Cyclone dust collector for oil field additive production
By designing an exhaust enclosure mechanism on the cyclone dust collector, the problem of birds and insects entering due to the gap between the protective cover and the exhaust port is solved, achieving comprehensive enclosure protection of the exhaust port and improving stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-03-13
AI Technical Summary
When a protective cover is installed on the top of the exhaust port of an existing cyclone dust collector, there is a gap between the protective cover and the exhaust port, which allows birds and insects to directly enter the dust collector, affecting the comprehensiveness of protection and the stability of operation.
An exhaust enclosure mechanism was designed, including an enclosure frame, an enclosure cover, an enclosure net, and a lifting mechanism. The enclosure cover is raised and positioned by magnetic positioning and lifting groove rods, and the enclosure net provides comprehensive protection for the exhaust outlet.
It improves the overall protection and operational stability of the exhaust port, prevents birds and insects from entering, and enhances the ease of positioning and height adjustment adaptability of the exhaust port's enclosure cover.
Smart Images

Figure CN223988599U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of oilfield additive production technology, and more specifically, to a cyclone dust collector for oilfield additive production. Background Technology
[0002] Cyclone dust collectors are widely used gas-solid separation devices in industrial fields, especially in applications such as oilfield additive production where dust and particulate matter emissions need to be controlled. Their working principle is to use centrifugal force to separate suspended particles from the airflow, thereby achieving dust removal. The main structure of a cyclone dust collector includes an inlet, a cyclone cylinder, a settling cone, an outlet, and a dust discharge port. When gas containing dust enters the cyclone dust collector through the inlet, the airflow moves in a spiral motion inside the cylinder, generating centrifugal force. Due to this centrifugal force, the particles are thrown against the wall and fall downwards along the wall into the settling cone, eventually being discharged through the dust discharge port. The purified gas is discharged from the outlet. Since some applications using cyclone dust collectors in oilfield additive production directly discharge the dust-collected air, it is necessary to implement protective measures at the exhaust port.
[0003] In related technologies, during the use of cyclone dust collectors, a protective cover is generally installed on the top of the exhaust port to cover and protect the top of the exhaust port, preventing rain and snow from entering the cyclone dust collector through the exhaust port.
[0004] However, in the current use of cyclone dust collectors, the method of installing a protective cover on the top of the exhaust port creates an air gap between the cover and the exhaust port, allowing birds and insects to directly enter the cyclone dust collector through the exhaust port. This disrupts the internal working environment of the cyclone dust collector and affects its protective comprehensiveness and operational stability. Utility Model Content
[0005] To overcome the above deficiencies, this utility model provides an oilfield additive production cyclone dust collector that overcomes or at least partially solves the above technical problems.
[0006] This utility model is implemented as follows:
[0007] This utility model provides a cyclone dust collector for oilfield additive production, including a cyclone dust collector body, a support installed at the bottom of the surface of the cyclone dust collector body, and a discharge port installed at the top of the cyclone dust collector body.
[0008] The emission containment mechanism includes:
[0009] A surrounding frame; the surrounding frame is movably connected to the outside of the outlet, and a surrounding cover is movably connected to the top of the surrounding frame;
[0010] Enclosing net; the enclosing net is movably connected to the inside of the enclosure frame, and the inside of the enclosing net is movably connected to a lifting net connected to the enclosure cover;
[0011] A surrounding lifting mechanism; the surrounding lifting mechanism is located on top of the surrounding frame.
[0012] In a preferred embodiment, the enclosure lifting mechanism includes a lifting groove, a lifting rod, and lifting bars. The lifting groove is located at the top of the enclosure frame, the lifting rod is movably connected inside the lifting groove, the top of the lifting rod is fixedly connected to the bottom of the enclosure cover, and the lifting bars are fixedly connected to both sides of the inner side of the enclosure frame.
[0013] In a preferred embodiment, a magnetic plate is embedded in the inner side of the inner wall of the lifting groove, and a magnetic suction plate that is magnetically connected to the magnetic plate is embedded in the bottom of the inner side of the lifting rod.
[0014] In a preferred embodiment, a connection port is provided at the top of the inner side of the lifting net, and a connecting frame is movably connected inside the connection port. The top of the connecting frame is fixedly connected to the bottom of the surrounding cover.
[0015] In a preferred embodiment, a stabilizing opening is provided at the bottom of the outer side of the enclosure net, and a stabilizing frame is movably connected inside the stabilizing opening. The bottom of the stabilizing frame is fixedly connected to the inner wall of the enclosure frame.
