CN201374303Y - Ceramic thyratron - Google Patents

Ceramic thyratron Download PDF

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Publication number
CN201374303Y
CN201374303Y CN200920035683U CN200920035683U CN201374303Y CN 201374303 Y CN201374303 Y CN 201374303Y CN 200920035683 U CN200920035683 U CN 200920035683U CN 200920035683 U CN200920035683 U CN 200920035683U CN 201374303 Y CN201374303 Y CN 201374303Y
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CN
China
Prior art keywords
anode
cup
grid
porcelain
ceramic
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Expired - Fee Related
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CN200920035683U
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Chinese (zh)
Inventor
李宗超
黄俊杰
黄浩
曹鸣坤
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KUNSHAN GUOLI VACUUM ELECTRIC CO Ltd
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KUNSHAN GUOLI VACUUM ELECTRIC CO Ltd
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Priority to CN200920035683U priority Critical patent/CN201374303Y/en
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Publication of CN201374303Y publication Critical patent/CN201374303Y/en
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Abstract

The utility model discloses a ceramic thyratron. The lower part of an anode ceramic seal component is fixedly connected with a grid component; the grid component is fixedly connected with the upper part of a cathode-grid component; a base component is fixed below the cathode-grid component; a cathode component is fixed between the grid component and the base component; and an anode component is fixedly located on the anode ceramic seal component. The anode component comprises a molybdenum anode, a liner plate, an anode cup, an anode plate and an anode lead, wherein the anode cup is fixed on the molybdenum anode; the liner plate is fixed at the cup bottom in the anode cup; one end of the anode lead is fixedly arranged in the central hole of the liner plate in a penetrating manner; the anode plate is fixedly sheathed at the middle part of the anode lead; a circle of through-hole is uniformly formed at the middle part of the wall of the anode cup; and the anode plate is arranged to just seal the upper part of the through-hole so as to define an anode hydrogen storage cavity in the anode cup, thereby facilitating the supplement of gas ionization in the anode-grid space. A grid heat dissipation ring is fixedly sheathed on the outer wall of the mouth of a grid cup to enhance the heat dissipation capacity of the grid, thereby reducing the overall temperature of the ceramic thyratron.

