Oil liquid dehydrating tower
The design of the limiting device and the supporting device solves the problem of inconvenient replacement of the packing in the oil dehydration tower, and realizes a convenient and stable packing replacement process.
Patent Information
- Application Number
- CN202423248729.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Replacing the packing in existing oil dehydration towers is troublesome, as different materials of packing are required, making the replacement process inconvenient.
A limiting device was designed, including a connecting cylinder, a filter plate, and a support device. The connecting cylinder slides between the filter screens to facilitate the replacement of the packing material, and the support device enhances the stability of the connecting cylinder.
It achieves convenience and stability in packing replacement, simplifies the replacement process, and improves the efficiency of equipment use.
Smart Images

Figure CN223732329U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to oil liquid dehydration tower technical field especially relates to a kind of oil liquid dehydration tower. BACKGROUND
[0002] Oil liquid dehydration tower is a kind of device for removing water in oil, when using oil liquid dehydration tower, fluid is passed to the inside of dehydration tower main body by connecting pipe, and then fluid passes through filter screen and the filler arranged in the inside of two filter screens, so that the contact area between fluid and air can be well increased, the air at the bottom of dehydration tower is heated by heating rod, the air after heating at the bottom is sucked to the top of dehydration tower main body by fan, and then the flowing direction of air flow and liquid is opposite, so that the water in fluid can be well removed, and then the water in fluid can be conveniently removed.
[0003] The inventor found that oil liquid dehydration tower still has at least the following problems in daily work: when using oil liquid dehydration tower, fluid is passed to the inside of dehydration tower main body by connecting pipe, and then fluid passes through filter screen and the filler arranged in the inside of two filter screens, so that the contact area between fluid and air can be well increased, the air at the bottom of dehydration tower is heated by heating rod, the air after heating at the bottom is sucked to the top of dehydration tower main body by fan, and then the flowing direction of air flow and liquid is opposite, so that the water in fluid can be well removed, and then the water in fluid can be conveniently removed, but in actual use, different fluids need fillers of different materials, because the filler is arranged in the middle of two filter screens, so it is more troublesome to replace the filler. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the shortcomings in the prior art, and provides an oil liquid dehydration tower.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: an oil liquid dehydration tower, comprising a dehydration tower main body, the inside of the dehydration tower main body is uniformly provided with a filter screen, a fan is installed on the top of the dehydration tower main body, a connecting pipe is arranged on one side of the top of the dehydration tower main body, heating rods are uniformly fixed and connected to the bottom of the inner wall of the dehydration tower main body, a limiting device is arranged on one side of the dehydration tower main body, a supporting device is arranged on the surface of the dehydration tower main body, the limiting device comprises a connecting barrel, a connecting groove is formed on one side of the dehydration tower main body, the inner wall of the connecting groove is slidably connected with the connecting barrel, and a filter plate is arranged on the top of the connecting barrel.
[0006] The effect achieved by the above components is that when the limiting device is used, the appropriate filler is placed in the connecting cylinder, then the filter plate is placed on the top of the connecting cylinder, and then the connecting cylinder is slid into the connecting groove, so that the connecting cylinder can be well slid between the two filter screens, thereby facilitating the replacement of the filler arranged between the two filter screens.
[0007] Preferably, uniform fixing grooves are arranged on the top of the connecting cylinder, the inner wall of the fixing groove is slidably connected with a fixing rod, and the end of the fixing rod away from the fixing groove is fixedly connected with the bottom of the filter plate.
[0008] The effect achieved by the above components is that the fixing rod is slid into the fixing groove, so that the filter plate can be well arranged on the top of the connecting cylinder.
[0009] Preferably, a sliding groove is arranged on one side of the connecting cylinder, the inner wall of the sliding groove is slidably connected with an arc block, and the end of the arc block away from the sliding groove is arranged on the top of the filter plate.
[0010] The effect achieved by the above components is that the arc block is manually controlled to slide into the sliding groove arranged on one side of the connecting cylinder, so that the end of the arc block away from the sliding groove can be well arranged on the top of the filter plate, thereby well limiting the filter plate on the top of the connecting cylinder.
