Drying box for zirconium tube of oxygen determination probe

By designing the placement, drainage, drying and exhaust components of the zirconium tube drying box of the oxygen fixing probe, the problem of uneven drying during the zirconium tube drying process is solved, and efficient spray drying effect is achieved.

CN223258488UActive Publication Date: 2025-08-22SHIJIAZHUANG ZHEJIANG LE SENSOR PARTS CO LTD
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Patent Information

Application Number
CN202422508646.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-08-22
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

In the existing zirconium tube drying box, the probe zirconium tube is prone to accumulate during the drying process, resulting in the liquid in the tube not easily flowing out and the drying is uneven, which cannot effectively improve the spray drying efficiency.

Method used

An oxygen-fixing probe zirconium tube drying box including placement components, drainage components, drying components and exhaust components is designed. By placement components, the zirconium tube is accommodated, the drainage components discharge accumulated water, the drying components are sprayed and dried internally, and the exhaust components extract excess gas, realizing batch spraying processing.

Benefits of technology

The drying efficiency of the probe zirconium tube is improved, ensuring drying uniformity, and improving the efficiency of spray drying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of zirconium tube drying boxes, in particular to an oxygen determination probe zirconium tube drying box. The utility model provides an oxygen determination probe zirconium tube drying box. The oxygen determination probe zirconium tube drying box comprises a drying box body, a box door, a probe zirconium tube main body, a placement assembly, a drainage assembly, a drying assembly and an exhaust assembly, the problems that in the using process of a traditional zirconium tube drying box, probe zirconium tubes are different in structure, if the probe zirconium tubes are stacked on a drying net of the drying box to be dried, liquid in the tubes is not convenient to flow out, drying is not uniform, the good drying effect cannot be achieved, improvement is urgently needed, and then the injection drying efficiency is not convenient to achieve are solved. In the using process of the zirconium pipe drying box, firstly, the probe zirconium pipe body is contained and placed through the containing assembly, accumulated water is drained through the drainage assembly, in addition, the interior of the probe zirconium pipe body can be blown and dried through the drying assembly, and therefore blowing treatment can be conducted on the interiors of the multiple sets of probe zirconium pipe bodies in batches, and the practicability is high. And the blowing and drying efficiency can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of zirconium tube drying boxes, in particular to a zirconium tube drying box for oxygen determination probes. Background Art

[0002] The zirconium tube is the core component of the oxygen probe. Made of doped zirconium oxide, its density must be maintained at approximately 97%. Its preparation process generally involves ceramic slurry preparation, injection molding, low-temperature wax removal, and high-temperature sintering. During sintering, the zirconium tube is typically inserted directly into a potassium mortar containing alumina powder.

[0003] In actual use, the probe zirconium tube needs to be cleaned and dried after processing. During the drying process, the structures of the probe zirconium tubes are different. If they are uniformly piled on the drying net of the drying box for drying, the liquid in the tube will not be easy to flow out, the drying will be uneven, and a good drying effect will not be achieved. This needs to be improved urgently, and it is inconvenient to improve the efficiency of the spray drying.

[0004] Therefore, in order to solve the above-mentioned problem of inconvenience in improving the efficiency of spray drying, a drying box for the oxygen probe zirconium tube can be designed. First, the probe zirconium tube body is placed by a placement component, and the accumulated water is discharged through a drainage component. In addition, the interior of the probe zirconium tube body can be spray-dried through the drying component, so that the interior of multiple groups of probe zirconium tube bodies can be sprayed in batches, thereby improving the spray drying efficiency. Utility Model Content

[0005] In order to overcome the problem that the probe zirconium tube needs to be cleaned and dried after processing during the use of the zirconium tube drying box, the structures of the probe zirconium tubes are different. If they are uniformly piled up on the drying net of the drying box for drying, the liquid in the tube will not be easy to flow out, the drying will be uneven, and a good drying effect will not be achieved. This problem needs to be improved urgently, and it is inconvenient to improve the efficiency of the spray drying.