Description

Ceramic thyratron
Technical field
The utility model relates to a kind of thyratron, especially a kind of ceramic thyratron.
Background technology
At present, known thyratron structure mainly is made up of anode, control grid, negative electrode, cathode filament and Chu Qing device heating part, and some thyratron also has auxiliary grid.The power line that the each several part of thyratron is corresponding with equipment connects, and earlier cathode filament and Chu Qing device is carried out the making alive preheating, powers up source voltage for simultaneously auxiliary grid and control grid, after finishing warm-up time, just can anode add high voltage operation.When anode added high voltage operation, ceramic thyratron must adopt blower fan to the male or female part forced air cooling of ceramic thyratron but, and preferably antianode and cathode portion are carried out air cooling simultaneously.General ceramic thyratron is not have long-time stable work under the condition of air cooling, and this is to some difficulty that does not have the equipment of blower fan cooling to bring versatility to replace.
Summary of the invention
In order to overcome above-mentioned defective, the utility model provides a kind of ceramic thyratron, can not have long-time reliable and stable work under the environmental condition of forced air cooling.
The utility model for the technical scheme that solves its technical problem and adopt is:
A kind of ceramic thyratron, comprise anode component, gate members and cathode assembly, gate members comprises grid baffle plate, grid cup and control grid lead, the grid baffle plate fixedly places the interior cup of grid cup at the end, the be connected rim of a cup of grid cup of control grid lead, with the assembly direction is benchmark: the anode porcelain sealing bottom gate members that is connected, the gate members cloudy grid parts top that is connected, pipe base member fixed-site is deleted parts in the moon below, the cathode assembly fixed-site is between gate members and pipe base member, and anode component is fixed positioned on the anode porcelain sealing; Anode component comprises the molybdenum anode, liner plate, anode cup, positive plate and anode tap, the rim of a cup of anode cup up, anode cup fixedly places on the molybdenum anode, liner plate fixedly places the interior cup of anode cup at the end, anode tap one end fixedly is located in the centre bore of liner plate, the positive plate fixed cover is located at the anode tap middle part, the wall of cup middle part of described anode cup evenly offers a ring through hole, the top of the proper salable through hole of described positive plate, described anode tap, the anode cup inner space that positive plate and liner plate defined forms anode storage hydrogen cavity, be easy to replenishing like this to sun-grid space gas ionization, the gas ionization that has overcome traditional ceramic thyratron sun-grid space replenishes the shortcoming that participates in gas ionization fully by the slotted eye of grid cup by hydrogen, the gas ionization in sun-grid space is finished by two parts: a part is from the slotted eye of grid cup, and another part is from anode storage hydrogen cavity; Described gate members also includes the grid heat dissipating ring, the rim of a cup of grid cup down, described grid heat dissipating ring fixed cover is located on the rim of a cup outer wall of grid cup, increased the heat-sinking capability of grid part like this, the grid heat dissipating ring becomes the radiator portion that exposes of grid cup, more effectively ensured the heat loss through conduction ability of grid part, thereby reduced the homogeneous tube temperature of ceramic thyratron, intraductal atmospheric pressure is remained in the working range.
Further technical scheme of the present utility model is:
With the assembly direction is benchmark: the structure that anode component is fixed positioned on the anode porcelain sealing is: described anode porcelain sealing comprises two clamp porcelain rings, anode porcelain ring and connecting rings, described two clamp porcelain rings are set in anode porcelain ring two ends respectively, connecting ring is fixedly sleeved between anode porcelain ring lower end and clamp porcelain ring, the rim of a cup of the anode cup of described anode component is provided with extension, and the rim of a cup extension of this anode cup is fixedly sleeved between anode porcelain ring upper end and clamp porcelain ring.
With the assembly direction is benchmark, and the be connected structure of gate members of described anode porcelain sealing bottom is: the grid heat dissipating ring top that is connected, anode porcelain sealing bottom, the connecting ring fixed card of anode porcelain sealing is in grid heat dissipating ring top.
Described anode porcelain sealing and gate members are affixed by argon arc welding.
With the assembly direction is benchmark, and the be connected structure on cloudy grid parts top of described gate members is: the grid heat dissipating ring bottom the moon that is connected is deleted parts top, and the moon is deleted the upper parts of components fixed card in grid heat dissipating ring bottom.
With the assembly direction is benchmark, and the top of described anode component is provided with anode radiator, has increased the heat-sinking capability of anode component.
With the assembly direction is benchmark, and the anode radiator bottom closely contacts with positive plate, and anode radiator is fastened in the anode cup inner space on positive plate top, thereby can easily anode radiator be dismantled and be installed on the anode component.
Fill in the pipe of described ceramic thyratron and be equipped with deuterium gas, the proof voltage of deuterium gas and the capacity of heat transmission all are better than hydrogen, will make the ceramic thyratron more stable work so charge into deuterium gas in pipe.
