Rapid distillation equipment for extracting nevus removing and wart removing essential oil

By designing the drive feeding assembly and lifting connection assembly, the problems of insufficient contact between raw materials and steam and poor thermal uniformity in distillation equipment are solved, thereby improving the essential oil extraction rate and the ease of operation of the equipment, achieving efficient utilization of raw materials and easy maintenance of the equipment.

CN121379735AInactive Publication Date: 2026-01-23QINGDAO WUYOU JINGYAN TRADING CO LTD
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Patent Information

Application Number
CN202511637321.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-10
Publication Date
2026-01-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing distillation equipment suffers from problems such as insufficient contact between steam and raw materials, poor thermal uniformity, low raw material utilization, and inconvenience in equipment cleaning and maintenance during the extraction of essential oils for mole and wart removal.

Method used

The material feeding assembly drives the feeding screen to rotate, and combined with a servo motor and limit fixing assembly, it realizes 360° rotation of the raw material. Combined with the lifting connection assembly and electric push rod, it facilitates the disassembly and cleaning of the feeding screen, and improves the sealing performance and service life of the equipment.

Benefits of technology

It achieves full contact between raw materials and steam, improves the extraction rate of essential oils and thermal uniformity, simplifies the maintenance and cleaning process of the equipment, and enhances the utilization rate of raw materials and the ease of operation of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses rapid distillation equipment for extracting nevus-removing and wart-removing essential oil, which comprises a cylinder body, and a driving discharging assembly is arranged in the cylinder body and is used for placing essential oil extraction raw materials. In the discharging driving assembly, a servo motor drives a discharging latticed shell to rotate, 360-degree overturning of raw materials is achieved, the raw materials make full contact with steam, heating is uniform, the essential oil extraction rate is increased, for hard traditional Chinese medicinal materials, the raw material structure can be damaged in the overturning process, essential oil release can be promoted, a net plate on the discharging latticed shell can be automatically opened, and the efficiency is improved. According to the discharging reticulated shell, raw materials in the discharging reticulated shell can be conveniently taken and placed, by arranging the limiting and fixing assembly, the discharging reticulated shell and a structure on the servo motor can be disassembled and assembled, the discharging reticulated shell can be conveniently disassembled and maintained subsequently, and meanwhile the limiting and fixing assembly guarantees the stability when the servo motor and the rotating shaft are connected with the discharging reticulated shell.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of distillation, and particularly relates to a rapid distillation equipment for extracting point nevus and warts essential oil. BACKGROUND

[0002] In the extraction operation of point nevus and warts essential oil, the distillation method is a common means.

[0003] According to the application number: CN202323147435.2, a distiller for extracting plant essential oil is disclosed, which comprises a distillation barrel and a stirring rod, the stirring rod is movably embedded in the bottom of the inner wall of the distillation barrel, characterized in that: the bottom of the inner wall of the distillation barrel is fixedly installed with an electric heating wire, the inner wall of the distillation barrel close to the bottom is fixedly installed with a filter plate, the stirring rod and the filter plate are movably connected, the outer surface of the stirring rod close to the bottom is fixedly installed with a plurality of fixed plates, and a plurality of fixed plates are movably embedded with a plurality of fixed plates.

[0004] The distillation equipment of the above case utilizes the stirring mechanism to scatter the raw materials, so that they are fully distilled, but when the raw materials are scattered, the steam will quickly flow out along the area where the raw materials are not accumulated, some steam cannot fully contact with the raw materials, which reduces the efficiency of distillation extraction, and part of the distillation equipment does not have the stirring structure, so that the raw material placing structure is fixed, and the raw materials cannot be fully turned over, which makes the raw materials unevenly heated, part of the raw materials cannot fully contact with the steam, resulting in incomplete extraction of essential oil, greatly reducing the utilization rate of raw materials, and it is not convenient to separate the filter plate for placing raw materials from the distillation equipment for cleaning and maintenance, and it is also very troublesome to replace the raw materials, therefore, the present application provides a rapid distillation equipment for extracting point nevus and warts essential oil. SUMMARY

[0005] The present application aims to provide a rapid distillation equipment for extracting point nevus and warts essential oil to solve the problems in the background art.

