Cold-pressed zanthoxylum oil storage tank
By designing a cold-pressed pepper oil storage tank containing a transfer mechanism, the problem of the floss space occupied and microbial breeding in cold-pressed pepper oil during storage is solved, and the effect of effectively removing floss and extending the shelf life is achieved.
Patent Information
- Application Number
- CN202510468874.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-05-13
AI Technical Summary
Cold-pressed pepper oil is prone to mix air in the production and storage process, resulting in the formation of bubbles, occupying the container space and may lead to microorganisms, affecting the quality and shelf life of the oil.
A cold pressed pepper oil storage tank is designed, including a transfer mechanism, which includes a rectangular cylinder, a rectangular plate and a first degassing mechanism. The liquid level sensor controls the sliding of the rectangular plate, the rectangular cylinder swings from horizontal to vertical, and the foaming rod sweeps away the bubbles to ensure that no air in the oil enters the storage mechanism.
Effectively remove floss, improve container utilization, prevent microbial growth, prolong the shelf life of pepper oil, and ensure the stability of oil quality.
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Figure CN119976114A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of cold-pressed pepper oil production, in particular to a cold-pressed pepper oil storage tank. Background Art
[0002] In the field of food processing, pepper oil, as an important seasoning, is deeply loved by consumers.
[0003] The market demand for cold-pressed pepper oil is growing due to its unique flavor and relatively high nutrient retention.
[0004] However, cold-pressed pepper oil faces many difficulties during production and storage.
[0005] The traditional storage method is usually to pour the cold-pressed pepper oil directly into ordinary containers. This simple and crude storage method has a series of disadvantages.
[0006] On the one hand, cold-pressed pepper oil is very easy to mix with air during the production and transportation process. When the air enters the storage container, a large number of bubbles will form on the liquid surface.
[0007] These bubbles not only occupy the effective space of the container, reducing the actual volume of the pepper oil that can be stored, but the long-term presence of bubbles may also lead to the growth of microorganisms, affecting the quality and shelf life of the pepper oil. Summary of the invention
[0008] The invention provides a cold-pressed pepper oil storage tank to solve the problem that the existing device fails to eliminate the bubbles of the cold-pressed pepper oil before transferring it to a degassing device, resulting in a small space utilization of the container.
[0009] In order to alleviate the above technical problems, the technical solution provided by the present invention is: A cold pressed pepper oil storage tank comprises a storage mechanism and a transfer mechanism connected to the storage mechanism, wherein the transfer mechanism comprises a first bracket, a rectangular cylinder is rotatably connected to the first bracket, a rectangular plate is slidably connected in the rectangular cylinder, a first degassing mechanism is arranged on the rectangular plate, the first degassing mechanism comprises a through hole opened in the rectangular plate and a liquid level sensor arranged on the rectangular plate, a sliding rod is slidably connected in the through hole, the inner diameter of the sliding rod is smaller than the through hole, a conical float is connected to one end of the sliding rod facing the rectangular cylinder, a defoaming rod is connected to the conical float, when the liquid level in the rectangular cylinder increases to the position of the liquid level sensor, the rectangular plate slides into the rectangular cylinder to block the opening of the rectangular cylinder, and then the rectangular cylinder swings from a horizontal state to a vertical state, so that the defoaming rod sweeps bubbles on the liquid surface, and after the rectangular cylinder swings to a vertical state, the rectangular plate continues to move downward, and the liquid surface pushes the conical float upward and blocks the through hole, so that the cold pressed pepper oil in the rectangular cylinder is transferred to the storage mechanism.
[0010] Furthermore, the transfer mechanism further comprises a rectangular rod connected to the rectangular plate, the rectangular rod is connected to a mounting frame, the mounting frame is connected to a rack, the first bracket is rotatably connected to a gear coaxially arranged with the swing point of the rectangular cylinder, and the gear is meshed with the rack; A guide rod is connected to the mounting frame, and a slide groove cooperating with the guide rod is provided on the first bracket, and the slide groove is composed of a horizontal section, an arc section and a vertical section. When the rectangular tube is in a horizontal state, the guide rod is located in the horizontal section, so that when the gear rotates, the guide rod is driven to slide horizontally to the intersection of the horizontal section and the arc section. When the gear continues to rotate, the guide rod slides from the arc section to the vertical section, so that the rectangular tube swings to a vertical state. After the rectangular tube swings to a vertical state, the gear continues to rotate to make the guide rod slide down in the vertical section, so that the rectangular plate slides into the rectangular tube.
