Furnace body moving device

By designing the drive rollers and synchronous transmission components, combined with the support mechanism, the problems of inconvenient furnace movement and unstable positioning were solved, enabling smooth furnace movement and convenient material handling, thus improving operational efficiency and safety.

CN223765357UActive Publication Date: 2026-01-06NANJING CHANGJIANG IND FURNACE TECH GRP CO LTD
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Patent Information

Application Number
CN202520559174.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-01-06
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

Traditional methods of moving furnace bodies are usually inconvenient to operate, inefficient, and unsafe, and it is difficult to keep them stably positioned after they have been moved.

Method used

The furnace body is moved smoothly by using drive rollers and synchronous transmission components. Combined with the support mechanism, it is easy to add materials. The drive motor and synchronous wheel transmission components work together to ensure that the furnace body moves smoothly on the track and supports the furnace body at appropriate positions to facilitate material handling.

Benefits of technology

It achieves smooth movement and precise positioning of the furnace body, making operation easier, improving work efficiency, and providing a stable and reliable structure while reducing manufacturing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a furnace body moving device, and relates to the technical field of solid solution furnace moving. The sliding rollers are fixed to the rails on the front side and the rear side, and the sliding rollers are embedded and slidably arranged in grooves in the inner bottom walls of the sliding blocks. The driving rollers are equidistantly fixed on the bottom wall of the sliding block, and the driving rollers are slidably arranged in grooves in the middle sides of the rails; the connecting block is fixedly arranged between the two sliding blocks, and a driving motor is arranged in the connecting block; a driving rod is rotationally connected into the top wall of the connecting block through a bearing, the front end and the rear end of the driving rod are rotationally inserted into the sliding blocks on the front side and the rear side through bearings, the driving rod is connected with shaft rods of the adjacent driving rollers through synchronous wheel transmission assemblies, and the middle end of the driving rod is connected with an output shaft of a driving motor through a bevel gear pair; the supporting mechanism is arranged on the furnace body; the furnace body stably moves through the driving rollers and synchronous transmission, materials are conveniently added through the supporting mechanism, operation is labor-saving and accurate, the structure is stable and reliable, and the working efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of solution furnace moving technology, specifically to a furnace body moving device. Background Technology

[0002] A solution furnace is an industrial furnace used for heat treatment of metallic materials. In metal processing, solution treatment is an important heat treatment process that involves heating an alloy to a certain temperature so that the solute atoms in the alloy fully dissolve into the solid solution, and then rapidly cooling it to maintain the supersaturated state of these atoms in the solid solution. This process can improve the mechanical properties and corrosion resistance of the material. In industrial production, the furnace body usually needs to be moved or repositioned according to production needs. Traditional furnace body movement methods usually involve manual pushing, which has problems such as inconvenience in operation, low efficiency, and poor safety. Moreover, after being moved to a suitable position, it is mostly positioned based on its own weight, which affects stability. Utility Model Content

[0003] The purpose of this utility model is to provide a furnace body moving device that is reasonably designed and easy to use, which can effectively solve the defects and shortcomings of the existing technology.

[0004] To achieve the above objectives, this utility model adopts the following technical solution: it comprises a furnace body, a track, and sliding blocks, wherein sliding blocks are fixed on both the front and rear sides of the lower sidewall of the furnace body, and the sliding blocks are disposed on the track; it further comprises:

[0005] The sliding rollers are a plurality of each other, and are fixed equally and at equal intervals on the front and rear tracks. The sliding rollers are embedded and slidably disposed in the grooves on the bottom wall of the sliding block.

[0006] The driving rollers are a plurality of rollers, which are fixed equally and at equal intervals on the bottom wall of the sliding block. The driving rollers are slidably arranged in the groove on the middle side of the track. The shafts on the several driving rollers in the same track are connected in pairs through a synchronous wheel transmission assembly.

[0007] A connecting block is fixedly disposed between two sliding blocks, and a drive motor is disposed inside the connecting block;

[0008] The drive rod is screwed into the top wall of the connecting block by bearings. The front and rear ends of the drive rod are respectively screwed into the sliding blocks on the front and rear sides by bearings. The drive rod is connected to the shaft of the adjacent drive roller by synchronous wheel transmission assembly. The middle end of the drive rod is connected to the output shaft of the drive motor by bevel gear pair.

[0009] A supporting mechanism is provided on the furnace body and is located on the outside of the track;

[0010] With the above technical solution, the furnace body slides on the track via a sliding block. When movement is required, the drive motor is started, which drives the drive rod to rotate. The two ends of the drive rod drive the corresponding drive rollers through the synchronous wheel transmission assembly. The drive rollers rotate synchronously through the cooperation of the synchronous wheel transmission assembly, thereby enabling the furnace body to move. When the furnace body moves to the appropriate position, the supporting mechanism supports the furnace body, making it easier to add materials.

