CN114768589A - Grading adjustment type efficient stirrer - Google Patents
Grading adjustment type efficient stirrer Download PDFInfo
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- CN114768589A CN114768589A CN202210538429.0A CN202210538429A CN114768589A CN 114768589 A CN114768589 A CN 114768589A CN 202210538429 A CN202210538429 A CN 202210538429A CN 114768589 A CN114768589 A CN 114768589A
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Abstract
The invention discloses a graded adjustment type efficient stirrer, which comprises: the blanking assembly is used for storing additives in a classified manner; the driving mechanism is connected with the blanking assembly and provides driving force for the stirrer; the stirring mechanism is used for stirring the industrial oil and the additive and uniformly mixing the additive into the industrial oil; the lifting mechanism bears the stirring mechanism and the driving mechanism; the stirring mechanism comprises a double-rod rotating assembly and a classified adding assembly; the double-rod rotating assembly comprises an oil storage tank, a first stirring rod, a second stirring rod, a first supporting rod, a second supporting rod, an auxiliary plate assembly and a dispersing box shell; the oil storage tank is connected with the lifting mechanism, the first stirring rod and the second stirring rod are both connected with the driving mechanism, the first supporting rod is movably connected with the first stirring rod, the second supporting rod is movably connected with the second stirring rod, and the stirring box shell is fixedly connected with the second supporting rod; the invention has the characteristics of strong practicability and capability of selecting the types of the additives in real time.
Description
Technical Field
The invention relates to the technical field of industrial oil processing, in particular to a grading adjustment type efficient stirrer.
Background
The industrial oil is generally formed by combining crude oil and industrial additives, has great effect on industrial development, the industrial lubricating oil has different additives in different application occasions, the outdoor hydraulic oil is suitable for local temperature change, and the hydraulic oil in an indoor closed environment cannot be used, so the types of the additives which need to be added for the industrial oil with different standards are different, and therefore, the design of a graded adjustment type high-efficiency stirrer with strong practicability and capability of selecting the types of the additives in real time is necessary.
Disclosure of Invention
The invention aims to provide a graded-adjustment type efficient stirrer to solve the problems in the background technology.
In order to solve the technical problems, the invention provides the following technical scheme: hierarchical regulation formula high efficiency agitator includes:
the blanking assembly is used for storing additives in a classified manner;
the driving mechanism is connected with the blanking assembly and provides driving force for the stirrer;
the stirring mechanism is used for stirring the industrial oil and the additive and uniformly mixing the additive into the industrial oil;
the lifting mechanism bears the stirring mechanism and the driving mechanism;
the stirring mechanism comprises a double-rod rotating assembly and a classified adding assembly;
the double-rod rotating assembly comprises an oil storage tank, a first stirring rod, a second stirring rod, a first supporting rod, a second supporting rod, an auxiliary plate assembly and a dispersing box shell;
the oil storage tank is connected with the lifting mechanism, the first stirring rod and the second stirring rod are both connected with the driving mechanism, the first supporting rod is movably connected with the first stirring rod, the second supporting rod is movably connected with the second stirring rod, the stirring box shell is fixedly connected with the second supporting rod, the first stirring rod and the second stirring rod run in the same direction, the second supporting rod performs angle adjustment according to the industrial oil amount in the oil storage tank, if the industrial oil submerges the second supporting rod and the industrial oil level is higher than 10cm of the second supporting rod, the angle of the second supporting rod does not need to be adjusted, if the industrial oil level is higher than the second supporting rod but less than 10cm, the angle of the second supporting rod needs to be adjusted to be pressed down, so that the second supporting rod is arranged as shown in figure 2, and the second supporting rod is arranged so that the first time in the additive adding process is wrapped by the industrial oil, the situation that the additive is directly attached to the wall of the oil storage tank in the stirring process of the industrial oil is avoided, and if the additive is directly attached to the wall of the oil storage tank in the heating process of the industrial oil, the additive is continuously attached to the wall of the oil storage tank after being heated, so that the wall of the oil storage tank is corroded;
