Turpentine condensing device

By combining a rotating rod and a telescopic rod driven by a rotary motor, the contact area between turpentine and the condenser tube is increased, and the adhering oil is automatically scraped off, solving the problems of uneven heat dissipation and difficult cleaning, and improving the efficiency of the condenser unit.

CN223509848UActive Publication Date: 2025-11-04GUILIN GONGCHENG SONGBAOLIN CHEMICAL CO LTD
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Patent Information

Application Number
CN202422148990.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2025-11-04
Estimated Expiration
2034-09-02

AI Technical Summary

Technical Problem

Existing turpentine condensation devices suffer from uneven heat dissipation and difficulty in cleaning turpentine from the surface of the condenser tubes, resulting in low efficiency.

Method used

A combination of a rotating rod and a telescopic rod driven by a rotary motor is used to rotate and move the stirring plate inside the condenser tank, increasing the contact area between the turpentine and the condenser tube. The adhesion of the turpentine is automatically scraped off through the cooperation of the insert plate and the limiting plate.

Benefits of technology

It increases the contact area between turpentine and the condenser coil, enhances heat dissipation efficiency, and automatically cleans the turpentine from the inner walls of the condenser coil and condenser tank, thus improving efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a turpentine condensing device, which belongs to the technical field of turpentine condensation and comprises a platform, a condensing barrel arranged at the upper end of the platform and used for condensing turpentine and four condensing pipes arranged in the condensing barrel and used for condensing. A sleeve ring is welded to the inner wall of the condensation barrel, a connecting barrel is welded to the bottom end of the sleeve ring, a rotating motor is installed on the inner bottom wall of the connecting barrel, a rotating rod of a hollow structure is installed at the driving end of the rotating motor, a plurality of sliding grooves are formed in the periphery of the rotating rod, and a telescopic rod is installed on the inner top wall of the rotating rod. According to the turpentine condensing device, the contact area of turpentine and the condensing pipe is increased, heat dissipation is accelerated, turpentine on the inner wall of the condensing pipe and the inner wall of the condensing barrel is automatically scraped off, and the use efficiency is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of turpentine condensation technology, and in particular, a turpentine condensation device. Background Technology

[0002] Turpentine is a type of essential oil and an important industrial raw material. It is a liquid extracted from the resin of pine trees (Pinusaceae family) through distillation or other methods, and its main component is terpenes.

[0003] In the current turpentine condensation process, the condenser tube is usually directly inserted into the turpentine for contact cooling. This results in more heat dissipation from the turpentine near the condenser tube, while the turpentine further away from the condenser tube has almost no effect. In addition, the outer circumference of the condenser tube is easily contaminated with turpentine, making it difficult to clean and reducing its efficiency.

[0004] For example, (authorization announcement number CN215049817U) describes a dual-condensation device for turpentine. This device absorbs turpentine inside a housing and transports it through an output pipe. A first water pump operates, draining water from inside the housing into a circulation pipe to cool the turpentine in the output pipe, thus achieving initial condensation of the turpentine and reducing the condensation time of the condenser pipe. However, this device suffers from the following problem: using the condenser pipe for contact heat dissipation leads to uneven heat dissipation, and it cannot effectively clean the turpentine adhering to the surface of the condenser pipe, reducing its efficiency. Utility Model Content

[0005] The purpose of this invention is to provide a turpentine condenser to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a turpentine condensing device, comprising: a platform, a condensing tank disposed at the upper end of the platform for condensing turpentine, and four condensing pipes disposed inside the condensing tank for condensation; a collar is welded to the inner wall of the condensing tank, a connecting barrel is welded to the bottom end of the collar, a rotary motor is installed on the inner bottom wall of the connecting barrel, a hollow rotating rod is installed at the drive end of the rotary motor, multiple grooves are carved on the outer periphery of the rotating rod, a telescopic rod is installed on the inner top wall of the rotating rod, a connecting column that fits against the inner wall of the rotating rod is installed on the moving part of the telescopic rod, and multiple stirring plates that fit tightly against the inner wall of the grooves are welded to the outer periphery of the connecting column, and multiple slots are carved on the inner bottom wall of one of the stirring plates;

[0007] The inner bottom wall of the condenser is tightly attached to the chassis, and the top of the chassis is equipped with multiple insert plates that can be inserted into slots. The vertical side of the stirring plate is chiseled with a limiting groove that communicates with the slot, and the top of the multiple insert plates is welded with a limiting plate.