[0011] Furthermore, it also includes an oil delivery mechanism, which includes a swivel seat connected to the first bracket, a swing plate hinged on the swivel seat, a torsion spring connected between the swing plate and the swivel seat, an oil pipe connected to the upper surface of the swing plate, and a baffle rod connected to the lower surface, and a recess is provided on the side wall of the rectangular cylinder, and when the mounting frame approaches the baffle rod, it can push the swing plate to swing down to a horizontal state, so that the oil outlet port of the oil pipe faces the recess, and when the mounting frame is away from the baffle rod, the torsion spring drives the swing plate to swing up.
[0012] Furthermore, a lower pressure plate is provided on the upper part of the swivel seat, an upper pressure plate is connected to the upper surface of the swing plate, the oil pipeline is connected through the upper pressure plate, and when the swing plate swings, the upper pressure plate and the lower pressure plate squeeze the oil pipeline to interrupt the oil delivery of the oil pipeline.
[0013] Furthermore, the oil delivery mechanism also includes an arc rod slidably connected to the rotating seat, a first tension spring is connected between the bottom end of the arc rod and the lower surface of the rotating seat, and the lower pressure plate is connected to the top end of the arc rod.
[0014] Furthermore, the storage mechanism includes a second bracket, a mounting ring is rotatably connected to the second bracket, an oil storage cylinder is connected to the mounting ring, and an oil inlet pipe is connected between the rectangular cylinder and the oil storage cylinder.
[0015] Furthermore, the storage mechanism also includes a discharge pipe connected to the oil storage barrel and located on the opposite side of the oil inlet pipe, and the discharge pipe is connected to an external screw pump. When the mounting ring rotates on the second bracket, the oil storage barrel can be in a storage state or a discharge state. When the oil storage barrel is in the storage state, the connection between the oil inlet pipe and the oil storage barrel is located at the lower part and transports cold-pressed pepper oil into the oil storage barrel, and the external screw pump provides negative pressure for the oil storage barrel when it is running. Moreover, when the oil storage barrel is in the discharge state, the connection between the discharge pipe and the oil storage barrel is located at the lower part, and the external screw pump extracts the cold-pressed pepper oil in the oil storage barrel through the discharge pipe when it is running.
[0016] Furthermore, it also includes a pressure relief mechanism, which includes a pressure relief pipe connected to the oil storage cylinder and located on one side of the discharge pipe. When the oil inlet pipe transports cold-pressed pepper oil to the oil storage cylinder, the pressure relief pipe opens.
[0017] Furthermore, the pressure relief mechanism further comprises an N-shaped frame, a vertical rod is vertically slidably connected to the N-shaped frame, a sealing plug is connected to the bottom of the vertical rod, the sealing plug is inserted into the pressure relief pipe, and a second tension spring is connected between the sealing plug and the pressure relief pipe; A tilting rod is hinged on the oil storage cylinder, the end of the tilting rod is connected to a lifting rod, a through groove is opened on the lifting rod, the side of the sealing plug is connected to a round rod, the round rod slides in the through groove, and a pressing frame is connected to the rectangular cylinder, when the rectangular cylinder is swung to a vertical state, the pressing frame presses the tilting rod to make the sealing plug move up to the pressure relief pipe.
[0018] Furthermore, the sealing plug is in an inverted cone shape, and the port of the pressure relief pipe is provided with an inner cone surface that matches the sealing plug.
[0019] The beneficial effects of the present invention are analyzed as follows: A cold-pressed pepper oil storage tank comprises a storage mechanism and a transfer mechanism connected to the storage mechanism. The transfer mechanism comprises a first bracket, a rectangular cylinder is rotatably connected to the first bracket, a rectangular plate is slidably connected in the rectangular cylinder, a first degassing mechanism is arranged on the rectangular plate, the first degassing mechanism comprises a through hole opened in the rectangular plate and a liquid level sensor arranged on the rectangular plate, a sliding rod is slidably connected in the through hole, the inner diameter of the sliding rod is smaller than the through hole, a conical float is connected to one end of the sliding rod facing the rectangular cylinder, a defoaming rod is connected to the conical float, when the liquid level in the rectangular cylinder increases to the position of the liquid level sensor, the rectangular plate slides into the rectangular cylinder to block the opening of the rectangular cylinder, and then the rectangular cylinder swings from a horizontal state to a vertical state, so that the defoaming rod sweeps bubbles on the liquid surface, and after the rectangular cylinder swings to a vertical state, the rectangular plate continues to move downward, and the liquid surface pushes the conical float upward and blocks the through hole, so that the cold-pressed pepper oil in the rectangular cylinder is transferred to the storage mechanism.
