Physical low-temperature camellia seed squeezing device

By introducing filter components and disassembly components into the oil tea seed pressing device, the problem of slag in tea oil is solved, efficient filtration of tea oil and convenient cleaning of pressing barrels is achieved, and the quality of tea oil and the efficiency of the device are improved.

CN223173648UActive Publication Date: 2025-08-01CHONGQING ZHIQIN GONGYE AGRI DEV CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202421992853.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-08-01
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

The existing tea oil seed pressing device lacks tea oil filtration components, resulting in a large amount of debris left in the tea oil after extrusion, affecting the quality of tea oil.

Method used

A physical low-temperature pressing device for oil tea seeds including a filter assembly and a disassembly assembly is designed to realize the double filtration of tea oil through the filter assembly, and the pressing barrel is conveniently cleaned by the disassembly assembly.

Benefits of technology

It realizes effective filtration of tea oil, avoids slag entering the oil storage barrel, improves the quality of tea oil, and conveniently cleans the press barrel, extending the service life of the device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223173648U_ABST
    Figure CN223173648U_ABST
Patent Text Reader

Abstract

The utility model belongs to the field of camellia seeds, and particularly relates to a camellia seed physical low-temperature squeezing device which comprises a connecting frame, the top end of the connecting frame is fixedly connected with squeezing equipment, a squeezing barrel is arranged at the bottom end of the squeezing equipment, the bottom end of the squeezing barrel abuts against the connecting frame, an oil guide pipe penetrates through the front end of the squeezing barrel, and the oil guide pipe penetrates through the connecting frame. The squeezing barrel is fixedly connected with an oil guide pipe, and a filtering assembly is arranged at the bottom end of the oil guide pipe; the filtering assembly comprises a magnet connecting rod, through the structural design of the filtering assembly, the function of filtering tea oil is achieved, camellia oleifera seeds can be conveniently squeezed through the squeezing device, after the camellia oleifera seeds are squeezed, the camellia oleifera seeds are guided into the oil storage barrel through the oil outlet pipe, and the oil storage barrel is convenient to use. And a large amount of camellia seed residues are left in the squeezed camellia oil, and if the camellia seed residues are not filtered, the camellia seed residues are directly added into an oil storage barrel, so that the later use of the camellia oil is influenced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of camellia seeds, in particular to a physical low-temperature pressing device for camellia seeds. Background Technique

[0002] Camellia seeds, namely the seeds of the camellia oleifera tree, can be pressed for edible oil. After the camellia oleifera tree blossoms, it will bear tea seed fruits, that is, camellia seeds. Most of the existing camellia seeds are pressed by a pressing device, and the tea oil inside the camellia seeds can be conveniently extracted through the pressing device.

[0003] For the specific physical low-temperature pressing device of existing camellia seeds, reference can be made to the Chinese utility model patent with the application number CN202022312208.0, which specifically discloses a camellia seed pressing device, including: a fixing frame and a pressing mechanism. The pressing mechanism includes a cylinder, a connecting rod, a pressing plate, a material storage plate and a pressing barrel. The fixing frame includes an upper bracket, a lower bracket, a top plate and a layer plate. The cylinder is installed in the middle of the top surface of the top plate, and the output end of the cylinder extends below the top plate and is connected to the connecting rod. The connecting rod is a hollow structure and is welded to the top of the pressing plate. The material storage plate is placed below the pressing plate, and the top of the material storage plate is recessed downward to form a material storage groove. A movable rod is vertically installed in the middle of the material storage plate. In the utility model, the pressing plate is moved downward by the cylinder to press the camellia seeds in the material storage plate. The residue after pressing remains in the material storage plate. After the pressing is completed, the cylinder drives the material storage plate to move upward, which is convenient for processing the residue therein. Loosen the connecting block to disassemble the material storage plate and replace it with a new one, which is convenient for operation and improves work efficiency.

