Gas storage tube stable storage device for atmosphere furnace

By designing components such as support devices and floating devices, automatic positioning, ventilation and anti-oxidation of the atmosphere furnace gas storage pipe is realized, which solves the safety hazards and complexity of existing storage devices and improves the storage stability and safety of the gas storage pipe.

CN120292887AInactive Publication Date: 2025-07-11SUZHOU LINNENG INTELLIGENT EQUIPMENT MANUFACTURING CO LTD
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Patent Information

Application Number
CN202510277139.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-07-11
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The storage device of the existing atmosphere furnace gas storage pipe cannot quickly achieve protective ventilation, which can easily lead to internal oxidation of the gas storage pipe, poses safety hazards, and the positioning and fixing process of the gas storage pipe is complicated and complicated.

Method used

A stable storage device for air storage pipe for atmosphere furnaces including support device, floating device, ventilation device, positioning part, monitoring suction part and antioxidant part is designed. Automatic positioning, ventilation, protection and antioxidant of the gas storage pipe are realized through sliding mobile platform, and the gravity-driven linkage protection part of the gas storage pipe is used for support and clamping and ventilation, and combined with gas detector and antioxidant spraying, it improves storage stability and safety.

Benefits of technology

It realizes stable storage of the gas storage pipe, prevents oxidation and leakage, simplifies the positioning and fixing process, improves the service life and safety of the gas storage pipe, and reduces safety hazards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a gas storage tube stable storage device for an atmosphere furnace, and relates to the technical field of atmosphere furnace gas storage tube storage. A floating device is connected to the supporting device in a sliding mode, and two linkage protection parts are installed on the floating device. Ventilation devices are fixedly connected to the two linkage protection parts correspondingly. The tail part of the supporting device is slidably connected with a positioning part, and the positioning part is fixedly connected with a tightening part; a monitoring suction part is mounted on the front side of the floating device; two anti-oxidation parts are mounted on the supporting device; a ventilation device on the linkage protection part is driven to support and clamp the gas storage pipe in a protective mode through the gravity of the gas storage pipe, the storage period of the gas storage pipe is effectively prolonged, and the problem that according to an existing stable storage device for the gas storage pipe of the atmosphere furnace, protective ventilation work of the gas storage pipe of the atmosphere furnace cannot be rapidly achieved, and the stability of the gas storage pipe of the atmosphere furnace is affected is solved. Long-term storage of the gas storage pipe is not facilitated, and effective gas suction prevention work cannot be carried out on a valve of the gas storage pipe.
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Description

Technical Field

[0001] The invention relates to the technical field of gas storage pipe storage of atmosphere furnaces, and in particular to a stable gas storage pipe storage device for atmosphere furnaces. Background Art

[0002] An atmosphere furnace is a device that can introduce an artificial atmosphere of a certain composition into the furnace at a specific temperature to achieve a certain heat treatment purpose. In the production of carbon nanotubes, the atmosphere furnace provides a controllable environment that allows carbon nanotubes to grow under specific atmosphere and temperature conditions.

[0003] However, as far as the current storage stable storage device of the atmosphere furnace gas storage pipe is concerned, it is impossible to quickly realize the protective ventilation work of the atmosphere furnace gas storage pipe, which is not conducive to the long-term storage of the gas storage pipe, and it is very easy to cause internal oxidation of the gas storage pipe. It is impossible to effectively prevent air intake at the valve of the gas storage pipe, and there are safety hazards. The gas storage pipe cannot be automatically and effectively positioned and fixed, and the gas storage process is cumbersome and complicated. Summary of the invention

[0004] In view of this, the present invention provides a stable storage device for a gas storage pipe for an atmosphere furnace, which has a supporting device and can propel the stored gas storage pipe through a sliding movable platform. It has a simple structure and can realize multiple linkages at the same time, thereby improving the overall storage quality and safety of the gas storage pipe.