[0020] When the cold-pressed pepper oil in the rectangular cylinder is about to be fully stored, the cold-pressed pepper oil is stopped from being introduced. At this time, the rectangular plate first slides toward the rectangular cylinder to close the port of the rectangular cylinder. During this process, the liquid level of the cold-pressed pepper oil in the rectangular cylinder rises again. After the rectangular plate closes the port of the rectangular cylinder, the rectangular cylinder rotates toward a vertical state. During the rotation of the rectangular cylinder, the liquid level of the cold-pressed pepper oil inside it changes relative to the rectangular cylinder, so that the defoaming rod on the conical float plug can sweep across the liquid level of the cold-pressed pepper oil in the rectangular cylinder, breaking the floating bubbles on the cold-pressed pepper oil page, and the rectangular cylinder swings to After the vertical state, the rectangular plate is in the upper position of the rectangular cylinder, and gravity acts on the sliding rod, causing the sliding rod to slide down relative to the limit frame in the through hole, so that the conical float plug contacts the cold-pressed pepper oil and floats on the liquid surface, and then the rectangular plate slides into the rectangular cylinder. When the conical float plug does not block the through hole, the air in the rectangular cylinder is discharged out of the rectangular cylinder through the through hole. When the rectangular plate contacts the liquid surface of the cold-pressed pepper oil, the buoyancy pushes the conical float plug to block the through hole, so that the rectangular plate continues to slide into the rectangular cylinder, so that the defoamed cold-pressed pepper oil in the rectangular cylinder can be transmitted to the storage mechanism. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the related technologies, the drawings required for use in the specific embodiments or the related technical descriptions will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0022] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 This is a state diagram of the rectangular cylinder of the present invention discharging cold-pressed pepper oil; Figure 3 It is a structural schematic diagram of the transfer mechanism of the present invention; Figure 4 It is a structural schematic diagram of the defoaming rod of the present invention; Figure 5 It is a structural schematic diagram of the arc rod of the present invention; Figure 6 It is a structural schematic diagram of the storage mechanism of the present invention; Figure 7 It is a structural schematic diagram of the pressure relief mechanism of the present invention.
[0023] icon: 100, transfer mechanism; 110, first bracket; 120, rectangular cylinder; 121, oil inlet pipe; 130, rectangular plate; 140, rectangular rod; 150, gear; 160, mounting frame; 170, rack; 180, guide rod; 190, slide; 191, horizontal section; 192, arc section; 193, vertical section; 200, first degassing mechanism; 210, through hole; 220, limit frame; 230, slide rod; 240, conical float; 250, defoaming rod; 300, oil delivery mechanism; 310, swivel seat; 320, arc section rod; 330, first tension spring; 340, lower pressure plate; 350, swing plate; 360, torsion spring; 370, oil pipeline; 380, upper pressure plate; 390, stop rod; 400, storage mechanism; 410, second bracket; 420, mounting ring; 430, oil storage cylinder; 440, discharge pipe; 500, pressure relief mechanism; 510, tilting rod; 511, lifting rod; 512, through groove; 520, pressure frame; 530, pressure relief pipe; 540, sealing plug; 541, second tension spring; 550, round rod; 560, N-shaped frame; 570, vertical rod. DETAILED DESCRIPTION
[0024] The technical solution of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.
[0025] Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in the field without making any creative work shall fall within the scope of protection of the present invention.
[0026] In the description of the present invention, it should be noted that the terms "center", "up", "down", "left", "right", "vertical", "horizontal", "inside", "outside", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they cannot be understood as limitations on the present invention.
[0027] Furthermore, the terms “first”, “second”, and “third” are used for descriptive purposes only and should not be understood as indicating or implying relative importance.
[0028] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the internal connection of two elements.
[0029] For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0030] Examples, such as Figure 1-Figure 7 As shown, a cold-pressed pepper oil storage tank includes a storage mechanism 400, and also includes a transfer mechanism 100 connected to the storage mechanism 400, the transfer mechanism 100 includes a first bracket 110, a rectangular cylinder 120 is rotatably connected to the first bracket 110, a rectangular plate 130 is slidably connected in the rectangular cylinder 120, a first degassing mechanism 200 is arranged on the rectangular plate 130, the first degassing mechanism 200 includes a through hole 210 opened in the rectangular plate 130 and a liquid level sensor arranged in the rectangular plate 130, a sliding rod 230 is slidably connected in the through hole 210, the inner diameter of the sliding rod 230 is smaller than the through hole 210, and the sliding rod 200 is provided with a first degassing mechanism 200. A conical float 240 is connected to one end of the rectangular cylinder 120, and a defoaming rod 250 is connected to the conical float 240. When the liquid level in the rectangular cylinder 120 increases to the position of the liquid level sensor, the rectangular plate 130 slides into the rectangular cylinder 120 to block the opening of the rectangular cylinder 120, and then the rectangular cylinder 120 swings from a horizontal state to a vertical state, so that the defoaming rod 250 sweeps across the bubbles on the liquid surface. After the rectangular cylinder 120 swings to a vertical state, the rectangular plate 130 continues to move downward, and the liquid surface pushes the conical float 240 to move upward and block the through hole 210, so that the cold-pressed pepper oil in the rectangular cylinder 120 is transferred to the storage mechanism 400.
