Fuel blending device for high-cleanness vehicle
By designing the lifting mechanism and the stirring mechanism in the high-clean automotive fuel dispensing device, the comprehensive stirring and uniform mixing of the liquid are achieved, and the problems of low stirring efficiency and uneven mixing in the existing devices are solved, the mixing efficiency and quality are improved, and the equipment manufacturing cost is reduced.
Patent Information
- Application Number
- CN202510637885.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2045-05-19
AI Technical Summary
In the existing high-clean automotive fuel distribution devices, the stirring mechanism is mostly static fixed, which leads to low stirring efficiency and uneven mixing. Increasing the number of stirring blades to improve the stirring effect will significantly increase the equipment manufacturing cost.
A high-clean vehicle fuel distribution device including a lifting mechanism and a stirring mechanism is designed. Through the cooperation of the lifting mechanism and the stirring mechanism, the reciprocating swing and one-way rotation of the third gear, funnel, second rotating shaft and stirring page are realized, which enhances the stirring effect of the liquid, and evenly sprays the liquid to the periphery of the mixing barrel through the spraying mechanism to promote the flow and mixing of the liquid.
All-round stirring of the liquid is achieved, ensuring full mixing of edge areas and central areas, improving the efficiency and quality of fuel distribution, and reducing equipment manufacturing costs.
Smart Images

Figure CN120169207A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of fuel blending, and particularly to a high-clean vehicle fuel blending device. Background Art
[0002] High-clean vehicle fuels are usually composed of multiple components, such as methanol, ethanol, gasoline, diesel, various additives, etc. During the blending process, in order to improve the mixing effect of the materials, a stirring mechanism is usually required to improve the mixing efficiency of the materials.
[0003] Most of the stirring mechanisms in the existing high-clean vehicle fuel blending devices are static fixed stirring mechanisms, and the stirring method is relatively single, making it difficult to form complex and effective fluid motion during the stirring process, thereby resulting in a relatively low stirring efficiency. Moreover, it is easy to cause the uneven mixing of each component of the fuel, greatly reducing the blending efficiency. And to ensure sufficient stirring in both the edge area and the central area of the blending device, a large number of stirring blades need to be set. However, this method will significantly increase the manufacturing cost of the equipment. Summary of the Invention
[0004] The purpose of the present invention is to provide a high-clean vehicle fuel blending device to solve the problems raised in the above background art. To achieve the above purpose, the present invention provides the following technical solution: A high-clean vehicle fuel blending device, including a blending barrel and a barrel cover assembly connected to the top of the blending barrel; One side of the top of the barrel cover assembly is connected with a lifting mechanism, and one side of the lifting mechanism is connected with a spraying mechanism for sucking the liquid at the bottom of the blending barrel and transporting it to the top for spraying around. The other side of the lifting mechanism is connected with a stirring mechanism for stirring the edge area and the central area of the blending barrel.
[0005] Preferably, the stirring mechanism includes a lifting column connected to the bottom of the lifting mechanism and a guiding block rotatably connected to one side of the lifting column; One side of the barrel cover assembly is rotatably connected with a rotating barrel, and a spiral groove is provided on the inner wall of the rotating barrel, and the groove body of the spiral groove is matched with the guiding block; The bottom of the rotating barrel is fixedly connected with a first rotating shaft, the bottom of the first rotating shaft is fixedly connected with a first gear, the top of the first rotating shaft is rotatably connected with a second gear, and the second gear is connected with the rotating barrel through a first one-way component; A full tooth ring is fixed on the inner wall of the top of the blending barrel, and the full tooth ring is meshed with the second gear; One side of the bottom of the rotating barrel is fixedly connected with a support plate, one end of the bottom of the support plate is rotatably connected with a third gear, the third gear is meshed with the second gear, the top end of the third gear passes through the support plate and is connected with a funnel, and a plurality of water passing holes are provided on the side wall of the funnel; The bottom of the third gear is fixedly connected to the second rotating shaft, the bottom of the second rotating shaft is fixedly connected to a plurality of stirring blades, the top of the second rotating shaft is rotatably connected to a sector gear ring, the sector gear ring is meshed with the first gear, and the sector gear ring and the third gear are connected by a second one-way component.
[0006] Preferably, the bucket cover assembly includes an outer ring plate rotatably connected to the top of the dispensing bucket and an inner ring plate rotatably connected to the inner wall of the outer ring plate, and a rotating bucket is rotatably connected to one side of the outer ring plate.
