Oxyhydrogen baking lamp holder
By designing the connection between the support plate and the bayonet joint of the hollow structure, the problem of heavy weight of the baking lamp holder is solved, the processing efficiency is improved, the cost is reduced, and good sealing and stability are achieved.
Patent Information
- Application Number
- CN202422431810.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-09
AI Technical Summary
The existing baking lamp holder is heavy, which causes the cylinder to flip up and down and affects the processing efficiency of baking lamps.
A hydrogen-oxygen baking lamp holder is designed, including a support plate, an oxygen distribution tube, a hydrogen distribution tube, an oxygen inlet tube, an oxygen outlet tube and a hydrogen inlet tube. The support plate with a hollow structure is used to fix the oxygen distribution tube and a hydrogen distribution tube, reducing weight, and achieving a stable connection and good seal through bayonets and joints.
The weight of the baking lamp holder is reduced, the smoothness of the flip of the cylinder is improved, the processing efficiency is improved, and the production cost is reduced and the sealing and fixing effect is ensured.
Smart Images

Figure CN223176008U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a baking lamp holder, belonging to the technical field of polishing treatment equipment, and particularly relates to a hydrogen-oxygen baking lamp holder. Background Art
[0002] Optical fiber preform is the core raw material for manufacturing quartz series optical fibers. The surface quality of the optical fiber preform is closely related to the quality of the optical fiber. Therefore, the polishing of the optical fiber preform has become an essential processing technology. Among them, flame polishing is a common polishing method, and a hydrogen-oxygen baking lamp is required during the flame polishing process.
[0003] The baking lamp is generally fixed to the baking lamp holder. The main body of the existing baking lamp holder is processed by punching a block of stainless steel, and the overall weight is relatively heavy. Therefore, after the baking lamp holder is fixed to the cylinder, the cylinder will not flip smoothly up and down, which will affect the processing efficiency of the baking lamp.
[0004] Disclosing the information of this background art section is only intended to increase the understanding of the overall background of the present application, and should not be regarded as an admission or any form of implication that this information constitutes the prior art already known to those of ordinary skill in the art. Summary of the Invention
[0005] The purpose of the utility model is to overcome the defects and problems of the relatively heavy weight of the baking lamp holder in the prior art, and provide a hydrogen-oxygen baking lamp holder with a relatively light weight.
[0006] To achieve the above purpose, the technical solution of the utility model is as follows:
[0007] A hydrogen-oxygen baking lamp holder, which includes a support plate, an oxygen distribution pipe, a hydrogen distribution pipe, an oxygen inlet pipe, an oxygen outlet pipe, a hydrogen inlet pipe and a hydrogen outlet pipe;
[0008] The outer wall of the oxygen distribution pipe is connected to the inner side of the support plate. The oxygen inlet pipe located outside the support plate passes through the support plate and is communicated with the oxygen distribution pipe. One end of the oxygen outlet pipe is communicated with the oxygen distribution pipe, and the other end of the oxygen outlet pipe is used to be communicated with a glass lamp;
[0009] The outer wall of the hydrogen distribution pipe is connected to the inner side of the support plate. The hydrogen inlet pipe located outside the support plate passes through the support plate and is communicated with the hydrogen distribution pipe. One end of the hydrogen outlet pipe is communicated with the hydrogen distribution pipe, and the other end of the hydrogen outlet pipe is used to be communicated with a glass lamp.
[0010] The support plate includes a main board, a left side board and a right side board. One end of the main board is perpendicularly connected to one side of the left side board, and the other side of the left side board is connected to the outer walls of one ends of the oxygen distribution pipe and the hydrogen distribution pipe; the other end of the main board is perpendicularly connected to one side of the right side board, and the other side of the right side board is connected to the outer walls of the other ends of the oxygen distribution pipe and the hydrogen distribution pipe;
[0011] An oxygen bayonet for the oxygen inlet pipe to pass through and a hydrogen bayonet for the hydrogen inlet pipe to pass through are provided in the middle of the main board.
