High-temperature-resistant oiling agent storage equipment
By introducing water-cooling systems and stirring systems into lubricating oil storage equipment, the problem of unstable lubricating oil storage at high temperatures is solved, and the equipment's high-temperature storage and oil stability are achieved.
Patent Information
- Application Number
- CN202422193037.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-06
AI Technical Summary
Existing lubricant storage devices cannot be stored for a long time at high temperatures, resulting in the possible deformation, leakage and degradation of oil quality.
Design a high-temperature resistant oil agent storage device, including a water-cooling system and a stirring system, triggering the operation of the stirring system through a temperature control device, allowing lubricating oil to flow and absorb heat through the water-cooling system to ensure oil temperature stability.
Effectively reduce the lubricant temperature, prevent equipment damage, maintain oil quality, and extend the service life of the equipment.
Smart Images

Figure CN223238594U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of storage devices, in particular to a high-temperature resistant oil storage device. Background Art
[0002] Today's lubricating oil has too high a temperature after production and is loaded into oil storage equipment through pipes. The lubricating oil continues to release heat in the oil storage equipment without any heat dissipation equipment. At the same time, it is left in an external high-temperature environment for a long time, which will not only change the quality of the oil, but also cause the oil storage equipment to deform or leak.
[0003] Because the temperature of lubricating oil is too high after production, existing oil storage equipment cannot store high-temperature oil for a long time. Oil storage equipment may decompose, oxidize, deteriorate, etc. under long-term high temperature, causing equipment failure or performance degradation, thereby affecting the quality of the lubricating oil.
[0004] Therefore, since the temperature of the above-mentioned lubricating oil is too high after production, the oil storage equipment cannot store high-temperature oil for a long time, which may cause the oil storage equipment to damage the tank and change the oil quality under high temperature. A high-temperature resistant oil storage equipment can be designed to store the oil to ensure that the oil can maintain stability and quality. Utility Model Content
[0005] In order to overcome the problem that the temperature of lubricating oil is too high after production, existing oil storage equipment cannot store high-temperature oil for a long time.
[0006] The technical solution of the utility model is: a high-temperature resistant oil storage device, including an oil storage device, a water cooling system, a stirring system, a cover body mechanism and a support mechanism, and a base; the support mechanism is fixedly installed on the right side of the base, the upper end of the support mechanism holds up the cover body mechanism, the oil storage device is arranged inside the cover body mechanism, the outer ring of the oil storage device is fixedly connected to the water cooling system, and the stirring system is installed inside the oil storage device.
[0007] Preferably, a water cooling system and a stirring system are added. After the lubricating oil is loaded into the oil storage device, the high-temperature lubricating oil triggers the temperature control device on the stirring system, causing the stirring system to operate and the internal lubricating oil to flow outward. The temperature control device also triggers the water cooling system. The water absorbs the heat of the lubricating oil, and the low-temperature lubricating oil will not damage the tank body. The coordinated work of the water cooling system and the stirring system ensures that the oil can maintain stability and performance.
[0008] Preferably, the oil storage equipment includes a cylindrical tank body, a No. 1 assembly groove, a No. 1 glass cover, an L-shaped oil outlet pipe, an oil outlet cover, a connecting hole, a handle, an oil delivery cover, an oil delivery pipe, a mounting hole and a semicircular tank body; the front and rear ends of the cylindrical tank body are fixedly connected to the semicircular tank body, a No. 1 assembly groove is provided in the cylindrical tank body, the No. 1 glass cover is installed in the No. 1 assembly groove, the upper end of the cylindrical tank body is fixedly connected to the oil delivery pipe, the oil delivery pipe is movably connected to the upper oil delivery cover, the upper part of the oil delivery cover is fixedly connected to the handle, and the rear semicircular tank There is a connecting hole at the lower end of the body, which is fixedly connected to the L-shaped oil outlet pipe below. The rear end of the L-shaped oil outlet pipe is movably connected to the oil outlet cover. Mounting holes are set on the domes of the semicircular tank body at the front and rear ends. The No. 1 assembly groove and No. 1 glass cover can make it easier to observe the inside of the tank body from the outside. The fixed connection between the semicircular tank body and the L-shaped oil outlet pipe will not cause the oil to flow back. The cylindrical tank body and the semicircular tank body are made of tungsten carbide steel. This steel has good wear resistance, hardness and corrosion resistance, and maintains its stable performance even at high temperatures.
