Anti-collision escape intercepting oil flinger and anti-collision escape intercepting oil flinger device

By setting an anti-collision escape structure between the main body of the oil slinger and the shell, the problem of escape caused by the collision between droplets and the shell is solved, achieving more efficient interception of oil-water mist and smoke, and improving the interception effect of the oil slinger.

CN223716643UActive Publication Date: 2025-12-26NINGBO BEIHAN PRECISION MECHANICAL & ELECTRICAL CO LTD
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Patent Information

Application Number
CN202520159588.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-12-26
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

When existing oil slingers rotate at high speed, droplets or water droplets easily break into tiny droplets and liquid mist when they collide with the casing, leading to escape. Moreover, the interception effect is poor at high speeds, and it cannot effectively intercept oil, water and mist in high-speed airflow.

Method used

An anti-collision escape structure is set between the main body of the oil slinger and the shell, including an anti-collision collection tank and an anti-collision escape receiver. The anti-collision collection tank and the anti-collision escape receiver inside the anti-collision collection tank are combined to form an annular groove and a cavity, which prevents droplets from directly colliding with the shell and collects the droplets into the collection tank through the guide hole.

Benefits of technology

It effectively prevents vaporization and escape caused by droplets colliding with the shell, improves the interception effect of the oil slinger, enhances the interception capability of oil-water mist and smoke, avoids droplets circulating in the air duct, and improves the interception efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-collision escape intercepting oil flinger and an anti-collision escape intercepting oil flinger device, a disc-shaped oil flinger body is provided with oil flinger spokes radially distributed towards the outer circumference, and an anti-collision escape structure is arranged on the inner side of an oil flinger shell. The anti-collision and anti-escape structure is provided with an anti-escape storage groove body annularly matched with an outer annular frame on the outer circumference of the oil flinger body, an annular groove opening of the anti-escape storage groove body faces an opening of the outer annular frame, and an anti-collision and anti-escape storage body is arranged at the groove bottom of an annular groove cavity of the anti-escape storage groove body. And the anti-collision escape storage body and the anti-escape storage tank body are used for intercepting and storing oil-water mist and / or smoke thrown from the oil throwing spokes and gathering the oil-water mist and / or smoke into liquid flow. Liquid drops and smoke of oil and water mist thrown by the oil flinger net disc can be effectively stored, the defect that the trapped liquid drops are still located in an air duct is overcome, the negative effect caused by direct collision of the liquid drops and smoke of the oil and water mist and the oil flinger shell is overcome, and anti-collision escape interception is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of dynamic oil mist water mist or smoke interception device, especially a kind of interception disk is thrown with anti-collision escape interception by rotating steel wire mesh disc, relying on centrifugal force. BACKGROUND

[0002] The existing oil-water smoke interception device (oil throwing disk), in the process of intercepting oil mist water mist and or smoke, oil-water smoke passes through interception device, is intercepted by high-speed rotating mesh disc of oil throwing disk, and oil mist and water mist are attached on the interception strip of oil throwing mesh disc, and gradually condense into droplet along the interception strip to the edge of mesh disc, and the droplet on mesh disc is thrown to the shell around oil throwing mesh disc under the action of centrifugal force of high-speed rotating mesh disc, and is gathered into liquid stream at the edge of shell, to play the interception effect, however this is also the ideal effect state of interception design to gather into liquid stream interception state.But the existing oil throwing disk has the following defects in actual use: first, the oil droplet or water droplet formed by oil-water smoke on mesh disc is thrown to the shell around mesh disc by high-speed rotating mesh disc, and when liquid droplet or water droplet hits shell, due to the close distance between shell and mesh disc edge, liquid droplet or water droplet is broken into small droplet and mist of different sizes when colliding with shell at high speed, and under the action of high-speed airflow, small droplet and mist will escape from the gap between mesh disc or mesh disc and shell of interception device along with airflow, especially when oil throwing disk is installed horizontally, part of the intercepted liquid droplet is thrown back to mesh disc in actual use, causing the phenomenon of reciprocating circulation caused by being intercepted again, further causing the formation of a rolling bubble gas-liquid ring between mesh disc and shell, and even the intercepted large droplet is thrown to the surrounding, becoming a water thrower, which seriously hinders the interception effect of throwing liquid.

[0003] Second, the oil throwing disk relies on centrifugal force generated by high-speed rotation to realize the interception of oil-water smoke, but the rotating speed of existing oil throwing disk cannot be too high, although the higher the rotating speed, the greater the centrifugal force, which is originally an advantage to improve the interception effect, but it is not conducive to the existing oil throwing disk, because the higher the rotating speed of oil throwing disk, the greater the centrifugal force, and the faster the acceleration of the liquid droplet thrown out, so that the collision force between oil droplet and oil throwing disk shell is also greater, and the proportion of broken small droplet and oil-water mist caused by collision is also greater due to the close distance between oil throwing disk shell and mesh disc edge, so that the intercepted liquid droplet may even be gasified under high speed, so that the interception effect is not improved after increasing the rotating speed, but the gasification escape amount of oil-water smoke is increased, which is a contradictory problem that cannot be reconciled for the existing oil throwing disk, and is also the reason for the unsatisfactory interception effect of existing oil throwing disk, and is a big bottleneck of existing oil throwing disk technology.

