Condensation type oil mist steam collector

By using a condenser-type oil mist vapor collector, the temperature is reduced through a heat dissipation medium and a rotating disc blade structure, which solves the problem of high operating temperature of traditional collectors and achieves efficient collection of oil mist vapor.

CN223810832UActive Publication Date: 2026-01-20ZHEJIANG SHANGYU RUIXIN ENVIRONMENT EQUIP CO LTD
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Patent Information

Application Number
CN202520155876.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-01-20
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

Traditional oil mist vapor collectors have difficulty reducing their operating temperature.

Method used

A condensing oil mist vapor collector is used. The temperature is reduced by the heat dissipation medium in the heat dissipation medium. The oil mist absorption area is formed by the rotating disc blades and the surrounding plate. The rotation of the fan blades is driven by a motor, and the condensed oil is scraped off by the sealing strip.

Benefits of technology

This effectively reduced the operating temperature of the oil mist vapor collector and improved the oil mist vapor collection efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a condensation type oil mist steam collector, through a heat dissipation medium in a heat dissipation medium device, the condensation type oil mist steam collector can guide the heat dissipation medium in the heat dissipation medium device into a mass guide pipe, and when a connecting pipe of the mass guide pipe is arranged on the bottom face of a surrounding plate, the heat dissipation medium in the heat dissipation medium device is guided into the mass guide pipe. The connecting pipe of the mass guide pipe can be attached to the bottom face of the surrounding plate so that the cooling area of the surrounding plate can be formed, and the heat dissipation medium can be medium water, cooling medium oil and the like. The heat dissipation medium device is arranged at the bottom of the rotating disc blade, and in the rotating process of the rotating disc blade, the rotating disc blade and the surrounding plate can form an oil mist absorbing area. The oil mist can be further absorbed after the oil mist is collected by the rotating disc blades and the oil mist absorbing area of the surrounding plate, and the fan blades are hinged to the top of the bottom plate. The rotation of the fan blades is realized by the driving motor, and the heat dissipation medium device can reduce the working temperature of the oil mist steam collector, so that the working temperature of the oil mist steam collector is reduced.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of collectors, in particular to a condensing oil mist vapor collector. BACKGROUND

[0002] Oil mist often appears in kitchens and industrial production processes. The oil mist is generated by converting liquid oil into tiny droplets and suspending in the air. In kitchens, the oil mist is generally generated by edible oil, and currently kitchen oil fume purifiers are mostly used to reduce the oil mist. In industrial production processes, the oil mist can cause part of the environmental pollution and can also reduce the friction in part of the equipment. In the prevention and application process of the oil mist, the oil mist vapor collector is a relatively important equipment. The traditional oil mist vapor collector is mostly used in industrial production processes. This is because the current oil mist vapor collector is difficult to reduce the working temperature in the process. Therefore, it is necessary to propose a condensing oil mist vapor collector in view of the shortcomings that the traditional oil mist vapor collector is difficult to reduce the working temperature of the oil mist vapor collector. CONTENT OF THE INVENTION

[0003] Based on this, it is necessary to propose a condensing oil mist vapor collector in view of the shortcomings that the traditional oil mist vapor collector is difficult to reduce the working temperature of the oil mist vapor collector.

[0004] The application relates to a condensing oil mist vapor collector, which comprises:

[0005] A heat dissipation medium device;

[0006] A rotating disc blade, the heat dissipation medium device is arranged at the bottom of the rotating disc blade, the rotating disc blade and the heat dissipation medium device are mutually attached, the rotating disc blade comprises a surrounding plate, a fan blade and a bottom plate, the surrounding plate surrounds the outer edge of the bottom plate, the bottom plate is a circular plate, the fan blade and the top of the bottom plate are mutually hinged;

[0007] A driving motor, which is fixedly connected with the surrounding plate, the power shaft of the driving motor and the top of the fan blade are fixedly connected with each other;

[0008] A conductive pipe, which comprises an out-conductive pipe, an in-conductive pipe and a connecting pipe, the heat dissipation medium device and the out-conductive pipe are in conduction with each other, the heat dissipation medium device and the in-conductive pipe are in conduction with each other, one end of the connecting pipe and the out-conductive pipe are in conduction with each other, and the other end of the connecting pipe and the in-conductive pipe are in conduction with each other.

[0009] Further, the surrounding plate comprises a top plate and a ring plate;

[0010] The top plate and the top of the ring plate are fixedly connected with each other;

[0011] The bottom of the ring plate and the bottom plate are fixedly connected with each other.

