Multi-cavity seasoning grinder

By designing a multi-cavity seasoning grinder, the storage tank is divided into multiple storage silos using the storage assembly and the connecting assembly, the separate or joint grinding of pepper and sea salt particles is realized, solving the problem of grinding in the prior art, and improving the efficiency and convenience of use.

CN120052755AInactive Publication Date: 2025-05-30NINGBO KAIDELI ELECTRIC CO LTD
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Patent Information

Application Number
CN202510426681.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing pepper grinder only has a single silo, which cannot achieve separate grinding and mixed grinding of pepper and sea salt particles, which is inconvenient to use.

Method used

A multi-cavity seasoning grinder is designed, including a storage barrel with a barrel opening and a storage assembly. The storage assembly divides the storage barrel into multiple storage silos, and separate or joint grinding of each storage silos are achieved through the communication assembly and the grinding assembly.

Benefits of technology

The function of grinding pepper, sea salt grains and peppercorns alone is realized, and the mixture of pepper and sea salt grains can also be ground. It is simple and convenient to use, reducing the impact of mixture residue on grinding alone.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a multi-cavity seasoning grinder, and relates to the technical field of seasoning grinding, the multi-cavity seasoning grinder has the advantages that pepper can be independently ground, and a mixture of pepper and sea salt particles can be ground, and the multi-cavity seasoning grinder is characterized by comprising a storage barrel with a barrel opening and a storage assembly, the material storage assembly is arranged in the material storage barrel and divides the interior of the material storage barrel into a plurality of material storage bins, one of the material storage bins is empty, and different seasonings are stored in the remaining material storage bins respectively; a barrel opening of the storage barrel is provided with a mixing barrel, the communicating assembly is arranged on the inner wall of the mixing barrel, and the mixing barrel is communicated with one storage bin or two adjacent storage bins through the communicating assembly; the end, away from the storage barrel, of the mixing barrel is detachably connected with a mounting barrel, and the grinding assembly is arranged on the inner wall of the mounting barrel; a motor is arranged on the connecting assembly and the communicating assembly, a transmission shaft is arranged on a rotating shaft of the motor through the connecting assembly, and the transmission shaft is in transmission connection with the grinding assembly.
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Description

Technical Field

[0001] The present invention relates to the technical field of condiment grinding, and particularly to a multi-chamber condiment grinder. Background Art

[0002] We can buy processed pepper powder, salt and pepper powder, etc. on the market, but the flavor is very different from freshly ground ones. Therefore, people prefer to use a pepper grinder for fresh grinding. The pepper grinder is a kitchen utensil. As a daily grinding utensil for pepper, it is widely used in many families and deeply loved by consumers. The main structure of the pepper grinder consists of two parts: a material bin and a grinding device. The material bin is used to hold condiments such as salt, pepper, and Chinese prickly ash, and the grinding device is used to crush the condiments. After the material bin and the grinding device are docked, it can be used.

[0003] However, the existing pepper grinders only have a single material bin. When some users need to grind a mixture of pepper and sea salt grains, they will add pepper and sea salt grains into the material bin at the same time and then grind them. In this way, when they need to grind pepper alone, they still need to separate the pepper and sea salt grains again, which is inconvenient to use. Therefore, the applicant has developed a new technical solution in the actual production process to solve the above technical problems. Summary of the Invention

[0004] Aiming at the above existing technical deficiencies, the purpose of the present invention is to provide a multi-chamber condiment grinder, which has the advantages of being able to grind pepper alone or a mixture of pepper and sea salt grains.

[0005] To solve the above technical problems, the present invention adopts the following technical solutions: The present invention provides a multi-chamber condiment grinder, which includes a storage barrel with a barrel opening, and further includes a storage component. The storage component is arranged in the storage barrel and divides the inside of the storage barrel into several storage bins. Each storage bin is communicated with the barrel opening of the storage barrel. One of the storage bins is an empty bin, and the remaining storage bins store different condiments respectively; A communication component. A mixing cylinder communicated with the storage barrel is provided at the barrel opening of the storage barrel. The communication component is arranged on the inner wall of the mixing cylinder, and the mixing cylinder is communicated with one of the storage bins or two adjacent storage bins through the communication component; A grinding component. An installation cylinder is detachably connected to the end of the mixing cylinder away from the storage barrel, and the installation cylinder is communicated with the mixing cylinder. The grinding component is arranged on the inner wall of the installation cylinder; A connection component. A motor is provided on the communication component, and a transmission shaft is provided on the rotating shaft of the motor through the connection component. The transmission shaft is in transmission connection with the grinding component.

