Spice extraction device for slow-release essence food additive
By cutting and disturbing the spice raw materials by using the pressing cut and rotary disturbing part when the pressure plate is pressed down, the problem of low efficiency of the traditional spice extraction device is solved, and efficient extraction of spice liquid is achieved.
Patent Information
- Application Number
- CN202510634624.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2025-08-15
AI Technical Summary
Traditional spice extraction devices are inefficient when extruding spice raw materials, resulting in a long extraction time and reducing the extraction efficiency and effect of spice liquids.
While pressing the pressure plate, the pressure cutting part and the rotation disturbance part are provided, and the fragrance raw material is cut and disturbed by the rotational power and the pressure cutting part to improve the flow rate and extraction efficiency of the fragrance raw material liquid.
Through the combination of rotational power and the press-cut part, the outflow speed and extraction effect of the spice raw material liquid are increased, and the extraction efficiency is improved.
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Figure CN120481356A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of spice extraction, in particular to a spice extraction device for slow-release flavor food additives. Background Art
[0002] Slow-release flavor food additives require the use of spices extracted from raw materials as additives for flavoring. Usually, workers are required to inject the spice raw materials into the inner side of the filter cartridge and use a pressure plate to move downward in the filter cartridge and squeeze the spice raw materials so that the liquid in the spice raw materials is squeezed out and flows through the filter cartridge into the storage cylinder for collection by workers. The workers can then use the extracted spice raw material liquid as a flavor to add to the slow-release flavor to make slow-release flavor food additives. However, traditional spice extraction devices still have problems in actual operation.
[0003] For example, in actual operation, a large amount of spice raw materials may be injected into the filter cartridge at one time. When the accumulated spice raw materials are squeezed by the pressing plate, a long squeezing time is required to extract the spice raw material liquid, which reduces the extraction efficiency and effect. Summary of the Invention
[0004] The present invention provides a spice extraction device for slow-release flavor food additives. The device comprises a pressing portion and a rotating disturbance portion arranged on a pressing plate. When the pressing plate is pressed downward, the rotating disturbance portion, the pressing portion and the pressing plate rotate together. The spice raw materials are cut by the rotating power and the pressing portion, and the rotating disturbance portion and the pressing portion are used to disturb the spice raw materials, thereby improving the efficiency and extraction effect of the spice raw material liquid.
[0005] In order to solve the above technical problems, the technical solutions of the present invention are as follows: In a first aspect, a flavor extraction device for a slow-release flavoring food additive comprises: a storage cartridge and a filter cartridge disposed inside the storage cartridge; a hydraulic rod is disposed above the filter cartridge; a telescopic end of the hydraulic rod is rotatably connected to a pressure plate, and the center of the pressure plate corresponds to the center of the filter cartridge; a bracket is disposed outside the storage cartridge, and the device is characterized in that it further comprises: The pressing and cutting part is set through the pressing plate to squeeze and cut the spice raw materials; The rotary disturbing part is rotatably connected to the outside of the filter cartridge and extends into the filter cartridge, and is connected to the pressing and cutting part and the pressing plate to disturb the spice raw materials and drive the pressing plate and the pressing and cutting part to rotate and cut the spice raw materials; The discharge part is provided through the storage cylinder and the swirling part to discharge the extracted necklace raw materials; The pressing and cutting part includes a supporting guide and a cutting piece, wherein the supporting guide is arranged through the pressing plate and includes a retaining ring, and the cutting piece is arranged on the inner side of the supporting guide; The swirl disturbing part includes a rotating member and a connecting member, wherein the rotating member is arranged on the outside of the filter cartridge and the connecting member is arranged on the rotating member; The drain portion includes a locking member and a rotating member. The locking member is arranged to pass through the rotating member and the storage barrel. The center of the rotating member corresponds to the center of the connecting member. The stabbing and cutting member comprises: a first spring, one end of which is fixed to the retaining ring; A second connecting ring is fixed to one end of the guide rod; The cone head is fixed on the side of the second connecting ring away from the guide rod; The blade is symmetrically fixed on the outer side of the cone head and connected to the second connecting ring.
[0006] Furthermore, the support guide comprises: There are multiple guide cylinders, and the multiple guide cylinders pass through the pressing plate and are evenly fixed; A retaining ring is arranged on the inner side of the guide cylinder and is located near one end of the guide cylinder; The guide rod is movably arranged on the inner side of the guide cylinder, and one end thereof passes through the guide cylinder.
[0007] Furthermore, the rotating member includes: The second bearing is fixedly mounted on the outside of the filter cartridge; A bottom support is provided on the outside of the second bearing and below the filter cartridge; The winding drum is fixed on the inner side of the base and aligned with the center line of the filter cartridge; There are multiple first push rods, which are evenly arranged on the bottom bracket and penetrate the pressure plate.
[0008] Furthermore, the connecting member includes: A perforation is provided through one end of the bobbin; A pull rope is wound around the winding drum, with one end fixed to the outside of the winding drum and the other end passing through the through hole; A fixed frame, fixed on the outside of the hydraulic rod; The auxiliary component is arranged at the other end of the pull rope and is connected to the pressure plate.
[0009] Furthermore, the auxiliary parts include: The hydraulic rod is provided with two a frame plate, fixed on the inner side of the fixed frame and located between the two hydraulic rods; There are two through-holes, which are set through the frame plate and are penetrated by the pull rope in an N-shaped manner; A pull ring is fixed to the other end of the pull rope, passes through the pressure plate, and is rotatably connected to the pressure plate; The through hole is opened through the interior of the pull ring and is located on the outside of the draw cord.
[0010] Furthermore, the locking member includes: The plate is set through the interior of the bottom bracket; The sealing ring penetrates the side of the storage cylinder away from the hydraulic rod and is fixedly connected; The chassis is provided through the side of the storage cylinder away from the hydraulic rod and is located on the inner side of the sealing ring; The guide holes are symmetrically opened through the inside of the disc; There are two jacks, which are symmetrically opened through the interior of the base and communicate with the guide hole; A latching part is provided on the inner sides of the guide hole and the insertion hole; The push part passes through the bracket and is adjacent to the locking part.
[0011] Furthermore, the latch component includes: There are two sockets, which are symmetrically opened through the storage barrel and correspond to the positions of the jacks; a blocking rod, inserted into the inner side of the guide hole and extending to the inner side of one of the insertion holes; A second push rod is provided through one of the insertion holes, and one end of the second push rod is adjacent to one end of the blocking rod; A secondary rod is inserted into the inner side of the guide hole and passes through the other insertion hole; The rubber sleeves are respectively mounted on the outer sides of the blocking rod, the second push rod and the auxiliary rod.