[0009] Preferably, the water cooling system includes a box body, a temperature control panel, a square connecting column, a square hole groove, an angle connecting pipe, a square circular water pipe, a square water tank, a converter, a cylindrical water pipe, a water cooler fan and a protective cover; the temperature control panel is fixedly installed on the front end surface of the box body, 14 water cooler fan blades are arranged inside the upper end of the box body, the upper end of the box body is movably connected to the protective cover, four holes are provided on the right side of the box body for movably connecting the cylindrical water pipe, the front end of the cylindrical water pipe is movably connected to the converter, the front end of the converter is movably connected to the rear end of the angle connecting pipe, the front end of the angle connecting pipe is movably connected to the square water tank, 7 square hole grooves are evenly arranged inside the square water tank, one end of the square water tank is fixedly connected to the square connecting column, the square connecting column is fixedly installed on the upper and lower ends of the square circular water pipe, the square circular water pipe is fixedly welded to the outer ring of the cylindrical tank, the water flowing in the square circular water pipe fully absorbs the heat emitted by the tank body, the temperature control panel can display the internal oil temperature, and the temperature control panel can also adjust the pressure to speed up the flow rate of water in the square circular water pipe, so that the oil temperature is cooled faster.
[0010] Preferably, the stirring system includes a magnetic coupling machine, a rubber connecting sleeve, a roller, stirring blades and a temperature sensor; the end of the magnetic coupling machine forms a magnetic movable connection with the front end of the roller, and a movable rubber connecting sleeve is provided on the front and rear surfaces of the roller. The outer ring of the roller is surrounded by five groups of fixed stirring blades, and a temperature sensor is fixedly installed in the middle of the roller. The cooperation between the magnetic coupling machine and the roller will not overload the machine, thereby increasing the service life of the stirring system. The material of the roller and the stirring blades is silicon carbide, which has extremely high high temperature resistance and hardness. The rubber connecting sleeve is made of fluororubber, which has the characteristics of high temperature resistance and oil resistance. The temperature sensor enables people to perceive the oil temperature more intuitively.
[0011] Preferably, the cover body mechanism includes a cylindrical barrel cover, a No. 2 glass cover, a No. 2 assembly groove, a cover, a cylindrical water pipe groove, an oil delivery groove and an oil outlet pipe groove; there are four cylindrical water pipe grooves dug through the upper and lower ends of the left side of the cylindrical barrel cover, an oil delivery groove is provided at the middle upper end of the cylindrical barrel cover, a No. 2 assembly groove is provided inside the right side of the cylindrical water pipe groove, the No. 2 assembly groove is movably connected to the No. 2 glass cover, the front and rear ends of the cylindrical water pipe groove are movably connected to the cover, and an oil outlet pipe groove is provided at the rear end of the bottom of the cylindrical water pipe groove. The cylindrical barrel cover and the cover protect the tank body and the water cooling system from external influences. At the same time, the holes on the cylindrical barrel cover will not affect the oil filling and oil discharge, nor will they affect the normal operation of the water cooling system.
[0012] Preferably, the supporting mechanism includes a latch, a segmented supporting column, a slot, a segmented assembly slot, a segmented plug-in, a segmented ball group, an integral supporting column, an integral assembly slot, an integral plug-in and an integral ball group; an integral assembly slot is arranged inside the integral supporting column, the interior of the integral assembly slot is movably connected to the integral plug-in, the upper end of the integral plug-in is fixedly connected to the integral ball group, segmented supporting columns are arranged at the same position on the front and rear sides of the integral supporting column, the segmented supporting columns are mirror images, a through slot is arranged inside the segmented supporting column, the interior of the slot is movably connected to the latch, the latch is inserted into the slot to fix the connection between the segmented plug-in and the segmented support column, and the segmented ball group makes the oil tank supported on the segmented support column have better flexibility, so that the oil tank is easy to transport.
[0013] Preferably, two ground troughs are provided at the front end of the base, and external drainage pumps are installed on the ground troughs. The ground troughs can be provided with drainage equipment to discharge water accumulated on the base to prevent the water from corroding the base for a long time.
[0014] Beneficial effects of the utility model:
[0015] 1. The cooperation of the water cooling system and the stirring system accelerates the reduction of the oil temperature of the lubricating oil inside the tank, ensuring that the lubricating oil can maintain stability and performance. The lubricating oil with lowered temperature will no longer damage the tank body. At the same time, the tank body will not decompose, oxidize, deteriorate due to long-term heat exposure, thereby increasing the service life of the oil tank.
