Quartz sand gas-liquid inclusion removal equipment
By designing a quartz sand gas-liquid inclusion removal device that includes heating, kneading and multifunctional treatment, the complex problems of acid liquid not flowing and treatment in existing equipment are solved, and efficient and uniform pickling and drying treatment are achieved.
Patent Information
- Application Number
- CN202510098158.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-05-02
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing equipment for pickling gas liquid inclusion removal of quartz sand is unable to flow during use, resulting in uneven reaction of quartz sand particles, reducing the reaction rate, and additional treatment is required after use.
A quartz sand gas-liquid inclusion removal equipment is designed, including a bracket, shell, tank, arc-shaped heating plate, rotating seat, twisted dragon, flow guide, U-shaped plate, rubbing mechanism and transition cylinder. By heating acid liquid, lifting fallen quartz sand and acid liquid, it ensures uniform reaction, and pickling, rinsing and drying are achieved in the equipment.
Through heating and rubbing, the chemical reaction rate and uniformity of quartz sand particles and acid liquid are improved, the equipment control system is simplified, and the convenience of pickling, rinsing and drying is achieved.
Smart Images

Figure CN119909969A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of quartz sand processing equipment, in particular to a quartz sand gas-liquid inclusion removal device. Background Art
[0002] Gas-liquid inclusions are small enclosed spaces contained within mineral crystals, which contain gas, liquid, or a mixture of the two. For example, in quartz sand, when quartz cools from a molten state and crystallizes, the surrounding fluid (may be captured in the growing crystal, thereby forming gas-liquid inclusions within the quartz crystal. Since the gas-liquid inclusions in quartz sand have a significant impact on its optical, mechanical, thermal, chemical, electrical properties and processing technology, the gas-liquid inclusions formed in the quartz sand can be removed by pickling. However, during the use of the current quartz sand pickling gas-liquid inclusion removal equipment, the quartz sand is generally directly immersed in the acid solution, and the acid solution cannot flow, resulting in uneven reaction of the quartz sand particles at different positions, reducing the reaction rate of the quartz sand particles. After the quartz sand is immersed in the acid solution, it needs to be transferred and additionally treated with cleaning equipment and drying equipment. Therefore, we propose a quartz sand gas-liquid inclusion removal equipment to solve the above problems. Summary of the invention
[0003] (I) Technical issues solved 22
[0004] In view of the deficiencies in the prior art, the present invention provides a quartz sand gas-liquid inclusion removal device, which solves the problems raised in the above-mentioned background technology.
[0005] (II) Technical solution
[0006] In order to achieve the above-mentioned purpose, the present invention specifically adopts the following technical solutions:
[0007] A device for removing gas-liquid inclusions in quartz sand comprises a bracket, wherein two mounting holes provided in the bracket are both fixed with two shells, a tank body 1 is fixed inside the upper shell, a tank body 2 is fixed inside the lower shell, four arc-shaped heating plates are fixed to the outer walls of the tank bodies 1 and 2, the bottom of the tank body 1 is rotatably connected to a rotating seat 1 through a bearing, a knife gate valve 1 is installed on the rotating seat 1, an upper auger fixed to the inside of the rotating seat 1 is arranged above the knife gate valve 1, the top of the upper auger is rotatably connected to the top of the tank body 1 through a bearing, a cylinder body 1 fixed to the inner wall of the top of the tank body 1 is arranged on the outside of the upper auger, two diversion ports provided in the cylinder body 1 are both connected and fixed with diversion buckets, two openings provided in the top of the tank body 1 are both fixed with U-shaped plates, receiving buckets are fixed between the inner walls on both sides of the two U-shaped plates, and a receiving bucket is arranged inside the tank body 1 for lifting the falling quartz sand and acid liquid by the upper auger The kneading mechanism for auxiliary mixing, the feed inlet of the tank body one is connected and fixed with a feed pipe, the two drainage holes opened at the bottom of the tank body one are both fixed with circular filter screens, the lower part of the circular filter screen is provided with a drainage pipe fixed to the bottom of the tank body one, and the drainage pipe is equipped with an electromagnetic valve, the top of the tank body two is rotatably connected with a rotating seat two through a bearing, a lower auger is fixed inside the rotating seat two, a limiting cover fixed to the inside of the tank body two is arranged on the outside of the lower auger, a cylinder body two is fixed inside the limiting cover, four make way openings are opened on the surface of the cylinder body two, the bottom end of the cylinder body two passes through the tank body two and extends to the outside thereof and is equipped with a knife gate valve two, a transition cylinder is sealed and rotatably connected between the rotating seat one and the rotating seat two, four support rods are fixed on the bracket, a support seat is fixed between the four support rods, and a driving mechanism for driving the rotating seat one and the rotating seat two to rotate is installed on the support seat.
