Distillator for essential oil processing extract

By improving the condensation system of the distiller and adopting a circulating pump and air cooling technology, the problem of low condensate cooling efficiency was solved, achieving efficient condensation and raw material preheating, and improving overall production efficiency.

CN223906819UActive Publication Date: 2026-02-13JIANGXI HUALONG PLANT FRAGRANCE CO LTD
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Patent Information

Application Number
CN202520391075.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-02-13
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

Existing stills are inefficient in the condensate cooling and recovery process, resulting in raw material loss and failure to effectively utilize the heat generated during condensation.

Method used

A structure including a composite condenser tube, a cooling cylinder, an outer protective cylinder, a water pump, and a coolant tank was designed. The circulating pumping device realizes the circulating heat conduction and air cooling of the coolant, and the heat-conducting plates are used to preheat the raw materials to improve the condensation efficiency.

Benefits of technology

It improves condensation efficiency, reduces raw material loss, and utilizes the heat generated during the condensation process to enhance production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of essential oil processing, and discloses a distiller for essential oil processing extracts, which comprises a distiller body, a feed pipe mounted at the front end of the distiller body, and a composite condenser pipe mounted at the top of the distiller body, the end head of one end of the composite condensation pipe is connected with a flow guide valve pipe, and the spiral structure at one end of the composite condensation pipe is internally and externally sleeved with a cooling cylinder and an outer protection cylinder. The cooling liquid box, the water pump, the liquid conveying valve pipe and the backflow pipe form a circulating pump conveying device, and then after the circulating pump conveying device is combined with a cooling structure formed by the cooling cylinder, the outer protection cylinder and the supporting frame for use, the water pump can convey cooling liquid in the cooling liquid box into the cooling cylinder in a circulating pump mode through the liquid conveying valve pipe and the backflow pipe; and then circulating heat conduction heat dissipation is conducted on the composite condensation pipe through the cooling cylinder, the condensation work efficiency is fully guaranteed, and the problems existing in the prior art are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to essence oil processing technical field, concretely is a distillation apparatus for essence oil processing extract. BACKGROUND

[0002] The existing essence oil usually refers to a kind of liquid with fragrance extracted or distilled from flower, leaf, wood and other plant sources and other animals, plants, and the distillation apparatus as one of essence oil processing main equipment, i.e. "the device for separating substances using distillation method", it is simple and convenient to operate.

[0003] However, the applicant also found some deficiencies of existing distillation apparatus in actual operation process, for example, the condensate cooling recovery of the distillation apparatus used currently is mostly cooled and recovered by single conduit, the upper limit of cooling efficiency is greater, part of raw materials is prone to loss, secondly, the heat in condensation process can be utilized in actual operation, and auxiliary effect for essence oil processing can be produced, therefore, in view of the deficiencies existing in the prior art, the applicant will provide a distillation apparatus for essence oil processing extract to solve. CONTENT OF UTILITY MODEL

[0004] In view of the deficiencies of the prior art, the utility model provides a distillation apparatus for essence oil processing extract, which solves the problems raised in the background art.

[0005] The utility model provides following technical scheme: a distillation apparatus for essence oil processing extract, including distillation apparatus body, install the feeding pipe in the front end of distillation apparatus body, install the composite condenser pipe in the top of distillation apparatus body, one end of composite condenser pipe is spiral structure, and the end of composite condenser pipe one end is connected with the flow valve pipe, the spiral structure of composite condenser pipe one end is respectively equipped with cooling cylinder, outer protection cylinder, install the support rod between the surface of cooling cylinder and the inner wall of outer protection cylinder, and the surface of cooling cylinder and the surface of composite condenser pipe spiral structure are connected, the bottom of outer protection cylinder is fixed with support frame.

[0006] The outer side of distillation apparatus body is provided with water pump, cooling liquid tank, the output end of water pump is connected with liquid delivery valve pipe, and the input end of water pump extends to the inner side of the rear end of cooling liquid tank and is equipped, the bottom of cooling cylinder is equipped with backflow pipe, one end of liquid delivery valve pipe and one end of backflow pipe are respectively equipped in the inner side of the top of cooling cylinder and the inner side of the front end of cooling liquid tank.