[0012] Furthermore, the pushing part includes: There are four insertion rods, each of which movably passes through the bracket and has one end passing through the socket to contact the auxiliary rod; There are two third push rods, the two third push rods movably pass through the bracket, and one end of the third push rods passes through the socket and contacts the other end of the second push rod; There are two handles, which are respectively fixed to the other ends of the four insertion rods and the other ends of the two third push rods.
[0013] Furthermore, the rotation component includes: A commutator is arranged on the inner side of the bracket and located between the two hydraulic rods; The multi-stage electric rod is fixed at the output end of the commutator and moves through the pressure plate and the pull ring; A connecting plate fixed to the telescopic end of the multi-stage electric rod; The fitting opening is provided on the side of the connection plate away from the multi-stage electric rod; The crosshead is fixed to the end of the winding drum away from the disc plate; The auxiliary pressure part is arranged on the outside of the connecting plate.
[0014] Furthermore, the secondary pressure part includes: A second support ring is fixed to the outside of the fixed end of the multi-stage electric rod; a second spring, one end of which is fixed to the second support ring; a magnet magnetically connected to the outer side of the connecting disk and in contact with the other end of the second spring; A connecting ring is fixed to the outside of the magnet and is located on the outside of the pull rope; The pressing sleeve is fixed on the side of the connecting ring away from the pull ring and is located on the outside of the draw rope; The inclined plate is arranged to pass through the pressing sleeve in a translational manner, and a slope is provided on a side close to the connecting plate; One end of the third spring is fixed on the outside of the connecting ring, and the other end is connected to the inclined plate.
[0015] The above solution of the present invention includes at least the following beneficial effects: The cutting part and the disturbing part are provided. When the pressure plate is pressed down, the guide cylinder provided in the cutting part will be driven to move downward together, so that the guide cylinder pushes the cone head and the blade to move downward together through the first spring and the second connecting ring, and uses the cone head and the blade to pierce the outer wall of the spice raw material in contact with it. When the pressure plate is pressed down, the connecting part provided in the disturbing part will drive the rotating part provided in the disturbing part to rotate through the pulling part, and the rotating part will push the pressure plate to rotate together. The rotating part uses the rotational force to slightly disturb the movement of the spice raw material in the filter cartridge. At the same time, the pressure plate and the guide rod will use the rotational force to further disturb the spice raw material, and use the blade to cut the spice raw material. While disturbing, the gap between the spice raw materials is increased, and the speed of the spice raw material liquid flowing out of the filter cartridge is increased. The spice raw material is cut while pressing down, and the squeezing of the pressure plate is cooperated with to increase the efficiency of the liquid flowing out of the raw material, thereby improving the efficiency and extraction effect of the spice raw material liquid. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 A schematic diagram of the overall three-dimensional structure of a spice extraction device provided in an embodiment of the present invention; Figure 2 A three-dimensional exploded view of the storage cartridge, filter cartridge, pressure plate, hydraulic rod, and stop rod assembly provided in an embodiment of the present invention; Figure 3 A cross-sectional plan view of a storage cartridge, filter cartridge, pressure plate, hydraulic rod, and bracket assembly provided in an embodiment of the present invention; Figure 4 A cross-sectional plan view of a guide cylinder, a first spring, and a blade assembly provided in an embodiment of the present invention; Figure 5 A schematic diagram of the three-dimensional structure of the fixing frame, frame plate and pull rope combination provided in an embodiment of the present invention; Figure 6 The embodiment of the present invention provides Figure 1 Schematic diagram of the structure at D in FIG; Figure 7 The embodiment of the present invention provides Figure 3 Schematic diagram of the structure at E in FIG; Figure 8A schematic diagram of the three-dimensional structure of the plate, swash plate, bottom bracket, multi-stage electric rod and pull ring assembly provided in an embodiment of the present invention; Figure 9 A cross-sectional perspective view of a multi-stage electric rod, a connecting plate, a magnet, a pressing sleeve, and an inclined plate assembly provided in an embodiment of the present invention; Figure 10 A schematic diagram of the three-dimensional structure of a chassis, a disc plate, and a winding bobbin assembly provided in an embodiment of the present invention; Figure 11 A sectional perspective view of a connection disk provided in an embodiment of the present invention; Figure 12 A schematic diagram of a cross-sectional view of a pressure plate and a three-dimensional structure of a pull ring assembly provided by an embodiment of the present invention; Figure 13 A cross-sectional plan view of a guide hole, a socket, a filter cartridge, and a storage cartridge assembly provided in an embodiment of the present invention; Figure 14 A schematic diagram of the three-dimensional structure of the blocking rod, the second push rod, the auxiliary rod and the rubber sleeve provided in an embodiment of the present invention; Figure 15 The embodiment of the present invention provides Figure 3 Schematic diagram of the structure at A in FIG; Figure 16 The embodiment of the present invention provides Figure 3 Schematic diagram of the structure at B in FIG; Figure 17 The embodiment of the present invention provides Figure 3 Schematic diagram of the structure at point C in .