[0008] Furthermore, the kneading mechanism includes guide seats respectively fixed to the inner walls of the top of the U-shaped plate, the guide seats are rotatably connected with rotating shafts through bearings, the tops of the rotating shafts are rotatably connected with the corresponding guide seats through bearings, the tops of the rotating shafts are fixed with cams, the tops of the upper auger are fixed with toggle plates for driving the two cams to rotate, the surfaces of the rotating shafts are fixed with transmission gears, both side walls of the two U-shaped plates are slidably penetrated with L-shaped racks, the L-shaped racks are respectively meshed with corresponding transmission gears, one side wall of the L-shaped racks is fixed with spring 1, the other end of the spring 1 is respectively fixedly connected to the inner walls of the corresponding U-shaped plates, two kneading plates are arranged inside the receiving bucket, one side wall of the kneading plates is fixed with bent rods, the other ends of the bent rods respectively slide through the corresponding receiving buckets and extend to the outside thereof, and one end of the L-shaped rack is respectively fixedly connected to one end of the corresponding bent rod.
[0009] Furthermore, the driving mechanism includes a driving shaft rotatably connected between the upper and lower inner walls of the support seat through a bearing, a driving gear is fixed on the surface of the driving shaft, four mounting plates are fixed on the top of the tank body 2, two connecting seats are fixed between the four mounting plates, a driving circular plate is fixed on the surface of the transition cylinder, and a driven circular plate is rotatably connected to the interior of the connecting seat, the upper driven circular plate is fixed to the surface of the rotating seat 1, and the lower driven circular plate is fixed to the surface of the rotating seat 2, four hollow blocks are fixed on the surface of the two driven circular plates, the interior of the hollow blocks is slidably connected with a trapezoidal block 1, a spring 2 is fixed on the trapezoidal block 1, and the other end of the spring 2 is respectively fixedly connected to the corresponding driven circular plate, four trapezoidal blocks 2 adapted to the trapezoidal block 1 are fixed on the upper and lower surfaces of the driving circular plate, and the trapezoidal blocks 2 are respectively fitted with the corresponding trapezoidal blocks 1, and a driven gear ring is fixed on the surface of the driving circular plate, and the driven gear ring is meshed with the driving gear.
[0010] Furthermore, annular grooves are provided on the surfaces of the two connecting seats, and limiting rings matching the annular grooves are fixed on the upper and lower surfaces of the active circular plate.
[0011] Furthermore, two stirring paddles are fixed to the top of the rotating seat 1, and arc-shaped rods matching the tank body 1 are fixed to the surfaces of the stirring paddles.
[0012] Furthermore, exhaust pipes are fixed at the exhaust holes opened at the tops of the tank bodies 1 and 2, and activated carbon honeycomb panels and protective nets are fixed inside the exhaust pipes.
[0013] Furthermore, a conical plate is fixed inside the limiting cover, and a through hole for making way for the lower auger shaft is opened on the surface of the conical plate.
[0014] Furthermore, a conical bucket is connected and fixed to the top end of the feed pipe, and a cover plate is hinged to the top end of the conical bucket.
[0015] Furthermore, the knife gate valve 1 and the knife gate valve 2 are both wirelessly controlled.