[0031] The working mechanism of the cold pressed pepper oil storage tank provided in this embodiment is as follows: In the initial state, the rectangular cylinder 120 is in a horizontal state, and the cold-pressed pepper oil enters the rectangular cylinder 120 through the gap between the rectangular plate 130 and the rectangular cylinder 120. The liquid level sensor detects the liquid level of the cold-pressed pepper oil in the rectangular cylinder 120. When the cold-pressed pepper oil in the rectangular cylinder 120 is about to be full, the introduction of the cold-pressed pepper oil is stopped. At this time, the rectangular plate 130 first slides toward the direction of the rectangular cylinder 120 to close the port of the rectangular cylinder 120. During this process, the liquid level of the cold-pressed pepper oil in the rectangular cylinder 120 rises again. After the rectangular plate 130 closes the port of the rectangular cylinder 120, the rectangular cylinder 120 rotates to a vertical state. During the rotation of the rectangular cylinder 120, the liquid level of the cold-pressed pepper oil inside it changes relative to the rectangular cylinder 120, so that the defoaming rod 250 on the conical float 240 can sweep the liquid level of the cold-pressed pepper oil in the rectangular cylinder 120, The bubbles on the upper part are broken, and after the rectangular cylinder 120 swings to a vertical state, the rectangular plate 130 is in the upper position of the rectangular cylinder 120, and gravity acts on the sliding rod 230, causing the sliding rod 230 to slide down relative to the limiting frame 220 in the through hole 210, so that the conical floating plug 240 contacts the cold-pressed Sichuan pepper oil and floats on the liquid surface, and then the rectangular plate 130 slides into the rectangular cylinder 120. When the conical floating plug 240 does not block the through hole 210, the air in the rectangular cylinder 120 is discharged out of the rectangular cylinder 120 through the through hole 210. When the rectangular plate 130 contacts the liquid surface of the cold-pressed Sichuan pepper oil, the buoyancy pushes the conical floating plug 240 to block the through hole 210, so that the rectangular plate 130 continues to slide into the rectangular cylinder 120, so that the cold-pressed Sichuan pepper oil in the rectangular cylinder 120 that has been defoamed can be transmitted to the storage mechanism 400, ensuring that the storage space of the storage mechanism 400 is not affected by a large number of bubbles. The slide bar 230 is slidably connected to the limit frame 220 to ensure that the two do not rotate relative to each other, thereby ensuring that the defoaming rod 250 can completely sweep the liquid surface of the cold-pressed pepper oil.
[0032] Regarding the structure of the transfer mechanism 100, specifically: The transfer mechanism 100 also includes a rectangular rod 140 connected to the rectangular plate 130, a mounting frame 160 is connected to the rectangular rod 140, a rack 170 is connected to the mounting frame 160, a gear 150 coaxially arranged with the swing point of the rectangular tube 120 is rotatably connected to the first bracket 110, and the gear 150 is meshed with the rack 170; a guide rod 180 is connected to the mounting frame 160, and a slide groove 190 cooperating with the guide rod 180 is provided on the first bracket 110, and the slide groove 190 is composed of a horizontal section 191, an arc section 192 and a vertical section 193. When the cylinder 120 is in a horizontal state, the guide rod 180 is located in the horizontal section 191, so that when the gear 150 rotates, it drives the guide rod 180 to slide horizontally to the intersection of the horizontal section 191 and the arc section 192. When the gear 150 continues to rotate, the guide rod 180 slides from the arc section 192 to the vertical section 193, so that the rectangular cylinder 120 swings to a vertical state. After the rectangular cylinder 120 swings to a vertical state, the gear 150 continues to rotate to make the guide rod 180 slide down in the vertical section 193, so that the rectangular plate 130 slides into the rectangular cylinder 120.