[0008] In a further embodiment, the top of the chassis is chiseled with a scraper groove for embedding four condenser tubes, and two connecting plates are fixed to the outer periphery of the condenser tank. A storage tank for storing coolant is welded to the vertical sides of the two connecting plates and fixed to the platform surface.

[0009] In a further embodiment, a water pump is installed at the top of the storage tank.

[0010] In a further embodiment, a delivery pipe is installed at the outlet of the water pump, and a cross-shaped pipe is welded to the other side of the delivery pipe.

[0011] In a further embodiment, four circular grooves are chiseled on the outer periphery of the connecting barrel, and the cross tube is in close contact with the inner wall of the circular groove and communicates with the condenser tube.

[0012] In a further embodiment, the top of the chassis is provided with a drain for turpentine to be discharged.

[0013] In a further embodiment, the bottom of the condenser is welded with a plurality of support plates fixed to the top of the platform, and the bottom of the platform is fixed with four fixing plates by bolts.

[0014] Compared with the prior art, the technical effects and advantages of this utility model are as follows:

[0015] In operation, this turpentine condenser utilizes a rotary motor located on the bottom wall of the connecting barrel to drive a rotating rod to rotate. This rotating rod then synchronously drives the stirring plate to rotate. Simultaneously, a telescopic rod located inside the rotating rod extends and retracts, causing the connecting column to move the stirring plate up and down within the chute. This facilitates the stirring of the turpentine, increases the contact area between the turpentine and the condenser tube, and accelerates heat dissipation.

[0016] Subsequently, when cleaning is required, the telescopic rod extends and retracts, driving the stirring plate to shift. Simultaneously, the rotary motor controls the stirring plate, aligning the slot at the bottom of the stirring plate with the insert plate and limiting plate. The telescopic rod then controls the stirring plate to insert the insert plate and limiting plate into the slot. The rotary motor restarts, causing the limiting plate at the top of the insert plate to insert into the limiting groove. Then, the telescopic rod controls the chassis to move up and down, automatically scraping off the turpentine adhering to the surface of the condenser tank and condenser tubes. This differs from existing condensation devices that cannot accelerate heat dissipation. This device directly increases the contact area between the turpentine and the condenser tubes, automatically scraping off the turpentine adhering to the inner walls of the condenser tubes and condenser tank, thus improving efficiency. This turpentine condensation device increases the contact area between the turpentine and the condenser tubes, accelerates heat dissipation, and automatically scrapes off the turpentine from the inner walls of the condenser tubes and condenser tank, improving efficiency. Attached Figure Description

[0017] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is a schematic diagram of the internal structure of the condenser tank of this utility model;

[0020] Figure 3 This is a schematic diagram of the chassis structure of this utility model;

[0021] Figure 4 For the present utility model Figure 2 Enlarged view of the structure at point A in the middle.

[0022] Explanation of reference numerals in the attached figures:

[0023] In the diagram: 1. Platform; 2. Storage tank; 3. Condensate tank; 4. Connecting tank; 5. Support plate; 6. Cross tube; 7. Delivery pipe; 8. Water pump; 9. Connecting plate; 10. Fixing plate; 11. Rotary motor; 12. Condensate tube; 13. Circular groove; 14. Collar; 15. Chassis; 16. Telescopic rod; 17. Limiting groove; 18. Connecting column; 19. Stirring plate; 20. Slide groove; 21. Insert plate; 22. Limiting plate; 23. Leakage groove; 24. Scraper groove; 25. Rotating rod. Detailed Implementation

[0024] In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that the present invention can be practiced without one or more of these details. In other instances, certain technical features well-known in the art have not been described in order to avoid confusion with the present invention.