[0011] Preferably, an arc groove is arranged at the bottom of the sliding groove, the inner wall of the arc groove is slidably connected with a fixing block, and the ends of the two fixing blocks away from the arc groove are fixedly connected with the bottom of the arc block.
[0012] The effect achieved by the above components is that because the two fixing blocks are arranged in the arc groove, the arc block can be well limited in the sliding groove.
[0013] Preferably, a cylinder is sleeved on the surface of the dehydration tower body, uniform circular grooves are arranged on the surface of the dehydration tower body, a rubber ring is arranged on the inner wall of the circular groove, and the side of the rubber ring away from the circular groove is fixedly connected with the inner wall of the cylinder.
[0014] The effect achieved by the above components is that after the connecting cylinder is slid into the connecting groove, the cylinder is manually sleeved on the surface of the dehydration tower body, and then the cylinder is well sleeved in the connecting cylinder, so that the rubber ring can be well extruded into the circular groove, thereby well limiting the connecting cylinder in the connecting groove.
[0015] Preferably, the supporting device comprises a supporting ring, a clamping rod is slidably arranged in the bottom of the supporting ring, clamping grooves are uniformly arranged in the bottom of the cylinder, the inner wall of the clamping groove is slidably connected with the clamping rod, the bottom of the clamping rod is fixedly connected with a moving ring, the moving ring is slidably arranged on the surface of the dehydration tower body, a first spring is arranged on the surface of the clamping rod, the bottom of the first spring is fixedly connected with the bottom of the supporting ring, and one end of the first spring close to the clamping rod is fixedly connected with the top of the moving ring.
[0016] The above-mentioned components achieve the effect that the moving ring is pulled close to the bottom of the supporting ring by the first spring, so that the clamping rod can be slid into the clamping groove after passing through the supporting ring, and the supporting capacity of the cylinder is enhanced to a certain extent.
[0017] Preferably, a receiving groove is arranged on one side of the supporting ring, a U-shaped plate is slidably arranged on the inner wall of the receiving groove, a damping rod is fixedly arranged on one side of the inner wall of the receiving groove, one end of the damping rod away from the receiving groove is fixedly connected with one side of the U-shaped plate, a second spring is arranged on the surface of the damping rod, one end of the second spring is fixedly connected with one side of the inner wall of the receiving groove, one end of the second spring close to the damping rod is fixedly connected with one side of the U-shaped plate, and the end of the U-shaped plate away from the receiving groove is arranged on the bottom of the moving ring.
[0018] The above-mentioned components achieve the effect that the U-shaped plate is pulled close to the inner wall of the receiving groove by the second spring, so that the end of the U-shaped plate away from the receiving groove can be arranged on the bottom of the moving ring, and the clamping rod can be limited in the clamping groove.
[0019] Preferably, a positioning groove is arranged on the bottom of the U-shaped plate, and a rubber block is arranged on the inner wall of the positioning groove and fixedly connected with the bottom of the moving ring.
[0020] The above-mentioned components achieve the effect that the rubber block is pressed into the positioning groove, so that the end of the U-shaped plate away from the receiving groove can be arranged on the bottom of the moving ring.
[0021] In the utility model, when the limiting device is used, the appropriate filler is placed in the connecting cylinder, then the filter plate is placed on the top of the connecting cylinder, and then the connecting cylinder is slid into the connecting groove, so that the connecting cylinder can be slid to the middle of the two filter screens, and the filler arranged in the middle of the two filter screens can be conveniently replaced. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 A three-dimensional structure schematic diagram of the oil liquid dehydration tower is provided in the utility model.
[0023] Figure 2 A three-dimensional structural diagram of the novel cylinder proposed in this utility model is provided.
[0024] Figure 3 A three-dimensional structural diagram of the novel arc block is provided for this utility model;
[0025] Figure 4 A three-dimensional structural diagram of the novel moving ring proposed in this utility model is provided.