[0004] Another is that the oil throwing disc itself does not have the function of air extraction, but when it is used in industrial environmental protection equipment, the oil throwing disc is usually installed in front of the fan blade, and the airflow passes through the oil throwing disc under the action of the fan blade to achieve the purpose of intercepting the oil and water smoke carried in the airflow. However, the wind speed flowing in the environmental protection equipment is generally about 5 meters per second, and the high one is even more than 10 meters per second. It is difficult for the oil throwing disc to intercept and capture oil droplets. Most of the oil and water smoke carried in the airflow will directly pass through the net disc. A part of the small liquid droplets and liquid mist are taken away by the strong airflow, which finally leads to a big discount of the interception effect.

[0005] Although there is a guide wind oil receiving box (oil throwing disc accessory) on the market at present, which is installed on the oil throwing disc and has a certain effect on preventing oil and water smoke from escaping and collecting oil, but it does not change the distance between the shell and the edge of the net disc, nor does it change the shell structure. The intercepted and captured oil droplets are still in the air duct, and it is inevitable that the small liquid droplets and gas mist are broken and taken away by the airflow.

[0006] The existing Chinese patent with the authorization announcement number CN215320818U provides a random oil throwing disc for reducing splashing, which includes a shell, a rotating shaft is arranged in the shell, a plurality of fan leaves are fixedly arranged on the outer side wall of the rotating shaft, a plurality of buffer ring pieces are connected to the inner side wall of the shell, the buffer ring pieces are located around the fan leaves, the surfaces of adjacent buffer ring pieces are mutually adhered, a plurality of buffer grooves are arranged on the surface of the buffer ring piece, and the buffer grooves penetrate the high-speed throwing end wall of the buffer ring piece. According to the related technology in the above, the person skilled in the art believes that the liquid droplets thrown out by the net disc at high speed will collide with the buffer groove and the connecting plane between the buffer groove, in addition, the liquid droplets thrown out by the net disc at high speed are in an arc shape, and are in a tangential motion state with the buffer groove, so they will also collide with the buffer groove, and the angle of the buffer groove becomes a knife edge for crushing the liquid droplets. In the above related technology, the oil and water will be retained in the buffer groove, which means that the buffer groove is not connected with the outside, so the air pressure in the buffer groove is equal to the air pressure of the buffer groove. The problem is that since the air pressure inside and outside the buffer groove is equal, the small liquid droplets and water mist oil mist crushed by the buffer groove are difficult to enter the buffer groove, and will flow back to the airflow of the water mist oil mist under the action of the wind force, thereby affecting the liquid throwing effect. Content of the utility model

[0007] The utility model discloses to solve the present situation that the oil-throwing disc shell and its net disc edge distance are very close, liquid drop or water drop high speed and shell collision can split and break into small liquid drop and liquid mist of different sizes, under the action of high speed airflow, small liquid drop and liquid mist can escape from the gap between the net disc of intercepting device or the net disc and shell, or the intercepted oil drop liquid drop is still in the air duct, resulting in the present situation that the oil-throwing intercepting effect is greatly discounted, and the utility model provides a kind of liquid drop and smoke that can effectively store the oil-water mist of oil-throwing disc net disc throwing, avoid the defect that the liquid drop captured is still in air duct, overcome the adverse consequences caused by direct collision of oil-water mist liquid drop and smoke and oil-throwing disc shell, improve the intercepting effect of anti-collision escape intercepting oil-throwing disc and its anti-collision escape intercepting oil-throwing disc device.

[0008] The utility model discloses to solve the above-mentioned technical problem and adopts specific technical scheme: a kind of anti-collision escape intercepting oil-throwing disc, including disc-like oil-throwing disc main part (net disc) and be located at the outer circumference of oil-throwing disc main part oil-throwing disc shell, disc-like oil-throwing disc main part has the oil-throwing spoke of outward circumferential radiation distribution, it is characterized in that: anti-collision escape structure is equipped in oil-throwing disc shell inboard, anti-collision escape structure has with the outer annular frame of oil-throwing disc main part outer circumference annular cooperation's anti-escape storage groove, the annular slot of anti-escape storage groove is open to the outside annular frame setting, anti-escape storage groove is equipped with anti-collision escape storage body at annular slot cavity groove bottom, anti-collision escape storage body and anti-escape storage groove are used to intercept the oil-water mist and / or smoke that come from oil-throwing spoke and store and gather into liquid stream.Through the anti-collision escape structure that annular anti-escape storage groove and anti-escape storage groove inboard of setting with the outer circumferential shape of disc-like oil-throwing disc main part cooperation and the mutual setting of anti-collision escape storage body of oil-throwing disc outer peripheral shell, effectively intercept the oil-water mist and / or smoke that come from oil-throwing spoke and store and gather into liquid stream, groove bottom and oil-throwing disc outer peripheral shell have leading liquid stream, effectively prevent the gasification escape phenomenon caused by direct collision of oil-water mist liquid drop and smoke that come from oil-throwing spoke and shell;Effectively store the liquid drop and smoke of oil-water mist of oil-throwing disc net disc throwing, avoid the defect that the liquid drop captured is still in air duct, overcome the adverse consequences caused by direct collision of oil-water mist liquid drop and smoke and oil-throwing disc shell, improve the intercepting effect of oil-throwing disc.

