Glass fiber reinforced plastic storage tank with heat preservation structure
By introducing adjustment mechanisms and cleaning components into the fiberglass storage tank, the problem of water source evaporation in the water storage tank is solved, rapid water addition and convenient cleaning are achieved, the insulation performance and system efficiency of the storage tank are improved, and the impact of water leakage and dirt is reduced.
Patent Information
- Application Number
- CN202422574691.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-24
AI Technical Summary
After a long period of heating, the water source in the water storage tank may evaporate, resulting in a decrease in the amount of water and a lack of a rapid water replenishment structure, which will cause inconvenience to the staff.
A fiberglass storage tank with an adjustment mechanism and cleaning components is designed, including mounting pipes, threaded pipes, high-temperature-resistant sealing blocks, slide rods, telescopic springs, etc., which can quickly add water through threaded connections, and facilitate disassembly through sealing plates and insert block structures, achieving rapid installation and cleaning.
It realizes rapid addition of water to the water tank, reduces heat loss, stabilizes water temperature, reduces condensation and corrosion risks, improves the efficiency of the hot water supply system, and facilitates the internal cleaning of the water tank, avoids water leakage and pipeline blockage, and improves daily maintenance efficiency.
Smart Images

Figure CN223188093U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass fiber reinforced plastic storage tanks, and specifically relates to a glass fiber reinforced plastic storage tank with a heat preservation structure. Background Technique
[0002] The glass fiber reinforced plastic storage tank is one of the glass fiber reinforced plastic products. It is a new composite material mainly made of glass fiber as the reinforcing agent and resin as the binder through computer-controlled machine winding. The glass fiber reinforced plastic storage tank has the advantages of corrosion resistance, high strength, light weight, long service life. Due to its flexible designability and strong processability, it can be flexibly designed for use in different industries.
[0003] The patent publication number CN211418317U discloses a glass fiber reinforced plastic storage tank with multi-layer heat preservation. Through the settings of a sleeve, a heat insulation cylinder, a water storage tank and a heating rod, the heating rod is used to heat the water in the water storage tank. The water in the water storage tank enters the heat preservation cavity through the water outlet pipe, and the heat of the hot water is directly transferred to the tank body to heat and preserve the materials inside the tank body. The hot water after heat exchange flows back into the water storage tank through the water inlet pipe for heating again. The vacuum cavity part and the heat insulation cylinder can reduce the heat loss inside the tank body, so as to achieve a double heat preservation effect; through the hot water in the water storage tank quickly enters the heat preservation cavity under the action of the water pump through the water outlet pipe, and the one-way valve is set to prevent the water flow inside the heat preservation cavity from flowing back into the water outlet pipe, realizing the continuous circulation of the water flow in the water storage tank, achieving the heat preservation effect while reducing the waste of water resources. However, the following problems still exist in the actual use of this patent:
[0004] Through the settings of a sleeve, a heat insulation cylinder, a water storage tank and a heating rod, the heat of the hot water is directly transferred to the tank body to heat and preserve the materials inside the tank body. The hot water after heat exchange flows back into the water storage tank through the water inlet pipe for heating again. However, after the water source inside the water storage tank is heated for a long time, evaporation and other phenomena may occur, and the accumulated evaporation will cause the water volume in the water storage tank to gradually decrease. But this device does not have a rapid water filling structure, which brings inconvenience to the staff when adding water to the water storage tank.
[0005] A glass fiber reinforced plastic storage tank with a heat preservation structure is proposed to facilitate the solution of the problems mentioned above. Content of the Utility Model
[0006] The purpose of the present utility model is to provide a fiberglass storage tank with a heat preservation structure, so as to solve the problem proposed in the above background technology. Currently, through the settings of a sleeve, a heat insulation cylinder, a water storage tank, and a heating rod, the heat of hot water is directly transferred to the tank body to heat and keep warm the materials inside the tank body. After heat exchange, the hot water flows back into the water storage tank through the water inlet pipe for heating. However, after the water source inside the water storage tank is heated for a long time, evaporation and other phenomena may occur, and the accumulated evaporation will cause the water volume in the water storage tank to gradually decrease. But this device does not have a rapid water filling structure, which brings inconvenience to the staff when adding water to the water storage tank.