[0016] (III) Beneficial effects
[0017] Compared with the prior art, the present invention provides a quartz sand gas-liquid inclusion removal device, which has the following beneficial effects:
[0018] The present invention, by arranging a bracket, a shell, a tank body 1, a tank body 2, an arc-shaped heating plate, a rotating seat 1, an upper auger, a cylinder body 1, a guide bucket, a U-shaped plate, a receiving bucket, a kneading mechanism and a transition cylinder, during the use of the quartz sand gas-liquid inclusion removal device, after the quartz sand particles and the acid solution are sent to the interior of the tank body 1, the acid solution can be heated by using the arc-shaped heating plate fixed on the outer surface of the tank body 1, and when the quartz sand particles are immersed in the acid solution, the quartz sand particles and the acid solution can be lifted and dropped by using the arranged upper auger, and at this time, the quartz sand particles can be ensured to be All of them can be fully pickled, which can accelerate the chemical reaction rate and uniformity of the acid and quartz sand. When the lifted quartz sand particles and the acid fall, the quartz sand particles can be repeatedly kneaded by the set kneading mechanism. At this time, the chemical reaction efficiency between the quartz sand particles and the acid can be further improved. At the same time, after the quartz sand is pickled by tank body one, it can be directly used to rinse the quartz sand again. Finally, the rinsed quartz sand can directly fall into the interior of tank body two for drying, which is convenient to use.
[0019] The present invention, by setting a pair of support rods, support seats and driving mechanisms, can drive the upper auger inside tank body one and the lower auger inside tank body two to rotate with the cooperation of the driving mechanism, and when it drives the upper auger to rotate in the forward direction, the lower auger will not rotate at this time, on the contrary, when it drives the lower auger to rotate in the reverse direction, the upper auger will not rotate at this time, thereby simplifying the complexity of the equipment control system. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention from a first viewing angle;
[0021] Figure 2 It is a schematic diagram of the overall structure of the present invention from a second viewing angle;
[0022] Figure 3 This is a structural schematic diagram of a tank body of the present invention;
[0023] Figure 4 This is a schematic diagram of the structure of the connecting seat of the present invention;
[0024] Figure 5 This is a schematic diagram of the active circular plate structure of the present invention;
[0025] Figure 6 It is a structural schematic diagram of the kneading mechanism of the present invention.
[0026] In the figure: 1, bracket; 2, shell; 3, tank body 1; 4, tank body 2; 5, arc heating plate; 6, rotating seat 1; 7, knife gate valve 1; 8, upper auger; 9, cylinder body 1; 10, guide bucket; 11, U-shaped plate; 12, kneading mechanism; 1201, guide seat; 1202, rotating shaft; 1203, cam; 1204, toggle plate; 1205, transmission gear; 1206, L-shaped rack; 1207, spring 1; 1208, kneading plate; 1209, bent rod; 13, feed pipe; 14, circular filter; 15, drain pipe; 16, rotating seat 2; 17, lower auger; 18, limit cover; 19, cylinder body 2; 20, transition cylinder ; 21. Support rod; 22. Support seat; 23. Driving mechanism; 2301. Driving shaft; 2302. Driving gear; 2303. Mounting plate; 2304. Connecting seat; 2305. Driving circular plate; 2306. Driven circular plate; 2307. Hollow block; 2308. Trapezoidal block one; 2309. Spring two; 2310. Trapezoidal block two; 2311. Driven gear ring; 2312. Annular groove; 2313. Limiting ring; 24. Receiving bucket; 25. Agitator paddle; 26. Arc rod; 27. Exhaust pipe; 28. Activated carbon honeycomb plate; 29. Protective net; 30. Conical plate; 31. Conical bucket; 32. Cover plate; 33. Knife gate valve two. DETAILED DESCRIPTION
[0027] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0028] Example