[0033] The gear 150 is driven to rotate by an electric rotating rod or a motor. When the control system receives the liquid level sensor and detects that the cold-pressed pepper oil in the rectangular cylinder 120 has reached the receiving amount, the control gear 150 is driven and rotated. Figure 3 In the state, the gear 150 drives the rack 170 to drive the mounting frame 160 to slide. Since the guide rod 180 is in the horizontal section 191 at this time, the mounting frame 160 can only slide horizontally. In this process, the mounting frame 160 drives the rectangular plate 130 to slide into the rectangular cylinder 120 through the rectangular rod 140, so that the rectangular cylinder 120 is first blocked to ensure that the cold-pressed pepper oil will not spill out when the rectangular cylinder 120 swings later. When the guide rod 180 slides to the arc section 192, the center of the arc section 192 is aligned with the center of the arc section 192. The gears 150 overlap, so that the rotation of the gear 150 can drive the guide rod 180 of the mounting frame 160 to slide in the arc section 192 through the rack 170, so that the mounting frame 160 drives the rectangular tube 120 to swing to a vertical state, and then the guide rod 180 moves to the vertical section 193, so that the continued rotation of the gear 150 can drive the rack 170 to move vertically downward, and then the rectangular plate 130 continues to slide into the rectangular tube 120, so that the cold-pressed pepper oil after defoaming in the rectangular tube 120 is transferred to the storage mechanism 400.
[0034] Regarding the structure of the oil delivery mechanism 300, specifically: The oil delivery mechanism 300 includes a swivel seat 310 connected to the first bracket 110, a swing plate 350 is hinged on the swivel seat 310, a torsion spring 360 is connected between the swing plate 350 and the swivel seat 310, the upper surface of the swing plate 350 is connected to the oil pipeline 370, and the lower surface is connected to the blocking rod 390. A recess is opened on the side wall of the rectangular cylinder 120. When the mounting frame 160 approaches the blocking rod 390, it can push the swing plate 350 to swing down to a horizontal state, so that the oil outlet port of the oil pipeline 370 is opposite to the recess; and when the mounting frame 160 is away from the blocking rod 390, the torsion spring 360 drives the swing plate 350 to swing up.
[0035] When the rectangular cylinder 120 is in a horizontal state, the side wall of the rectangular plate 130 is in contact with the three side walls of the rectangular cylinder 120, and the notch on the rectangular cylinder 120 allows the cold-pressed pepper oil discharged from the oil delivery pipe 370 to enter the rectangular cylinder 120 through the notch. When the guide rod 180 slides in the horizontal section 191 to the arc section 192, the rectangular plate 130 slides into the rectangular cylinder 120, so that the notch is blocked. The pendulum plate 350 is connected to the swivel seat 310 through the torsion spring 360, so that the pendulum plate 350 tends to tilt up when no force is applied. When the notch is not blocked by the rectangular plate 130, the mounting frame 160 is in a position close to the swivel seat 310. At this time, the mounting frame 160 applies a thrust to the blocking rod 390, so that the pendulum plate 350 swings down, so that the oil outlet port of the oil pipe 370 is at the notch. When the mounting frame 160 is away from the blocking rod 390, the torsion spring 360 drives the pendulum plate 350 to swing up, so that the oil pipe 370 is away from the notch, and at the same time, the swing of the rectangular cylinder 120 is not interfered with.
[0036] Among the optional methods of this embodiment, the more preferred ones are: A lower pressure plate 340 is provided on the upper part of the swivel seat 310, an upper pressure plate 380 is connected to the upper surface of the swing plate 350, and the oil pipe 370 is inserted and connected to the upper pressure plate 380. When the swing plate 350 swings upward, the upper pressure plate 380 and the lower pressure plate 340 are pressed against the oil pipe 370 to interrupt the oil supply of the oil pipe 370.
[0037] The oil pipeline 370 is inserted in the middle of the upper pressure plate 380. When the swing plate 350 swings upward, the upper pressure plate 380 can be close to the lower pressure plate 340, and then the upper pressure plate 380 and the lower pressure plate 340 can squeeze the oil pipeline 370, so that the cold-pressed pepper oil in the oil pipeline 370 will no longer flow out.
[0038] Among the optional methods of this embodiment, the more preferred ones are: The oil delivery mechanism 300 further includes an arc rod 320 slidably connected to the rotating seat 310 , a first tension spring 330 is connected between the bottom end of the arc rod 320 and the lower surface of the rotating seat 310 , and a lower pressure plate 340 is connected to the top end of the arc rod 320 .