[0009] As preferred, the anti-escape structure comprises an anti-escape receiving groove and an anti-escape receiving body, the inner end of the anti-escape receiving body is connected and fixed with the groove bottom of the anti-escape receiving groove, the outer end of the anti-escape receiving body keeps a free rotation space distance with the outer frame surface of the outer circumferential frame of the oil throwing disc main body, the bottom of the receiving groove is provided with a bottom flow guide hole, the anti-escape receiving groove is connected to the oil throwing disc outer shell to the liquid collecting tank through the bottom flow guide hole, and the liquid drops and smoke of the oil and water mist thrown by the oil throwing spoke are collected into the liquid collecting tank. The anti-escape receiving groove and the anti-escape receiving body improve the simple, stable and effective interception, collection and convergence of the liquid drops and smoke of the oil and water mist thrown by the oil throwing disc net disc, and avoid the direct collision of the liquid drops and smoke of the oil and water mist with the shell to cause adverse consequences.

[0010] As preferred, the anti-escape receiving groove is provided with a plurality of rows of anti-escape receiving bodies arranged and distributed at the groove bottom, the anti-escape receiving bodies in adjacent rows are arranged in straight lines or staggered, and the overall width size of the anti-escape short spike strip arranged and distributed together is greater than the frame thickness size of the outer circumferential frame of the oil throwing disc main body. The oil and water smoke liquid drops thrown by the oil throwing spoke of the oil throwing disc main body are broken and scattered by the anti-escape short spike strip, gathered into a liquid flow at the root of the anti-escape short spike strip, and flow into the liquid collecting tank, overcoming the broken and scattered liquid drops and gas mist escape phenomenon caused by the direct collision of the liquid drops with the shell. The anti-escape short spike strip improves the simple, stable and effective interception, collection and convergence of the liquid drops and smoke of the oil and water mist thrown by the oil throwing disc net disc, and avoids the direct collision of the liquid drops and smoke of the oil and water mist with the shell to cause the gasification escape phenomenon.

[0011] As preferred, the anti-escape receiving body adopts a short spike strip, a plush strip, a sponge strip, a metal wire assembly and / or a mesh cloth strip, the inner end of the short spike strip, the plush strip, the sponge strip, the metal wire assembly and / or the mesh cloth strip is connected and fixed with the groove bottom of the anti-escape receiving groove, and the inner end of the short spike strip, the plush strip, the sponge strip or the mesh cloth strip keeps a free rotation space distance with the outer wall surface of the outer circumferential frame of the oil throwing disc main body. The anti-escape receiving body improves the simple, stable and effective interception, collection and convergence of the different components of the oil and water mist and / or smoke thrown by the oil throwing spoke.

[0012] As preferred, when the anti-escape receiving body adopts a plush strip, a sponge strip, a metal wire assembly and / or a mesh cloth strip, the plush strip, the sponge strip, the metal wire assembly and / or the mesh cloth strip is arranged in a flat mode in the anti-escape receiving groove. The anti-escape receiving body improves the simple, stable and effective interception, collection and convergence of the different components of the oil and water mist and / or smoke thrown by the oil throwing spoke.

[0013] As preferred, the anti-escape receiving groove is provided with a blade body at the slot of the annular slot, the blade body is connected to the slot in an inclined angle, the cutting edge of the blade body faces the liquid droplets thrown by the oil throwing spoke, the installation angle of the blade body is the same as the arc angle of the liquid droplets thrown by the oil throwing spoke, the collision area of the liquid droplets and the blade body is reduced, and the oil-water droplets can be cut and received into the anti-escape receiving groove. The oil-water droplets thrown by the oil throwing spoke can be effectively cut by the blade body, and the cut oil-water droplets are received into the anti-escape receiving groove, avoiding the direct collision of the oil-water mist droplets and smoke with the shell to cause the adverse consequences of gasification and escape.

[0014] As preferred, the slot width of the annular slot of the anti-escape receiving groove is greater than the outer annular frame thickness of the oil throwing disc body, the annular slot surrounds the outer annular frame on both sides of the outer circumference of the oil throwing disc body, the surrounding depth of the annular slot surrounding the outer annular frame on both sides is greater than 8mm, forming an anti-escape receiving groove surrounding and intercepting the liquid droplets and / or smoke flow thrown by the oil throwing spoke to the edge of the outer annular frame of the outer circumference of the oil throwing disc body, but will not limit the free rotation of the oil throwing disc body. The clearance between the edge of the mesh disc and the outer circumference of the oil throwing disc shell is improved to eliminate the escape of oil-water mist droplets and smoke.

