Reactor clamping structure with axial telescopic degree of freedom
By combining components such as a limiting base, an electric telescopic rod, and an arc-shaped limiting ring, the problem of inaccurate movement and positioning caused by thermal expansion and contraction in existing reactor clamping structures is solved. This enables precise clamping and positioning accuracy adjustment for reactors of different diameters, protecting the reactors from damage.
Patent Information
- Application Number
- CN202520020756.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-06
AI Technical Summary
Existing reactor clamping structures cannot adapt to the movement of the reactor caused by thermal expansion and contraction, affecting positioning accuracy and potentially damaging the reactor, and cannot precisely adjust the clamping position.
The system employs a limiting base, an electric telescopic rod, an arc-shaped limiting ring, a pressure sensor, elastic pads, and a telescopic cylinder. The electric telescopic rod drives the arc-shaped limiting ring to clamp the reactor. Combined with the elastic pads and spring buffers, it achieves precise clamping and adjustment of force. The telescopic cylinder's extension and retraction enables the reactor to extend and retract axially.
It achieves precise clamping of reactors of different diameters, preventing damage, adapting to changes in thermal expansion and contraction, ensuring positioning accuracy between the reactor and high-temperature reactors, and providing stable support and protection for the reactor.
Smart Images

Figure CN223717106U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to reactor technical field, concretely relates to a reactor clamping structure with axial telescopic freedom. BACKGROUND
[0002] The reactor is a kind of equipment for realizing chemical reaction or biological reaction, is widely used in chemical industry, oil refining, metallurgy etc., its basic function is to provide a suitable environment and condition for chemical reaction or biological reaction, ensure that reaction can proceed smoothly.
[0003] The existing reactor clamping structure when clamping the reactor of different diameters, the reactor can move relatively due to thermal expansion and contraction, the existing clamping structure cannot adapt to the change of reactor, and then the reactor can be damaged by thermal expansion and contraction force, and the relative position between the reactor clamped on the clamping structure and high-temperature reaction furnace cannot be accurately adjusted, so that the relative positioning accuracy between the two cannot be adjusted and guaranteed, thus a reactor clamping structure with axial telescopic freedom is needed to solve the above problems. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a reactor clamping structure with axial telescopic freedom to solve the problems in the above background.
[0005] To achieve the above object, the utility model provides the following technical scheme: a reactor clamping structure with axial telescopic freedom, including high-temperature reaction furnace, the top of high-temperature reaction furnace is provided with clamping assembly, the clamping assembly includes limit base, the bottom of limit base is fixedly connected with two telescopic cylinders, the top of high-temperature reaction furnace is fixedly connected with a plurality of buffer support discs, the top of limit base is fixedly connected with two electric telescopic rods, the telescopic end of two electric telescopic rods is fixedly connected with arc clamping plate respectively, the surface of two arc clamping plates is fixedly connected with two connecting sliding rods respectively, the inside of connecting sliding rod is slidably connected with guide rod, the bottom of guide rod is fixedly connected with connecting fixed rod, the top and bottom of one arc clamping plate are fixedly connected with first arc limit insert ring respectively, the top and bottom of another arc clamping plate are fixedly connected with second arc limit insert ring respectively, the inside of two arc clamping plates is fixedly connected with two pressure sensors respectively, the arc surface of arc clamping plate is fixedly connected with three springs, one end of three springs is fixedly connected with elastic gasket, the top of limit base is fixedly connected with protective ring.
[0006] Through setting the above structure, when the reactor needs to be clamped, the reactor is placed on the limiting base, and the two electric telescopic rods are started to drive the first arc-shaped limiting ring and the second arc-shaped limiting ring to clamp, limit and fix the reactors with different diameters, so that the clamping function of the clamping assembly is more comprehensive, the application range is wider, meanwhile, the pressure sensors on the first arc-shaped limiting ring and the second arc-shaped limiting ring can accurately control the telescoping of the electric telescopic rods according to the actual working conditions and axial stress of the reactor, and then the accurate force clamping of the reactor can be realized, so that the clamping assembly can always provide a suitable clamping force, and the reactor will not be damaged due to excessive clamping, the deformation of the elastic gasket under stress and the compression of the spring can adapt to the surface change or slight shaking of the reactor, and then the change of the acting force can be effectively buffered and adapted, so that the reactor can be effectively protected, and the telescoping of the telescopic cylinder can drive the clamping assembly and the reactor to be lifted and adjusted, so that they can be adjusted to the optimal relative position therebetween, and then the reactors with different diameters can realize the positioning precision position adjustment function with the high-temperature reaction furnace, so that the positioning precision between the reactor and the high-temperature reaction furnace is guaranteed.
