Multi-adaptation sintering flue gas trolley sealing flue gas hood and method

By designing a movable body and retractable cigarette hood system on the sintered flue gas circulation trolley, the exhaust gas leakage and promotion difficulties caused by the fixed cigarette hood are solved, efficient sealing and convenient maintenance are achieved, and production efficiency and environmental protection are improved.

CN120252373APending Publication Date: 2025-07-04BEIJING METALLURGICAL EQUIP RES DESIGN INST CO +1
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Patent Information

Application Number
CN202510391745.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

In the existing sintered flue gas circulation technology, the fixed cigarette hood cannot move, resulting in exhaust gas leakage, which is difficult to meet the ultra-low emission requirements, and the large weight requires multiple people to push it, which is inconvenient for maintenance.

Method used

A sealed hood system including a movable vehicle body and a retractable hood is designed, and a full coverage seal is achieved through fixed tracks and hood support walls. It adopts motor drive and remote control operation to simplify the telescopic hood.

Benefits of technology

It has achieved improved sealing, convenient single-person operation, adapted to different trolley sizes, reduced operating complexity, improved production efficiency and economic benefits, and met environmental protection requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the multi-adaptation sintering flue gas trolley sealing flue gas hood and the method, flue gas sealing is carried out through the fixed rails arranged on the two sides of the sintering flue gas circulation trolley and the sealing flue gas hood which is arranged above the sintering flue gas circulation trolley and can fully cover the sintering flue gas circulation trolley; the sealed smoke hood comprises movable vehicle bodies fixedly connected in pairs and telescopic smoke hoods arranged on the movable vehicle bodies respectively, smoke hood rails are arranged on the movable vehicle bodies, the telescopic smoke hoods are arranged above the smoke hood rails through smoke hood supporting walls, and the telescopic smoke hoods stretch out and draw back on the smoke hood rails in a sliding mode through the smoke hood supporting walls. Therefore, only a small movable trolley body needs to be moved, one person can easily complete the process, the sealing smoke hood is telescopic, the problem that an existing trolley sealing smoke hood is complex in disassembly and adjustment process is solved, rapid deployment and maintenance are facilitated, the operation complexity is greatly reduced, and the yield and economic benefits of a sintering machine are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of sintering flue gas circulation, and more specifically, to a multi-adaptable sintering flue gas trolley sealing hood and method. Background Art

[0002] During the use of sintering flue gas circulation technology, a sealing hood needs to be arranged above the trolley. This brings the trouble that when the trolley is overhauled, the trolley hood needs to be disassembled and hoisted to carry out the trolley overhaul.

[0003] Specifically, in the prior art, most are fixed hoods, that is, the hoods are fixed on the brackets outside the trolley. The hoods of traditional technologies are immovable. Even if there are movable hoods, due to their large self-weight, they cannot be pushed by a single person. Moreover, there will be a large number of gaps when the movable hood is supported by brackets, which will most likely lead to waste gas leakage, and it is difficult to meet the current ultra-low emission requirements for CO volume or circulation volume emission requirements. In addition, the sealing hood formed by arranging a hood above the bracket with wheels is often heavy and requires the cooperation of multiple employees to push together, bringing great inconvenience to the overhaul work.

[0004] Therefore, there is an urgent need for a multi-adaptable sintering flue gas trolley sealing hood that can solve the problems that the traditional trolley sealing hood cannot be completely sealed, cannot effectively prevent waste gas leakage, and is difficult to push, which can facilitate rapid deployment and maintenance, greatly reduce the operation complexity, reduce the personnel ratio, and increase the output and economic benefits of the sintering machine. Summary of the Invention

[0005] In view of the above problems, the purpose of the present invention is to provide a multi-adaptable sintering flue gas trolley sealing hood and method to solve the problems in the prior art that most are fixed hoods, that is, the hoods are fixed on the brackets outside the trolley. The hoods of traditional technologies are immovable. Even if there are movable hoods, due to their large self-weight, they cannot be pushed by a single person. Moreover, there will be a large number of gaps when the movable hood is supported by brackets, which will most likely lead to waste gas leakage, and it is difficult to meet the current ultra-low emission requirements for CO volume or circulation volume emission requirements. In addition, the sealing hood formed by arranging a hood above the bracket with wheels is often heavy and requires the cooperation of multiple employees to push together, bringing great inconvenience to the overhaul work.