[0012] An upper left bayonet and a lower left bayonet are provided on the other side of the left side plate, one end of the oxygen distribution pipe is inserted into the upper left bayonet, and one end of the hydrogen distribution pipe is inserted into the lower left bayonet;
[0013] An upper right bayonet and a lower right bayonet are provided on the other side of the right side plate. The other end of the oxygen distribution pipe is inserted into the upper right bayonet, and the other end of the hydrogen distribution pipe is inserted into the lower right bayonet.
[0014] The upper left bayonet is a semicircular surface structure, and the inner surface of the upper left bayonet cooperates with the outer wall of one end of the oxygen distribution pipe; the lower left bayonet is a semicircular surface structure, and the inner surface of the lower left bayonet cooperates with the outer wall of one end of the hydrogen distribution pipe; the upper right bayonet is a semicircular surface structure, and the inner surface of the upper right bayonet cooperates with the outer wall of the other end of the oxygen distribution pipe; the lower right bayonet is a semicircular surface structure, and the inner surface of the lower right bayonet cooperates with the outer wall of the other end of the hydrogen distribution pipe.
[0015] One end of the oxygen outlet pipe away from the oxygen distribution pipe is connected to one end of the oxygen connector, the other end of the oxygen connector is used to be sleeved on the outside of the gas pipe of the glass lamp, and the outer surface of the oxygen connector is threadedly connected to the inner surface of the oxygen nut;
[0016] One end of the hydrogen outlet pipe away from the hydrogen distribution pipe is connected to one end of the hydrogen connector, and the other end of the hydrogen connector is used to be sleeved on the outside of the gas pipe of the glass lamp. The outer surface of the hydrogen connector is threadedly connected to the inner surface of the hydrogen nut.
[0017] The inner surface of the oxygen connector is provided with three oxygen compression rings, an oxygen O-ring is provided between two adjacent oxygen compression rings, and the oxygen compression ring and the oxygen O-ring are sleeved on the outside of the trachea;
[0018] The inner surface of the hydrogen joint is provided with three hydrogen compression rings, a hydrogen O-ring is provided between two adjacent hydrogen compression rings, and the hydrogen compression ring and the hydrogen O-ring are sleeved on the outside of the trachea.
[0019] The oxygen distribution pipe is connected to a plurality of oxygen outlet pipes, and the hydrogen distribution pipe is connected to a plurality of hydrogen outlet pipes.
[0020] The oxygen inlet pipe is provided with a pagoda joint on one end outside the support plate, and the hydrogen inlet pipe is provided with a pagoda joint on one end outside the support plate.
[0021] A fixing plate is vertically connected to the outer side of the support plate, and a connecting hole for fixing the oxyhydrogen heating lamp holder is provided on the fixing plate.
[0022] The ports of the oxygen distribution pipe are provided with plugs, and the ports of the hydrogen distribution pipe are provided with plugs.
[0023] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0024] 1. In a hydrogen-oxygen baking lamp base of the present utility model, it includes a support plate, an oxygen distribution pipe, a hydrogen distribution pipe, an oxygen inlet pipe, an oxygen outlet pipe, a hydrogen inlet pipe and a hydrogen outlet pipe. The oxygen distribution pipe is connected to the support plate, the oxygen inlet pipe passes through the support plate and is communicated with the oxygen distribution pipe, and both ends of the oxygen outlet pipe are respectively communicated with the oxygen distribution pipe and the glass lamp. The hydrogen distribution pipe is connected to the support plate, the hydrogen inlet pipe passes through the support plate and is communicated with the hydrogen distribution pipe, and both ends of the hydrogen outlet pipe are respectively communicated with the hydrogen distribution pipe and the glass lamp. During application, oxygen and hydrogen are simultaneously introduced into the oxygen inlet pipe and the hydrogen inlet pipe. The oxygen then sequentially enters the oxygen distribution pipe and the oxygen outlet pipe, and then the oxygen reaches inside the glass lamp. At the same time, the hydrogen sequentially enters the hydrogen distribution pipe and the hydrogen outlet pipe, and then the hydrogen reaches inside the glass lamp. The hydrogen located inside the glass lamp burns in the oxygen to generate a flame, and the optical fiber preform is polished by this flame. The advantages of the present utility model further include:
[0025] First: The support plate is used to fix the oxygen distribution pipe and the hydrogen distribution pipe. There is a hollow structure among the support plate, the oxygen distribution pipe and the hydrogen distribution pipe, so the weight is relatively light. After the support plate is fixed on the cylinder, the cylinder can smoothly turn up and down, which is beneficial to improving the processing efficiency of the baking lamp.
