinners, as is shown in Fig. 5.
outwardly so it will not be broken by the next
Although we have Just described the preferred pin. Also an effect of the air vents It, 14 around
spinner structure as consisting of the pintle 6 the casing is to produce a substantial air flow
and the sleeve 4. other spinner arrangements may from the outlet 16 whereby the filaments F,
be employed, for example that shown in Figs. 6 Fig. 3, are carried lengthwise along the outlet
and 7, where upstanding rods 4a, either slightly nozzle and flow with the air stream, and parallel
inclined toward the axis 2 as shown, or perpen therewith, so that a large percentage of the fila
dicular to the member I. are fixed at one end to ments are delivered without breakage.
the disk, their other ends being bent radially - - It will now be apparent that by the means above
inward as at 9 and secured to a ring 10. A fur described the molten material is made to hit di
ther modified structure is shown in Figs. 8 and rectly upon the pins, or upon the disk in close
9, where the pin is of polygonal cross-sectional proximity to them, thus avoiding the undesirable
shape and presents a prow-like advancing edge feature of former disk devices that permitted the
11 which is preferably outside of the circle of molten material to strike the surface of the disk
revolution described by the geometrical centers near its axis and flow outwardly across it to the
of the projections. The trailing ends of the pro rim where it was disintegrated and thrown off by
jections may be flat, as shown at 12, or any centrifugal force. Here the molten stream.upon
other suitable shape.
hitting the pin has its bottom end sheared away,
The machine may be made in various sizes and , - as it were, as fast as it falls, so the fluid has its
capacities, but as an example of a practical com physical character changed instantly into fine
mercial working unit the following proportions filaments; a result which, so far as we are aware,
have been found satisfactory:
has not been attained to any such a degree of
A disk with a rotor pin circle 10 Inches diam completeness in rock wool machines heretofore
eter revolves at 5600 revolutions per minute. 70 produced.
being a pin speed of approximately 15.000 feet
We have found that the character of the fila
per minute. There are eight pins around the ment is dependent upon the transverse speed cf
circumference, spaced about a third of a foot the pins across the end of the stream; the tem
apart, so that between successive pins there is a perature of the material; the ingredients in the
free space for escape of freshly formed fibres, F, 75 material; the temperature of the projections;
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and the chntrol of the amount of air moving comprising a member of polygonal cross-sectional
around thi projection. The outlet of the housing shape presenting a prow-like advancing edge
may be horizontal, as shown, or vertical, but the offset outwardly from the geometric circle of
most satisfactory position is one that delivers revolution of the spinners.
the material slightly upward from the horizontal. 5 3. In apparatus for producing mineral wool, a
It may be noted that the air circulation Is In no rotor comprising a disk-like member mounted for
sense a blast such as was necessary to form rotation in its own plane, spinner projections
filaments by the earlier blowing process.
thereon extending from the face of said member
In our device only a few ounces of pressure in a direction substantially parallel with the axis
from the rotor are needed, whereas from 60 to 110 10 of rotation of said member and arranged in a
pounds per square inch is usually required for circle and spaced apart about the peripheral
the production of wool by the blast or air jet margin of the disk-like member, means for ro
method.
tating said member at relatively high speed, a
A suitable liquid, paraffin oil, for example, is casing surrounding said rotor having an axial
used for coating the filaments and tempering 15 air inlet and a tangential discharge outlet where
them. The tempering liquid Is fed from a con by rotation of said rotor causes a flow of air
tainer II through a pipe It to the disk I at or through said casing, means for flowing a stream
near the place where the molten stream meets of molten material in a direction acutely angu
the spinners, as indicated in Tig. 1. By this ar larly related to the plane of the said member and
rangement a minimum amount of tempering fluid at relatively low velocity to the inner peripheral
can be used for a given amount of newly formed surfaces of the said spinners during their rota
filaments, and none of the fluid Is wasted, since tion, said supply means and said rotor being so
it is all applied directly at the place where the related that the stream contacts the spinners
filaments are generated.
only at one point of the circle of revolution de-
The machine above described has the follow 2j fined thereby, whereby the stream is converted
ing important advantages in use: its small size into fibres by the action of said spinners, the
renders it inexpensive to build and install, and fibers thus formed being conveyed from the spin
the small amount of power required to convert ners by the air passing through said casing.
material into filaments represents a considerable
4. In a machine for use in the manufacture of
saving in operating cost. The machine more 3), mineral wool, in combination, a disk-like member
over is adaptable for small or large production on mounted for rotation at relatively high speed in
an economical basis, that Is to say, a given ma a plane acutely inclined to the vertical, upstand
chine need not be run at Its maximum capacity ing spinner projections thereon spaced apart
in order to produce maximum economy. The peripherally, means for flowing in a generally
machine will convert materials with a wide range 55 vertical direction a stream of molten material
in proportions of the various chemical elements, at relatively low feed velocity to the inner pe
whereas in other types of machines referred to ripheral surfaces of said spinner projections dur
the attendance of an especially skilled workman ing their revolution, the relative arrangement of
was required for such control. No special atten said supply stream and spinners being such that
tion is required to maintain a closely regulated 40 the bottom of the stream contacts with the spin
Incoming flow of material. Also the direction of ners only at a point near the bottom of their
discharge is under control and no special ar circle of revolution, a casing surrounding said
rangements of rooms, chambers, or hoppers are required to deliver the material from the machine.