[0005] The present invention provides a stable storage device for a gas storage pipe for an atmosphere furnace, which specifically includes a supporting device: The bottom of the support device is fixedly connected with an air suction pump; the support device is slidably connected with a floating device, and two linkage protection parts are installed on the floating device; the two linkage protection parts are respectively fixedly connected with ventilation devices; the support device is slidably connected with a positioning part, and the positioning part is fixedly connected with a tightening part; the front side of the floating device is installed with a monitoring air suction part; the support device is installed with two anti-oxidation parts; the support device is installed with two flipping pressurizing parts; The ventilation device comprises: The ventilation box is fixedly connected to the protective bracket; ventilation slots are provided on the ventilation box; the ventilation box pipe is connected to the suction pump; the top of the ventilation box is rotatably connected to a roller; The reset shaft is provided with two reset shafts, which are respectively slidably connected to the ventilation box, and the two reset shafts are sleeved with tension springs, and the tension springs are fixedly connected between the outer side of the ventilation box and the shaft ends of the reset shafts.

[0006] Optionally, the monitoring air intake unit comprises: The suction bracket is rotatably connected to the mobile platform; a gas detector is installed on the suction bracket; both sides of the suction bracket are fixedly connected with a toggle plate; gears are arranged at both ends of the suction bracket; The suction ring is fixedly connected to the suction bracket; the suction ring is connected to the suction pump through a pipe. The reset arc shafts are provided with two. The two reset arc shafts are respectively fixedly connected to the moving platform; springs are respectively sleeved on the two reset arc shafts; toggle plates are respectively slidably connected to the two reset arc shafts.

[0007] Optionally, the support device includes: The support base plate is provided with a positioning part on it; two sliding grooves are provided on the support base plate. The moving platform is slidably connected to the support base plate at the bottom. The linkage extrusion blocks are provided with two. The two linkage extrusion blocks are respectively fixedly connected to both sides of the bottom of the moving platform; the bottom of the linkage extrusion block is of an inclined surface structure.

[0008] Optionally, the flipping and pressing part includes: The rack linkage block is fixedly connected to the support base plate; a rack is provided at the front section of the rack linkage block, and the rack linkage block meshes with the gear arranged at the end of the suction bracket. A row of arc-shaped extrusion grooves are provided, and the row of arc-shaped extrusion grooves are opened on the rack linkage block.

[0009] Optionally, the floating device includes: There are eight floating shafts, and the eight floating shafts are respectively slidably connected to the moving platform; springs are respectively sleeved on the eight floating shafts. The floating plate is fixedly connected to the eight floating shafts. The protective drive block is fixedly connected to the bottom of the floating plate; two inclined slots are provided on the protective drive block.

[0010] Optionally, the positioning part includes: There are two positioning shafts; the two positioning shafts are slidably connected to the support base plate, and springs are respectively sleeved at the bottoms of the two positioning shafts. The positioning lifting rod is fixedly connected to the two positioning shafts. There are two linkage rods, and the two fixed linkage rods are connected to the positioning shafts; rollers are rotatably connected to the front ends of the linkage rods.

[0011] Optionally, the tightening part includes: The tightening support plate is fixedly connected to the positioning lifting rod; the top of the tightening support plate is of an inclined surface structure; two sliding grooves are opened on the tightening support plate. The extrusion frame is slidably connected to the tightening support plate. Spring drive shafts, there are two spring drive shafts, and the two spring drive shafts are respectively fixedly connected in the sliding grooves on the tightening support plate; springs are respectively sleeved on the two spring drive shafts; an extrusion frame is slidably connected to the two spring drive shafts.

[0012] Optionally, the linkage protection part includes: A protection bracket, the protection bracket is slidably connected to the moving platform; A linkage frame, the linkage frame is fixedly connected to the bottom of the protection bracket, and the front end of the linkage frame is slidably connected in the inclined groove on the protection drive block.

[0013] Optionally, the antioxidant part includes: An extrusion pump head, the extrusion pump head is fixedly embedded on the moving platform, and the bottom of the extrusion pump head passes through the moving platform; the side of the extrusion pump head is pipe-connected to the antioxidant tank; A spraying rod, the spraying rod is fixedly connected to the floating plate; the spraying rod is pipe-connected to the extrusion pump head.

[0014] Optionally, the ventilation device further includes: A retracting plate, the retracting plate is fixedly connected to the two reset shafts; three protruding strips are provided on the retracting plate, and all three pass through the ventilation box.