[0026] Second: The processing cost of massive stainless steel is relatively high, while the processing costs of the support plate, the oxygen distribution pipe and the hydrogen distribution pipe are relatively low, so the manufacturing cost is reduced.
[0027] Therefore, the baking lamp base of the present utility model is relatively light in weight and the processing efficiency of the baking lamp is improved.
[0028] 2. In a hydrogen-oxygen baking lamp base of the present utility model, the support plate includes a left side plate, a main plate and a right side plate which are connected in sequence. The left side plate is provided with an upper left bayonet and a lower left bayonet, and the right side plate is provided with an upper right bayonet and a lower right bayonet. The upper left bayonet and the upper right bayonet are connected to the oxygen distribution pipe, and the lower left bayonet and the lower right bayonet are connected to the hydrogen distribution pipe. During application, the upper left bayonet, the upper right bayonet, the lower left bayonet and the lower right bayonet are all of arc surface structure, and the cooperation with the oxygen distribution pipe and the hydrogen distribution pipe is good, so the fixing effect is stable and the processing is convenient. Therefore, the present utility model has a stable fixation.
[0029] 3. In a hydrogen-oxygen baking lamp base of the present utility model, one end of the oxygen outlet pipe is connected with an oxygen joint, an oxygen nut is sleeved outside the oxygen joint, an oxygen pressing ring and an oxygen O-ring are arranged inside the oxygen joint, one end of the hydrogen outlet pipe is connected with a hydrogen joint, a hydrogen nut is sleeved outside the hydrogen joint, and a hydrogen pressing ring and a hydrogen O-ring are arranged inside the hydrogen joint. During application, after inserting the air pipe of the glass lamp into the oxygen joint, then tighten the oxygen nut and the oxygen joint. At this time, the oxygen pressing ring and the oxygen O-ring are tightly pressed on the air pipe, forming a good sealing effect; after inserting the air pipe of the glass lamp into the hydrogen joint, then tighten the hydrogen nut and the hydrogen joint. At this time, the hydrogen pressing ring and the hydrogen O-ring are tightly pressed on the air pipe, forming a good sealing effect. Therefore, the present utility model has good sealing performance. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 is a schematic structural diagram of the present utility model.
[0031] Figure 2 is Figure 1 the application schematic diagram of
[0032] Figure 3 is Figure 1 the front view of
[0033] Figure 4 is Figure 1 the schematic structural diagram of the middle support plate in
[0034] Figure 5 is Figure 2 the schematic structural diagram of the middle fixing plate in
[0035] Figure 6 is Figure 5 the top view of
[0036] Figure 7 is Figure 6 the sectional view of
[0037] Figure 8 is Figure 7 the C-C sectional view in
[0038] Figure 9 is Figure 8 the enlarged view of the oxygen joint in
[0039] Figure 10 is Figure 7 the enlarged view of the hydrogen joint in
[0040] In the figure: support plate 1, main board 11, left side plate 12, upper left bayonet 121, lower left bayonet 122, right side plate 13, upper right bayonet 131, lower right bayonet 132, oxygen bayonet 14, hydrogen bayonet 15, oxygen distribution pipe 2, oxygen inlet pipe 21, oxygen outlet pipe 22, oxygen connector 23, oxygen compression ring 231, oxygen O-ring 232, oxygen nut 233, left oxygen plug 24, right oxygen plug 25, hydrogen distribution pipe 3, hydrogen inlet pipe 31, hydrogen outlet pipe 32, hydrogen connector 33, hydrogen compression ring 331, hydrogen O-ring 332, hydrogen nut 333, left hydrogen plug 34, right hydrogen plug 35, glass lamp 4, air pipe 41, tower joint 5, left fixing plate 6, left connection hole 61, right fixing plate 7, right connection hole 71. Detailed implementation mode
[0041] The present utility model will be further described in detail below in conjunction with the accompanying drawings and specific implementation modes.