[0007] As a preferred scheme, the bottom of the high-temperature reaction furnace is provided with three supporting legs.
[0008] As a preferred scheme, the bottom of the two telescopic cylinders is fixedly connected with the top of the high-temperature reaction furnace.
[0009] As a preferred scheme, the top of the plurality of buffer supporting discs is in contact with the bottom of the limiting base.
[0010] As a preferred scheme, the bottom of the connecting fixed rod is fixedly connected with the top of the limiting base.
[0011] As a preferred scheme, the first arc-shaped limiting ring and the second arc-shaped limiting ring are connected by insertion.
[0012] By setting the buffer supporting disc and the protective ring, the buffer supporting disc can provide support for the clamping assembly and the reactor clamped and fixed on the clamping assembly and can provide stable support force for them, so that the clamping assembly and the reactor can be more stable, and the protective ring can protect the electric telescopic rod, the connecting slide rod and the guide rod, so that the components of the clamping assembly can be as little as possible disturbed by the outside, and the clamping function of the clamping assembly is guaranteed.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] The utility model discloses, through setting up the limit base, electric telescopic rod, first arc limit insert ring, second arc limit insert ring, pressure sensor, elastic gasket, spring and telescopic cylinder, when needing to hold the reactor, place the reactor on the limit base, and the start two electric telescopic rod can drive first arc limit insert ring and second arc limit insert ring to hold, limit and fix the reactor of different diameters, make the holding function of clamping assembly more comprehensive, and the scope of application is wider, and the pressure sensor on first arc limit insert ring and second arc limit insert ring can accurately control the telescopic of electric telescopic rod according to the actual working condition and axial stress condition of reactor, and then can realize the accurate force holding of reactor, thereby can guarantee that clamping assembly can always provide a suitable holding force, and the situation that the reactor is damaged due to excessive holding of the reactor does not occur, and the deformation of elastic gasket under stress and the compression of spring can adapt to the surface change or slight swing of reactor, and then can effectively buffer and adapt the change of this force, thereby can effectively protect the reactor, and the telescopic of telescopic cylinder can drive the lifting adjustment of clamping assembly and reactor, make them can be adjusted to the optimum relative position between them, and then can make the reactor of different diameters can realize the function of positional accuracy adjustment between high temperature reaction furnace, thereby can provide the positional accuracy between reactor and high temperature reaction furnace;
[0015] The utility model discloses, through setting up the buffer support disc and the protection ring, the buffer support disc can provide support to clamping assembly and the reactor of clamping assembly and can provide stable support force for them, and then can make clamping assembly and reactor can be more stable, and the protection ring can protect electric telescopic rod, connecting slide and guide rod, make the component part of clamping assembly can as far as possible not be disturbed by outside, and then can guarantee the holding function of clamping assembly. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the structure schematic diagram of the utility model's front view solid figure;
[0017] Figure 2 It is the structure schematic diagram of the utility model's clamping assembly;
[0018] Figure 3 It is the structure schematic diagram of the utility model Figure 2 A place of the utility model's enlarged structure schematic diagram.
[0019] In the figure: 1, high temperature reaction furnace; 2, support leg; 3, clamping assembly; 301, limit base; 302, telescopic cylinder; 303, buffer support disc; 304, electric telescopic rod; 305, arc clamping plate; 306, connecting slide rod; 307, guide rod; 308, connecting fixed rod; 309, first arc limit insert ring; 310, second arc limit insert ring; 311, pressure sensor; 312, spring; 313, elastic gasket; 314, protective ring. DETAILED DESCRIPTION
[0020] The utility model will be further described below in combination with examples.