[0015] As preferred, the outer annular frame of the outer circumference of the oil throwing disc body is provided with a liquid throwing tail fin, the liquid throwing tail fin is in the shape of a crescent or a strip, the curved surface of the liquid throwing tail fin follows the rotation direction of the oil throwing disc body, the liquid throwing tail fin is used to guide the oil-water droplets and smoke thrown by the oil throwing spoke, and the oil-water droplets and smoke are thrown to the anti-escape receiving groove of the oil throwing disc shell at a small angle in the form of a tail fin wake, further reducing the direct collision of the oil-water droplets and smoke with the shell. The interception, collection and convergence of the oil-water mist droplets and smoke thrown by the oil throwing disc mesh disc are improved, avoiding the direct collision of the oil-water mist droplets and smoke with the shell to cause the adverse consequences of gasification and escape.

[0016] The utility model discloses a kind of anti-collision escape interception oil-throwing disc devices, it is characterized by comprising worm wheel, worm, shaft, motor, fan blade, oil collecting tank and the anti-collision escape interception oil-throwing disc of above-mentioned technical solution one is used, several anti-collision escape interception oil-throwing discs are connected to form the anti-escape storage groove body of oil-throwing disc group, and anti-escape storage groove body is vertically connected and fixed in the top of oil collecting tank, anti-escape storage groove body is communicated with the liquid collecting tank through bottom flow guide hole, and motor is equipped in the top of oil collecting tank, and oil-throwing disc group and fan blade are arranged on the same shaft by the same shaft, and fan blade is arranged at the tail end of shaft, and motor is driven transmission connection shaft by worm wheel and worm, and shaft rotation transmission anti-escape oil-throwing disc and fan blade rotation.

[0017] As preferred, the oil-throwing disc group adopts multiple oil-throwing disc bodies in parallel mode, and the multiple oil-throwing disc bodies are connected in parallel on the same plane or multiple different planes; each plane is distributed with multiple oil-throwing disc bodies, and the peripheral excess space between the multiple oil-throwing disc bodies is a sealed plane body, and each oil-throwing disc body is configured with an oil-throwing disc peripheral shell provided with an anti-escape storage groove body and an anti-escape short bar. Although the parallel combination cannot effectively intercept high-speed airflow, it can increase airflow and improve the interception effect of oil-water mist and / or smoke in large-flow airflow.

[0018] The beneficial effects of this utility model are as follows: By setting an annular anti-escape collection trough that matches the shape of the outer circumference of the disc-shaped oil slinger body between the main body and the outer shell of the oil slinger, and anti-escape short barbs set in the anti-escape collection trough, as well as adding liquid slinger tail fins, blades, and an enclosing structure, the oil and water mist and / or smoke thrown from the oil slinger spokes can be effectively intercepted, collected, and gathered into droplets. The bottom of the trough and the outer shell of the oil slinger have droplet-drawing functions, effectively preventing the vaporization and escape phenomenon caused by direct collision between the oil and water mist droplets and smoke thrown from the oil slinger spokes and the shell. It can effectively collect the droplets and smoke of oil and water mist thrown from the oil slinger (net), avoiding the defect that the collected droplets are still in the air duct, overcoming the adverse consequences caused by direct collision between the oil and water mist droplets and smoke and the shell of the oil slinger, and improving the interception effect of the oil slinger. The oil and water mist and / or smoke droplets thrown out by the spokes of the disc-shaped oil slinger are intercepted and collected into the duct (collection tank). The duct is connected to the liquid collection tank to prevent the droplets from being carried away by the airflow, thereby improving the interception effect. Attached Figure Description

[0019] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0020] Figure 1 This is a schematic diagram of the first structure of the anti-collision escape interception oil-throwing disc of this utility model.

[0021] Figure 2 This is a side-view cross-sectional structural diagram of an anti-collision escape interception oil-throwing disc of this utility model.

[0022] Figure 3 This is a side-view cross-sectional structural diagram of an anti-collision escape interception oil-throwing disc of this utility model.

[0023] Figure 4 This is a schematic diagram of the second structure of the anti-collision escape interception oil-throwing disc of this utility model.

[0024] Figure 5 yes Figure 4 A side view structural diagram.

[0025] Figure 6 This is a schematic diagram of the third structure of the anti-collision escape interception oil-throwing disc of this utility model.

[0026] Figure 7 This is a schematic diagram of the anti-collision escape interception oil-throwing disc of this utility model.