[0012] Further, the ring plate is a strip-shaped plate.

[0013] The ring plate has an oil mist passage space between the first end and the second end of the ring plate.

[0014] Further, the top plate is arranged at the top end of the oil mist passage space.

[0015] The bottom plate is arranged at the bottom end of the oil mist passage space.

[0016] Further, the fan blade includes a first fan blade, a second fan blade, and a ring shaft.

[0017] The first fan blade and the ring shaft are fixedly connected to each other.

[0018] The second fan blade and the ring shaft are fixedly connected to each other.

[0019] Further, the central axis of the ring shaft coincides with the extension surface of the coincident central surface of the first fan blade.

[0020] The central axis of the ring shaft coincides with the extension surface of the coincident central surface of the second fan blade.

[0021] The central axis of the ring shaft is perpendicular to the bottom plate.

[0022] Further, the central part of the bottom plate is provided with a circular groove.

[0023] One end of the ring shaft is arranged in the circular groove.

[0024] The other end of the ring shaft is fixedly connected to the power shaft of the driving motor.

[0025] The outer diameter of the power shaft of the driving motor is equal to the inner diameter of the ring shaft.

[0026] Further, the included angle between the first fan blade and the second fan blade is greater than or equal to 160 degrees and less than 180 degrees.

[0027] Further, the region with a smaller angle between the first fan blade and the second fan blade is defined as a cooling zone.

[0028] The region with a smaller angle between the first fan blade and the second fan blade is defined as a constant-temperature cooling zone.

[0029] A sealing strip is arranged between the cooling zone and the constant-temperature cooling zone.

[0030] Further, the sealing strip includes a first sealing part and a second sealing part.

[0031] The first sealing part is arranged between the first fan blade and the ring plate.

[0032] The second sealing part is arranged between the second fan blade and the ring plate.

[0033] The present application relates to a condensing oil mist vapor collector, which can guide the heat dissipation medium in the heat dissipation medium device into the conductive pipe through the heat dissipation medium in the heat dissipation medium device. When the connecting pipe of the conductive pipe is arranged on the bottom surface of the surrounding plate, the connecting pipe of the conductive pipe can be attached to the bottom surface of the surrounding plate to form a cooling area of the surrounding plate. The heat dissipation medium can be medium water, cooling medium oil, etc. The heat dissipation medium device is arranged at the bottom of the rotating disc blade. During the rotation of the rotating disc blade, the rotating disc blade and the surrounding plate can form an oil mist absorbing area. The oil mist absorbing area of the rotating disc blade and the surrounding plate can further absorb oil mist after collecting oil mist. The fan blade and the top of the bottom plate are hingedly connected to each other. The rotation of the fan blade is realized by a driving motor. The heat dissipation medium device can reduce the working temperature of the oil mist vapor collector, thereby reducing the working temperature of the oil mist vapor collector. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 A structural schematic diagram of a condensing oil mist vapor collector according to an embodiment of the present application is provided.

[0035] Figure 2 A structural detail schematic diagram of a condensing oil mist vapor collector according to another embodiment of the present application is provided.

[0036] Figure 3 A space relationship schematic diagram of a ring plate and an oil mist passage space of a condensing oil mist vapor collector according to an embodiment of the present application is provided.

[0037] Figure 4 A position diagram of a first fan blade, a second fan blade, a ring shaft center shaft, a cooling area and a constant temperature cooling area of a condensing oil mist vapor collector according to another embodiment of the present application is provided.

[0038] REFERENCE NUMERALS:

[0039] 100-heat dissipation medium device; 200-rotating disc blade; 210-surrounding plate; 211-top plate; 212-ring plate;

[0040] 220-bottom plate; 221-circular groove; 230-fan blade; 231-first fan blade; 232-second fan blade;

[0041] 233-ring shaft; 240-oil mist passage space; 251-overlapping center surface of the first fan blade;

[0042] 252 - the coincident center surface of the second fan blade; 253 - the central axis of the ring shaft; 254 - the cooling area;

[0043] 255 - the constant temperature cooling area; 300 - the driving motor; 400 - the conductive pipe; 410 - the out conductive pipe; 420 - the in conductive pipe; 430 - the connecting pipe; 500 - the sealing strip; 510 - the first sealing part; 520 - the second sealing part. DETAILED DESCRIPTION

[0044] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application, and are not used to limit the present application.