[0004] The above-mentioned camellia seed pressing device lacks a component for filtering tea oil. The above-mentioned device can conveniently press camellia seeds. After the camellia seeds are squeezed by the above-mentioned device, it is directly guided into the oil storage barrel through the oil outlet pipe. Because a large amount of camellia seed residues will remain in the tea oil after squeezing, if it is directly added to the inside of the oil storage barrel without filtering, it will affect the later use of the tea oil; therefore, a physical low-temperature pressing device for camellia seeds is proposed for the above problems. Content of the Utility Model

[0005] In order to make up for the deficiencies of the existing technology, in the existing technology, the above-mentioned camellia seed pressing device lacks a component for filtering tea oil. The above-mentioned device can conveniently press camellia seeds. After the camellia seeds are squeezed by the above-mentioned device, it is directly guided into the oil storage barrel through the oil outlet pipe. Because a large amount of camellia seed residues will remain in the tea oil after squeezing, if it is directly added to the inside of the oil storage barrel without filtering, it will affect the later use of the tea oil. For this problem, the utility model proposes a physical low-temperature pressing device for camellia seeds.

[0006] The technical solution adopted by the present utility model to solve its technical problems is as follows: A physical low-temperature pressing device for camellia seeds of the present utility model includes a connecting frame. The top end of the connecting frame is fixedly connected to a pressing device. The bottom end of the pressing device is provided with a pressing barrel. The bottom end of the pressing barrel abuts against the connecting frame. The front end of the pressing barrel is penetrated by an oil guide pipe, and the pressing barrel is fixedly connected to the oil guide pipe. The bottom end of the oil guide pipe is provided with a filtering component;

[0007] The filtering component includes a magnet connecting rod. The magnet connecting rod is arranged at the front end of the connecting frame. The magnet connecting rod penetrates through the first abutting plate and is fixedly connected to the first abutting plate. The rear end of the magnet connecting rod is fixedly connected to an attracting magnet. The attracting magnet is attracted to the front end of the first filtering box. The two sides of the first abutting plate abut against the first connecting plates. There are two groups of the first connecting plates, and both groups of the first connecting plates are arranged at the front end of the connecting frame. Both groups of the first connecting plates are fixedly connected to the front end of the first filtering plate. There are two groups of the first filtering plates. Both groups of the first filtering plates penetrate through the first filtering box, and both groups of the first filtering plates are slidably connected to the inner wall of the first filtering box. Disassembly components are arranged on both sides of the pressing barrel.

[0008] Preferably, the disassembly components include two groups of first anti-slip sleeves. Both groups of the first anti-slip sleeves are arranged on both sides of the pressing barrel. Both groups of the first anti-slip sleeves are sleeved outside the second connecting rods and are fixedly connected to the second connecting rods. The rear ends of both groups of the second connecting rods are slidably connected to the front end of a spring connecting plate. Both groups of the second connecting rods are fixedly connected to the first limiting plates. Both groups of the first limiting plates are slidably connected to the front end of the spring connecting plate. Both groups of the second connecting rods penetrate through the front end of the first telescopic groove and are slidably connected to the first sliding grooves. Both groups of the first sliding grooves are opened at the front end of the first telescopic groove. Both groups of the spring connecting plates are fixedly connected to one end of the first springs. The other ends of both groups of the first springs are fixedly connected to the inner wall of the first telescopic groove.

[0009] Preferably, the bottom end of the first filtering box is penetrated by a first oil outlet pipe, and the bottom end of the first filtering box is fixedly connected to the first oil outlet pipe. Both sides of the first filtering box are fixedly connected to the first connecting pieces. There are two groups of the first connecting pieces, and both groups of the first connecting pieces are fixedly connected to the connecting frame.

[0010] Preferably, both groups of the spring connecting plates abut against the inner wall of the first telescopic groove. Both groups of the spring connecting plates are fixedly connected to the first clamping rods. Both groups of the first clamping rods penetrate through the first telescopic groove and are also clamped with the first clamping parts.

[0011] Preferably, the bottoms of the two groups of the first telescopic grooves are fixedly connected to the connecting frame, the two groups of the first engaging members are fixedly connected to both sides of the pressing barrel, and cylindrical holes engaged with the first engaging rods are formed inside the two groups of the first engaging members.

[0012] Preferably, the top of the first filter box is penetrated by the oil guide pipe, and the top of the first filter box is sleeved outside the oil guide pipe.