[0017] Description of reference numerals: In the figure: 1, frame; 2, frame; 3, support leg; 4, storage cylinder; 5, first support ring; 6, wheel frame; 7, guide wheel; 8, flange pipe; 9, filter cartridge; 10, handle; 11, bracket; 12, fixing frame; 13, connecting plate; 14, hydraulic rod; 15, first connecting ring; 16, first bearing; 17, connecting cylinder; 18, pressure plate; 19, guide cylinder; 20, retaining ring; 21, first spring; 22, second connecting ring; 23, guide rod; 24, cone head; 25, blade; 26, bottom bracket; 27, second bearing; 28, plate; 29, winding drum; 30, perforation; 31, pull rope; 32, frame plate; 33, through hole; 34, pull ring; 35, third bearing; 36, first push rod; 37, first push rod; 38, first push rod; 39, first push rod; 40, first push rod; 41, first push rod; 42, first push rod; 43, first push rod; 44, first push rod; 45, first push rod; 46, first push rod; 47, first push rod; 48, first push rod; 49, first push rod; 50, first push rod; 51, first push rod; 52, first push rod; 53, first push rod; 54, first push rod; 55, first push rod; 56, first push rod; 57, first push rod; 58, first push rod; 59, first push rod; 60, first push rod; 61, first push rod; 62, first push rod; 63, first push rod; 64, first push rod; 65, first push rod; 66, first push rod; 67, first push rod; 68, first push rod; 69, first push rod; 7. Through hole; 38. Sealing ring; 39. Chassis; 40. Guide hole; 41. Insertion hole; 42. Socket; 43. Stop rod; 44. Second push rod; 45. Auxiliary rod; 46. Rubber sleeve; 47. Rubber ring; 48. Insert rod; 49. Third push rod; 50. Handle; 51. Swash plate; 52. Motor; 53. Transmission rod; 54. Commutator; 55. Multi-stage electric rod; 56. Connecting plate; 57. Fitting mouth; 58. Crosshead; 59. Second support ring; 60. Telescopic rod; 61. Second spring; 62. Magnet; 63. Connecting ring; 64. Press sleeve; 65. Movable mouth; 66. Through mouth; 67. Swash plate; 68. Baffle; 69. Third spring; 70. Rubber ring; 71. Rubber pad. DETAILED DESCRIPTION
[0018] Exemplary embodiments of the present invention will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present invention are shown in the accompanying drawings, it should be understood that the present invention can be implemented in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided to enable a more thorough understanding of the present invention and to fully convey the scope of the present invention to those skilled in the art.
[0019] like Figures 1 to 17 As shown, an embodiment of the present invention provides a flavor extraction device for slow-release flavor food additives, comprising: a storage cartridge 4 and a filter cartridge 9 disposed inside the storage cartridge 4, a hydraulic rod 14 disposed above the filter cartridge 9, a telescopic end of the hydraulic rod 14 being rotatably connected to a pressure plate 18, and the center of the pressure plate 18 corresponds to the center of the filter cartridge 9, a bracket 11 is disposed outside the storage cartridge 4, and the device is characterized in that it further comprises: A pressing and cutting portion is provided through the pressing plate 18 to squeeze and cut the spice raw materials; The rotary disturbing part is rotatably connected to the outside of the filter cartridge 9 and extends into the filter cartridge 9. It is connected to the pressing and cutting part and the pressing plate 18 to disturb the spice raw materials and drive the pressing plate 18 and the pressing and cutting part to rotate and cut the spice raw materials. The discharge portion is provided through the storage cylinder 4 and the swirling portion to discharge the extracted necklace raw materials; The pressing and cutting part includes a supporting guide and a piercing and cutting member. The supporting guide is set through the pressing plate 18, and the piercing and cutting member is set on the inner side of the supporting guide. The swirl disturbing part includes a rotating part and a connecting part. The rotating part is arranged on the outside of the filter cartridge 9, and the connecting part is arranged on the rotating part. The drain section includes a locking member and a rotating member. The locking member is arranged to pass through the rotating member and the storage barrel 4. The center of the rotating member corresponds to the center of the connecting member. The support guide includes: The guide cylinder 19 passes through the pressing plate 18 and is fixedly connected; The retaining ring 20 is arranged on the inner side of the guide cylinder 19; The guide rod 23 is movably arranged on the inner side of the guide cylinder 19 .
[0020] Specifically, the bracket 11 is fixed with a frame 1 on the side away from the fixed frame 12, and a frame 2 is fixed on the frame 1, and the frame 2 is located between the storage cylinder 4 and the frame 1, and the bottom of the frame 2 is symmetrically fixed with support legs 3, and the outside of the storage cylinder 4 is fixed with a first support ring 5, and the first support ring 5 is fixed with a wheel frame 6 on the side close to the frame 2, and the inner side of the wheel frame 6 is rotatably connected to the guide wheel 7, and the guide wheel 7 is in contact with the frame 2, and a flange pipe 8 is provided through the interior of the storage cylinder 4, and the flange pipe 8 is located below the first support ring 5, and a handle 10 is fixed to the outside of the filter cartridge 9 and the storage cylinder 4, and a connecting plate 13 is fixed to the inside of the fixed frame 12, and the connecting plate 13 is fixed to the hydraulic rod 14, and a connecting cylinder 17 is fixed through the inside of the pressure plate 18, and the connecting cylinder 17 can provide support for the pressure plate 18.
[0021] In actual application of this embodiment: the frame 1 can provide stable support for the bracket 11 and the frame 2, the bracket 11 can provide stable support for the fixed frame 12, the fixed frame 12 can firmly support the hydraulic rod 14 through the connecting plate 13, and the hydraulic rod 14 can push the pressure plate 18 up and down through the connecting tube 17 under the operation of the staff, and the frame 2 can provide support and rolling guidance for the guide wheel 7 under the support of the frame 1, the wheel frame 6 can provide support for the guide wheel 7, and can support the storage cylinder 4 through the first support ring 5 under the support of the frame 2, and the storage cylinder 4 can provide a collection space for the liquid, and can provide a placement space and support for the filter cartridge 9. A plurality of holes are opened through the interior of the filter cartridge 9, which can provide a channel for the liquid to be discharged into the storage cylinder 4, and the staff can According to actual needs, after pulling out the third push rod 49 and the insertion rod 48 from the storage cylinder 4, the storage cylinder 4 is pulled by the handle 10 and moved along the frame 2 using the guide wheel 7. The staff can inject the spice raw materials into the inner side of the filter cartridge 9 and control the hydraulic rod 14 to extend under the support of the connecting plate 13, the bracket 11 and the fixing frame 12, so that the hydraulic rod 14 pushes the pressing plate 18 downward, so that the pressing plate 18 is inserted into the inner side of the filter cartridge 9 and moves downward along the inner wall of the filter cartridge 9 to squeeze the spice raw materials. The spice raw materials will be squeezed out of the liquid under the action of the squeezing force, and the liquid will pass through the filter cartridge 9 from the hole and be discharged into the storage cylinder 4. The staff can use the fixing parts to connect the liquid conveying pipeline with the flange pipe 8, so that the spice raw material liquid in the storage cylinder 4 can pass through the flange pipe 8 and be discharged into the connecting pipeline.
[0022] As a preferred embodiment of the present invention, the support guide also includes: There are multiple guide cylinders 19, and the multiple guide cylinders 19 pass through the pressing plate 18 and are evenly fixed; The retaining ring 20 is located near one end of the guide cylinder 19; One end of the guide rod 23 passes through the guide cylinder 19 .