[0015] Beneficial effects According to the gas storage pipe storage device of the embodiments of the present invention, by sliding and installing the gas storage pipe, the maintenance and stable operation of the gas storage pipe can be realized at the same time. The structure is mature, and it more meets the safe storage conditions of the gas storage pipe in the atmosphere furnace, is more stable in use, and is convenient for the staff to pick up and place.

[0016] In addition, by setting the support device and the floating device, during the process of placing the gas storage pipe, relying on the gravity of the gas storage pipe itself, the ventilation device on the linkage protection part can be driven to perform protective support clamping on the gas storage pipe, effectively improving the storage period of the gas storage pipe. During the storage process, it is no longer necessary to often remove the gas storage pipe for wiping and cleaning to prevent surface mildew, prevent the humidity of the storage environment from being too high and the temperature from being unstable, which may shorten the service life of the gas storage pipe and affect the stability of the internal gas.

[0017] In addition, by providing a movable platform connected by sliding, it is convenient for the staff to move and pick up the gas storage pipe. After placing the gas storage pipe on the floating plate, during the process of pushing the movable platform forward, there is a linkage extrusion block on the front side of the movable platform. When the movable platform continues to be pushed forward, the linkage extrusion blocks on both sides of the movable platform can squeeze the linkage rods, thereby driving the positioning lifting rod to descend. During the descent of the positioning lifting rod, the tightening support plate on the tightening part is also driven to move downward. At this time, the extrusion frame can be brought into contact with and squeeze the gas storage pipe. At the same time, the extrusion frame is slidably connected to the tightening support plate. According to the figure, the top of the tightening support plate is a bevel structure, which can enable the extrusion frame to move a certain distance to the left while squeezing the gas storage pipe, so as to assist in applying a frictional force to the left on the gas storage pipe, and can more effectively fix the gas storage pipe to prevent it from falling off.

[0018] In addition, during the process of the staff pushing the movable platform forward, by providing a rack linkage block, when the monitoring suction part is driven to operate, it can rotate by engaging the gear with the rack linkage block, so that the suction bracket rotates by ninety degrees, realizing turning the suction ring to the valve of the gas storage pipe for air suction protection, and performing gas detection through a gas detector, making the use more flexible and improving the safety of gas storage.

[0019] In addition, by providing an extrusion pump head installed on the movable platform, during the process of moving and pushing the movable platform forward, it can drive the extrusion pump head to squeeze the arc-shaped extrusion groove, realizing spraying the antioxidant onto the equipment and the pipe body to prevent the pipe body from oxidizing and rusting, resulting in a decrease in airtightness and leakage. During the process, pressurization can be automatically achieved, making the use more convenient and improving the overall antioxidant ability. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly introduced below.

[0021] The accompanying drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0022] In the accompanying drawings: Figure 1 A schematic diagram of the overall device according to an embodiment of the present invention is shown; Figure 2 A schematic diagram of the rear side of the device according to an embodiment of the present invention is shown; Figure 3 A schematic diagram of the bottom of the device according to an embodiment of the present invention is shown; Figure 4 A cross-sectional view of the side of the device according to an embodiment of the present invention is shown; Figure 5 A schematic diagram of the support device according to an embodiment of the present invention is shown; Figure 6 Shows a schematic structural diagram of the bottom of the support device according to an embodiment of the present invention; Figure 7 Shows a schematic diagram of the floating device according to an embodiment of the present invention; Figure 8 Shows a schematic diagram of the linkage protection part according to an embodiment of the present invention; Figure 9 Shows a schematic diagram of the ventilation device according to an embodiment of the present invention; Figure 10 Shows a schematic structural diagram of the rear side of the ventilation device according to an embodiment of the present invention; Figure 11 Shows a schematic diagram of the positioning part according to an embodiment of the present invention; Figure 12 Shows a schematic diagram of the driving structure of the positioning part according to an embodiment of the present invention; Figure 13 Shows a schematic diagram of the tightening part according to an embodiment of the present invention; Figure 14 Shows a schematic diagram of the monitoring suction part according to an embodiment of the present invention; Figure 15 Shows a schematic diagram of the antioxidant part according to an embodiment of the present invention; Figure 16 Shows a schematic diagram of the flipping and pressing part according to an embodiment of the present invention.