the auxiliary plate assembly comprises a first baffle and a second baffle, the second baffle is fixedly connected with the first supporting rod, the first baffle is fixedly connected with the second baffle, a groove is formed in one side of the second baffle, an adding hole is formed in the side wall of the groove, a base block is fixedly mounted at the bottom of the groove, a telescopic rod is arranged on the base block, a first driving portion is arranged inside the telescopic rod, a rotating rod is fixedly mounted at the output end of the first driving portion, a small hard rod is hinged to the side wall of the rotating rod, and the small hard rod is electrically connected with a second driving portion;
when the additive directly enters the oil storage tank, part of the additive is directly wrapped by industrial oil to form pimple-shaped coagulum, the part of the additive cannot be fused with the industrial oil, the calculated ratio of the additive to the industrial oil is caused to lose efficacy, the additive enters the oil storage tank through the additive holes, different additive holes can add additives of different specifications aiming at the industrial oil with different characteristics, namely, the additive holes of the corresponding additive are opened, when the additive holes are opened, the telescopic rod is extended, the small hard rod is opened to the state shown in figure 4, the rotary rod starts to rotate to drive the small hard rod to rotate, the small hard rod just stirs the additive and the industrial oil when the additive just contacts with the industrial oil, the probability of the coagulum is reduced, meanwhile, the additive is pushed to the bottom of the oil storage tank through the stirring of the small hard rod, the additive is prevented from upwards surging, and the additive is directly attached to the wall of the tank.
According to the technical scheme, a third driving part is arranged in the stirring box shell, the output end of the third driving part is fixedly connected with a round rod, a side rod is fixedly connected to the side wall of the round rod, and a leak hole is formed in the side wall in the stirring box shell;
it just to stir up box casing and accessory plate subassembly syntropy, stir up the box casing and look for the existence of clot at the in-process of stirring, the clot can get into the inside of stirring up the box casing through the small opening, then stir the bits of broken glass to the clot once more through the side lever is rotatory for additive and industrial oil fully fuse, the rotational speed of side lever is fast, stir up the rolling of industrial oil when the box casing can stir in order effectively to restrain the side lever, industrial oil fluctuation range is too big has the risk of overflowing.
According to the technical scheme, the classified adding assembly comprises a first volume cavity, a second volume cavity, an extrusion plate, a first electromagnetic valve, a second electromagnetic valve and a slide rail;
the second electromagnetic valve is arranged at the position of the adding hole, the second volume cavity is arranged between the second electromagnetic valve and the first electromagnetic valve, the first volume cavity is arranged on the other side of the first electromagnetic valve, the sliding rail is fixedly arranged on the side walls of the first volume cavity and the second volume cavity, the extrusion plate is in sliding connection with the sliding rail, and the first electromagnetic valve is arranged on the extrusion plate.
According to the technical scheme, the blanking assembly comprises a storage barrel and a partition plate, and the partition plate is welded on the inner wall of the storage barrel;
the storage barrel is internally divided into a plurality of intervals, each interval stores one additive, and each additive correspondingly enters the oil storage tank through a group of classified adding components;
the additive enters the first volume cavity first, the first volume cavity is filled, when the additive needs to be added, the first electromagnetic valve is opened, the additive in the first volume cavity enters the second volume cavity, the first electromagnetic valve is closed after the additive in the second volume cavity is filled, the second electromagnetic valve is opened, the extrusion plate extrudes the additive in the second volume cavity to the oil storage tank through the slide rail, and industrial oil is prevented from entering the first volume cavity;
which additive needs to be added controls the corresponding classified adding component, the volume of the second volume cavity can be set by adjusting the position of the extrusion plate, and the amount of the additive added in each time is calculated according to the volume of the second volume cavity.
According to the technical scheme, the driving mechanism comprises a motor assembly, a first material conveying hole and a clamping groove;
the motor assembly is fixedly arranged on the lifting mechanism, the first material conveying hole is formed in the motor assembly, and the clamping groove is formed in the side wall of the first material conveying hole;
the first material conveying hole is connected with the material storage barrel through a pipeline.