[0006] By adopting the above technical solution, when the device is placed idle, the installation cylinder and the mixing cylinder are located above the storage barrel. The number of storage bins can be four. At this time, one of the storage bins is an empty bin, and the remaining three storage bins store pepper, sea salt grains, and Chinese prickly ash respectively. When pepper needs to be ground separately, only need to connect the mixing cylinder with the storage bin containing pepper through the connecting component, and then turn over the device so that the installation cylinder and the mixing cylinder are located below the storage barrel. At this time, the pepper stored in the storage bin will enter the mixing cylinder from the connecting component and fall onto the grinding component in the installation cylinder. At the same time, turn on the motor, the rotating shaft of the motor drives the transmission shaft to rotate through the connecting component, and the transmission shaft drives the grinding component to work to grind the pepper. After grinding, turn over the device so that the installation cylinder and the mixing cylinder are located above the storage barrel. At this time, the remaining pepper in the mixing cylinder will return to the storage bin containing pepper through the connecting component, reducing the influence of the remaining pepper in the mixing cylinder on the separate grinding of sea salt grains or Chinese prickly ash when grinding sea salt grains or Chinese prickly ash separately next time. Through the above process, the separate grinding of sea salt grains or Chinese prickly ash or pepper can be realized; When pepper and sea salt grains need to be ground together, only need to connect the mixing cylinder with the storage bin containing pepper and sea salt grains through the connecting component, and then turn over the device so that the installation cylinder and the mixing cylinder are located below the storage barrel. At this time, the pepper and sea salt grains stored in the two storage bins will enter the mixing cylinder from the connecting component and fall onto the grinding component in the installation cylinder. At the same time, turn on the motor, the rotating shaft of the motor drives the transmission shaft to rotate through the connecting component, and the transmission shaft drives the grinding component to work to grind the pepper. After grinding, first connect the mixing cylinder with the empty storage bin through the connecting component, and then turn over the device so that the installation cylinder and the mixing cylinder are located above the storage barrel. At this time, the mixture of the remaining pepper and sea salt grains in the mixing cylinder will return to the empty storage bin through the connecting component for the next use. By returning the mixture of the remaining pepper and sea salt grains in the mixing cylinder to the empty storage bin, the influence of the remaining mixture in the mixing cylinder on the separate grinding of sea salt grains or Chinese prickly ash or pepper when grinding sea salt grains or Chinese prickly ash or pepper separately next time is reduced. Through the above process, the purpose of being able to grind pepper, sea salt grains, and Chinese prickly ash separately or the mixture of pepper and sea salt grains is achieved, and the use is simple and convenient.

[0007] Preferably, the storage component includes a sleeve coaxially arranged at the bottom of the inner barrel of the storage barrel. There are several partition plates between the outer wall of the sleeve and the inner wall of the storage barrel. Each partition plate divides the space between the inner wall of the storage barrel and the outer wall of the sleeve into several storage bins. The sleeve and the end of each partition plate away from the bottom of the storage barrel are flush with the mouth of the storage barrel.

[0008] Preferably, the connecting component includes a baffle plate coaxially and fixedly connected inside the mixing cylinder. One end of the outer wall of the storage barrel close to the mixing cylinder is fixedly connected with a rotating ring, and the rotating ring is coaxial with the storage barrel. The rotating ring is rotatably connected with the mixing cylinder coaxially. The barrel mouth of the storage barrel contacts the baffle plate. The baffle plate is used to seal the barrel mouth of the storage barrel. One end of the sleeve and each partition plate close to the barrel mouth of the storage barrel both contact the baffle plate. A material discharge groove communicating with one of the storage bins is formed on the side of the baffle plate facing away from the storage barrel. A material discharging mechanism is arranged on the mixing cylinder. The material discharging mechanism is used to return the seasoning between the baffle plate and the grinding component to the storage bin through the material discharge groove.

[0009] Preferably, the material discharging mechanism includes a material discharging disk coaxially arranged inside the mixing cylinder. The material discharging disk is located on the side of the baffle plate facing away from the storage barrel and is fixedly connected with the baffle plate. A communicating groove communicating with the material discharge groove is arranged on the side of the material discharging disk facing away from the baffle plate. The groove wall surface of the communicating groove is an arc surface. The diameter of the groove opening at one end of the communicating groove close to the material discharge groove is F, the diameter of the groove opening of the material discharge groove is G, the diameter of the groove opening at the end of the communicating groove far from the material discharge groove is H, F is equal to G, and H is greater than F.

[0010] Preferably, the motor is arranged on the baffle plate and located inside the sleeve. The connecting component and the transmission shaft are both located between the baffle plate and the grinding component. The connecting component includes a rectangular groove arranged at one end of the transmission shaft close to the motor. One end of the rotating shaft of the motor passes through the baffle plate and the material discharging disk and is provided with a rectangular block. The rectangular block is embedded in the rectangular groove along the length direction of the transmission shaft.

[0011] Preferably, a disturbing mechanism is arranged at one end of the baffle plate close to the material discharge groove. The disturbing mechanism is used to disturb the seasoning at the groove opening of the material discharge groove.