[0007] To achieve the above purpose, the present utility model provides the following technical solutions: A fiberglass storage tank with a heat preservation structure includes a tank body. A sleeve is arranged on the outer side of the tank body, and a shell is arranged on the outer side of the sleeve. A heat preservation cavity is arranged between the tank body and the sleeve, and a water tank is installed at the bottom end of the shell; An adjusting mechanism is arranged on one side of the water tank, and a cleaning component is arranged inside one side of the water tank;
[0008] Among them, the adjusting mechanism includes a mounting pipe installed inside one side of the tank body. One end of the mounting pipe is installed with a threaded pipe, and a fixed pipe is installed inside one end of the mounting pipe. A sliding rod is slidably connected inside the fixed pipe. One end of the sliding rod is installed with a high-temperature resistant sealing block, and the high-temperature resistant sealing block is in fit connection with the inside of one end of the mounting pipe. A first telescopic spring is sleeved on the outer side of the sliding rod. Sliding sleeves are symmetrically installed on both sides of the fixed pipe, and a support rod is slidably connected inside the sliding sleeve.
[0009] Preferably, the cleaning component includes a sealing plate, and the sealing plate is in clearance fit with the inside of one side of the water tank. L-shaped plates are symmetrically and slidably connected to the inner side of the sealing plate. Plug blocks are installed on one side of each L-shaped plate, and the plug blocks are inserted into the inside of one side of the water tank. A rotating rod is rotatably connected to one side of the sealing plate, and a rotating plate is fixedly connected to the outer side of the rotating rod. Arc-shaped rods are symmetrically and rotatably connected to one side of the rotating plate, and one end of each arc-shaped rod is rotatably connected to the L-shaped plate. Chute grooves are symmetrically formed inside one side of the sealing plate, and fixing rods are installed inside the chute grooves. A second telescopic spring is sleeved on the outer side of the fixing rods, and both ends of the L-shaped plates are slidably connected to the outer side of the fixing rods.
[0010] Preferably, a high-temperature resistant glass is installed inside one side of the water tank, and a scale is installed on one side of the water tank close to the high-temperature resistant glass.
[0011] Preferably, a rock wool layer is arranged between the sleeve and the shell.
[0012] Preferably, a high-temperature resistant rubber pad is installed on the side of the sealing plate away from the L-shaped plate.
[0013] Preferably, a rotating block is installed at one end of the rotating rod.
[0014] Preferably, one end of the support rod is fixedly connected to the high-temperature resistant sealing block.
[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows: For a fiberglass storage tank with a heat preservation structure, the specific content is as follows: The staff thread-connects the water pipe joint with the threaded pipe. At this time, the staff controls the water pump to input the water in the water tank into the installation pipe through the water pipe. At this time, the water flow squeezes the high-temperature resistant sealing block, so that the high-temperature resistant sealing block is separated from the inlet of the installation pipe. At this time, the first telescopic spring contracts, so that the support rod slides inside the sliding sleeve. Due to the resetting property of the first telescopic spring, the high-temperature resistant sealing block is squeezed and closed with the installation pipe, so as to achieve the effect of quickly filling water into the water tank, which can indirectly improve the heat preservation performance of the water tank, reduce heat loss, stabilize the water temperature, reduce the risks of condensation and corrosion, and improve the efficiency of the entire hot water supply system, thus effectively avoiding the phenomenon of water leakage inside the water tank when the water pipe is disassembled. By rotating the rotating rod to drive the rotation of the rotating plate, the rotation of the rotating plate drives the rotation of the arc-shaped rod, and the rotation of the arc-shaped rod pulls the L-shaped plate to move along the gathering and unfolding trajectory inside the sealing plate. Due to the tension generated by the second telescopic spring, the L-shaped plate can slide inside the sealing plate, so that multiple insertion blocks are inserted between the inside of one side of the water tank, thus achieving the effect of quickly installing and disassembling the sealing plate. Furthermore, the staff can achieve the effect of detecting and maintaining the inside of the water tank by disassembling the sealing plate, facilitating the staff to clean the dirt inside the water tank, and avoiding causing pipeline blockage or affecting the normal operation of other water-using equipment.