[0006] A multi-adaptable sintering flue gas trolley sealing hood provided by the present invention includes:

[0007] Fixed tracks arranged on both sides of the sintering flue gas circulation trolley and a sealing hood arranged above the sintering flue gas circulation trolley and capable of completely covering the sintering flue gas circulation trolley;

[0008] The sealed smoke hood includes a movable vehicle body fixedly connected in pairs and retractable smoke hoods respectively arranged on each movable vehicle body; wherein,

[0009] A smoke hood track is arranged on the movable vehicle body;

[0010] The retractable smoke hood is arranged above the smoke hood track through a smoke hood support wall, and the retractable smoke hood slides and retracts on the smoke hood track through the smoke hood support wall;

[0011] The retractable smoke hood is connected with a motor, and the motor is used to provide retracting power for the retractable smoke hood;

[0012] The motor is wired to a retractable smoke hood switch, and the motor is remotely connected to a retractable smoke hood remote control.

[0013] Preferably, adjacent movable vehicle bodies are fixed by metal screws and nuts.

[0014] Preferably, extension fixing pieces are respectively arranged at both ends of the movable vehicle body;

[0015] Adjacent movable vehicle bodies are connected through correspondingly arranged extension fixing pieces, and the metal screw penetrates through two correspondingly arranged extension fixing pieces;

[0016] The nut is screwed on the metal screw to fix the extension fixing pieces of adjacent movable vehicle bodies.

[0017] Preferably, the retractable smoke hood includes a fixed smoke hood piece and a preset number of retractable pieces.

[0018] Preferably, adjacent retractable pieces are clamped and limited through matching lower bayonets and upper bayonets. In the retracted state, the retractable pieces are sequentially nested on one side of the fixed smoke hood piece.

[0019] Preferably, the smoke hood support wall is seamlessly fixedly connected to the lower part of each retractable piece; and,

[0020] The distances between the smoke hood support walls arranged on both sides of each retractable piece increase sequentially, so that in the retracted state of the retractable smoke hood, the smoke hood support walls on both sides of the retractable piece are sequentially sleeved in the accommodation spaces formed by the smoke hood support walls on both sides of the adjacent retractable piece.

[0021] Preferably, the top of the smoke hood support wall is welded to the retractable piece;

[0022] Rollers are arranged at the bottom of the smoke hood support wall, and the rollers are slidably connected to the smoke hood track.

[0023] Preferably, the movable vehicle body includes a sealed vehicle frame and wheels disposed below the sealed vehicle frame;

[0024] The wheels can slide on the fixed track.

[0025] Preferably, the hood track is disposed above the sealed vehicle frame and is perpendicularly fixed to the side wall of the sealed vehicle frame.

[0026] The present invention also provides a method for sealing a sintering flue gas trolley with multiple adaptabilities, which is characterized in that the sintering flue gas trolley is sealed by using the sintering flue gas trolley sealing hood as described above, including:

[0027] Determine the preset number of movable vehicle bodies according to the size of the sintering flue gas trolley;

[0028] Sequentially slide the preset number of movable vehicle bodies to the side of the flue gas trolley through the fixed track, and fix the movable vehicle bodies in pairs;

[0029] Based on the hood track provided on the movable vehicle body and the hood support wall disposed above the hood track, extend the telescopic hood to a position where it can completely cover the sintering flue gas trolley to achieve sintering sealing; and if the sintering flue gas trolley needs to be repaired, shorten the telescopic hood to avoid the repair position of the sintering flue gas trolley.