[0023] List of reference numerals 1. Support device; 101. Support bottom plate; 102. Moving platform; 103. Linkage extrusion block; 2. Floating device; 201. Floating shaft; 202. Floating plate; 203. Protection drive block; 3. Linkage protection part; 301. Protection bracket; 302. Linkage frame; 4. Ventilation device; 401. Ventilation box; 402. Reset shaft; 403. Retracting plate; 5. Positioning part; 501. Positioning shaft; 502. Positioning lifting rod; 503. Linkage rod; 6. Tightening part; 601. Tightening support plate; 602. Extrusion frame; 603. Spring drive shaft; 7. Monitoring suction part; 701. Suction bracket; 7011. Gas detector; 7012. Dialing plate; 702. Suction ring; 703. Reset arc shaft; 8. Antioxidant part; 801. Extrusion pump head; 802. Spraying rod; 9. Flipping and pressing part; 901. Rack linkage block; 902. Arc extrusion groove; 10. Suction pump. Detailed implementation manners

[0024] In order to make the objectives, solutions, and advantages of the technical solutions of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the ordinary meanings in the art. The same reference numerals in the drawings represent the same components.

[0025] Embodiment: Please refer to Figures 1 to 16 : The present invention provides a stable storage device for a gas storage pipe used in an atmosphere furnace, including a support device 1: A suction pump 10 is fixedly connected to the bottom of the support device 1; A floating device 2 is slidably connected to the support device 1, and two linkage protection parts 3 are installed on the floating device 2; Ventilation devices 4 are respectively fixedly connected to the two linkage protection parts 3; A positioning part 5 is slidably connected to the support device 1, and a tightening part 6 is fixedly connected to the positioning part 5; A monitoring suction part 7 is installed on the front side of the floating device 2; Two anti-oxidation parts 8 are installed on the support device 1; Two flipping and pressurizing parts 9 are installed on the support device 1; The ventilation device 4 includes: A ventilation box 401, and the ventilation box 401 is fixedly connected to the protection bracket 301; Ventilation slots are provided on the ventilation box 401; The ventilation box 401 is pipe-connected to the suction pump 10; A roller is rotatably connected to the top of the ventilation box 401; A reset shaft 402, and there are two reset shafts 402. The two reset shafts 402 are respectively slidably connected to the ventilation box 401. A tension spring is sleeved on the two reset shafts 402, and the tension spring is fixedly connected between the outside of the ventilation box 401 and the shaft end of the reset shaft 402.