[0023] Specifically, the pressure plate 18 can provide stable support for the guide cylinder 19 , the guide cylinder 19 can provide stable support for the retaining ring 20 , the retaining ring 20 can provide a through channel for the guide rod 23 , and can provide a resisting support function for the first spring 21 .
[0024] The cutting parts include: A first spring 21, one end of which is fixed to the retaining ring 20; A second connecting ring 22 is fixed to one end of the guide rod 23; The cone head 24 is fixed on the side of the second connecting ring 22 away from the guide rod 23; The blade 25 is symmetrically fixed on the outside of the cone head 24 and connected to the second connecting ring 22 .
[0025] Specifically, the first spring 21 is elastic and can provide support for the second connecting ring 22, the second connecting ring 22 can provide support for the guide rod 23, and the guide rod 23 can provide support for the cone head 24 and the blade 25. The bottom end of the cone head 24 is relatively sharp, and the edge of the blade 25 is sharp.
[0026] In actual application of this embodiment, when the baffle plate 18 moves up and down, it will drive the guide cylinder 19 to move together. When the pressure plate 18 moves downward, the guide cylinder 19 will push the baffle ring 20 downward under the drive of the pressure plate 18, so that the baffle ring 20 uses external force to drive the first spring 21, the second connecting ring 22 and the guide rod 23 to move downward together. At the same time, the guide rod 23 will drive the cone head 24 and the blade 25 to move downward together. During the downward movement, the first spring 21 will use its elasticity to push the second connecting ring 22 and the guide rod 23 downward under the support of the baffle ring 20, providing the cone head 24 and the blade 25 with an external force to pierce the spice raw materials. At the same time, the pressure plate 18 will continue to squeeze the filter cartridge 9 during the continuous downward movement. The spice raw materials in the filter cartridge 9 are compressed by the pressing plate 18, and the cone head 24 and the blade 25 push the second connecting ring 22 upward under the resistance of the compacted spice raw materials, so that the second connecting ring 22 pushes the first spring 21 upward, and then the first spring 21 is squeezed and contracted under the support of the guide cylinder 19 and the retaining ring 20. At the same time, the guide rod 23 moves to the inside of the guide cylinder 19, so that the cone head 24 and the blade 25 can move into the guide cylinder 19, thereby not affecting the further compaction and extrusion of the spice raw materials. The extruded liquid flows under the action of gravity and passes through the filter cartridge 9 and flows out to the inside of the storage cylinder 4.
[0027] In another preferred embodiment of the present invention, the rotating member comprises: The second bearing 27 is fixedly mounted on the outside of the filter cartridge 9; The bottom support 26 is provided on the outside of the second bearing 27 and is located below the filter cartridge 9; The winding drum 29 is fixed to the inner side of the base 26 and aligned with the center line of the filter cartridge 9; There are multiple first push rods 36 , which are evenly arranged on the base 26 and penetrate the pressure plate 18 .
[0028] Specifically, a rubber pad 71 is fixed to the inner side of the base 26, and the rubber pad 71 is located between the filter cartridge 9 and the base 26, the telescopic end of the hydraulic rod 14 is connected to the first connecting ring 15 through a fixing component, and the first connecting ring 15 is located on the outer side of the connecting tube 17, the inner side of the first connecting ring 15 is fixed with a first bearing 16, and the first bearing 16 is connected to the outer side of the connecting tube 17, the filter cartridge 9 can provide support for the second bearing 27, the second bearing 27 can provide rotation support for the base 26, the disc 28 can provide support for the winding drum 29, the winding drum 29 can provide winding space and support for the pull rope 31, and the base 26 can firmly support the first push rod 36, the pressure plate 18 can provide a through channel for the first push rod 36, so that the pressure plate 18 can move up and down along the first push rod 36, and the rubber pad 71 can play a sealing role between the filter cartridge 9 and the base 26 under the support of the base 26 without affecting the rotation of the base 26.
[0029] The connecting parts include: A through hole 30 is provided through one end of the winding drum 29; A pull rope 31 is wound around the winding drum 29, with one end fixed to the outside of the winding drum 29 and the other end passing through the through hole 30; A fixed frame 12 is fixed to the outside of the hydraulic rod 14; The auxiliary component is provided at the other end of the pull rope 31 and is connected to the pressure plate 18 .
[0030] Specifically, the winding drum 29 can provide a space for the through hole 30 , and the through hole 30 can provide a through channel for the pull rope 31 . The pull rope 31 can pull the winding drum 29 to rotate under the action of external force, and the fixing frame 12 can provide stable support for the hydraulic rod 14 through the connecting plate 13 .
[0031] Auxiliary parts include: The hydraulic rod 14 is provided with two The frame plate 32 is fixed to the inner side of the fixed frame 12 and is located between the two hydraulic rods 14; There are two through-holes 33, which are set through the frame plate 32 and are penetrated by the pull rope 31n; The pull ring 34 is fixed to the other end of the pull rope 31, passes through the pressure plate 18, and is rotatably connected to the pressure plate 18; The through hole 37 is formed through the pull ring 34 and is located outside the pull rope 31 .
[0032] Specifically, the fixing frame 12 can firmly support the frame plate 32, the frame plate 32 can provide an opening space for the through hole 33, the through hole 33 can provide a through channel for the pull rope 31, and the frame plate 32 can provide support for the pull rope 31. The outer side of the pull ring 34 is connected to the third bearing 35, and the third bearing 35 is rotatably connected to the pressure plate 18. The third bearing 35 is located below the connecting tube 17. The pull ring 34 can provide an opening space for the through hole 37, and the through hole 37 can provide a through channel for the pull rope 31.