According to the technical scheme, the driving mechanism further comprises a main driving rod, a second material conveying hole, a fixing plate, a first fixing shaft sleeve and a second fixing shaft sleeve;
the second material conveying hole is formed in the main driving rod, the main driving rod is in transmission connection with the motor assembly, the second material conveying hole is in pipeline connection with the first material conveying hole, the second material conveying hole is in pipeline connection with the first volume cavity, the main driving rod is in fixed connection with the fixing plate, the first fixing shaft sleeve and the second fixing shaft sleeve are respectively arranged at two ends of the fixing plate, the first stirring rod is in fixed connection with the first fixing shaft sleeve, the second stirring rod is in fixed connection with the second fixing shaft sleeve, and the first supporting rod and the second supporting rod are both electrically connected with the motor assembly;
connecting one end of an additive pipeline with the material storage barrel, connecting the other end of the additive pipeline with a first material conveying hole, connecting the additive pipeline with a second material conveying hole through the first material conveying hole, and then connecting the additive pipeline with a first volume cavity through the second material conveying hole, wherein each interval is connected with one additive pipeline, and different additive pipelines are introduced into different second material conveying holes;
the main drive pole is rotatory to drive the fixed plate rotatory, and the main drive pole is rotatory not to influence the additive pipeline, and the fixed plate is rotatory to drive first fixed axle sleeve, the fixed axle sleeve of second rotatory, drives supplementary board subassembly then and stirs scattered box rotation and stir industrial oil.
According to the technical scheme, the lifting mechanism comprises a vertical plate, an upper transverse plate, a lower transverse plate, a roller, a thickened plate, a limiting plate assembly, a lifting rod and a bearing plate;
the lifting device comprises a vertical plate, an upper transverse plate, a lower transverse plate, a driving mechanism, a thickened plate, limiting plate assemblies, a bearing plate, a roller and a roller, wherein the vertical plate and the upper transverse plate are fixedly connected, the vertical plate and the lower transverse plate are fixedly connected, the driving mechanism is fixedly installed at the top of the upper transverse plate, the thickened plate is fixedly installed at the top of the lower transverse plate, the limiting plate assemblies are provided with limiting sliding strips, the limiting plate assemblies are divided into two groups, one group of limiting plate assembly is in sliding connection with the limiting sliding strips, the two ends of the limiting sliding strips are provided with limiting blocks, the two ends of the lifting rod are connected with the limiting plate assemblies as bearings, the other group of limiting plate assembly is fixedly connected with the bearing plate, the bearing plate is fixedly connected with the oil storage tank, and the roller is connected with the thickened plate;
through controlling the lifting of the limit plate component on the limit sliding strip, the bearing plate is adjusted to be lifted, and the height suitable for operation of workers is achieved.
Compared with the prior art, the invention has the following beneficial effects: according to the invention, the stirring box shell is arranged, so that the stirring box shell can effectively inhibit the industrial oil from rolling when the side rod is stirred, and the industrial oil has a risk of overflowing due to overlarge fluctuation range.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
FIG. 1 is an overall cross-sectional elevational view of the invention;
FIG. 2 is a schematic view of the stirring mechanism of the present invention;
FIG. 3 is a schematic view of an auxiliary plate assembly of the present invention;
FIG. 4 is a schematic view of the compact wand of the present invention deployed;
FIG. 5 is an undeployed schematic view of the compact hard rod of the present invention;
FIG. 6 is a schematic view of a first and second volume of the present invention;
FIG. 7 is a schematic front view of a scattering box of the present invention;
FIG. 8 is a back view of a scattering box of the present invention;
FIG. 9 is a schematic view of the blanking assembly of the present invention;