[0012] Preferably, the material discharge groove is circular. The disturbing mechanism includes a disturbing ring rotatably connected coaxially to the groove wall of the material discharge groove. One side of the disturbing ring close to the groove opening of the material discharge groove is flush with the groove opening of the material discharge groove. The inner side edge of the disturbing ring close to the storage barrel is a first chamfered edge, and a plurality of first disturbing blocks are arranged on the first chamfered edge. Each of the first disturbing blocks is distributed at intervals along the circumferential direction of the disturbing ring. One side of each of the first disturbing blocks close to the storage barrel is flush with the side of the disturbing ring close to the storage barrel. When the rotating shaft of the motor rotates, a transmission mechanism for driving the disturbing ring to rotate is arranged on the baffle plate.

[0013] Preferably, the transmission mechanism includes an annular groove coaxially arranged on the groove wall of the discharge chute and a first conical gear ring arranged on the outer wall of the disturbance ring, the first conical gear ring is located in the annular groove, a placement groove is provided at one end of the baffle plate close to the motor, one end of the rotating shaft of the motor passes through the placement groove, a second conical gear ring located in the placement groove is provided on the rotating shaft of the motor, the placement groove and the annular groove are connected through a rotating groove, a column is rotatably connected in the rotating groove, one end of the column close to the first conical gear ring extends into the annular groove and is provided with a second bevel gear, the second bevel gear is meshed with the first bevel gear ring, and one end of the column close to the placement groove extends into the placement groove and is provided with a third bevel gear meshed with the second bevel gear ring.

[0014] Preferably, the inner side edge of the disturbance ring close to one end of the material return tray is a second chamfered edge, and a plurality of second disturbance blocks are provided on the second chamfered edge, and the second disturbance blocks are spaced apart along the circumference of the disturbance ring, and the side of each second disturbance block close to the material return tray is flush with the side of the disturbance ring close to the material return tray.

[0015] Preferably, a plurality of heat dissipation holes connected with the sleeve are provided on a side of the material storage barrel away from the barrel opening.

[0016] The beneficial effect of the present invention is that when the device is idle, the installation cylinder and the mixing cylinder are located above the storage barrel, the number of storage bins can be four, at this time one of the storage bins is empty, and the remaining three storage bins store pepper, sea salt grains, and peppercorns respectively. When it is necessary to grind pepper separately, it is only necessary to connect the mixing cylinder with the storage bin containing pepper through the connecting component, and then turn the device over so that the installation cylinder and the mixing cylinder are located below the storage barrel. At this time, the pepper stored in the storage bin will enter the mixing cylinder from the connecting component and fall into the grinding group in the installation cylinder. The motor is turned on and off at the same time, and the rotating shaft of the motor drives the transmission shaft to rotate through the connecting component, and the transmission shaft drives the grinding component to grind the pepper. After the grinding is completed, the device is turned over so that the installation cylinder and the mixing cylinder are located above the storage barrel. At this time, the pepper remaining in the mixing cylinder will be returned to the storage bin filled with pepper through the connecting component, which reduces the impact of the pepper remaining in the mixing cylinder on the separate grinding of sea salt grains or peppercorns next time the sea salt grains or peppercorns are separately ground. The above process can achieve separate grinding of sea salt grains, peppercorns or peppercorns; When it is necessary to grind pepper and sea salt grains together, simply connect the mixing cylinder with the storage bins containing pepper and sea salt grains through the connecting components, and then turn the device over so that the installation cylinder and the mixing cylinder are located below the storage bucket. At this time, the pepper and sea salt grains stored in the two storage bins will enter the mixing cylinder from the connecting components and fall onto the grinding components in the installation cylinder. At the same time, turn on the motor, and the rotating shaft of the motor drives the transmission shaft to rotate through the connecting components. The transmission shaft drives the grinding components to work and grind the pepper. After grinding, first connect the mixing cylinder with an empty storage bin through the connecting components, and then turn the device over so that the installation cylinder and the mixing cylinder are located above the storage bucket. At this time, the mixture of pepper and sea salt grains remaining in the mixing cylinder will return to the empty storage bin through the connecting components for the next use. By returning the mixture of pepper and sea salt grains remaining in the mixing cylinder to the empty storage bin, it reduces the influence of the remaining mixture in the mixing cylinder on the separate grinding of sea salt grains, Chinese prickly ash, or pepper when grinding them separately next time. Through the above process, the purpose of being able to grind pepper, sea salt grains, and Chinese prickly ash separately, or to grind the mixture of pepper and sea salt grains is achieved, and it is simple and convenient to use. Brief Description of the Drawings

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0018] Figure 1 is the structural schematic diagram of this embodiment; Figure 2 is the structural schematic diagram for showing the connecting groove of this embodiment; Figure 3 is the structural schematic diagram for showing the mixing cylinder of this embodiment; Figure 4 is the structural schematic diagram for showing the partition board of this embodiment; Figure 5 is Figure 2 the enlarged structural schematic diagram of part A in Figure 6 is the structural schematic diagram when the mixing cylinder and the installation cylinder are located below the storage bucket; Figure 7 is the structural schematic diagram for showing the installation cylinder of this embodiment.