[0029] like Figure 1 , Figure 2 and Figure 3As shown, a quartz sand gas-liquid inclusion removal device proposed in one embodiment of the present invention comprises a bracket 1, two mounting holes opened in the bracket 1 are each fixed with two shells 2, a tank body 1 3 is fixed inside the upper shell 2, a tank body 2 4 is fixed inside the lower shell 2, exhaust pipes 27 are fixed at the exhaust holes opened on the tops of the tank bodies 1 3 and 2 4, activated carbon honeycomb panels 28 and protective nets 29 are fixed inside the exhaust pipes 27, steam generated when the acid is heated and dried can be discharged by the exhaust pipes 27, the activated carbon honeycomb panels 28 can purify the discharged gas, and the protective nets 29 can protect the pipe openings of the exhaust pipes 27, thereby preventing impurities such as dust in the external air from passing through. The exhaust pipe 27 enters into the interior of the tank body 13 and the tank body 24. Four arc-shaped heating plates 5 are fixed to the outer walls of the tank body 13 and the tank body 24. The bottom of the tank body 3 is rotatably connected to a rotating seat 6 through a bearing. A knife gate valve 7 is installed on the rotating seat 6. An upper auger 8 fixed to the inside of the rotating seat 6 is arranged above the knife gate valve 7. The top of the upper auger 8 is rotatably connected to the top of the tank body 3 through a bearing. The outside of the upper auger 8 is provided with a cylinder 9 fixed to the inner wall of the top of the tank body 3. The two diversion ports opened in the cylinder 9 are connected and fixed with a diversion bucket 10. The two through ports opened in the top of the tank body 3 are fixed with a U-shaped plate 11. A receiving bucket 24 is fixed between the inner walls on both sides of the two U-shaped plates 11. The interior of the tank body 3 is provided with a The upper auger 8 lifts the falling quartz sand and acid liquid to assist in mixing the kneading mechanism 12, the feed port of the tank body 3 is connected and fixed with a feed pipe 13, the two drainage holes opened at the bottom of the tank body 3 are fixed with circular filter screens 14, and the circular filter screens 14 are provided with drainage pipes 15 fixed to the bottom of the tank body 3, and the drainage pipes 15 are installed with solenoid valves, the top of the tank body 4 is rotatably connected with a rotating seat 2 16 through a bearing, and the interior of the rotating seat 2 16 is fixed with a lower auger 17, and the outer part of the lower auger 17 is provided with a limit cover 18 fixed to the inside of the tank body 2 4, and the interior of the limit cover 18 is fixed with a conical plate 30, and the surface of the conical plate 30 is provided with a through hole for making way for the shaft of the lower auger 17, and the conical plate 30 is provided, so that after dehydration, When the quartz sand particles enter the interior of the tank body 24 through the transition cylinder 20 and fall, the quartz sand can be directly sent to the cavity between the tank body 24 and the limiting cover 18. The limiting cover 18 is fixed with a cylinder body 219, and four clearance openings are opened on the surface of the cylinder body 219. The bottom end of the cylinder body 219 passes through the tank body 24 and extends to the outside thereof and is installed with a knife gate valve 23. The transition cylinder 20 is sealed and rotatably connected between the rotating seat 16 and the rotating seat 216. Four support rods 21 are fixed on the bracket 1, and a support seat 22 is fixed between the four support rods 21. A driving mechanism 23 for driving the rotating seat 16 and the rotating seat 216 to rotate is installed on the support seat 22. When using this quartz sand gas-liquid inclusion removal device, it is placed in a suitable position.The acid liquid and quartz sand particles can be sent to the interior of the tank body 3 through the feed pipe 13, and the arc-shaped heating plate 5 on the surface of the tank body 3 can be turned on to heat the mixed acid liquid and quartz sand particles. Then, the driving mechanism 23 is started to drive the transition cylinder 20 to rotate forward, which can drive the rotating seat 6 to rotate, and the rotating seat 16 will not rotate at this time. When the rotating seat 6 rotates, it will drive the upper auger 8 to rotate. At this time, with the cooperation of the cylinder body 9, when the upper auger 8 rotates, the mixture of acid liquid and quartz sand particles will be lifted to a certain height and fall through the guide bucket 10. Then, the mixture that falls through the guide bucket 10 will enter the receiving bucket 24. Inside, since the upper auger 8 rotates, it will drive the kneading mechanism 12 to start. At this time, the mixture in the receiving bucket 24 will be kneaded by the kneading mechanism 12 and then fall down. This process is repeated, thereby accelerating the chemical reaction rate of the acid and the