[0027] Figure 8 This is a schematic diagram of the anti-collision escape interception oil-throwing disc device of this utility model, which adopts a parallel connection mode of multiple oil-throwing disc main bodies in the oil-throwing disc group. Detailed Implementation

[0028] Embodiment 1:

[0029] Figure 1 、 Figure 2 、 Figure 3 In the embodiment shown, the anti-collision escape interception oil throwing disc includes a disc-shaped oil throwing disc body (net disc) and an oil throwing disc shell arranged on the outer circumference of the oil throwing disc body. The disc-shaped oil throwing disc body has outwardly radially distributed oil throwing spokes. An anti-collision escape structure is arranged on the inner side of the oil throwing disc shell. The anti-collision escape structure has an anti-escape receiving groove body annularly matched with the outer annular frame of the outer circumference of the oil throwing disc body. The annular groove opening of the anti-escape receiving groove body is arranged to open towards the outer annular frame. An anti-collision escape receiving body is arranged at the groove bottom of the annular groove cavity of the anti-escape receiving groove body. The anti-collision escape receiving body and the anti-escape receiving groove body are used to intercept, receive, and collect liquid droplets from the oil and water mist and / or smoke thrown from the oil throwing spokes.

[0030] The anti-collision escape structure comprises an anti-escape receiving groove body and an anti-collision escape receiving body, the inner end of the anti-collision escape receiving body is connected and fixed with the groove bottom of the anti-escape receiving groove body, the outer end of the anti-collision escape receiving body keeps a free rotation space distance with the outer frame surface of the outer annular frame of the oil throwing disc main body, the bottom of the receiving groove body is provided with a bottom flow guide hole 32, the anti-escape receiving groove body is connected to the oil throwing disc outer peripheral shell to the oil collecting tank 50 through the bottom flow guide hole, and the liquid drops and smoke of the oil and water mist thrown from the oil throwing spoke are collected into the oil collecting tank. A plurality of flow guide holes 32 are distributed in the annular anti-escape receiving groove body, that is, the overall distribution direction of the plurality of flow guide holes 32 is the same as the annular direction of the anti-escape receiving groove body, the number of the shell flow guide holes provided on the oil throwing disc outer peripheral shell is less than or equal to the number of the flow guide holes 32, the situation that the extra flow guide holes of the oil throwing disc outer peripheral shell are exposed outside the top end of the oil collecting tank can be avoided when the oil collecting tank is installed and used in connection, and the installation and connection of the oil throwing disc outer peripheral shell and the oil collecting tank are simple, reliable, safe and effective. The anti-escape receiving groove body is provided with a plurality of rows of anti-collision escape receiving bodies arranged and distributed at the groove bottom, and the anti-collision escape receiving bodies between adjacent rows are arranged in a straight line or staggered. The overall width size of the anti-escape short spike strip arranged and distributed together is greater than the frame thickness size of the outer annular frame of the outer circumference of the oil throwing disc main body. The anti-collision escape receiving body adopts a short spike strip, a plush strip, a sponge strip, a metal wire assembly and / or a mesh cloth strip, the inner end of the short spike strip, the plush strip, the sponge strip, the metal wire assembly and / or the mesh cloth strip is connected and fixed with the groove bottom of the anti-escape receiving groove body, and the outer end of the short spike strip, the plush strip, the sponge strip, the metal wire assembly or the mesh cloth strip keeps a free rotation space distance with the outer wall surface of the outer annular frame of the outer circumference of the oil throwing disc main body. When the anti-collision escape receiving body adopts a plush strip, a sponge strip and / or a mesh cloth strip, the plush strip, the sponge strip, the metal wire assembly and / or the mesh cloth strip is arranged in the anti-escape receiving groove body in a flat mode. When the anti-collision escape receiving body adopts a short spike strip, the short spike strip adopts a spike body structure or a bayonet structure, the thick end of the spike body of the spike body structure or the bayonet structure is connected and fixed with the annular groove cavity groove bottom of the anti-escape receiving groove body, and the thin end of the spike body of the spike body structure or the bayonet structure faces the outer frame surface of the outer annular frame of the outer circumference of the oil throwing disc main body. The metal wire assembly can adopt a steel wire or other metal wire assembly structure. The annular groove of the anti-escape receiving groove body is inverted to the inner side of the groove at the groove edge, forming a groove culvert, so that the annular groove cavity groove bottom of the anti-escape receiving groove body is away from the outer annular frame of the outer circumference of the oil throwing disc main body, and the shape structure of the inner side of the groove is relatively flexible, which is arranged from the inner side of the groove to the groove bottom direction, and can meet the above anti-escape effect, that is, the inner side of the groove can be linear or have an arc.

[0031] The anti-collision and escape structure of the anti-collision and escape receiving body and the anti-escape receiving groove body is arranged to avoid the collision between the liquid droplets and the smoke thrown by the oil throwing disc body and the shell to produce fine liquid droplets and escape. Further, because of the arrangement of the anti-collision and escape structure, the speed of the oil throwing disc driving motor can be increased to make the oil throwing disc body generate greater centrifugal force to improve the efficiency of oil and water smoke interception and collection. The structure is simple and easy to implement.