[0019] Explanation of the Reference Numerals in the Drawings: In the figure: 1, storage barrel; 2, mixing barrel; 3, installation barrel; 4, motor; 5, transmission shaft; 6, sleeve; 7, partition board; 8, retaining disc; 9, rotating ring; 10, blanking chute; 12, discharging tray; 13, communicating groove; 14, rectangular groove; 15, rectangular block; 16, disturbing ring; 17, first chamfered edge; 18, first disturbing block; 19, annular groove; 20, first bevel gear ring; 21, placing groove; 22, second bevel gear ring; 23, rotating groove; 24, cylinder; 25, second bevel gear; 26, third bevel gear; 27, second chamfered edge; 28, second disturbing block; 29, heat dissipation hole; 30, grinding assembly. Detailed implementation mode

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0021] A multi-chamber condiment grinder includes a storage barrel 1 with a barrel opening, as Figure 1 and Figure 2 , and further includes a storage component, the storage component is arranged in the storage barrel 1 and divides the inside of the storage barrel 1 into several storage bins, each storage bin is communicated with the barrel opening of the storage barrel 1, one of the storage bins is an empty bin, and the remaining storage bins store different condiments respectively; A communicating component, a mixing barrel 2 communicated with the storage barrel 1 is arranged at the barrel opening of the storage barrel 1, the communicating component is arranged on the inner wall of the mixing barrel 2, and the mixing barrel 2 is communicated with one of the storage bins or two adjacent storage bins through the communicating component; A grinding component 30, an installation barrel 3 is detachably connected to one end of the mixing barrel 2 away from the storage barrel 1, and the installation barrel 3 is communicated with the mixing barrel 2, and the grinding component 30 is arranged on the inner wall of the installation barrel 3; A connecting component, a motor 4 is arranged on the communicating component, and the rotating shaft of the motor 4 is provided with a transmission shaft 5 through the connecting component, and the transmission shaft 5 is in transmission connection with the grinding component 30.

[0022] Such as Figure 1 and Figure 2 and Figure 4, when the device is placed idle, the installation cylinder 3 and the mixing cylinder 2 are located above the storage barrel 1. The number of storage bins can be four. At this time, one of the storage bins is an empty bin, and the remaining three storage bins store pepper, sea salt grains, and Chinese prickly ash respectively. When pepper needs to be ground alone, only need to connect the mixing cylinder 2 with the storage bin containing pepper through the connecting component, and then turn over the device so that the installation cylinder 3 and the mixing cylinder 2 are located below the storage barrel 1. At this time, the pepper stored in the storage bin will enter the mixing cylinder 2 from the connecting component and fall onto the grinding component 30 in the installation cylinder 3. At the same time, turn on the motor 4, and the rotating shaft of the motor 4 drives the transmission shaft 5 to rotate through the connecting component. The transmission shaft 5 drives the grinding component 30 to work and grind the pepper (as Figure 6 and Figure 7 ), after grinding is completed, turn over the device so that the installation cylinder 3 and the mixing cylinder 2 are located above the storage barrel 1, as Figure 1 and Figure 2 . At this time, the remaining pepper in the mixing cylinder 2 will return to the storage bin containing pepper through the connecting component, reducing the influence of the remaining pepper in the mixing cylinder 2 on the separate grinding of sea salt grains or Chinese prickly ash when grinding sea salt grains or Chinese prickly ash alone next time. Through the above process, the separate grinding of sea salt grains or Chinese prickly ash or pepper can be realized; When pepper and sea salt grains need to be ground together, only need to connect the mixing cylinder 2 with the storage bin containing pepper and sea salt grains through the connecting component, and then turn over the device so that the installation cylinder 3 and the mixing cylinder 2 are located below the storage barrel 1. At this time, the pepper and sea salt grains stored in the two storage bins will enter the mixing cylinder 2 from the connecting component and fall onto the grinding component 30 in the installation cylinder 3. At the same time, turn on the motor 4, and the rotating shaft of the motor 4 drives the transmission shaft 5 to rotate through the connecting component. The transmission shaft 5 drives the grinding component 30 to work and grind the pepper. After grinding is completed, first connect the mixing cylinder 2 with the empty storage bin through the connecting component, and then turn over the device so that the installation cylinder 3 and the mixing cylinder 2 are located above the storage barrel 1. At this time, the mixture of the remaining pepper and sea salt grains in the mixing cylinder 2 will return to the empty storage bin through the connecting component for the next use. By returning the mixture of the remaining pepper and sea salt grains in the mixing cylinder 2 to the empty storage bin, the influence of the remaining mixture in the mixing cylinder 2 on the separate grinding of sea salt grains or Chinese prickly ash or pepper when grinding sea salt grains or Chinese prickly ash or pepper alone next time is reduced. Through the above process, the purpose of being able to grind pepper, sea salt grains, and Chinese prickly ash separately or the mixture of pepper and sea salt grains is realized, and the use is simple and convenient.