[0007] The front end surface of the bottom of the cooling liquid tank is fixedly connected with the bottom rear end structure of the support frame, and the rear end of the cooling liquid tank is installed and communicated with the liquid discharge valve pipe in the space, thereby providing convenient structural conditions for replacement of the cooling liquid in the cooling liquid tank, and the top of one side of the cooling liquid tank is provided with a first liquid supplementing pipe, and the open end of the first liquid supplementing pipe is externally threadedly connected with a first sealing cover.

[0008] The temperature sensor is sleeved on the inside of the top of one side of the cooling liquid tank, thereby monitoring the temperature of the cooling liquid in the cooling liquid tank in real time, so as to timely find the temperature problem of the cooling liquid, and the temperature sensor and the water pump have a displacement space, thereby avoiding structural interference.

[0009] The inside of the other side of the cooling liquid tank is provided with a semi-open installation groove which is not communicated with the space, the composite raw material tank is sleeved in the semi-open installation groove, a plurality of assembly grooves are formed in the surface of the composite raw material tank, a plurality of heat-conducting sheets are clamped in the assembly grooves, and one end of each heat-conducting sheet extends into the inside of the other side of the cooling liquid tank and is fixedly sleeved, so that the heat-conducting sheets can preheat the raw materials in the composite raw material tank by heat conduction, thereby creating favorable conditions for subsequent improvement of production efficiency.

[0010] The top of the composite raw material tank is fixedly connected with a handle, the top of the composite raw material tank is provided with a second liquid supplementing pipe, and the open end of the second liquid supplementing pipe is externally threadedly connected with a second sealing cover, thereby meeting the use demand of sustainable use of the composite raw material tank.

[0011] The inside of the top and the inside of the bottom of the cooling cylinder are sleeved with passive air conveying assemblies, the passive air conveying assemblies each include a transmission shaft, the middle part of the transmission shaft is sleeved with the top structure or the bottom structure of the cooling cylinder through a bearing, a protective sealing ring is nested at the sleeving position of the transmission shaft and the cooling cylinder, the end of each transmission shaft is fixedly connected with a fan blade and a baffle, the two passive air conveying assemblies automatically rotate and convey air by using the kinetic energy of the cooling liquid flowing in the cooling cylinder, thereby blowing and cooling the composite condensing pipe, and improving the upper limit of condensing effect.

[0012] The end of each transmission shaft is aligned with one end of the liquid conveying valve pipe and the other end of the return pipe, thereby facilitating subsequent rotation under pressure.

[0013] The inside of the top and the inside of the bottom of the outer protective cylinder are provided with ventilation grooves, and the ventilation grooves are nested with dustproof filter screens, thereby ensuring smooth air in the inner space of the outer protective cylinder by using the dustproof filter screens and the ventilation grooves, and meeting the requirements of air cooling of the composite condensing pipe and dustproof filtering treatment of the air entering into the inner space of the outer protective cylinder.

[0014] Compared with the prior art, the utility model has the following beneficial effects:

[0015] 1、 The utility model discloses a cooling liquid tank, water pump, infusion valve pipe, backflow pipe constitute circulating pump device, then with the cooling structure combination use of setting cooling cylinder, outer protection cylinder and support frame, water pump can pass through infusion valve pipe, backflow pipe and circulate the cooling liquid in cooling liquid tank to the inside of cooling cylinder, then pass through cooling cylinder and carry out circulating heat conduction heat dissipation to composite condensing pipe, guarantee condensing operation efficiency fully, solve the problem of prior art.

[0016] 2、 The utility model discloses a composite raw material box, heat conduction sheet and circulating pump device combination use, then heat conduction sheet and circulate the waste heat of cooling liquid in cooling liquid tank to composite raw material box, then carry out preheating treatment to the raw material stored in composite raw material box, create favorable effect for the improvement of subsequent overall device's processing efficiency.

[0017] 3、 The utility model discloses a passive air feeding assembly and the above-mentioned circulating pump device combination linkage, then utilize the kinetic energy of cooling liquid flow in cooling cylinder and rotate automatically and feed air, carry out synchronous air blowing cooling to composite condensing pipe, improve the upper limit of condensing efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the front view schematic diagram of the utility model structure;

[0019] Figure 2 It is the plan view schematic diagram of the utility model structure;

[0020] Figure 3 It is the section view schematic diagram of the cooling cylinder of the utility model structure;

[0021] Figure 4 It is the enlarged schematic diagram of the composite raw material box of the utility model structure;

[0022] Figure 5 It is the utility model structure Figure 3 The enlarged schematic diagram of A place in.