[0016] 2. The temperature control panel can display the internal oil temperature and can also adjust the pressure to speed up the flow of water in the square and circular water pipes, so as to speed up the cooling of the oil temperature;
[0017] 3. The magnetic coupling machine and roller work together without overloading the machine, thus increasing the service life and power of the mixing system;
[0018] 4. The ball group makes the oil tank supported on the support column more flexible, making the oil tank easier to transport. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1Shown is a schematic diagram of the overall three-dimensional structure of the high-temperature resistant oil storage device of the present utility model;
[0020] Figure 2 Shown is a schematic diagram of the three-dimensional structure of the oil storage device of the high-temperature resistant oil storage device of the present invention;
[0021] Figure 3 Shown is a schematic diagram of the water cooling system structure of the high-temperature resistant oil storage device of the present invention;
[0022] Figure 4 Shown is a schematic diagram of the three-dimensional structure of the stirring system of the high-temperature resistant oil storage device of the present invention;
[0023] Figure 5 Shown is a schematic diagram of the three-dimensional structure of the cover mechanism of the high-temperature resistant oil storage device of the present invention;
[0024] Figure 6 Shown is a schematic diagram of the three-dimensional structure of the support mechanism of the high-temperature resistant oil storage device of the present invention;
[0025] Figure 7 Shown is a schematic diagram of the three-dimensional structure of the base of the high-temperature resistant oil storage device of the present invention;
[0026] Figure 8 Shown is a schematic diagram of the structure below the cover mechanism of the high-temperature resistant oil storage device of the present invention.
[0027] Explanation of reference numerals: 1. oil storage equipment; 2. water cooling system; 3. stirring system; 4. cover mechanism; 5. support mechanism; 6. base; 101. cylindrical tank body; 102. No. 1 assembly groove; 103. No. 1 glass cover; 104. L-shaped oil outlet pipe; 105. oil outlet cover; 106. connecting hole; 107. handle; 108. oil delivery cover; 109. oil delivery pipe; 110. mounting hole; 111. semicircular tank body; 201. box body; 202. temperature control panel; 203. square connecting column; 204. square hole groove; 205. elbow connecting pipe; 206. square ring water pipe; 207. square water tank; 208. converter; 209. cylindrical water pipe; 210. Water cooler blades; 211, protective cover; 301, magnetic coupling machine; 302, rubber connecting sleeve; 303, roller; 304, stirring blades; 305, temperature sensor; 401, cylindrical barrel cover; 402, glass cover No. 2; 403, assembly groove No. 2; 404, cover; 405, cylindrical water pipe groove; 406, oil delivery groove; 407, oil outlet pipe groove; 501, latch; 502, segmented support column; 503, slot; 504, segmented assembly groove; 505, segmented plug-in; 506, segmented ball group; 507, integral support column; 508, integral assembly groove; 509, integral plug-in; 510, integral ball group; 601, floor trough. DETAILED DESCRIPTION
[0028] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0029] See also Figure 1 The utility model provides an embodiment: a high-temperature resistant oil storage device, including an oil storage device 1, a water cooling system 2, a stirring system 3, a cover mechanism 4 and a support mechanism 5, and a base 6; the support mechanism 5 is fixedly installed on the right side of the base 6, and the upper end of the support mechanism 5 holds up the cover mechanism 4. The oil storage device 1 is arranged inside the cover mechanism 4, and the outer ring of the oil storage device 1 is fixedly connected to the water cooling system 2. The stirring system 3 is installed inside the oil storage device 1. The water cooling system 2 and the stirring system 3 are added. After the lubricating oil is loaded into the oil storage device, the high-temperature lubricating oil triggers the temperature control device on the stirring system 3, so that the stirring system 3 is operated to make the internal lubricating oil flow to the outside, and the temperature control device also triggers the water cooling system 2. The water absorbs the heat of the lubricating oil, and the low-temperature lubricating oil will not damage the tank body. The coordinated work of the water cooling system 2 and the stirring system 3 ensures that the oil can maintain stability and performance.