in the figure: 1. a lifting mechanism; 2. a stirring mechanism; 3. a drive mechanism; 4. a motor assembly; 5. a vertical plate; 6. a roller; 7. thickening the plate; 8. a lifting rod; 9. a limiting plate component; 10. a carrier plate; 11. a blanking assembly; 12. a storage barrel; 13. a partition plate; 14. a card slot; 15. a first feeding hole; 16. a main drive rod; 17. a second feeding hole; 18. a fixing plate; 19. a first fixed shaft sleeve; 20. a second fixed shaft sleeve; 21. a first stirring rod; 22. a second stirring rod; 23. an auxiliary plate assembly; 24. stirring and dispersing the box; 25. an oil storage tank; 26. a first support bar; 27. a second baffle; 28. a first baffle plate; 29. an addition hole; 30. a groove; 31. a base block; 32. a telescopic rod; 33. rotating the rod; 34. a small hard rod; 35. a second solenoid valve; 36. a slide rail; 37. a pressing plate; 38. a first solenoid valve; 39. a first volume chamber; 40. a second volume chamber; 41. a second support bar; 42. a leak hole; 43. a side lever; 44. an upper transverse plate; 45. a lower transverse plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-9, the present invention provides the following technical solutions: hierarchical regulation formula high efficiency agitator includes:
the blanking assembly 11 is used for storing additives in a classified manner;
the driving mechanism 3 is connected with the blanking assembly 11 and provides driving force for the stirrer;
the stirring mechanism 2 is used for stirring the industrial oil and the additive and uniformly mixing the additive into the industrial oil;
the lifting mechanism 1 bears the stirring mechanism 2 and the driving mechanism 3;
the stirring mechanism 2 comprises a double-rod rotating assembly and a classified adding assembly;
the double-rod rotating component comprises an oil storage tank 25, a first stirring rod 21, a second stirring rod 22, a first supporting rod 26, a second supporting rod 41, an auxiliary plate component 23 and a dispersing box 24 shell;
the oil storage tank 25 is connected to the lifting mechanism 1, the first stirring rod 21 and the second stirring rod 22 are both connected to the driving mechanism 3, the first supporting rod 26 is movably connected to the first stirring rod 21, the second supporting rod 41 is movably connected to the second stirring rod 22, the casing of the stirring box 24 is fixedly connected with the second supporting rod 41, the first stirring rod 21 and the second stirring rod 22 run in the same direction, the second supporting rod 41 performs angle adjustment according to the industrial oil quantity in the oil storage tank 25, if the industrial oil level is higher than that of the second supporting rod 41 and the industrial oil level is higher than that of the second supporting rod 4110cm, the angle of the second supporting rod 41 does not need to be adjusted, if the industrial oil level is higher than that of the second supporting rod 41 but less than 10cm, the angle of the second supporting rod 41 needs to be adjusted to be pressed down, so that the second supporting rod 41 is arranged as shown in fig. 2, the second supporting rod 41 is arranged so that the first time is wrapped by the industrial oil in the additive adding process, the additive can not be directly attached to the tank wall of the oil storage tank 25 in the stirring process of the industrial oil, and the oil storage tank 25 can be continuously attached to the tank wall of the oil storage tank 25 after being heated to corrode the tank wall if the additive is directly attached to the tank wall in the heating process of the industrial oil;
the auxiliary plate assembly 23 comprises a first baffle 28 and a second baffle 27, the second baffle 27 is fixedly connected with the first supporting rod 26, the first baffle 28 is fixedly connected with the second baffle 27, one side of the second baffle 27 is provided with a groove 30, the side wall of the groove 30 is provided with an adding hole 29, the bottom of the groove 30 is fixedly provided with a base block 31, the base block 31 is provided with an expansion rod 32, a first driving part is arranged inside the expansion rod 32, the output end of the first driving part is fixedly provided with a rotating rod 33, the side wall of the rotating rod 33 is hinged with a small hard rod 34, and the small hard rod 34 is electrically connected with a second driving part;
when the additive directly enters the oil storage tank 25, part of the additive is directly wrapped by the industrial oil to form pimple-shaped coagulum, the part of the additive cannot be fused with the industrial oil, so that the calculated ratio of the additive to the industrial oil is invalid, the additive enters the oil storage tank 25 through the addition holes 29, different addition holes 29 can add the additives with different specifications aiming at the industrial oil with different characteristics, namely, the adding holes 29 of the corresponding additives are opened, the telescopic rod 32 is extended and the small hard rod 34 is opened to the state as shown in fig. 4 while the adding holes 29 are opened, the rotating rod 33 starts to rotate to drive the small hard rod 34 to rotate, the small hard rod 34 stirs the additives away when the additives are just contacted with the industrial oil, so that the probability of occurrence of coagulum is reduced, meanwhile, the additive is pushed to the bottom of the oil storage tank 25 by stirring of the small hard rod 34, so that the additive is prevented from being turned upwards and directly attached to the wall of the tank.
