Quantitative salt tank capable of freely selecting salt gram weight
By adjusting the gap of the salt outlet pipe through the rotating outer cover and the measuring disc, the problems of salt jamming and uneven salt distribution in the salt tank are solved, achieving smooth salt dispensing, even salt distribution, and easy cleaning, thus improving the user experience of the salt tank.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-03-27
AI Technical Summary
Existing salt containers suffer from problems such as salt dispensing jams, uneven salt distribution, and difficulty in disassembly and cleaning, which affect the smoothness of cooking, the quality of dishes, and their service life.
A quantitative salt container with freely selectable salt dispensing weight was designed. By rotating the outer cover to drive the control plate and the guide plate, the gap between the salt dispensing pipe and the funnel is changed, thus achieving flexible control of the salt dispensing weight. The sealing structure ensures the airtightness and easy disassembly of the salt container.
It achieves smooth salt dispensing, even salt spreading, and easy disassembly and cleaning of parts, improving cooking efficiency and the user experience of the salt shaker.
Smart Images

Figure CN224039046U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to salt tank structure technical field, specifically, relate to a kind of freely selectable salt weight of quantitative salt tank. BACKGROUND
[0002] Under current market environment, as the seasoning container commonly used in kitchen, the performance and use experience of salt tank are concerned, and most of the salt tank products on the market are single gram weight quantitative design, this single gram weight quantitative salt tank, although it meets the demand of consumers for the basic stability of salt output per time to some extent, but in actual use, many obvious defects are exposed.
[0003] Defect one, salt blockage, in daily use, due to the salt is easy to be damp and caked, or the structure design in tank is not reasonable enough, leading to salt particles to appear blockage at discharge port, so that users cannot smoothly obtain salt by quantity, greatly affecting the fluency and efficiency of cooking;Defect two, uneven salt scattering, limited by internal structure and discharging mode, it is difficult to ensure that the amount of salt scattered each time is uniform in the process of scattering salt, and uneven salt scattering will lead to different tastes of dishes in cooking, affecting the taste and quality of dishes, and cannot meet the consumers with high requirements on cooking quality;Defect three, not easy to disassemble and clean, the structure design of most salt tanks makes it difficult to disassemble, which brings great difficulty to daily cleaning work, and after long-term use, salt stains will be left in the tank, which not only affects the hygiene of salt tank, but also may breed bacteria, and the accumulation of salt stains will further aggravate the problem of salt blockage and reduce the service life of salt tank.
[0004] The existence of these problems not only brings inconvenience to consumers' daily life, but also limits the further improvement of salt tank products in function and user experience. INVENTION CONTENTS
[0005] The utility model aims at providing a kind of quantitative salt tank of freely selectable salt weight to solve the problems of salt blockage, uneven salt scattering and not easy to disassemble and clean in prior art.
[0006] The embodiment of the utility model is realized as follows:
[0007] The embodiment of the utility model provides a kind of quantitative salt tank of freely selectable salt weight, which includes tank body;
[0008] The bottom of the above-mentioned tank body is provided with an inner cover, one end of the above-mentioned tank body close to the above-mentioned inner cover is threadedly connected to the above-mentioned inner cover, one end of the above-mentioned inner cover away from the above-mentioned tank body is provided with an outer cover, and one end of the above-mentioned inner cover close to the above-mentioned outer cover is rotatably buckled to the inner wall of the above-mentioned outer cover;
[0009] A funnel is arranged between the tank body and the inner cover, the funnel is located inside the inner cover, a control disc and a flow guide disc are sequentially arranged between the inner cover and the outer cover, the control disc has a salt outlet pipeline inside, the top end of the salt outlet pipeline penetrates the inner cover and abuts against the inner top surface of the funnel, the control disc is rotatably connected to the lower end outer wall of the inner cover, the flow guide disc is buckled to the lower end of the control disc, and the control disc and the flow guide disc are located inside the outer cover and are slidingly fitted along the axial direction of the outer cover.
[0010] In use, first, the outer cover is rotated to select the required salt outlet weight, the outer cover drives the control disc and the flow guide disc to rotate, the control disc rotates downward on the outer wall of the inner cover, the top end of the salt outlet pipeline is separated from the inner top end of the funnel, then the tank body is shaken, the salt inside the tank body enters the inner cover through the funnel under the action of gravity, and finally, the corresponding weight of salt is realized from the salt outlet pipeline into the flow guide disc and is scattered out under the action of the gap between the top end of the salt outlet pipeline and the inner top end of the funnel.
