A forming mechanism for processing of pesticide slurry

By combining a detachable molding die with a motor-controlled extrusion block and stirring rod, the problem of the single function of traditional stirring mechanisms is solved, achieving efficient mixing and molding of pesticide slurry, and improving processing efficiency and safety.

CN116766673BActive Publication Date: 2026-02-27JIANGSU SOUTHEAST PLANT PROTECTION CO LTD
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Patent Information

Application Number
CN202310627038.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-30
Publication Date
2026-02-27
Estimated Expiration
2043-05-30

AI Technical Summary

Technical Problem

Traditional mixing mechanisms have a fixed structure and limited functionality, which cannot improve the solidification and molding effect of pesticide slurries, resulting in low processing efficiency.

Method used

It adopts a detachable molding die, a top lifting extrusion block controlled by a lifting motor, and a bottom adjusting block controlled by a drive motor, combined with a telescopic stirring rod and an infrared positioning module, to achieve efficient mixing and molding of pesticide slurry.

Benefits of technology

It improves the mixing and molding efficiency of pesticide slurry, simplifies operation, reduces maintenance difficulty and cost, and enhances molding effect and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of pesticide slurry processing equipment, in particular to a forming mechanism for pesticide slurry processing, which comprises a main tank body, a lifting motor, a driving motor and an infrared positioning module. The forming mechanism for pesticide slurry processing is provided with a detachable forming die in the main tank body, a top lifting extrusion block controlled by the lifting motor and a bottom adjusting block controlled by the driving motor, raw materials input into the main tank body can be stirred and mixed through the telescopic stirring rod in the bottom adjusting block, the mixing efficiency is improved, the stirring and forming efficiency of the pesticide slurry is greatly improved, the forming effect is improved, the safety and durability of the control and assembly mechanism are greatly improved, and the detachable structure design between the top lifting extrusion block and the lifting motor greatly reduces the difficulty of later maintenance and use cost.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of pesticide slurry processing equipment, in particular to a forming mechanism for pesticide slurry processing. BACKGROUND

[0002] Pesticide slurry refers to a chemical substance that has an impact on crops in the process of agricultural production for the purpose of preventing and controlling pests, regulating growth, and controlling weeds.

[0003] The current pesticide slurry is formed into solid granular material after a plurality of chemical raw materials are uniformly added to a reaction container and then solidified. In the processing, the mixture needs to be mixed and stirred by a stirring mechanism. The traditional stirring mechanism has a fixed structure and cannot be adjusted. It only has a mixing function and is very single in functionality. It cannot improve the solidification forming effect of the pesticide slurry, resulting in low processing efficiency. SUMMARY

[0004] The technical problem to be solved by the present application is to provide an improved forming mechanism for pesticide slurry processing to solve the problems in the background art, such as the fixed structure of the traditional stirring mechanism, the inability to adjust, only the mixing function, the very single functionality, the inability to improve the solidification forming effect of the pesticide slurry, and the low processing efficiency.

[0005] The technical solution adopted by the present application to solve the technical problem is a forming mechanism for pesticide slurry processing, which comprises a main tank body, a lifting motor, a driving motor, and an infrared positioning module for controlling the driving motor. A detachable forming mold is installed on the inner bottom surface of the main tank body. A top lifting extrusion block controlled by the lifting motor is slidingly assembled above the detachable forming mold inside the main tank body. A bottom adjusting block controlled by the driving motor is movably assembled at the lower end of the top lifting extrusion block. A lateral loading and unloading opening for conveniently loading and unloading the detachable forming mold is formed on the outer side surface of the main tank body. An elastic stirrer rod is inserted into the bottom adjusting block.

[0006] The lifting motor is fixed on the upper end of the main tank body through a top assembly shell. The driving motor is fixed on the top lifting extrusion block through an internal assembly shell.

[0007] A circular assembly blind hole is formed at the center position of the upper end of the top lifting extrusion block. A lateral locking screw hole is formed on the outer arc surface of the top lifting extrusion block and is in communication with the circular assembly blind hole. The lower end lifting rod of the lifting motor is coaxially connected with the top lifting extrusion block by being inserted into the circular assembly blind hole. A lateral locking screw hole is formed on the outer side of the lifting rod of the lifting motor and is matched with the lateral positioning clamping groove.