[0042] In an embodiment of the present application, refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , a hydrogen-oxygen baking lamp socket, the hydrogen-oxygen baking lamp socket includes a support plate 1, an oxygen distribution pipe 2, a hydrogen distribution pipe 3, an oxygen inlet pipe 21, an oxygen outlet pipe 22, a hydrogen inlet pipe 31 and a hydrogen outlet pipe 32; the outer wall of the oxygen distribution pipe 2 is connected to the inner side of the support plate 1, the oxygen inlet pipe 21 located outside the support plate 1 passes through the support plate 1 and is communicated with the oxygen distribution pipe 2, one end of the oxygen outlet pipe 22 is communicated with the oxygen distribution pipe 2, and the other end of the oxygen outlet pipe 22 is used for being communicated with the glass lamp 4; the outer wall of the hydrogen distribution pipe 3 is connected to the inner side of the support plate 1, the hydrogen inlet pipe 31 located outside the support plate 1 passes through the support plate 1 and is communicated with the hydrogen distribution pipe 3, one end of the hydrogen outlet pipe 32 is communicated with the hydrogen distribution pipe 3, and the other end of the hydrogen outlet pipe 32 is used for being communicated with the glass lamp 4.
[0043] During application, oxygen is introduced into the oxygen inlet pipe 21, and at the same time, hydrogen is introduced into the hydrogen inlet pipe 31; the oxygen then enters the oxygen distribution pipe 2, and then the oxygen enters the oxygen outlet pipe 22, and the oxygen then enters the glass lamp 4; at the same time, the hydrogen enters the hydrogen distribution pipe 3, and then the hydrogen enters the hydrogen outlet pipe 32, and the hydrogen then enters the glass lamp 4, and then the hydrogen burns in the oxygen to generate a flame, and the polishing effect is completed by this flame; during the above process, the support plate 1 fixes the oxygen distribution pipe 2 and the hydrogen distribution pipe 3, and a hollow structure is formed between the support plate 1 and the oxygen distribution pipe 2 and the hydrogen distribution pipe 3, so the weight of the hydrogen-oxygen baking lamp socket is reduced, and the cylinder can be turned over smoothly up and down.
[0044] In another embodiment of the present application, refer to Figure 1 and Figure 2 and Figure 3 and Figure 4 and Figure 5 and Figure 6 and Figure 7 and Figure 8 , the support plate 1 includes a main board 11, a left side plate 12 and a right side plate 13. One end of the main board 11 is perpendicularly connected to one side of the left side plate 12, and the other side of the left side plate 12 is connected to the outer walls of one ends of the oxygen distribution pipe 2 and the hydrogen distribution pipe 3; the other end of the main board 11 is perpendicularly connected to one side of the right side plate 13, and the other side of the right side plate 13 is connected to the outer walls of the other ends of the oxygen distribution pipe 2 and the hydrogen distribution pipe 3; a oxygen bayonet 14 for the oxygen inlet pipe 21 to pass through and a hydrogen bayonet 15 for the hydrogen inlet pipe 31 to pass through are provided in the middle of the main board 11.
[0045] Furthermore, refer to Figure 1 and Figure 2 and Figure 3 and Figure 4 and Figure 5 and Figure 6 and Figure 7 , an upper left bayonet 121 and a lower left bayonet 122 are provided on the other side of the left side plate 12. One end of the oxygen distribution pipe 2 is inserted into the upper left bayonet 121, and one end of the hydrogen distribution pipe 3 is inserted into the lower left bayonet 122; an upper right bayonet 131 and a lower right bayonet 132 are provided on the other side of the right side plate 13. The other end of the oxygen distribution pipe 2 is inserted into the upper right bayonet 131, and the other end of the hydrogen distribution pipe 3 is inserted into the lower right bayonet 132.