[0021] The following examples are used to illustrate the utility model, but cannot be used to limit the protection scope of the utility model. The conditions in the examples can be further adjusted according to specific conditions, and simple improvements of the method of the utility model under the concept premise of the utility model all belong to the range required to be protected by the utility model.
[0022] Please refer to Figures 1-3The utility model provides a reactor clamping structure with axial telescopic freedom degree, including high temperature reaction furnace 1, the top of high temperature reaction furnace 1 is provided with clamping assembly 3, clamping assembly 3 includes limit base 301, the bottom fixed connection of limit base 301 has two telescopic cylinders 302, the top fixed connection of high temperature reaction furnace 1 has a plurality of buffer support disc 303, the top fixed connection of limit base 301 has two electric telescopic rod 304, the telescopic end of two electric telescopic rod 304 is fixedly connected with arc clamping plate 305 respectively, the surface of two arc clamping plates 305 is fixedly connected with two connecting slide bars 306 respectively, the inside slide connection of connecting slide bar 306 has guide rod 307, the bottom fixed connection of guide rod 307 has connecting fixed rod 308, the top and bottom of one arc clamping plate 305 are fixedly connected with first arc limit insert ring 309 respectively, the top and bottom of another arc clamping plate 305 are fixedly connected with second arc limit insert ring 310 respectively, the inside of two arc clamping plates 305 is fixedly connected with two pressure sensors 311 respectively, the arc surface of arc clamping plate 305 is fixedly connected with three springs 312, one end of three springs 312 is fixedly connected with elastic gasket 313, the top fixed connection of limit base 301 has protective ring 314, by setting limit base 301, electric telescopic rod 304, first arc limit insert ring 309, second arc limit insert ring 310, pressure sensor 311, elastic gasket 313, spring 312 and telescopic cylinder 302, when needing to clamp reactor, places reactor on limit base 301, starts two electric telescopic rod 304 to be able to drive first arc limit insert ring 309 and second arc limit insert ring 310 to clamp, limit and fix the reactor of different diameters, make the clamping function of clamping assembly 3 more comprehensive, and the scope of application is wider, and the pressure sensor 311 on first arc limit insert ring 309 and second arc limit insert ring 310 can accurately control the telescopic of electric telescopic rod 304 according to the actual working condition and axial stress condition of reactor, and then can realize the accurate force clamping of reactor, thereby can guarantee that clamping assembly 3 can always provide a suitable clamping force, and the situation that the reactor is damaged due to excessive clamping of reactor does not occur, the deformation of elastic gasket 313 under stress and the compression of spring 312 can adapt to the surface change or slight swing of reactor, and then can effectively buffer and adapt to the change of this force, thereby can effectively protect the reactor, the telescopic of telescopic cylinder 302 can drive clamping assembly 3 and reactor to lift and adjust, make them can be adjusted to the optimum relative position between them, and then can make the reactor of different diameters can realize the function of positional accuracy adjustment between them and high temperature reaction furnace 1, thereby can guarantee the positional accuracy between reactor and high temperature reaction furnace 1.
[0023] The bottom of high temperature reaction furnace 1 is provided with three support legs 2.
[0024] The bottom of the two telescopic cylinders 302 is fixedly connected with the top of the high-temperature reaction furnace 1.
[0025] The top of the plurality of buffer support discs 303 is in contact with the bottom of the limiting base 301.
[0026] The bottom of the connecting fixed rod 308 is fixedly connected with the top of the limiting base 301.
[0027] The first arc-shaped limiting insertion ring 309 and the second arc-shaped limiting insertion ring 310 are insertedly connected, through the arrangement of the buffer support disc 303 and the protective ring 314, the buffer support disc 303 can provide support for the clamping assembly 3 and the reactor clamped and fixed on the clamping assembly 3 and can provide stable support force for them, thereby enabling the clamping assembly 3 and the reactor to be more stable, and the protective ring 314 can protect the electric telescopic rod 304, the connecting sliding rod 306 and the guide rod 307, so that the constituent parts of the clamping assembly 3 can be as little as possible to be disturbed by the outside world, thereby being able to provide protection for the clamping function of the clamping assembly 3.