[0008] The top lifting and pressing block has an annular assembly groove at its lower end. The bottom adjusting block has an integral assembly ring protruding from the annular assembly groove on its upper surface. An annular limiting groove is formed on the inner arc-shaped surface of the annular assembly groove. An integral limiting tooth ring protruding from the annular limiting groove is formed on the arc-shaped sidewall of the assembly ring. A top transmission through hole communicating with the upper surface of the top lifting and pressing block is formed on the top surface of the annular limiting groove. The transmission gear on the lower shaft of the drive motor meshes with the limiting tooth ring through the top transmission through hole.

[0009] The top lifting extrusion block and the bottom adjusting block have multiple internal telescopic through holes for assembling telescopic stirring rods at corresponding positions inside. The inner side of each internal telescopic through hole has an internal reset chamber with a built-in extrusion spring.

[0010] The lower surface of the top lifting and pressing block is provided with a bottom positioning groove for installing an infrared positioning module, and the upper surface of the bottom adjusting block is provided with an upper reflection groove for installing a reflective lens.

[0011] The detachable molding die has an integrated bottom extrusion rod with an upward protrusion on the inner bottom surface corresponding to the telescopic stirring rod.

[0012] The telescopic stirring rod has an integral reset plate protruding into the internal reset chamber on its outer side, and the compression spring is disposed on the upper surface of the reset plate.

[0013] The detachable molding die has an external sealing cover plate movably connected to its outer side for closing the lateral loading and unloading port. The outer side of the external sealing cover plate has an external adjustment groove with a built-in rotation limit block. The inner side connecting surface of the lateral assembly port has a lateral limit slot that cooperates with the rotation limit block. Multiple external material conveying pipes for conveying materials into the main tank are fixedly connected to the outer side of the external sealing cover plate. The inner side of the main tank is elastically fitted with a flip-up partition plate below the external material conveying pipes.

[0014] The beneficial effects of this invention are:

[0015] (1) A molding mechanism for pesticide slurry processing according to the present invention is provided with a detachable molding mold, a top lifting extrusion block controlled by a lifting motor and a bottom adjusting block controlled by a drive motor inside the main tank. The raw materials input into the main tank can be stirred and mixed by the telescopic stirring rod inside the bottom adjusting block, thereby improving the mixing efficiency. The top lifting extrusion block drives the bottom adjusting block to press the mixed raw materials into the detachable molding mold, thereby greatly improving the mixing and molding efficiency of pesticide slurry.

[0016] (2) An infrared positioning module is installed on the lower surface of the top lifting extrusion block, and a reflective lens that works with the infrared positioning module is installed on the upper surface of the bottom adjustment block. The drive motor is controlled by infrared positioning so that the telescopic stirring rod stops at the designated position. This makes it easy to keep the telescopic stirring rod and the bottom extrusion rod on the same straight line when descending, which makes it easy to control its extension and retraction. This allows the telescopic stirring rod to not affect the pressing and curing process, thus improving the molding effect.

[0017] (3) A side loading and unloading port for easy loading and unloading of a detachable molding mold is provided on the outer side of the main tank body. The side loading and unloading port is sealed and closed by the external sealing cover plate on the surface of the detachable molding mold, which facilitates demolding and demolding in the later stage. The operation is simple and convenient.

[0018] (4) The elastic reset mechanism between the bottom adjusting block and the telescopic stirring rod, the assembly end of the bottom adjusting block and the top lifting extrusion block and the transmission end of the bottom adjusting block and the drive motor are all set inside, which greatly improves the safety and durability of the control and assembly mechanism.

[0019] (5) The top lifting extrusion block and the lifting motor adopt a detachable structure design, which greatly reduces the difficulty of later maintenance and the cost of use. Attached Figure Description

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0021] Figure 1 This is a schematic diagram of the structure of the present invention.

[0022] Figure 2 This is an internal sectional view of the present invention.

[0023] Figure 3 This is a schematic diagram of the structure of the bottom adjustment block assembly end in this invention. Detailed Implementation

[0024] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.