quartz sand particles, thereby increasing the speed of removing the gas-liquid inclusions in the quartz sand particles. After subsequent pickling, the solenoid valve on the drain pipe 15 can be opened. At this time, the used acid can be discharged under the filtration of the circular filter 14. When rinsing the quartz sand particles, deionized water can be sent to the inside of the tank body 3 through the feed pipe 13, and then the above-mentioned operation of pickling the quartz sand particles can be repeated. At this time, under the action of the kneading mechanism 12, the quartz sand particles can be cleaned more thoroughly. After the subsequent cleaning is completed, the used cleaning water can be discharged to the tank body 3 through the drain pipe 15. When the quartz sand particles are pickled and cleaned by the tank body 3, the knife gate valve 7 on the rotating seat 6 can be opened, and then the quartz sand particles inside the tank body 3 will fall into the inside of the tank body 2 4 through the transition tube 20, and after the quartz sand particles fall into the inside of the tank body 2 4, they will fall into the cavity between the limit cover 18 and the tank body 2 4. At this time, the arc heating plate 5 on the tank body 2 4 can be used to heat and dry the quartz sand particles, and then When the driving mechanism 23 is started to drive the transition cylinder 20 to reverse, the rotating seat 16 can be driven to rotate. At this time, the rotating seat 16 will not rotate. After the rotating seat 16 rotates, it will drive the lower auger 17 to rotate. Then, with the cooperation of the cylinder 19, the lower auger 17 will rotate to lift the quartz sand particles to a certain height. At this time, under the guidance of the limit cover 18, it can fall again into the cavity between the limit cover 18 and the tank 4. Repeat this process, so that the quartz sand particles can be quickly dried. Finally, the knife gate valve 33 on the cylinder 19 is opened, and then the dried quartz sand particles can be discharged into the tank 4.
[0030] like Figure 2 and Figure 6As shown, in some embodiments, the kneading mechanism 12 includes guide seats 1201 respectively fixed to the inner wall of the top of the U-shaped plate 11, the interior of the guide seats 1201 is rotatably connected to the rotating shaft 1202 through a bearing, the top of the rotating shaft 1202 is rotatably connected to the corresponding guide seat 1201 through a bearing, the top of the rotating shaft 1202 is fixed with a cam 1203, the top of the upper auger 8 is fixed with a toggle plate 1204 for driving the two cams 1203 to rotate, and the surface of the rotating shaft 1202 is fixed with a transmission gear 1205 , L-shaped racks 1206 are slidably penetrated on both side walls of the two U-shaped plates 11, and the L-shaped racks 1206 are respectively meshed and connected with the corresponding transmission gears 1205, and a spring 1207 is fixed on one side wall of the L-shaped rack 1206, and the other end of the spring 1207 is respectively fixedly connected to the inner wall of the corresponding U-shaped plate 11, and two kneading plates 1208 are arranged inside the receiving bucket 24, and a curved rod 1209 is fixed on one side wall of the kneading plate 1208, and the other end of the curved rod 1209 slides through the corresponding receiving bucket 24. And extend to the outside thereof, one end of the L-shaped rack 1206 is fixedly connected to one end of the corresponding bent rod 1209. When in use, when the upper auger 8 rotates, it will drive the toggle plate 1204 to rotate, and the toggle plate 1204 will drive the two cams 1203 to rotate. After the cams 1203 rotate, they will respectively drive the rotating shaft 1202 to rotate, and the rotating shaft 1202 will drive the transmission gear 1205 to rotate. At this time, the two L-shaped racks 1206 meshing with the same transmission gear 1205 will move in the opposite direction, and the L-shaped racks 1206 will rotate. After the movement, the spring 1207 will be in a compressed state, and the L-shaped rack 1206 will drive the bent rod 1209 to move, and the bent rod 1209 will drive the kneading plate 1208 to move. Since the dial 1204 intermittently drives the cam 1203 to rotate, the two kneading plates 1208 inside the same receiving bucket 24 can be moved back and forth with the cooperation of the spring 1207. Therefore, when the quartz sand is removed from the gas-liquid inclusions by acid and its subsequent cleaning, it can enhance the effect.