[0030] See also Figure 2-Figure 3In this embodiment, the oil storage device 1 includes a cylindrical tank body 101, a No. 1 assembly groove 102, a No. 1 glass cover 103, an L-shaped oil outlet pipe 104, an oil outlet cover 105, a connecting hole 106, a handle 107, an oil delivery cover 108, an oil delivery pipe 109, a mounting hole 110 and a semicircular tank body 111; the front and rear ends of the cylindrical tank body 101 are fixedly connected to the semicircular tank body 111, a No. 1 assembly groove 102 is provided in the cylindrical tank body 101, the No. 1 glass cover 103 is installed in the No. 1 assembly groove 102, the upper end of the cylindrical tank body 101 is fixedly connected to the oil delivery pipe 109, the oil delivery pipe 109 is movably connected to the oil delivery cover 108 above, and the oil delivery cover 108 is above. It is fixedly connected to the handle 107, and there is a connecting hole 106 penetrating the lower end of the semicircular tank body 111 at the rear. The connecting hole 106 is fixedly connected to the L-shaped oil outlet pipe 104 below. The rear end of the L-shaped oil outlet pipe 104 is movably connected to the oil outlet cover 105. Mounting holes 110 are set on the domes of the semicircular tank bodies 111 at the front and rear ends. The water cooling system 2 includes a box body 201, a temperature control panel 202, a square connecting column 203, a square hole groove 204, an angle connecting pipe 205, a square circular water pipe 206, a square water tank 207, a converter 208, a cylindrical water pipe 209, a water cooler fan blade 210 and a protective cover 211; the temperature control panel is fixedly installed on the front surface of the box body 201 Plate 202, 14 water cooler blades 210 are set inside the upper end of the box 201, the upper end of the box 201 is movably connected to the protective cover 211, and there are four holes on the right side of the box 201 for movably connecting the cylindrical water pipe 209, the front end of the cylindrical water pipe 209 is movably connected to the converter 208, the front end of the converter 208 is movably connected to the rear end of the angled connecting pipe 205, the front end of the angled connecting pipe 205 is movably connected to the square water tank 207, and 7 square hole slots 204 are evenly arranged inside the square water tank 207. One end of the square water tank 207 is fixedly connected to the square connecting column 203, and the square connecting column 203 is fixedly installed at the upper and lower ends of the square circular water pipe 206. The No. 1 assembly slot 10 2 and No. 1 glass cover 103 allow the outside to better observe the interior of the tank. The fixed connection of the L-shaped oil outlet pipe 104 will not cause the oil to flow back. The cylindrical tank body 101 and the semicircular tank body 111 are made of tungsten carbide steel. This steel has good wear resistance, hardness and corrosion resistance, and maintains its stable performance even at high temperatures. The square ring water pipe 206 is fixedly welded on the outer ring of the cylindrical tank body 101. The water flowing in the square ring water pipe 206 fully absorbs the heat emitted by the tank body. The temperature control panel 202 can display the internal oil temperature. The temperature control panel 202 can also adjust the pressure to speed up the flow rate of water in the square ring water pipe 206, thereby accelerating the oil temperature cooling rate.
[0031] See also Figure 4-Figure 8In this embodiment, the stirring system 3 includes a magnetic coupling machine 301, a rubber connecting sleeve 302, a roller 303, a stirring blade 304 and a temperature sensor 305; the end of the magnetic coupling machine 301 forms a magnetic movable connection with the front end of the roller 303, and a movable rubber connecting sleeve 302 is provided on the front and rear ends of the roller 303. The outer ring of the roller 303 surrounds five groups of stirring blades 304 that are fixedly connected. A temperature sensor 305 is fixedly installed in the middle of the roller 303. The cover mechanism 4 includes a cylindrical barrel cover 401, a second glass cover plate 402, a second assembly groove 403, a cover 404, a cylindrical water pipe groove 405, an oil delivery groove 406 and an oil outlet pipe groove 407; the upper and lower ends of the left side of the cylindrical barrel cover 401 are dug The four cylindrical water pipe grooves 405 are connected, and an oil delivery groove 406 is provided at the middle upper end of the cylindrical barrel cover 401. A No. 2 assembly groove 403 is provided inside the right side of the cylindrical water pipe groove 405. The No. 2 assembly groove 403 is movably connected to the No. 2 glass cover 402. The front and rear ends of the cylindrical water pipe groove 405 are movably connected to the cover 404. An oil outlet pipe groove 407 is provided at the bottom rear end of the cylindrical water pipe groove 405. The support mechanism 5 includes a latch 501, a segmented support column 502, a slot 503, a segmented assembly groove 504, a segmented plug-in 505, a