[0013] The beneficial effects of the present utility model are as follows:

[0014] 1. Through the structural design of the filtering component, the present utility model realizes the function of filtering camellia oil, solves the problem that the oil camellia seeds can be conveniently pressed by the pressing device, and after the extrusion of the oil camellia seeds is completed, it is guided into the inside of the oil storage barrel through the oil outlet pipe. Since a large amount of crushed residues of the oil camellia seeds will remain in the camellia oil after the extrusion is completed, if it is directly added to the inside of the oil storage barrel without filtering, it will affect the subsequent use of the camellia oil.

[0015] 2. Through the structural design of the disassembly component, the present utility model realizes the function of disassembling the pressing barrel. The filtering component can effectively filter the pressed camellia oil. Since a large amount of crushed residues of the oil camellia seeds will remain inside the pressing barrel after the extrusion of the oil camellia seeds is completed, the disassembly component can conveniently disassemble and clean the pressing barrel, so as not to affect the subsequent use of the pressing barrel. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0017] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the present utility model;

[0018] Figure 2 It is a schematic diagram of the first partial three-dimensional structure of the present utility model;

[0019] Figure 3 It is for the Figure 2 enlarged structure diagram at A in the present utility model;

[0020] Figure 4 It is a schematic diagram of the second partial three-dimensional structure of the present utility model;

[0021] Figure 5 It is for the Figure 4 enlarged structure diagram at B in the present utility model.

[0022] In the figure: 1. Connecting frame; 2. Pressing device; 3. Pressing barrel; 4. Guide oil pipe; 40. Attracting magnet; 41. First abutting plate; 42. First connecting plate; 43. First filter plate; 44. First filter box; 45. First oil outlet pipe; 46. First connecting piece; 47. Magnet connecting rod; 60. First anti-slip sleeve; 61. Second connecting rod; 62. First limiting plate; 63. First sliding groove; 64. Spring connecting plate; 65. First spring; 66. First clamping rod; 67. First clamping piece; 68. First telescopic groove. Specific embodiments

[0023] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0024] Please refer to Figures 1-5 As shown, a physical low-temperature pressing device for camellia seeds includes a connecting frame 1. The top end of the connecting frame 1 is welded to a pressing device 2. The bottom end of the pressing device 2 is provided with a pressing barrel 3. The bottom end of the pressing barrel 3 abuts against the connecting frame 1. The front end of the pressing barrel 3 is penetrated by a guide oil pipe 4, and the pressing barrel 3 is welded to the guide oil pipe 4. The bottom end of the guide oil pipe 4 is provided with a filtering assembly;

[0025] The filtering assembly includes a magnet connecting rod 47. The magnet connecting rod 47 is arranged at the front end of the connecting frame 1. The magnet connecting rod 47 penetrates through the first abutting plate 41, and the magnet connecting rod 47 is connected to the first abutting plate 41 by an adhesive. A cylindrical hole matching the magnet connecting rod 47 is opened inside the first abutting plate 41. The rear end of the magnet connecting rod 47 is connected to an attracting magnet 40 by an adhesive. A cylindrical hole matching the magnet connecting rod 47 is opened inside the attracting magnet 40. The attracting magnet 40 is attracted to the front end of the first filter box 44. Both sides of the first abutting plate 41 abut against the first connecting plate 42. There are two groups of first connecting plates 42, and both groups of first connecting plates 42 are arranged at the front end of the connecting frame 1. Both groups of first connecting plates 42 are connected to the front end of the first filter plate 43 by an adhesive. There are two groups of first filter plates 43. Both groups of first filter plates 43 penetrate through the first filter box 44, and both groups of first filter plates 43 are slidably connected to the inner wall of the first filter box 44. Demounting assemblies are arranged on both sides of the pressing barrel 3;