[0006] The technical solution of the utility model is: an oxygen probe zirconium tube drying box, comprising a drying box body, a box door, a probe zirconium tube body, a placement component, a drainage component, a drying component and an exhaust component; a box door is provided on the side wall of the drying box body, a placement component is provided inside the drying box body, a probe zirconium tube body is provided inside the placement component, a drainage component is provided on the side wall of the drying box body, a drying component is provided inside the drying box body, and an exhaust component is provided above the drying box body.

[0007] Preferably, when the zirconium tube drying box is in use, first, the probe zirconium tube body is placed through the placement component, and the accumulated water is discharged through the drainage component. In addition, the interior of the probe zirconium tube body can be spray-dried through the drying component, so that the interior of multiple groups of probe zirconium tube bodies can be sprayed in batches, thereby improving the spray drying efficiency. In addition, excess gas can be extracted and discharged through the exhaust component.

[0008] Preferably, the placement assembly includes an inclined placement plate and a placement rack; the interior of the drying box is provided with an inclined placement plate, a plurality of groups of inclined placement plates are provided, and the placement rack is provided on the side wall of the inclined placement plate.

[0009] Preferably, the placement assembly further includes a through slot and a supporting plate; the supporting plate is provided on the side wall of the inclined placement plate, and the interior of the supporting plate is provided with a through slot, and the through slots are provided in multiple groups.

[0010] Preferably, the drainage assembly includes a drainage filter, a guide plate, a drainage hole and a drainage pipe; a drainage filter is provided inside the through groove, a guide plate is provided on the side wall of the inclined plate, a drainage hole is opened on the inner wall of the inclined plate, and a drainage pipe is provided on the side wall of the drying box.

[0011] Preferably, the drying component includes a hot air blower, a control valve and an air duct; the hot air blower is arranged above the drying box, the air duct is arranged on one side of the hot air blower, and the control valve is arranged on the side wall of the air duct.

[0012] Preferably, the drying component further includes a drying duct and a drying nozzle; a drying duct is provided on the side wall of the air duct, and the drying duct is provided in multiple groups; a drying nozzle is provided on the side wall of the drying duct, and the drying nozzle is provided in multiple groups.

[0013] Preferably, the exhaust assembly includes an exhaust fan, an opening and closing valve and an exhaust pipe; an exhaust fan is arranged above the drying box, an exhaust pipe is arranged on one side of the exhaust fan, and an opening and closing valve is arranged on the side wall of the exhaust pipe.

[0014] Beneficial effects of the utility model:

[0015] 1. When the zirconium tube drying box is in use, first, the probe zirconium tube body is placed through the placement component, and the accumulated water is discharged through the drainage component. In addition, the inside of the probe zirconium tube body can be sprayed and dried through the drying component, so that the inside of multiple groups of probe zirconium tube bodies can be sprayed in batches, thereby improving the spray drying efficiency. In addition, the excess gas can be extracted and discharged through the exhaust component. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1Shown is a first three-dimensional structural diagram of the zirconium tube drying box for the oxygen probe of the utility model;

[0017] Figure 2 Shown is a schematic diagram of the first partial three-dimensional structure of the oxygen probe zirconium tube drying box of the utility model;

[0018] Figure 3 Shown is a schematic diagram of the second partial three-dimensional structure of the oxygen probe zirconium tube drying box of the utility model;

[0019] Figure 4 Shown is a schematic diagram of the third partial three-dimensional structure of the oxygen probe zirconium tube drying box of the utility model;

[0020] Explanation of the accompanying symbols: 1. Drying box body; 2. Box door; 3. Probe zirconium tube body; 101. Inclined placement plate; 102. Placement rack; 103. Through groove; 104. Support plate; 201. Drain filter; 202. Guide plate; 203. Drain hole; 204. Drain pipe; 301. Hot air blower; 302. Control valve; 303. Air supply duct; 304. Drying duct; 305. Drying nozzle; 401. Exhaust fan; 402. Opening and closing valve; 403. Exhaust duct. DETAILED DESCRIPTION