[0006] In order to achieve the above object, the present application provides the following technical scheme: a kind of point freckle warts removal essential oil extraction with fast distillation equipment, including cylinder, the inside of the cylinder is provided with drive discharge assembly, the drive discharge assembly is used to place essential oil extraction raw material, and the drive discharge assembly can drive essential oil extraction raw material to overturn, the drive discharge assembly includes discharge mesh shell, the discharge mesh shell is arranged in the inside of cylinder, the cylinder is connected with discharge mesh shell by limiting fixed component, the limiting fixed component is used to limit and fix discharge mesh shell, the top of the cylinder is provided with sealing plate, the top of the sealing plate is provided with lifting connection component, the lifting connection component is used to drive discharge mesh shell to move upwards, drive sealing component is arranged on the sealing plate, the drive sealing component is used to drive sealing plate to move upwards, it simultaneously improves the sealing between the sealing plate and the cylinder, the right side of the cylinder is provided with condensation connection component, the condensation connection component is used to condense steam gas into liquid.

[0007] Preferably, the drive discharge assembly further includes a servo motor, the servo motor is arranged on the left side of the cylinder, a pluggable mesh plate is arranged in the through hole on the top of the discharge mesh shell, fixed blocks are mounted on the left and right sides of the top of the mesh plate, and a connecting block is arranged on the top of the fixed blocks.

[0008] Preferably, first electric push rods are mounted on the left and right sides of the top of the discharge mesh shell, the top ends of the first electric push rods are fixedly connected with the connecting blocks, clamping blocks are mounted on the top of the fixed blocks, clamping grooves are formed in the bottom of the connecting blocks and correspond to the positions of the clamping blocks, the top of the clamping block penetrates through the clamping groove and extends into the clamping groove to be in contact with the inner wall of the clamping groove, and fastening bolts are arranged on the connecting block and are threadedly connected with the clamping blocks.

[0009] Preferably, the limiting fixed component includes a stable block, the stable block is mounted on the right side of the cylinder and corresponds to the position of the servo motor, a rotating shaft is rotatably connected in the groove on the left side of the stable block through a bearing, annular grooves are formed in the left and right sides of the cylinder and the left and right sides of the discharge mesh shell and are in communication with each other, the output shaft of the servo motor penetrates through the annular groove on the left side and extends into the annular groove, and the left end of the rotating shaft penetrates through the annular groove on the right side and extends into the annular groove.

[0010] Preferably, movable annular sleeves are arranged on the surfaces of the output shaft of the servo motor and the rotating shaft, annular plug blocks are mounted on the opposite sides of the two annular sleeves, limiting grooves are formed in the opposite sides of the two annular plug blocks, and limiting blocks that are matched with the limiting grooves are mounted on the inner walls of the annular grooves of the discharge mesh shell.

[0011] Preferably, the inner surface of the barrel is provided with an annular fixing groove, the inner surface of the annular fixing groove is provided with a movable annular moving plate, and the annular fixing groove is provided with two second electric push rods.

[0012] Preferably, the surface of the annular sleeve is provided with an annular positioning block corresponding to the position of the annular moving plate, and the inner wall of the annular moving plate is provided with an annular positioning groove matched with the annular positioning block.

[0013] Preferably, the lifting connecting assembly comprises a concave plate, the concave plate is arranged on the top of the sealing plate, a driving motor is arranged on the top of the concave plate, a threaded rod is arranged on the bottom end of the output shaft of the driving motor and extends to the outside of the concave plate, and a driving plate is threadedly connected to the surface of the threaded rod.

[0014] Preferably, the left and right sides of the bottom of the driving plate are provided with adjusting blocks, the top of the sealing plate is provided with through grooves corresponding to the positions of the adjusting blocks, the bottom of the adjusting block extends through the through grooves and extends to the inside of the through grooves, the bottom of the adjusting block is provided with electromagnets in contact with the inner walls of the through grooves, and the top of the feeding mesh shell is provided with iron blocks corresponding to the positions of the electromagnets.

[0015] Preferably, the driving sealing assembly comprises top blocks, the number of the top blocks is two, and the top blocks are arranged on the left and right sides of the barrel respectively, the top of each top block is provided with a third electric push rod, the top end of the third electric push rod is fixedly connected to the sealing plate through a reinforcing plate, the bottom of the sealing plate is provided with an annular sealing ring, and the top of the barrel is provided with an annular sealing groove corresponding to the position of the annular sealing ring.