[0007] Preferably, the spraying mechanism includes a fixed bucket connected to the bottom of the inner ring plate, a liquid inlet is provided at the bottom of the fixed bucket, a plurality of liquid outlet holes are provided on the side wall of the top of the fixed bucket, a plurality of first springs are connected in the slots arranged on the lower surface inside the fixed bucket, the top of the first spring is connected to a sliding column, the top of the sliding column is connected to a sealing plate, and the sealing plate is matched with the liquid inlet; A piston assembly is slidably connected to the inner wall of the bottom of the fixed bucket, two sides of the top of the piston assembly are fixedly connected to fixed rods, the fixed rods pass through the fixed bucket and the inner ring plate to be connected to a fixing plate, and a lifting mechanism is connected to the top of the fixing plate.
[0008] Preferably, the piston assembly includes a first annular plate slidably connected to the inner wall of the bottom of the fixed bucket, first arc-shaped holes are provided on both sides of the first annular plate, a plurality of limiting convex bodies are fixed to the bottom of the first annular plate, a second annular plate is rotatably connected to the outside of the bottom of the first annular plate, a plurality of uniformly distributed second arc-shaped holes are arranged on the second annular plate, and the second arc-shaped holes are matched with the limiting convex bodies; A plurality of uniformly distributed arm rods are rotatably connected to the bottom of the second annular plate, a sealing blade is rotatably connected to one end of the arm rod away from the limiting convex body, and one side of the top of the sealing blade is rotatably connected to the first annular plate; First push blocks are fixedly connected to both sides of the lower surface inside the fixed bucket, and second push blocks are fixedly connected to both sides of the upper surface inside the fixed bucket; First arc-shaped blocks are connected to both sides of the bottom of the second annular plate, the first arc-shaped blocks are matched with the first push blocks, the top end of the first arc-shaped block passes through the second annular plate to be connected to a fixed shaft, the fixed shaft is matched with the first arc-shaped hole, the top end of the fixed shaft is connected to a second arc-shaped block, and the second arc-shaped block is matched with the second push blocks.
[0009] Preferably, the lifting mechanism includes a rotating motor connected to one side of the top of the outer ring plate, a cam is connected to the driving end of the rotating motor, and an annular groove is arranged on one side of the cam; One side of the top of the outer ring plate is fixedly connected to a support rod. One side of the top of the support rod is rotatably connected to a lever. One end of the lever is rotatably connected to a first connecting rod. The bottom of the first connecting rod is rotatably connected to a rotating block. The bottom of the rotating block is rotatably connected to a fixing plate. The end of the lever far from the first connecting rod is rotatably connected to a second connecting rod. The bottom of the second connecting rod is rotatably connected to a lifting column. The end of the lever far from the first connecting rod is connected to a guide post. The guide post is matched with the groove body of the annular groove.
[0010] Preferably, the first one-way assembly includes a first ratchet fixedly connected to the top of the second gear. One side of the bottom of the rotating barrel is rotatably connected to a first ratchet pawl. The first ratchet pawl is matched with the first ratchet. A second spring is sleeved on the rotating shaft at the top of the first ratchet pawl.
[0011] Preferably, the second one-way assembly includes a second ratchet fixedly connected to the top of the sector gear ring. One side of the bottom of the third gear is rotatably connected to a second ratchet pawl. The second ratchet pawl is matched with the second ratchet. A third spring is sleeved on the rotating shaft at the top of the second ratchet pawl.
[0012] Preferably, the liquid outlet hole is inclined, and the outer end of the liquid outlet hole is higher than the inner end of the liquid outlet hole. The liquid outlet hole is located above the funnel. A plurality of baffle plates are fixed on the outer wall of the top of the fixed barrel. The baffle plates are located at the top of the liquid outlet hole, and the baffle plates correspond to the liquid outlet holes one by one.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: In the present invention, through the combined use of the lifting mechanism and the stirring mechanism, the third gear, the funnel, the second rotating shaft and the stirring blades can swing reciprocally. During the reciprocal swing, the second rotating shaft, the third gear and the funnel continuously rotate in a single direction, enabling the stirring blades to efficiently stir the liquid. And through the reciprocal swing working mode, the stirring of the edge area and the central area can be realized. In the edge area, the stirring blades can effectively drive the liquid near the barrel wall to flow, preventing the liquid from forming a stationary layer near the barrel wall. In the central area, the stirring blades can fully stir the liquid at different levels, promoting the up-and-down mixing of the liquid. And the second gear always rolls along the full tooth ring, and this rolling action further expands the stirring range of the stirring blades, enabling them to reach every corner in the dispensing barrel, realizing the all-round stirring of the liquid and achieving full mixing.
[0014] In the present invention, through the combined use of the lifting mechanism and the spraying mechanism, the liquid at the bottom of the dispensing barrel can be sucked into the fixed barrel, transferred to the top, and evenly sprayed around, enabling the liquid to be evenly dispersed to the periphery of the dispensing barrel, greatly promoting the flow and mixing of the liquid in the dispensing barrel, facilitating the full contact of the bottom liquid with the top liquid, forming a good convection in the dispensing barrel, thereby achieving the uniform mixing of the bottom liquid and the top liquid, and effectively improving the quality and efficiency of the dispensed liquid.