[0016] 1. The staff thread-connects the water pipe joint with the threaded pipe. At this time, the staff controls the water pump to input the water in the water tank into the installation pipe through the water pipe. At this time, the water flow squeezes the high-temperature resistant sealing block, so that the high-temperature resistant sealing block is separated from the inlet of the installation pipe. At this time, the sliding rod slides inside the fixed pipe, and the first telescopic spring contracts, so that the support rod slides inside the sliding sleeve. When the water source inside the water tank is full, the water pump is turned off at this time to stop delivering water into the water tank. Furthermore, due to the resetting property of the first telescopic spring, the high-temperature resistant sealing block is squeezed and closed with the installation pipe, so as to achieve the effect of quickly filling water into the water tank, be able to maintain a certain amount of water in the water tank and cooperate with the hot water reheating and heat preservation measures, which can indirectly improve the heat preservation performance of the water tank, reduce heat loss, stabilize the water temperature, reduce the risks of condensation and corrosion, and improve the efficiency of the entire hot water supply system, thus effectively avoiding the phenomenon of water leakage inside the water tank when the water pipe is disassembled, bringing convenience to the staff during use. By the staff observing the high-temperature resistant glass and the scale, the staff can more intuitively observe the water level inside the water tank;
[0017] 2. By inserting the sealing plate between the inner side of the water tank and then rotating the rotating rod to drive the rotation of the rotating plate, the rotation of the rotating plate drives the rotation of the arc-shaped rod, and the rotation of the arc-shaped rod pulls the L-shaped plate to move along the gathering and unfolding trajectory inside the sealing plate. At this time, both ends of the L-shaped plate are slidably connected to the outside of the fixed rod, and the second telescopic spring contracts. By releasing the rotating rod, and then through the tension generated by the second telescopic spring, the L-shaped plate can slide inside the sealing plate, and then multiple inserting blocks are inserted between the inner side of the water tank, so as to achieve the effect of quickly installing and disassembling the sealing plate. Furthermore, the staff can detect and maintain the inside of the water tank by disassembling the sealing plate, which is convenient for the staff to clean the dirt inside the water tank, and avoid the impurities and microorganisms in the dirt from falling off and mixing into the hot water during the subsequent heating process. If these impurities enter the pipeline system, it may cause pipeline blockage or affect the normal operation of other water-using equipment, greatly improving the daily maintenance efficiency of the device and bringing convenience to the staff during use. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 FIG. is a schematic diagram of the overall structure of the present utility model;
[0019] Figure 2 FIG. is a schematic diagram of the overall structure of the water tank in the present utility model;
[0020] Figure 3 FIG. is a schematic diagram of the overall top view structure of the adjusting mechanism in the present utility model;
[0021] Figure 4 FIG. is a schematic diagram of the overall structure of the cleaning component in the present utility model;
[0022] Figure 5 FIG. is a schematic diagram of the overall operating structure of the cleaning component in the present utility model;
[0023] Figure 6 FIG. is a schematic diagram of the overall reverse side structure of the cleaning component in the present utility model.
[0024] In the figure: 1, tank body; 101, sleeve; 102, outer shell; 103, heat preservation cavity; 104, water tank; 2, adjusting mechanism; 201, installation pipe; 202, threaded pipe; 203, fixed pipe; 204, sliding rod; 205, high-temperature resistant sealing block; 206, first telescopic spring; 207, sliding sleeve; 208, support rod; 209, high-temperature resistant glass; 210, scale; 211, rock wool layer; 3, cleaning component; 301, sealing plate; 302, L-shaped plate; 303, inserting block; 304, rotating rod; 305, rotating plate; 306, arc-shaped rod; 307, chute; 308, fixed rod; 309, second telescopic spring; 310, high-temperature resistant rubber pad; 311, rotating block. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the scope of protection of the present utility model.