[0030] As can be seen from the above technical solution, the multi-adaptive sintering flue gas trolley sealing hood and method provided by the present invention seal the flue gas through the fixed tracks arranged on both sides of the sintering flue gas circulation trolley and the sealing hood arranged above the sintering flue gas circulation trolley and capable of completely covering the sintering flue gas circulation trolley. The sealing hood includes a movable vehicle body fixedly connected in pairs and retractable hoods respectively arranged on each movable vehicle body. A hood track is arranged on the movable vehicle body. The retractable hood is arranged above the hood track through a hood support wall, and the retractable hood slides and expands on the hood track through the hood support wall, so that the preset number of movable vehicle bodies can be determined according to the size of the sintering flue gas trolley, and the sealing hood can adapt to sintering flue gas trolleys of various different sizes; when maintenance is required, only a small piece of the movable vehicle body needs to be moved, and a single person can easily complete it. Moreover, the sealing hood is retractable, and the overall length of the sealing hood can be determined according to the sintering flue gas trolley. When maintenance is required, the length of the retractable hood can also be directly reduced, and the worker can directly perform maintenance on the sintering flue gas trolley, solving the problem that the circulation ratio of the existing trolley sealing hood cannot be adjusted. And through the design of multi-section connection, the number of sections of the movable vehicle body can be determined according to the total length of the sintering flue gas trolley, and it can be applicable to sintering flue gas trolleys of different sizes. Moreover, the hood support wall can improve the sealing performance compared with the bracket, improving its use effect under different emission standard requirements, and solving the problem that the disassembly and adjustment process of the existing trolley sealing hood is complicated. By using metal screws and nuts to connect the two movable vehicle bodies, the disassembly and adjustment process of the hood can be made simpler and faster, which is beneficial to rapid deployment and maintenance, greatly reducing the operation complexity, and improving the output and economic benefits of the sintering machine. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] By referring to the following description of the specification in conjunction with the drawings, and with a more comprehensive understanding of the present invention, other objects and results of the present invention will become clearer and easier to understand. In the drawings:

[0032] Figure 1 FIG. 9 is a side view of a multi-adaptive sintering flue gas trolley sealing hood according to an embodiment of the present invention;

[0033] Figure 2 FIG. 13 is a front view of a multi-adaptive sintering flue gas trolley sealing hood according to an embodiment of the present invention;

[0034] Figure 3 FIG. 17 is a flowchart of a multi-adaptive sintering flue gas trolley sealing method according to an embodiment of the present invention.

[0035] The reference numerals are: A, sintering flue gas circulation trolley; 1, fixed track; 2, retractable hood; 3, movable vehicle body; 4, sealing frame; 5, hood track; 6, hood support wall; 7, retractable sheet. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0036] In the prior art, most of the fume hoods are fixed type, that is, the fume hood is fixed on the bracket outside the trolley. The fume hood of the traditional technology is immovable. Even if there is a movable fume hood, there will be a large number of gaps when using the bracket to support the fume hood body, which will greatly increase the possibility of waste gas leakage and it is difficult to meet the current ultra-low emission requirements for CO volume or the emission requirements for circulation volume. Moreover, the sealed fume hood formed by setting the fume hood above the bracket with wheels is often heavy and requires the cooperation of multiple employees to push together, which brings great inconvenience to the maintenance work.

[0037] In view of the above problems, the present invention provides a multi-adaptable sintering flue gas trolley sealed fume hood and method. The following will describe the specific embodiments of the present invention in detail with reference to the accompanying drawings.

[0038] In order to illustrate the multi-adaptable sintering flue gas trolley sealed fume hood and method provided by the present invention, Figures 1 - 3 Exemplary markings are made for the embodiments of the present invention.

[0039] The following description of the exemplary embodiments is actually only illustrative and in no way limits the present invention and its application or use. Technologies and devices known to those of ordinary skill in the relevant art may not be discussed in detail, but where appropriate, such technologies and devices should be regarded as part of the specification.

[0040] As Figures 1 - 2 As commonly shown, the embodiment of the present invention provides a multi-adaptable sintering flue gas trolley sealed fume hood, which includes fixed tracks 1 arranged on both sides of the sintering flue gas circulation trolley A and a sealed fume hood arranged above the sintering flue gas circulation trolley and capable of completely covering the sintering flue gas circulation trolley A. The sealed fume hood includes a movable vehicle body 3 fixedly connected in pairs and retractable fume hoods 2 respectively arranged on each movable vehicle body 3; wherein, a fume hood track 5 is arranged on the movable vehicle body 3, the retractable fume hood 2 is arranged above the fume hood track through a fume hood support wall 6, and the retractable fume hood 2 slides and expands on the fume hood track through the fume hood support wall 6.