[0023] The grinding component 30 can be the grinding component in a double-chamber pepper grinder with the application number CN202222205356.1. At this time, the transmission shaft 5 is a grinding core drive rod, and this application will not elaborate on the grinding component here.

[0024] As Figure 2 andFigure 4 The storage component includes a sleeve 6 coaxially arranged at the bottom of the inner barrel of the storage barrel 1. A number of partition plates 7 are provided between the outer wall of the sleeve 6 and the inner wall of the storage barrel 1. Each partition plate 7 divides the space between the inner wall of the storage barrel 1 and the outer wall of the sleeve 6 into a number of storage bins. The sleeve 6 and one end of each partition plate 7 away from the bottom of the storage barrel 1 are flush with the mouth of the storage barrel 1. The purpose of this setting is that through each partition plate 7, the space between the inner wall of the storage barrel 1 and the outer wall of the sleeve 6 can be divided into a number of storage bins, and each storage bin does not affect each other. The storage barrel 1 is made of transparent plastic, glass or other materials.

[0025] Such as Figure 2 and Figure 5 The connection component includes a baffle 8 coaxially and fixedly connected inside the mixing cylinder 2. One end of the outer wall of the storage barrel 1 close to the mixing cylinder 2 is fixedly connected with a rotating ring 9, and the rotating ring 9 is coaxial with the storage barrel 1. The rotating ring 9 is coaxially and rotatably connected with the mixing cylinder 2. The mouth of the storage barrel 1 is in contact with the baffle 8. The baffle 8 is used to close the mouth of the storage barrel 1. The sleeve 6 and one end of each partition plate 7 close to the mouth of the storage barrel 1 are in contact with the baffle 8. A material discharge groove 10 communicating with one of the storage bins is opened on the side of the baffle 8 facing away from the storage barrel 1. A material discharging mechanism is provided on the mixing cylinder 2. The material discharging mechanism is used to return the seasoning between the baffle 8 and the grinding component 30 to the storage bin through the material discharge groove 10.

[0026] Such as Figure 2 and Figure 5 Through the material discharge groove 10, the mixing cylinder 2 can be connected with one of the storage bins. When it is necessary to connect the next storage bin with the mixing cylinder 2, only need to rotate the storage barrel 1. The storage barrel 1 drives the rotating ring 9 to rotate on the mixing cylinder 2 until the next storage bin is connected with the material discharge groove 10. At this time, through the material discharge groove 10, the mixing cylinder 2 can be connected with the next storage bin. After the storage bin is connected with the mixing cylinder 2 through the material discharge groove 10, flip the device so that the installation cylinder 3 and the mixing cylinder 2 are located below the storage barrel 1. At this time, the seasoning stored in the storage bin will enter the mixing cylinder 2 from the material discharge groove 10. When the seasoning is ground, flip the device so that the installation cylinder 3 and the mixing cylinder 2 are located above the storage barrel 1. Then, through the material discharging mechanism, the residual seasoning in the mixing cylinder 2 can be returned to the storage bin. When the pepper and sea salt grains need to enter the mixing drum 2 together, it is only necessary to rotate the storage barrel 1 until the two storage bins respectively filled with pepper and sea salt grains are connected to the unloading chute 10. At this time, the partition 7 between the two storage bins of pepper and sea salt grains will be located at the notch of the unloading chute 10. At this time, the mixing drum 2 can be connected with the two storage bins respectively filled with pepper and sea salt grains through the unloading chute 10. After the two storage bins are connected with the mixing drum 2 through the unloading chute 10, the device is turned over so that the installation barrel 3 and the mixing drum 2 are located below the storage barrel 1. At this time, the pepper and sea salt grains stored in the two storage bins will enter the mixing drum 2 together from the unloading chute 10. When the seasoning is ground, the storage barrel 1 is first rotated so that the empty storage bin is connected to the unloading chute 10, and then the device is turned over so that the installation barrel 3 and the mixing drum 2 are located above the storage barrel 1. After that, the residual mixture in the mixing drum 2 is returned to the empty storage bin through the material return mechanism. It is simple and convenient to use.