[0015] In the present invention, through the combined use of the spraying mechanism and the stirring mechanism, part of the sprayed liquid can fall into the funnel, and the rotation of the funnel causes the liquid to be continuously flung, and then further refined and dispersed into smaller droplets, which can be more quickly and fully incorporated into the liquid in the dispensing barrel, enabling the liquid in the dispensing barrel to reach the ideal mixing state faster and more evenly. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a three-dimensional structural schematic diagram of the whole of the present invention; Figure 2 is a sectional view of the whole of the present invention; Figure 3 is a side sectional view of the spraying mechanism of the present invention; Figure 4 is Figure 3 the enlarged view at A in Figure 5 is a bottom-up sectional view of the spraying mechanism of the present invention; Figure 6 is Figure 5 the enlarged view at B in Figure 7 is a structural schematic diagram of part of the structures of the spraying mechanism and the lifting mechanism of the present invention; Figure 8 is a bottom-up structural schematic diagram of part of the structures of the spraying mechanism and the lifting mechanism of the present invention; Figure 9 is a structural schematic diagram of the spraying mechanism, the lifting mechanism and the stirring mechanism of the present invention; Figure 10 is Figure 9 the enlarged view at C in Figure 11 is a partial sectional view of the lifting mechanism and the stirring mechanism of the present invention; Figure 12 is a structural schematic diagram of part of the structure of the stirring mechanism of the present invention; Figure 13 is Figure 12 the enlarged view at D in Figure 14 is Figure 12 the enlarged view at E in
[0017] In the figure: 1, dispensing barrel; 2, barrel cover assembly; 21, outer ring plate; 22, inner ring plate; 3, spraying mechanism; 31, fixed barrel; 32, liquid outlet hole; 33, first spring; 34, sliding column; 35, sealing plate; 36, first annular plate; 37, fixed rod; 38, second annular plate; 39, limiting convex body; 310, second arc-shaped hole; 311, arm rod; 312, sealing blade; 313, first arc-shaped hole; 314, first arc-shaped block; 315, second arc-shaped block; 316, first push block; 317, second push block; 318, baffle plate; 319, fixing plate; 4, lifting mechanism; 41, rotating motor; 42, cam; 43, annular groove; 44, guide post; 45, support rod; 46, lever; 47, first connecting rod; 48, second connecting rod; 49, rotating block; 5, stirring mechanism; 51, full gear ring; 52, rotating barrel; 53, lifting column; 54, guide block; 55, spiral groove; 56, second gear; 57, first ratchet; 58, first ratchet pawl; 59, second spring; 510, first gear; 511, sector gear ring; 512, support plate; 513, third gear; 514, funnel; 515, first rotating shaft; 516, second rotating shaft; 517, second ratchet; 518, second ratchet pawl; 519, third spring; 520, stirring blade. Detailed implementation mode
[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.
[0019] Please refer to Figures 1 to 14 , the present invention provides a technical solution: a high-cleanliness vehicle fuel dispensing device, including a dispensing barrel 1 and a barrel cover assembly 2 connected to the top of the dispensing barrel 1.
[0020] One side of the top of the barrel cover assembly 2 is connected with a lifting mechanism 4, one side of the lifting mechanism 4 is connected with a spraying mechanism 3, the spraying mechanism 3 is used to suck the liquid at the bottom of the dispensing barrel 1 and transfer it to the top for spraying around, and the other side of the lifting mechanism 4 is connected with a stirring mechanism 5, and the stirring mechanism 5 is used to stir the edge area and the central area of the dispensing barrel 1.
[0021] In this embodiment, as Figure 9 , Figure 11 and Figure 12 shown, the stirring mechanism 5 includes a lifting column 53 connected to the bottom of the lifting mechanism 4 and a guide block 54 rotatably connected to one side of the lifting column 53.
[0022] One side of the bucket cover assembly 2 is rotatably connected to a rotating bucket 52. A spiral groove 55 is provided on the inner wall of the rotating bucket 52, and the groove of the spiral groove 55 is matched with the guide block 54. It should be noted that: the lifting column 53 and the guide block 54 are lifted and lowered by the lifting mechanism 4. Due to the cooperation of the spiral groove 55 and the guide block 54, the rotating bucket 52 can be rotated.
[0023] The bottom of the rotating bucket 52 is fixedly connected to a first rotating shaft 515. The bottom of the first rotating shaft 515 is fixedly connected to a first gear 510. The top of the first rotating shaft 515 is rotatably connected to a second gear 56. The second gear 56 and the rotating bucket 52 are connected by a first one-way assembly.