[0046] Furthermore, refer to Figure 1 and Figure 2 and Figure 3 and Figure 4 and Figure 5 and Figure 6 and Figure 7 , the upper left bayonet 121 is of a semi-circular arc surface structure, and the inner surface of the upper left bayonet 121 cooperates with the outer wall of one end of the oxygen distribution pipe 2; the lower left bayonet 122 is of a semi-circular arc surface structure, and the inner surface of the lower left bayonet 122 cooperates with the outer wall of one end of the hydrogen distribution pipe 3; the upper right bayonet 131 is of a semi-circular arc surface structure, and the inner surface of the upper right bayonet 131 cooperates with the outer wall of the other end of the oxygen distribution pipe 2; the lower right bayonet 132 is of a semi-circular arc surface structure, and the inner surface of the lower right bayonet 132 cooperates with the outer wall of the other end of the hydrogen distribution pipe 3.
[0047] During application, the positions of the upper left bayonet 121 and the upper right bayonet 131 correspond, and both are semi-circular arc surface structures, which cooperate with the outer surface of the oxygen distribution pipe 2. Therefore, both ends of the oxygen distribution pipe 2 are respectively clamped into the upper left bayonet 121 and the upper right bayonet 131 to achieve a fixing effect. The positions of the lower left bayonet 122 and the lower right bayonet 132 correspond, and both are semi-circular arc surface structures, which cooperate with the outer surface of the hydrogen distribution pipe 3. Therefore, both ends of the hydrogen distribution pipe 3 are respectively clamped into the lower left bayonet 122 and the lower right bayonet 132 to achieve a fixing effect; the oxygen bayonet 14 is used to pass through the oxygen inlet pipe 21 to facilitate the connection between the oxygen inlet pipe 21 and the oxygen distribution pipe 2, and the hydrogen bayonet 15 is used to pass through the hydrogen inlet pipe 31 to facilitate the connection between the hydrogen inlet pipe 31 and the hydrogen distribution pipe 3.
[0048] In another embodiment of the present application, refer to Figure 8 , Figure 9 , Figure 10 , one end of the oxygen outlet pipe 22 far from the oxygen distribution pipe 2 is communicated with one end of the oxygen joint 23, and the other end of the oxygen joint 23 is used to be sleeved outside the gas pipe 41 of the glass lamp 4. The outer surface of the oxygen joint 23 is threadedly connected with the inner surface of the oxygen nut 233; one end of the hydrogen outlet pipe 32 far from the hydrogen distribution pipe 3 is communicated with one end of the hydrogen joint 33, and the other end of the hydrogen joint 33 is used to be sleeved outside the gas pipe 41 of the glass lamp 4. The outer surface of the hydrogen joint 33 is threadedly connected with the inner surface of the hydrogen nut 333.
[0049] Furthermore, refer to Figure 9 , Figure 10 , three oxygen pressing rings 231 are arranged on the inner surface of the oxygen joint 23, and an oxygen O-ring 232 is arranged between two adjacent oxygen pressing rings 231. The oxygen pressing rings 231 and the oxygen O-ring 232 are sleeved outside the gas pipe 41; three hydrogen pressing rings 331 are arranged on the inner surface of the hydrogen joint 33, and a hydrogen O-ring 332 is arranged between two adjacent hydrogen pressing rings 331. The hydrogen pressing rings 331 and the hydrogen O-ring 332 are sleeved outside the gas pipe 41.
[0050] During application, first insert the trachea 41 into the oxygen connector 23, and then tighten the oxygen nut 233. At this time, the oxygen nut 233 presses the oxygen connector 23, and the oxygen connector 23 further presses the oxygen compression ring 231 and the oxygen O-ring 232. Then, the oxygen compression ring 231 and the oxygen O-ring 232 press the trachea 41 to form a sealing effect; the intervals between the oxygen O-rings 232 determine the concentricity to achieve a good oxygen circulation effect. Then insert the trachea 41 into the hydrogen connector 33, and then tighten the hydrogen nut 333. At this time, the hydrogen nut 333 presses the hydrogen connector 33, and then the hydrogen connector 33 presses the hydrogen compression ring 331 and the hydrogen O-ring 332. The hydrogen compression ring 331 and the hydrogen O-ring 332 press the trachea 41 to form a sealing effect; the intervals between the hydrogen O-rings 332 determine the concentricity to achieve a good hydrogen circulation effect.