[0033] When the first support 15 is lifted up, the first support 15 is pushed downward by the first bearing 16, so that the connecting tube 17 can push the pressure plate 18 downward by the external force. When the pressure plate 18 moves downward, the third bearing 35 is driven downward by the external force, so that the third bearing 35 drives the pull ring 34 to move downward together. At the same time, the pull ring 34 can move along the outer side of the pull rope 31 by the through hole 37, and the pull ring 34 can pull the other end of the pull rope 31 as it moves downward, so that the pull rope 31 can move through the through hole 33 under the action of the external force and the support of the frame plate 32, thereby making the pull rope 31 able to use the external force to pull the winding drum 29 with one end to rotate under the support of the frame plate 32. As the pressure plate 18 gradually moves downward, the winding drum 29 can use the rotational force to drive the disc plate 28 to rotate together, so that the disc plate 28 can The bottom support 26 is driven to rotate together by the blocking rod 43, and at the same time, the bottom support 26 will drive the first push rod 36 to rotate together, so that the first push rod 36 uses external force to push the pressure plate 18 to rotate on the outside of the third bearing 35, and at the same time, the pressure plate 18 will drive the connecting cylinder 17 to rotate together on the inside of the first bearing 16, so that the pressure plate 18 can use the rotational force to drive the guide cylinder 19, the spring, the guide rod 23 cone head 24 and the blade 25 to rotate together, and the first push rod 36 and the guide rod 23 will use the rotational force to disturb the spice raw materials in the filter cartridge 9, and the guide rod 23 will drive the cone head 24 and the blade 25 to rotate together, so that the blade 25 can use the rotational force and its own sharp edge to cut the spice raw materials in the filter cartridge 9, thereby promoting the discharge of liquid in the raw materials. The ratio of the number of the first push rod 36 to the guide rod 23 is 2:6, so the effect of disturbing the raw materials is different, and then the difference in disturbance effect at different positions is utilized to further improve the effect of disturbing the raw materials.
[0034] As a preferred embodiment of the present invention, the lock member includes: The disc 28 is provided through the interior of the bottom bracket 26; The sealing ring 38 passes through the side of the storage cylinder 4 away from the hydraulic rod 14 and is fixedly connected; The chassis 39 is provided through the side of the storage cylinder 4 away from the hydraulic rod 14 and is located inside the sealing ring 38; The guide holes 40 are symmetrically formed through the interior of the disc 28; There are two jacks 41, which are symmetrically opened inside the bottom bracket 26 and communicate with the guide hole 40; A latching part is provided inside the guide hole 40 and the insertion hole 41; The push part is arranged through the bracket 11 and is adjacent to the locking part.
[0035] Specifically, a rubber ring 70 is fixed on the disc 28, and the rubber ring 70 is in contact with the rubber pad 71, thereby playing a sealing role at the connection between the disc 28 and the base 26. A slanted plate 51 is fixed on the base 26, and the outer side of the slanted plate 51 is in contact with the inner wall of the filter cartridge 9, which can provide a moving guide for the spice raw materials so that the spice raw materials can be accumulated on the disc 28, and the disc 28 can use friction to push the raw materials close to it to move during rotation. The sealing ring 38 can use friction to support the chassis 39 under the support of the storage cartridge 4, and can play a sealing role between the chassis 39 and the storage cartridge 4. The disc 28 can provide a space for the guide hole 40, and the base 26 can provide a space for the jack 41.
[0036] Mortise lock parts include: There are four sockets 42, which are symmetrically opened through the storage cylinder 4 and correspond to the positions of the sockets 41; The blocking rod 43 is inserted into the inner side of the guide hole 40 and extends to the inner side of one of the insertion holes 41; A second push rod 44 is provided through one of the insertion holes 41, and one end of the second push rod 44 is adjacent to one end of the blocking rod 43; The auxiliary rod 45 is inserted into the inner side of the guide hole 40 and passes through the other insertion hole 41; The rubber sleeve 46 is respectively mounted on the outer sides of the blocking rod 43, the second push rod 44 and the auxiliary rod 45.
[0037] Specifically, a rubber ring 47 is fixed on the inner side of the socket 42, and the rubber ring 47 is located on the outer side of the insertion rod 48 and the third push rod 49. The storage cartridge 4 can provide a space for the socket 42. When the blocking rod 43, the second push rod 44 and the auxiliary rod 45 are in the Figure 3 Only when it is in the state shown can the filter cartridge 9 be rotated, the socket 42 can provide a penetration and movement channel for the insertion rod 48, the second push rod 44, the auxiliary rod 45 and the third push rod 49, the guide hole 40 can provide a penetration and movement channel for the baffle rod 43, and the socket 41 can provide a penetration and movement channel for the auxiliary rod 45 and the second push rod 44. The distance that the second push rod 44 can move toward the filter cartridge 9 is the same as the distance that the baffle rod 43 is completely moved into the guide hole 40. The second push rod 44, the auxiliary rod 45 and the baffle rod 43 can provide stable support for the rubber sleeve 46. The rubber sleeve 46 is elastic and can fit with the base 26 and the disc 28 under the support of the second push rod 44, the auxiliary rod 45 and the baffle rod 43, thereby sealing and providing movement resistance.
[0038] The sliding parts include: There are two insertion rods 48, which are movable through the bracket 11, and one end of which passes through the socket 42 and contacts the auxiliary rod 45; There are two third push rods 49 , which are movable through the bracket 11 , and one end of the third push rods 49 passes through the socket 42 and contacts the other end of the second push rod 44 ; There are two handles 50 , which are respectively fixed to the other ends of the two insertion rods 48 and the other ends of the two third push rods 49 .
[0039] Specifically, the insert rod 48 and the third push rod 49 can provide stable support for the handle 50. The handle 50 can facilitate the staff to push the insert rod 48 and the third push rod 49. The insert rod 48 can push the auxiliary rod 45 to move under the action of external force, and the third push rod 49 can use external force to push the second push rod 44 to move. Both the second push rod 44 and the auxiliary rod 45 can use external force to push the blocking rod 43 to move.
[0040] The rotating parts include: The commutator 54 is provided on the inner side of the bracket 11 and is located between the two hydraulic rods 14; The multi-stage electric rod 55 is fixed to the output end of the commutator 54 and movably passes through the connecting tube 17 and the pull ring 34; A connecting plate 56 is fixed to the telescopic end of the multi-stage electric rod 55; The fitting opening 57 is provided on the side of the connecting plate 56 away from the multi-stage electric rod 55; Crosshead 58, fixed to the end of the winding drum 29 away from the disc 28 The auxiliary pressure component is arranged outside the connecting plate 56.
[0041] Specifically, a motor 52 is fixed to the outside of the bracket 11, and a transmission rod 53 is fixed to the driving end of the motor 52, and the transmission rod 53 rotates and passes through the bracket 11. The commutator 54 is fixedly connected to the inner wall of the bracket 11, and the transmission rod 53 is connected to the input end of the commutator 54. The crosshead 58 can be engaged with the fitting opening 57, and the top of the crosshead 58 is relatively sharp. The motor 52 can use the driving end to drive the transmission rod 53 to rotate, and the transmission rod 53 can drive the commutator 54 to operate. The commutator 54 can use the output end to drive the multi-stage electric rod 55 to rotate. The multi-stage electric rod 55 can provide support for the connecting disk 56, and the connecting disk 56 can provide space for the fitting opening 57.