[0016] Compared with the prior art, the present application has the following advantages:

[0017] 1. In the driving feeding assembly, the servo motor drives the feeding mesh shell to rotate, realizes 360° overturning of the raw materials, makes the raw materials fully contact with the steam, uniformly heats the raw materials, improves the extraction rate of essential oil, breaks the structure of the raw materials during the overturning process, promotes the release of essential oil, automatically opens the screen plate on the feeding mesh shell, facilitates the taking and placing operation of the raw materials in the feeding mesh shell, and through the limiting and fixing assembly, the feeding mesh shell can be disassembled and assembled with the structure on the servo motor, which facilitates the subsequent disassembly and maintenance of the feeding mesh shell, and the limiting and fixing assembly ensures the stability when the servo motor and the rotating shaft are respectively connected with the feeding mesh shell.

[0018] 2. The lifting connecting assembly and the third electric push rod are arranged, which automatically separates the feeding mesh shell and the screen plate from the barrel, facilitates the cleaning and maintenance of the feeding mesh shell and the screen plate, and prolongs the service life. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 isometric view of the present application;

[0020] Figure 2 isometric view of the present application;

[0021] Figure 3 isometric view of the present application;

[0022] Figure 4 isometric view of the present application;

[0023] Figure 5 isometric view of the present application;

[0024] Figure 6 isometric view of the present application;

[0025] Figure 7 isometric view of the present application;

[0026] Figure 8 isometric view of the present application.

[0027] In the figure: 1, cylinder; 100, sealing plate; 2, drive discharge assembly; 21, discharge mesh shell; 22, servo motor; 23, mesh plate; 24, fixed block; 25, connecting block; 200, first electric push rod; 26, clamping block; 27, clamping groove; 28, fastening bolt; 3, limiting and fixing assembly; 31, stabilizing block; 33, rotating shaft; 34, annular groove; 35, annular sleeve; 36, annular insertion block; 37, limiting groove; 38, limiting block; 39, annular fixing groove; 310, annular moving plate; 311, second electric push rod; 312, annular positioning block; 313, annular positioning groove; 4, lifting connecting assembly; 41, concave plate; 42, drive motor; 43, threaded rod; 44, drive plate; 45, adjusting block; 46, through groove; 47, electromagnet; 48, iron block; 5, drive sealing assembly; 51, top block; 52, third electric push rod; 53, reinforcing plate; 54, annular sealing ring; 55, annular sealing groove; 6, condensation connecting assembly; 61, condensation box; 62, transmission pipe; 63, condensation pipe; 7, heating plate; 8, temperature sensor; 9, pressure sensor. DETAILED DESCRIPTION

[0028] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0029] Please refer to Figures 1-8 A kind of point mole wart-removing essential oil extraction is extracted with quick distillation equipment, including cylinder 1, cylinder 1 is double-layer structure, inner layer is by 316 stainless steel, outer layer fills with aluminium silicate thermal cotton, not only improve the acid resistance and corrosion resistance effect in the inside of cylinder 1, and improve the heat preservation performance of cylinder 1, reduce the loss of heat, the front of cylinder 1 is hingedly connected with sealing door, the top of cylinder 1 is provided with sealing plate 100, the bottom of sealing plate 100 and the top of cylinder 1 are mutually contacted, sealing plate 100 is used to seal the top of cylinder 1, avoid causing the effect of steam, the left side of cylinder 1 is installed with mounting plate, the front of mounting plate is installed with control panel, the right side of cylinder 1 is provided with condensing connection component 6, condensing connection component 6 is used to condense steam gas into liquid, condensing connection component 6 includes condensing tank 61, condensing tank 61 is installed on the right side of cylinder 1, the right side of cylinder 1 is connected with condensing tank 61 by transmission pipe 62, the bottom end of transmission pipe 62 and located in the inside of condensing tank 61 is installed with condensing pipe 63, the bottom end of condensing pipe 63 penetrates condensing tank 61 and extends to its outside, condensing pipe 63 makes essential oil steam cool and condense into liquid in pipe, condensing pipe 63 increases the contact area with cooling medium in condensing tank 61, improves condensing efficiency, so that more essential oil steam can be condensed into liquid, improves the yield of essential oil, electromagnetic valve is provided on transmission pipe 62, when cylinder 1 needs to pour out steam, then open electromagnetic valve, the inner wall of cylinder 1 is installed with several heating plates 7, heating plate 7 provides heat for the inside of cylinder 1, so that raw materials are heated to produce essential oil steam, the bottom of the inner wall of cylinder 1 and the bottom of the inner wall of condensing tank 61 are installed with temperature sensor 8, two temperature sensors 8 are used to sense the temperature of water heated in cylinder 1 and the temperature of cooling water in condensing tank 61 respectively, can timely feedback temperature information, to facilitate operator or control system to adjust according to temperature change, ensure that distillation and condensation process is carried out at suitable temperature, is favorable to improve essential oil extraction quality and efficiency, the bottom of sealing plate 100 is installed with pressure sensor 9, by setting pressure sensor 9, the internal pressure of cylinder 1 is mastered in real time, prevents that pressure is too high or too low to influence essential oil extraction effect and equipment safety, ensures the stable progress of distillation process, the top of condensing tank 61 is threadedly connected with liquid adding cover, liquid adding pipe is used to add cooling water to condensing tank 61, the bottom of the right side of condensing tank 61 is installed with first drain pipe communicated with it, the bottom of the left side of cylinder 1 is installed with second drain pipe communicated with it, valve is provided on first drain pipe and second drain pipe.