[0026] Legend: 1. Dehydration tower body; 2. Filter screen; 3. Fan; 4. Connecting pipe; 5. Heating rod; 6. Limiting device; 601. Connecting groove; 602. Connecting cylinder; 603. Fixing groove; 604. Fixing rod; 605. Filter plate; 606. Sliding groove; 607. Arc groove; 608. Fixing block; 609. Arc block; 610. Cylinder; 611. Circular groove; 612. Rubber ring; 7. Support device; 701. Support ring; 702. Positioning rod; 703. Moving ring; 704. First spring; 705. Storage groove; 706. Damping rod; 707. Second spring; 708. U-shaped plate; 709. Positioning groove; 710. Rubber block; 711. Positioning groove. Detailed Implementation
[0027] Example 1, such as Figures 1-4 As shown, an oil dehydration tower has filter screens 2 evenly arranged inside the main body 1, a fan 3 installed on the top of the main body 1, a connecting pipe 4 on one side of the top of the main body 1, heating rods 5 evenly fixedly connected to the bottom of the inner wall of the main body 1, a limit device 6 on one side of the main body 1, and a support device 7 on the surface of the main body 1. When using the oil dehydration tower, fluid is introduced into the main body 1 through the connecting pipe 4, and then the fluid passes through the filter screens 2 and the packing material inside the two filter screens 2. This can effectively increase the contact area between the fluid and the air. The air at the bottom of the dehydration tower is heated by the heating rods 5, and the fan 3 draws the heated air from the bottom to the top of the main body 1, so that the air flow and liquid flow are opposite in direction, which can effectively remove the water from the fluid, thus facilitating the removal of water from the fluid.
[0028] Reference Figure 2 and Figure 3The limiting device 6 comprises a connecting cylinder 602, a connecting groove 601 is formed on one side of the dehydration tower body 1, the inner wall of the connecting groove 601 is in sliding connection with the connecting cylinder 602, the top of the connecting cylinder 602 is provided with a filter plate 605, when the limiting device 6 is used, appropriate filler is placed in the connecting cylinder 602, then the filter plate 605 is placed on the top of the connecting cylinder 602, and then the connecting cylinder 602 is slid into the connecting groove 601, so that the connecting cylinder 602 can be slid to the middle of the two filter screens 2, so that the filler arranged in the middle of the two filter screens 2 can be conveniently replaced, the top of the connecting cylinder 602 is uniformly provided with a fixing groove 603, the inner wall of the fixing groove 603 is in sliding connection with a fixing rod 604, one end of the fixing rod 604 away from the fixing groove 603 is fixedly connected with the bottom of the filter plate 605, the fixing rod 604 is slid into the fixing groove 603, so that the filter plate 605 can be arranged on the top of the connecting cylinder 602, one side of the connecting cylinder 602 is provided with a sliding groove 606, the inner wall of the sliding groove 606 is in sliding connection with an arc block 609, one end of the arc block 609 away from the sliding groove 606 is arranged on the top of the filter plate 605, the arc block 609 is manually controlled to slide into the sliding groove 606 formed on one side of the connecting cylinder 602, so that one end of the arc block 609 away from the sliding groove 606 can be arranged on the top of the filter plate 605, so that the filter plate 605 can be limited on the top of the connecting cylinder 602, the bottom of the sliding groove 606 is provided with an arc groove 607, the inner wall of the arc groove 607 is in sliding connection with a fixing block 608, one end of the two fixing blocks 608 away from the arc groove 607 is fixedly connected with the bottom of the arc block 609, because the two fixing blocks 608 are arranged in the arc groove 607, so that the arc block 609 can be limited in the sliding groove 606, the surface of the dehydration tower body 1 is sleeved with a cylinder 610, the surface of the dehydration tower body 1 is uniformly provided with a circular groove 611, the inner wall of the circular groove 611 is provided with a rubber ring 612, one side of the rubber ring 612 away from the circular groove 611 is fixedly connected with the inner wall of the cylinder 610, after the connecting cylinder 602 is slid into the connecting groove 601, the cylinder 610 is manually sleeved on the surface of the dehydration tower body 1, and then the cylinder 610 is well sleeved in the connecting cylinder 602, so that the rubber ring 612 can be well extruded into the circular groove 611, and then the connecting cylinder 602 can be well limited in the connecting groove 601.