[0031] like Figure 2 , Figure 4 and Figure 5As shown, in some embodiments, the driving mechanism 23 includes a driving shaft 2301 rotatably connected between the upper and lower inner walls of the support seat 22 through a bearing, a driving gear 2302 is fixed to the surface of the driving shaft 2301, four mounting plates 2303 are fixed to the top of the tank body 24, two connecting seats 2304 are fixed between the four mounting plates 2303, an active circular plate 2305 is fixed to the surface of the transition cylinder 20, and an annular groove 2312 is provided on the surfaces of the two connecting seats 2304, and the upper and lower surfaces of the active circular plate 2305 are fixed with a limiting ring 2313 adapted to the annular groove 2312, which can play an auxiliary supporting role for the active circular plate 2305, so that it will be more stable during rotation, and the interior of the connecting seat 2304 is rotated. A driven circular plate 2306 is connected, the upper driven circular plate 2306 is fixed on the surface of the rotating seat 16, and the lower driven circular plate 2306 is fixed on the surface of the rotating seat 216. Four hollow blocks 2307 are fixed on the surfaces of the two driven circular plates 2306. Trapezoidal blocks 1 2308 are slidably connected inside the hollow blocks 2307. Springs 2309 are fixed on the trapezoidal blocks 1 2308. The other ends of the springs 2309 are respectively fixedly connected to the corresponding driven circular plates 2306. Four trapezoidal blocks 2310 adapted to the trapezoidal blocks 1 2308 are fixed on the upper and lower surfaces of the active circular plate 2305. The trapezoidal blocks 2310 are respectively fitted with the corresponding trapezoidal blocks 1 2308. The driven gear ring 2311 is meshed and connected with the driving gear 2302. When in use, the tank body 3 is used to pickle and clean the quartz sand particles. At this time, the motor is started to drive the driving shaft 2301 to rotate. After the driving shaft 2301 rotates, it will drive the driving gear 2302 to rotate, and after the driving gear 2302 rotates, it will drive the driven gear ring 2311 to rotate forward. When the driven gear ring 2311 rotates forward, it will drive the driving circular plate 2305 to rotate. At this time, with the cooperation of the hollow block 2307, the trapezoidal block 1 2308, the spring 2309 and the trapezoidal block 2310, when the forward rotating active circular plate 2305 drives the trapezoidal block 2310 to rotate, the trapezoidal block 2310 on its upper surface cannot squeeze the trapezoidal block 1 above it. 2308 is contracted, and the trapezoidal block 2310 on its lower surface can squeeze the trapezoidal block 1 2308 below to shrink it. Therefore, when the active circular plate 2305 rotates, it can drive the driven circular plate 2306 above to rotate, and then drive the rotating seat 16 to rotate forward, and the rotating seat 16 will not drive the rotating seat 16 to rotate through the driven circular plate 2306 below. On the contrary, when the reversed active circular plate 2305 drives the trapezoidal block 2310 to rotate, the trapezoidal block 2310 above can squeeze the trapezoidal block 1 2308 above it to shrink, while the trapezoidal block 2310 on its lower surface cannot squeeze the trapezoidal block 1 2308 below to shrink it, and then drive the rotating seat 16 to reverse,The rotating seat 16 will not be driven to rotate by the driven circular plate 2306 above.
[0032] like Figure 3 As shown, in some embodiments, two stirring paddles 25 are fixed to the top of the rotating seat 6, and the surfaces of the stirring paddles 25 are fixed with arc rods 26 that are compatible with the tank body 3. The set stirring paddles 25 can further enhance the effect when the quartz sand particles are pickled to remove gas-liquid inclusions and cleaned. By installing the arc rods 26 on the stirring paddles 25 to fit with the inner wall of the tank body 3, it will be more stable during the rotation process.