[0051] Further, refer to Figure 1 、 Figure 2 、 Figure 5 、 Figure 6 、 Figure 8 On the oxygen distribution pipe 2, a plurality of oxygen outlet pipes 22 are connected. On the hydrogen distribution pipe 3, a plurality of hydrogen outlet pipes 32 are connected. The number of the oxygen outlet pipes 22 is the same as that of the hydrogen outlet pipes 32, and the number of the oxygen outlet pipes 22 and the hydrogen outlet pipes 32 can be set as required to achieve the effect of multiple glass lamps 4 burning simultaneously.
[0052] Further, refer to Figure 1 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 8 At one end of the oxygen inlet pipe 21 located outside the support plate 1, a taper joint 5 is provided. At one end of the hydrogen inlet pipe 31 located outside the support plate 1, a taper joint 5 is provided. The taper joint 5 is used to conveniently connect a gas hose to introduce oxygen and hydrogen into the oxygen inlet pipe 21 and the hydrogen inlet pipe 31.
[0053] Further, refer to Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 On the outside of the support plate 1, a fixing plate is vertically connected. On the fixing plate, a connection hole for fixing the hydrogen-oxygen baking lamp holder is provided; the number and position of the fixing plates can be set as required. For example, on the left side of the main board 11 on the side away from the oxygen distribution pipe 2, a left fixing plate 6 is vertically connected, and a left connection hole 61 is provided on the left fixing plate 6; on the right side of the main board 11 on the side away from the oxygen distribution pipe 2, a right fixing plate 7 is vertically connected, and a right connection hole 71 is provided on the right fixing plate 7.
[0054] Further, refer to Figure 1 、Figure 2 , Figure 3 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , a plug is provided at the port of the oxygen distribution pipe 2, and a plug is provided at the port of the hydrogen distribution pipe 3; the number and position of the plugs can be set as required. For example, a left oxygen plug 24 is provided at one end of the oxygen distribution pipe 2 outside the left side plate 12, and a right oxygen plug 25 is provided at one end of the oxygen distribution pipe 2 outside the right side plate 13; a left hydrogen plug 34 is provided at one end of the hydrogen distribution pipe 3 outside the left side plate 12, and a right hydrogen plug 35 is provided at one end of the hydrogen distribution pipe 3 outside the right side plate 13.
[0055] The above is only the preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiment. Any equivalent modification or change made by those of ordinary skill in the art according to the disclosure of the present invention shall be included in the protection scope recorded in the claims.
Claims
1. A hydrogen-oxygen baking lamp base, characterized in that: The hydrogen-oxygen baking lamp base includes a support plate (1), an oxygen distribution pipe (2), a hydrogen distribution pipe (3), an oxygen inlet pipe (21), an oxygen outlet pipe (22), a hydrogen inlet pipe (31), and a hydrogen outlet pipe (32); The outer wall of the oxygen distribution pipe (2) is connected to the inner side of the support plate (1). The oxygen inlet pipe (21) located outside the support plate (1) passes through the support plate (1) and is communicated with the oxygen distribution pipe (2). One end of the oxygen outlet pipe (22) is communicated with the oxygen distribution pipe (2), and the other end of the oxygen outlet pipe (22) is used to be communicated with the glass lamp (4); The outer wall of the hydrogen distribution pipe (3) is connected to the inner side of the support plate (1). The hydrogen inlet pipe (31) located outside the support plate (1) passes through the support plate (1) and is communicated with the hydrogen distribution pipe (3). One end of the hydrogen outlet pipe (32) is communicated with the hydrogen distribution pipe (3), and the other end of the hydrogen outlet pipe (32) is used to be communicated with the glass lamp (4).
2. The hydrogen-oxygen baking lamp socket according to claim 1, characterized in that: The support plate (1) includes a main board (11), a left side board (12), and a right side board (13). One end of the main board (11) is perpendicularly connected to one side of the left side board (12), and the other side of the left side board (12) is connected to the outer walls of one ends of the oxygen distribution pipe (2) and the hydrogen distribution pipe (3); The other end of the main board (11) is perpendicularly connected to one side of the right side board (13), and the other side of the right side board (13) is connected to the outer walls of the other ends of the oxygen distribution pipe (2) and the hydrogen distribution pipe (3); An oxygen bayonet (14) for the oxygen inlet pipe (21) to pass through and a hydrogen bayonet (15) for the hydrogen inlet pipe (31) to pass through are provided in the middle of the main board (11).