[0024] A full tooth ring 51 is fixed to the inner wall of the top of the dispensing bucket 1. The full tooth ring 51 is meshed and connected with the second gear 56.
[0025] One side of the bottom of the rotating bucket 52 is fixedly connected to a support plate 512. One end of the bottom of the support plate 512 is rotatably connected to a third gear 513. The third gear 513 is meshed and connected with the second gear 56. The top of the third gear 513 passes through the support plate 512 and is connected to a funnel 514. A plurality of water passing holes are provided on the side wall of the funnel 514. It should be noted that: a cone body is fixed at the center of the inside of the funnel 514, so that the liquid in the funnel 514 accumulates on the outside of the funnel 514, so as to facilitate the liquid to flow out of the funnel 514 through the water passing holes, so that a large amount of liquid will not remain in the funnel 514. And during the rotation of the funnel 514, the liquid can be thrown out, so that the liquid is more evenly diffused to other areas.
[0026] The bottom of the third gear 513 is fixedly connected to the second rotating shaft 516. The bottom of the second rotating shaft 516 is fixedly connected to a plurality of stirring blades 520. The top of the second rotating shaft 516 is rotatably connected to a sector gear ring 511. The sector gear ring 511 is meshed and connected with the first gear 510. The sector gear ring 511 and the third gear 513 are connected by a second one-way component. It should be noted that: when the guide block 54 descends, the rotating barrel 52 can rotate forward, so that the first rotating shaft 515, the support plate 512 and the first gear 510 can rotate. Through the support plate 512, the third gear 513 and the funnel 514 can rotate along the axis of the rotating barrel 52, realizing the adjustment of the position of the stirring blades 520, so that the stirring blades 520 can stir the edge area and the central area of the dispensing barrel 1. The first gear 510 drives the sector gear ring 511 to rotate, thereby driving the second rotating shaft 516, the third gear 513 and the funnel 514 to rotate. The rotation of the second rotating shaft 516 can make the stirring blades 520 rotate to stir the liquid. The third gear 513 drives the second gear 56 to rotate. At this time, the rotation directions of the first gear 510 and the second gear 56 are opposite, so that the second gear 56 can roll along the full tooth ring 51. When the guide block 54 ascends, the rotating barrel 52 can rotate reversely, so that the first rotating shaft 515, the second gear 56, the support plate 512 and the first gear 510 can rotate, making the second gear 56 roll along the full tooth ring 51. Through the support plate 512, the third gear 513 and the funnel 514 can rotate along the axis of the rotating barrel 52, resetting the third gear 513 and the funnel 514. The second gear 56 drives the third gear 513 to rotate, thereby driving the funnel 514 and the second rotating shaft 516 to rotate, and further making the stirring blades 520 rotate to stir the liquid. At the same time, the first gear 510 drives the sector gear ring 511 to rotate, so that the sector gear ring 511 is reset. During the forward and reverse rotation of the rotating barrel 52, the rotation directions of the second gear 56 and the third gear 513 are the same, and the swing angle of the third gear 513 and the funnel 514 is less than 180°, so that the sector gear ring 511 and the third gear 513 will not interfere with the dispensing barrel 1 and the full tooth ring 51.
[0027] In this embodiment, as Figure 2 shown, the barrel cover assembly 2 includes an outer ring plate 21 rotatably connected to the top of the dispensing barrel 1 and an inner ring plate 22 rotatably connected to the inner wall of the outer ring plate 21. One side of the outer ring plate 21 is rotatably connected to the rotating barrel 52. It should be noted that: when the second gear 56 rolls along the full tooth ring 51, the outer ring plate 21 can rotate.
[0028] In this embodiment, as Figures 3 to 9As shown in the figure, the spraying mechanism 3 includes a fixed barrel 31 connected to the bottom of the inner ring plate 22. The bottom of the fixed barrel 31 is provided with a liquid inlet, and the top side wall of the fixed barrel 31 is provided with a plurality of liquid outlet holes 32. A plurality of first springs 33 are connected in the grooves arranged on the lower surface inside the fixed barrel 31. The top of the first spring 33 is connected to a sliding column 34, and the top of the sliding column 34 is connected to a sealing plate 35. The sealing plate 35 cooperates with the liquid inlet. It should be noted that: the elastic force of the first spring 33 can reset the sliding column 34 and the sealing plate 35, so as to seal the liquid inlet and prevent the liquid from discharging from the liquid inlet of the fixed barrel 31.