[0026] In addition, according to the embodiments of the present invention, as Figures 5 to 10 shown, the support device 1 includes: A support bottom plate 101, and the positioning part 5 is installed on the support bottom plate 101; Two chutes are provided on the support bottom plate 101; A moving platform 102, and the bottom of the moving platform 102 is slidably connected to the support bottom plate 101; Two linkage extrusion blocks 103, and the two linkage extrusion blocks 103 are respectively fixedly connected to both sides of the bottom of the moving platform 102; The bottom of the linkage extrusion block 103 is of an inclined surface structure. The floating device 2 includes: eight floating shafts 201 which are respectively and slidably connected to the moving platform 102; springs are respectively sleeved on the eight floating shafts 201; a floating plate 202 which is fixedly connected to the eight floating shafts 201; a protective driving block 203 which is fixedly connected to the bottom of the floating plate 202; two inclined slots are provided on the protective driving block 203; the linkage protection part 3 includes: a protective bracket 301 which is slidably connected to the moving platform 102; a linkage frame 302 which is fixedly connected to the bottom of the protective bracket 301, and the front end of the linkage frame 302 is slidably connected to the inclined slot on the protective driving block 203; the ventilation device 4 further includes: a retracting plate 403 which is fixedly connected to two reset shafts 402; three raised strips are provided on the retracting plate 403, and all three pass through the ventilation box 401; by arranging the support device 1 and the arranged floating device 2, it is possible to realize that during the process of placing the gas storage pipe, relying on the self-gravity of the gas storage pipe to drive the ventilation device 4 on the linkage protection part 3 to perform protective support clamping on the gas storage pipe, effectively improving the storage duration of the gas storage pipe. At the same time, by accelerating the air flow rate, the purpose of cooling is achieved, avoiding overheating of the internal chemical gas and reducing stability. After placing the gas storage pipe, relying on the self-gravity of the gas storage pipe can cause the floating plate 202 to descend. During the descent of the floating plate 202, the protective driving block 203 installed at the bottom of the floating plate 202 will move downward simultaneously. During this process, by the way that the linkage frame 302 is slidably connected to the inclined slot provided on the protective driving block 203, it is possible to drive the two linkage frames 302 simultaneously by the way of inclined surface extrusion, so as to drive the two protective brackets 301 to move towards each other simultaneously, thereby driving the ventilation device 4 to clamp the side of the gas storage pipe. Among them, the retracting plate 403 is connected to the ventilation box 401 inside the ventilation device 4 through the reset shaft 402. When the ventilation box 401 is driven and squeezed against the side of the gas storage pipe, it is possible to drive the retracting plate 403 to retract. At this time, the ventilation box 401 can suck air from the gas storage pipe to increase the air flow rate, realizing the requirements of ventilation and cooling, effectively improving the storage period of the gas storage pipe. During the storage process, it is no longer necessary to often remove the gas storage pipe for wiping and cleaning to prevent surface mildew, preventing the humidity of the storage environment from being too high and the temperature from being unstable, which may shorten the service life of the gas storage pipe and affect the stability of the internal gas. At the same time, the two ventilation devices 4 can also play a protective role on the side of the gas storage pipe.

[0027] In addition, according to an embodiment of the present invention, such as Figures 11 to 13As shown, the positioning part 5 includes: positioning shafts 501, and there are two positioning shafts 501; the two positioning shafts 501 are slidably connected to the support bottom plate 101, and springs are sleeved on the bottoms of the two positioning shafts 501; a positioning lifting rod 502, and the positioning lifting rod 502 is fixedly connected to the two positioning shafts 501; linkage rods 503, and there are two linkage rods 503, and the two fixed linkage rods 503 are connected to the positioning shafts 501; rollers are rotatably connected to the front ends of the linkage rods 503; the tightening part 6 includes: a tightening support plate 601, and the tightening support plate 601 is fixedly connected to the positioning lifting rod 502; the top of the tightening support plate 601 is of an inclined surface structure; two sliding grooves are formed in the tightening support plate 601; an extrusion frame 602, and the extrusion frame 602 is slidably connected to the tightening support plate 601; spring drive shafts 603, and there are two spring drive shafts 603, and the two spring drive shafts 603 are respectively fixedly connected to the sliding grooves on the tightening support plate 601; springs are sleeved on the two spring drive shafts 603 respectively; the extrusion frame 602 is slidably connected to the two spring drive shafts 603; by setting the positioning part 5 to cooperate with the tightening part 6, the tightening and fixing of the gas storage pipe can be realized in a linkage manner. During the process, there is no need for manual time-consuming and cumbersome fixing, and at the same time, the fixing effect can be ensured, so that the chemical gas storage inside the gas storage pipe is more stable. By setting the slidably connected moving platform 102, it is convenient for the staff to move and pick up the gas storage pipe. After placing the gas storage pipe on the floating plate 202, the moving platform 102 can be pushed forward. Among them, a linkage extrusion block 103 is provided on the front side of the moving platform 102. When the moving platform 102 continues to be pushed forward, the linkage extrusion blocks 103 on both sides of the moving platform 102 can squeeze the linkage rods 503, thereby driving the positioning lifting rod 502 to descend. During the descent of the positioning lifting rod 502, the tightening support plate 601 on the tightening part 6 is also driven to move downward. At this time, the extrusion frame 602 can be attached to and squeeze the gas storage pipe. At the same time, the extrusion frame 602 is slidably connected to the tightening support plate 601. According to Figure 1 , the top of the tightening support plate 601 is of an inclined surface structure, which can enable the extrusion frame 602 to perform a certain displacement to the left while squeezing the gas storage pipe, so as to assist in applying a frictional force to the left to the gas storage pipe, and can more effectively fix the gas storage pipe, prevent the gas storage pipe from falling off, and can also perform adaptive fixing according to gas storage pipes of different specifications, effectively saving the gas storage pipe fixing time, and at the same time, the structure is simple and stable, effectively improving the stability of the gas stored inside the gas storage pipe.