[0025] Figure 1 , Figure 2 and Figure 3The utility model discloses a forming mechanism for pesticide slurry processing, including main jar body 1, lift motor 2, drive motor 3 and be used for controlling drive motor 3's infrared positioning module 4, the detachable forming mould 5 is installed on the inside bottom surface of main jar body 1, the inside top lift extruding block 6 controlled by lift motor 2 is slidably assembled with detachable forming mould 5, the bottom adjusting block 7 controlled by drive motor 3 is movably assembled in the lower end of top lift extruding block 6, the lateral dismounting mouth 8 for the convenient dismounting detachable forming mould 5 is set up on the outside surface of main jar body 1, the telescopic stirring rod 9 is elastically inserted in the bottom adjusting block 7.

[0026] Working principle: lift motor 2 drives top lift extruding block 6 and bottom adjusting block 7 to lift in the inside of main jar body 1, then drive motor 3 drives bottom adjusting block 7 to rotate in the lower end of top lift extruding block 6, then the effect of top lift extruding block 6 is to drive bottom adjusting block 7 to extrude downward, then extruding material into the inside of detachable forming mould 5, improve solidification effect, and bottom adjusting block 7 drives telescopic stirring rod 9 to rotate by rotating, then the inside of mixture is stirred, and the mixing effect is accelerated.

[0027] Further, in order to facilitate assembly, fixation and sealing, lift motor 2 is bolted on the upper end of main jar body 1 through top assembly shell 10, and drive motor 3 is bolted on top lift extruding block 6 through internal assembly shell 11.

[0028] Further, in order to cooperate with dismounting separation, a circular assembly blind hole 12 is formed in the upper end center position of top lift extruding block 6, a lateral locking screw hole 13 is formed in the outer arc surface of top lift extruding block 6 and communicates with the circular assembly blind hole 12, a horizontal locking bolt 14 for fixing the lower end lifting rod of lift motor 2 is threadedly inserted into the lateral locking screw hole 13, and a lateral positioning clamping groove 15 is formed on the outer side of the lifting rod of lift motor 2 and cooperates with the horizontal locking bolt 14.

[0029] Further, in order to cooperate with internal movable assembly and transmission adjustment, an annular assembly groove 16 is formed in the lower end of top lift extruding block 6, an integral structure assembly ring 17 protruding towards the annular assembly groove 16 is formed on the upper surface of bottom adjusting block 7, an annular limiting groove 18 is formed on the inner arc surface of the annular assembly groove 16, an integral structure limiting tooth ring 19 protruding towards the annular limiting groove 18 is formed on the arc side wall of the assembly ring 17, a top transmission through hole communicating with the upper surface of top lift extruding block 6 is formed on the inner top surface of the annular limiting groove 18, and a transmission gear 20 on the lower end rotating shaft of drive motor 3 is engaged with the limiting tooth ring 19 through longitudinal penetration of the top transmission through hole.

[0030] The drive motor 3 drives the transmission gear 20 to rotate, which in turn drives the limit gear ring 19 to rotate, thereby driving the bottom adjustment block 7 to rotate. The lifting motor 2 will only start when the drive motor 3 is off. Only one of them will be on at any given time, while the other will be off.

[0031] Furthermore, to facilitate elastic telescopic reset, multiple internal telescopic through holes 21 for assembling the telescopic stirring rod 9 are provided at corresponding positions inside the top lifting extrusion block 6 and the bottom adjusting block 7. An internal reset chamber 23 with a built-in compression spring 22 is provided on the inner side of each internal telescopic through hole 21. The lower opening of the internal telescopic through hole 21 inside the top lifting extrusion block 6 is provided with a guide opening whose diameter gradually decreases from bottom to top, facilitating improved guidance accuracy during insertion.

[0032] Furthermore, in order to cooperate with infrared positioning, the lower surface of the top lifting and pressing block 6 is provided with a bottom positioning groove for installing the infrared positioning module 4, and the upper surface of the bottom adjusting block 7 is provided with an upper reflecting groove for installing the reflecting lens 24.

[0033] The infrared positioning module 4 includes a transmitter and a receiver. The transmitter emits light to the reflector 24, which then reflects the light to the receiver. The drive motor 3 can only be turned off when the infrared receiver receives an infrared signal, thus stopping the telescopic stirring rod 9 at a designated position.