[0028] The working principle and use process of the utility model: when needing to clamp the reactor, place the reactor on the limiting base 301, start two electric telescopic rods 304 to drive two arc-shaped clamping plates 305, three springs 312 fixedly connected with the arc-shaped clamping plates 305, elastic washers 313 fixedly connected with the three springs 312, first arc-shaped limiting insertion rings 309 and second arc-shaped limiting insertion rings 310 fixedly connected with the arc-shaped clamping plates 305 move and approach each other, in the process of approaching, the first arc-shaped limiting insertion rings 309 and the second arc-shaped limiting insertion rings 310 can be mutually inserted and connected to form a clamping area, the formed clamping area can clamp, limit and fix the reactors with different diameters, the pressure sensors 311 on the first arc-shaped limiting insertion rings 309 and the second arc-shaped limiting insertion rings 310 can accurately control the telescoping of the electric telescopic rods 304 according to the actual working condition and axial stress condition of the reactor, thereby the accurate force clamping of the reactor can be realized, the elastic washers 313 will also be attached to the surface of the reactor, when thermal expansion and cold shrinkage occur in the reactor to cause the surface of the reactor to change or produce slight shaking, the reactor will transmit the force to the elastic washers 313 and the springs 312, the deformation of the elastic washers 313 and the compression of the springs 312 can adapt to the surface change or slight shaking of the reactor, thereby the change caused by the force can be effectively buffered and adapted, when needing to ensure the positioning accuracy between the reactor and the high-temperature reaction furnace 1, the telescoping of the telescopic cylinder 302 can drive the clamping assembly 3 and the reactor to lift and adjust, when the bottom of the limiting base 301 in the clamping assembly 3 contacts the top of the buffer support disc 303, at this time, it is the best stop position between the reactor and the high-temperature reaction furnace 1, thereby the reactors with different diameters can realize the function of position positioning accuracy adjustment between the high-temperature reaction furnace 1.
[0029] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A reactor clamping structure having an axial telescopic freedom comprising a high temperature reactor furnace (1), characterized in that: The top of the high-temperature reaction furnace (1) is provided with a clamping assembly (3), the clamping assembly (3) comprises a limiting base (301), the bottom of the limiting base (301) is fixedly connected with two telescopic cylinders (302), the top of the high-temperature reaction furnace (1) is fixedly connected with a plurality of buffer support discs (303), the top of the limiting base (301) is fixedly connected with two electric telescopic rods (304), the telescopic ends of the two electric telescopic rods (304) are fixedly connected with arc-shaped clamping plates (305) respectively, the surfaces of the two arc-shaped clamping plates (305) are fixedly connected with two connecting slide rods (306) respectively, the inside of the connecting slide rod (306) is slidably connected with a guide rod (307), the bottom of the guide rod (307) is fixedly connected with a connecting fixed rod (308), the top and the bottom of one arc-shaped clamping plate (305) are fixedly connected with a first arc-shaped limiting insert ring (309) respectively, the top and the bottom of the other arc-shaped clamping plate (305) are fixedly connected with a second arc-shaped limiting insert ring (310) respectively, the insides of the two arc-shaped clamping plates (305) are fixedly connected with two pressure sensors (311) respectively, the arc-shaped surface of the arc-shaped clamping plate (305) is fixedly connected with three springs (312), one end of the three springs (312) is fixedly connected with an elastic gasket (313), the top of the limiting base (301) is fixedly connected with a protective ring (314).
2. The reactor clamping structure having axial telescopic freedom according to claim 1, characterized in that: The bottom of the high-temperature reaction furnace (1) is provided with three supporting legs (2).
3. The reactor clamp structure having axial telescopic freedom according to claim 1, characterized in that: The bottoms of the two telescopic cylinders (302) are fixedly connected with the top of the high-temperature reaction furnace (1).
4. The reactor clamp structure having axial telescopic freedom according to claim 1, characterized in that: The top of the plurality of buffer support discs (303) is in contact with the bottom of the limiting base (301).
5. The reactor clamp structure having axial telescoping freedom according to claim 1, characterized by: The bottom of the connecting fixed rod (308) is fixedly connected with the top of the limiting base (301).
6. The reactor clamp structure having axial telescoping freedom according to claim 1, characterized by: The first arc-shaped limiting insert ring (309) and the second arc-shaped limiting insert ring (310) are insertedly connected.