[0011] As a further improvement of this utility model, vertical slides are provided in the front and rear side walls of the connecting block. After the lower side of the vertical slide passes through the lower side wall of the connecting block, a horizontal slide is fixed thereon. The horizontal slides are respectively slidably arranged in the grooves on the front and rear side rails.

[0012] The above technical solution facilitates the connection of the connecting block to the track without affecting the up-and-down movement and sliding of the connecting block.

[0013] As a further improvement of this utility model, the supporting mechanism includes:

[0014] The support rods consist of four rods, with their middle ends symmetrically screwed onto the outer wall of the sliding block via shafts. Each support rod has a movably inserted rod at its upper end.

[0015] The connecting strip consists of two strips, which are symmetrically arranged on both sides of the furnace body. The connecting strips are screwed to the upper ends of the inserts on both sides via shafts. A movable block is screwed to the upper end of the insert on one side via a shaft. The movable block is slidably arranged in a groove on the outer wall of the furnace body.

[0016] The supporting screws are two in number and are embedded in the front and rear side walls of the furnace body through bearings. The two supporting screws are connected by a synchronous wheel transmission assembly. One end of one of the supporting screws is connected to a supporting motor, which is embedded in and fixed in the furnace body.

[0017] With the above technical solution, once the furnace body is moved to a suitable position, the supporting motor is started. The supporting motor drives the supporting screw connected to it to rotate. This supporting screw drives another supporting screw to rotate through a synchronous pulley assembly. The two supporting screws simultaneously drive the insertion rod on one side to move through the moving block. This insertion rod drives another insertion rod to move synchronously through the connecting strip. During the movement, the insertion rod drives the supporting rod to rotate around the shaft screwed to the sliding block, so that the lower end of the supporting rod abuts against both sides of the track, thereby lifting the furnace body upwards to facilitate the addition of materials.

[0018] As a further improvement of this utility model, a heat insulation pad is embedded in the peripheral wall of the furnace body, and the heat insulation pad is located inside the supporting screw and the supporting motor.

[0019] The above technical solution avoids the heat from the furnace body from affecting the supporting motor and the supporting screw.

[0020] As a further improvement of this utility model, the insertion rod is fixed on the left and right side walls of the inner end of the support rod, and the limit blocks are slidably arranged in the grooves on the two inner walls of the support rod.

[0021] The above technical solution can prevent the insertion rod from moving out of the support rod.

[0022] As a further improvement of this utility model, a support plate is provided on the outer side of the track, and the two ends of the support plate are embedded and screwed to the lower end of the support rod by a shaft.

[0023] The above technical solution can increase the area when supported, thereby improving stability.

[0024] Compared with the prior art, the beneficial effects of this utility model are as follows: The furnace body moving device described in this utility model realizes the smooth movement of the furnace body through driving rollers and synchronous transmission, the supporting mechanism facilitates material addition, the operation is labor-saving and precise, the structure is stable and reliable, and the work efficiency is improved. This utility model has the advantages of reasonable setting and low manufacturing cost. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of this utility model.

[0026] Figure 2 This is a schematic diagram of the structure of the furnace body, sliding block, and drive roller in this utility model.

[0027] Figure 3 This is an exploded view of the sliding block, connecting block, driving roller, and driving rod in this utility model.

[0028] Figure 4 This is an exploded view of the supporting mechanism in this utility model.

[0029] Explanation of reference numerals in the attached figures:

[0030] Furnace body 1, track 2, sliding block 3, sliding roller 4, drive roller 5, connecting block 6, drive motor 7, drive rod 8, supporting mechanism 9, supporting rod 9-1, insert rod 9-2, connecting strip 9-3, moving block 9-4, supporting screw 9-5, supporting motor 9-6, vertical slide 10, horizontal slide 11, heat insulation pad 12, limiting block 13, supporting plate 14. Detailed Implementation

[0031] The technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. The preferred embodiments described are only examples. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model. Example

[0032] like Figures 1-4 As shown, this embodiment includes a furnace body 1, a track 2, and sliding blocks 3. Sliding blocks 3 are welded and fixed to both the front and rear sides of the lower sidewall of the furnace body 1, and the sliding blocks 3 are disposed on the track 2. It also includes:

[0033] Sliding rollers 4, there are several of them, and they are welded and fixed on the front and rear rails 2 in equal quantity and at equal intervals. The sliding rollers 4 are embedded and slidably arranged in the grooves on the bottom wall of the sliding block 3.

[0034] The drive rollers 5 are multiple in number and are welded and fixed to the bottom wall of the sliding block 3 at equal intervals. The drive rollers 5 are slidably arranged in the groove on the middle side of the track 2. The shafts on the multiple drive rollers 5 in the same track 2 are connected in pairs through a synchronous wheel transmission assembly.