[0030] The inside of the barrel 1 is provided with a driving discharge assembly 2 for placing essential oil extraction raw materials, and the driving discharge assembly 2 can drive the essential oil extraction raw materials to overturn, the driving discharge assembly 2 includes a discharge mesh shell 21, which is arranged in the inside of the barrel 1, the mesh design of the discharge mesh shell 21 ensures the flowability of steam, so that the raw materials can be uniformly heated, and the essential oil extraction rate is improved, the surface of the discharge mesh shell 21 is closely combined with the inner wall of the barrel 1, thereby ensuring the sealing performance, the cooperation gap between the outer diameter of the discharge mesh shell 21 and the inner diameter of the barrel 1 is strictly controlled within the range of 0.05-0.1mm, forming a small annular gap, the gap size is much smaller than the average free path of steam molecules, about 0.1μm, using the collision effect of gas molecules to form a natural barrier, or a fluorine rubber sealing ring can be installed on the top of the surface of the discharge mesh shell 21 according to the need, the lip of the sealing ring can keep a contact pressure of 0.1-0.2mm with the inner wall of the barrel 1, the fluorine rubber sealing ring is not shown in the figure, the discharge mesh shell 21 is made of high-strength low-alloy niobium vanadium structural steel A572Gr50, the driving discharge assembly 2 further includes a servo motor 22, which is arranged on the left side of the barrel 1, the servo motor 22 is fixedly connected with the barrel 1 by bolts, the servo motor 22 is a forward and reverse motor with self-locking function, the servo motor 22 can accurately control the rotation speed and angle of the discharge mesh shell 21, so that the raw materials are uniformly overturned, and it is ensured that each part of the raw materials can be fully contacted with the steam, thereby improving the extraction efficiency and raw material utilization rate, a pluggable mesh plate 23 is arranged in the through opening at the top of the discharge mesh shell 21, the surface of the mesh plate 23 is in contact with the inner wall of the discharge mesh shell 21, the mesh plate 23 covers the through opening at the top of the discharge mesh shell 21, preventing the raw materials from falling off from the discharge mesh shell 21, the mesh plate 23 is made of 316 stainless steel, the left and right sides of the top of the mesh plate 23 are both provided with a fixing block 24, the fixing block 24 is fixedly connected with the mesh plate 23 by welding, the top of the fixing block 24 is provided with a connecting block 25, the bottom of the connecting block 25 is in contact with the top of the fixing block 24, the left and right sides of the top of the discharge mesh shell 21 are both provided with a first electric push rod 200, the first electric push rod 200 is fixedly connected with the discharge mesh shell 21 by bolts, the top end of the first electric push rod 200 is fixedly connected with the connecting block 25, the first electric push rod 200 is fixedly connected with the connecting block 25 by bolts, the top of the fixing block 24 is provided with a clamping block 26, the bottom of the connecting block 25 and the position corresponding to the clamping block 26 are provided with a clamping groove 27, the top of the clamping block 26 penetrates through the clamping groove 27 and extends into the inside of the clamping groove 27 and is in contact with the inner wall of the clamping groove 27, the connecting block 25 is provided with a fastening bolt 28 which is threadedly connected with the clamping block 26, the clamping block 26, the clamping groove 27 and the fastening bolt 28 are arranged, so that the mesh plate 23 can be separated from the discharge mesh shell 21, facilitating separate cleaning and maintenance of the mesh plate 23, the first electric push rod 200 drives the connecting block 25 to move up and down, thereby driving the mesh plate 23 to rise and fall, facilitating the feeding and discharging operation.

