Crude dehydrating tower with auxiliary fixing function

By setting up a support mechanism on the outer periphery of the main body of the dewatering tower, including a support ring, sleeve, screw, support plate and moving wheel, the cumbersome and complex problems of the dewatering tower installation process are solved, and the stable installation and rapid docking of the dewatering tower are achieved.

CN222955931UActive Publication Date: 2025-06-10TIANJIN JINTAI SHENGSHI PETROCHEMICAL EQUIP CO LTD
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Patent Information

Application Number
CN202421569299.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-04
Publication Date
2025-06-10
Estimated Expiration
2034-07-04

AI Technical Summary

Technical Problem

When installing and fixing, the existing dewatering towers are high in height and large in size, resulting in cumbersome and complicated installation process. The tower body is easy to shake during lifting operations, and it is difficult to connect the bottom with the foundation base, which takes a long time.

Method used

A rough dehydration tower with auxiliary fixation is designed. By setting up a support mechanism on the outer periphery of the dehydration tower main body, including a support ring, a sleeve, a screw, a support plate and a moving wheel, auxiliary support and movement of the dehydration tower are achieved, and the installation process is simplified.

Benefits of technology

Through the auxiliary support and movement of the support mechanism, avoid shaking of the bottom of the dehydration tower, simplify the installation process, improve installation convenience and stability, and shorten installation time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a coarse dehydration tower with auxiliary fixation, which comprises a dehydration tower main body and a support mechanism, the periphery of the dehydration tower is detachably connected with the support mechanism, and the support mechanism comprises a support ring, a sleeve, a screw rod, a support plate and moving wheels, a supporting ring is detachably connected to the periphery of the dehydrating tower body, sleeves are fixedly connected to the two sides of the surface of the supporting ring, after the tower body is lifted, a screw A is screwed along the sleeves, the height of a supporting plate is reduced, and after the bottom of the dehydrating tower body is slightly away from the ground, moving wheels located at the bottom of the supporting plate just make contact with the ground; at the moment, in the process of controlling the crane to transport the dehydrating tower main body to move, the moving wheels move in a matched mode, the dehydrating tower main body is supported in an auxiliary mode from the bottom, the bottom of the dehydrating tower main body is prevented from shaking in the hoisting process, the bottom position is kept fixed, adjustment is convenient, the dehydrating tower main body is in butt joint with the base quickly, and installation convenience and installation process stability are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of dehydration tower installation, in particular to a thick dehydration tower with auxiliary fixation. Background Technique

[0002] A dehydration tower is a device used to separate water from liquid substances, also known as a dehydrator. Its principle is based on the principles of thermodynamics. Through the processes of evaporation and condensation, moist air is separated from dry air, thereby achieving the effect of dehydration. Since its shape is generally a tower-like structure, it is usually commonly referred to as a dehydration tower.

[0003] The existing dehydration towers have the following drawbacks during installation and fixation: Due to the characteristics of high height and large volume of the dehydration tower, generally multiple cranes are required to cooperate in hoisting the tower body during the installation process. During the actual hoisting operation, since the tower body is prone to swaying after being lifted, it is very difficult to dock between its bottom and the foundation base. The installation process is cumbersome and complex, and the installation takes a long time. For this reason, we propose a thick dehydration tower with auxiliary fixation. Content of the Utility Model

[0004] The main purpose of the utility model is to provide a thick dehydration tower with auxiliary fixation. By means of a support mechanism arranged on the outer periphery of the dehydration tower main body, it can play an auxiliary supporting role for the dehydration tower during the installation process, and at the same time facilitate moving the bottom docking position for convenient docking operation, which can effectively solve the problems in the background technique.

[0005] To achieve the above purpose, the technical solution adopted by the utility model is as follows:

[0006] A thick dehydration tower with auxiliary fixation includes a dehydration tower main body and further includes a support mechanism. The support mechanism is detachably connected to the outer periphery of the dehydration tower. The support mechanism includes a support ring, a sleeve, a screw, a support plate and a moving wheel. The support ring is detachably connected to the outer periphery of the dehydration tower main body, and both sides of the surface of the support ring are fixedly connected with sleeves. The bottoms of the sleeves are both screwed with screws, and the bottoms of the screws are welded with support plates. Moving wheels are installed at the bottoms of the support plates.

[0007] Furthermore, it further includes a docking mechanism. The docking mechanism is arranged at the connection part between the support rings. The docking mechanism includes a screw hole and a bolt. Corresponding positions at the internal connection part of the support rings are respectively provided with screw holes, and bolts are screwed between the screw holes; the support rings are semi-circular ring structures. During installation, they are aligned and clamped under the fixed ring. After docking, the screw holes at their connection ends are aligned, and bolts are screwed in at the connection part to achieve the docking and fixation between the support rings, completing the installation of the support mechanism. After the dehydration tower main body is installed, the bolts are removed to take out the support rings from the outside of the dehydration tower main body.