[0033] like Figure 3 As shown, in some embodiments, the top end of the feed pipe 13 is connected and fixed with a conical bucket 31, and the top end of the conical bucket 31 is hinged with a cover plate 32. The conical bucket 31 can be used to increase the pipe mouth area of the feed pipe 13, so that quartz sand and acid liquid can be delivered to the inside of the tank body 3, and the cover plate 32 can be used to seal the pipe mouth of the feed pipe 13, thereby preventing the odorous steam generated after the acid liquid in the tank body 3 is heated from being discharged through the feed pipe 13.
[0034] like Figure 1 and Figure 3 As shown, in some embodiments, knife gate valve 1 7 and knife gate valve 2 33 are both controlled wirelessly. By connecting knife gate valve 1 7 and knife gate valve 2 33 by wireless control, the convenience of both during use is enhanced. After knife gate valve 1 7 is wirelessly controlled, interference can be avoided when rotating seat 1 6 drives it to rotate.
[0035] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A quartz sand gas-liquid inclusion removal device, comprising a support (1), characterized in that: Two housings (2) are fixed inside the two mounting holes of the bracket (1), a tank body (3) is fixed inside the upper housing (2), a tank body (4) is fixed inside the lower housing (2), four arc-shaped heating plates (5) are fixed to the outer walls of the tank bodies (3) and (4), the bottom of the tank body (3) is rotatably connected to a rotating seat (6) via a bearing, a knife gate valve (7) is installed on the rotating seat (6), an upper auger (8) fixed inside the rotating seat (6) is arranged above the knife gate valve (7), and the top of the upper auger (8) is connected to the rotating seat (6) via a shaft. The support is rotatably connected to the top of the tank body (3); the outer part of the upper auger (8) is provided with a cylinder (9) fixed to the inner wall of the top of the tank body (3); the two diversion ports opened in the cylinder (9) are connected and fixed with a diversion bucket (10); the two openings opened in the top of the tank body (3) are fixed with a U-shaped plate (11) inside; the inner walls on both sides of the two U-shaped plates (11) are fixed with a receiving bucket (24); the inside of the tank body (3) is provided with a kneading mechanism (12) for assisting the mixing of the quartz sand and the acid liquid lifted by the upper auger (8); the inlet of the tank body (3) A feed pipe (13) is connected and fixed at the material inlet, and circular filter screens (14) are fixed inside the two drainage holes opened at the bottom of the tank body (3), and drainage pipes (15) fixed to the bottom of the tank body (3) are arranged below the circular filter screens (14), and electromagnetic valves are installed on the drainage pipes (15), and the top of the tank body (4) is rotatably connected to a rotating seat (16) through a bearing, and a lower auger (17) is fixed inside the rotating seat (16), and a limit cover (18) fixed inside the tank body (4) is arranged outside the lower auger (17), and the limit cover (18) is fixed to the inside of the tank body (4). ) is fixed inside, and four clearance openings are opened on the surface of the cylinder body (19). The bottom end of the cylinder body (19) passes through the tank body (4) and extends to the outside thereof and is installed with a knife gate valve (33). A transition cylinder (20) is sealed and rotatably connected between the rotating seat (6) and the rotating seat (16). Four support rods (21) are fixed on the bracket (1), and a support seat (22) is fixed between the four support rods (21). A driving mechanism (23) for driving the rotating seat (6) and the rotating seat (16) to rotate is installed on the support seat (22).