[0031] The barrel body 1 is connected with the discharging mesh shell 21 through the limiting and fixing assembly 3, the limiting and fixing assembly 3 is used for limiting and fixing the discharging mesh shell 21, the limiting and fixing assembly 3 includes the stable block 31, the stable block 31 is installed on the right side of the barrel body 1 and corresponds to the position of the servo motor 22, the rotating shaft 33 is rotatably connected in the groove on the left side of the stable block 31, the left and right sides of the barrel body 1 and the discharging mesh shell 21 are all provided with the annular grooves 34 in communication with each other, the output shaft of the servo motor 22 penetrates the annular groove 34 on the left side and extends into the inside, the left end of the rotating shaft 33 penetrates the annular groove 34 on the right side and extends into the inside, the surface of the output shaft of the servo motor 22 and the surface of the rotating shaft 33 are all provided with the movable annular sleeves 35, the surface of the annular sleeve 35 and the inner wall of the annular groove 34 are in contact with each other, the opposite sides of the two annular sleeves 35 are all installed with the annular plug blocks 36, the annular plug blocks 36 have the limiting effect on the discharging mesh shell 21, the opposite sides of the two annular plug blocks 36 are all provided with the limiting grooves 37, the limiting blocks 38 matched with the limiting grooves 37 are installed on the inner wall of the annular groove 34 of the discharging mesh shell 21, the side, close to the limiting groove 37, of the limiting block 38 penetrates the limiting groove 37 and extends into the inside and is in contact with the inner wall of the limiting groove 37, the limiting groove 37 and the limiting block 38 are all square-shaped, which guarantees the stability of the annular plug block 36 inserted into the annular groove 34 on the discharging mesh shell 21, and further guarantees the stability when the left and right sides of the discharging mesh shell 21 are connected with the output shaft of the servo motor 22 and the rotating shaft 33 respectively, preventing relative rotation between them, the two annular sleeves 35 are respectively sleeved on the surface of the output shaft of the servo motor 22 and the surface of the rotating shaft 33, which guarantees that the servo motor 22 can drive the discharging mesh shell 21 to rotate through the annular sleeve 35, the annular plug block 36 and the limiting block 38, the surface of the barrel body 1 inside and located on the annular groove 34 is provided with the annular fixing groove 39, the inside of the annular fixing groove 39 and the surface of the annular sleeve 35 are provided with the movable annular moving plates 310, the surface of the annular moving plate 310 is in sliding contact with the inner wall of the annular fixing groove 39, two second electric push rods 311 are installed in the groove of the inner wall of the annular fixing groove 39, the second electric push rods 311 are used for driving the annular moving plate 310 to move left and right, the surface of the annular sleeve 35 and corresponding the position of the annular moving plate 310 is installed with the annular positioning blocks 312, the inner wall of the annular moving plate 310 is provided with the annular positioning grooves 313 matched with the annular positioning blocks 312, the side, close to the annular positioning groove 313, of the annular positioning block 312 penetrates the annular positioning groove 313 and extends into the inside and is in rotary contact with the inner wall of the annular positioning groove 313, through the annular positioning block 312 and the annular positioning groove 313, when the annular moving plate 310 is driven to move left and right by the second electric push rod 311, the annular moving plate 310 can drive the annular sleeve 35 to move left and right through the annular positioning block 312 and the annular positioning groove 313, and further can drive the annular plug block 36 to move left and right, which is convenient for splitting with the discharging mesh shell 21,So that the annular sleeve 35 can not only rotate, but also move left and right.