[0008] Furthermore, both sides of the surface of the supporting ring are fixedly connected with fixing plates, and the sleeve penetrates through the interior of the fixing plates; the fixing plates play a connecting role and facilitate fixing the position of the sleeve.

[0009] Furthermore, a screw sleeve is welded at the middle position of the bottom of the supporting plate, and a screw rod B is screwed to the bottom of the screw sleeve. A backing plate is welded to the bottom of the screw rod B; when the bottom position of the dehydration tower main body is docked with the foundation base, the screw rod B can be screwed down until the backing plate contacts the ground. At this time, through the friction between the backing plate and the ground, a limiting effect can be achieved, so that the moving wheels will not shift, facilitating the installation of the fasteners.

[0010] Furthermore, a fixing ring is welded to the outer circumference of the dehydration tower main body, and the supporting ring fits to the bottom of the fixing ring; the fixing ring structure welded to the outer circumference of the dehydration tower main body plays a limiting role and restricts the position of the supporting ring after installation.

[0011] Compared with the prior art, the present utility model has the following beneficial effects: A supporting ring can be installed between the outer circumferences of the dehydration tower main body. Before hoisting the dehydration tower main body, install and fix the supporting ring on its outer circumference and then hoist it. After hoisting, turn the screw rod A along the sleeve to lower the height of the supporting plate, so that the moving wheels at the bottom of the dehydration tower main body just contact the ground after the bottom of the dehydration tower main body is slightly lifted off the ground. At this time, when controlling the crane to lift and move the dehydration tower main body, the moving wheels cooperate to move, playing an auxiliary supporting role for the bottom of the dehydration tower main body, avoiding the shaking of the bottom of the dehydration tower main body during the hoisting process, keeping its bottom position fixed, facilitating adjustment and quickly docking with the base, and improving the installation convenience and the stability during the installation process; the supporting ring is a semi-circular ring structure. When installing, align it and snap it into the bottom of the fixing ring. After docking, the screw holes at the connection ends are aligned, and bolts can be screwed into the connection to realize the docking and fixing of the supporting rings, completing the installation of the supporting mechanism. After the dehydration tower main body is installed, the bolts can be removed to take out the supporting ring from the outside of the dehydration tower main body. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 FIG. 1 is a schematic diagram of the overall structure of a thick dehydration tower with auxiliary fixation according to the present utility model.

[0013] Figure 2 FIG. 2 is a schematic diagram of the bottom structure of the sleeve of a thick dehydration tower with auxiliary fixation according to the present utility model.

[0014] Figure 3 FIG. 3 is a schematic diagram of the docking structure of the supporting ring of a thick dehydration tower with auxiliary fixation according to the present utility model.

[0015] In the figure: 1. Main body of the dehydration tower; 2. Support mechanism; 201. Support ring; 202. Fixed plate; 203. Sleeve; 204. Screw A; 205. Support plate; 206. Movable wheel; 207. Screw sleeve; 208. Screw B; 209. Base plate; 3. Docking mechanism; 301. Screw hole; 302. Bolt; 303. Fixed ring. Detailed implementation manners

[0016] In order to make the technical means, creative features, achieved purposes and functions of the present utility model easy to understand, the present utility model will be further described below in conjunction with the specific implementation manners.

[0017] As Figures 1-3 shown, a rough dehydration tower with auxiliary fixation includes a main body 1 of the dehydration tower and further includes a support mechanism 2. The support mechanism 2 is detachably connected to the outer periphery of the dehydration tower. The support mechanism 2 includes a support ring 201, a sleeve 203, a screw, a support plate 205 and a movable wheel 206. The support ring 201 is detachably connected to the outer periphery of the main body 1 of the dehydration tower, and both sides of the surface of the support ring 201 are fixedly connected with sleeves 203. Screws are screwed at the bottoms of the sleeves 203, and the bottoms of the screws are welded with support plates 205. Movable wheels 206 are installed at the bottoms of the support plates 205.

[0018] Among them, it further includes a docking mechanism 3. A docking mechanism 3 is provided at the connection between the support rings 201. The docking mechanism 3 includes a screw hole 301 and a bolt 302. Screw holes 301 are respectively opened at corresponding positions at the internal connection of the support rings 201, and bolts 302 are screwed between the screw holes 301; the support ring 201 is a semi-circular ring structure. During installation, it is aligned and snapped into the bottom of the fixed ring 303. After docking, the screw holes 301 at the connection ends are aligned, and bolts 302 are screwed into the connection to realize the docking and fixation between the support rings 201, completing the installation of the support mechanism 2. After the main body 1 of the dehydration tower is installed, the bolts 302 can be removed to take out the support rings 201 from the outside of the main body 1 of the dehydration tower.

