This application claims priority from Japanese Patent Application Serial No. 2008-323179 filed Dec. 19, 2008, the content of which is incorporated herein by reference in its entirety.
The present invention relates to a short arc type discharge lamp, more particularly used as a light source for a projector apparatus, such as a liquid crystal display apparatus or a DLP (digital light processor) apparatus using a DMD (digital mirror device) etc.
A projector apparatus requires uniform image illumination with sufficient color rendering properties to a rectangle screen. Therefore, a lamp in which 0.15 mg/mm3 or more of mercury is enclosed so as to obtain high mercury vapor pressure is used as a light source. Such a lamp is disclosed in Japanese laid open patent No. 2008-282554.
Recently, a device increases the applied electric power to the lamp and the operating gas-pressure by increasing mercury quantity is increased, for high output. As a result, the temperature of the electrode during operation is progressively increased. As a crystal grain of an electrode consisting of tungsten is grown the boundaries between crystal grains tends to decrease.
In this way, when the number of crystal grain boundaries is decreased, the electrode is broken by outside vibrations. Furthermore, in the lamp of alternative current operating, the electrode is easily broken because the electrode vibrates intensely by intense of the polarity inversion.
An object of the present invention is to offer a short arc type high-pressure discharge lamp which has high-strength properties, high reliability, and a long economic life.
Other features and advantages of the present short arc type high-pressure discharge lamp will be apparent from the ensuing description, taken in conjunction with the accompanying drawings, in which:
a) and 2(b) show a partial structure of an electrode of a short arc type discharge lamp according to the present invention.
a) and 3(b) show a perspective view of a manufacturing method of a hole formed by an electrode according to the present invention.
a) and 4(b) show a partial structure of an electrode of a short arc type discharge lamp shown as the other embodiment according to the present invention.
a) and 5(b) show a partial structure of an electrode of a short arc type discharge lamp shown as the other embodiment according to the present invention.
A description of embodiment of the present short arc type discharge lamp will now be given below, referring to drawings. While the claims are not limited to such embodiments, an appreciation of various aspects of the present short arc type discharge lamp are best gained through a discussion of various examples thereof.
Mercury, rare gas, and halogen gas are enclosed in the emitting bulb 1. The mercury whose amount is 0.15 mg/mm3 or more is enclosed in the emitting bulb 1 to obtain radiation light having the required visible light wavelength of, for example, 360-780 nm. Although depending on temperature conditions of the emitting bulb 1, the vapor pressure thereof becomes extremely high at time of operating, that is, 150 or more atmospheric pressure. Moreover, by enclosing more mercury, it is possible to make a discharge lamp whose mercury vapor pressure is higher at time of operating, such as 200 or more atmospheric pressure or 300 or more atmospheric pressure. The higher the mercury vapor pressure becomes, the more a light source for a projector apparatus is suitably realized. Argon gas as rare gas whose amount is, for example, 13 kPa is enclosed in the emitting bulb 1, so as to improve the operating starting nature. The halogen gas, such as iodine, bromine, chlorine, etc. is enclosed in form of a compound with mercury or other metals to obtain long-life attributed to the halogen cycle. The amount of enclosed halogen is chosen in a range of 10−6 to 10−2 μmol/mm3.
An example of the discharge lamp will be given below. For example, the maximum outer diameter of the emitting bulb is 9.5 mm., a distance between both electrodes is 1.5 mm, an inner volume of the discharge space is 75 mm3, rated voltage is 80 V, and rated power is 150 W and operation is carried out with alternating current. Moreover, since the short arc type discharge lamp used for a projector apparatus is extremely miniaturized, thermal influence in the discharge space becomes very severe. For example, the lamp tube wall load value is set to 0.8-2.0 W/mm2, and minimum distance from inner face of the emitting bulb to electrode is normally equal to or less than 2 mm, for example less than 1.5 mm and less than 1.0 mm.
a) and 2(b) show one embodiment of electrode of the short arc type discharge lamp according to the present invention.
The electrode body 21, the axis part 22, the taper part 23, the taper part 24 and the projection part 25 are physically formed of a single member. For example, they are made from one wire rod made of tungsten by metal removal machining. The electrode body 21, the axis body 22, the taper part 23, the taper part 24 and the projection part 25 are made of a high purity tungsten material, especially a desirable tungsten material purity of more than 5N (99.999%).
The taper part 23 formed the tip side of electrode body 21 is circular truncated cone shape as a whole. The outer diameter of the base side of the taper part 23 is equal to the diameter of electrode body 21. A shape of the projection part 25 is a circular truncated cone shape or a column shape. The projection part 25 is positioned where arc's highest temperature area is formed. The projection part 25 is able to be formed by same member as the taper part 23. But it is produced naturally with progress of operating time in case of the lamp enclosed halogen gas. The taper part 24 formed at the base side of the electrode body 21 is a circular truncated cone shape as a whole. The outer diameter of the tip side of the taper part 24 is equal to outer diameter of the electrode body 21, and outer diameter of base side of the taper part 24 is equal to outer diameter of the axis part 22.
As shown
An example of specification of the electrode will be given below. For example, the outer diameter of the electrode body 21 is 1.8 mm, the length thereof in the axis direction is 2.5 mm, the length in the axis direction of the taper part 23 is 0.5 mm, the length in the axis direction of the taper part 24 is 1.0 mm, outer diameter of the axis part 22 is 0.5 mm, and the length in the axis direction of the axis part 22 is 5.0 mm. A shape of the hole 26 is concave hemisphere, and a diameter thereof is 30-100 μm and a depth thereof is 50-800 μm. An interval between central points of holes next to each other is less than 3 times of the diameter of the hole. These holes 26 are formed with a line along an axis L.
The holes 26 are formed by irradiating laser beam. A manufacturing method of the holes 26 will be explained as following using
The condition of laser beam is selected so that the depth of the holes 26 is 50-800 μm. Concretely, a frequency is 20 kHz, an average output is 8 w, an irradiated time per one hole is 0.1-1.0 second, and a wavelength is 1064 nm.
In the electrode 2 made by the above method, a crystal grain grows remarkably during operating. But the crystal grains are inhibited from growing in a direction perpendicular to the axis L, because plural holes 26 are formed in line along the axis. Therefore, the growth direction of the crystal agrees in the axis L by the plural holes 26. The crystal grains grow while being engaged with each other in the direction of the axis L, but is inhibited form growing by the hole in the direction perpendicular to the axis L. As a result, the crystal grain boundary does not become a big size in the direction perpendicular to the axis of the electrode. Furthermore, the electrode according to the present invention is hard to break.
a) and 4(b) show the other embodiment of an electrode of the short arc type discharge lamp according to the present invention.
As shown
As shown
a) and 5(b) show the other embodiment of electrode of the short arc type discharge lamp according to the present invention.
As shown in
As shown in
The electrode as shown in
The electrode as shown
According to the short arc type discharge lamp, it is possible to prevent the electrode from being broken, to raise reliability and lamp life.
Number | Date | Country | Kind |
---|---|---|---|
2008-323179 | Dec 2008 | JP | national |