[0041] There is no specific restriction on the way in which the movable bodies are fixed in pairs. In a specific embodiment, two adjacent movable bodies are fixed by metal screws and nuts, or by flange connection, as long as the two movable bodies can be fixed; if metal screws and nuts are used, external fixing plates are respectively provided at both ends of the movable body, and the two adjacent movable bodies are connected by correspondingly provided external fixing plates, and the metal screws penetrate the two correspondingly provided external fixing plates, and the nuts are screwed on the metal screws to fix the external fixing plates of the two adjacent movable bodies. For example, when facing the entire adjustable sintering flue gas trolley sealed smoke hood, the external fixing plate of the left movable body is provided correspondingly to the external fixing plate of the right movable body, and the metal screws penetrate the two correspondingly provided external fixing plates. The extension fixing plate and the nut are screwed on the metal screw to fix the extension fixing plates of the two movable bodies. The specific position of the extension fixing plate is not limited, as long as the two movable bodies can be linked together. In a more specific embodiment, the extension fixing plate can be arranged on the two outer sides of the end of the movable body (the side away from the middle sintering flue gas circulation trolley), that is, an extension fixing plate is extended outward from the outer side of the end to facilitate workers to fix and install it on the outside. In this way, the model of the metal screw and the nut is not limited, and can be determined according to the volume of the movable body and the size of the fixing hole opened in the extension fixing plate, as long as the metal screw and the nut can fix the extension fixing plates of the two adjacent movable bodies.

[0042] The specific extension and retraction method of the retractable smoke hood is also not limited. In the present embodiment, the retractable smoke hood 2 includes a fixed smoke hood piece and a preset number of retractable pieces 7. The style and form of the fixed smoke hood piece and the retractable piece are the same. In other words, the fixed smoke hood piece is the first retractable piece fixed to the end, which is fixed and immovable, and a limiting plate is provided above the fixed smoke hood piece. The limiting plate can be any metal plate that can block the retractable piece adjacent to the fixed smoke hood piece, so as to prevent the retractable piece adjacent to the fixed smoke hood piece from sliding excessively and falling off when the retractable piece is in the retracted state; the adjacent The retractable sheets are limited by matching lower and upper snap-fits. When in the retracted state, the retractable sheets are sequentially overlapped on one side of the fixed smoke hood sheet. For example, each retractable sheet can be arranged to rise sequentially from left to right (the end close to the fixed smoke hood sheet is the left, and the end away from the fixed smoke hood sheet is the right). More specifically, a lower snap-fit ​​is arranged on the left side of the retractable sheet, and an upper snap-fit ​​is arranged on the right side of the retractable sheet; and, when the retractable smoke hood is extended to the maximum coverage area, the lower snap-fits of each retractable sheet are snap-fitted with the upper snap-fits of the retractable sheet arranged in front to prevent the retractable sheet from falling off during the stretching process.

[0043] The hood support wall is seamlessly and fixedly connected below each telescopic sheet 7; moreover, the distance between the hood support walls on both sides of each telescopic sheet gradually increases, so that when the telescopic hood is in the contracted state, the hood support walls on both sides of the telescopic sheet are sequentially sleeved in the accommodation space formed by the hood support walls on both sides of the adjacent telescopic sheet, that is, the distance between the hood support walls on both sides of each telescopic sheet gradually increases from left to right (from the side close to the fixed hood sheet to the side away from the fixed hood sheet), so that when the telescopic hood is in the reduced state, the hood support walls on both sides of the left telescopic sheet are sleeved in the accommodation space formed by the hood support walls on both sides of the right telescopic sheet. The top of the hood support wall is welded to the telescopic sheet, and rollers are arranged at the bottom of the hood support wall, and the rollers are slidably connected to the hood track, so as to facilitate adjusting the overall length of the sealed hood by telescoping and improve the tightness of the entire telescopic hood. The hood support wall can form a sealed space above and on both sides of the sintering flue gas circulation trolley. Moreover, the movable vehicle body includes a sealed vehicle frame 4 and wheels arranged below the sealed vehicle frame 4, and the wheels are slidably connected to the fixed track, solving the problem that the traditional trolley sealed hood cannot be completely sealed. By adopting the design of the arc-shaped telescopic and detachable hood, it is possible to effectively prevent waste gas leakage during the movement or disassembly of the trolley, thereby reducing environmental pollution, achieving the requirement of the flue gas circulation volume index of more than 25%, meeting the environmental protection requirements, and reducing the environmental protection pressure of the enterprise.