[0045] The present application provides a condensing oil mist vapor collector.

[0046] As shown in the drawings, in an embodiment of the present application, a condensing oil mist vapor collector comprises a heat dissipation medium device 100, a rotating disc blade 200, a driving motor 300 and a conductive pipe 400. Figure 1 The heat dissipation medium device 100 is arranged at the bottom of the rotating disc blade 200, the rotating disc blade 200 and the heat dissipation medium device 100 are attached to each other, the rotating disc blade 200 comprises a surrounding plate 210, a fan blade 230 and a bottom plate 220, the surrounding plate 210 is wrapped around the outer edge of the bottom plate 220, the bottom plate 220 is a circular plate, and the fan blade 230 is hingedly connected to the top of the bottom plate 220.

[0047] The driving motor 300 is fixedly connected to the surrounding plate 210, and the power shaft of the driving motor 300 is fixedly connected to the top of the fan blade 230.

[0048] The conductive pipe 400 comprises an out conductive pipe 410, an in conductive pipe 420 and a connecting pipe 430, the heat dissipation medium device 100 is in communication with the out conductive pipe 410, the heat dissipation medium device 100 is in communication with the in conductive pipe 420, one end of the connecting pipe 430 is in communication with the out conductive pipe 410, and the other end of the connecting pipe 430 is in communication with the in conductive pipe 420.

[0049]

[0050] ​This embodiment relates to a condensing oil mist vapor collector. Through the heat dissipation medium in the heat dissipation medium 100, the condensing oil mist vapor collector can guide the heat dissipation medium in the heat dissipation medium 100 into the guide pipe 400. When the connecting pipe 430 of the guide pipe 400 is located on the bottom surface of the enclosure 210, the connecting pipe 430 can adhere to the bottom surface of the enclosure 210, thereby forming a cooling zone of the enclosure 210. The heat dissipation medium can be water, cooling oil, etc. The heat dissipation medium 100 is located at the bottom of the rotating disc 200. During the rotation of the rotating disc 200, the rotating disc 200 and the enclosure 210 can form an area for absorbing oil mist. After collecting oil mist, the area where the rotating disc 200 and the enclosure 210 absorb oil mist can further absorb oil mist. The fan blade 230 is hinged to the top of the base plate 220. The rotation of the fan blade 230 is achieved by the drive motor 300, and the heat dissipation medium 100 can reduce the operating temperature of the oil mist vapor collector.

[0051] like Figure 2 As shown, in one embodiment of this application, the enclosure 210 includes a top plate 211 and an annular plate 212. The top of the top plate 211 is fixedly connected to the top of the annular plate 212. The bottom of the annular plate 212 is fixedly connected to the bottom plate 220.

[0052] Specifically, the top plate 211 is used to attach the connecting pipe 430. The connecting pipe 430 can be a curved pipe or a straight pipe. The connecting pipe 430 increases the heat conduction area between the top plate 211 and the connecting pipe 430. This improves the working capacity of the oil mist vapor collector under working conditions.

[0053] When the connecting pipe 430 of the mass-conducting pipe 400 is set on the bottom surface of the enclosure 210, the connecting pipe 430 of the mass-conducting pipe 400 can be attached to the bottom surface of the enclosure 210 to form the cooling zone of the enclosure 210.

[0054] like Figure 3 As shown, in one embodiment of this application, the annular plate 212 is a strip plate. An oil mist channel space 240 is formed between the first end and the second end of the annular plate 212.

[0055] Specifically, the space between the first end and the second end of the ring plate 212 is the oil mist channel space 240. The oil mist channel space 240 is used to receive oil mist from the working area.

[0056] The oil mist channel space 240 based on the annular plate 212 can be used to receive oil mist from the working area. The annular plate 212 is a strip plate that forms the sidewall of the rotating disk blade 200. The top plate 211, the annular plate 212, and the bottom plate 220 can form a relatively sealed receiving space for condensed oil mist vapor.

[0057] As shown in Figure 2 and Figure 3 In an embodiment of the present application, the top plate 211 is arranged at the top end of the oil mist passage space 240. The bottom plate 220 is arranged at the bottom end of the oil mist passage space 240.

[0058] Specifically, the top plate 211, the ring plate 212 and the bottom plate 220 can form a relatively sealed receiving space for condensing oil mist vapor. The space between the first end of the ring plate 212 and the second end of the ring plate 212 is the oil mist passage space 240, the top plate 211 is arranged at the top end of the oil mist passage space 240, and the bottom plate 220 is arranged at the bottom end of the oil mist passage space 240.

