CN218077864U - Preparation device for improving reaction rate of clodinafop-propargyl - Google Patents

Preparation device for improving reaction rate of clodinafop-propargyl Download PDF

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CN218077864U
CN218077864U CN202221344741.8U CN202221344741U CN218077864U CN 218077864 U CN218077864 U CN 218077864U CN 202221344741 U CN202221344741 U CN 202221344741U CN 218077864 U CN218077864 U CN 218077864U
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reaction
cylinder
reaction cylinder
clodinafop
propargyl
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CN202221344741.8U
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王海超
杜伟
蒋云翔
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Gansu Liankai Biotechnology Co ltd
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Gansu Liankai Biotechnology Co ltd
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Abstract

The utility model discloses an improve clodinafop-propargyl reaction rate's preparation facilities, which comprises a fixed frame, first reaction cylinder, the second reaction cylinder, third reaction cylinder and fourth reaction cylinder, the base is installed to the bottom of mount, the internally mounted of mount has first reaction cylinder, the second reaction cylinder, third reaction cylinder and fourth reaction cylinder, the pneumatic cylinder is all installed to four corners in top of mount, the device falls into four bottom interconnect's little reation kettle with a big reation kettle, when dropping into the raw materials, through the linker principle, let the raw materials in four reation kettle be the same, then stir through the puddler in four reation kettle, thereby it is more abundant to let the raw materials react, improve high clodinafop-propargyl reaction efficiency, time saving, also improve high clodinafop-propargyl's production output, and only need adopt single motor to drive, it is more stable when the puddler stirring, the phenomenon that can not appear rocking, the overall stability can be strong, and the people use and operate conveniently.