The beneficial effects of the utility model are: anode component adopts anode storage hydrogen cavity body structure, be easy to replenishing to sun-grid space gas ionization, the gas ionization that has overcome traditional ceramic thyratron sun-grid space replenishes the shortcoming that participates in gas ionization fully by the slotted eye of grid cup by hydrogen, the gas ionization in sun-grid space is finished by two parts: a part is from the slotted eye of grid cup, and another part is from anode storage hydrogen cavity; Adopt grid heat dissipating ring fixed cover to be located at structure on the rim of a cup outer wall of grid cup, increased the heat-sinking capability of grid part, the grid heat dissipating ring becomes the radiator portion that exposes of grid cup, more effectively ensured the heat loss through conduction ability of grid part, thereby reduce the homogeneous tube temperature of ceramic thyratron, intraductal atmospheric pressure is remained in the working range; Anode radiator is established on top at anode component, has increased the heat-sinking capability of anode component; Fill in the pipe of ceramic thyratron and put deuterium gas, the proof voltage of deuterium gas and the capacity of heat transmission all are better than hydrogen, make the ceramic thyratron more stable work; To sum up, replenishing of the sun of the utility model thyratron-grid space gas ionization is in time abundant, and heat dispersion is outstanding, can not have long-time reliable and stable work under the environmental condition of forced air cooling.
Description of drawings
Fig. 1 is the utility model structural representation;
Fig. 2 is the utility model schematic appearance;
Fig. 3 is the structural representation of anode component described in the utility model;
Fig. 4 is that anode component described in the utility model is fixed positioned in the schematic diagram on the anode porcelain sealing;
Fig. 5 is the structural representation of gate members described in the utility model.
Embodiment
Embodiment: a kind of ceramic thyratron, comprise anode component 3, gate members 5 and cathode assembly 6, gate members 5 comprises grid baffle plate 18, grid cup 19 and control grid lead 21 are formed, grid baffle plate 18 fixedly places cup in the grid cup 19 at the end, the be connected rim of a cup of grid cup 19 of control grid lead 21, with the assembly direction is benchmark: the anode porcelain sealing 2 bottoms gate members 5 that is connected, gate members 5 cloudy grid parts 8 tops that are connected, pipe base member 9 fixed-site are deleted parts 8 in the moon below, cathode assembly 6 fixed-site are between gate members 5 and pipe base member 9, and anode component 3 is fixed positioned on the anode porcelain sealing 2; Anode component 3 comprises molybdenum anode 14, liner plate 13, anode cup 12, positive plate 11 and anode tap 10, the rim of a cup of anode cup 12 up, anode cup 12 fixedly places on the molybdenum anode 14, liner plate 13 fixedly places cup in the anode cup 12 at the end, anode tap 10 1 ends fixedly are located in the centre bore of liner plate 13, positive plate 11 fixed covers are located at anode tap 10 middle parts, the wall of cup middle part of described anode cup 12 evenly offers a ring through hole, the top of described positive plate 11 proper salable through holes, described anode tap 10, the inner space of the anode cup 12 that positive plate 11 and liner plate 13 are defined forms anode storage hydrogen cavity 4, be easy to replenishing like this to sun-grid space gas ionization, the gas ionization that has overcome traditional ceramic thyratron sun-grid space replenishes the shortcoming that participates in gas ionization fully by the slotted eye of grid cup 19 by hydrogen, the gas ionization in sun-grid space is finished by two parts: a part is from the slotted eye of grid cup 19, and another part is from anode storage hydrogen cavity 4; Described gate members 5 also includes grid heat dissipating ring 7, the rim of a cup of grid cup 19 down, described grid heat dissipating ring 7 fixed covers are located on the rim of a cup outer wall of grid cup 19, increased the heat-sinking capability of gate members 5 like this, grid heat dissipating ring 7 becomes the radiator portion that exposes of grid cup 19, more effectively ensured the heat loss through conduction ability of gate members 5, thereby reduced the homogeneous tube temperature of ceramic thyratron, intraductal atmospheric pressure is remained in the working range.
Further technical scheme of the present utility model is:
With the assembly direction is benchmark: the structure that anode component is fixed positioned on the anode porcelain sealing is: described anode porcelain sealing 2 comprises two clamp porcelain rings 15, anode porcelain ring 16 and connecting ring 17, described two clamp porcelain rings 15 are set in anode porcelain ring 16 two ends respectively, connecting ring 17 is fixedly sleeved between anode porcelain ring 16 lower ends and clamp porcelain ring 15, the rim of a cup of the anode cup 12 of described anode component 3 is provided with extension, and the rim of a cup extension of this anode cup 12 is fixedly sleeved between anode porcelain ring 16 upper ends and clamp porcelain ring 15.
With the assembly direction is benchmark, and the be connected structure of gate members of described anode porcelain sealing bottom is: grid heat dissipating ring 7 tops that are connected, anode porcelain sealing 2 bottoms, connecting ring 17 fixed card of anode porcelain sealing 2 are in grid heat dissipating ring 7 tops.
Described anode porcelain sealing 2 is affixed by argon arc welding with gate members 5.
With the assembly direction is benchmark, and the be connected structure on cloudy grid parts top of described gate members is: the grid heat dissipating ring 7 bottoms the moon that is connected is deleted parts 8 tops, and the moon is deleted the top fixed card of parts 8 in grid heat dissipating ring 7 bottoms.
With the assembly direction is benchmark, and the top of described anode component is provided with anode radiator 1, has increased the heat-sinking capability of anode component.
With the assembly direction is benchmark, and anode radiator 1 bottom closely contacts with positive plate 11, and anode radiator 1 is fastened in anode cup 12 inner spaces on positive plate 11 tops, thereby can easily anode radiator be dismantled and be installed on the anode component.
Fill in the pipe of described ceramic thyratron and be equipped with deuterium gas, the proof voltage of deuterium gas and the capacity of heat transmission all are better than hydrogen, will make the ceramic thyratron more stable work so charge into deuterium gas in pipe.
To sum up, replenishing of the sun of the utility model thyratron-grid space gas ionization is in time abundant, and heat dispersion is outstanding, can not have long-time reliable and stable work under the environmental condition of forced air cooling.