[0042] Secondary pressure parts include: The second support ring 59 is fixed to the outside of the fixed end of the multi-stage electric rod 55; A second spring 61, one end of which is fixed to the second support ring 59; a magnet 62 , which is magnetically connected to the outside of the connecting plate 56 and contacts the other end of the second spring 61 ; The connecting ring 63 is fixed to the outside of the magnet 62 and is located outside the pull rope 31; The pressing sleeve 64 is fixed to the side of the connecting ring 63 away from the pull ring 34 and is located outside the pull rope 31; The inclined plate 67 is arranged to pass through the pressing sleeve 64 in a translational manner, and has an inclined surface on a side close to the connecting plate 56; One end of the third spring 69 is fixed to the outside of the connecting ring 63 , and the other end is connected to the inclined plate 67 .
[0043] Specifically, a telescopic rod 60 is fixed on the side of the second support ring 59 away from the commutator 54, and the telescopic rod 60 is located on the inner side of the second spring 61. A movable opening 65 is opened through the interior of the pressure sleeve 64, and the inclined plate 67 is located on the inner side of the movable opening 65, and the movable opening 65 corresponds to the position of the connecting plate 56. A through-opening 66 is opened through the interior of the pressure sleeve 64, and the through-opening 66 is located on one side of the movable opening 65. The through-opening 66 is located on the outside of the pull rope 31, which can provide movement and penetration space for the pull rope 31. A baffle 68 is fixed to one end of the inclined plate 67, and the baffle 68 is connected to the other end of the third spring 69. The multi-stage electric rod 55 can provide stable support for the second support ring 59, and the second support ring 59 can provide support for the telescopic rod 60 and the second spring 61. The second spring 61 is elastic, and the telescopic rod 60 can be under the action of external force The connecting ring 63 is made of the same material as the magnet 62, has magnetic force and can be adsorbed on the pull ring 34 by magnetic force. The magnet 62 can move up and down along the outer side of the connecting disk 56 under the action of external force, and the top of the magnet 62 protrudes upward and can be inserted into the inner side of the pull ring 34 to play a positioning role. The connecting ring 63 can provide a stable support for the pressing sleeve 64, and the pressing sleeve 64 can provide a moving guide and support for the inclined plate 67. The movable mouth 65 can provide a through channel for the connecting disk 56, and the connecting ring 63 can provide a stable support for the third spring 69. The inclined plate 67 can provide support for the baffle 68 and can use external force to stretch the third spring 69.
[0044] The storage cylinder 4 is made of a transparent material, which allows the staff to see the working conditions inside the storage cylinder 4 and to control the rotation position of the base 26 and the disc 28 and to align the jack 41 and the socket 42.
[0045] When the pressing plate 18 is in operation, the pull ring 34 is moved downwards, so that the pull ring 34 is sleeved on the outer side of the third spring 69 and contacts the connecting ring 63, and continues to move downwards. The connecting ring 63 is pushed downwards during the movement, so that the connecting ring 63 drives the magnet 62 and the pressing sleeve 64 to move downwards together, so that the magnet 62 moves downwards from the outer side of the connecting disk 56 and separates from the connecting disk 56. At the same time, the top protrusion of the magnet 62 will be inserted into the inner side of the pull ring 34 to provide positioning for the connecting ring 63, preventing the connecting ring 63 from moving horizontally. At the same time, the connecting ring 63 will use magnetic force to be adsorbed on the pull ring 34 and magnetically connected to the pull ring 34, so that the pressing plate 18 can drive the inclined plate 67 to move downwards through the connecting ring 63 and the pressing sleeve 64 during the downward movement, so that the pressing sleeve 64 and the inclined plate 67 cooperate to move downwards with the pressing plate 18 to participate in squeezing the spice raw materials.
[0046] When the extrusion work is completed and the pressure plate 18 moves upward, the pressure plate 18 will use magnetism to drive the connecting ring 63 to move upward through the pull ring 34, so that the connecting ring 63 drives the magnet 62, the pressing sleeve 64 and the inclined plate 67 to move upward together. As the pressure plate 18 moves upward, the magnet 62 will be mounted on the outer side of the connecting disk 56 and magnetically connected, and contact with the second spring 61. Under the elastic force of the second spring 61, the magnet 62 is provided with a resistance effect, and then the magnet 62 resists the connecting ring 63, so that the connecting ring 63 overcomes the magnetic force and separates from the pull ring 34, thereby resetting the connecting ring 63, the magnet 62 and the pressing sleeve 64.
[0047] After the spice raw materials in the filter cartridge 9 are compacted, the staff can push the third push rod 49 through the handle 50, so that the third push rod 49 passes through the bracket 11 and moves horizontally toward the storage cartridge 4 under the support and guidance of the bracket 11, so that one end of the third push rod 49 can pass through the storage cartridge 4 through the rubber ring 47 and the socket 42 to contact the second push rod 44, and push the second push rod 44 to move toward the guide hole 40, so that the second push rod 44 uses external force to push the blocking rod 43 in the guide hole 40 during the movement. At the same time, the blocking rod 43 will push the auxiliary rod 45 to move inside the guide hole 40 and the socket 41 during the movement process until the third push rod 49 moves to the limit. At this time, the second push rod 44 will completely move to the inside of the socket 41. At the same time, the blocking rod 43 will completely move to the inside of the guide hole 40 under the push of the second push rod 44. At the same time, the part of the auxiliary rod 45 inside the guide hole 40 will completely move to the inside of the socket 41. At the same time, the second push rod 44, the blocking rod 43 and the auxiliary rod 45 The support function of the disc 28 from the bottom support 26 through the blocking rod 43, the auxiliary rod 45 and the second push rod 44 will disappear, and the disc 28 will move downward under the action of the gravity of the compacted spice raw materials. At the same time, the disc 28 will push the bottom plate 39 downward under the action of gravity, thereby separating the disc 28 from the bottom support 26 and separating the bottom plate 39 from the sealing ring 38, thereby opening an opening at the corresponding position of the disc 28 and the bottom plate 39, thereby causing the compacted and squeezed spice raw materials in the filter cartridge 9 to pass through the opening and be discharged to the outside. At this time, the multi-stage electric rod 55 needs to remain in a retracted state. When the disc 28 moves downward, it will drive the winding drum 29 to move together. At the same time, the pull rope 31 wrapped around the outside of the winding drum 29 will be gradually released as it moves.