[0028] In addition, according to the embodiments of the present invention, such as Figures 14 to 16As shown in the figure, the inhalation monitoring part 7 includes: an inhalation bracket 701, which is rotatably connected to the moving platform 102; a gas detector 7011 is installed on the inhalation bracket 701; a controller and an alarm are integrated inside the gas detector 7011; toggle plates 7012 are fixedly connected to both sides of the inhalation bracket 701; gears are provided at both ends of the inhalation bracket 701; an inhalation ring 702, which is fixedly connected to the inhalation bracket 701; the inhalation ring 702 is pipe-connected to the inhalation pump 10; a reset arc shaft 703, there are two reset arc shafts 703, and the two reset arc shafts 703 are respectively fixedly connected to the moving platform 102; springs are respectively sleeved on the two reset arc shafts 703; toggle plates 7012 are respectively slidably connected to the two reset arc shafts 703; the antioxidant part 8 includes: an extrusion pump head 801, which is fixedly embedded in the moving platform 102, and the bottom of the extrusion pump head 801 passes through the moving platform 102; the side of the extrusion pump head 801 is pipe-connected to the antioxidant tank; a spraying rod 802, which is fixedly connected to the floating plate 202; the spraying rod 802 is pipe-connected to the extrusion pump head 801; the flipping and pressurizing part 9 includes: a rack linkage block 901, which is fixedly connected to the support bottom plate 101; a rack is provided at the front section of the rack linkage block 901, and the rack linkage block 901 meshes with the gear provided at the end of the inhalation bracket 701; a row of arc-shaped extrusion grooves 902 are provided, and the row of arc-shaped extrusion grooves 902 are opened on the rack linkage block 901;By setting the monitoring suction part 7 in cooperation with the antioxidant part 8, the gas detector 7011 adopts a mature methane detector in the market. At the same time, it can also be adapted to different gas leakage detectors according to the actually stored gas, which can effectively reduce the safety accident rate, detect the storage anti-leakage of the gas storage pipe in real time, and effectively prevent the gas storage pipe from leaking due to the oxidation reaction of the pipe body valve during long-term storage. During the process of realizing anti-leakage detection and pipe body anti-oxidation, no manual operation is required. When the staff pushes the mobile platform 102, first, by setting the rack linkage block 901, during the operation of the monitoring suction part 7 driven by the mobile platform 102, it can be rotated by the way of the gear meshing with the rack linkage block 901, so that the suction bracket 701 rotates by ninety degrees, realizing the rotation of the suction ring 702 to the gas storage pipe valve for air suction protection. At the same time, when placing the gas storage pipe, the mobile platform 102 is pulled to the right, and the two gears on the suction bracket 701 can be separated from the rack linkage block 901. At this time, the set reset arc shaft 703 can push the suction bracket 701 downward and turn it over by means of a sleeved spring to facilitate the staff to place the gas storage pipe. The setting of the suction ring 702 also plays a role in preventing the gas storage pipe from falling off and limiting the gas storage pipe. The structure is simple and efficient, effectively preventing the gas storage pipe and avoiding economic losses and safety accidents caused by the leakage of the gas storage pipe. At the same time, the extrusion pump head 801 installed on the mobile platform 102 can realize that during the process of pushing the mobile platform 102, the extrusion pump head 801 squeezes the arc-shaped extrusion groove 902, realizing the spraying of the antioxidant onto the equipment and the pipe body, preventing the pipe body from rusting due to oxidation and reducing the airtightness and leakage. It effectively improves the safety of the equipment for the current storage of gas storage pipes and more meets the safety storage conditions of the gas storage pipes of special atmosphere furnaces.;