Description

Preparation device for improving reaction rate of clodinafop-propargyl
Technical Field
The utility model relates to a clodinafop-propargyl production field specifically is a preparation facilities who improves clodinafop-propargyl reaction rate.
Background
Clodinafop-propargyl is an organic matter, has a chemical formula of C17H13ClFNO4, is a white crystal, can be dissolved in organic solvents such as ethanol, diethyl ether, acetone, chloroform and the like, is decomposed under the conditions of strong acid and strong alkali, and is mainly used as a herbicide; when preparing clodinafop-propargyl, often need to put into reation kettle whole high clodinafop-propargyl raw materials in, then stir the processing, but single reation kettle stirs whole high clodinafop-propargyl raw materials and reacts, not only stir inefficiency, the reaction rate is slow, and the stirring load is big, influence driving motor's life, can not carry out many partition reactions with high clodinafop-propargyl raw materials in the reation kettle, thereby cause the reaction efficiency to be low, clodinafop-propargyl production output is low, inconvenient people use and operate, therefore, a preparation facilities for improving clodinafop-propargyl reaction rate is provided.
Disclosure of Invention
The utility model aims at the defect of prior art, provide an improve clodinafop-propargyl reaction rate's preparation facilities to solve the problem that above-mentioned background art provided.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an improve preparation facilities of clodinafop-propargyl reaction rate, includes mount, first reaction jar, second reaction jar, third reaction jar and fourth reaction jar, the base is installed to the bottom of mount, the internally mounted of mount has first reaction jar, second reaction jar, third reaction jar and fourth reaction jar, the pneumatic cylinder is all installed to four corners in top of mount, the top cap is installed at the top of pneumatic cylinder, the gear box is installed at the top of top cap, the motor is installed at the top of gear box, the bottom of top cap be equipped with first reaction jar, second reaction jar, third reaction jar and fourth reaction jar assorted sealed pad, the middle part of sealed pad is equipped with the rotation axis, the bearing is installed to the bottom of rotation axis, the bearing is installed on the inner tower, the welding has the stirring board on the rotation axis, the bottom of first reaction jar, second reaction jar, third reaction jar and fourth reaction jar is through communicating pipe interconnect, the bottom of communicating pipe is connected with the unloading pipe, install the solenoid valve on the unloading pipe, the bottom of unloading pipe, be connected with the conveying material pipe on the centrifugal pump, the base, install the switch board at the top of control cabinet, hydraulic pressure oil pump is installed to one side of hydraulic pressure oil tank.
As a preferred technical scheme of the utility model, first reaction jar, second reaction jar, third reaction jar and fourth reaction jar are all installed on the mount through the bolt, the pneumatic cylinder passes through the bolt and installs four corners at the top of mount, the top cap passes through the bolt and installs on the top of pneumatic cylinder.
As a preferred technical scheme of the utility model, the gear box passes through the bolt mounting on the top of top cap, the motor passes through the bolt mounting on the top of gear box, the internally mounted of gear box has a plurality of intermeshing's gear, and the rotation axis is installed to the bottom of gear.
As an optimal technical scheme of the utility model, the outer lane welding of bearing is on the connecting rod of inner tower, the rotation axis links to each other with the inner circle welding of bearing.
As a preferred technical scheme of the utility model, the welding of communicating pipe is on the bottom of first reaction jar, second reaction jar, third reaction jar and fourth reaction jar, the unloading pipe links to each other with the welding of communicating pipe, unloading pipe and conveying pipeline all pass through flange with the centrifugal pump and fix linking to each other.
As a preferred technical scheme of the utility model, the mount welding is on the top of base, hydraulic tank and switch board are all installed on the top of base through the bolt, hydraulic oil pump passes through the bolt and installs on hydraulic tank's top, hydraulic oil pump passes through hydraulic oil pipe and links to each other with pneumatic cylinder and hydraulic tank respectively.
As an optimal technical scheme of the utility model, control switch on the switch board respectively with motor, hydraulic oil pump, centrifugal pump and solenoid valve electric connection, sealed the pad passes through the screw fixation on the bottom of top cap.
The utility model has the advantages that: the device falls into four bottom interconnect's little reation kettle with a big reation kettle, when throwing into high clodinafop-propargyl raw materials, through the linker principle, let the raw materials in four reation kettles the same, then stir through the puddler in four reation kettles, thereby it is more abundant to let the raw materials react, improve reaction efficiency, and save time, also improve the production output, and only need adopt single motor to drive, more stable during the puddler stirring, the phenomenon that rocks can not appear, overall stability can be strong, the people of being convenient for use.
Drawings
FIG. 1 is a schematic view of the present invention;
FIG. 2 is a top sectional view of the fixing frame of the present invention;
FIG. 3 is a bottom sectional view of the fixing frame of the present invention;
fig. 4 is an internal cross-sectional view of the fixing frame of the present invention;
FIG. 5 is a schematic view of the internal structure of the gear box of the present invention;
fig. 6 is a top view of the inner frame of the present invention.
In the figure: the device comprises a fixed frame 1, a first reaction cylinder 2, a second reaction cylinder 3, a third reaction cylinder 4, a fourth reaction cylinder 5, a communicating pipe 6, a hydraulic cylinder 7, a top cover 8, a gear box 9, a motor 10, a sealing gasket 11, a rotating shaft 12, a stirring plate 13, an inner frame 14, a bearing 15, a hydraulic oil pump 16, a hydraulic oil tank 17, a control cabinet 18, a base 19, a centrifugal pump 20, a conveying pipe 21, a blanking pipe 22 and an electromagnetic valve 23.
Detailed Description
The following detailed description of the preferred embodiments of the present invention will be provided in conjunction with the accompanying drawings, so that the advantages and features of the present invention can be more easily understood by those skilled in the art, and the protection scope of the present invention can be clearly and clearly defined.