[0039] The cooperation between the arc rod 320 and the first tension spring 330 enables the upper pressure plate 380 to exert pressure on the lower pressure plate 340 without having to swing up too much. At the same time, the arc rod 320 can slide relative to the swivel seat 310, thereby ensuring that the swing plate 350 can swing up to a larger angle to avoid the swing of the rectangular tube 120.
[0040] Regarding the structure of the storage mechanism 400, specifically: The storage mechanism 400 includes a second bracket 410 , a mounting ring 420 is rotatably connected to the second bracket 410 , an oil storage cylinder 430 is connected to the mounting ring 420 , and an oil inlet pipe 121 is connected between the rectangular cylinder 120 and the oil storage cylinder 430 .
[0041] The oil inlet pipe 121 is connected to the oil storage cylinder 430 and the rectangular cylinder 120. When the rectangular plate 130 slides into the interior of the rectangular cylinder 120, the cold-pressed pepper oil in the rectangular cylinder 120 enters the oil storage cylinder 430 through the oil inlet pipe 121, and the mounting ring 420 drives the oil storage cylinder 430 to flip by relying on an external motor.
[0042] Among the optional methods of this embodiment, the more preferred ones are: The storage mechanism 400 also includes a discharge pipe 440 connected to the oil storage barrel 430 and located on the opposite side of the oil inlet pipe 121. The discharge pipe 440 is connected to an external screw pump. When the mounting ring 420 rotates on the second bracket 410, the oil storage barrel 430 can be in a storage state or a discharge state. When the oil storage barrel 430 is in the storage state, the connection between the oil inlet pipe 121 and the oil storage barrel 430 is located at the lower part and transports cold-pressed pepper oil into the oil storage barrel 430, and when the external screw pump is running, it provides negative pressure for the oil storage barrel 430. Moreover, when the oil storage barrel 430 is in the discharge state, the connection between the discharge pipe 440 and the oil storage barrel 430 is located at the lower part, and when the external screw pump is running, the cold-pressed pepper oil in the oil storage barrel 430 is extracted through the discharge pipe 440.
[0043] If the oil storage cylinder 430 is in the oil storage state and the oil storage in the oil storage cylinder 430 has not reached the set value, the external screw pump will not start at this time, and the control system controls the gear 150 to drive the cold-pressed Sichuan pepper oil in the rectangular cylinder 120 to be discharged and then reversed, so that the rectangular cylinder 120 and the rectangular plate 130 are reset. If the oil storage cylinder 430 is in the oil storage state and the oil storage in the oil storage cylinder 430 has reached the set value, the control system controls the gear 150 to rotate so that the cold-pressed Sichuan pepper oil in the rectangular cylinder 120 is emptied and then It no longer reverses, so that the oil inlet pipe 121 is in a closed state. Subsequently, the control system controls the external screw pump to start, and extracts the air in the oil storage cylinder 430 through the discharge pipe 440, so that the oil storage cylinder 430 is in a negative pressure state, so that the cold-pressed pepper oil inside can be degassed. After the degassing of the cold-pressed pepper oil is completed, the external motor drives the mounting ring 420 to rotate, so that the oil storage cylinder 430 is in a discharge state. At this time, the external screw pump can discharge the cold-pressed pepper oil in the oil storage cylinder 430 for subsequent packaging.
[0044] Regarding the structure of the pressure relief mechanism 500, specifically: The pressure relief mechanism 500 includes a pressure relief pipe 530 connected to the oil storage cylinder 430 and located on one side of the discharge pipe 440. When the oil inlet pipe 121 transports the cold-pressed pepper oil to the oil storage cylinder 430, the pressure relief pipe 530 is opened.
[0045] When the rectangular plate 130 slides into the rectangular cylinder 120 so that the cold-pressed pepper oil in the rectangular cylinder 120 is transported to the oil storage cylinder 430, the pressure relief pipe 530 is in an open state, thereby ensuring that the pressure inside the oil storage cylinder 430 will not increase due to the injection of the cold-pressed pepper oil.
[0046] Among the optional methods of this embodiment, the more preferred ones are: The pressure relief mechanism 500 also includes an N-shaped frame 560, on which a vertical rod 570 is vertically slidably connected, and a sealing plug 540 is connected to the bottom of the vertical rod 570, which is inserted into the pressure relief pipe 530, and a second tension spring 541 is connected between the sealing plug 540 and the pressure relief pipe 530; a tilting rod 510 is hinged on the oil storage cylinder 430, and a lifting rod 511 is connected to the end of the tilting rod 510, and a through groove 512 is opened on the lifting rod 511, and a round rod 550 is connected to the side of the sealing plug 540, and the round rod 550 slides in the through groove 512, and a pressing frame 520 is connected to the rectangular cylinder 120. When the rectangular cylinder 120 swings to a vertical state, the pressing frame 520 presses the tilting rod 510 to move the sealing plug 540 up to the pressure relief pipe 530.