[0029] Specific usage method and function of this embodiment: In the present invention, in accordance with Figure 1, first, pull the mobile platform 102 to move the mobile platform 102 to the right side of the device. Subsequently, place the gas storage pipe on the floating plate 202. The floating plate 202 can be lowered by relying on the self - gravity of the gas storage pipe. During the lowering process of the floating plate 202, the protective driving block 203 installed at the bottom of the floating plate 202 will move downward simultaneously. During this process, by means of the sliding connection of the linkage frame 302 inside the inclined slot provided on the protective driving block 203, the two linkage frames 302 can be driven simultaneously by the way of extrusion through the inclined plane, so as to drive the two protective brackets 301 to move towards each other simultaneously, and then drive the ventilation device 4 to clamp the side of the gas storage pipe. Among them, a retractable plate 403 is connected inside the ventilation box 401 of the ventilation device 4 through a reset shaft 402. When the ventilation box 401 is driven and squeezed against the side of the gas storage pipe, the retractable plate 403 can be driven to retract. At this time, the ventilation box 401 can suck air and ventilate the gas storage pipe. After the gas storage pipe is placed, during the operation of the suction part 7 driven by the mobile platform 102, it rotates by means of the gear meshing with the rack linkage block 901, so that the suction bracket 701 rotates 90 degrees, and the suction ring 702 is rotated to the valve of the gas storage pipe for suction protection. The extrusion pump head 801 installed on the mobile platform 102 can drive the extrusion pump head 801 to squeeze the arc - shaped extrusion groove 902 during the process of moving and advancing the mobile platform 102, so as to spray the antioxidant onto the device and the pipe body, preventing the leakage caused by the reduction of airtightness due to the oxidation of the device. When placing the gas storage pipe, the mobile platform 102 is pulled to the right side, and the two gears on the suction bracket 701 can be separated from the rack linkage block 901. At this time, the set reset arc shaft 703 can push the suction bracket 701 downward and flip it by means of a sleeved spring to facilitate the staff to place the gas storage pipe. Subsequently, the mobile platform 102 can be pushed to the left side. When the mobile platform 102 continues to advance, the linkage squeezing blocks 103 on both sides of the mobile platform 102 can squeeze the linkage rod 503, thereby driving the positioning lifting rod 502 to descend. During the descent process of the positioning lifting rod 502, the tightening support plate 601 on the tightening part 6 is also driven to move downward. At this time, the extrusion frame 602 can be attached to and squeeze the gas storage pipe. At the same time, the extrusion frame 602 is slidably connected to the tightening support plate 601. According to Figure 1 , the top of the tightening support plate 601 is of an inclined plane structure, which can enable the extrusion frame 602 to displace a certain distance to the left while squeezing the gas storage pipe, so as to assist in applying a frictional force to the left on the gas storage pipe, achieving the purpose of fixing the gas storage pipe and making the gas stored inside more stable. Finally, the use process of the storage and stable storage device for the gas storage pipe of the atmosphere furnace is completed.

[0030] Finally, it should be noted that when the present invention describes the positions of various components and their mating relationships, etc., usually one / a pair of components are taken as examples. However, those skilled in the art should understand that such positions, mating relationships, etc. are equally applicable to other components / other pairs of components.

[0031] The above description is only an exemplary embodiment of the present invention and is not intended to limit the protection scope of the present invention. The protection scope of the present invention is determined by the appended claims.

Claims

1. A stable storage device for a gas storage pipe used in an atmosphere furnace, characterized in that, Includes: Support device: The bottom of the support device is fixedly connected with an air suction pump; the support device is slidably connected with a floating device, and two linkage protection parts are installed on the floating device; the two linkage protection parts are respectively fixedly connected with ventilation devices; the support device is slidably connected with a positioning part, and the positioning part is fixedly connected with a tightening part; the front side of the floating device is installed with a monitoring air suction part; the support device is installed with two anti-oxidation parts; the support device is installed with two flipping pressurizing parts; The ventilation device comprises: Ventilation box, the ventilation box is fixedly connected to the protective bracket, and the ventilation box pipe is connected to the suction pump; The reset shaft is provided with two reset shafts, the two reset shafts are respectively slidably connected to the ventilation box, and the two reset shafts are sleeved with tension springs.