2. The quartz sand gas-liquid inclusion removal device according to claim 1, characterized in that: The kneading mechanism (12) comprises guide seats (1201) respectively fixed on the inner wall of the top of the U-shaped plate (11); the interior of the guide seats (1201) is rotatably connected to a rotating shaft (1202) via a bearing; the top of the rotating shaft (1202) is rotatably connected to the corresponding guide seat (1201) via a bearing; a cam (1203) is fixed to the top of the rotating shaft (1202); a toggle plate (1204) for driving the two cams (1203) to rotate is fixed to the top of the upper auger (8); a transmission gear (1205) is fixed to the surface of the rotating shaft (1202); and L-shaped racks (1205) are slidably penetrated through the two side walls of the two U-shaped plates (11). 6), the L-shaped rack (1206) is respectively meshed with the corresponding transmission gear (1205), a spring (1207) is fixed to one side wall of the L-shaped rack (1206), the other end of the spring (1207) is respectively fixed to the inner wall of the corresponding U-shaped plate (11), two kneading plates (1208) are arranged inside the receiving bucket (24), a bent rod (1209) is fixed to one side wall of the kneading plate (1208), the other end of the bent rod (1209) slides through the corresponding receiving bucket (24) and extends to the outside thereof, and one end of the L-shaped rack (1206) is respectively fixed to one end of the corresponding bent rod (1209).
3. The quartz sand gas-liquid inclusion removal device according to claim 1, characterized in that: The driving mechanism (23) comprises a driving shaft (2301) rotatably connected between the upper and lower inner walls of the support seat (22) through a bearing, a driving gear (2302) is fixed on the surface of the driving shaft (2301), four mounting plates (2303) are fixed on the top of the tank body (4), two connecting seats (2304) are fixed between the four mounting plates (2303), a driving circular plate (2305) is fixed on the surface of the transition cylinder (20), and driven circular plates (2306) are rotatably connected inside the connecting seats (2304), the upper driven circular plate (2306) is fixed on the surface of the rotating seat (6), and the lower driven circular plate (2306) is fixed on the surface of the rotating seat (16), and the two driven circular plates (2306) are fixed on the surface of the rotating seat (16). Four hollow blocks (2307) are fixed on the surface, and the interior of the hollow blocks (2307) is slidably connected with a trapezoidal block 1 (2308), and a spring 2 (2309) is fixed on the trapezoidal block 1 (2308), and the other end of the spring 2 (2309) is respectively fixedly connected to the corresponding driven circular plate (2306), and the upper and lower surfaces of the active circular plate (2305) are fixed with four trapezoidal blocks 2 (2310) adapted to the trapezoidal block 1 (2308), and the trapezoidal blocks 2 (2310) are respectively fitted with the corresponding trapezoidal blocks 1 (2308), and the surface of the active circular plate (2305) is fixed with a driven gear ring (2311), and the driven gear ring (2311) is meshed with the active gear (2302).
4. The quartz sand gas-liquid inclusion removal device according to claim 3, characterized in that: The surfaces of the two connecting seats (2304) are both provided with an annular groove (2312), and the upper and lower surfaces of the active circular plate (2305) are both fixed with limiting rings (2313) that are compatible with the annular groove (2312).
5. The quartz sand gas-liquid inclusion removal device according to claim 1, characterized in that: Two stirring paddles (25) are fixed on the top of the rotating seat (6), and arc-shaped rods (26) matching the tank body (3) are fixed on the surface of the stirring paddles (25).
6. The quartz sand gas-liquid inclusion removal device according to claim 1, characterized in that: An exhaust pipe (27) is fixed at the exhaust holes opened at the top of the tank body 1 (3) and the tank body 2 (4), and an activated carbon honeycomb panel (28) and a protective net (29) are fixed inside the exhaust pipe (27).
7. The quartz sand gas-liquid inclusion removal device according to claim 1, characterized in that: A conical plate (30) is fixed inside the limiting cover (18), and a through hole for making way for the shaft of the lower auger (17) is provided on the surface of the conical plate (30).
8. The quartz sand gas-liquid inclusion removal device according to claim 1, characterized in that: The top end of the feed pipe (13) is connected and fixed with a conical bucket (31), and the top end of the conical bucket (31) is hinged with a cover plate (32).
9. The quartz sand gas-liquid inclusion removal device according to claim 1, characterized in that: The knife gate valve 1 (7) and the knife gate valve 2 (33) are both wirelessly controlled.