[0027] like Figure 2 and Figure 5 The material return mechanism includes a material return plate 12 coaxially arranged in the mixing barrel 2. The material return plate 12 is located on the side of the baffle plate 8 away from the storage barrel 1 and is fixedly connected to the baffle plate 8. A connecting groove 13 connected to the feed chute 10 is provided on the side of the material return plate 12 away from the baffle plate 8. The groove wall surface of the connecting groove 13 is an arc surface. The groove diameter of the connecting groove 13 close to the feed chute 10 is F, the groove diameter of the feed chute 10 is G, and the groove diameter of the connecting groove 13 away from the feed chute 10 is H. F is equal to G, and H is Greater than F, the purpose of this arrangement is that when the installation cylinder 3 and the mixing cylinder 2 are located above the storage barrel 1, the seasoning remaining in the mixing cylinder 2 will be located in the connecting groove 13 on the material return plate 12, and slide or roll in the direction close to the discharge groove 10 through the arc surface on the connecting groove 13, until the seasoning remaining in the mixing cylinder 2 is returned from the discharge groove 10 to the storage bin, the seasoning is returned conveniently, and will not affect the next use of the device, the seasoning in the storage bin enters the mixing cylinder 2 from the discharge groove 10; When the seasoning in the storage bin is used up and needs to be added, it is only necessary to remove the mounting cylinder 3 from the mixing cylinder 2, and rotate the storage barrel 1 so that the storage bin to which the seasoning needs to be added is connected with the feed chute 10, and then place the storage barrel 1 on a table outside, such as Figure 3 At this time, the mixing cylinder 2 is located above the storage barrel 1, and then seasoning is added to the connecting groove 13. At this time, the seasoning added in the connecting groove 13 will enter the storage bin connected to the lower feeding groove 10 from the lower feeding groove 10. Through the cooperation of the connecting groove 13 and the lower feeding groove 10 in the above process, it is convenient to add seasoning to the storage bin. When the mounting cylinder 3 is removed from the mixing cylinder 2, the connecting assembly will disconnect the connection between the rotating shaft of the motor 4 and the transmission shaft 5, which is simple and convenient to use.

[0028] like Figure 2 and Figure 5, the motor 4 is arranged on the baffle 8 and located inside the sleeve 6. Both the connecting component and the transmission shaft 5 are located between the baffle 8 and the grinding component 30. The connecting component includes a rectangular groove 14 arranged at one end of the transmission shaft 5 close to the motor 4. One end of the rotating shaft of the motor 4 passes through the baffle 8 and the unloading tray 12 and is provided with a rectangular block 15. The rectangular block 15 is embedded in the rectangular groove 14 along the length direction of the transmission shaft 5. The purpose of this setting is that when the motor 4 is turned on, the rotating shaft of the motor 4 will drive the transmission shaft 5 to rotate through the cooperation of the rectangular groove 14 and the rectangular block 15. At this time, the transmission shaft 5 will drive the grinding component 30 to work. When the mounting cylinder 3 is removed from the mixing cylinder 2, the rectangular block 15 will move out of the rectangular groove 14 in a direction away from the bottom of the rectangular groove 14, which is simple and convenient to use.

[0029] As Figure 2 and Figure 5 , one end of the baffle 8 close to the feeding groove 10 is provided with a disturbing mechanism for disturbing the seasonings at the notch of the feeding groove 10. The disturbing mechanism includes a disturbing ring 16 coaxially and rotatably connected to the groove wall of the feeding groove 10, and one side of the disturbing ring 16 close to the notch of the feeding groove 10 is flush with the notch of the feeding groove 10. The inner side edge of one end of the disturbing ring 16 close to the storage barrel 1 is a first chamfered edge 17, and a number of first disturbing blocks 18 are arranged on the first chamfered edge 17. Each first disturbing block 18 is distributed at intervals along the circumferential direction of the disturbing ring 16. One side of each first disturbing block 18 close to the storage barrel 1 is flush with one side of the disturbing ring 16 close to the storage barrel 1. When the rotating shaft of the motor 4 rotates, the baffle 8 is provided with a transmission mechanism for driving the disturbing ring 16 to rotate; The transmission mechanism includes an annular groove 19 coaxially arranged on the groove wall of the feeding groove 10 and a first bevel gear ring 20 arranged on the outer wall of the disturbing ring 16. The first bevel gear ring 20 is located in the annular groove 19. One end of the baffle 8 close to the motor 4 is provided with a placement groove 21. One end of the rotating shaft of the motor 4 passes through the placement groove 21. A second bevel gear ring 22 located in the placement groove 21 is arranged on the rotating shaft of the motor 4. The placement groove 21 is communicated with the annular groove 19 through a rotating groove 23. A cylinder 24 is rotatably connected in the rotating groove 23. One end of the cylinder 24 close to the first bevel gear ring 20 extends into the annular groove 19 and is provided with a second bevel gear 25. The second bevel gear 25 meshes with the first bevel gear ring 20. One end of the cylinder 24 close to the placement groove 21 extends into the placement groove 21 and is provided with a third bevel gear 26 meshing with the second bevel gear ring 22.