[0035] The connecting block 6 is welded and fixed between two sliding blocks 3. The connecting block 6 is equipped with a drive motor 7. Vertical slides 10 are provided in the front and rear side walls of the connecting block 6. After the lower side of the vertical slide 10 passes through the lower side wall of the connecting block 6, a horizontal slide 11 is welded and fixed thereon. The horizontal slides 11 are slidably arranged in the grooves on the front and rear side rails 2, which can facilitate the connection of the connecting block 6 to the rails 2 without affecting the up and down movement and sliding of the connecting block 6.

[0036] The drive rod 8 is screwed into the top wall of the connecting block 6 via bearings. The front and rear ends of the drive rod 8 are respectively screwed into the sliding blocks 3 on the front and rear sides via bearings. The drive rod 8 is connected to the shaft of the adjacent drive roller 5 via a synchronous wheel transmission assembly. The middle end of the drive rod 8 is connected to the output shaft of the drive motor 7 via a bevel gear pair.

[0037] The supporting mechanism 9 is disposed on the furnace body 1 and is located on the outside of the track 2. Example

[0038] See Figure 1 , Figure 4 As shown, based on Embodiment 1, the supporting mechanism 9 includes:

[0039] The support rods 9-1 are four in number, and their middle ends are symmetrically screwed to the outer wall of the sliding block 3 via shafts. The outer side of the track 2 is provided with a support plate 14. The two ends of the support plate 14 are embedded and screwed to the lower end of the support rod 9-1 via shafts, which can increase the area when supported, thereby improving stability. Insert rods 9-2 are movably inserted into the upper end of each support rod 9-1. Limiting blocks 13 are welded and fixed to the left and right side walls of the inner end of the insert rod 9-2. The limiting blocks 13 are slidably set in the grooves on the two inner walls of the support rod 9-1, which can prevent the insert rod 9-2 from moving out of the support rod 9-1.

[0040] Connecting strip 9-3, there are two connecting strips 9-3, and they are symmetrically arranged on both sides of the furnace body 1. The connecting strips 9-3 are respectively screwed to the upper ends of the insert rods 9-2 on both sides through shafts. The upper end of the insert rod 9-2 on one side is screwed to a moving block 9-4 through a shaft. The moving block 9-4 is slidably arranged in a groove on the outer side wall of the furnace body 1.

[0041] Two supporting screws 9-5 are embedded in and screwed to the front and rear side walls of the furnace body 1 via bearings. The two supporting screws 9-5 are connected by a synchronous pulley transmission assembly. One end of one of the supporting screws 9-5 is connected to a supporting motor 9-6, which is embedded and fixed inside the furnace body 1. A heat insulation pad 12 is embedded in the peripheral wall of the furnace body 1. The heat insulation pad 12 is located inside the supporting screws 9-5 and the supporting motor 9-6 to prevent the heat of the furnace body 1 from affecting the supporting motor 9-6 and the supporting screws 9-5.

[0042] When using this invention, the furnace body 1 slides on the track 2 via the sliding block 3. When movement is required, the drive motor 7 is activated, which drives the drive rod 8 to rotate. The two ends of the drive rod 8 drive the corresponding drive rollers 5 through the synchronous wheel transmission assembly. The drive rollers 5 rotate synchronously through the synchronous wheel transmission assembly, thereby allowing the furnace body 1 to move. When the furnace body 1 moves to the appropriate position, the support motor 9-6 is activated, which drives the connected support screw 9. -5 rotates, and the supporting screw 9-5 drives the other supporting screw 9-5 to rotate through the synchronous wheel assembly. The two supporting screws 9-5 simultaneously drive the insertion rod 9-2 on one side to move through the moving block 9-4. The insertion rod 9-2 drives the other insertion rod 9-2 to move synchronously through the connecting bar 9-3. During the movement, the insertion rod 9-2 drives the supporting rod 9-1 to rotate around the shaft screwed to the sliding block 3, so that the lower end of the supporting rod 9-1 abuts against both sides of the track 2, which can lift the furnace body 1 upwards, making it easier to add materials.

[0043] Compared with the prior art, the beneficial effects of this specific embodiment are as follows:

[0044] 1. Through the linkage design of drive motor 7, synchronous wheel transmission assembly and drive roller 5, multiple drive rollers 5 can rotate synchronously, ensuring that the furnace body 1 moves smoothly along the track 2 and avoids deviation; in combination with the fitting structure of sliding roller 4 and groove, friction is reduced, moving efficiency is improved, and it is easy to quickly position to the working position.