[0044] In this embodiment, the hood track is arranged above the sealed vehicle frame and is vertically fixed to the side wall of the sealed vehicle frame to increase the width of the hood track and improve the stability of the entire device.

[0045] In addition, in this embodiment, the telescopic hood is connected with a motor (not shown in the figure), and the motor is used to provide telescopic power for the telescopic hood. The motor is wired to the telescopic hood switch and is remotely connected to the telescopic hood remote control, so that the staff can control the telescopic movement of the telescopic hood closely or remotely through the telescopic hood switch and the telescopic hood remote control, improving the work efficiency of the workers and reducing the work intensity. The model of the motor is not specifically limited here, as long as it can meet the requirement of pulling the outermost telescopic sheet through electric energy and then controlling the length of the entire telescopic hood. The models of the telescopic hood switch and the telescopic hood remote control are also not specifically limited, as long as they can control the motor switch. When the motor is turned on, the outermost telescopic sheet is pulled forward or backward through the traction device connected to the motor, and then the length of the entire telescopic hood is controlled. When the motor is turned off, it stops. The traction device can be any common component with a traction function and is not limited here as long as it can meet the traction function. Through the setting of the motor, the switch and the traction device, the intelligence of the entire sealed hood is greatly improved, thereby reducing the burden on workers and improving the work efficiency.

[0046] As described above, the multi-adaptive sintering flue gas trolley sealing hood provided by the present invention seals the flue gas through the fixed tracks arranged on both sides of the sintering flue gas circulation trolley and the sealing hood arranged above the sintering flue gas circulation trolley and capable of completely covering the sintering flue gas circulation trolley. The sealing hood includes a movable vehicle body fixedly connected in pairs and retractable hoods respectively arranged on each movable vehicle body. A hood track is arranged on the movable vehicle body, and the retractable hood is arranged above the hood track through a hood support wall, and the retractable hood slides and expands on the hood track through the hood support wall. Thus, the preset number of movable vehicle bodies can be determined according to the size of the sintering flue gas trolley. When maintenance is required, only a small piece of the movable vehicle body needs to be moved, and a single person can easily complete it. Moreover, the sealing hood is retractable, and the overall length of the sealing hood can be determined and adjusted according to the sintering flue gas trolley. When maintenance is required, the length of the retractable hood can also be directly reduced, and the worker can directly perform maintenance on the sintering flue gas trolley, solving the problem that the circulation ratio of the existing trolley sealing hood cannot be adjusted. And through the design of multi-section connection, the number of sections of the movable vehicle body can be determined according to the total length of the sintering flue gas trolley, and the retractable sealing hood can also be applicable to sintering flue gas trolleys of different sizes. The hood support wall can improve the sealing performance compared with the bracket, ensuring its use effect under different emission standard requirements, solving the problem that the disassembly and adjustment process of the existing trolley sealing hood is complex, and making the disassembly and adjustment process of the hood simpler and faster, thus facilitating rapid deployment and maintenance, greatly reducing the operation complexity, and improving the output and economic benefits of the sintering machine.

[0047] As Figure 3 shown, the present invention also provides a multi-adaptive sintering flue gas trolley sealing method, which uses the multi-adaptive sintering flue gas trolley sealing hood as described above to seal the sintering flue gas trolley, including:

[0048] S1: Determine the preset number of movable vehicle bodies according to the size of the sintering flue gas trolley;

[0049] S2: Slide the preset number of movable vehicle bodies to the side of the flue gas trolley through the fixed tracks in sequence, and fix the movable vehicle bodies in pairs;

[0050] S3: Based on the hood track arranged on the movable vehicle body and the hood support wall arranged above the hood track, extend the retractable hood to a position where it can completely cover the sintering flue gas trolley to achieve sintering sealing; and if the sintering flue gas trolley needs to be maintained, shorten the retractable hood to avoid the maintenance position of the sintering flue gas trolley.

[0051] For a more specific implementation manner of the above multi-adaptive sintering flue gas trolley sealing method, reference can be made to the specific embodiments of the above multi-adaptive sintering flue gas trolley sealing hood, and details are not described herein again.