[0030] As Figure 2 and Figure 5When the seasoning in the storage bin is discharged from the feed chute 10 into the mixing drum 2, and the rotating shaft of the motor 4 drives the grinding assembly 30 to work through the connecting assembly and the transmission shaft 5, the rotating shaft of the motor 4 will simultaneously drive the third bevel gear 26 to rotate through the second bevel gear ring 22. At this time, the third bevel gear 26 will drive the second bevel gear 25 to rotate through the column 24. The second bevel gear 25 will drive the disturbance ring 16 to rotate in the feed chute 10 through the first bevel gear ring 20 meshing therewith. At this time, the disturbance ring 16 will drive each first disturbance block 18 along the first chamfered edge 17. The rotation axis of the disturbance ring 16 rotates. At this time, the seasoning at the notch of the feed chute 10 at one end of the storage bin can be disturbed through the disturbance ring 16 and the first disturbance blocks 18 on the first chamfered edge 17 in the disturbance ring 16, thereby reducing the occurrence of seasoning clogging at the notch of the feed chute 10. The seasoning in the storage bin is discharged into the mixing barrel 2 from the disturbance ring 16 in the feed chute 10. Because the side of each first disturbance block 18 close to the storage barrel 1 is flush with the side of the disturbance ring 16 close to the storage barrel 1, the first disturbance block 18 and the partition 7 in the storage barrel 1 do not affect each other, and the use is simple and convenient.

[0031] like Figure 3 and Figure 5 The inner side edge of the disturbance ring 16 near one end of the material return plate 12 is a second chamfered edge 27, and a plurality of second disturbance blocks 28 are arranged on the second chamfered edge 27, and each second disturbance block 28 is distributed at intervals along the circumference of the disturbance ring 16, and the side of each second disturbance block 28 near the material return plate 12 is flush with the side of the disturbance ring 16 near the material return plate 12. The purpose of this arrangement is that when the seasoning in the storage bin is used up, the installation cylinder 3 is removed, and the seasoning is added to the storage bin from the connecting groove 13, the motor 4 can be turned on , so that the disturbance ring 16 rotates, and the disturbance ring 16 drives each second disturbance block 28 to rotate along the rotation axis of the disturbance ring 16 through the second chamfered edge 27. At this time, the seasoning at the notch of the discharge chute 10 close to the connecting groove 13 can be disturbed by the disturbance ring 16 and the second disturbance blocks 28 on the second chamfered edge 27 in the disturbance ring 16, thereby reducing the situation where the seasoning is blocked at the notch of the discharge chute 10 when adding seasoning in the storage bin, which is convenient for adding seasoning and simple and convenient to use.

[0032] like Figure 2 A plurality of heat dissipation holes 29 connected to the sleeve 6 are provided on the side of the storage barrel 1 away from the barrel mouth of the storage barrel 1. The purpose of this arrangement is to facilitate heat dissipation of the motor 4 in the sleeve 6 through each heat dissipation hole 29, thereby increasing the service life of the motor 4.

[0033] Obviously, those skilled in the art can make various modifications and variations to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention is also intended to include these modifications and variations.

Claims

1. A multi-chamber spice grinder, comprising a material storage barrel (1) with a barrel opening, characterized in that: It also includes a material storage component, which is arranged in the material storage barrel (1) and divides the material storage barrel (1) into a plurality of material storage bins, each of which is connected to the barrel opening of the material storage barrel (1), one of which is empty, and the remaining material storage bins respectively store different seasonings; A connecting component, wherein a mixing cylinder (2) connected to the material storage barrel (1) is provided at the barrel opening of the material storage barrel (1), the connecting component is arranged on the inner wall of the mixing cylinder (2), and the mixing cylinder (2) is connected to one of the material storage bins or two adjacent material storage bins through the connecting component; A grinding assembly (30), wherein one end of the mixing barrel (2) away from the material storage barrel (1) is detachably connected to a mounting barrel (3), and the mounting barrel (3) is in communication with the mixing barrel (2), and the grinding assembly (30) is arranged on the inner wall of the mounting barrel (3); A connecting component, wherein a motor (4) is provided on the connecting component, and a rotating shaft of the motor (4) is provided with a transmission shaft (5) through the connecting component, and the transmission shaft (5) is connected to the grinding component (30) in a transmission manner.

2. A multi-chamber spice grinder as claimed in claim 1, characterized in that: The material storage assembly comprises a sleeve (6) coaxially arranged at the bottom of the material storage barrel (1), a plurality of partitions (7) are arranged between the outer wall of the sleeve (6) and the inner wall of the material storage barrel (1), each of the partitions (7) divides the inner wall of the material storage barrel (1) and the outer wall of the sleeve (6) into a plurality of material storage bins, and the ends of the sleeve (6) and each of the partitions (7) away from the bottom of the material storage barrel (1) are flush with the barrel mouth of the material storage barrel (1).

3. A multi-chamber spice grinder as claimed in claim 2, characterized in that: The connecting component comprises a baffle (8) arranged coaxially and fixedly connected in the mixing barrel (2); a rotating ring (9) is fixedly connected to one end of the outer wall of the material storage barrel (1) close to the mixing barrel (2); the rotating ring (9) is coaxial with the material storage barrel (1); the rotating ring (9) is coaxially connected to the mixing barrel (2); the barrel opening of the material storage barrel (1) contacts the baffle (8); the baffle (8) is used to close the barrel opening of the material storage barrel (1); the ends of the sleeve (6) and each partition (7) close to the barrel opening of the material storage barrel (1) are in contact with the baffle (8); a material discharge trough (10) connected to one of the material storage bins is provided on the side of the baffle (8) facing away from the material storage barrel (1); and the mixing barrel (2) is provided with a material return mechanism, and the material return mechanism is used to return the seasoning between the baffle (8) and the grinding component (30) from the material discharge trough (10) to the material storage bin.