[0032] The top of the sealing plate 100 is provided with a lifting connection assembly 4 for driving the discharge mesh shell 21 to move upward, which comprises a concave plate 41 installed on the top of the sealing plate 100, a driving motor 42 installed on the top of the concave plate 41, the driving motor 42 being a forward and reverse motor with self-locking function, a threaded rod 43 extending outside through the bottom end of the output shaft of the driving motor 42, a driving plate 44 threadedly connected to the surface of the threaded rod 43, the front and back surfaces of the driving plate 44 being in sliding contact with the inner wall of the concave plate 41 respectively, the driving plate 44 being able to only move up and down through the limiting guide of the concave plate 41, so that the rotational motion of the threaded rod 43 is converted into the force of linear upward and downward motion of the driving plate 44, the driving motor 42 being able to accurately control the rotation speed and number of turns of the threaded rod 43, thereby accurately controlling the lifting height of the driving plate 44, the left and right sides of the bottom of the driving plate 44 being both provided with an adjusting block 45, the top of the sealing plate 100 being provided with a through slot 46 corresponding to the position of the adjusting block 45, the bottom of the adjusting block 45 extending into the inside through the through slot 46, the bottom of the adjusting block 45 being provided with an electromagnet 47 in contact with the inner wall of the through slot 46, the surface of the electromagnet 47 being in contact with the inner wall of the through slot 46, thereby achieving the effect of sealing the through slot 46 to avoid gas leakage, the top of the discharge mesh shell 21 being provided with an iron block 48 corresponding to the position of the electromagnet 47, the driving motor 42 being able to be adsorbed by the electromagnet 47 and the iron block 48 to drive the discharge mesh shell 21 to move upward, when the electromagnet 47 is electrified, the discharge mesh shell 21 is connected with the lifting connection assembly 4 by the mutual attraction between the electromagnet 47 and the iron block 48, thereby facilitating the lifting of the discharge mesh shell 21.

[0033] The sealing plate 100 is provided with a driving sealing assembly 5 for driving the sealing plate 100 to move upward and improving the sealing between the sealing plate 100 and the cylinder 1, which comprises two top blocks 51 installed on the left and right sides of the cylinder 1, a third electric push rod 52 installed on the top of each top block 51, a reinforcing plate 53 fixedly connected to the sealing plate 100 through the top end of the third electric push rod 52, an annular sealing ring 54 installed on the bottom of the sealing plate 100, an annular sealing groove 55 provided on the top of the cylinder 1 corresponding to the position of the annular sealing ring 54, the bottom of the annular sealing ring 54 extending into the inside through the annular sealing groove 55 and being in contact with the inner wall of the annular sealing groove 55, the annular sealing ring 54 being in interference fit with the inner wall of the annular sealing groove 55 to ensure the sealing when the sealing plate 100 is connected with the cylinder 1 and avoid the leakage of steam, the third electric push rod 52 being used to drive the sealing plate 100 to move upward, thereby cooperating with the lifting connection assembly 4 to separate the discharge mesh shell 21 from the cylinder 1, thereby completing the disassembly.

[0034] Servo motor 22, the first electric push rod 200, the second electric push rod 311, drive motor 42, electromagnet 47, third electric push rod 52, heating plate 7, temperature sensor 8, pressure sensor 9 and solenoid valve on the transmission pipe 62 are electrically connected with the control panel through the wire respectively, the control panel can be accurately controlled by setting parameters, and at the same time, it is powered by external power supply.

[0035] When the discharging mesh shell 21 needs to be taken out from the cylinder 1, first start the drive motor 42, the drive motor 42 drives the threaded rod 43 to rotate, the threaded rod 43 rotates to drive the driving plate 44 to move downward, the driving plate 44 drives the electromagnet 47 to move downward through the adjusting block 45, until the electromagnet 47 approaches the iron block 48 on the top of the discharging mesh shell 21, at this time, the electromagnet 47 is powered, the electromagnet 47 generates magnetic force to attract the iron block 48, the connection of the discharging mesh shell 21 and the lifting connecting assembly 4 is completed, the second electric push rod 311 is started, the second electric push rod 311 retracts to drive the annular moving plate 310 to move away from the discharging mesh shell 21, the annular moving plate 310 drives the annular sleeve 35 to move synchronously through the annular positioning block 312 and the annular positioning groove 313, so that the limiting groove 37 on the annular insert block 36 is separated from the limiting block 38 on the discharging mesh shell 21, at the same time, the annular insert block 36 is separated from the annular groove 34 on the discharging mesh shell 21, the fixing of the discharging mesh shell 21 is released, then the third electric push rod 52 is started, the third electric push rod 52 is elongated to drive the sealing plate 100 to move upward, so that the sealing plate 100 is separated from the cylinder 1, the sealing plate 100 drives the lifting connecting assembly 4 to move upward, so that the discharging mesh shell 21 is separated from the cylinder 1, then the electromagnet 47 is turned off, so that it no longer generates suction force, then the discharging mesh shell 21 can be driven, the fastening bolts 28 are loosened, then the first electric push rod 200 is started, the first electric push rod 200 drives the clamping groove 27 to separate from the clamping block 26 through the connecting block 25, so that the mesh plate 23 and the discharging mesh shell 21 can be disassembled.