segmented ball group 506, an integral support column 507, an integral assembly groove 508, an integral plug-in 509 and an integral ball group 510; an integral support column 507 is provided with an integral Assembly groove 508, the interior of the integral assembly groove 508 is movably connected to the integral plug-in 509, the upper end of the integral plug-in 509 is fixedly connected to the integral ball group 510, and the segmented support column 502 is set at the same position on the front and back of the integral support column 507. The segmented support column 502 is the same as the mirror image. A through slot 503 is set inside the segmented support column 502, and the slot 503 is movably connected to the pin 501. Two ground grooves 601 are set at the front end of the base 6, and an external drainage pump is installed on the ground groove 601. The magnetic coupling machine 301 and the roller 303 work together without overloading the machine, which increases the service life of the stirring system 3. The material of the roller 303 and the stirring blade 304 is silicon carbide, which has extremely high high temperature resistance and Hardness, the rubber connecting sleeve 302 is made of fluororubber, which has the characteristics of high temperature resistance and oil resistance. The temperature sensor 305 allows people to perceive the oil temperature more intuitively. The cylindrical barrel cover 401 and the cover 404 protect the tank body and the water cooling system 2 from external influences. At the same time, the holes on the cylindrical barrel cover 401 will not affect the oil filling and oil discharge, nor will it affect the normal operation of the water cooling system 2. The pin 501 is inserted into the slot 503 to fix the connection between the segmented plug-in 505 and the segmented support column 502. The segmented ball group 506 makes the oil tank supported on the segmented support column 502 more flexible, making the oil tank easy to transport. The ground trough 601 can be provided with drainage equipment to discharge water accumulated on the base 6 to prevent water from corroding the base 6 for a long time.
[0032] When working, pull the handle 107, open the oil cover 108, insert the oil delivery pipe through the oil delivery pipe 109 into the cylindrical tank body 101, deliver oil, and cover the oil delivery cap 108 with oil. When the oil is submerged in the temperature sensor 305, it is detected that the temperature is too high. The magnetic coupling machine 301 drives the roller 303 to rotate slowly, and the roller 303 drives the stirring blade 304 to make the internal lubricating oil flow around the inside of the tank body. When the temperature sensor 305 is triggered, the temperature control panel 202 receives a signal, and the water cooling is connected through the hole in the box body 201. The cylindrical water pipe 209 flows to the angled connecting pipe 205, and then flows into the square circular water pipe 206 through the square water trough 207 and the square connecting column 203, absorbing the heat emitted by the cylindrical tank body 101, and then flows back to the box body 201 through the square water trough 207, the angled connecting pipe 205 and the cylindrical water pipe 209 below for circulation. When the oil temperature reaches the specified temperature, the temperature control panel 202 controls the water cooling circulation to stop. When oil is needed, the oil outlet cover 105 is opened and the oil flows out from the L-shaped oil outlet pipe 104.
[0033] Through the above steps, using the water cooling system 2 and the stirring system 3, after the lubricating oil is loaded into the oil storage device, the stirring system 3 is operated to make the internal lubricating oil flow to the outside, and the temperature control device triggers the water cooling system 2. The water flow absorbs the heat of the lubricating oil, and the low-temperature lubricating oil will no longer damage the tank body. The coordinated work of the water cooling system 2 and the stirring system 3 ensures that the oil can maintain stability and performance, and solves the problem that the temperature of the lubricating oil is too high after production, and the oil storage device cannot store high-temperature oil for a long time, which may cause the oil storage device to damage the tank body under continuous high temperature.
[0034] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.
Claims
1. A high temperature resistant oil storage device, comprising a base (6); characterized in that: The invention also includes an oil storage device (1), a water cooling system (2), a stirring system (3), a cover body mechanism (4) and a support mechanism (5); the support mechanism (5) is fixedly installed on the right side of the base (6), the upper end of the support mechanism (5) holds up the cover body mechanism (4), the oil storage device (1) is arranged inside the cover body mechanism (4), the outer ring of the oil storage device (1) is fixedly connected to the water cooling system (2), and the stirring system (3) is installed inside the oil storage device (1).