[0026] Please refer to Figures 1-6 , the present utility model provides a technical solution: a fiberglass storage tank with a heat preservation structure, including a tank body 1, a sleeve 101 is arranged outside the tank body 1, and a shell 102 is arranged outside the sleeve 101. Moreover, a heat preservation cavity 103 is arranged between the tank body 1 and the sleeve 101, and a water tank 104 is installed at the bottom end of the shell 102; an adjusting mechanism 2 is arranged on one side of the water tank 104, and a cleaning component 3 is arranged inside one side of the water tank 104;
[0027] Among them, the adjusting mechanism 2 includes an installation pipe 201 installed inside one side of the tank body 1, one end of the installation pipe 201 is installed with a threaded pipe 202, and a fixed pipe 203 is installed inside one end of the installation pipe 201. Moreover, a sliding rod 204 is slidably connected inside the fixed pipe 203, and a high-temperature resistant sealing block 205 is installed at one end of the sliding rod 204. And the high-temperature resistant sealing block 205 is in fit connection with the inside of one end of the installation pipe 201. Moreover, a first telescopic spring 206 is sleeved outside the sliding rod 204, and sliding sleeves 207 are symmetrically installed on both sides of the fixed pipe 203. And a support rod 208 is slidably connected inside the sliding sleeve 207, and one end of the support rod 208 is fixedly connected to the high-temperature resistant sealing block 205, so as to achieve the effect of quickly adding water to the water tank 104, being able to maintain a certain amount of water in the water tank 104 and cooperate with the hot water reheating and heat preservation measures, which can indirectly improve the heat preservation performance of the water tank 104, reduce heat loss, stabilize the water temperature, reduce the risks of condensation and corrosion, and improve the efficiency of the entire hot water supply system. Thus, it can effectively avoid the phenomenon of water leakage inside the water tank 104 when the water pipe is disassembled, bringing convenience to the staff during use. A high-temperature resistant glass 209 is installed inside one side of the water tank 104, and a scale 210 is installed on one side of the water tank 104 close to the high-temperature resistant glass 209. By the staff observing the high-temperature resistant glass 209 and the scale 210, it can enable the staff to more intuitively observe the water level inside the water tank 104, bringing convenience to the staff during use. A rock wool layer 211 is arranged between the sleeve 101 and the shell 102. Due to the good high-temperature resistant performance and heat preservation performance of the rock wool layer 211, it is suitable for the heat preservation of the tank body 1 in a high-temperature environment, bringing convenience to the staff during use.
[0028] The cleaning component 3 includes a sealing plate 301, and there is a clearance fit between the sealing plate 301 and the inner side of one side of the water tank 104. Symmetrically sliding connections are provided on the inner side of the sealing plate 301 with L-shaped plates 302. On one side of each L-shaped plate 302, insertion blocks 303 are installed, and the insertion blocks 303 are inserted into the inner side of one side of the water tank 104. On one side of the sealing plate 301, a rotating rod 304 is rotatably connected. On the outer side of the rotating rod 304, a rotating plate 305 is fixedly connected. On one side of the rotating plate 305, arc-shaped rods 306 are symmetrically rotatably connected. One end of the arc-shaped rod 306 is rotatably connected to the L-shaped plate 302. Symmetrically, sliding grooves 307 are provided inside one side of the sealing plate 301. Inside the sliding grooves 307, fixing rods 308 are installed. On the outer side of the fixing rods 308, second telescopic springs 309 are sleeved. The two ends of the L-shaped plate 302 are slidably connected to the outer side of the fixing rods 308, so as to achieve the effect of quickly installing and disassembling the sealing plate 301. Furthermore, the staff can detect and maintain the inside of the water tank 104 by disassembling the sealing plate 301, which is convenient for the staff to clean the dirt inside the water tank 104. It can avoid the impurities and microorganisms in the dirt from possibly falling off and mixing into the hot water during the subsequent heating process. If these impurities enter the pipeline system, it may cause pipeline blockage or affect the normal operation of other water-using equipment, greatly improving the daily maintenance efficiency of the device and bringing convenience to the staff during use. A high-temperature resistant rubber pad 310 is installed on the side of the sealing plate 301 away from the L-shaped plate 302. Through the design of the high-temperature resistant rubber pad 310, the phenomenon of water leakage can be avoided. A rotating block 311 is installed at one end of the rotating rod 304. Through the design of the rotating block 311, it is convenient for the staff to operate the rotating rod 304.