A third driving part is arranged in the shell of the stirring box 24, the output end of the third driving part is fixedly connected with a round rod, the side wall of the round rod is fixedly connected with a side rod 43, and a leak hole 42 is formed in the side wall in the shell of the stirring box 24;
it just to stir 24 casings of box and auxiliary plate subassembly 23 syntropy just to stir 24 casings of box and look for the existence of clot at the in-process of stirring, the clot can get into the inside of stirring 24 casings of box through weeping hole 42, then stir the clot once more through the rotation of side lever 43 for the additive fully fuses with industrial oil, the rotational speed of side lever 43 is fast, stir 24 casings of box and can effectively restrain the side lever 43 and stir the roll of industrial oil when stirring, industrial oil fluctuation range is too big has the risk of spilling over.
The classification adding assembly comprises a first volume cavity 39, a second volume cavity 40, a squeezing plate 37, a first electromagnetic valve 38, a second electromagnetic valve 35 and a sliding rail 36;
the second electromagnetic valve 35 is arranged at the adding hole 29, the second volume cavity 40 is arranged between the second electromagnetic valve 35 and the first electromagnetic valve 38, the first volume cavity 39 is arranged at the other side of the first electromagnetic valve 38, the slide rail 36 is fixedly arranged on the side walls of the first volume cavity 39 and the second volume cavity 40, the extrusion plate 37 is in sliding connection with the slide rail 36, and the first electromagnetic valve 38 is arranged on the extrusion plate 37.
The blanking assembly 11 comprises a storage barrel 12 and a partition plate 13, and the partition plate 13 is welded on the inner wall of the storage barrel 12;
the storage barrel 12 is divided into a plurality of intervals, each interval stores one additive, and each additive correspondingly enters the oil storage tank 25 through a group of classified adding components;
the additive firstly enters the first volume chamber 39, the first volume chamber 39 is fully accumulated, when the additive needs to be added, the first electromagnetic valve 38 is opened, the additive in the first volume chamber 39 enters the second volume chamber 40, the additive waits for the additive to be fully accumulated in the second volume chamber 40, the first electromagnetic valve 38 is closed, the second electromagnetic valve 35 is opened, the extrusion plate 37 extrudes the additive in the second volume chamber 40 to the oil storage tank 25 through the slide rail 36, and the industrial oil is prevented from entering the first volume chamber 39;
which additive needs to be added controls the corresponding classified adding component, the volume of the second volume chamber 40 can be set by adjusting the position of the extrusion plate 37, and the amount of additive added each time is calculated according to the volume of the second volume chamber 40.
The driving mechanism 3 comprises a motor component 4, a first material conveying hole 15 and a clamping groove 14;
the motor component 4 is fixedly arranged on the lifting mechanism 1, the first material conveying hole 15 is formed in the motor component 4, and the clamping groove 14 is formed in the side wall of the first material conveying hole 15;
the first material conveying hole 15 is connected with the material storage barrel 12 through a pipeline.
The driving mechanism 3 also comprises a main driving rod 16, a second material conveying hole 17, a fixed plate 18, a first fixed shaft sleeve 19 and a second fixed shaft sleeve 20;
the second material conveying hole 17 is arranged in the main driving rod 16, the main driving rod 16 is in transmission connection with the motor assembly 4, the second material conveying hole 17 is in pipeline connection with the first material conveying hole 15, the second material conveying hole 17 is in pipeline connection with the first volume cavity 39, the main driving rod 16 is in fixed connection with the fixed plate 18, the first fixed shaft sleeve 19 and the second fixed shaft sleeve 20 are respectively arranged at two ends of the fixed plate 18, the first stirring rod 21 is fixedly connected with the first fixed shaft sleeve 19, the second stirring rod 22 is fixedly connected with the second fixed shaft sleeve 20, and the first supporting rod 26 and the second supporting rod 41 are both electrically connected with the motor assembly 4;
connecting one end of an additive pipeline with the material storage barrel 12, connecting the other end of the additive pipeline with the first material conveying hole 15, connecting the additive pipeline with the second material conveying hole 17 through the first material conveying hole 15, and then connecting the additive pipeline with the first volume cavity 39 through the second material conveying hole 17, wherein each interval is connected with one additive pipeline, and different additive pipelines are introduced into different second material conveying holes 17;
the main drive pole 16 is rotatory to drive fixed plate 18 rotatory, and the main drive pole 16 is rotatory not to influence the additive pipeline, and fixed plate 18 is rotatory to drive first fixed axle sleeve 19, the fixed axle sleeve 20 of second rotatory, drives auxiliary plate subassembly 23 and stirs scattered box 24 rotation then and stir industrial oil.