[0034] Furthermore, in order to coordinate with the positioning and extension of the telescopic stirring rod 9, the bottom surface of the detachable molding die 5 has an integrally structured bottom extrusion rod 25 with an upward protrusion corresponding to the position of the telescopic stirring rod 9.

[0035] Furthermore, in order to accommodate the internal elastic reset, the outer side of the telescopic stirring rod 9 has an integral reset plate 26 that protrudes into the internal reset chamber 23, and the compression spring 22 is provided on the upper surface of the reset plate 26.

[0036] The compression spring 22 presses down on the reset plate 26 to drive the telescopic stirring rod 9 to extend downward.

[0037] Furthermore, to facilitate external disassembly and flexible separation, an external sealing cover plate 27 for closing the lateral loading and unloading port 8 is movably connected to the outer side of the detachable molding mold 5. An external adjustment groove with an internal rotating limit block 28 is provided on the outer side of the external sealing cover plate 27. A lateral limit slot that cooperates with the rotating limit block 28 is provided on the inner connecting surface of the lateral assembly port 8. The rotating limit block 28 consists of a circular adjusting piece and a limit card fixed on the outer arc surface of the circular adjusting piece. People rotate the circular adjusting piece by turning the knob on the outside of the circular adjusting piece, and then insert the limit card into the lateral limit slot to complete the fixation. The principle is the same as that of the knob limit switch commonly found on the market.

[0038] The outer side of the outer sealing cover plate 27 is fixedly connected with six outer feeding pipes 29 for feeding into the inside of the main tank body 1, and the inside of the main tank body 1 is elastically fitted with a turnover partition plate 30 below the outer feeding pipes 29, which is extruded and turned over by the bottom adjusting block 7.

[0039] The turnover storage grooves are symmetrically arranged on the inside walls of the main tank body 1 on both sides of the lateral assembly opening 8, and then the turnover partition plate 30 is assembled through the rotating shaft at the inside top end of the turnover storage groove, and then the extrusion reset spring at the lower end of the turnover partition plate 30 is used to control the turnover support and reset, so as to divide the inner cavity of the main tank body 1 into an upper mixing chamber and a lower forming and curing chamber.

[0040] The forming mechanism for pesticide slurry processing is characterized in that the inside of the main tank body 1 is provided with a detachable forming die 5, a top lifting extrusion block 6 controlled by a lifting motor 2 and a bottom adjusting block 7 controlled by a driving motor 3, the inside of the bottom adjusting block 7 is provided with a telescopic stirring rod 9, which can stir and mix the raw materials input into the inside of the main tank body 1, so as to improve the mixing efficiency, the top lifting extrusion block 6 drives the bottom adjusting block 7 to press the stirred raw materials into the inside of the detachable forming die 5, so that the stirring and forming efficiency of the pesticide slurry is greatly improved, an infrared positioning module 4 is installed on the lower surface of the top lifting extrusion block 6, a reflecting lens 24 matched with the infrared positioning module 4 is installed on the upper surface of the bottom adjusting block 7, the driving motor 3 is controlled through infrared positioning, so that the telescopic stirring rod 9 stops at a specified position, which is convenient for keeping the telescopic stirring rod 9 and the bottom extrusion rod 25 in a same straight line when descending, so as to control the telescopic stirring rod 9 and improve the forming effect, a lateral assembly opening 8 is arranged on the outside of the main tank body 1, which is convenient for assembling and disassembling the detachable forming die 5, the lateral assembly opening 8 is sealed and closed by the outer sealing cover plate 27 on the surface of the detachable forming die 5, which is convenient for disassembling and demolding in the later period, and the operation is simple and convenient, the elastic reset mechanism between the bottom adjusting block 7 and the telescopic stirring rod 9, the assembly end of the bottom adjusting block 7 and the top lifting extrusion block 6 and the transmission end of the driving motor 3 are all arranged inside, which greatly improves the safety and durability of the control and assembly mechanism, and the detachable structure design between the top lifting extrusion block 6 and the lifting motor 2 greatly reduces the difficulty of later maintenance and use cost.