[0023] In the drawing: 1, distiller body;2, feeding pipe;3, composite condensing pipe;4, flow valve pipe;5, cooling cylinder;6, outer protection cylinder;7, support frame;8, water pump;9, infusion valve pipe;10, backflow pipe;11, cooling liquid tank;12, temperature sensor;13, composite raw material box;14, heat conduction sheet;15, dust filter screen;16, passive air feeding assembly;161, transmission shaft;162, baffle;163, fan blade. DETAILED DESCRIPTION

[0024] 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 part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0025] Embodiment one

[0026] Please refer to Figures 1-3 The distiller for processing and extracting essence oil comprises a distiller body 1, a feeding pipe 2 installed at the front end of the distiller body 1, a composite condenser pipe 3 installed at the top of the distiller body 1, one end of the composite condenser pipe 3 is in a spiral structure, a flow guide valve pipe 4 is connected to the end of the composite condenser pipe 3, a cooling cylinder 5 and an outer protective cylinder 6 are respectively sleeved on the inside and outside of the spiral structure of the composite condenser pipe 3, a support rod is installed between the surface of the cooling cylinder 5 and the inner wall of the outer protective cylinder 6, and the surface of the cooling cylinder 5 is connected to the surface of the spiral structure of the composite condenser pipe 3, and a support frame 7 is fixed to the bottom of the outer protective cylinder 6.

[0027] A water pump 8 and a cooling liquid tank 11 are arranged on the outside of the distiller body 1, the output end of the water pump 8 is connected with a liquid delivery valve pipe 9, the input end of the water pump 8 extends into the inside of the rear end of the cooling liquid tank 11, a reflux pipe 10 is sleeved on the bottom of the cooling cylinder 5, one end of the liquid delivery valve pipe 9 and one end of the reflux pipe 10 are respectively sleeved on the inside of the top of the cooling cylinder 5 and the inside of the front end of the cooling liquid tank 11.

[0028] The front end surface of the bottom of the cooling liquid tank 11 is fixedly connected to the bottom rear end structure of the support frame 7, a liquid discharge valve pipe is installed at the rear end of the cooling liquid tank 11 and communicates with the space of the cooling liquid tank 11, thereby providing a convenient structure condition for replacing the cooling liquid in the cooling liquid tank 11, a first liquid supplement pipe is installed at the top of one side of the cooling liquid tank 11, a first sealing cover is threadedly connected to the open end of the first liquid supplement pipe, a temperature sensor 12 is sleeved on the inside of the top of one side of the cooling liquid tank 11, thereby monitoring the temperature of the cooling liquid in the cooling liquid tank 11 in real time, so as to timely find the temperature problem of the cooling liquid, and there is a space between the temperature sensor 12 and the water pump 8, so as to avoid structural interference.

[0029] In the specific implementation process:

[0030] The distiller body 1 heats the raw material and transports the generated raw material vapor to the inside of the composite condenser pipe 3 and performs preliminary heat dissipation through the composite condenser pipe 3, and in order to ensure the condensate generation efficiency, the water pump 8 is started synchronously, and the cooling liquid in the cooling liquid tank 11 is transported to the inside of the cooling cylinder 5 through the liquid valve pipe 9 by the water pump 8, and then the composite condenser pipe 3 and the raw material vapor in the composite condenser pipe 3 are heat-conducted and heat-absorbed through the cooling cylinder 5 and the cooling liquid, so as to ensure that the condensate is generated smoothly and output to the specified position through the flow valve pipe 4.

[0031] The cooling liquid in the cooling cylinder 5 is returned to the inside of the cooling liquid tank 11 through the return pipe 10, and then the raw material vapor in the composite condenser pipe 3 is cooled in a circulating manner, so as to improve the upper limit of the condensation efficiency of the whole device.