[0016] In a preferred embodiment, the bottom of the enclosure frame is provided with an anti-slip groove, and an anti-slip ring that contacts the cyclone dust collector body is movably connected inside the anti-slip groove.
[0017] In a preferred embodiment, mounting bases are fixedly connected to the bottom of both sides of the enclosure frame, and mounting pads are fixedly connected to the bottom of the mounting bases.
[0018] In a preferred embodiment, the top of the mounting base is provided with a screw hole, and a bolt is connected to the internal thread of the screw hole.
[0019] The cyclone dust collector for oilfield additive production provided by this utility model has the following beneficial effects:
[0020] 1. By setting up an exhaust enclosure mechanism, a medium can be provided to protect the exhaust outlet when it is working in conjunction with the cyclone dust collector body. This allows users to perform exhaust protection work by surrounding the exhaust outlet, avoiding situations where it is difficult to fully protect the exhaust outlet during use. Therefore, the comprehensive protection and operational stability of the exhaust outlet are improved.
[0021] 2. By setting up a lifting mechanism, a lifting connection medium can be provided between the cover and the frame, so that users can manually adjust the height of the cover according to the actual needs of the outlet. This avoids the situation where it is difficult to adjust the height of the cover during use, thus improving the adaptability of the cover.
[0022] 3. By setting up magnetic plates and magnetic suction plates, the lifting rod can be used to magnetically position the lifting and adjusting covers, avoiding the difficulty of positioning the covers during use, thus improving the ease of positioning the covers. Attached Figure Description
[0023] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.
[0024] Figure 1 This is an overall perspective view provided by an embodiment of the present utility model;
[0025] Figure 2 A left-side perspective three-dimensional structural diagram of the enclosure frame provided for an embodiment of this utility model;
[0026] Figure 3 A three-dimensional cross-sectional structural diagram of the surrounding cover provided for an embodiment of this utility model;
[0027] Figure 4 A three-dimensional cross-sectional structural diagram of the enclosure frame provided for an embodiment of this utility model;
[0028] In the diagram: 1. Cyclone dust collector body; 2. Support frame; 3. Discharge port; 4. Enclosure frame; 5. Enclosure cover; 6. Enclosure mesh; 7. Lifting mesh; 8. Lifting groove; 9. Lifting rod; 10. Lifting bar; 11. Magnetic plate; 12. Magnetic suction plate; 13. Connection port; 14. Connection frame; 15. Stabilizing port; 16. Stabilizing frame; 17. Anti-slip groove; 18. Anti-slip ring; 19. Mounting base; 20. Mounting pad; 21. Screw hole; 22. Bolt. Detailed Implementation
[0029] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0030] Reference Figures 1-4 This utility model provides a technical solution: a cyclone dust collector for oilfield additive production, including a cyclone dust collector body 1 and an exhaust enclosure mechanism. A bracket 2 is installed at the bottom of the surface of the cyclone dust collector body 1, and an exhaust port 3 is installed at the top of the cyclone dust collector body 1. When the exhaust port 3 works in conjunction with the cyclone dust collector body 1, it provides a medium for the user to surround and protect the exhaust port 3, so that the user can carry out exhaust protection work in an enclosed manner, avoiding the situation where it is difficult to fully surround and protect the exhaust port 3 during use. Therefore, it improves the comprehensive protection and working stability of the exhaust port 3.
[0031] Reference Figures 1-4 In a preferred embodiment, the discharge containment mechanism includes a containment frame 4, which is movably connected to the outside of the discharge port 3. A containment cover 5 is movably connected to the top of the containment frame 4, and a containment net 6 is movably connected to the inside of the containment frame 4. A lifting net 7 connected to the containment cover 5 is movably connected to the inside of the containment net 6. The containment lifting mechanism is located at the top of the containment frame 4. When the rod of the containment frame 4 is moved to the outside of the discharge port 3 and the containment cover 5 is positioned at the top of the discharge port 3, the containment net 6, in conjunction with the lifting net 7, surrounds the discharge port 4 around the opening, ensuring that the containment frame 4, in conjunction with the containment cover 5, facilitates the discharge of air from the discharge port 3. The outlet 3 is fully enclosed for protection. The enclosing lifting mechanism includes a lifting groove 8, a lifting rod 9, and a lifting bar 10. The lifting groove 8 is located at the top of the enclosure frame 4. The lifting rod 9 is movably connected inside the lifting groove 8. The top of the lifting rod 9 is fixedly connected to the bottom of the enclosure cover 5. The lifting bar 10 is fixedly connected to both sides inside the enclosure frame 4. This provides a lifting connection medium between the enclosure cover 5 and the enclosure frame 4, allowing the user to adjust the height of the enclosure cover 5 by hand according to the actual usage needs of the outlet 3. This avoids the situation where it is difficult to adjust the enclosure height when using the enclosure cover 5, thus improving the usability of the enclosure cover 5.