[0029] A piston assembly is slidably connected to the inner wall of the bottom of the fixed barrel 31. Both sides of the top of the piston assembly are fixedly connected with fixing rods 37. The fixing rods 37 pass through the fixed barrel 31 and the inner ring plate 22 to connect to a fixing plate 319. The top of the fixing plate 319 is connected to a lifting mechanism 4. It should be noted that: the piston assembly is lifted through the fixing plate 319 and the fixing rods 37. When the piston assembly descends to the bottom, the piston assembly can be closed. At this time, when the piston assembly rises, a negative pressure can be generated to enable the liquid to enter the fixed barrel 31 through the liquid inlet. At the same time, the liquid above the piston assembly can be squeezed, so that the liquid is sprayed out from the liquid outlet holes 32, making the liquid evenly distributed in the batching barrel 1. And a part of the liquid sprayed out from the liquid outlet holes 32 will fall into the funnel 514, and then the liquid is further mixed and dispersed through the funnel 514. When the piston assembly rises to the top, the piston assembly can be opened, so as to seal the liquid inlet through the sealing plate 35.
[0030] In this embodiment, as Figures 3 to 8 shown, the piston assembly includes a first annular plate 36 slidably connected to the inner wall of the bottom of the fixed barrel 31. Both sides of the first annular plate 36 are provided with first arc-shaped holes 313. A plurality of limiting convex bodies 39 are fixed to the bottom of the first annular plate 36. The outer side of the bottom of the first annular plate 36 is rotatably connected to a second annular plate 38. A plurality of evenly distributed second arc-shaped holes 310 are arranged on the second annular plate 38. The second arc-shaped holes 310 cooperate with the limiting convex bodies 39.
[0031] A plurality of evenly distributed arm rods 311 are rotatably connected to the bottom of the second annular plate 38. One end of the arm rod 311 away from the limiting convex body 39 is rotatably connected to a sealing blade 312. One side of the top of the sealing blade 312 is rotatably connected to the first annular plate 36. It should be noted that: the cooperation of a plurality of sealing blades 312 can form a circular plate, which can seal the hole in the center of the first annular plate 36.
[0032] Both sides of the lower surface inside the fixed barrel 31 are fixedly connected with first push blocks 316, and both sides of the upper surface inside the fixed barrel 31 are fixedly connected with second push blocks 317.
[0033] On both sides of the bottom of the second annular plate 38, the first arc-shaped block 314 is connected. The first arc-shaped block 314 cooperates with the first push block 316. The top end of the first arc-shaped block 314 passes through the second annular plate 38 and is connected to a fixed shaft. The fixed shaft cooperates with the first arc-shaped hole 313. The top end of the fixed shaft is connected to the second arc-shaped block 315. The second arc-shaped block 315 cooperates with the second push block 317. It should be noted that when the piston assembly rises to the top, the second arc-shaped block 315 squeezes the second push block 317 to move the second arc-shaped block 315, thereby rotating the second annular plate 38, and further rotating the arm 311. The sealing blade 312 is driven to rotate by the arm 311, so that the piston assembly is in an open state. When the piston assembly descends to the bottom, the first arc-shaped block 314 squeezes the first push block 316 to move the first arc-shaped block 314, thereby rotating the second annular plate 38, and further rotating the arm 311. The sealing blade 312 is driven to rotate by the arm 311, so that the piston assembly is in a closed state.
[0034] In this embodiment, as Figure 2 , Figure 7 , Figure 9 , Figure 10 and Figure 11 shown, the lifting mechanism 4 includes a rotating motor 41 connected to one side of the top of the outer ring plate 21. The driving end of the rotating motor 41 is connected with a cam 42. An annular groove 43 is arranged on one side of the cam 42. It should be noted that the shape of the annular groove 43 is the same as that of the cam 42. The rotating motor 41 is connected to a storage battery to provide energy for the rotating motor 41. And the storage battery is installed on one side of the rotating motor 41 to avoid winding when the rotating motor 41 rotates with the outer ring plate 21.
[0035] One side of the top of the outer ring plate 21 is fixedly connected with a support rod 45. One side of the top of the support rod 45 is rotatably connected with a rocker 46. One end of the rocker 46 is rotatably connected with a first connecting rod 47. The bottom of the first connecting rod 47 is rotatably connected with a rotating block 49. The bottom of the rotating block 49 is rotatably connected with a fixing plate 319.
[0036] The end of the rocker 46 far from the first connecting rod 47 is rotatably connected with a second connecting rod 48. The bottom of the second connecting rod 48 is rotatably connected with a lifting column 53. It should be noted that the distance between the support rod 45 and the first connecting rod 47 is greater than the distance between the support rod 45 and the second connecting rod 48, so that the lifting height of the fixing plate 319 is greater than the lifting height of the lifting column 53.