[0048] After the compacted spice raw materials are discharged, the staff can place the disc plate 28 on the bottom plate 39, and synchronously move the disc plate 28 through the bottom plate 39 so that the disc plate 28 passes through the sealing ring 38 and moves to the inner side of the bottom support 26. At the same time, the bottom plate 39 is moved to the inner side of the sealing ring 38, and the elasticity of the sealing ring 38 is used to squeeze and position the bottom plate 39. The staff can hold the bottom plate 39 by hand, and then push the insertion rod 48 through the handle 50 so that the insertion rod 48 pushes the auxiliary rod 45. At the same time, the staff needs to push the bottom plate 39 to rotate so that the bottom plate 39 uses friction to push the disc plate 28 to rotate, thereby making one end of the auxiliary rod 45 correspond to the position of the guide hole 40, and then the bottom plate 39 can be used. The auxiliary rod 45 is pushed by the insertion rod 48 to move along the insertion hole 41 toward the guide hole 40 and to a part of the inner side of the guide hole 40. At the same time, the insertion rod 48 uses external force to push the blocking rod 43 during the movement, so that the blocking rod 43 moves along the guide hole 40 to the inner side of the insertion hole 41 close to the third push rod 49. At the same time, the blocking rod 43 uses external force to push the second push rod 44 to move a part of the way out from the inner side of the insertion hole 41, so that the blocking rod 43, the second push rod 44 and the auxiliary rod 45 can be staggered with the guide hole 40 and the insertion hole 41, so that the bottom bracket 26 can use the blocking rod 43, the second push rod 44 and the auxiliary rod 45 to provide support and positioning for the disc plate 28; Then the staff needs to control the extension of the multi-stage electric rod 55 so that the multi-stage electric rod 55 pushes the connecting plate 56 to move downward. At the same time, the connecting plate 56 will use the magnetic connection with the magnet 62 to drive the magnet 62, the connecting ring 63, the pressing sleeve 64 and the inclined plate 67 to move downward together. When the inclined plate 67 moves downward and contacts the crosshead 58, the multi-stage electric rod 55 will also continue to extend, so that the connecting plate 56 can pass through the magnet 62 and move downward to the inside of the movable opening 65, and use external force to push the inclined plate 67 downward, so that the inclined plate 67 is pushed to one side by the external force and its own inclination angle under the support of the crosshead 58, so that the inclined plate 67 is moved out of the movable opening 65 under the support and guidance of the pressing sleeve 64, thereby providing a channel for the connecting plate 56 to pass through the movable opening 65, so that the connecting plate 56 can pass through the movable opening 65 smoothly. The engaging opening 57 is engaged with the crosshead 58, and the inclined plate 67 pushes the baffle 68 to move to one side while moving horizontally, so that the baffle 68 pulls the third spring 69 during the movement, so that the third spring 69 is stretched and extended and stores energy under the support of the connecting ring 63. Then it is necessary to start the motor 52, so that the motor 52 drives the transmission rod 53 to rotate using the driving end, so that the rotating rod drives the commutator 54 to operate, and then the commutator 54 drives the multi-stage electric rod 55 to rotate using the output end, so that the multi-stage electric rod 55 can drive the connecting disk 56 to rotate together, so that the connecting disk 56 drives the crosshead 58 to rotate together using the engaging opening 57, so that the crosshead 58 can drive the winding drum 29, the disk plate 28 and the bottom bracket 26 to rotate together with the second bearing 27 as the center of the circle, so that the winding drum 29 can reel in the drawn-out rope 31.
[0049] Afterwards, the operator needs to stop the motor 52 and control the multi-stage electric rod 55 to retract, thereby driving the connecting disc 56 to move upward and reset. During this movement, the connecting disc 56, together with the magnetism of the magnet 62, drives the magnet 62 and all the components arranged on its outer side to move upward until the magnet 62 contacts the second spring 61. As the multi-stage electric rod 55 continues to retract, the magnet 62, under the resistance of the second spring 61, moves downward and reset along the outer side of the connecting disc 56, thereby causing the connecting disc 56 to move upward and out of the movable opening 65. Subsequently, the third spring 69, supported by the connecting ring 63, uses its rebound force to pull the baffle 68 in a direction close to the connecting ring 63. At the same time, the baffle 68 drives the inclined plate 67 to move together, causing the inclined plate 67 to move to the inside of the movable opening 65. The provision of the secondary pressure part can facilitate the rotation of the winding drum 29 to rewind the reset pull rope 31 without affecting the working space within the filter cartridge 9, thereby increasing the space utilization of the filter cartridge 9.
[0050] Working principle: the hydraulic rod pushes the pressure plate downward, and the pressure plate drives the guide cylinder, guide rod, cone head, and blade to vertically squeeze the spice raw materials. The first spring in the guide cylinder pushes the cone head and blade to pierce the raw materials at a high frequency through elastic expansion and contraction, forming multi-stage cutting.
[0051] When the pressure plate is pressed down, the pull rope pulls the bottom support to rotate through the winding drum, driving the pressing and cutting part to rotate synchronously. The blade cuts the raw material spirally under the combined action of vertical pressure and rotary shear force, destroying the cell structure and accelerating the release of liquid. The synergistic effect of vertical extrusion and rotary shear increases the liquid extraction rate by more than 30%.
[0052] The bottom support drives the first push rod (linked with the pressure plate) to rotate through the second bearing, disturbing the raw materials in the filter cartridge. The guide rod and the first push rod form an asymmetric disturbed flow field with a number difference of 2:6, which enhances liquid penetration, breaks the laminar flow of the raw materials, and increases the liquid seepage rate by 25%.
[0053] When the pressure plate moves downward, the pull ring pulls the rope to drive the winding drum to rotate, realizing the synchronous linkage between the rotation of the cutting part and the hydraulic extrusion, avoiding mechanical transmission interfering with the sealing structure.
[0054] The squeezed liquid flows into the storage cylinder through the holes in the filter cartridge and is discharged through the flange pipe.
[0055] After extrusion is completed, the insert rod and the third push rod unlock the locking parts, the disc is separated from the bottom support under the gravity of the raw material, and the solid slag is discharged through the bottom plate opening, realizing rapid separation of solid slag and reducing operation time. The multi-stage electric rod drives the crosshead to reset the winding drum, and the rope is pulled to reel in preparation for the next cycle.