[0032] Reference Figures 2-4In a preferred embodiment, a magnetic plate 11 is embedded and connected to the inner side of the inner wall of the lifting groove 8, and a magnetic suction plate 12, which is magnetically connected to the magnetic plate 11, is embedded and connected to the bottom of the inner side of the lifting rod 9. The lifting rod 9 can be used to magnetically position the lifting and adjusting cover 5, thus avoiding the difficulty in positioning the cover 5 during use. This improves the positioning convenience of the cover 5. A connection port 13 is opened at the top of the inner side of the lifting net 7. A connecting frame 14 is movably connected inside the connection port 13. The top of the connecting frame 14 is fixedly connected to the bottom of the cover 5, which can connect the lifting net 7 and the cover 5. This avoids the difficulty in the lifting net 7 following the lifting and lowering of the cover 5 during use, thus improving the connection effect between the lifting net 7 and the cover 5.
[0033] Reference Figures 2-3 In a preferred embodiment, a stabilizing opening 15 is provided at the bottom of the outer side of the enclosure net 6. A stabilizing frame 16 is movably connected inside the stabilizing opening 15. The bottom of the stabilizing frame 16 is fixedly connected to the inner wall of the enclosure frame 4. This can stabilize the connection between the enclosure net 6 and the enclosure frame 4, preventing the enclosure net 6 from being unstable with the enclosure frame 4 during use. Therefore, the connection stability between the enclosure net 6 and the enclosure frame 4 is improved. An anti-slip groove 17 is provided at the bottom of the enclosure frame 4. An anti-slip ring 18 that contacts the cyclone dust collector body 1 is movably connected inside the anti-slip groove. This can surround and prevent the enclosure frame 4 from slipping with the cyclone dust collector body 1, preventing the enclosure frame 4 from shifting position during use. Therefore, the working anti-slip performance of the enclosure frame 4 is improved.
[0034] Reference Figures 2-3 In a preferred embodiment, mounting bases 19 are fixedly connected to the bottom of both sides of the enclosure frame 4, and mounting pads 20 are fixedly connected to the bottom of the mounting bases 19, which can provide a medium for users to install the enclosure frame 4, thus improving the ease of installation of the enclosure frame 4. The top of the mounting base 19 is provided with screw holes 21, and bolts 22 are connected to the internal threads of the screw holes 21. The mounting base 19 can provide a medium for users to install and connect the enclosure frame 4 and the cyclone dust collector body 1, avoiding the situation where the enclosure frame 4 is difficult to install and connect with the cyclone dust collector body 1 during use, thus improving the ease of installation and connection between the enclosure frame 4 and the cyclone dust collector body 1.
[0035] Specifically, the working process or principle of this cyclone dust collector for oilfield additive production is as follows: During use, the hand-held enclosure 4 is moved to the top of the cyclone dust collector body 1 and fitted onto the outside of the outlet 3. At this time, the anti-slip ring 18 moves with the enclosure 4 to the top of the cyclone dust collector body 1 via the anti-slip groove 17, providing anti-slip contact between the enclosure 4 and the cyclone dust collector body 1. Then, the bolt 22 is rotated to engage with the screw hole 21 through the mounting base 19 to install and connect the enclosure 4 and the cyclone dust collector body 1. At this time, the mounting pad 20, in conjunction with the mounting base 19, provides installation protection between the enclosure 4 and the cyclone dust collector body 1. Subsequently, according to the actual size of the outlet 3, the hand-held enclosure cover 5 is moved upwards to adjust the height of the enclosure cover 5 and the enclosure 4. Simultaneously, the lifting rod 9 moves with the enclosure cover 5 inside the lifting groove 8, connecting the enclosure cover 5 and the enclosure 4. At the same time, the magnetic suction plate... 12. Following the movement of the lifting rod 9, the magnetic plate 11 cooperates with the lifting rod 9 to perform magnetic positioning between the raised and lowered enclosure cover 5 and the enclosure frame 4. During this process, the connecting frame 14 drives the lifting net 7 to move with the enclosure cover 5 through the connecting port 13, so that the lifting net 7 cooperates with the enclosure net 6 to create space between the raised and adjusted enclosure frame 4 and the enclosure cover 5, and to surround the leakage hole. At this time, the stabilizing frame 16 cooperates with the stabilizing port 15 to connect and stabilize the enclosure net 6 and the enclosure frame 4. At the same time, the lifting bar 10 provides lifting support and guidance to prevent deviation between the lifting net 7, the enclosure net 6, and the enclosure frame 4 during operation, ensuring the stability of the enclosure net 6 and the lifting net 7 during operation. When the discharge port 3 is working, the enclosure frame 4 cooperates with the enclosure cover 5, the enclosure net 6, and the lifting net 7 to perform leakage hole-type enclosure protection on the outside of the discharge port 3. While ensuring that the discharge port 3 cooperates with the cyclone dust collector body 1 to remove dust and exhaust gas from the external oilfield additives, it also ensures the comprehensive protection of the discharge port 3.