[0025] Unless otherwise defined, the directions mentioned herein, such as up, down, left, right, front, back, inside, and outside, are based on the directions shown in the figures of this utility model, and are explained here together.

[0026] The connection method can be any existing method, such as bonding, welding, or bolting, depending on the actual needs.

[0027] Example

[0028] Please see Figures 1 to 4The main structure of the device consists of platform 1, a condenser tank 3 set at the top of platform 1 for condensing turpentine, and four condenser pipes 12 set inside the condenser tank 3 for condensation. A collar 14 is welded to the inner wall of the condenser tank 3, and a connecting barrel 4 is welded to the bottom end of the collar 14. A rotary motor is installed on the inner bottom wall of the connecting barrel 4. A hollow rotating rod 25 is installed at the drive end of the rotary motor. Multiple grooves 20 extending into the interior of the rotating rod 25 are carved on the outer periphery of the rotating rod 25. A telescopic rod 16 is installed on the inner top wall of the rotating rod 25. A connecting column 18 fitting against the inner wall of the rotating rod 25 is installed on the moving part of the telescopic rod 16. Multiple stirring plates 19 tightly fitting against the inner wall of the grooves 20 are welded to the outer periphery of the connecting column 18. Multiple slots are carved into the inner bottom wall of one of the stirring plates 19. The inner bottom wall of the condenser tank 3 is tightly fitted with a base plate 15. A rotary motor 11, located on the bottom wall of the connecting barrel 4, drives a rotating rod 25 to rotate, which in turn drives a stirring plate 19 to rotate. Simultaneously, a telescopic rod 16 located inside the rotating rod 25 extends and retracts, causing the connecting column 18 to move the stirring plate 19 up and down in the chute 20. This facilitates the stirring of turpentine, increases the contact area between the turpentine and the condenser 12, and accelerates heat dissipation. When cleaning is required, the telescopic rod 16 extends and retracts, driving the stirring plate 19 to move. At the same time, the rotary motor 11 controls the stirring plate 19 to align the slot at the bottom of the stirring plate 19 with the insert plate 21 and the limiting plate 22. The telescopic rod 16 controls the stirring plate 19 to insert the insert plate 21 and the limiting plate 22 into the slot. The rotary motor 11 then restarts, causing the limiting plate 22 at the top of the insert plate 21 to insert into the limiting groove 17.

[0029] Subsequently, the telescopic rod 16 is used to control the vertical movement of the chassis 15, automatically scraping off the turpentine adhering to the inner wall of the condenser tank 3 and the surface of the condenser tubes 12. This differs from existing condensation devices that cannot accelerate heat dissipation efficiency. By cleaning the turpentine adhering to the condenser tubes 12 and the inner wall of the condenser tank 3, this device can directly increase the contact area between the turpentine and the condenser tubes, automatically scraping off the turpentine from the condenser tubes 12 and the inner wall of the condenser tank 4, thus improving efficiency. The top of the chassis 15 has a scraping groove 24 for four condenser tubes 12 to be embedded. The top of the chassis 15 is equipped with multiple insert plates 21 that can be inserted into slots. The vertical side of the stirring plate 19 has a limiting groove 17 communicating with the slots. The top of each insert plate 21 is welded with a limiting plate 22.

[0030] Two connecting plates 9 are fixed to the outer periphery of the condenser tank 3. A liquid storage tank 2 for storing coolant is welded to the vertical sides of the two connecting plates 9 and fixed to the surface of the platform 1. A water pump 8 is installed at the top of the liquid storage tank 2. A delivery pipe 7 is installed at the outlet of the water pump 8. A cross pipe 6 is welded to the other side of the delivery pipe 7. Four circular grooves 13 are chiseled on the outer periphery of the connecting tank 4, and the cross pipe is tightly attached to the inner wall of the circular grooves 13 and communicates with the condenser pipe 12. A drain groove 23 for turpentine oil to be discharged is chiseled at the top of the chassis 15. Multiple support plates 5 fixed to the top of the platform 1 are welded to the bottom of the condenser tank 3. Four fixing plates 10 are fixed to the bottom of the platform 1 by bolts. Refrigeration devices such as refrigeration blocks can be installed in the liquid storage tank 2. The heat dissipation end of the refrigeration device needs to be installed outside the liquid storage tank 2.