[0032] Example two

[0033] Please refer to Figures 1-4 The other side of the cooling liquid tank 11 is internally partitioned to form a semi-open mounting groove which is not communicated with the space of the cooling liquid tank 11, and the semi-open mounting groove is sleeved with a composite raw material tank 13, a plurality of assembly grooves are formed in the surface of the composite raw material tank 13, and a plurality of heat-conducting sheets 14 are clamped in the assembly grooves and one end of each heat-conducting sheet 14 is fixedly sleeved into the inside of the other side of the cooling liquid tank 11. The heat-conducting sheet 14 can preheat the raw material in the composite raw material tank 13 by heat conduction of the heat contained in the cooling liquid in the cooling liquid tank 11, so as to create favorable conditions for subsequent improvement of production efficiency. A handle is fixedly connected to the top of the composite raw material tank 13 to facilitate lifting of the composite raw material tank 13, and a second liquid supplementing pipe is mounted on the top of the composite raw material tank 13, and a second sealing cover is threadedly connected to the open end of the second liquid supplementing pipe, so as to meet the use requirement of continuous use of the composite raw material tank 13.

[0034] In the specific implementation process:

[0035] In order to cool the cooling liquid in the cooling liquid tank 11 during use and to utilize the waste heat in the cooling liquid, the composite raw material tank 13 containing raw material is sleeved in the semi-open mounting groove arranged in the inside of the cooling liquid tank 11, and the inner wall of one side of the composite raw material tank 13 is connected to the heat-conducting sheet 14 sleeved in the inside of the cooling liquid tank 11, so that the heat absorbed by the cooling liquid in the cooling liquid tank 11 can be heat-conducted to the composite raw material tank 13 through the heat-conducting sheet 14, and then the raw material in the composite raw material tank 13 is preheated, thereby providing favorable conditions for subsequent improvement of processing efficiency.

[0036] Example three

[0037] Please refer to Figures 1-5The inner top and inner bottom of the cooling cylinder 5 are sleeved with passive air conveying assemblies 16, the two passive air conveying assemblies 16 include transmission shafts 161, the middle part of the transmission shaft 161 is sleeved with the top structure or the bottom structure of the cooling cylinder 5 through a bearing, and the transmission shaft 161 is nested with a protective sealing ring at the sleeving position of the cooling cylinder 5, the two ends of the transmission shaft 161 are respectively fixedly connected with a fan blade 163 and a baffle 162, the two passive air conveying assemblies 16 automatically rotate and convey air by using the kinetic energy of the cooling liquid flowing in the cooling cylinder 5, and then blow and cool the composite condenser pipe 3, so that the upper limit of the condensation efficiency is improved.

[0038] The end of each transmission shaft 161, on which the baffle 162 is installed, is aligned with one end port of the infusion valve pipe 9 and the other end port of the return pipe 10, so that the subsequent rotation under pressure is facilitated, the inner top and inner bottom of the outer protective cylinder 6 are provided with ventilation grooves, the ventilation grooves are nested with dustproof screens 15, and the dustproof screens 15 and the ventilation grooves ensure that the air in the inner space of the outer protective cylinder 6 is smooth, so that the air entering the inner space of the outer protective cylinder 6 can be filtered in and out while the composite condenser pipe 3 is air-cooled.

[0039] In the specific implementation process:

[0040] To further improve the condensation efficiency, the two passive air conveying assemblies 16 use the kinetic energy of the reciprocating flow of the cooling liquid in the cooling cylinder 5 to air-cool the composite condenser pipe 3, and the specific principle is as follows:

[0041] When the cooling liquid led out by the infusion valve pipe 9 is guided to the inner top of the cooling cylinder 5, it will synchronously impact the baffle 162 in the passive air conveying assembly 16 arranged at the top of the cooling cylinder 5, and then the baffle 162 receives the kinetic energy of the fluid and drives the fan blade 163 to rotate synchronously through the transmission shaft 161, thereby accelerating the air exchange speed between the air in the outer protective cylinder 6 and the air in the external environment, and producing the use effect of air cooling and cooling on the composite condenser pipe 3, and similarly, when the cooling liquid used in the cooling cylinder 5 enters the return pipe 10, part of the kinetic energy of the fluid is also transmitted to the baffle 162 in the passive air conveying assembly 16 arranged at the bottom of the cooling cylinder 5, and then the baffle 162 receives the kinetic energy of the fluid and drives the fan blade 163 to rotate synchronously through the transmission shaft 161, thereby accelerating the air exchange speed between the air in the outer protective cylinder 6 and the air in the external environment, and producing the use effect of air cooling and cooling on the composite condenser pipe 3, and thereby further improving the upper limit of the condensation efficiency of the whole device.