[0029] Referring to Figure 4The supporting device 7 comprises a supporting ring 701, a clamping rod 702 is slidably arranged at the bottom of the supporting ring 701, clamping grooves 711 are uniformly arranged at the bottom of the cylinder 610, the inner wall of the clamping groove 711 is slidably connected with the clamping rod 702, the bottom of the clamping rod 702 is fixedly connected with a moving ring 703, the moving ring 703 is slidably arranged on the surface of the dehydration tower body 1, the surface of the clamping rod 702 is sleeved with a first spring 704, the bottom of the first spring 704 is fixedly connected with the bottom of the supporting ring 701, one end of the first spring 704 close to the clamping rod 702 is fixedly connected with the top of the moving ring 703, the inside of the supporting device 7 is used to pull the moving ring 703 close to the bottom of the supporting ring 701 through the first spring 704, so that the clamping rod 702 can be slid into the clamping groove 711 after passing through the supporting ring 701, and the supporting capacity of the cylinder 610 can be enhanced to a certain extent, a receiving groove 705 is arranged on one side of the supporting ring 701, a U-shaped plate 708 is slidably arranged on the inner wall of the receiving groove 705, a damping rod 706 is fixedly connected with one side of the inner wall of the receiving groove 705, one end of the damping rod 706 away from the receiving groove 705 is fixedly connected with one side of the U-shaped plate 708, a second spring 707 is sleeved on the surface of the damping rod 706, one end of the second spring 707 is fixedly connected with one side of the inner wall of the receiving groove 705, one end of the second spring 707 close to the damping rod 706 is fixedly connected with one side of the U-shaped plate 708, one end of the U-shaped plate 708 away from the receiving groove 705 is arranged at the bottom of the moving ring 703, the U-shaped plate 708 away from the receiving groove 705 is pulled to the direction close to the inner wall of the receiving groove 705 through the second spring 707, so that the U-shaped plate 708 away from the receiving groove 705 can be arranged at the bottom of the moving ring 703, so that the clamping rod 702 can be limited in the clamping groove 711, a positioning groove 709 is arranged at the bottom of the U-shaped plate 708, a rubber block 710 is arranged on the inner wall of the positioning groove 709, the rubber block 710 is fixedly connected with the bottom of the moving ring 703, the rubber block 710 is pressed into the positioning groove 709, so that the U-shaped plate 708 away from the receiving groove 705 can be arranged at the bottom of the moving ring 703.
[0030] The working principle is that when the oil liquid dehydration tower is used, the fluid is connected to the inside of the dehydration tower body 1 through the connecting pipe 4, and then the fluid passes through the filter screen 2 and the filler arranged inside the two filter screens 2, which can well increase the contact area between the fluid and the air. The air at the bottom of the dehydration tower is heated by the heating rod 5, and the air at the bottom after being heated is sucked to the top of the dehydration tower body 1 by the fan 3, so that the flow direction of the air flow and the liquid flow is opposite, which can well remove the water in the fluid, and then facilitate the removal of the water in the fluid. When the limiting device 6 is used, the appropriate filler is placed in the inside of the connecting cylinder 602, the fixing rod 604 is slid into the fixing groove 603, and the arc block 609 is manually controlled to slide into the sliding groove 606 opened on one side of the connecting cylinder 602. In this way, the end of the arc block 609 away from the sliding groove 606 can be well arranged on the top of the filter plate 605, so that the filter plate 605 can be well limited on the top of the connecting cylinder 602. Then the connecting cylinder 602 is slid into the connecting groove 601, and after the connecting cylinder 602 is slid into the connecting groove 601, the cylinder 610 is manually sleeved on the surface of the dehydration tower body 1, and then the cylinder 610 is well sleeved in the connecting cylinder 602. In this way, the rubber ring 612 can be well squeezed into the circular groove 611, and then the connecting cylinder 602 can be well limited in the connecting groove 601, so that the connecting cylinder 602 can be well slid to the middle of the two filter screens 2. In this way, it is convenient to replace the filler arranged in the middle of the two filter screens 2. Inside the supporting device 7, the first spring 704 pulls the moving ring 703 close to the bottom of the supporting ring 701, so that the clamping rod 702 can be well slid into the clamping groove 711 after passing through the supporting ring 701. The second spring 707 pulls the U-shaped plate 708 close to the inner wall of the storage groove 705, so that the end of the U-shaped plate 708 away from the storage groove 705 can be well arranged on the bottom of the moving ring 703. The rubber block 710 is squeezed into the positioning groove 709, so that the end of the U-shaped plate 708 away from the storage groove 705 can be well arranged on the bottom of the moving ring 703. In this way, the clamping rod 702 can be well limited in the clamping groove 711, so that the supporting capacity of the cylinder 610 can be well enhanced.