[0041] Based on the above ideal embodiments according to the present application, through the above description, relevant personnel can make various changes and modifications without deviating from the technical idea of the present application. The technical scope of the present application is not limited to the contents in the specification, and must be determined according to the scope of claims.

Claims

1. A forming mechanism for pesticide slurry processing, comprising a main tank body (1), a lifting motor (2), a driving motor (3) and an infrared positioning module (4) for controlling the driving motor (3), characterized in that: The inner bottom surface of the main tank body (1) is provided with a detachable forming die (5), the inside of the main tank body (1) is slidably provided with a top lifting extrusion block (6) above the detachable forming die (5), the bottom adjusting block (7) controlled by the driving motor (3) is movably arranged at the lower end of the top lifting extrusion block (6), a lateral dismounting opening (8) for conveniently dismounting the detachable forming die (5) is formed in the outer side surface of the main tank body (1), and the inside of the bottom adjusting block (7) is elastically inserted with a telescopic stirring rod (9). A circular assembly blind hole (12) is formed in the center of the upper end of the top lifting extrusion block (6), a lateral locking screw hole (13) in communication with the circular assembly blind hole (12) is formed in the outer arc surface of the top lifting extrusion block (6), the lower end lifting rod of the lifting motor (2) is coaxially connected with the top lifting extrusion block (6) by being inserted into the inside of the circular assembly blind hole (12), a transverse locking bolt (14) for fixing the lower end lifting rod of the lifting motor (2) is threadedly inserted into the inside of the lateral locking screw hole (13), and a lateral positioning clamping groove (15) matched with the transverse locking bolt (14) is formed in the outer side of the lower end lifting rod of the lifting motor (2). An annular assembly groove (16) is formed in the lower end of the top lifting extrusion block (6), the upper surface of the bottom adjusting block (7) has an integral structure assembly ring (17) protruding towards the annular assembly groove (16), an annular limiting groove (18) is formed in the inner arc surface of the annular assembly groove (16), the arc side wall of the assembly ring (17) has an integral structure limiting tooth ring (19) protruding towards the annular limiting groove (18), a top transmission through hole in communication with the upper surface of the top lifting extrusion block (6) is formed in the inner top surface of the annular limiting groove (18), and the transmission gear (20) on the lower end rotating shaft of the driving motor (3) is in meshing transmission with the limiting tooth ring (19) by longitudinally penetrating the top transmission through hole. A plurality of internal telescopic through holes (21) for assembling the telescopic stirring rod (9) are formed in the corresponding positions in the inside of the top lifting extrusion block (6) and the bottom adjusting block (7), and an internal reset chamber (23) with an embedded extrusion spring (22) is formed in the inner side surface of the internal telescopic through hole (21). A bottom positioning groove for mounting the infrared positioning module (4) is formed in the lower surface of the top lifting extrusion block (6), and an upper reflection groove for mounting the reflecting lens (24) is formed in the upper surface of the bottom adjusting block (7). The inner bottom surface of the detachable forming die (5) has an integral structure bottom extrusion rod (25) protruding upwards at the position corresponding to the telescopic stirring rod (9).

2. A forming mechanism for processing of pesticide slurry as claimed in claim 1 wherein: The detachable forming die (5) is movably connected with an external sealing cover plate (27) for closing the lateral loading and unloading opening (8) on the outer side, the external sealing cover plate (27) is provided with an external adjusting groove with a built-in rotary limiting block (28) on the outer side, the lateral loading and unloading opening (8) is provided with a lateral limiting clamping groove matched with the rotary limiting block (28) on the inner side connecting surface, a plurality of external material conveying pipes (29) for conveying material into the main tank body (1) are fixedly connected to the outer side of the external sealing cover plate (27), and a turnover partition plate (30) is elastically assembled to the inner side of the main tank body (1) below the external material conveying pipe (29).

3. The forming mechanism for processing of pesticide slurry as claimed in claim 1 wherein: The telescopic stirring rod (9) is provided with an integral structure reset disc (26) protruding to the internal reset chamber (23) on the outer side, and the extrusion spring (22) is arranged on the upper surface of the reset disc (26).

Citation Information

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