[0026] During operation, when squeezing the tea seeds, the oil storage barrel is placed just below the first oil outlet pipe 45, and then the tea seeds are placed inside the squeezing barrel 3, and then the squeezing device 2 is started, and then the squeezing plate connected to the squeezing device 2 moves downward, and the tea seeds inside the squeezing barrel 3 are squeezed by the squeezing plate, and the squeezed tea oil flows out through the oil guide pipe 4, and the oil guide pipe 4 passes through the top of the first filter box 44, and then the squeezed tea oil flows into the interior of the first filter box 44 through the oil guide pipe 4. Two sets of first filter plates 43 are provided inside the first filter box 44. The first filter plate 43 of the first filter plate 43 can effectively filter the debris inside the tea oil. Since there are two groups of the first filter plates 43, the tea oil can be filtered twice, so that the debris inside the tea oil can be effectively filtered completely. After the tea oil is filtered, it will flow into the first oil outlet pipe 45, and then flow into the oil storage barrel through the first oil outlet pipe 45 to complete the squeezing of the tea seeds. Since the first filter plate 43 filters the debris inside the tea oil for a long time, the filter mesh inside the first filter plate 43 is easily blocked by the debris. When disassembling and cleaning, the first abutting plate 41 is pulled forward with force, and then the first abutting plate 41 moves forward, the first abutting plate 41 is fixedly connected to the magnet connecting rod 47, and the magnet connecting rod 47 is fixedly connected to the attracting magnet 40, and then the attracting magnet 40 is driven to move forward, and then the attracting magnet 40 and the front end of the first filter box 44 are no longer attracted, and the attraction of the attracting magnet 40 can make the first abutting plate 41 more stably abut against the first connecting plate 42. When the first abutting plate 41 moves forward until it no longer abuts against the first connecting plate 42, that is, the two sets of first connecting plates 4 The abutment engagement of the first abutment plate 41 is lost. The abutment of the first abutment plate 41 allows the two groups of first filter plates 43 to be more stably inserted into the first filter box 44. Then, the first connecting plate 42 is pulled forward. The first connecting plate 42 is fixedly connected to the first filter plates 43, thereby driving the two groups of first filter plates 43 to slide forward inside the first filter box 44. When the two groups of first filter plates 43 slide forward and completely detach from the first filter box 44, the first filter plates 43 are disassembled and the filter mesh inside the first filter plates 43 can be cleaned.

[0027] Further, the disassembly component includes a first anti-slip sleeve 60. There are two sets of the first anti-slip sleeves 60, and both sets of the first anti-slip sleeves 60 are arranged on both sides of the pressing barrel 3. Both sets of the first anti-slip sleeves 60 are sleeved outside the second connecting rod 61, and both sets of the first anti-slip sleeves 60 are connected to the second connecting rod 61 by an adhesive. The rear ends of both sets of the second connecting rods 61 are slidably connected to the front end of the spring connecting plate 64. Both sets of the second connecting rods 61 are welded to the first limiting plate 62. The first limiting plate 62 is designed in a rectangular shape. Both sets of the first limiting plates 62 are slidably connected to the front end of the spring connecting plate 64. Both sets of the second connecting rods 61 penetrate through the front end of the first telescopic groove 68, and both sets of the second connecting rods 61 are slidably connected to the first sliding groove 63. Both sets of the first sliding grooves 63 are opened at the front end of the first telescopic groove 68. Both sets of the spring connecting plates 64 are connected to one end of the first spring 65 by an adhesive. The other ends of both sets of the first springs 65 are connected to the inner wall of the first telescopic groove 68 by an adhesive;

[0028] During operation, after the oil-tea seeds are pressed, a large amount of residue of the oil-tea seeds will remain inside the pressing barrel 3. When cleaning the residue inside the pressing barrel 3, pull the first anti-slip sleeve 60 to the left. The first anti-slip sleeve 60 is fixedly connected to the second connecting rod 61, and then drives the second connecting rod 61 to slide to the left inside the first sliding groove 63. The rear end of the second connecting rod 61 is slidably connected to the spring connecting plate 64, and then drives the spring connecting plate 64 to move to the left, and then makes the spring connecting plate 64 squeeze the first spring 65 to the left, and then makes the first spring 65 contract towards the inner wall of the first telescopic groove 68. The spring connecting plate 64 is fixedly connected to the first clamping rod 66, and then drives the first clamping rod 66 to move to the left through the inside of the first telescopic groove 68 and the first clamping member 67. When the second connecting rod 61 moves to the left until it aligns with the clamping groove inside the first sliding groove 63, then pull the first anti-slip sleeve 60 upwards, and then make the rear end of the second connecting rod 61 slide upwards at the front end of the spring connecting plate 64. The first limiting plate 62 is fixedly connected to the second connecting rod 61, and then drives the first limiting plate 62 to slide upwards at the front end of the spring connecting plate 64, and then makes the second connecting rod 61 abut against the clamping groove inside the first sliding groove 63. At this time, the first clamping rod 66 moves to the left until it completely disengages from the inside of the first clamping member 67, and then the first clamping rod 66 no longer engages with the cylindrical hole inside the first clamping member 67. Then repeat the operation so that the other first clamping rod 66 also no longer engages with the cylindrical hole inside the first clamping member 67, that is, the two first clamping members 67 lose the clamping of the first clamping rod 66. Then pull the pressing barrel 3 upwards, and the pressing barrel 3 can be separated from the connecting frame 1, so that the residue remaining inside the connecting frame 1 can be cleaned.