[0056] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A flavor extraction device for slow-release flavor food additives, comprising: A storage cylinder and a filter cartridge arranged inside the storage cylinder, a hydraulic rod is arranged above the filter cartridge, the telescopic end of the hydraulic rod is rotatably connected to a pressure plate, and the center of the pressure plate corresponds to the center of the filter cartridge, and a bracket is arranged on the outside of the storage cylinder, characterized in that it also includes: The pressing and cutting part is set through the pressing plate to squeeze and cut the spice raw materials; The rotary disturbing part is rotatably connected to the outside of the filter cartridge and extends into the filter cartridge, and is connected to the pressing and cutting part and the pressing plate to disturb the spice raw materials and drive the pressing plate and the pressing and cutting part to rotate and cut the spice raw materials; The discharge part is provided through the storage cylinder and the swirling part to discharge the extracted necklace raw materials; The pressing and cutting part includes a supporting guide and a cutting piece, wherein the supporting guide is arranged through the pressing plate and includes a retaining ring, and the cutting piece is arranged on the inner side of the supporting guide; The swirl disturbing part includes a rotating member and a connecting member, wherein the rotating member is arranged on the outside of the filter cartridge and the connecting member is arranged on the rotating member; The drain portion includes a locking member and a rotating member. The locking member is arranged to pass through the rotating member and the storage barrel. The center of the rotating member corresponds to the center of the connecting member. The stabbing and cutting member comprises: a first spring, one end of which is fixed to the retaining ring; A second connecting ring is fixed to one end of the guide rod; The cone head is fixed on the side of the second connecting ring away from the guide rod; The blade is symmetrically fixed on the outer side of the cone head and connected to the second connecting ring.
2. The spice extraction device for sustained-release flavor food additives according to claim 1, characterized in that: The support guide comprises: There are multiple guide cylinders, and the multiple guide cylinders pass through the pressing plate and are evenly fixed; A retaining ring is arranged on the inner side of the guide cylinder and is located near one end of the guide cylinder; The guide rod is movably arranged on the inner side of the guide cylinder, and one end thereof passes through the guide cylinder.
3. The spice extraction device for sustained-release flavor food additives according to claim 2, characterized in that: The rotating member comprises: The second bearing is fixedly mounted on the outside of the filter cartridge; A bottom support is provided on the outside of the second bearing and below the filter cartridge; The winding drum is fixed on the inner side of the base and aligned with the center line of the filter cartridge; There are multiple first push rods, which are evenly arranged on the bottom bracket and penetrate the pressure plate.
4. The spice extraction device for sustained-release flavor food additives according to claim 3, characterized in that: The connecting member comprises: A perforation is provided through one end of the bobbin; A pull rope is wound around the winding drum, with one end fixed to the outside of the winding drum and the other end passing through the through hole; A fixed frame, fixed on the outside of the hydraulic rod; The auxiliary component is arranged at the other end of the pull rope and is connected to the pressure plate.
5. The spice extraction device for sustained-release flavor food additives according to claim 4, characterized in that: The auxiliary parts include: The hydraulic rod is provided with two a frame plate, fixed on the inner side of the fixed frame and located between the two hydraulic rods; There are two through-holes, which are set through the frame plate and are penetrated by the pull rope in an N-shaped manner; A pull ring is fixed to the other end of the pull rope, passes through the pressure plate, and is rotatably connected to the pressure plate; The through hole is opened through the interior of the pull ring and is located on the outside of the draw cord.
6. The spice extraction device for sustained-release flavor food additives according to claim 5, characterized in that: The locking member comprises: The plate is set through the interior of the bottom bracket; The sealing ring penetrates the side of the storage cylinder away from the hydraulic rod and is fixedly connected; The chassis is provided through the side of the storage cylinder away from the hydraulic rod and is located on the inner side of the sealing ring; The guide holes are symmetrically opened through the inside of the disc; There are two jacks, which are symmetrically opened through the interior of the base and communicate with the guide hole; A latching part is provided on the inner sides of the guide hole and the insertion hole; The push part passes through the bracket and is adjacent to the locking part.
7. The spice extraction device for sustained-release flavor food additives according to claim 6, characterized in that: The latch parts include: There are two sockets, which are symmetrically opened through the storage barrel and correspond to the positions of the jacks; a blocking rod, inserted into the inner side of the guide hole and extending to the inner side of one of the insertion holes; A second push rod is provided through one of the insertion holes, and one end of the second push rod is adjacent to one end of the blocking rod; A secondary rod is inserted into the inner side of the guide hole and passes through the other insertion hole; The rubber sleeves are respectively mounted on the outer sides of the blocking rod, the second push rod and the auxiliary rod.
8. The spice extraction device for sustained-release flavor food additives according to claim 7, characterized in that: The push part includes: There are four insertion rods, each of which movably passes through the bracket and has one end passing through the socket to contact the auxiliary rod; There are two third push rods, the two third push rods movably pass through the bracket, and one end of the third push rods passes through the socket and contacts the other end of the second push rod; There are two handles, which are respectively fixed to the other ends of the four insertion rods and the other ends of the two third push rods.
9. The spice extraction device for sustained-release flavor food additives according to claim 8, characterized in that: The rotating part includes: A commutator is arranged on the inner side of the bracket and located between the two hydraulic rods; The multi-stage electric rod is fixed at the output end of the commutator and moves through the pressure plate and the pull ring; A connecting plate fixed to the telescopic end of the multi-stage electric rod; The fitting opening is provided on the side of the connection plate away from the multi-stage electric rod; The crosshead is fixed to the end of the winding drum away from the disc plate; The auxiliary pressure part is arranged on the outside of the connecting plate.
10. The spice extraction device for sustained-release flavor food additives according to claim 9, characterized in that: The auxiliary pressure parts include: A second support ring is fixed to the outside of the fixed end of the multi-stage electric rod; a second spring, one end of which is fixed to the second support ring; a magnet magnetically connected to the outer side of the connecting disk and in contact with the other end of the second spring; A connecting ring is fixed to the outside of the magnet and is located on the outside of the pull rope; The pressing sleeve is fixed on the side of the connecting ring away from the pull ring and is located on the outside of the draw rope; The inclined plate is arranged to pass through the pressing sleeve in a translational manner, and a slope is provided on a side close to the connecting plate; One end of the third spring is fixed on the outside of the connecting ring, and the other end is connected to the inclined plate.