[0037] One end of the lever 46 away from the first connecting rod 47 is connected to the guide post 44, and the guide post 44 is engaged with the groove body of the annular groove 43. It should be noted that: by rotating the motor 41 to drive the cam 42 to rotate, the guide post 44 is lifted and lowered, and the lever 46 is rotated through the guide post 44, so that the first connecting rod 47 and the second connecting rod 48 are lifted and lowered. When the first connecting rod 47 rises, the second connecting rod 48 descends, and when the first connecting rod 47 descends, the second connecting rod 48 rises.
[0038] In this embodiment, as Figure 13 shown, the first one-way component includes a first ratchet wheel 57 fixedly connected to the top of the second gear 56.
[0039] One side of the bottom of the rotating barrel 52 is rotatably connected to a first pawl 58, the first pawl 58 is engaged with the first ratchet wheel 57, and a second spring 59 is sleeved on the rotating shaft at the top of the first pawl 58. It should be noted that: by the cooperation of the first pawl 58 and the first ratchet wheel 57, the rotating barrel 52 can drive the second gear 56 to rotate when rotating forward. However, when the rotating barrel 52 rotates in reverse, the rotating barrel 52 cannot directly drive the second gear 56 to rotate.
[0040] In this embodiment, as Figure 14 shown, the second one-way component includes a second ratchet wheel 517 fixedly connected to the top of the sector gear ring 511.
[0041] One side of the bottom of the third gear 513 is rotatably connected to a second pawl 518, the second pawl 518 is engaged with the second ratchet wheel 517, and a third spring 519 is sleeved on the rotating shaft at the top of the second pawl 518. It should be noted that: by the cooperation of the second pawl 518 and the second ratchet wheel 517, the rotating barrel 52 and the first gear 510 can drive the sector gear ring 511 and the third gear 513 to rotate when rotating forward. When the rotating barrel 52, the second gear 56 and the first gear 510 rotate in reverse, the third gear 513 and the second rotating shaft 516 can be driven to rotate through the second gear 56, and the sector gear ring 511 can be driven to rotate through the first gear 510, so that the sector gear ring 511 and the second rotating shaft 516 rotate in opposite directions, that is, the rotating directions of the sector gear ring 511 and the second rotating shaft 516 are different.
[0042] In this embodiment, as Figure 3 、 Figure 5 and Figure 6 shown, the liquid outlet hole 32 is inclined, and the outer end of the liquid outlet hole 32 is higher than the inner end of the liquid outlet hole 32. The liquid outlet hole 32 is located above the funnel 514.
[0043] A plurality of baffle plates 318 are fixed to the outer wall of the top of the fixed barrel 31. The baffle plates 318 are located at the top of the liquid outlet holes 32, and the baffle plates 318 correspond to the liquid outlet holes 32 one by one. It should be noted that: the liquid outlet holes 32 are inclined holes, which can make the liquid spray obliquely upward. The sprayed liquid collides with the baffle plates 318, making the liquid more dispersed and enabling better mixing of the liquid.
[0044] As Figures 1 to 14 shown, the usage method and advantages of the present invention are as follows: The working process of the high-clean vehicle fuel blending device is as follows: S1. First, the barrel cover assembly 2 is lifted by the lifting device, and then an appropriate amount of raw materials are added into the blending barrel 1. Then, the barrel cover assembly 2 is lowered to cooperate with the blending barrel 1. S2. Then, the rotating motor 41 drives the cam 42 to rotate, thereby causing the guide post 44 to lift and lower. Through the guide post 44, the rocker 46 rotates, thereby causing the first link 47 and the second link 48 to lift and lower. When the first link 47 rises and the second link 48 descends, the fixed plate 319, the fixed rod 37 and the piston assembly are lifted by the first link 47. During the rising process, the sealing plate 35 can be disengaged, and the liquid can enter the fixed barrel 31 through the liquid inlet under negative pressure. At the same time, the liquid above the piston assembly can be squeezed, so that the liquid sprays out from the liquid outlet hole 32, making the liquid evenly distributed in the batching barrel 1. And a part of the liquid sprayed out from the liquid outlet hole 32 will fall into the funnel 514, and then the liquid is further mixed and dispersed through the funnel 514. When the piston assembly rises to the top, the second arc-shaped block 315 squeezes the second push block 317 to move the second arc-shaped block 315, thereby causing the second annular plate 38 to rotate, and further causing the arm rod 311 to rotate. The sealing blade 312 is driven to rotate by the arm rod 311, so that the piston assembly is in an open state. At the same time, the lifting column 53 and the guide block 54 are driven to descend by the second link 48, so that the rotating barrel 52 can rotate forward, so that the first rotating shaft 515, the support plate 512 and the first gear 510 can rotate. Through the support plate 512, the third gear 513 and the funnel 514 can rotate along the axis of the rotating barrel 52, realizing the adjustment of the position of the stirring blade 520, so that the stirring blade 520 can stir the edge area and the central area of the blending barrel 1. The sector gear ring 511 is driven to rotate by the first gear 510, thereby driving the second rotating shaft 516, the third gear 513 and the funnel 514 to rotate. The stirring blade 520 can be rotated by the rotation of the second rotating shaft 516 to stir the liquid. The second gear 56 is driven to rotate by the third gear 513. At this time, the rotation directions of the first gear 510 and the second gear 56 are opposite, so that the second gear 56 can roll along the full tooth ring 51.