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] See also Figures 1-4 The utility model provides an embodiment: an oxygen probe zirconium tube drying box, comprising a drying box body 1, a box door 2, a probe zirconium tube body 3, a placement component, a drainage component, a drying component and an exhaust component; a box door 2 is provided on the side wall of the drying box body 1, a placement component is provided inside the drying box body 1, a probe zirconium tube body 3 is provided inside the placement component, a drainage component is provided on the side wall of the drying box body 1, a drying component is provided inside the drying box body 1, and an exhaust component is provided above the drying box body 1.

[0023] See also Figure 2, the placement component includes an inclined placement plate 101 and a placement rack 102; the interior of the drying box 1 is provided with an inclined placement plate 101, and the inclined placement plate 101 is provided with multiple groups, and a placement rack 102 is provided on the side wall of the inclined placement plate 101; first, one end of the probe zirconium tube body 3 is placed through the placement rack 102; the placement component also includes a through groove 103 and a supporting plate 104; a supporting plate 104 is provided on the side wall of the inclined placement plate 101, and a through groove 103 is opened inside the supporting plate 104, and the through groove 103 is provided with multiple groups; the other end of the probe zirconium tube body 3 is placed through the supporting plate 104 The row supports and lifts; the drainage assembly includes a drainage filter 201, a guide plate 202, a drainage hole 203 and a drainage pipe 204; a drainage filter 201 is provided inside the through groove 103, a guide plate 202 is provided on the side wall of the inclined placement plate 101, a drainage hole 203 is opened on the inner wall of the inclined placement plate 101, and a drainage pipe 204 is provided on the side wall of the drying box 1; the accumulated water in the probe zirconium tube body 3 is discharged through the drainage filter 201, and then the accumulated water flows into the interior of the drainage hole 203 through the guide plate 202, and then the accumulated water is discharged from the drying box 1 through the drainage pipe 204.

[0024] See also Figure 3-Figure 4 In this embodiment, the drying component includes a hot air blower 301, a control valve 302 and an air duct 303; a hot air blower 301 is provided above the drying box 1, an air duct 303 is provided on one side of the hot air blower 301, and a control valve 302 is provided on the side wall of the air duct 303; starting the hot air blower 301 can generate hot air, and starting the control valve 302 can open the air duct 303; the drying component also includes a drying duct 304 and a drying nozzle 305; a drying duct 304 is provided on the side wall of the air duct 303, and the drying duct 304 is provided with multiple groups, and a drying nozzle 305 is provided on the side wall of the drying duct 304, and the drying nozzle 305 is provided with Multiple groups; then, the hot air can be transported to the interior of the multiple groups of drying pipes 304 through the air delivery pipe 303, and then, the interior of the probe zirconium tube main body 3 can be blown and dried through the multiple groups of drying nozzles 305, so that the interior of the multiple groups of probe zirconium tube main bodies 3 can be blown in batches, thereby improving the blowing and drying efficiency; the exhaust component includes an exhaust fan 401, an opening and closing valve 402 and an exhaust pipe 403; an exhaust fan 401 is arranged above the drying box 1, an exhaust pipe 403 is arranged on one side of the exhaust fan 401, and an opening and closing valve 402 is arranged on the side wall of the exhaust pipe 403; starting the exhaust fan 401 can extract and discharge excess gas through the exhaust pipe 403.