[0047] When the rectangular tube 120 swings to a vertical state, the pressure frame 520 can apply downward pressure to the tilting rod 510, thereby lifting the lifting rod 511. At this time, the lifting rod 511 drives the sealing plug 540 to move upward and away from the pressure relief pipe 530 through the round rod 550, so that the pressure relief pipe 530 is opened. The cooperation between the N-shaped frame 560 and the vertical rod 570 enables the sealing plug 540 to only slide vertically, thereby ensuring the stable opening and closing of the pressure relief pipe 530. When the lifting rod 511 swings, the round rod 550 slides synchronously in the through groove 512. When the pressure frame 520 is away from the tilting rod 510, the second tension spring 541 pulls the sealing plug 540 to return to its original position, thereby completing the blocking of the pressure relief pipe 530.
[0048] Among the optional methods of this embodiment, the more preferred ones are: The sealing plug 540 is in an inverted cone shape, and the port of the pressure relief pipe 530 is provided with an inner cone surface that matches the sealing plug 540 .
[0049] The pressure relief pipe 530 will only be opened when the sealing plug 540 slides in the direction away from the pressure relief pipe 530, and the sealing plug 540 is set to an inverted cone, so that when the oil storage cylinder 430 is vacuumed and degassed, the sealing plug 540 can be firmly adsorbed in the pressure relief pipe 530, thereby ensuring the airtightness of the oil storage cylinder 430.
[0050] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. A cold pressed pepper oil storage tank, comprising a storage mechanism (400), characterized in that: The transfer mechanism (100) is also included and connected to the storage mechanism (400). The transfer mechanism (100) includes a first bracket (110). A rectangular tube (120) is rotatably connected to the first bracket (110). A rectangular plate (130) is slidably connected inside the rectangular tube (120). A first degassing mechanism (200) is provided on the rectangular plate (130). The first degassing mechanism (200) includes a through hole (210) opened in the rectangular plate (130) and a liquid level sensor is provided on the rectangular plate (130). A sliding rod (230) is slidably connected inside the through hole (210). The inner diameter of the sliding rod (230) is smaller than that of the through hole (210). The sliding rod (230) is oriented toward the rectangular tube (120). 0) is connected to one end of a conical float (240), and a defoaming rod (250) is connected to the conical float (240). When the liquid level in the rectangular cylinder (120) increases to the position of the liquid level sensor, the rectangular plate (130) slides into the rectangular cylinder (120) to block the opening of the rectangular cylinder (120). Then, the rectangular cylinder (120) swings from a horizontal state to a vertical state, so that the defoaming rod (250) sweeps over the bubbles on the liquid surface. After the rectangular cylinder (120) swings to a vertical state, the rectangular plate (130) continues to move downward, and the liquid surface pushes the conical float (240) to move upward and block the through hole (210), so that the cold-pressed pepper oil in the rectangular cylinder (120) is transferred to the storage mechanism (400).
2. The cold pressed pepper oil storage tank according to claim 1, characterized in that: The transfer mechanism (100) further comprises a rectangular rod (140) connected to the rectangular plate (130), the rectangular rod (140) being connected to a mounting frame (160), the mounting frame (160) being connected to a rack (170), the first bracket (110) being rotatably connected to a gear (150) coaxially arranged with a swing point of the rectangular cylinder (120), the gear (150) being meshed with the rack (170); The mounting frame (160) is connected to a guide rod (180), the first bracket (110) is provided with a slide groove (190) which cooperates with the guide rod (180), the slide groove (190) is composed of a horizontal section (191), an arc section (192) and a vertical section (193), when the rectangular tube (120) is in a horizontal state, the guide rod (180) is located in the horizontal section (191), so that when the gear (150) rotates, the guide rod (180) is driven to slide horizontally to the horizontal section (191). At the intersection of the vertical segment (191) and the arc segment (192), when the gear (150) continues to rotate, the guide rod (180) slides from the arc segment (192) to the vertical segment (193), so that the rectangular tube (120) swings to a vertical state. After the rectangular tube (120) swings to a vertical state, the gear (150) continues to rotate so that the guide rod (180) slides down in the vertical segment (193), so that the rectangular plate (130) slides into the rectangular tube (120).