[0029] Further, the bottom end of the first filter box 44 is penetrated by the first oil outlet pipe 45, and the bottom end of the first filter box 44 is welded to the first oil outlet pipe 45. A cylindrical hole matching the first oil outlet pipe 45 is provided at the bottom end of the first filter box 44. Both sides of the first filter box 44 are welded to the first connecting member 46. There are two groups of the first connecting members 46, and both groups of the first connecting members 46 are welded to the connecting frame 1;

[0030] During operation, the bottom end of the first filter box 44 is fixedly connected to the first oil outlet pipe 45. The oil-tea seeds inside the pressing barrel 3 are squeezed by the pressing plate. The squeezed tea oil flows out through the guide pipe 4. The guide pipe 4 penetrates the top end of the first filter box 44. Then, the squeezed tea oil flows into the interior of the first filter box 44 through the guide pipe 4. Two groups of first filter plates 43 are arranged inside the first filter box 44. Through the two groups of first filter plates 43, the slag inside the tea oil can be effectively filtered. Since there are two groups of the first filter plates 43, the tea oil can be filtered twice, so that the debris inside the tea oil can be effectively and completely filtered. The filtered tea oil will flow into the interior of the first oil outlet pipe 45, and then flow into the interior of the oil storage barrel through the first oil outlet pipe 45, thus completing the pressing of the oil-tea seeds. Both sides of the first filter box 44 are fixedly connected to the first connecting member 46, the first connecting member 46 is fixedly connected to the connecting frame 1, and the first filter box 44 is connected to the connecting frame 1 through the first connecting member 46.

[0031] Further, both groups of spring connecting plates 64 are in contact with the inner wall of the first telescopic groove 68. Both groups of spring connecting plates 64 are welded to the first engaging rod 66. Both groups of the first engaging rods 66 penetrate the first telescopic groove 68, and both groups of the first engaging rods 66 are also engaged with the first engaging member 67;

[0032] During operation, pull the first anti-slip sleeve 60 to the left, then drive the second connecting rod 61 to slide to the left. The rear end of the second connecting rod 61 is slidably connected to the spring connecting plate 64, then drive the spring connecting plate 64 to move to the left inside the first telescopic groove 68. The spring connecting plate 64 is fixedly connected to the first engaging rod 66, then drive the first engaging rod 66 to move to the left through the inside of the first telescopic groove 68 and the first engaging member 67.

[0033] Further, the bottom ends of both groups of the first telescopic grooves 68 are welded to the connecting frame 1. Both groups of the first engaging members 67 are welded to both sides of the pressing barrel 3, and cylindrical holes engaging with the first engaging rods 66 are provided inside both groups of the first engaging members 67;

[0034] During operation, the first engaging member 67 is fixedly connected to both sides of the pressing barrel 3. Through the engagement between the first engaging member 67 and the first engaging rod 66, the pressing barrel 3 can be placed more stably on the connecting frame 1. The first telescopic groove 68 is fixedly connected to the connecting frame 1, so that the spring connecting plate 64 can slide more stably inside the first telescopic groove 68.

[0035] Furthermore, the top end of the first filter box 44 is penetrated by the oil guide pipe 4, and the top end of the first filter box 44 is sleeved outside the oil guide pipe 4;

[0036] During operation, the oil-tea seeds inside the pressing barrel 3 are squeezed by the squeezing plate, and the squeezed tea oil flows out through the oil guide pipe 4. The oil guide pipe 4 penetrates the top end of the first filter box 44, and then the squeezed tea oil flows into the inside of the first filter box 44 through the oil guide pipe 4.