[0052] The multi - adaptable sintering flue gas trolley sealing hood and method proposed according to the present invention are described above by way of example with reference to the accompanying drawings. However, those skilled in the art should understand that various improvements can be made to the above - mentioned multi - adaptable sintering flue gas trolley sealing hood and method of the present invention without departing from the content of the present invention. Therefore, the protection scope of the present invention should be determined by the content of the appended claims.

Claims

1. A multi-adaptive sintering flue gas trolley sealing hood, characterized in that, Comprising: Fixed tracks arranged on both sides of the sintering flue gas circulation trolley and a sealed smoke hood arranged above the sintering flue gas circulation trolley and capable of completely covering the sintering flue gas circulation trolley; The sealed smoke hood includes a movable vehicle body fixedly connected in pairs and retractable smoke hoods respectively arranged on each movable vehicle body; wherein, A smoke hood track is arranged on the movable vehicle body; The retractable smoke hood is arranged above the smoke hood track through a smoke hood support wall, and the retractable smoke hood slides and expands on the smoke hood track through the smoke hood support wall; The retractable smoke hood is connected with a motor, and the motor is used to provide expansion and contraction power for the retractable smoke hood; The motor is wired to a retractable smoke hood switch, and the motor is remotely connected to a retractable smoke hood remote control.

2. The multi-adaptive sintering flue gas trolley sealed smoke hood according to claim 1, characterized in that Adjacent movable vehicle bodies are fixed by metal screws and nuts.

3. The multi-adaptive sintering flue gas trolley sealed smoke hood according to claim 2, characterized in that Extension fixing pieces are respectively arranged at both ends of the movable vehicle body; Adjacent movable vehicle bodies are connected through correspondingly arranged extension fixing pieces, and the metal screw penetrates through the two correspondingly arranged extension fixing pieces; The nut is screwed on the metal screw to fix the extension fixing pieces of the adjacent two movable vehicle bodies.

4. The multi-adaptive sintering flue gas trolley sealed smoke hood according to claim 3, characterized in that The retractable smoke hood includes a fixed smoke hood piece and a preset number of retractable pieces.

5. The multi-adaptive sintering flue gas trolley sealed smoke hood according to claim 4, characterized in that Adjacent retractable pieces are clamped and limited through mutually adapted lower clamping mouths and upper clamping mouths. In the contracted state, the retractable pieces are sequentially nested outside the fixed smoke hood piece.

6. The multi-adaptive sintering flue gas trolley sealed smoke hood according to claim 5, characterized in that The smoke hood support wall is seamlessly fixedly connected to the lower part of each retractable piece; and The distances between the smoke hood support walls arranged on both sides of each retractable piece gradually increase, so that in the contracted state of the retractable smoke hood, the smoke hood support walls on both sides of the retractable piece are sequentially sleeved in the accommodating spaces formed by the smoke hood support walls on both sides of the adjacent retractable piece.

7. The multi-adaptive sintering flue gas trolley sealed smoke hood according to claim 6, characterized in that The top of the smoke hood support wall is welded to the retractable piece; Rollers are arranged at the bottom of the smoke hood support wall, and the rollers are slidably connected to the smoke hood track.

8. The multi-adaptive sintering flue gas trolley sealing hood according to claim 7, wherein The movable vehicle body includes a sealed vehicle frame and wheels arranged below the sealed vehicle frame; The wheels can slide on the fixed track.

9. The multi-adaptive sintering flue gas trolley sealed smoke hood according to claim 8, characterized in that The smoke hood track is arranged above the sealed vehicle frame and is vertically fixed to the side wall of the sealed vehicle frame.

10. A multi-adaptive sintering flue gas trolley sealing method, characterized in that, Using the multi-adaptive sintering flue gas trolley sealed smoke hood according to any one of claims 1-9 to seal the sintering flue gas trolley, including: Determining the preset number of movable vehicle bodies according to the size of the sintering flue gas trolley; Successively slide a preset number of movable car bodies to the side of the flue gas trolley through a fixed track, and fix the movable car bodies in pairs; Based on the fact that a hood track is provided on the movable car body and a hood support wall is provided above the hood track, extend the telescopic hood to a position where it can completely cover the sintering flue gas trolley to achieve sintering sealing; and if the sintering flue gas trolley needs to be overhauled, shorten the telescopic hood to avoid the overhaul position of the sintering flue gas trolley.