3. The cold pressed pepper oil storage tank according to claim 2, characterized in that: The invention also comprises an oil delivery mechanism (300), wherein the oil delivery mechanism (300) comprises a swivel seat (310) connected to the first bracket (110), a swing plate (350) being hinged on the swivel seat (310), a torsion spring (360) being connected between the swing plate (350) and the swivel seat (310), an upper surface of the swing plate (350) being connected to an oil delivery pipe (370), and a lower surface of the swing plate (350) being connected to a blocking rod (390), a recess being provided on the side wall of the rectangular cylinder (120), and when the mounting frame (160) is close to the blocking rod (390), the swing plate (350) can be pushed to swing down to a horizontal state, so that the oil outlet port of the oil delivery pipe (370) faces the recess, and when the mounting frame (160) is away from the blocking rod (390), the torsion spring (360) drives the swing plate (350) to swing up.
4. The cold pressed pepper oil storage tank according to claim 3, characterized in that: A lower pressure plate (340) is arranged on the upper part of the rotating seat (310), an upper pressure plate (380) is connected to the upper surface of the swing plate (350), and the oil pipeline (370) is connected to the upper pressure plate (380) through the upper pressure plate (380). When the swing plate (350) swings upward, the upper pressure plate (380) and the lower pressure plate (340) are pressed against the oil pipeline (370) so that the oil delivery of the oil pipeline (370) is interrupted.
5. The cold pressed pepper oil storage tank according to claim 4, characterized in that: The oil delivery mechanism (300) further comprises an arc-shaped rod (320) slidably connected to the rotating seat (310), a first tension spring (330) being connected between the bottom end of the arc-shaped rod (320) and the lower surface of the rotating seat (310), and the lower pressure plate (340) being connected to the top end of the arc-shaped rod (320).
6. The cold pressed pepper oil storage tank according to claim 5, characterized in that: The storage mechanism (400) comprises a second bracket (410), a mounting ring (420) is rotatably connected to the second bracket (410), an oil storage cylinder (430) is connected to the mounting ring (420), and an oil inlet pipe (121) is connected between the rectangular cylinder (120) and the oil storage cylinder (430).
7. The cold pressed pepper oil storage tank according to claim 6, characterized in that: The storage mechanism (400) further comprises a discharge pipe (440) connected to the oil storage barrel (430) and located on the opposite side of the oil inlet pipe (121); the discharge pipe (440) is connected to an external screw pump; when the mounting ring (420) rotates on the second bracket (410), the oil storage barrel (430) can be in a storage state or a discharge state; when the oil storage barrel (430) is in the storage state, the connection between the oil inlet pipe (121) and the oil storage barrel (430) is located at the bottom and delivers cold-pressed pepper oil into the oil storage barrel (430); and when the external screw pump is in operation, negative pressure is provided to the oil storage barrel (430); and when the oil storage barrel (430) is in the discharge state, the connection between the discharge pipe (440) and the oil storage barrel (430) is located at the bottom; and when the external screw pump is in operation, the cold-pressed pepper oil in the oil storage barrel (430) is extracted through the discharge pipe (440).
8. The cold pressed pepper oil storage tank according to claim 7, characterized in that: It also includes a pressure relief mechanism (500), the pressure relief mechanism (500) including a pressure relief pipe (530) connected to the oil storage cylinder (430) and located on one side of the discharge pipe (440), and when the oil inlet pipe (121) transports cold-pressed pepper oil to the oil storage cylinder (430), the pressure relief pipe (530) is opened.
9. The cold pressed pepper oil storage tank according to claim 8, characterized in that: The pressure relief mechanism (500) further comprises an N-shaped frame (560), a vertical rod (570) being vertically slidably connected to the N-shaped frame (560), a sealing plug (540) being connected to the bottom of the vertical rod (570), the sealing plug (540) being inserted into the pressure relief pipe (530), and a second tension spring (541) being connected between the sealing plug (540) and the pressure relief pipe (530); A tilting rod (510) is hinged on the oil storage cylinder (430). The end of the tilting rod (510) is connected to a lifting rod (511). A through groove (512) is provided on the lifting rod (511). A round rod (550) is connected to the side of the sealing plug (540). The round rod (550) slides in the through groove (512). A pressing frame (520) is connected to the rectangular cylinder (120). When the rectangular cylinder (120) swings to a vertical state, the pressing frame (520) presses the tilting rod (510) so that the sealing plug (540) moves up to the pressure relief pipe (530).
10. The cold pressed pepper oil storage tank according to claim 9, characterized in that: The sealing plug (540) is in an inverted cone shape, and the port of the pressure relief pipe (530) is provided with an inner cone surface that matches the sealing plug (540).
Citation Information
Patent Citations
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