[0025] When the zirconium tube drying box is in use, first, one end of the probe zirconium tube body 3 is placed on the placement rack 102, and the other end of the probe zirconium tube body 3 is supported and lifted by the support plate 104;

[0026] Furthermore, the accumulated water in the probe zirconium tube body 3 is discharged through the drainage filter 201, and then flows into the drainage hole 203 through the guide plate 202, and then is discharged from the drying box 1 through the drainage pipe 204;

[0027] In addition, starting the hot air blower 301 can generate hot air, and starting the control valve 302 can open the air delivery pipe 303, and then the hot air can be transported to the interior of the multiple drying pipes 304 through the air delivery pipe 303;

[0028] Subsequently, the interior of the probe zirconium tube body 3 can be spray-dried by multiple sets of drying nozzles 305, so that the interior of multiple sets of probe zirconium tube bodies 3 can be spray-dried in batches, thereby improving the spray-drying efficiency.

[0029] In addition, starting the exhaust fan 401 can extract and discharge excess gas through the exhaust pipe 403.

[0030] Through the above steps, when the zirconium tube drying box is in use, first, the probe zirconium tube body 3 is accommodated and placed through the placement component, and the accumulated water is discharged through the drainage component. In addition, the interior of the probe zirconium tube body 3 can be sprayed and dried through the drying component, so that the interiors of multiple groups of probe zirconium tube bodies 3 can be sprayed in batches, thereby improving the spray drying efficiency. In addition, excess gas can be extracted and discharged through the exhaust component.

[0031] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.

Claims

1. An oxygen probe zirconium tube drying box, comprising a drying box body (1); characterized in that: The invention also includes a box door (2), a probe zirconium tube body (3), a placement component, a drainage component, a drying component and an exhaust component; the box door (2) is provided on the side wall of the drying box (1), the placement component is provided inside the drying box (1), the probe zirconium tube body (3) is provided inside the placement component, the drainage component is provided on the side wall of the drying box (1), the drying component is provided inside the drying box (1), and the exhaust component is provided above the drying box (1).

2. The oxygen probe zirconium tube drying box according to claim 1, characterized in that: The placement assembly comprises an inclined placement plate (101) and a placement rack (102); the inclined placement plate (101) is arranged inside the drying box (1), a plurality of groups of the inclined placement plates (101) are provided, and the placement rack (102) is arranged on the side wall of the inclined placement plate (101).

3. The oxygen probe zirconium tube drying box according to claim 2, characterized in that: The placement assembly further comprises a through slot (103) and a supporting plate (104); the supporting plate (104) is provided on the side wall of the inclined placement plate (101), and the interior of the supporting plate (104) is provided with a through slot (103), and the through slot (103) is provided in multiple groups.

4. The oxygen probe zirconium tube drying box according to claim 3, characterized in that: The drainage assembly comprises a drainage filter (201), a guide plate (202), a drainage hole (203) and a drainage pipe (204); the drainage filter (201) is arranged inside the through groove (103), the guide plate (202) is arranged on the side wall of the inclined placement plate (101), the drainage hole (203) is opened on the inner wall of the inclined placement plate (101), and the drainage pipe (204) is arranged on the side wall of the drying box (1).

5. The oxygen probe zirconium tube drying box according to claim 3, characterized in that: The drying component comprises a hot air blower (301), a control valve (302) and an air delivery duct (303); the hot air blower (301) is arranged above the drying box (1), the air delivery duct (303) is arranged on one side of the hot air blower (301), and the control valve (302) is arranged on the side wall of the air delivery duct (303).

6. The oxygen probe zirconium tube drying box according to claim 5, characterized in that: The drying assembly further comprises a drying pipe (304) and a drying nozzle (305); the drying pipe (304) is provided on the side wall of the air delivery pipe (303), and the drying pipe (304) is provided in multiple groups; the drying nozzle (305) is provided on the side wall of the drying pipe (304), and the drying nozzle (305) is provided in multiple groups.

7. The oxygen probe zirconium tube drying box according to claim 5, characterized in that: The exhaust assembly comprises an exhaust fan (401), an opening and closing valve (402) and an exhaust pipe (403); the exhaust fan (401) is arranged above the drying box (1), an exhaust pipe (403) is arranged on one side of the exhaust fan (401), and an opening and closing valve (402) is arranged on the side wall of the exhaust pipe (403).