[0045] 2. The supporting mechanism 9 adopts a screw and connecting rod linkage mechanism. The motor drives the supporting screw 9-5 to drive the supporting rod 9-1 to unfold, raising the furnace body 1 as a whole and separating it from the contact surface of the track 2, thus avoiding the track 2 from obstructing material handling.

[0046] 3. The connecting block 6 is dynamically connected to the track 2 through the vertical slide 10 and the horizontal slide 11, allowing it to slide up and down and horizontally, maintaining the rigid linkage of the drive components while adapting to the positional changes when the furnace body moves and is supported.

[0047] 4. The synchronous pulley transmission assembly enables the synchronous movement of multiple drive rollers 5 and support screws 9-5, reducing motor load and energy consumption; the drive and support functions are integrated into a single motor control, simplifying the operation process, improving system coordination, and is suitable for industrial scenarios that require frequent movement and positioning.

[0048] For those skilled in the art, modifications can be made to the technical solutions described in the foregoing embodiments, and equivalent substitutions can be made to some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A furnace body moving device, comprising a furnace body (1), a track (2) and a sliding block (3), the furnace body (1) is fixed with the sliding block (3) on the front and back sides of the lower side wall, and the sliding block (3) is arranged on the track (2); characterized in that: It also contains: Sliding roller (4), the sliding roller (4) is several, and its equal and equidistant fixed on the track (2) on both sides, sliding roller (4) embedded and slidingly arranged in the groove on the inner bottom wall of the sliding block (3); Driving roller (5), the driving roller (5) is several, and its equal and equidistant fixed on the bottom wall of the sliding block (3), driving roller (5) slidingly arranged in the groove in the middle of the track (2), the shaft of several driving roller (5) in the same track (2) is connected by synchronous wheel transmission assembly two by two; Connecting block (6), the connecting block (6) is fixedly arranged between the two sliding blocks (3), the inside of the connecting block (6) is provided with a driving motor (7); Driving rod (8), the driving rod (8) is rotatably connected in the top wall of the connecting block (6) through the bearing, the front and rear ends of the driving rod (8) are rotatably connected in the front and rear sliding blocks (3) through the bearing, and the driving rod (8) is connected with the shaft of the adjacent driving roller (5) through the synchronous wheel transmission assembly, the middle end of the driving rod (8) is connected with the output shaft of the driving motor (7) through the bevel gear pair; Supporting mechanism (9), the supporting mechanism (9) is arranged on the stove body (1), and the supporting mechanism (9) is located outside the track (2).

2. A furnace moving device according to claim 1, characterized in that The front and rear walls of the connecting block (6) are provided with vertical slides (10), the lower side of the vertical slide (10) passes through the lower side wall of the connecting block (6), and the horizontal slide (11) is fixed. The horizontal slide (11) is slidingly arranged in the sliding groove on the track (2) on both sides.

3. A furnace moving device according to claim 1, characterized in that: The supporting mechanism (9) comprises: Supporting rod (9-1), the supporting rod (9-1) is four, and the middle end is rotatably connected on the outer side wall of the sliding block (3) through the shaft, the upper end of the supporting rod (9-1) is movably inserted with the inserting rod (9-2); Connecting strip (9-3), the connecting strip (9-3) is two, and its front and rear sides are symmetrically arranged on both sides of the stove body (1), the connecting strip (9-3) is rotatably connected with the upper end of the inserting rod (9-2) on both sides through the shaft, and the upper end of the inserting rod (9-2) on one side is rotatably connected with the moving block (9-4) through the shaft. The moving block (9-4) is slidingly arranged in the sliding groove on the outer side wall of the stove body (1); Supporting lead screw (9-5), the supporting lead screw (9-5) is two, and it is embedded and rotatably connected in the front and rear walls of the stove body (1) through the bearing, the two supporting lead screws (9-5) are connected through the synchronous wheel transmission assembly, one end of one of the supporting lead screws (9-5) is connected with the supporting motor (9-6), and the supporting motor (9-6) is embedded and fixed in the stove body (1).

4. A furnace moving device according to claim 3, characterized in that: The peripheral wall of the stove body (1) is embedded with the heat insulation pad (12), and the heat insulation pad (12) is located inside the supporting lead screw (9-5) and the supporting motor (9-6).

5. A furnace moving device according to claim 3, characterized in that: The left and right side walls of the one end inside the supporting rod (9-1) are fixed with the limiting block (13), and the limiting block (13) is slidingly arranged in the sliding groove on the two inner walls of the supporting rod (9-1).

6. A furnace moving device according to claim 3, characterized in that: The outer side of the track (2) is provided with a supporting plate (14), both ends of the supporting plate (14) are embedded in the lower end of the supporting rod (9-1) and are rotatably connected to the supporting rod (9-1) through a shaft rod.