[0059] The oil mist passage space 240 can be coupled to the working amount of the rotating disc blade 200 according to the amount of oil mist vapor taken in.

[0060] When the amount of oil mist vapor taken in is large, the working amount of the rotating disc blade 200 increases, and the rotating amount of the driving motor 300 increases.

[0061] When the amount of oil mist vapor taken in is small, the working amount of the rotating disc blade 200 decreases, and the rotating amount of the driving motor 300 decreases.

[0062] Generally, when the amount of oil mist vapor taken in is greater than 20 times the volume of the oil mist passage space 240, the amount of oil mist vapor taken in is large.

[0063] As shown in Figure 2 In an embodiment of the present application, the fan blade 230 includes a first fan blade 231, a second fan blade 232 and a ring shaft 233. The first fan blade 231 and the ring shaft 233 are fixedly connected to each other. The second fan blade 232 and the ring shaft 233 are fixedly connected to each other.

[0064] Specifically, the first fan blade 231, the second fan blade 232 and the ring shaft 233 constitute the fan blade 230. In the process of driving the first fan blade 231 and the second fan blade 232 to rotate by the ring shaft 233, the first fan blade 231 and the second fan blade 232 can take in oil mist vapor into the receiving space for condensing oil mist vapor. Both the first fan blade 231 and the second fan blade 232 reduce the temperature of the oil mist vapor, and the oil mist vapor with reduced temperature can form oil liquid.

[0065] As shown in Figure 4 In an embodiment of the present application, the central axis of the ring shaft 233 coincides with the extension surface of the coincident central surface of the first fan blade 231. The central axis of the ring shaft 233 coincides with the extension surface of the coincident central surface of the second fan blade 232. The central axis of the ring shaft 233 is perpendicular to the bottom plate 220.

[0066] Specifically, the first blade 231 and the second blade 232 have the same structure. The outer surface of the first blade 231 with the largest area is a flat working surface. The orthographic projection of the outer surface of the first blade 231 with the largest area is a coincident center plane. The central axis of the ring shaft 233 passes through the coincident center plane of the first blade 231.

[0067] The outer surface of the second blade 232, which has the largest area, is a flat working surface. The orthographic projection of the outer surface of the second blade 232, which has the largest area, is a coincident center plane. The central axis of the ring shaft 233 passes through the coincident center plane of the second blade 232. The central axis of the ring shaft 233 is perpendicular to the base plate 220, which enables the rotation of the blade 230.

[0068] like Figure 2 As shown, in one embodiment of this application, a circular groove 221 is provided at the center of the base plate 220. One end of the annular shaft 233 is disposed in the circular groove 221. The other end of the annular shaft 233 is fixedly connected to the power shaft of the drive motor 300. The outer diameter of the power shaft of the drive motor 300 is equal to the inner diameter of the annular shaft 233.

[0069] Specifically, the circular groove 221 in the center of the base plate 220 is used to accommodate one end of the ring shaft 233. The other end of the ring shaft 233 is fixedly connected to the power shaft of the drive motor 300, and the outer diameter of the power shaft of the drive motor 300 is equal to the inner diameter of the ring shaft 233.

[0070] In one embodiment of this application, the included angle between the first fan blade 231 and the second fan blade 232 is in the range of greater than or equal to 160 degrees and less than 180 degrees.

[0071] Specifically, the included angle between the first blade 231 and the second blade 232 is in the range of 160 degrees to 180 degrees. Due to mechanical or assembly errors, the included angle between the first blade 231 and the second blade 232 being in the range of 160 degrees to 180 degrees allows for easy installation of the blades 230.

[0072] Simply put, when the angle between the first blade 231 and the second blade 232 is 160 degrees, due to the existence of error, the angle between the first blade 231 and the second blade 232 may be 156 degrees, 160 degrees or 161 degrees, etc.

[0073] When the angle between the first blade 231 and the second blade 232 is around 160 degrees, the rotational speed of the drive motor 300 can operate within a smaller speed range, which can further reduce the operating temperature of the oil mist vapor collector.

[0074] The angle between the first blade 231 and the second blade 232 is 180 degrees, unlike when the angle between the first blade 231 and the second blade 232 is 160 degrees. This allows the first blade 231 and the second blade 232 to achieve dynamic balance. The drive motor 300 can operate within a wide speed range. The rapid rotation of the drive motor 300 effectively condenses oil mist vapor. Based on the heat dissipation medium 100, the operating temperature of the oil mist vapor collector can be further reduced.