3. The hydrogen-oxygen baking lamp socket according to claim 2, characterized in that: An upper left bayonet (121) and a lower left bayonet (122) are provided on the other side of the left side board (12). One end of the oxygen distribution pipe (2) is inserted into the upper left bayonet (121), and one end of the hydrogen distribution pipe (3) is inserted into the lower left bayonet (122); An upper right bayonet (131) and a lower right bayonet (132) are provided on the other side of the right side board (13). The other end of the oxygen distribution pipe (2) is inserted into the upper right bayonet (131), and the other end of the hydrogen distribution pipe (3) is inserted into the lower right bayonet (132).
4. The hydro-oxygen baking lamp socket according to claim 3, wherein: The upper left bayonet (121) is of a semi-circular arc surface structure, and the inner surface of the upper left bayonet (121) cooperates with the outer wall of one end of the oxygen distribution pipe (2); The lower left bayonet (122) is of a semi-circular arc surface structure, and the inner surface of the lower left bayonet (122) cooperates with the outer wall of one end of the hydrogen distribution pipe (3); The upper right bayonet (131) is of a semi-circular arc surface structure, and the inner surface of the upper right bayonet (131) cooperates with the outer wall of the other end of the oxygen distribution pipe (2); The lower right bayonet (132) is of a semi-circular arc surface structure, and the inner surface of the lower right bayonet (132) cooperates with the outer wall of the other end of the hydrogen distribution pipe (3).
5. The hydro-oxygen baking lamp socket according to claim 1, wherein: One end of the oxygen outlet pipe (22) far from the oxygen distribution pipe (2) is communicated with one end of the oxygen connector (23), and the other end of the oxygen connector (23) is used for being sleeved outside the air pipe (41) of the glass lamp (4), and the outer surface of the oxygen connector (23) is in threaded connection with the inner surface of the oxygen nut (233); One end of the hydrogen outlet pipe (32) far from the hydrogen distribution pipe (3) is communicated with one end of the hydrogen connector (33), and the other end of the hydrogen connector (33) is used for being sleeved outside the air pipe (41) of the glass lamp (4), and the outer surface of the hydrogen connector (33) is in threaded connection with the inner surface of the hydrogen nut (333).
6. The hydrogen-oxygen baking lamp socket according to claim 5, wherein: Three oxygen pressing rings (231) are arranged on the inner surface of the oxygen connector (23), an oxygen O-ring (232) is arranged between two adjacent oxygen pressing rings (231), and the oxygen pressing rings (231) and the oxygen O-ring (232) are sleeved outside the air pipe (41); Three hydrogen pressing rings (331) are arranged on the inner surface of the hydrogen connector (33), a hydrogen O-ring (332) is arranged between two adjacent hydrogen pressing rings (331), and the hydrogen pressing rings (331) and the hydrogen O-ring (332) are sleeved outside the air pipe (41).
7. The oxy-hydrogen baking lamp socket according to claim 1, characterized in that: A plurality of oxygen outlet pipes (22) are connected to the oxygen distribution pipe (2), and a plurality of hydrogen outlet pipes (32) are connected to the hydrogen distribution pipe (3).
8. The hydrogen-oxygen baking lamp socket according to claim 1, wherein: A tower joint (5) is arranged at one end of the oxygen inlet pipe (21) outside the support plate (1), and a tower joint (5) is arranged at one end of the hydrogen inlet pipe (31) outside the support plate (1).
9. The oxy-hydrogen baking lamp socket according to claim 1, characterized in that: A fixing plate is vertically connected to the outside of the support plate (1), and a connecting hole for fixing the hydrogen-oxygen baking lamp base is arranged on the fixing plate.
10. A hydrogen-oxygen baking lamp socket according to claim 1, characterized in that: A plug is arranged at the port of the oxygen distribution pipe (2), and a plug is arranged at the port of the hydrogen distribution pipe (3).