[0032] Embodiment 2:

[0033] Figure 1 、 Figure 2 、 Figure 3 、 Figure 6 In the embodiment shown, the anti-escape receiving groove body is provided with a blade body 34 at the slot of the annular slot, and the blade body is connected to the slot 33 in an inclined angle. The cutting edge of the blade body 34 faces the liquid droplets thrown by the oil throwing spoke, and the installation angle of the blade body is the same as the arc angle of the liquid droplets thrown by the oil throwing spoke, which reduces the collision area of the liquid droplets and the blade body and can cut the oil and water droplets and receive them into the anti-escape receiving groove body. The rest is the same as embodiment 1.

[0034] Embodiment 3:

[0035] Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 In the embodiment shown, the width of the annular slot of the anti-escape receiving groove body is greater than the thickness of the outer annular frame of the oil throwing disc body. The annular slot 33 surrounds the outer annular frame on both sides of the outer circumference of the oil throwing disc body, that is, part of the outer annular frame of the outer circumference of the oil throwing disc body is in a state of extending into the annular slot of the anti-escape receiving groove body. The surrounding depth of the annular slot surrounding the outer annular frame on both sides is greater than 8mm, and the surrounding depth can also be set to 8-30mm. The annular slot of the anti-escape receiving groove body forms a surrounding and intercepting receiving slot structure that surrounds and intercepts the liquid droplets and / or smoke flow thrown by the oil throwing spoke to the edge of the outer annular frame of the outer circumference of the oil throwing disc body, but does not limit the free rotation of the oil throwing disc body. The rest is the same as embodiment 1.

[0036] Embodiment 4:

[0037] Figure 1 、 Figure 2 、 Figure 3 、 Figure 6In the illustrated embodiment, the outer ring-shaped frame on the outer circumference of the oil-throwing disc body is provided with a liquid-throwing tail fin 14, which is in the shape of a crescent or a strip. The curved surface of the liquid-throwing tail fin follows the rotation direction of the oil-throwing disc body. The liquid-throwing tail fin 14 is used to guide the oil-water droplets and smoke thrown by the oil-throwing spokes, and throw the oil-water droplets and smoke at a small angle to the anti-escape storage groove 30 of the oil-throwing disc shell in the form of a tail fin wake, further reducing the direct collision of oil-water droplets and smoke with the shell. The rest is the same as embodiment 1.

[0038] Embodiment 5:

[0039] Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 In the illustrated embodiment, an anti-collision and anti-escape interception oil-throwing disc device includes a worm wheel 64, a worm 63, a rotating shaft 65, a motor 60, a fan blade 40, an oil collecting tank 50, and an anti-collision and anti-escape interception oil-throwing disc as described in the above embodiments. The anti-escape storage grooves 30 and the oil-throwing disc outer shell 20 of the oil-throwing disc group are vertically connected and fixed to the top end 51 of the oil collecting tank. The anti-escape storage grooves 30 are connected to the oil collecting tank 50 through the flow guide holes 32 to collect oil. The top end of the oil collecting tank is provided with a motor 60 and a gearbox. The gearbox is used to adjust the rotating speed of the motor. The oil-throwing disc group and the fan blade 40 are connected in series on the same rotating shaft 65. The fan blade 40 is installed and connected at the tail end 651 of the rotating shaft. The motor 60 drives and transmits the rotating shaft 65 through the worm wheel 64 and the worm 63. The rotating shaft 65 rotates and drives the anti-escape oil-throwing disc and the fan blade 40. The oil-throwing disc group, the worm wheel, the rotating shaft, and the fan blade are collectively arranged in the same anti-escape oil-throwing cavity 80 formed by the closed connection shell 70. At the upper rear part of the oil collecting tank, an escape channel 55 is provided. The other end of the escape channel 55 is connected to the rear end of the oil-throwing disc and the front position of the fan blade. By using the inertia (siphon) of the main airflow, the air pressure in the oil collecting tank is extracted to negative pressure through the escape channel. This is more conducive to the smooth flow of the liquid in the collecting tank into the oil collecting tank. The motor 60 drives and transmits the worm 63 and the worm wheel 64 by adjusting the output rotating speed of the motor 60 through the control panel 62. The rotating speed of the rotating shaft 65 is controlled, thereby driving the rotating speed of the oil-throwing disc group and the fan blade 40. The rest is the same as embodiment 1, embodiment 2, embodiment 3, and embodiment 4.

[0040] Embodiment 6:

[0041] Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 ,Figure 6 , Figure 7 , Figure 8 In the illustrated embodiment, when the oil slinger assembly employs a parallel configuration of multiple oil slinger bodies, these bodies are connected in parallel on the same plane or several different planes. Several oil slinger bodies are distributed on each plane, and the extra space between them forms a sealed plane. Each oil slinger body is equipped with an outer shell containing an anti-escape storage groove and anti-escape short spikes. Other aspects are the same as in Embodiment 5.

