TECHNICAL FIELD:
[0001] This invention relates to ceramic arc discharge tubes, such as of alumina or yttria;
and more particularly to end seals thereof.
BACKGROUND ART:
[0002] Certain arc discharge devices, such as high pressure sodium lamps, employ ceramic
discharge tubes. These tubes generally comprise an elongated, tubular body of, for
example, polycrystalline alumina, which have electrodes sealed into the ends thereof.
The electrodes are mounted in disks of the same material as the arc tube. The disks
have an outside diameter sized to fit within the inside diameter of the body with
enough clearance to allow for the presence of a sealing material such as a high temperature
frit. The positioning of the electrode along the longitudinal axis of the device is
usually . accomplished by means of a wire stop which is secured to the electrode.
A similar wire stop is used to position the disk and hold it in the proper position
with the body for sealing. There are many problems with this type of seal. The disk
itself can cock during the sealing operation which provides a poor seal and an off-center
electrode. Two wire stops are used to support the disk and the electrode. Further,
even though extremely tight tolerances are maintained on the arc tube inside diameter
and the disk outside diameter, there is no convenient way to center the disk in order
to provide the proper seal annulus. This annulus is critical for seal integrity.
DISCLOSURE OF THE INVENTION:
[0003] It is, therefore, an object of this invention to obviate the disadvantages of the
prior art.
[0004] It is another object of the invention to improve arc tube seals.
[0005] Yet another object of the invention is the provision of an arc tube seal that is
self-centering.
[0006] These objects are accomplished, in one aspect of the invention, in an hermetically
sealed arc tube which has an elongated, substantially cyclindrical body having an
outside diameter and at least one inside diameter and having opposed ends. The at
least one inside diameter widens to a diameter greater than the inside diameter and
less than the outside diameter adjacent each of the opposed ends to form a chamfer.
A sealing disk including at least a frusto-conical portion formed to mate with the
chamfer is sealed into each end.
[0007] The employment of this invention provides a seal that is self-centering and self-positioning.
One of the wire stops is eliminated and the disk will not cock during sealing. Further.
the proper seal annulus is maintained.
BRIEF DESCRIPTION OF THE DRAWINGS:
[0008]
FIG. 1 is.an exploded, sectional elevational view of an embodiment of the invention:
FIG. 2 is a similar view of an alternate embodiment: and
FIG. 3 is a similar view of yet another embodiment.
BEST MODE FOR CARRYING OUT THE INVENTION:
[0009] For a better understanding of the present invention. together with other and further
objects, advantages, and capabilities thereof, reference is made to the following
disclosure and appended claims taken in conjunction with the above-described drawings.
[0010] Referring now to the drawings with greater particularity. there is shown in FIG.
1 a ceramic arc tube 10 comprising a body 12 which is elongated, substantially cyclindrical
and tubular. Body 12 has an outside diameter 14 and an inside diameter 16.
[0011] Adjacent the ends 18 and 20 the inside diameter 16 widens to form an intermediate
diameter 22 which is greater than diameter 16 but less than diameter 14. thus forming
a chamfer 24.
[0012] A sealing disk 26, which includes a frusto-conical portion 28 formed to mate with
chamfer 24 is sealed into each end of body 12 by means of a sealing material 30 which
forms a sealing annulus.
[0013] An electrode 32. which can be a conventional electrode for a high pressure sodium
lamp, is sealed into a centrally located aperture in disk 26. A wire stop 34 can hold
electrode 32 in position during sealing.
[0014] In the alternate embodiment of FIG. 2, the sealing disk 36 is provided with a circumferential
rim or flange 38 which seals additionally to the outermost planes 40 and 42 of ends
18 and 20, respectively.
[0015] In the alternate embodiment shown in FIG. 3. the body 12 has an insert 44 sealed
into each end, and the inserts 44 are provided with chamfers 46. Thus it will be seen
that body 12 in FIG. 3 has a first inside diameter 16 for a substantial portion of
its length and a second inside diameter 48 which is less than the diameter 16. The
widest point of chamfers 46 is at diameter 50. which is also less than diameter 16
although greater than diameter 48.
[0016] The sealing disks 52 have a frusto-conical portion 54 for mating with chamfers 46
and also have the circumferential flange 56.
[0017] There is thus provided a sealing means for arc discharge devices such as high pressure
sodium lamps which avoid the disadvantages of the prior art.
[0018] While there have been shown what are at present considered to be preferred embodiments
of the invention, it will be apparent to those skilled in the art that various changes
and modifications can be made herein without departing from the
[0019] scope of the invention as defined by the appended claims.
1. A hermetically sealed ceramic arc tube comprising: an elongated, substantially
cylindrical, tubular body having an outside diameter and at least one inside diameter
and having opposed ends. said at least one inside diameter widening to a diameter
greater than said inside diameter and less than said outside diameter adjacent each
of said opposed ends to form a chamfer, and a sealing disc including at least a frusto-conical
portion formed to mate with said chamfer sealed into each of said ends.
2. The ceramic arc tube of Claim 1 wherein said body has a first inside diameter which
is constant for a substantial portion of length of said body and a second inside diameter
which is less than said first inside diameter formed adjacent said ends, said chamfer
having its smallest diameter equal to said second inside diameter and its widest diameter
less than said first inside diameter.
3. The ceramic arc tube of Claim 1 wherein said sealing disc has a central longitudinal
aperture therein which mounts an electrode.