2. The storage and stable storage device of the gas storage pipe of the atmosphere furnace according to claim 1, characterized in that: The supporting device comprises: A supporting bottom plate, wherein a positioning part is installed on the supporting bottom plate; A mobile platform, the bottom of which is slidably connected to the supporting bottom plate; The linkage extrusion block is provided with two linkage extrusion blocks, and the two linkage extrusion blocks are respectively fixedly connected to the two sides of the bottom of the mobile platform.

3. The storage and stable storage device of the gas storage pipe of the atmosphere furnace according to claim 1, characterized in that: The floating device comprises: There are eight floating shafts, and the eight floating shafts are respectively slidably connected to the moving platform; the eight floating shafts are respectively sleeved with springs; A floating plate, the floating plate is fixedly connected to eight floating shafts; The protective driving block is fixedly connected to the bottom of the floating plate; the protective driving block is provided with two oblique grooves.

4. The storage and stable storage device of the gas storage pipe of the atmosphere furnace according to claim 1, characterized in that: The linkage protection unit comprises: A protective bracket, the protective bracket is slidably connected to the mobile platform; The linkage frame is fixedly connected to the bottom of the protection bracket, and the front end of the linkage frame is slidably connected to the protection drive block.

5. The storage and stable storage device of the gas storage pipe of the atmosphere furnace according to claim 1, characterized in that: The ventilation device also includes: The retracting plate is fixedly connected to the two reset shafts.

6. The storage and stable storage device of the gas storage pipe of the atmosphere furnace according to claim 1, characterized in that: The positioning portion comprises: Positioning shafts, two of which are provided; the two positioning shafts are slidably connected to the supporting bottom plate, and springs are sleeved at the bottom of the two positioning shafts; A positioning lifting rod, which is fixedly connected to the two positioning shafts; The linkage rod is provided with two linkage rods, and the two fixed linkage rods are connected to the positioning shaft; the front end of the linkage rod is rotatably connected with a roller.

7. The storage and stable storage device of the gas storage pipe of the atmosphere furnace according to claim 1, characterized in that: The tightening portion comprises: The tightening support plate is fixedly connected to the positioning lifting rod; the top of the tightening support plate is an inclined structure; and two sliding grooves are provided on the tightening support plate; An extrusion frame, the extrusion frame is slidably connected to the tightening support plate; The spring drive shaft is provided with two spring drive shafts, and the two spring drive shafts are respectively fixedly connected in the slide grooves on the tightening support plate; the two spring drive shafts are respectively sleeved with springs; and the two spring drive shafts are slidably connected with an extrusion frame.

8. The storage and stable storage device of the gas storage pipe of the atmosphere furnace according to claim 1, characterized in that: The monitoring air intake unit comprises: The suction bracket is rotatably connected to the mobile platform through the shaft seat; a gas detector is installed on the suction bracket; both sides of the suction bracket are fixedly connected with a toggle plate; gears are arranged at both ends of the suction bracket; An air suction ring is fixedly connected to the air suction bracket; the air suction ring pipe is connected to the air suction pump; The reset arc shaft is provided with two reset arc shafts, and the two reset arc shafts are respectively fixedly connected to the moving platform; the two reset arc shafts are respectively sleeved with springs; and the two reset arc shafts are respectively slidably connected with toggle plates.

9. The storage and stable storage device of the gas storage pipe of the atmosphere furnace according to claim 1, characterized in that: The anti-oxidation part comprises: The extrusion pump head is fixedly installed on the moving platform in an embedded manner, and the bottom of the extrusion pump head passes through the moving platform; the side of the extrusion pump head is connected to the antioxidant tank through a pipe. The spraying rod is fixedly connected to the floating plate; the spraying rod is connected to the extrusion pump head through a pipe.

10. The storage and stable storage device of the gas storage pipe of the atmosphere furnace according to claim 1, characterized in that: The flipping and pressurizing part includes: The rack linkage block is fixedly connected to the support bottom plate; a rack is provided at the front section of the rack linkage block. The arc-shaped extrusion groove, there is a row of arc-shaped extrusion grooves, and a row of arc-shaped extrusion grooves is arranged on the rack linkage block.