rotor having an axial air inlet and a tangential discharge outlet whereby the rotation of said
Having thus described our invention, what we 41 disk-like member creates a flow of air through
claim and desire to secure by Letters Patent is:
said casing to convey from said casing the fibres
1. In a machine for use in the manufacture of mineral wool; In combination, a disk-like mem ber mounted for rotation at relatively high speed in a plane acutely angularly related to the ver tical; upstanding spinner projections thereon ar ranged in a circle and spaced apart peripherally, a ring member connecting the ends of said pro jections; means for flowing in a generally vertical direction a stream of molten material at rela
tively low feed velocity to the inner peripheral surfaces of said spinner projections during their revolution; the relative arrangement of said sup ply stream and spinners being such that the bot tom of the stream contacts with the spinners only at a point near the bottom of their circle of revolution; and a casing surrounding said rotor having an axial air inlet and a tangential dis charge outlet adjacent the bottom of the circle of revolution defined by the spinners.
2. In apparatus for making mineral wool, a disk mounted for rotation in a plane acutely an
gularly related to the vertical, spinners fixed to
said disk In circular peripherally spaced arrange
to .v> uo B3 70
formed by the action of said spinners upon said stream.
5. In a machine for use in the manufacture of mineral wool, in combination, a disk-like
member mounted for rotation at relatively high speed in a plane inclined at substantially 30 to the vertical, upstanding spinner projections thereon spaced apart peripherally, each of said spinners being in the form of a bar circular in cross-section and secured to said member at one of its ends, and means for flowing in a generally vertical direction a stream of molten material at relatively feed velocity to the inner peripheral surfaces of said spinner projections during their revolution, the relative arrangement of said sup ply stream and spinners being such that the bot tom of the stream contacts with the spinners only at a point near the bottom of their circle of revolution.
6. In apparatus for producing mineral wool, a
rotor comprising a disk-like member mounted for rotation in a plane acutely Inclined to the ver tical. spinner projections thereon in the form of cross-sectionally substantially circular bars ex
ment and extending from the face of said disk in tending from the face of said member in a direc
a direction substantially parallel with the axis of tion substantially parallel with the axis of rota
rotation of said disk, and means tor feeding a tion of said member and spaced apart in a circle
stream of viscous molten material to the inner about the margin of the disk-like member, means
peripheral surfaces of the spinners, each spinner 73 for rotating said member at relatively high speed.
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a casing surrounding said rotor baring an axial the stream contacts with the spinners only at a
air Inlet and a tangential discharge outlet where point near the bottom of their circle of revolu
by rotation of said rotor causes a flow of air tion.
through said casing, said tangential discharge
8. The process of producing mineral fibres
being adjacent the lowest point of the circle of which comprises moving an element at high speed
revolution defined by the spinners, means for In a circle about an axis parallel with the ele
supplying a stream of molten material at rela ment and In a plane Inclined acutely to the ver
tively low velocity to the Inwardly presented pe tical, directing a continuous integral stream of
ripheral surfaces of the said spinners during their molten mineral material In a generally vertical
rotation, said supply means and said rotor being 10 direction and substantially radially relative to
so related that the stream contacts the spinners the path of movement of said element and caus
only at a point near the bottom of said circle of ing the stream to contact the element on Its in-.
revolution, whereby the stream is converted Into wardly presented face and near the bottom of
fibres by the action of said spinners, the fibres its circle of movement, converting the material
thus formed being conveyed from the spinners IS of the stream Into fibres by repeated contact be
by the air currents created by said rotor and tween the element and the stream and movement
passing through said casing.
of the element across the stream while preserving
7. In a machine for making mineral wool. In the integrity of the stream until It Is engaged
combination, a disk-like member mounted for by the element, setting up a current of air In a
rotation at relatively high speed in a plane acutely 20 path from the Inside outwardly past the circle
inclined to the vertical, upstanding spinner pro of movement of said element to convey the fibres
jections thereon spaced apart peripherally of as they are formed away from the region of their
said member, and supply means for flowing in a formation, and guiding said air current and the
generally vertical direction a stream of molten fibres conveyed thereby away from the region of
material at relatively low feed velocity to the gg fibre formation in a single compact beam tan
inwardly presented peripheral surfaces of said gentially related to the circle of movement of the
spinner projections during rotation of said mem element.
ber, the relative arrangement of said supply
BURTON WALLRATH.
means and spinners being such that the bottom of
LEONARD BASXNSKX.
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