[0029] Working principle: Before using this fiberglass storage tank with a heat preservation structure, it is necessary to first check the overall situation of the device to ensure that it can work normally. According to Figure 1 - Figure 6As shown in the figure, first, the staff connect the conveying pipes at both ends of the water tank 104 to the water inlet and outlet. When the staff need to add water to the inside of the water tank 104, at this time, the staff thread-connect the water pipe joint with the threaded pipe 202. Then, the staff control the water pump to input the water in the pool into the installation pipe 201 through the water pipe. At this time, the water flow squeezes the high-temperature resistant sealing block 205, so that the high-temperature resistant sealing block 205 is separated from the inlet of the installation pipe 201. At this time, the sliding rod 204 slides inside the fixed pipe 203, and the first telescopic spring 206 contracts, so that the support rod 208 slides inside the sliding sleeve 207. When the water in the water tank 104 is full, at this time, the water pump is turned off to stop conveying water into the water tank 104. Then, due to the reset property of the first telescopic spring 206, the high-temperature resistant sealing block 205 is squeezed and closed with the installation pipe 201. Finally, the threaded plug block is thread-connected with the threaded pipe 202 to achieve secondary sealing of the installation pipe 201, so as to achieve the effect of quickly adding water to the water tank 104. It can maintain a certain amount of water in the water tank 104 and cooperate with the hot water reheating and heat preservation measures, which can indirectly improve the heat preservation performance of the water tank 104, reduce heat loss, stabilize the water temperature, reduce the risk of condensation and corrosion, and improve the efficiency of the entire hot water supply system. Thus, it can effectively avoid the phenomenon of water leakage inside the water tank 104 when the water pipe is disassembled, bringing convenience to the staff during use. By the staff observing the high-temperature resistant glass 209 and the scale 210, it can enable the staff to more intuitively observe the water level inside the water tank 104, bringing convenience to the staff during use. Due to the rock wool layer 211 having good high-temperature resistance and heat preservation performance, it is suitable for heat preservation of the tank body 1 in a high-temperature environment, bringing convenience to the staff during use;
[0030] By inserting the sealing plate 301 between the inner side of the water tank 104, then rotating the rotating rod 304 to drive the rotation of the rotating plate 305, the rotation of the rotating plate 305 drives the rotation of the arc-shaped rod 306, and the rotation of the arc-shaped rod 306 pulls the L-shaped plate 302 to move along the gathering and unfolding trajectory inside the sealing plate 301. At this time, both ends of the L-shaped plate 302 are slidably connected to the outside of the fixed rod 308. At this time, the second telescopic spring 309 contracts. By releasing the rotating rod 304, and then through the tension generated by the second telescopic spring 309, the L-shaped plate 302 can be made to slide inside the sealing plate 301, and then multiple insertion blocks 303 are inserted between the inner side of the water tank 104, so as to achieve the effect of quickly installing and disassembling the sealing plate 301. Furthermore, the staff can achieve the effect of detecting and maintaining the inside of the water tank 104 by disassembling the sealing plate 301, which is convenient for the staff to clean the dirt inside the water tank 104, and avoid the impurities and microorganisms in the dirt from possibly falling off and mixing into the hot water during the subsequent heating process. If these impurities enter the pipeline system, it may cause pipeline blockage or affect the normal operation of other water-using equipment, greatly improving the daily maintenance efficiency of the device, bringing convenience to the staff during use. Through the design of the high-temperature resistant rubber pad 310, the phenomenon of water leakage can be avoided. Through the design of the rotating block 311, it is convenient for the staff to operate the rotating rod 304.