[0042] When in use, A1. direct the oil and water fumes that need to be intercepted and treated toward the escape-proof oil slinger or oil slinger assembly;

[0043] A2. When the oil and water fumes pass through the oil-slinging disc assembly of one or more rotating oil-slinging disc bodies, the oil and water fumes are dynamically intercepted by the oil-slinging spokes. After being intercepted, the oil and water fumes are thrown out from the outer end of the oil-slinging spokes into the annular groove of the anti-escape collection tank, and are intercepted and collected by the anti-collision escape collection body set at the bottom of the anti-escape collection tank.

[0044] A3. The anti-collision escape collection body intercepts and collects the liquid flow, which is then drawn out from multiple guide holes at the bottom of the anti-collision collection tank to the outer periphery of the oil slinger and connects with the liquid collection tank. The pipe connecting the bottom of the collection tank and the liquid collection tank is equipped with a water trap to block the flow of gas, so as to achieve the goal of only connecting and collecting the liquid flow into the liquid collection tank.

[0045] A4. An venting channel is opened at the upper rear of the collection tank. The outlet of the venting channel is located behind the oil slinger and in front of the fan blades. The inertia of the main airflow is used to draw the air pressure in the inner cavity of the collection tank into a negative pressure state, which facilitates the smooth flow of liquid flowing into the bottom of the collection tank into the collection tank. When the collected liquid in the collection tank reaches a certain amount or when it is necessary to drain and clean the collected liquid in the collection tank 50, the collection tank discharge valve 53 is opened to drain the collected liquid in the collection tank. Alternatively, the collection tank top cover 52 on the top of the collection tank 51 can be opened to observe the collected liquid condition in the collection tank or to perform maintenance operations.

[0046] A5. In step A2 above, when there are droplets and / or smoke flow on the outer ring edge of the outer circumference of the oil-slinging pan body, the droplets and / or smoke flow will be blocked and intercepted by the annular groove of the anti-escape collection groove located on both sides of the outer ring edge of the outer circumference of the oil-slinging pan body and collected into the anti-escape collection groove, and absorbed and collected by the anti-collision escape collection body located at the bottom of the anti-escape collection groove.

[0047] A6. In the above-mentioned A2 step, when the oil-water droplets and smoke thrown by the oil-throwing spokes pass through the area of the annular slot blade body provided in the anti-escape storage groove, the cutting edge of the blade body faces the liquid droplets thrown by the oil-throwing spokes, reduces the collision area of the liquid droplets and the blade body, further cuts the oil-water droplets and stores them into the anti-escape storage groove, further avoids the direct collision of the oil-water droplets and smoke with the shell, and improves the interception and storage anti-escape effect of the oil-water droplets and smoke;

[0048] A7. In the above-mentioned A2 step, when the oil-water droplets and smoke thrown by the oil-throwing spokes pass through the liquid-throwing tail fin area, the oil-water droplets and smoke are thrown by the liquid-throwing tail fin to the anti-escape storage groove of the oil-throwing disc shell in the form of tail fin wake, further avoiding the direct collision of the oil-water droplets and smoke with the shell;

[0049] A8. In the above-mentioned A1-A2 steps, the fan blades provided at the tail end of the rotating shaft discharge the oil-water smoke towards the anti-escape oil-throwing disc, and further guide the oil-water smoke from the tail end, further improving the discharge efficiency of the oil-water smoke and the interception and processing efficiency of the anti-escape oil-throwing disc group.

[0050] A9. In the above-mentioned A2 step, the plurality of oil-throwing disc bodies adopt a series or parallel installation connection distribution structure.

[0051] In the positional relationship description of the utility model, terms such as "inner", "outer", "upper", "lower", "left", "right" and the like indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the embodiments and simplifying the description, and do not indicate or imply that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the utility model.

[0052] The above content and structure describe the basic principles, main features and advantages of the utility model product, which should be understood by those skilled in the art. The above examples and descriptions in the specification are only illustrative of the principles of the utility model, and various changes and improvements can be made to the utility model without departing from the spirit and scope of the utility model. These changes and improvements are all within the scope of the claimed utility model. The scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. An anti-collision escape interception oil throwing disc, comprising a disc-shaped oil throwing disc body and an oil throwing disc shell arranged on the outer circumference of the oil throwing disc body, the disc-shaped oil throwing disc body is provided with oil throwing spokes radially distributed to the outer circumference, characterized in that: The anti-collision escape structure is provided inside the oil throwing disc shell, and has an anti-escape receiving groove body in annular cooperation with the outer annular frame of the outer circumference of the oil throwing disc body.

2. The crashworthy ejection escape capture disc of claim 1 wherein: The anti-collision escape structure includes the anti-escape receiving groove body and the anti-collision escape receiving body, the inner end of the anti-collision escape receiving body is connected and fixed with the groove bottom of the anti-escape receiving groove body, the outer end of the anti-collision escape receiving body keeps a free rotating space distance with the outer frame surface of the outer annular frame of the outer circumference of the oil throwing disc body, the bottom of the receiving groove body is provided with a bottom flow guide hole, the anti-escape receiving groove body is connected to the oil throwing disc outer shell to the liquid collecting tank through the bottom flow guide hole, and the bottom flow guide hole is used to collect the liquid drops and / or smoke of the oil water mist thrown by the oil throwing spoke to the liquid collecting tank.