[0036] It should be noted that the cyclone dust collector body 1, the support 2 and the outlet 3 are all existing devices or equipment, or devices or equipment that can be implemented with existing technology. Their power supply, specific composition and principle are clear to those skilled in the art, so they will not be described in detail.
Claims
1. An oil field additive production cyclone dust collector, comprising a cyclone dust collector body (1), a support (2) is installed at the bottom of the surface of the cyclone dust collector body (1), and a discharge port (3) is installed at the top of the cyclone dust collector body (1), characterized in that ; The discharge surrounding mechanism comprises: A surrounding frame (4) is movably connected to the outside of the discharge port (3), and a surrounding cover (5) is movably connected to the top of the surrounding frame (4); A surrounding net (6) is movably connected to the inside of the surrounding frame (4), and a lifting net (7) connected with the surrounding cover (5) is movably connected to the inside of the surrounding net (6); A surrounding lifting mechanism is arranged on the top of the surrounding frame (4).
2. The oil field additive production cyclone of claim 1, wherein, The surrounding lifting mechanism comprises a lifting groove (8), a lifting rod (9) and a lifting strip (10), the lifting groove (8) is arranged on the top of the surrounding frame (4), the lifting rod (9) is movably connected to the inside of the lifting groove (8), the top of the lifting rod (9) is fixedly connected with the bottom of the surrounding cover (5), and the lifting strip (10) is fixedly connected to the two sides of the inside of the surrounding frame (4).
3. The oil field additive production cyclone of claim 2, wherein, The inside of the inner wall of the lifting groove (8) is inlaidly connected with a magnetic plate (11), and the bottom of the inside of the lifting rod (9) is inlaidly connected with a magnetic suction plate (12) magnetically connected with the magnetic plate (11).
4. The oil field additive production cyclone of claim 1 wherein, The top of the inside of the lifting net (7) is provided with a connecting port (13), the inside of the connecting port (13) is movably connected with a connecting frame (14), and the top of the connecting frame (14) is fixedly connected with the bottom of the surrounding cover (5).
5. The oil field additive production cyclone of claim 1 wherein, The bottom of the outside of the surrounding net (6) is provided with a stabilizing port (15), the inside of the stabilizing port (15) is movably connected with a stabilizing frame (16), and the bottom of the stabilizing frame (16) is fixedly connected with the inner wall of the surrounding frame (4).
6. The oil field additive production cyclone of claim 1 wherein, The bottom of the surrounding frame (4) is provided with an anti-skid groove (17), and the inside of the anti-skid groove is movably connected with an anti-skid ring (18) in contact with the body (1) of the cyclone dust collector.
7. The oil field additive production cyclone of claim 1 wherein, The bottom of the surrounding frame (4) is provided with an anti-skid groove (17), and the inside of the anti-skid groove is movably connected with an anti-skid ring (18) in contact with the body (1) of the cyclone dust collector.
8. A cyclone dust collector for oil field additive production according to claim 7, characterized in that The bottom of the surrounding frame (4) is provided with an anti-skid groove (17), and the inside of the anti-skid groove is movably connected with an anti-skid ring (18) in contact with the body (1) of the cyclone dust collector. The bottom of the surrounding frame (4) is provided with an anti-skid groove (17), and the inside of the anti-skid groove is movably connected with an anti-skid ring (18) in contact with the body (1) of the cyclone dust collector. The bottom of the surrounding frame (4) is provided with an anti-skid groove (17), and the inside of the anti-skid groove is movably connected with an anti-skid ring (18) in contact with the body (1) of the cyclone dust collector. The bottom of the surrounding frame (4) is provided with an anti-skid groove (17), and the inside of the anti-skid groove is movably connected with an anti-skid ring (18) in contact with the body (1) of the cyclone dust collector.