[0019] Among them, both sides of the surface of the support ring 201 are fixedly connected with fixed plates 202, and the sleeves 203 penetrate through the interiors of the fixed plates 202. A screw sleeve 207 is welded at the middle position of the bottom of the support plate 205, and a screw B 208 is screwed at the bottom of the screw sleeve 207; the bottom of the screw B 208 is welded with a base plate 209; the fixed plates 202 play a connecting role and facilitate fixing the positions of the sleeves 203. When the bottom position of the main body 1 of the dehydration tower is docked with the foundation base, the screw B 208 can be screwed down until the base plate 209 contacts the ground. At this time, through the friction between the base plate 209 and the ground, a limiting effect can be achieved, so that the movable wheels 206 will not shift, facilitating the installation of fasteners.

[0020] Among them, a fixing ring 303 is welded to the outer periphery of the dehydration tower main body 1, and the supporting ring 201 is attached to the bottom of the fixing ring 303; the fixing ring 303 structure welded to the outer periphery of the dehydration tower main body 1 plays a limiting role and restricts the position of the supporting ring 201 after installation.

[0021] It should be noted that the present utility model is a rough dehydration tower with auxiliary fixation. During installation, a supporting ring 201 can be installed between the outer peripheries of the dehydration tower main body 1. Before hoisting the dehydration tower main body 1, install the supporting ring 201 on its outer periphery and fix it, and then hoist it. After hoisting, turn the screw A204 along the sleeve 203 to lower the height of the support plate 205, so that the moving wheels 206 at the bottom of the support plate 205 just touch the ground when the bottom of the dehydration tower main body 1 is slightly off the ground. At this time, when controlling the crane to hoist and move the dehydration tower main body 1, the moving wheels 206 cooperate to move, playing an auxiliary supporting role for the dehydration tower main body 1 from the bottom, avoiding the shaking of the bottom of the dehydration tower main body 1 during the hoisting process, keeping its bottom position fixed, facilitating adjustment and quickly docking with the base, and improving the installation convenience and the stability during the installation process; the supporting ring 201 is a semi-circular ring structure. During installation, align it and snap it into the bottom of the fixing ring 303. After docking, the screw holes 301 at the connection ends are aligned, and bolts 302 are screwed into the connection to achieve the docking and fixation between the supporting rings 201, completing the installation of the support mechanism 2. After the dehydration tower main body 1 is installed, the bolts 302 can be removed to take out the supporting ring 201 from the outside of the dehydration tower main body 1.

[0022] The above shows and describes the basic principles, main features and advantages of the present utility model. Those skilled in the art of this industry should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. A rough dehydration tower with auxiliary fixing, comprising a dehydration tower body (1), characterized in that: The dehydration tower also comprises a support mechanism (2), wherein the support mechanism (2) is detachably connected to the outer periphery of the dehydration tower, and the support mechanism (2) comprises a support ring (201), a sleeve (203), a screw, a support plate (205) and a moving wheel (206); the support ring (201) is detachably connected to the outer periphery of the dehydration tower body (1), and the sleeve (203) is fixedly connected to both sides of the surface of the support ring (201); the bottom of the sleeve (203) is screwed to the screw, and the bottom of the screw is welded to the support plate (205), and the bottom of the support plate (205) is installed with a moving wheel (206).

2. A rough dehydration tower with auxiliary fixing according to claim 1, characterized in that: It also comprises a docking mechanism (3), wherein the connection between the support rings (201) is provided with the docking mechanism (3), the docking mechanism (3) comprises a screw hole (301) and a bolt (302), the screw holes (301) are provided at corresponding positions of the connection inside the support rings (201), and the bolts (302) are screwed and connected between the screw holes (301).

3. A rough dehydration tower with auxiliary fixing according to claim 1, characterized in that: Both sides of the surface of the support ring (201) are fixedly connected to a fixing plate (202), and the sleeve (203) passes through the interior of the fixing plate (202).

4. A rough dehydration tower with auxiliary fixing according to claim 1, characterized in that: A screw sleeve (207) is welded at the middle position of the bottom of the support plate (205), and a screw rod B (208) is screwed and connected to the bottom of the screw sleeve (207), and a pad (209) is welded at the bottom of the screw rod B (208).

5. A rough dehydration tower with auxiliary fixing according to claim 1, characterized in that: A fixing ring (303) is welded on the outer periphery of the dehydration tower body (1), and the supporting ring (201) is attached to the bottom of the fixing ring (303).