[0037] Working principle: When squeezing the tea seeds, place the oil storage barrel just below the first oil outlet pipe 45, then place the tea seeds inside the squeezing barrel 3, and then start the squeezing device 2, and then make the squeezing plate connected to the squeezing device 2 move downward, and the tea seeds inside the squeezing barrel 3 are squeezed by the squeezing plate, and the squeezed tea oil flows out through the oil guide pipe 4, and the oil guide pipe 4 passes through the top of the first filter box 44, and then the squeezed tea oil flows into the interior of the first filter box 44 through the oil guide pipe 4. Two sets of first filter plates 43 are provided inside the first filter box 44. The first filter plate 43 of the first filter plate 43 can effectively filter the debris inside the tea oil. Since there are two groups of the first filter plates 43, the tea oil can be filtered twice, so that the debris inside the tea oil can be effectively filtered completely. After the tea oil is filtered, it will flow into the first oil outlet pipe 45, and then flow into the oil storage barrel through the first oil outlet pipe 45 to complete the squeezing of the tea seeds. Since the first filter plate 43 filters the debris inside the tea oil for a long time, the filter mesh inside the first filter plate 43 is easily blocked by the debris. When disassembling and cleaning, the first abutting plate 41 is pulled forward with force, and then the first abutting plate 41 moves forward, the first abutting plate 41 is fixedly connected to the magnet connecting rod 47, and the magnet connecting rod 47 is fixedly connected to the attracting magnet 40, and then the attracting magnet 40 is driven to move forward, and then the attracting magnet 40 and the front end of the first filter box 44 are no longer attracted, and the attraction of the attracting magnet 40 can make the first abutting plate 41 more stably abut against the first connecting plate 42. When the first abutting plate 41 moves forward until it no longer abuts against the first connecting plate 42, that is, the two sets of first connecting plates 4 The abutment engagement of the first abutment plate 41 is lost. The abutment of the first abutment plate 41 allows the two groups of first filter plates 43 to be more stably inserted into the first filter box 44. Then, the first connecting plate 42 is pulled forward. The first connecting plate 42 is fixedly connected to the first filter plates 43, thereby driving the two groups of first filter plates 43 to slide forward inside the first filter box 44. When the two groups of first filter plates 43 slide forward and completely detach from the first filter box 44, the first filter plates 43 are disassembled and the filter mesh inside the first filter plates 43 can be cleaned.

[0038] After the pressing of camellia seeds is completed, a large amount of camellia seed residue will remain inside the pressing barrel 3. When cleaning the residue inside the pressing barrel 3, pull the first anti-slip sleeve 60 to the left. The first anti-slip sleeve 60 is fixedly connected to the second connecting rod 61, and then drives the second connecting rod 61 to slide to the left inside the first chute 63. The rear end of the second connecting rod 61 is slidably connected to the spring connecting plate 64, and then drives the spring connecting plate 64 to move to the left. Then, the spring connecting plate 64 squeezes the first spring 65 to the left, and then the first spring 65 contracts towards the inner wall of the first telescopic groove 68. The spring connecting plate 64 is fixedly connected to the first engaging rod 66, and then drives the first engaging rod 66 to move to the left through the inside of the first telescopic groove 68 and the first engaging member 67. When the second connecting rod 61 moves to the left until it aligns with the engaging groove inside the first chute 63, then pull the first anti-slip sleeve 60 upwards. Then, the rear end of the second connecting rod 61 slides upwards at the front end of the spring connecting plate 64. The first limiting plate 62 is fixedly connected to the second connecting rod 61, and then drives the first limiting plate 62 to slide upwards at the front end of the spring connecting plate 64. Then, the second connecting rod 61 abuts against the engaging groove inside the first chute 63. At this time, the first engaging rod 66 moves to the left until it completely disengages from the inside of the first engaging member 67. Then, the first engaging rod 66 no longer engages with the cylindrical hole inside the first engaging member 67. Then, repeat the operation so that the other group of first engaging rods 66 also no longer engages with the cylindrical hole inside the first engaging member 67. That is, the two groups of first engaging members 67 lose the engagement of the first engaging rods 66. Then, pull the pressing barrel 3 upwards, and the pressing barrel 3 can be separated from the connecting frame 1, so that the residue remaining inside the connecting frame 1 can be cleaned.