The lifting mechanism 1 comprises a vertical plate 5, an upper transverse plate 44, a lower transverse plate 45, a roller 6, a thickened plate 7, a limiting plate assembly 9, a lifting rod 8 and a bearing plate 10;
the vertical plate 5 is fixedly connected with the upper transverse plate 44, the vertical plate 5 is fixedly connected with the lower transverse plate 45, the driving mechanism 3 is fixedly mounted at the top of the upper transverse plate 44, the thickened plate 7 is fixedly mounted at the top of the lower transverse plate 45, the top of the thickened plate 7 is provided with a limiting slider, the limiting plate assemblies 9 are divided into two groups, one group of limiting plate assemblies 9 are in sliding connection with the limiting slider, two ends of the limiting slider are respectively provided with a limiting block, two ends of the lifting rod 8 are respectively connected with the limiting plate assemblies 9 through bearings, the other group of limiting plate assemblies 9 are fixedly connected with the bearing plate 10, the bearing plate 10 is fixedly connected with the oil storage tank 25, and the idler wheel 6 is connected with the thickened plate 7;
the bearing plate 10 is adjusted to lift by controlling the limiting plate assembly 9 to slide on the limiting slide bar, so that the height suitable for the operation of workers is reached.
The working process is as follows:
pouring the industrial oil into the oil storage tank 25, starting the driving assembly, controlling the auxiliary plate assembly 23 and the stirring box 24 by the driving assembly to rotate and stir the industrial oil, adding the set additives in the stirring process, if a plurality of groups of additives need to be added, adding a small amount of additives for multiple times according to the set unit amount, and continuously stirring the industrial oil until the additives are completely dissolved into the industrial oil.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (7)
1. Hierarchical regulation formula high efficiency agitator, its characterized in that includes:
the blanking assembly is used for storing additives in a classified manner;
the driving mechanism is connected with the blanking assembly and provides driving force for the stirrer;
the stirring mechanism is used for stirring the industrial oil and the additive and uniformly stirring and mixing the additive into the industrial oil;
the lifting mechanism bears the stirring mechanism and the driving mechanism;
the stirring mechanism comprises a double-rod rotating assembly and a classified adding assembly;
the double-rod rotating assembly comprises an oil storage tank, a first stirring rod, a second stirring rod, a first supporting rod, a second supporting rod, an auxiliary plate assembly and a dispersing box shell;
the oil storage tank is connected with the lifting mechanism, the first stirring rod and the second stirring rod are both connected with the driving mechanism, the first supporting rod is movably connected with the first stirring rod, the second supporting rod is movably connected with the second stirring rod, and the stirring box shell is fixedly connected with the second supporting rod;
the auxiliary plate assembly comprises a first baffle and a second baffle, the second baffle is fixedly connected with the first supporting rod, the first baffle and the second baffle are fixedly connected, a groove is formed in one side of the second baffle, an adding hole is formed in the side wall of the groove, a base block is fixedly mounted at the bottom of the groove, a telescopic rod is arranged on the base block, a first driving portion is arranged inside the telescopic rod, a rotary rod is fixedly mounted at the output end of the first driving portion, a small hard rod is hinged to the side wall of the rotary rod, and the small hard rod is electrically connected with a second driving portion.