[0031] The rotary motor 11, water pump 8, and telescopic rod 16 are all conventional instruments. Their working principles, dimensions, and models are irrelevant to the function of this application, so they will not be described in detail. The control method of this utility model is through a controller. The control circuit of the controller can be implemented by a person skilled in the art through simple programming. The power supply is also common knowledge in the art. Furthermore, this utility model is mainly used to protect mechanical devices, so the control method and circuit connection will not be explained in detail.

[0032] Working principle

[0033] When cleaning is required, the telescopic rod 16 extends and retracts, driving the stirring plate 19 to move. At the same time, the rotary motor 11 controls the stirring plate 19 to align the slot at the bottom of the stirring plate 19 with the insert plate 21 and the limiting plate 22. The telescopic rod 16 controls the stirring plate 19 to insert the insert plate 21 and the limiting plate 22 into the slot. The rotary motor 11 is then restarted, causing the limiting plate 22 at the top of the insert plate 21 to insert into the limiting groove 17. Subsequently, the telescopic rod 16 controls the chassis 15 to move up and down, automatically scraping off the turpentine adhering to the inner wall of the condenser tank 3 and the condenser pipe 12.

[0034] It should be noted that, in this document, relational terms such as "one" and "two" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, the phrase "comprising an element defined as..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0035] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A turpentine condenser, comprising: Platform (1), condenser (3) set at the upper end of platform (1) for condensing turpentine oil, and four condenser tubes (12) set inside condenser (3) for condensation; characterized in that: a collar (14) is welded to the inner wall of condenser (3), a connecting barrel (4) is welded to the bottom end of the collar (14), a rotary motor (11) is installed on the inner bottom wall of the connecting barrel (4), a hollow rotating rod (25) is installed on the driving end of the rotary motor (11), a plurality of grooves (20) are chiseled on the outer periphery of the rotating rod (25), a telescopic rod (16) is installed on the inner top wall of the rotating rod (25), a connecting column (18) that fits against the inner wall of the rotating rod (25) is installed on the moving part of the telescopic rod (16), a plurality of stirring plates (19) that fit tightly against the inner wall of the grooves (20) are welded to the outer periphery of the connecting column (18), and a plurality of slots are chiseled on the inner bottom wall of one of the stirring plates (19); The inner bottom wall of the condenser (3) is closely attached to the chassis (15). The top of the chassis (15) is equipped with multiple insert plates (21) that can be inserted into slots. The vertical side of the stirring plate (19) is chiseled with a limiting groove (17) that communicates with the slot. The top of the multiple insert plates (21) is welded with a limiting plate (22).

2. The turpentine condenser according to claim 1, characterized in that: The top of the chassis (15) is chiseled with a scraper groove (24) for four condenser tubes (12) to be embedded. Two connecting plates (9) are fixed to the outer periphery of the condenser (3). A liquid storage tank (2) for storing coolant is welded to the vertical side of the two connecting plates (9) and fixed to the surface of the platform (1).

3. The turpentine condenser according to claim 2, characterized in that: A water pump (8) is installed at the top of the storage tank (2).

4. A turpentine condenser according to claim 3, characterized in that: The water pump (8) is equipped with a delivery pipe (7) at its outlet, and a cross pipe (6) is welded to the other side of the delivery pipe (7).

5. A turpentine condenser according to claim 1, characterized in that: The outer periphery of the connecting barrel (4) has four circular grooves (13).

6. A turpentine condenser according to claim 1, characterized in that: The top of the chassis (15) has a drain (23) for turpentine to be discharged.

7. A turpentine condenser according to claim 1, characterized in that: The bottom of the condenser (3) is welded with multiple support plates (5) fixed to the top of the platform (1), and the bottom of the platform (1) is fixed with four fixing plates (10) by bolts.