[0039] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and all these changes and improvements fall within the scope of the present invention claimed.

Claims

1. A physical low-temperature pressing device for camellia seeds, comprising a connecting frame (1), the top end of the connecting frame (1) is fixedly connected to a pressing device (2), the bottom end of the pressing device (2) is provided with a pressing barrel (3), the bottom end of the pressing barrel (3) abuts against the connecting frame (1), the front end of the pressing barrel (3) is penetrated by an oil guiding pipe (4), and the pressing barrel (3) is fixedly connected to the oil guiding pipe (4), characterized in that: A filter assembly is provided at the bottom end of the oil guide pipe (4). The filter assembly includes a magnet connecting rod (47). The magnet connecting rod (47) is arranged at the front end of the connecting frame (1). The magnet connecting rod (47) penetrates through the first abutting plate (41) and is fixedly connected to the first abutting plate (41). The rear end of the magnet connecting rod (47) is fixedly connected to the attracting magnet (40). The attracting magnet (40) is attracted to the front end of the first filter box (44). Both sides of the first abutting plate (41) are in contact with the first connecting plates (42). There are two groups of the first connecting plates (42), and both groups of the first connecting plates (42) are arranged at the front end of the connecting frame (1). Both groups of the first connecting plates (42) are fixedly connected to the front end of the first filter plate (43). There are two groups of the first filter plates (43). Both groups of the first filter plates (43) penetrate through the first filter box (44), and both groups of the first filter plates (43) are slidably connected to the inner wall of the first filter box (44). Disassembly components are arranged on both sides of the pressing barrel (3).

2. The physical low-temperature pressing device for camellia seeds according to claim 1, characterized in that: The disassembly components include two groups of first anti-slip sleeves (60). Both groups of the first anti-slip sleeves (60) are arranged on both sides of the pressing barrel (3). Both groups of the first anti-slip sleeves (60) are sleeved on the outside of the second connecting rods (61) and are fixedly connected to the second connecting rods (61). The rear ends of both groups of the second connecting rods (61) are slidably connected to the front end of the spring connecting plate (64). Both groups of the second connecting rods (61) are fixedly connected to the first limiting plates (62). Both groups of the first limiting plates (62) are slidably connected to the front end of the spring connecting plate (64). Both groups of the second connecting rods (61) penetrate through the front end of the first telescopic groove (68) and are slidably connected to the first sliding grooves (63). Both groups of the first sliding grooves (63) are opened at the front end of the first telescopic groove (68). Both groups of the spring connecting plates (64) are fixedly connected to one end of the first springs (65). The other ends of both groups of the first springs (65) are fixedly connected to the inner wall of the first telescopic groove (68).

3. The physical low-temperature pressing device for camellia seeds according to claim 2, characterized in that: The bottom end of the first filter box (44) is penetrated by the first oil outlet pipe (45), and the bottom end of the first filter box (44) is fixedly connected to the first oil outlet pipe (45). Both sides of the first filter box (44) are fixedly connected to the first connectors (46). There are two groups of the first connectors (46), and both groups of the first connectors (46) are fixedly connected to the connecting frame (1).

4. A physical low-temperature pressing device for camellia seeds according to claim 3, characterized in that: Both groups of the spring connecting plates (64) are in contact with the inner wall of the first telescopic groove (68). Both groups of the spring connecting plates (64) are fixedly connected to the first clamping rods (66). Both groups of the first clamping rods (66) penetrate through the first telescopic groove (68), and both groups of the first clamping rods (66) are also engaged with the first engaging parts (67).

5. The physical low-temperature pressing device for camellia seeds according to claim 4, characterized in that: The bottoms of the two groups of the first telescopic grooves (68) are fixedly connected to the connecting frame (1), the two groups of the first engaging members (67) are fixedly connected to both sides of the pressing barrel (3), and cylindrical holes engaged with the first engaging rod (66) are formed in the interiors of the two groups of the first engaging members (67).

6. The physical low-temperature pressing device for camellia seeds according to claim 5, wherein: The top end of the first filter box (44) is penetrated by the oil guide pipe (4), and the top end of the first filter box (44) is sleeved outside the oil guide pipe (4).

Citation Information

Patent Citations

  • Camellia seed squeezing device

    CN213537839U