2. The stepped, regulating, high efficiency mixer of claim 1, wherein: the stirring box is characterized in that a third driving part is arranged in the stirring box shell, the output end of the third driving part is fixedly connected with a round rod, a side rod is fixedly connected to the side wall of the round rod, and a leakage hole is formed in the side wall in the stirring box shell.
3. The stepped, regulating, high efficiency mixer according to claim 2, wherein: the classified adding assembly comprises a first volume cavity, a second volume cavity, a squeezing plate, a first electromagnetic valve, a second electromagnetic valve and a sliding rail;
the second electromagnetic valve is arranged at the position of the adding hole, the second volume cavity is arranged between the second electromagnetic valve and the first electromagnetic valve, the first volume cavity is arranged on the other side of the first electromagnetic valve, the sliding rail is fixedly arranged on the side walls of the first volume cavity and the second volume cavity, the extrusion plate is in sliding connection with the sliding rail, and the first electromagnetic valve is arranged on the extrusion plate.
4. The stepped, regulating, high efficiency mixer according to claim 3, wherein: the blanking assembly comprises a storage barrel and a partition plate, and the partition plate is welded on the inner wall of the storage barrel.
5. The stepped, regulating, high efficiency mixer according to claim 4, wherein: the driving mechanism comprises a motor assembly, a first material conveying hole and a clamping groove;
the motor assembly is fixedly arranged on the lifting mechanism, the first material conveying hole is formed in the motor assembly, and the clamping groove is formed in the side wall of the first material conveying hole;
the first material conveying hole is connected with the material storage barrel through a pipeline.
6. The stepped, regulating, high efficiency mixer according to claim 5, wherein: the driving mechanism also comprises a main driving rod, a second material conveying hole, a fixed plate, a first fixed shaft sleeve and a second fixed shaft sleeve;
the second is defeated the material hole and is located in the main drive pole, the main drive pole is connected for the transmission with motor element, the second is defeated the material hole and is connected for the pipeline with first defeated material hole, the second is defeated the material hole and is connected for the pipeline with first volume chamber, the main drive pole is fixed connection with the fixed plate, the both ends of fixed plate are located respectively to first fixed axle sleeve, the fixed axle sleeve of second, first puddler is fixed connection with first fixed axle sleeve, the second puddler is fixed connection with the fixed axle sleeve of second, first bracing piece, second bracing piece all are connected for the electricity with motor element.
7. The stepped, regulating, high efficiency mixer of claim 6, wherein: the lifting mechanism comprises a vertical plate, an upper transverse plate, a lower transverse plate, a roller, a thickened plate, a limiting plate assembly, a lifting rod and a bearing plate;
riser and last diaphragm are fixed connection, riser and lower diaphragm are fixed connection, actuating mechanism fixed mounting is at last diaphragm top, thickening board fixed mounting is at the top of diaphragm down, the top of thickening board is equipped with spacing draw runner, the limiting plate subassembly divide into two sets ofly, and is a set of spacing board subassembly and spacing draw runner are sliding connection, the both ends of spacing draw runner all are equipped with the stopper, the both ends of lifter all are connected for the bearing with the limiting plate subassembly, another group spacing board subassembly is fixed connection with the loading board, the loading board is fixed connection with the oil storage tank, the gyro wheel is connected with the thickening board.
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JP2019195760A (en) * | 2018-05-09 | 2019-11-14 | 株式会社愛工舎製作所 | Disc type mixing head having water cooling structure |
CN113318641A (en) * | 2021-06-08 | 2021-08-31 | 重庆德凯实业股份有限公司 | Viscous colloid mixing high-shear kettle |
CN113546558A (en) * | 2021-07-26 | 2021-10-26 | 梧州科润润滑科技有限公司 | Intelligent lubricating oil blending system |
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Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2019195760A (en) * | 2018-05-09 | 2019-11-14 | 株式会社愛工舎製作所 | Disc type mixing head having water cooling structure |
CN113318641A (en) * | 2021-06-08 | 2021-08-31 | 重庆德凯实业股份有限公司 | Viscous colloid mixing high-shear kettle |
CN113546558A (en) * | 2021-07-26 | 2021-10-26 | 梧州科润润滑科技有限公司 | Intelligent lubricating oil blending system |
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