[0031] In the prior art, the tank body 1, the sleeve 101, the outer shell 102, the heat preservation cavity 103 and the water tank 104 are disclosed in the utility model patent with the publication number CN211418317U, which discloses a glass fiber reinforced plastic storage tank with multi-layer heat preservation, and the devices used therein will not be elaborated here.
[0032] Although the present utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A glass fiber reinforced plastic storage tank with a heat-insulating structure, comprising a tank body (1), a sleeve (101) provided on the outside of the tank body (1), an outer shell (102) provided on the outside of the sleeve (101), a heat-insulating cavity (103) provided between the tank body (1) and the sleeve (101), and a water tank (104) installed at the bottom end of the outer shell (102); It is characterized in that Also includes: An adjustment mechanism (2) is provided on one side of the water tank (104), and a cleaning component (3) is provided inside one side of the water tank (104); The adjusting mechanism (2) comprises a mounting tube (201) mounted inside one side of the tank body (1), and a threaded tube (202) is mounted on one end of the mounting tube (201), and a fixed tube (203) is mounted inside one end of the mounting tube (201), and a sliding rod (204) is slidably connected to the inside of the fixed tube (203), and a high-temperature resistant sealing block (205) is mounted on one end of the sliding rod (204), and the high-temperature resistant sealing block (205) is fitted and connected to the inside of one end of the mounting tube (201), and a first telescopic spring (206) is sleeved on the outside of the sliding rod (204), and sliding sleeves (207) are symmetrically mounted on both sides of the fixed tube (203), and the inside of the sliding sleeve (207) is slidably connected to the support rod (208).
2. The glass fiber reinforced plastic storage tank with a thermal insulation structure according to claim 1, characterized in that: The cleaning assembly (3) includes a sealing plate (301), and the sealing plate (301) is clearance-matched with the interior of one side of the water tank (104), and the inner side of the sealing plate (301) is symmetrically slidably connected to the L plate (302), and an insert block (303) is installed on one side of the L plate (302), and the insert block (303) is plugged into the interior of one side of the water tank (104), and one side of the sealing plate (301) is rotatably connected to a rotating rod (304), and the outer side of the rotating rod (304) is fixedly connected to a rotating plate. (305), and one side of the rotating plate (305) is symmetrically connected to the arc rod (306), and one end of the arc rod (306) is rotatably connected to the L plate (302), and a sliding groove (307) is symmetrically opened inside one side of the sealing plate (301), and a fixed rod (308) is installed inside the sliding groove (307), and the outer side of the fixed rod (308) is sleeved with a second telescopic spring (309), and the two ends of the L plate (302) are located on the outer side of the fixed rod (308) and are slidably connected.
3. The glass fiber reinforced plastic storage tank with a thermal insulation structure according to claim 1, characterized in that: A high-temperature resistant glass (209) is installed inside one side of the water tank (104), and a scale (210) is installed on the side of the water tank (104) close to the high-temperature resistant glass (209).
4. The glass fiber reinforced plastic storage tank with a thermal insulation structure according to claim 1, characterized in that: A rock wool layer (211) is provided between the sleeve (101) and the shell (102).
5. The glass fiber reinforced plastic storage tank with a thermal insulation structure according to claim 2, characterized in that: A high-temperature resistant rubber pad (310) is installed on the side of the sealing plate (301) away from the L plate (302).
6. The glass fiber reinforced plastic storage tank with a thermal insulation structure according to claim 2, characterized in that: A rotating block (311) is installed at one end of the rotating rod (304).
7. The glass fiber reinforced plastic storage tank with a thermal insulation structure according to claim 1, characterized in that: One end of the support rod (208) is fixedly connected to the high-temperature resistant sealing block (205).
Citation Information
Patent Citations
Glass fiber reinforced plastic storage tank with multi-layer heat preservation
CN211418317U