The embodiment is as follows: referring to fig. 1-6, the present invention provides a technical solution: a preparation device for improving reaction rate of clodinafop-propargyl, comprises a fixed frame 1, a first reaction cylinder 2, a second reaction cylinder 3, a third reaction cylinder 4 and a fourth reaction cylinder 5, wherein a base 19 is installed at the bottom of the fixed frame 1, the fixed frame 1 is internally provided with the first reaction cylinder 2, the second reaction cylinder 3, the third reaction cylinder 4 and the fourth reaction cylinder 5, hydraulic cylinders 7 are installed at four corners of the top of the fixed frame 1, a top cover 8 is installed at the top of each hydraulic cylinder 7, a gear box 9 is installed at the top of each top cover 8, a motor 10 is installed at the top of each gear box 9, the bottom of each top cover 8 is provided with a sealing gasket 11 matched with the first reaction cylinder 2, the second reaction cylinder 3, the third reaction cylinder 4 and the fourth reaction cylinder 5, the middle part of each sealing gasket 11 is provided with a rotating shaft 12, a bearing 15 is installed at the bottom of the rotating shaft 12, the bearing 15 is installed on an inner frame 14, a stirring plate 13 is welded on the rotating shaft 12, the first reaction cylinder 2, the second reaction cylinder 3, the third reaction cylinder 4 and the fourth reaction cylinder 5 are connected with a hydraulic control cabinet 17, a hydraulic control cabinet 18 is installed at the top of a hydraulic oil pump 17, a hydraulic control cabinet 18 is installed at the top of a hydraulic control cabinet 18, a centrifugal pump 17 is installed at the top of a hydraulic control cabinet 18, and a hydraulic oil tank 18 is installed at the top of the hydraulic control cabinet 17.
First reaction cylinder 2, second reaction cylinder 3, third reaction cylinder 4 and fourth reaction cylinder 5 all install on mount 1 through the bolt, and pneumatic cylinder 7 passes through the bolt and installs in four corners at the top of mount 1, and top cap 8 passes through the bolt and installs on pneumatic cylinder 7's top, adopts four reaction cylinders to shunt the stirring with the raw materials in the big reation kettle, raises the efficiency.
Gear box 9 passes through the bolt and installs on the top of top cap 8, and motor 10 passes through the bolt and installs on the top of gear box 9, and the internally mounted of gear box 9 has a plurality of intermeshing's gear, and rotation axis 12 is installed to the bottom of gear, thereby utilizes motor 10 circular telegram work to drive the gear rotation in the gear box 9 to drive four rotation axis 12 and rotate.
The outer ring of the bearing 15 is welded on the connecting rod of the inner frame 14, the rotating shaft 12 is welded with the inner ring of the bearing 15, and the rotating shaft 12 rotates around the bearing 15, thereby improving the stability of the whole.
The communicating pipe 6 is welded at the bottoms of the first reaction cylinder 2, the second reaction cylinder 3, the third reaction cylinder 4 and the fourth reaction cylinder 5, the feeding pipe 22 is welded with the communicating pipe 6, the feeding pipe 22 and the conveying pipe 21 are both fixedly connected with the centrifugal pump 20 through a connecting flange, the first reaction cylinder 2, the second reaction cylinder 3, the third reaction cylinder 4 and the fourth reaction cylinder 5 can be mutually communicated through the communicating pipe 6, and the feeding pipe 22 is used for discharging.
The mount 1 welds on the top of base 19, and hydraulic tank 17 and switch board 18 all install on the top of base 19 through the bolt, and hydraulic pump 16 passes through the bolt and installs on hydraulic tank 17's top, and hydraulic pump 16 passes through hydraulic pressure oil pipe and links to each other with pneumatic cylinder 7 and hydraulic tank 17 respectively, utilizes hydraulic pump 16 to pump the hydraulic oil in the hydraulic tank 17 to pneumatic cylinder 7 in to let pneumatic cylinder 7 rise suitable height with top cap 8.
The control switch on the control cabinet 18 is respectively electrically connected with the motor 10, the hydraulic oil pump 16, the centrifugal pump 20 and the electromagnetic valve 23, the sealing gasket 11 is fixed on the bottom of the top cover 8 through screws, and the control switch on the control cabinet 18 is utilized to respectively switch on the power supplies of the motor 10, the hydraulic oil pump 16, the centrifugal pump 20 and the electromagnetic valve 23 so as to electrify the motor 10, the hydraulic oil pump 16, the centrifugal pump 20 and the electromagnetic valve 23 to work.
The working principle is as follows: a preparation device for improving reaction rate of clodinafop-propargyl comprises a fixing frame 1, a first reaction cylinder 2, a second reaction cylinder 3, a third reaction cylinder 4 and a fourth reaction cylinder 5, wherein when the preparation device is used, a control switch on a control cabinet 18 is connected with a power supply of a hydraulic oil pump 16, the hydraulic oil pump 16 is powered on to pump hydraulic oil in a hydraulic oil tank 17 into a hydraulic cylinder 7, the hydraulic cylinder 7 is lifted to lift a top cover 8 to a proper height, then feeding is carried out manually, when feeding is carried out, the power supply of an electromagnetic valve 23 is turned off, a feeding pipe 22 is sealed, raw materials are fed into any one of the first reaction cylinder 2, the second reaction cylinder 3, the third reaction cylinder 4 and the fourth reaction cylinder 5, the raw materials are dispersed into the other three reaction cylinders through communicating pipes 6, so that the raw materials in the reaction cylinders are the same and much, and then the hydraulic cylinder 7 is slowly lowered, thereby inserting the rotating shaft 12 into the first reaction tank 2, the second reaction tank 3, the third reaction tank 4 and the fourth reaction tank 5, slowly lowering the inner frame 14 to the bottom of the first reaction tank 2, the second reaction tank 3, the third reaction tank 4 and the fourth reaction tank 5, sealing the top of the first reaction tank 2, the second reaction tank 3, the third reaction tank 4 and the fourth reaction tank 5 by using the sealing gasket 11, then switching on the power supply of the motor 10, driving the gear in the gear box 9 to engage and rotate by using the power supply of the motor 10, thereby driving the four rotating shafts 12 to rotate, driving the stirring plate 13 to rotate by using the rotation of the rotating shafts 12, stirring the raw materials by using the stirring plate 13, thereby improving the reaction efficiency and the yield, after the reaction is completed, opening the electromagnetic valve 23, pumping the high clodinafop semi-finished product by using the centrifugal pump 20 and using the conveying pipe 21 to pump the reacted high clodinafop semi-finished product And (5) carrying out conveying.
The above examples only represent some embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the concept of the present invention, several variations and modifications can be made, which all fall within the scope of the present invention.