2. The high temperature resistant oil storage device according to claim 1, characterized in that: The oil storage device (1) comprises a cylindrical tank body (101), a No. 1 assembly groove (102), a No. 1 glass cover (103), an L-shaped oil outlet pipe (104), an oil outlet cover (105), a connecting hole (106), a handle (107), an oil delivery cover (108), an oil delivery pipe (109), a mounting hole (110) and a semicircular tank body (111); the cylindrical tank body (101) is fixedly mounted with the circular tank body (111) at both ends thereof, the No. 1 assembly groove (102) is provided in the cylindrical tank body (101), and the No. 1 glass cover (103) is mounted in the No. 1 assembly groove ( 102), the upper end of the cylindrical tank body (101) is fixedly connected to the oil delivery pipe (109), the oil delivery pipe (109) is movably connected to the oil delivery cover (108) above, the oil delivery cover (108) is fixedly connected to the handle (107) above, the lower end of the rear semicircular tank body (111) has a connecting hole (106) passing through, the connecting hole (106) is fixedly connected to the L-shaped oil outlet pipe (104) below, the rear end of the L-shaped oil outlet pipe (104) is movably connected to the oil outlet cover (105), and mounting holes (110) are set on the domes of the semicircular tank body (111) at the front and rear ends.
3. The high temperature resistant oil storage device according to claim 2, characterized in that: The water cooling system (2) comprises a box (201), a temperature control panel (202), a square connecting column (203), a square hole groove (204), an angle connecting pipe (205), a square ring water pipe (206), a square water tank (207), a converter (208), a cylindrical water pipe (209), a water cooler fan blade (210) and a protective cover (211); the temperature control panel (202) is fixedly mounted on the front surface of the box (201), 14 water cooler fan blades (210) are arranged inside the upper end of the box (201), and the upper end of the box (201) is movably connected to the protective cover (211). The right side of the box (201) has four holes for movably connecting a cylindrical water pipe (209). The front end of the cylindrical water pipe (209) is movably connected to the converter (208). The front end of the converter (208) is movably connected to the rear end of the angled connecting pipe (205). The front end of the angled connecting pipe (205) is movably connected to the square water trough (207). Seven square hole slots (204) are evenly arranged inside the square water trough (207). One end of the square water trough (207) is fixedly connected to the square connecting column (203). The square connecting column (203) is fixedly installed at the upper and lower ends of the square circular water pipe (206).
4. The high temperature resistant oil storage device according to claim 3, characterized in that: The stirring system (3) comprises a magnetic coupling machine (301), a rubber connecting sleeve (302), a roller (303), stirring blades (304) and a temperature sensor (305); the end of the magnetic coupling machine (301) forms a magnetic movable connection with the front end of the roller (303); the front and rear ends of the roller (303) are provided with movable rubber connecting sleeves (302); the outer ring of the roller (303) surrounds five groups of stirring blades (304) that are fixedly connected; and the temperature sensor (305) is fixedly installed in the middle of the roller (303).
5. The high temperature resistant oil storage device according to claim 4, characterized in that: The cover body mechanism (4) comprises a cylindrical barrel cover (401), a No. 2 glass cover plate (402), a No. 2 assembly groove (403), a cover (404), a cylindrical water pipe groove (405), an oil delivery groove (406) and an oil outlet pipe groove (407); the cylindrical barrel cover (401) has four cylindrical water pipe grooves (405) dug through at the upper and lower ends on the left side, the middle upper end of the cylindrical barrel cover (401) is provided with an oil delivery groove (406), the right side of the cylindrical water pipe groove (405) is provided with a No. 2 assembly groove (403), the No. 2 glass cover plate (402) is movably connected to the interior of the No. 2 assembly groove (403), the front and rear ends of the cylindrical water pipe groove (405) are movably connected to the cover (404), and the bottom rear end of the cylindrical water pipe groove (405) is provided with an oil outlet pipe groove (407).
6. The high temperature resistant oil storage device according to claim 5, characterized in that: The support mechanism (5) comprises a latch (501), a segmented support column (502), a slot (503), a segmented assembly slot (504), a segmented plug-in unit (505), a segmented ball group (506), an integral support column (507), an integral assembly slot (508), an integral plug-in unit (509) and an integral ball group (510); the integral support column (507) is provided with an integral assembly slot (508), the integral assembly slot (508) is movably connected to the integral plug-in unit (509), the upper end of the integral plug-in unit (509) is fixedly connected to the integral ball group (510), the segmented support columns (502) are provided at the same positions on the front and rear sides of the integral support column (507), the segmented support columns (502) are mirror images of the same, the segmented support columns (502) are provided with a through slot (503) inside the segmented support column (502), and the slot (503) is movably connected to the latch (501).
7. The high temperature resistant oil storage device according to claim 6, characterized in that: Two ground troughs (601) are provided at the front end of the base (6), and an external drainage pump is installed on the ground troughs (601).