4. A multi-chamber spice grinder as claimed in claim 3, characterized in that: The material return mechanism comprises a material return plate (12) coaxially arranged in the mixing barrel (2), the material return plate (12) being located on a side of the baffle plate (8) away from the material storage barrel (1) and being fixedly connected to the baffle plate (8), a connecting groove (13) connected to the material discharge chute (10) being provided on a side of the material return plate (12) away from the baffle plate (8), the groove wall surface of the connecting groove (13) being an arc-shaped surface, the groove opening diameter of the connecting groove (13) at one end close to the material discharge chute (10) being F, the groove opening diameter of the material discharge chute (10) being G, and the groove opening diameter of the connecting groove (13) at one end away from the material discharge chute (10) being H, F being equal to G, and H being greater than F.

5. A multi-chamber spice grinder as claimed in claim 4, characterized in that: The motor (4) is arranged on the baffle plate (8) and is located in the sleeve (6); the connecting assembly and the transmission shaft (5) are both located between the baffle plate (8) and the grinding assembly (30); the connecting assembly comprises a rectangular groove (14) arranged at one end of the transmission shaft (5) close to the motor (4); one end of the rotating shaft of the motor (4) passes through the baffle plate (8) and the material return plate (12) and is provided with a rectangular block (15); the rectangular block (15) is embedded in the rectangular groove (14) along the length direction of the transmission shaft (5).

6. A multi-chamber spice grinder as claimed in claim 5, characterized in that: A disturbance mechanism is provided on one end of the baffle plate (8) close to the material discharge chute (10), and the disturbance mechanism is used to disturb the seasoning at the notch of the material discharge chute (10).

7. A multi-chamber spice grinder as claimed in claim 6, characterized in that: The material discharge trough (10) is circular, and the disturbance mechanism comprises a disturbance ring (16) coaxially rotatably connected to the trough wall of the material discharge trough (10), and the side of the disturbance ring (16) close to the notch of the material discharge trough (10) is flush with the notch of the material discharge trough (10), the inner side edge of the disturbance ring (16) close to one end of the storage barrel (1) is a first chamfered edge (17), and a plurality of first disturbance blocks (18) are arranged on the first chamfered edge (17), each of the first disturbance blocks (18) is distributed at intervals along the circumference of the disturbance ring (16), and the side of each of the first disturbance blocks (18) close to the storage barrel (1) is flush with the side of the disturbance ring (16) close to the storage barrel (1), and when the rotating shaft of the motor (4) rotates, the baffle plate (8) is provided with a transmission mechanism for driving the disturbance ring (16) to rotate.

8. A multi-chamber spice grinder as claimed in claim 7, characterized in that: The transmission mechanism comprises an annular groove (19) coaxially arranged on the groove wall of the material discharge groove (10) and a first conical gear ring (20) arranged on the outer wall of the disturbance ring (16), the first conical gear ring (20) being located in the annular groove (19), a placement groove (21) being provided at one end of the interior of the baffle plate (8) close to the motor (4), one end of the rotating shaft of the motor (4) passing through the placement groove (21), a second conical gear ring (22) being located in the placement groove (21) being provided on the rotating shaft of the motor (4), the placement groove (21) being provided with a plurality of conical gear rings (22) being provided in the placement groove (21), and the plurality of conical gear rings (22) being provided in the plurality of conical gear rings (22) being provided in the plurality of conical gear rings (22) being provided in the plurality of conical gear rings (22). ) is connected to the annular groove (19) through a rotating groove (23), a column (24) is rotatably connected in the rotating groove (23), one end of the column (24) close to the first conical gear ring (20) extends into the annular groove (19) and is provided with a second conical gear (25), the second conical gear (25) is meshed with the first conical gear ring (20), and one end of the column (24) close to the placement groove (21) extends into the placement groove (21) and is provided with a third conical gear (26) meshed with the second conical gear ring (22).

9. A multi-chamber spice grinder as claimed in claim 7, characterized in that: The inner side edge of one end of the disturbance ring (16) close to the material return tray (12) is a second chamfered edge (27), and a plurality of second disturbance blocks (28) are provided on the second chamfered edge (27), and each of the second disturbance blocks (28) is distributed at intervals along the circumference of the disturbance ring (16), and a side of each of the second disturbance blocks (28) close to the material return tray (12) is flush with a side of the disturbance ring (16) close to the material return tray (12).

10. The multi-chamber spice grinder according to claim 5, characterized in that: A plurality of heat dissipation holes (29) communicating with the sleeve (6) are provided on a side of the material storage barrel (1) away from the barrel opening of the material storage barrel (1).

Citation Information

Patent Citations

  • Double-cavity pepper grinder

    CN218219989U