[0031] It should be noted that all damping rods in the case are telescopic dampers that can absorb energy during telescoping.
Claims
1. An oil dehydration column comprising a dehydration column body (1), characterized in that: The inside of the dehydration tower body (1) is uniformly provided with a filter screen (2), the top of the dehydration tower body (1) is provided with a fan (3), one side of the top of the dehydration tower body (1) is provided with a connecting pipe (4), the bottom of the inner wall of the dehydration tower body (1) is uniformly and fixedly connected with a heating rod (5), one side of the dehydration tower body (1) is provided with a limiting device (6), the surface of the dehydration tower body (1) is provided with a supporting device (7), the limiting device (6) comprises a connecting barrel (602), one side of the dehydration tower body (1) is provided with a connecting groove (601), the inner wall of the connecting groove (601) is in sliding connection with the connecting barrel (602), and the top of the connecting barrel (602) is provided with a filter plate (605).
2. An oil dehydration column according to claim 1, characterized in that: The top of the connecting barrel (602) is uniformly provided with a fixed groove (603), the inner wall of the fixed groove (603) is in sliding connection with a fixed rod (604), and one end, away from the fixed groove (603), of the fixed rod (604) is fixedly connected with the bottom of the filter plate (605).
3. An oil dehydration column according to claim 1, characterized in that: One side of the connecting barrel (602) is provided with a sliding groove (606), the inner wall of the sliding groove (606) is in sliding connection with an arc block (609), and one end, away from the sliding groove (606), of the arc block (609) is arranged at the top of the filter plate (605).
4. An oil dehydration column according to claim 3, wherein: The bottom of the sliding groove (606) is provided with an arc groove (607), the inner wall of the arc groove (607) is in sliding connection with a fixed block (608), and two ends, away from the arc groove (607), of the fixed block (608) are fixedly connected with the bottom of the arc block (609).
5. The oil dehydration column of claim 1, wherein: The surface of the dehydration tower body (1) is sleeved with a cylinder (610), the surface of the dehydration tower body (1) is uniformly provided with a circular groove (611), the inner wall of the circular groove (611) is provided with a rubber ring (612), and one side, away from the circular groove (611), of the rubber ring (612) is fixedly connected with the inner wall of the cylinder (610).
6. An oil dehydration column according to claim 5, wherein: The supporting device (7) comprises a supporting ring (701), a clamping rod (702) is slidingly and penetratingly arranged at the bottom of the supporting ring (701), a clamping groove (711) is uniformly arranged at the bottom of the cylinder (610), the inner wall of the clamping groove (711) is in sliding connection with the clamping rod (702), the bottom of the clamping rod (702) is fixedly connected with a moving ring (703), the moving ring (703) is slidably sleeved on the surface of the dehydration tower body (1), the surface of the clamping rod (702) is sleeved with a first spring (704), the bottom of the first spring (704) is fixedly connected with the bottom of the supporting ring (701), one end, close to the clamping rod (702), of the first spring (704) is fixedly connected with the top of the moving ring (703).
7. An oil dehydration column according to claim 6, wherein: One side of the support ring (701) is provided with a receiving groove (705), the inner wall of the receiving groove (705) is slidably connected with a U-shaped plate (708), one side of the inner wall of the receiving groove (705) is fixedly connected with a damping rod (706), one end of the damping rod (706) away from the receiving groove (705) is fixedly connected with one side of the U-shaped plate (708), the surface of the damping rod (706) is sleeved with a second spring (707), one end of the second spring (707) and one side of the inner wall of the receiving groove (705) are fixedly connected, one end of the second spring (707) close to the damping rod (706) is fixedly connected with one side of the U-shaped plate (708), and the end of the U-shaped plate (708) away from the receiving groove (705) is arranged at the bottom of the moving ring (703).
8. An oil dehydration column according to claim 7, wherein: The bottom of the U-shaped plate (708) is provided with a positioning groove (709), and the inner wall of the positioning groove (709) is provided with a rubber block (710), and the rubber block (710) and the bottom of the moving ring (703) are fixedly connected.