Claims (7)

1. The utility model provides an improve clodinafop-propargyl reaction rate's preparation facilities, includes mount (1), first reaction jar (2), second reaction jar (3), third reaction jar (4) and fourth reaction jar (5), its characterized in that: a base (19) is installed at the bottom of the fixing frame (1), a first reaction cylinder (2), a second reaction cylinder (3), a third reaction cylinder (4) and a fourth reaction cylinder (5) are installed inside the fixing frame (1), hydraulic cylinders (7) are installed at four corners of the top of the fixing frame (1), a top cover (8) is installed at the top of each hydraulic cylinder (7), a gear box (9) is installed at the top of each top cover (8), a motor (10) is installed at the top of each gear box (9), a sealing gasket (11) matched with the first reaction cylinder (2), the second reaction cylinder (3), the third reaction cylinder (4) and the fourth reaction cylinder (5) is arranged at the bottom of each top cover (8), a rotating shaft (11) is arranged in the middle of each sealing gasket (11), a bearing (15) is installed at the bottom of each rotating shaft (12), the bearing (15) is installed on an inner frame (14), a stirring plate (13) is welded on each rotating shaft (12), the first reaction cylinder (2), the second reaction cylinder (3), the third reaction cylinder (4) and the fourth reaction cylinder (5) are connected with a discharging pipe (6), a discharging pipe (22) and a discharging pipe (22) is connected with the bottom of each other through a communicating pipe (6), the bottom of unloading pipe (22) is connected with centrifugal pump (20), be connected with conveying pipeline (21) on centrifugal pump (20), switch board (18) are installed at the top of base (19), hydraulic tank (17) are installed to one side of switch board (18), hydraulic oil pump (16) are installed at the top of hydraulic tank (17).
2. The preparation device for improving the reaction rate of clodinafop-propargyl according to claim 1, wherein: first reaction jar (2), second reaction jar (3), third reaction jar (4) and fourth reaction jar (5) all install on mount (1) through the bolt, four corners in the top of mount (1) are installed through the bolt in pneumatic cylinder (7), top cap (8) are installed on the top of pneumatic cylinder (7) through the bolt.
3. The preparation device for improving the reaction rate of clodinafop-propargyl according to claim 1, wherein: the gear box (9) is installed on the top of the top cover (8) through bolts, the motor (10) is installed on the top of the gear box (9) through bolts, a plurality of gears which are meshed with each other are installed inside the gear box (9), and a rotating shaft (12) is installed at the bottoms of the gears.
4. The preparation device for improving the reaction rate of clodinafop-propargyl according to claim 1, wherein: the outer ring of the bearing (15) is welded on the connecting rod of the inner frame (14), and the rotating shaft (12) is welded with the inner ring of the bearing (15).
5. The preparation device for improving the reaction rate of clodinafop-propargyl according to claim 1, wherein: the connecting pipe (6) is welded at the bottoms of the first reaction cylinder (2), the second reaction cylinder (3), the third reaction cylinder (4) and the fourth reaction cylinder (5), the discharging pipe (22) is connected with the connecting pipe (6) in a welded mode, and the discharging pipe (22) and the conveying pipe (21) are fixedly connected with the centrifugal pump (20) through a connecting flange.
6. The preparation device for improving the reaction rate of clodinafop-propargyl according to claim 1, wherein: the fixing frame (1) is welded on the top of the base (19), the hydraulic oil tank (17) and the control cabinet (18) are both installed on the top of the base (19) through bolts, the hydraulic oil pump (16) is installed on the top of the hydraulic oil tank (17) through bolts, and the hydraulic oil pump (16) is connected with the hydraulic cylinder (7) and the hydraulic oil tank (17) through hydraulic oil pipes respectively.
7. The preparation device for improving the reaction rate of clodinafop-propargyl according to claim 1, wherein: and a control switch on the control cabinet (18) is electrically connected with the motor (10), the hydraulic oil pump (16), the centrifugal pump (20) and the electromagnetic valve (23) respectively, and the sealing gasket (11) is fixed on the bottom of the top cover (8) through screws.
CN202221344741.8U 2022-05-31 2022-05-31 Preparation device for improving reaction rate of clodinafop-propargyl Active CN218077864U (en)

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Application Number Priority Date Filing Date Title
CN202221344741.8U CN218077864U (en) 2022-05-31 2022-05-31 Preparation device for improving reaction rate of clodinafop-propargyl

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221344741.8U CN218077864U (en) 2022-05-31 2022-05-31 Preparation device for improving reaction rate of clodinafop-propargyl

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CN218077864U true CN218077864U (en) 2022-12-20

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