[0042] It is to be noted that, in the present text, relational terms such as first and second and the like can 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. Moreover, the terms "comprises", "comprising", or any other variations 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 can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. In the drawings of the present application, the filling patterns are only for distinguishing layers and do not have any other limitations.

[0043] While the embodiments of the present application have been shown and described, it is to be understood that the embodiments can be varied, modified, substituted and changed by those skilled in the art without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. An apparatus for distilling an extract of an essential oil, comprising a distillation body (1), a feeding tube (2) installed at the front end of the distillation body (1), and a composite condenser tube (3) installed at the top of the distillation body (1), characterized in that: One end of the composite condenser pipe (3) is a spiral structure, and the end of the composite condenser pipe (3) is connected with a flow valve pipe (4), the spiral structure of the composite condenser pipe (3) is respectively sleeved with a cooling cylinder (5) and an outer protective cylinder (6), a support rod is arranged between the surface of the cooling cylinder (5) and the inner wall of the outer protective cylinder (6), and the surface of the cooling cylinder (5) is connected with the surface of the spiral structure of the composite condenser pipe (3); the bottom of the outer protective cylinder (6) is fixedly connected with a support frame (7). The outer side of the distiller body (1) is provided with a water pump (8) and a cooling liquid tank (11), the output end of the water pump (8) is connected with a liquid feeding valve pipe (9), the input end of the water pump (8) extends into the rear end of the cooling liquid tank (11), the bottom of the cooling cylinder (5) is sleeved with a backflow pipe (10), and one end of the liquid feeding valve pipe (9) and one end of the backflow pipe (10) are respectively sleeved in the top of the cooling cylinder (5) and the front end of the cooling liquid tank (11).

2. A still for processing an extract of an essential oil according to claim 1, characterized in that: The front end surface of the bottom of the cooling liquid tank (11) is fixedly connected with the bottom rear end structure of the support frame (7), the rear end of the cooling liquid tank (11) is provided with a liquid discharging valve pipe which communicates with the space of the cooling liquid tank (11), a first liquid supplementing pipe is arranged on the top of one side of the cooling liquid tank (11), and the open end of the first liquid supplementing pipe is externally threadedly connected with a first sealing cover.

3. A still for processing an extract of an essential oil according to claim 1, characterized in that: A temperature sensor (12) is sleeved on the top of the inner side of one side of the cooling liquid tank (11), and there is a space between the temperature sensor (12) and the water pump (8).

4. A still for processing an extract of an essential oil according to claim 1, characterized in that: The inner side of the other side of the cooling liquid tank (11) is provided with a semi-open mounting groove which does not communicate with the space of the cooling liquid tank (11), the semi-open mounting groove is sleeved with a composite raw material tank (13), a plurality of assembly grooves are formed in the surface of the composite raw material tank (13), a plurality of heat-conducting sheets (14) are clamped in the assembly grooves, and one end of each heat-conducting sheet (14) extends into the inner side of the other side of the cooling liquid tank (11) and is fixedly sleeved.

5. A still for processing an extract of an essential oil according to claim 4, characterized in that: A handle is fixedly connected to the top of the composite raw material tank (13), a second liquid supplementing pipe is arranged on the top of the composite raw material tank (13), and the open end of the second liquid supplementing pipe is externally threadedly connected with a second sealing cover.

6. A still for processing an extract of an essential oil according to claim 1, characterized in that: The top inner side and the bottom inner side of the cooling cylinder (5) are sleeved with passive air feeding assemblies (16), each passive air feeding assembly (16) comprises a transmission shaft (161), the middle part of the transmission shaft (161) is sleeved with the top structure or the bottom structure of the cooling cylinder (5) through a bearing, a protective sealing ring is arranged on the sleeving position of the transmission shaft (161) and the cooling cylinder (5), and the two ends of the transmission shaft (161) are fixedly connected with a fan blade (163) and a baffle (162) respectively.

7. A still for processing an extract of an essential oil according to claim 6, characterized in that: The ends of the baffle (162) of each transmission shaft (161) are aligned with the one end of the liquid feeding valve pipe (9) and the other end of the backflow pipe (10) respectively.

8. A still for processing an extract of an essential oil according to claim 1, characterized in that: Ventilation grooves are arranged in the top inner side and the bottom inner side of the outer protective cylinder (6), and dust filter screens (15) are arranged in the ventilation grooves.