[0075] like Figure 4 As shown, in one embodiment of this application, the region with a smaller angle between the first fan blade 231 and the second fan blade 232 is defined as the cooling zone 254. The region with a smaller angle between the first fan blade 231 and the second fan blade 232 is defined as the constant-temperature cooling zone 255254. A sealing strip 500 is provided between the cooling zone 254 and the constant-temperature cooling zone 255254.

[0076] In one embodiment of this application, the sealing strip 500 includes a first sealing portion 510 and a second sealing portion 520. The first sealing portion 510 is disposed between the first fan blade 231 and the annular plate 212. The second sealing portion 520 is disposed between the second fan blade 232 and the annular plate 212.

[0077] Specifically, the first sealing part 510 and the second sealing part 520 of the sealing strip 500 can be used to scrape off the condensed oil.

[0078] The technical features of the above embodiments can be combined arbitrarily, and the execution order of the method steps is not restricted. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0079] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this application should be determined by the appended claims.

Claims

1. A condensing oil mist vapor collector characterized by, The utility model relates to a heat dissipation medium device, a rotating disc blade, a driving motor, a conductive pipe and a sealing strip. The utility model discloses a heat dissipation medium device, a rotating disc blade, a driving motor, a conductive pipe and a sealing strip. The heat dissipation medium device is arranged at the bottom of the rotating disc blade, and the rotating disc blade and the heat dissipation medium device are attached to each other. The rotating disc blade comprises a surrounding plate, a fan blade and a bottom plate. The surrounding plate surrounds the outer edge of the bottom plate.

2. The condensing oil mist vapor collector of claim 1, wherein, The bottom plate is a circular plate. The fan blade is hingedly connected to the top of the bottom plate. The driving motor is fixedly connected to the surrounding plate.

3. The condensing oil mist vapor collector of claim 2, wherein, The power shaft of the driving motor is fixedly connected to the top of the fan blade. The conductive pipe comprises a quality outlet pipe, a quality inlet pipe and a connecting pipe.

4. The condensing oil mist vapor collector of claim 3, wherein, The heat dissipation medium device is in communication with the quality outlet pipe. The heat dissipation medium device is in communication with the quality inlet pipe.

5. The condensing oil mist vapor collector of claim 4 wherein, One end of the connecting pipe is in communication with the quality outlet pipe. The other end of the connecting pipe is in communication with the quality inlet pipe. The surrounding plate comprises a top plate and a ring plate.

6. The condensing oil mist vapor collector of claim 5 wherein, The top plate is fixedly connected to the top of the ring plate. The bottom of the ring plate is fixedly connected to the bottom plate. The ring plate is a strip-shaped plate.

7. The condensing oil mist vapor collector of claim 6 wherein, The ring plate has an oil mist channel space between the first end and the second end of the ring plate. The top plate is arranged at the top end of the oil mist channel space. The bottom plate is arranged at the bottom end of the oil mist channel space. The fan blade comprises a first fan blade, a second fan blade and a ring shaft.

8. The condensing oil mist vapor collector of claim 6 wherein, The first fan blade is fixedly connected to the ring shaft.

9. The condensing oil mist vapor collector of claim 8 wherein, The second fan blade is fixedly connected to the ring shaft. The central axis of the ring shaft coincides with the extension surface of the coincident central surface of the first fan blade. The central axis of the ring shaft coincides with the extension surface of the coincident central surface of the second fan blade.

10. The condensing oil mist vapor collector of claim 9, wherein, The central axis of the ring shaft is perpendicular to the bottom plate. The central part of the bottom plate is provided with a circular groove. One end of the ring shaft is arranged in the circular groove. The other end of the ring shaft is fixedly connected to the power shaft of the driving motor. The outer diameter of the power shaft of the driving motor is equal to the inner diameter of the ring shaft. The included angle between the first fan blade and the second fan blade is greater than or equal to 160 degrees and less than 180 degrees. The area with a smaller included angle between the first fan blade and the second fan blade is defined as a cooling area. The area with a smaller included angle between the first fan blade and the second fan blade is defined as a constant-temperature cooling area. A sealing strip is arranged between the cooling area and the constant-temperature cooling area. The sealing strip comprises a first sealing part and a second sealing part. The first sealing part is arranged between the first fan blade and the ring plate. The second sealing part is arranged between the second fan blade and the ring plate.