Claims (8)

1, a kind of ceramic thyratron, comprise anode component (3), gate members (5) and cathode assembly (6), gate members (5) comprises grid baffle plate (18), grid cup (19) and control grid lead (21), the grid baffle plate fixedly places the interior cup of grid cup at the end, the be connected rim of a cup of grid cup of control grid lead, it is characterized in that: be benchmark with the assembly direction: anode porcelain sealing (2) the bottom gate members (5) that is connected, gate members cloudy grid parts (8) top that is connected, pipe base member (9) fixed-site is deleted parts in the moon below, the cathode assembly fixed-site is between gate members and pipe base member, and anode component is fixed positioned on the anode porcelain sealing (2); Anode component (3) comprises molybdenum anode (14), liner plate (13), anode cup (12), positive plate (11) and anode tap (10), the rim of a cup of anode cup up, anode cup fixedly places on the molybdenum anode, liner plate fixedly places the interior cup of anode cup at the end, anode tap one end fixedly is located in the centre bore of liner plate, the positive plate fixed cover is located at the anode tap middle part, the wall of cup middle part of described anode cup evenly offers a ring through hole, the top of the proper salable through hole of described positive plate, described anode tap, the anode cup inner space that positive plate and liner plate defined forms anode storage hydrogen cavity (4); Described gate members also includes grid heat dissipating ring (7), the rim of a cup of grid cup down, described grid heat dissipating ring fixed cover is located on the rim of a cup outer wall of grid cup.
2, ceramic thyratron according to claim 1, it is characterized in that: be benchmark with the assembly direction: the structure that anode component is fixed positioned on the anode porcelain sealing is: described anode porcelain sealing (2) comprises two clamp porcelain rings (15), anode porcelain ring (16) and connecting ring (17), described two clamp porcelain rings are set in anode porcelain ring two ends respectively, connecting ring is fixedly sleeved between anode porcelain ring lower end and clamp porcelain ring, the rim of a cup of the anode cup (12) of described anode component (3) is provided with extension, and the rim of a cup extension of this anode cup is fixedly sleeved between anode porcelain ring upper end and clamp porcelain ring.
3, ceramic thyratron according to claim 1, it is characterized in that: be benchmark with the assembly direction, the be connected structure of gate members of described anode porcelain sealing bottom is: the grid heat dissipating ring top that is connected, anode porcelain sealing bottom, the connecting ring fixed card of anode porcelain sealing is in grid heat dissipating ring top.
4, according to claim 1 or 3 described ceramic thyratrons, it is characterized in that: described anode porcelain sealing and gate members are affixed by argon arc welding.
5, ceramic thyratron according to claim 1, it is characterized in that: be benchmark with the assembly direction, the be connected structure on cloudy grid parts top of described gate members is: the grid heat dissipating ring bottom the moon that is connected is deleted parts top, and the moon is deleted the upper parts of components fixed card in grid heat dissipating ring bottom.
6, ceramic thyratron according to claim 1 is characterized in that: be benchmark with the assembly direction, the top of described anode component is provided with anode radiator (1).
7, ceramic thyratron according to claim 6 is characterized in that: be benchmark with the assembly direction, the anode radiator bottom closely contacts with positive plate, and anode radiator is fastened in the anode cup inner space on positive plate top.
8, ceramic thyratron according to claim 1 is characterized in that: fill in the pipe of described ceramic thyratron and be equipped with deuterium gas.
CN200920035683U 2009-03-16 2009-03-16 Ceramic thyratron Expired - Fee Related CN201374303Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN200920035683U CN201374303Y (en) 2009-03-16 2009-03-16 Ceramic thyratron

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN200920035683U CN201374303Y (en) 2009-03-16 2009-03-16 Ceramic thyratron

Publications (1)

Publication Number Publication Date
CN201374303Y true CN201374303Y (en) 2009-12-30

Family

ID=41500385

Family Applications (1)

Application Number Title Priority Date Filing Date
CN200920035683U Expired - Fee Related CN201374303Y (en) 2009-03-16 2009-03-16 Ceramic thyratron

Country Status (1)

Country Link
CN (1) CN201374303Y (en)

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20091230

Termination date: 20120316