[0045] When the first connecting rod 47 descends and the second connecting rod 48 ascends, the fixing plate 319, the fixing rod 37 and the piston assembly are descended by the first connecting rod 47. During the descending process, the sealing plate 35 can be reset by the elastic force of the first spring 33, so that the liquid inlet can be sealed, and the liquid can be extruded to be located above the piston assembly. When the piston assembly descends to the bottom, the first arc-shaped block 314 extrudes the first push block 316 to move the first arc-shaped block 314, so that the second annular plate 38 rotates, and then the arm rod 311 rotates. The sealing blade 312 is driven to rotate by the arm rod 311, so that the piston assembly is in a closed state; at the same time, the lifting column 53 and the guide block 54 are driven to ascend by the second connecting rod 48, so that the rotating barrel 52 can be reversed, so that the first rotating shaft 515, the second gear 56, the support plate 512 and the first gear 510 can rotate, and the second gear 56 rolls along the full-tooth ring 51. The third gear 513 and the funnel 514 can rotate along the axis of the rotating barrel 52 through the support plate 512, so that the third gear 513 and the funnel 514 are reset. The third gear 513 is driven to rotate by the second gear 56, so that the funnel 514 and the second rotating shaft 516 can be driven to rotate, and then the stirring blade 520 rotates to stir the liquid. At the same time, the sector gear ring 511 is driven to rotate by the first gear 510, so that the sector gear ring 511 is reset.
[0046] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art of this industry should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A high-clean vehicle fuel preparation device, comprising a preparation barrel (1) and a barrel cover assembly (2) connected to the top of the preparation barrel (1); Features: A lifting mechanism (4) is connected to one side of the top of the barrel cover assembly (2); a spraying mechanism (3) is connected to one side of the lifting mechanism (4); the spraying mechanism (3) is used to absorb liquid at the bottom of the mixing barrel (1) and transfer it to the top for spraying around; and a stirring mechanism (5) is connected to the other side of the lifting mechanism (4); the stirring mechanism (5) is used to stir the edge area and the center area of the mixing barrel (1).
2. The high-clean vehicle fuel preparation device according to claim 1 is characterized in that: The stirring mechanism (5) comprises a lifting column (53) connected to the bottom of the lifting mechanism (4) and a guide block (54) rotatably connected to one side of the lifting column (53); One side of the barrel cover assembly (2) is rotatably connected to a rotating barrel (52), the inner wall of the rotating barrel (52) is provided with a spiral groove (55), and the groove body of the spiral groove (55) cooperates with the guide block (54); The bottom of the rotating barrel (52) is fixedly connected to a first rotating shaft (515), the bottom of the first rotating shaft (515) is fixedly connected to a first gear (510), the top of the first rotating shaft (515) is rotatably connected to a second gear (56), and the second gear (56) is connected to the rotating barrel (52) via a first one-way component; A full gear ring (51) is fixed to the inner wall of the top of the mixing barrel (1), and the full gear ring (51) is meshingly connected to the second gear (56); One side of the bottom of the rotating barrel (52) is fixedly connected to a support plate (512); the bottom of one end of the support plate (512) is rotatably connected to a third gear (513); the third gear (513) is meshingly connected to the second gear (56); the top end of the third gear (513) passes through the support plate (512) to connect to a funnel (514); and a side wall of the funnel (514) is provided with a plurality of water holes; The bottom of the third gear (513) is fixedly connected to the second rotating shaft (516), the bottom of the second rotating shaft (516) is fixedly connected to a plurality of stirring paddles (520), the top of the second rotating shaft (516) is rotatably connected to the sector gear ring (511), the sector gear ring (511) is meshingly connected to the first gear (510), and the sector gear ring (511) is connected to the third gear (513) via a second one-way component.
3. The high-clean vehicle fuel preparation device according to claim 2 is characterized in that: The barrel cover assembly (2) comprises an outer ring plate (21) rotatably connected to the top of the mixing barrel (1) and an inner ring plate (22) rotatably connected to the inner wall of the outer ring plate (21); one side of the outer ring plate (21) is rotatably connected to the rotating barrel (52).