[0036] In use, open the sealing door, add appropriate amount of water into the cylinder 1, so that the water falls to the bottom of the inner wall of the cylinder 1, then start the first electric push rod 200 to elongate, the first electric push rod 200 drives the mesh plate 23 to move upward through the connecting block 25, so that the mesh plate 23 is pulled out from the through hole on the top of the discharging mesh shell 21, the wart removing spot mite oil extraction raw material is put into the discharging mesh shell 21 through the sealing door, then the first electric push rod 200 is started to drive the mesh plate 23 to reset, cover the through hole on the discharging mesh shell 21, the raw material in the discharging mesh shell 21 is also taken out by this step;

[0037] The operation control panel sets the distillation temperature, time and other parameters, starts the heating plate 7 to heat the water in the barrel 1, and at the same time adds cooling water to the condensing box 61 through the liquid adding cover. During the heating process, the temperature sensor 8 monitors the temperature in the barrel 1 and the condensing box 61 in real time, the pressure sensor 9 monitors the pressure in the barrel 1, and the data is fed back to the control panel to ensure that the distillation environment is stable.

[0038] When the water in the barrel 1 is heated to produce steam, the servo motor 22 is started. The servo motor 22 drives the discharge mesh shell 21 to rotate through the output shaft, the annular sleeve 35, the annular insert block 36 and the limiting block 38, so that the raw materials in the discharge mesh shell 21 are constantly and slowly turned over to fully contact with the steam. At the same time, the electromagnetic valve on the transmission pipe 62 is opened, and the essential oil components in the raw materials enter the condensing pipe 63 in the condensing box 61 with the steam. Under the action of the cooling water in the condensing box 61, the essential oil vapor is condensed into liquid in the condensing pipe 63, and flows out from the bottom end of the condensing pipe 63, completing the collection of essential oil.

[0039] Although embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application. The scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A rapid distillation apparatus for extracting essential oils for mole and wart removal, characterized in that: The device includes a cylinder (1), inside which a drive feeding assembly (2) is provided. The drive feeding assembly (2) is used to place essential oil extraction raw materials, and the drive feeding assembly (2) can drive the essential oil extraction raw materials to rotate. The drive feeding assembly (2) includes a feeding mesh shell (21), which is disposed inside the cylinder (1). The cylinder (1) is connected to the feeding mesh shell (21) by a limiting and fixing assembly (3), which is used to limit and fix the feeding mesh shell (21). The top of the cylinder (1) is provided with... A sealing plate (100) is provided, and a lifting connection assembly (4) is provided on the top of the sealing plate (100). The lifting connection assembly (4) is used to drive the discharge mesh shell (21) to move upward. A driving sealing assembly (5) is provided on the sealing plate (100). The driving sealing assembly (5) is used to drive the sealing plate (100) to move upward, and at the same time improves the sealing performance between the sealing plate (100) and the cylinder (1). A condensing connection assembly (6) is provided on the right side of the cylinder (1). The condensing connection assembly (6) is used to condense the steam gas into liquid.

2. The rapid distillation equipment for extracting essential oils for mole and wart removal according to claim 1, characterized in that: The drive feeding assembly (2) also includes a servo motor (22), which is located on the left side of the cylinder (1). A pluggable mesh plate (23) is provided in the opening at the top of the feeding mesh shell (21). Fixing blocks (24) are installed on both the left and right sides of the top of the mesh plate (23), and a connecting block (25) is provided on the top of the fixing block (24).