3. The crashworthy ejection escape capture disk of claim 1 wherein: The anti-escape receiving groove body is distributed and connected with a plurality of rows of anti-collision escape receiving bodies at the groove bottom, the anti-collision escape receiving bodies in adjacent rows are arranged in a straight line or staggered, and the overall width size of the anti-escape short spike strip arranged together is greater than the frame thickness size of the outer annular frame of the outer circumference of the oil throwing disc body.

4. The crashworthy ejection escape capture disk of claim 1 wherein: The anti-collision escape receiving body adopts a short spike strip, a plush strip, a sponge strip, a metal wire assembly and / or a mesh cloth strip, the inner end of the short spike strip, the plush strip, the sponge strip, the metal wire assembly and / or the mesh cloth strip is connected and fixed with the groove bottom of the anti-escape receiving groove body, and the inner end of the short spike strip, the plush strip, the sponge strip, the metal wire assembly or the mesh cloth strip keeps a free rotating space distance with the outer wall surface of the outer annular frame of the outer circumference of the oil throwing disc body.

5. The crashworthy escape containment splay deflector as claimed in claim 1 or 2 or 3 or 4 wherein: When the anti-collision escape receiving body adopts a plush strip, a sponge strip, a metal wire assembly and / or a mesh cloth strip, the plush strip, the sponge strip, the metal wire assembly and / or the mesh cloth strip is arranged in the anti-escape receiving groove body in a flat mode.

6. The crashworthy ejection escape capture disk of claim 1 wherein: The anti-escape receiving groove body is distributed and connected with a plurality of rows of anti-collision escape receiving bodies at the groove bottom, the anti-collision escape receiving bodies in adjacent rows are arranged in a straight line or staggered, and the overall width size of the anti-escape short spike strip arranged together is greater than the frame thickness size of the outer annular frame of the outer circumference of the oil throwing disc body.

7. The crashworthy ejection escape capture disk of claim 1 wherein: The width size of the groove of the anti-escape receiving groove body is greater than the thickness size of the outer annular frame of the oil throwing disc body, the groove is arranged on both sides of the outer annular frame of the outer circumference of the oil throwing disc body, the surrounding depth of the groove surrounding both sides of the outer annular frame is greater than 8 mm, the surrounding and intercepting groove structure of the anti-escape receiving groove body is formed to surround and intercept the liquid drops and / or smoke flow thrown by the oil throwing spoke to the edge of the outer annular frame of the outer circumference of the oil throwing disc body, but does not limit the free rotation of the oil throwing disc body.

8. The crashworthy ejection escape capture disk of claim 1 wherein: The outer annular frame on the outer circumference of the oil throwing disc body is provided with a liquid throwing tail fin, which is in the shape of a crescent sheet or a strip, and the curved surface of the liquid throwing tail fin follows the rotation direction of the oil throwing disc body. The liquid throwing tail fin is used to guide the oil and water droplets and smoke thrown by the oil throwing spokes, and throw the oil and water droplets and smoke at a small angle to the anti-escape storage groove of the oil throwing disc shell in the form of a tail fin wake, further reducing the direct collision of oil and water droplets and smoke with the shell.

9. A collision avoidance escape interception oil flinging disc device characterized by: The anti-collision and escape interception oil throwing disc comprises a worm wheel, a worm, a rotating shaft, a motor, a fan blade, an oil collecting tank and an anti-collision and escape interception oil throwing disc according to any one of claims 1-8. A plurality of anti-collision and escape interception oil throwing discs are connected in series to form an anti-escape storage groove and its vertical connection and fixation of the oil throwing disc outer peripheral shell at the top end of the oil collecting tank. The anti-escape storage groove is connected to the oil collecting tank through the bottom flow guide hole. The oil collecting tank is provided with a motor. The oil throwing disc group and the fan blade are connected in series on the same rotating shaft through the same rotating shaft. The fan blade is arranged at the tail end of the rotating shaft. The motor is connected to the rotating shaft through the worm wheel and the worm. The rotating shaft drives the anti-escape oil throwing disc and the fan blade to rotate.

10. The anti-collision egress-intercept flinging-pan device according to claim 9, wherein: When the oil throwing disc group adopts a plurality of oil throwing disc bodies in parallel mode, the plurality of oil throwing disc bodies are connected in parallel on the same plane or a plurality of different planes. A plurality of oil throwing disc bodies are distributed on each plane, and the peripheral excess space between the plurality of oil throwing disc bodies is a sealed plane body. Each oil throwing disc body is provided with an anti-escape storage groove and an anti-escape short fin.

Citation Information

Patent Citations

  • Raw material tabletting device for luggage production

    CN215320818U