MULTI-SHANK HEATER
20210068206 ยท 2021-03-04
Inventors
Cpc classification
H05B3/148
ELECTRICITY
International classification
Abstract
Provided is a multi-shank heater to be mounted on a support substrate, wherein, with a normal direction relative to the support substrate, which is a direction from the heater side toward the support substrate side, as a basis, the multi-shank heater has U-shaped pieces in which an angle of a planar direction of the U-shaped pieces, which is a direction from the heater side toward the support substrate side, is 10 or more and 60 or less. An object of the present invention is to provide a multi-shank heater capable of considerably improving the energy output even when the U-shaped pieces are arranged in a high density and have the same pitch.
Claims
1. A multi-shank heater to be mounted on a support substrate, wherein, with a normal direction relative to the support substrate, which is a direction from a heater side toward a support substrate side, as a basis, the multi-shank heater has U-shaped pieces in which an angle of a planar direction of the U-shaped pieces, which is a direction from the heater side toward the support substrate side, is 10 or more and 60 or less, and a U-shaped piece in which the angle is +10 or more and +60 or less and a U-shaped piece in which the angle is 10 or more and 60 or less respectively exist at least at one or more locations.
2. The multi-shank heater according to claim 1, wherein, among the U-shaped pieces configuring the heater, a U-shaped piece in which the angle is 10 or more and 60 or less exists at three or more locations.
3. (canceled)
4. The multi-shank heater according to claim 2, wherein the U-shaped piece in which the angle is +10 or more and +60 or less and the U-shaped piece in which the angle is 10 or more and 60 or less are connected adjacent to each other, and such connected U-shaped pieces exist in a plurality.
5. The multi-shank heater according to claim 4, wherein the support substrate is of a planar shape, a polyhedral shape, a slope (slide) shape, a curved shape or a cylindrical shape.
6. The multi-shank heater according to claim 5, wherein the heater has MoSi.sub.2 as its main component.
7. The multi-shank heater according to claim 1, wherein the U-shaped piece in which the angle is +10 or more and +60 or less and the U-shaped piece in which the angle is 10 or more and 60 or less are connected adjacent to each other, and such connected U-shaped pieces exist in a plurality.
8. The multi-shank heater according to claim 1, wherein the support substrate is of a planar shape, a polyhedral shape, a slope (slide) shape, a curved shape or a cylindrical shape.
9. The multi-shank heater according to claim 1, wherein the heater has MoSi.sub.2 as its main component.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
DESCRIPTION OF EMBODIMENTS
[0020] A multi-shank heater is normally manufactured in the following manner. Foremost, a MoSi.sub.2 powder and the like as the heater raw material is mixed with a binder, and this mixture is formed into a round rod shape with an extruding machine and so on. Next, after performing drying, degreasing and then primary sintering, electric current sintering is performed to prepare a rod material having a predetermined diameter. Thereafter, the rod material is set in a U-shape bending machine, the rod material is bent into a U-shape at a predetermined pitch while being energized and heated, and a U-shaped round rod material (this is hereinafter referred to as a U-shaped piece) is thereby manufactured. Since the thus prepared U-shaped piece is bent into a U-shape on the same plane, the two parallel straight parts and the bent part configuring the U-shape form one plane (this is hereinafter sometimes referred to as the U-shaped piece plane). A plurality of the thus prepared U-shaped pieces are respectively welded alternately in an upward U-shape and a downward U-shape to form a multi-shank heater.
[0021] A schematic diagram of a conventional multi-shank heater mounted on a support substrate is shown in
[0022] In order to overcome the foregoing problem, with the multi-shank heater according to an embodiment of the present invention, as shown in the upper diagram of
[0023]
[0024] The multi-shank heater of this embodiment is characterized in that, as shown in
[0025] With the multi-shank heater according to an embodiment of the present invention, preferably, with a normal direction relative to the support substrate, which is a direction from the heater side toward the support substrate side, as a basis, the angle of the planar direction of the U-shaped pieces, which is a direction from the heater side toward the support substrate side, is 10 or more and 60 or less. When the angle is less than 10, the high densification of the U-shaped pieces will be insufficient. Meanwhile, when the angle exceeds 60, since the heater will protrude considerably toward the work side (member to be heated), this is not practical, and it also becomes difficult to mount the U-shaped pieces. More preferably, the angle is 45 or less. Note that, since the U-shaped pieces in which the angle is 10 or more and 60 or less may be arranged in such a manner in all or a part of the multi-shank heater, for instance, the U-shaped pieces may have the angle =0 in a part of the multi-shank heater.
[0026] Moreover, in an embodiment of the present invention, preferably, among the U-shaped pieces configuring the multi-shank heater, a U-shaped piece in which the angle is 10 or more and 60 or less exists at three or more locations. When a U-shaped piece exists at least at three or more locations, improvement in the energy output based on the high densification of the U-shaped pieces can be expected. Furthermore, in order to efficiently increase the number of U shapes per unit area of the multi-shank heater, in an embodiment of the present invention, preferably, a U-shaped piece in which the angle is +10 or more and +60 or less and a U-shaped piece in which the angle is 10 or more and 60 or less respectively exist at least at one or more locations. In addition, preferably, a U-shaped piece in which the angle is +10 or more and +60 or less and a U-shaped piece in which the angle is 10 or more and 60 or less are connected adjacent to each other, and such connected U-shaped pieces exist in a plurality.
[0027] The multi-shank heater according to an embodiment of the present invention is mounted on a support substrate such as the ceiling or furnace wall inside the heating furnace or any other separately provided board, and a heat insulating material is disposed between the support substrate and the heater. The support substrate is formed from a refractory brick, a heat insulating brick, a ceramic fiber board, a micro porous board or the like, and the present invention can be applied irrespective of whether its shape is a flat shape, a slope (slide) shape, a curved shape, a cylindrical shape or the like. Moreover, as the heat insulating material, a high-temperature heat insulating material having a thermal conductivity of 0.6 W/mK or less at a temperature of 800 C. is preferably used.
[0028] While the multi-shank heater according to this embodiment has molybdenum disilicide (MoSi.sub.2) as its main component, the present invention can also be applied to multi-shank heaters formed from other material components.
EXAMPLES
[0029] The present invention is now explained based on the following Examples and Comparative Examples. These Examples are illustrative only, and the present invention is not limited in any way based on the Examples. In other words, the present invention is limited only by the scope of its claims, and covers the various modifications other than the Examples included in the present invention.
Conventional Example
[0030] A cross section of a conventional multi-shank heater is shown in
Example 1
[0031] A cross section of the multi-shank heater of Example 1 is shown in
Example 2
[0032] A cross section of the multi-shank heater of Example 2 is shown in
Example 3
[0033] A cross section of the multi-shank heater of Example 3 is shown in
Example 4
[0034] A cross section of the multi-shank heater of Example 4 is shown in
INDUSTRIAL APPLICABILITY
[0035] According to the present invention, since the respective U-shaped pieces (heat-generating part) in a multi-shank heater can be arranged in a high density, superior effects are yielded in that the total length of the heat-generating part can be extended, and the energy output can be considerably improved. The multi-shank heater according to the present invention is useful as a baking heater of glass and ceramics.
DESCRIPTION OF REFERENCE NUMERALS
[0036] 10 heater heat-generating part [0037] 11 U-shaped piece (upward U shape: shown in black color) [0038] 12 U-shaped piece (downward U shape: shown in white color) [0039] 20 support substrate [0040] 30 fixing pin [0041] 40 terminal [0042] 50 shank height