3. The rapid distillation equipment for extracting essential oils for mole and wart removal according to claim 2, characterized in that: The top left and right sides of the top of the feeding mesh shell (21) are equipped with first electric push rods (200). The top of the first electric push rod (200) is fixedly connected to the connecting block (25). The top of the fixing block (24) is equipped with a locking block (26). The bottom of the connecting block (25) and the position corresponding to the locking block (26) are provided with a locking groove (27). The top of the locking block (26) passes through the locking groove (27) and extends into it to contact the inner wall of the locking groove (27). The connecting block (25) is provided with a fastening bolt (28) that is threadedly connected to the locking block (26).

4. The rapid distillation equipment for extracting essential oils for mole and wart removal according to claim 3, characterized in that: The limiting and fixing component (3) includes a stabilizing block (31), which is installed on the right side of the cylinder (1) and corresponds to the position of the servo motor (22). A rotating shaft (33) is rotatably connected to the groove on the left side of the stabilizing block (31) through a bearing. The left and right sides of the cylinder (1) and the left and right sides of the feeding mesh shell (21) are provided with interconnected annular grooves (34). The output shaft of the servo motor (22) passes through the annular groove (34) on the left side and extends into it. The left end of the rotating shaft (33) passes through the annular groove (34) on the right side and extends into it.

5. The rapid distillation apparatus for extracting essential oils for mole and wart removal according to claim 4, characterized in that: The surface of the output shaft of the servo motor (22) and the surface of the rotating shaft (33) are both provided with movable annular sleeves (35). Annular inserts (36) are installed on opposite sides of the two annular sleeves (35). Limiting grooves (37) are opened on opposite sides of the two annular inserts (36). Limiting blocks (38) that are compatible with the limiting grooves (37) are installed on the inner wall of the annular groove (34) of the feeding mesh shell (21).

6. The rapid distillation apparatus for extracting essential oils for mole and wart removal according to claim 5, characterized in that: An annular fixing groove (39) is provided inside the cylinder (1) and on the surface of the annular groove (34). A movable annular moving plate (310) is provided inside the annular fixing groove (39) and on the surface of the annular sleeve (35). Two second electric push rods (311) are installed in the groove of the inner wall of the annular fixing groove (39).

7. The rapid distillation apparatus for extracting essential oils for mole and wart removal according to claim 6, characterized in that: An annular positioning block (312) is installed on the surface of the annular sleeve (35) at a position corresponding to the annular moving plate (310). An annular positioning groove (313) adapted to the annular positioning block (312) is provided on the inner wall of the annular moving plate (310).

8. The rapid distillation apparatus for extracting essential oils for mole and wart removal according to claim 7, characterized in that: The lifting connection assembly (4) includes a concave plate (41) which is mounted on the top of the sealing plate (100). A drive motor (42) is mounted on the top of the concave plate (41). The bottom end of the output shaft of the drive motor (42) passes through the concave plate (41) and extends to its outside, where a threaded rod (43) is mounted. A drive plate (44) is threadedly connected to the surface of the threaded rod (43).

9. The rapid distillation apparatus for extracting essential oils for mole and wart removal according to claim 8, characterized in that: Adjustment blocks (45) are installed on both the left and right sides of the bottom of the drive plate (44). A through groove (46) is opened on the top of the sealing plate (100) at the position corresponding to the adjustment block (45). The bottom of the adjustment block (45) passes through the through groove (46) and extends into it. An electromagnet (47) is installed on the bottom of the adjustment block (45) and contacts the inner wall of the through groove (46). An iron block (48) is installed on the top of the feeding mesh shell (21) at the position corresponding to the electromagnet (47).

10. The rapid distillation apparatus for extracting essential oils for mole and wart removal according to claim 9, characterized in that: The drive sealing assembly (5) includes a top block (51), and there are two top blocks (51) installed on the left and right sides of the cylinder (1) respectively. A third electric push rod (52) is installed on the top of the top block (51). The top end of the third electric push rod (52) is fixedly connected to the sealing plate (100) through a reinforcing plate (53). An annular sealing ring (54) is installed at the bottom of the sealing plate (100). An annular sealing groove (55) is opened on the top of the cylinder (1) at the position corresponding to the annular sealing ring (54).

Citation Information

Patent Citations

  • Distillator for extracting plant essential oil

    CN221155410U