4. The high-clean vehicle fuel preparation device according to claim 3 is characterized in that: The spray mechanism (3) comprises a fixed barrel (31) connected to the bottom of the inner ring plate (22), the bottom of the fixed barrel (31) is provided with a liquid inlet, the top side wall of the fixed barrel (31) is provided with a plurality of liquid outlet holes (32), a first spring (33) is connected to a plurality of grooves provided on the lower surface of the fixed barrel (31), the top of the first spring (33) is connected to a sliding column (34), the top of the sliding column (34) is connected to a sealing plate (35), and the sealing plate (35) cooperates with the liquid inlet; A piston assembly is slidably connected to the inner wall of the bottom of the fixed barrel (31), and fixed rods (37) are fixedly connected to both sides of the top of the piston assembly. The fixed rods (37) pass through the fixed barrel (31) and the inner ring plate (22) to connect to the fixed plate (319), and the top of the fixed plate (319) is connected to the lifting mechanism (4).
5. The high-clean vehicle fuel preparation device according to claim 4 is characterized in that: The piston assembly comprises a first annular plate (36) slidably connected to the inner wall of the bottom of the fixed barrel (31), first arc-shaped holes (313) are provided on both sides of the first annular plate (36), a plurality of limiting protrusions (39) are fixed to the bottom of the first annular plate (36), the bottom of the first annular plate (36) is rotatably connected to a second annular plate (38) on the outer side, a plurality of evenly distributed second arc-shaped holes (310) are provided on the second annular plate (38), and the second arc-shaped holes (310) cooperate with the limiting protrusions (39); The bottom of the second annular plate (38) is rotatably connected to a plurality of evenly distributed arm rods (311), one end of the arm rod (311) away from the limiting protrusion (39) is rotatably connected to a sealing blade (312), and one side of the top of the sealing blade (312) is rotatably connected to the first annular plate (36); The first push blocks (316) are fixedly connected to both sides of the lower surface of the fixed barrel (31), and the second push blocks (317) are fixedly connected to both sides of the upper surface of the fixed barrel (31); The first arc block (314) is connected to both sides of the bottom of the second annular plate (38), the first arc block (314) cooperates with the first push block (316), the top end of the first arc block (314) passes through the second annular plate (38) to connect to the fixed shaft, the fixed shaft cooperates with the first arc hole (313), the top end of the fixed shaft is connected to the second arc block (315), and the second arc block (315) cooperates with the second push block (317).
6. The high-clean vehicle fuel preparation device according to claim 4 is characterized in that: The lifting mechanism (4) comprises a rotating motor (41) connected to one side of the top of the outer ring plate (21), a driving end of the rotating motor (41) is connected to a cam (42), and one side of the cam (42) is provided with an annular groove (43); One side of the top of the outer ring plate (21) is fixedly connected to a support rod (45), one side of the top of the support rod (45) is rotatably connected to a tilting rod (46), one end of the tilting rod (46) is rotatably connected to a first connecting rod (47), the bottom of the first connecting rod (47) is rotatably connected to a rotating block (49), and the bottom of the rotating block (49) is rotatably connected to a fixed plate (319); One end of the tilting rod (46) away from the first connecting rod (47) is rotatably connected to the second connecting rod (48), and the bottom of the second connecting rod (48) is rotatably connected to the lifting column (53); One end of the tilting rod (46) away from the first connecting rod (47) is connected to a guide column (44), and the guide column (44) cooperates with the groove body of the annular groove (43).
7. The high-clean vehicle fuel preparation device according to claim 2, characterized in that: The first one-way component comprises a first ratchet (57) fixedly connected to the top of the second gear (56); One side of the bottom of the rotating barrel (52) is rotatably connected to a first pawl (58), the first pawl (58) cooperates with a first ratchet wheel (57), and a rotating shaft sleeve at the top of the first pawl (58) is provided with a second spring (59).
8. The high-clean vehicle fuel preparation device according to claim 2, characterized in that: The second one-way component comprises a second ratchet wheel (517) fixedly connected to the top of the sector gear ring (511); One side of the bottom of the third gear (513) is rotatably connected to a second pawl (518), the second pawl (518) cooperates with the second ratchet wheel (517), and a third spring (519) is provided on the rotating shaft sleeve at the top of the second pawl (518).
9. The high-clean vehicle fuel preparation device according to claim 4, characterized in that: The liquid outlet hole (32) is inclined, and the outer end of the liquid outlet hole (32) is higher than the inner end of the liquid outlet hole (32), and the liquid outlet hole (32) is located above the funnel (514); A plurality of shielding plates (318) are fixed to the outer wall of the top of the fixed barrel (31), the shielding plates (318) are located at the top of the liquid outlet holes (32), and the shielding plates (318) correspond to the liquid outlet holes (32) one by one.
Citation Information
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