[0011] The quantitative salt tank with freely selectable salt outlet weight disclosed in the embodiment can change the gap size between the top end of the salt outlet pipeline and the inner top surface of the funnel by rotating the outer cover, the control disc and the flow guide disc, so as to facilitate the control of the salt scattering weight according to the requirements, and thus the quantitative salt tank with freely selectable salt outlet weight has the beneficial effects of smooth salt outlet, reliable sealing, uniform salt scattering and easy disassembly and cleaning of components.
[0012] Optionally, the outer wall of one end of the tank body near the inner cover has external threads, the inner wall of the inner cover has internal threads, and the external threads are adapted to the internal threads.
[0013] In this way, the tank body is connected to each other by the external threads and the internal threads, so that the tank body and the inner cover are sealingly connected, and the salt stored in the tank body can enter the inner cover.
[0014] Optionally, the inner top surface of the funnel has a sealing end surface, and the top end of the salt outlet pipeline abuts against the sealing end surface.
[0015] In this way, when the top end of the salt outlet pipeline abuts against the sealing end surface, the salt tank is in a sealed state and cannot discharge salt, when the top end of the salt outlet pipeline is separated from the sealing end surface, the salt tank is in an open state and can discharge salt, and the salt outlet weight is controlled by controlling the gap size between the top end of the salt outlet pipeline and the sealing end surface.
[0016] Optionally, a plurality of leakage holes are arranged in the radial direction of the funnel, and the plurality of leakage holes penetrate the funnel and are uniformly distributed along the circumferential direction of the funnel.
[0017] In this way, the plurality of leakage holes can guide the salt stored in the tank body into the inner cover, thereby facilitating the dispensing of a small amount of salt.
[0018] Optionally, the inner bottom of the inner cover has a salt storage bin, which is in communication with the leakage holes and the tank body.
[0019] In this way, the salt in the tank body is stored in the salt storage bin through the plurality of leakage holes, and the top end of the salt outlet pipe can be separated from the sealing end face by shaking up and down to achieve salt dispensing.
[0020] Optionally, the outer bottom wall of the inner cover is provided with a first inclined track and a second inclined track, which are distributed on the outer bottom wall of the inner cover in correspondence with each other.
[0021] The inner wall of the control disc is provided with a first limiting tooth and a second limiting tooth corresponding to the first inclined track and the second inclined track, the first limiting tooth is slidably fitted to the first inclined track, and the second limiting tooth is slidably fitted to the second inclined track.
[0022] In this way, the outer cover rotates to drive the control disc to rotate, and the first limiting tooth and the second limiting tooth on the control disc rotate and move on the first inclined track and the second inclined track, so that the control disc can move up and down, thereby adjusting the gap between the top end of the salt outlet pipe and the sealing end face, and controlling the salt dispensing weight of the salt tank. The larger the gap, the larger the salt dispensing weight, and the smaller the gap, the smaller the salt dispensing weight.
[0023] Optionally, the outer bottom wall of the control disc is provided with a guide rod, the guide rod is fixedly connected to the outer bottom wall of the control disc along the axial direction of the control disc, the inner wall of the flow guide disc is provided with a guide groove corresponding to the guide rod, and the guide rod is slidably limited in the guide groove.
[0024] The outer bottom wall of the control disc is also provided with a clamping tooth, and the circumferential direction of the flow guide disc is provided with a clamping hole, and the clamping tooth is clamped in the clamping hole.
[0025] In this way, the cooperation of the guide rod and the guide groove makes the flow guide disc play a guiding role when it is connected to the control disc, and the cooperation of the clamping tooth and the clamping hole facilitates the fixation of the flow guide disc on the control disc.
[0026] Optionally, the inner bottom surface of the flow guide disc has a conical protrusion, a plurality of flow guide holes are formed between the conical protrusion and the inner bottom wall of the flow guide disc, and the plurality of flow guide holes pass through the inner bottom surface of the flow guide disc and are uniformly distributed along the circumferential direction of the flow guide disc.
[0027] In this way, the plurality of flow guide holes facilitate the flow of salt, and under the dispersion of the tapered protrusions, the plurality of flow guide holes can uniformly sprinkle the salt, and the salt tank can uniformly sprinkle the salt.
[0028] Optionally, the outer wall of the control disc is provided with a third limiting tooth, and the inner wall of the outer cover is axially provided with a first track, and the third limiting tooth is slidably matched with the first track.
[0029] The outer middle wall of the inner cover is provided with an annular clamping groove, the inner wall of the outer cover is axially provided with a plurality of uniformly distributed buckle teeth, and the inner cover is clamped on the buckle teeth of the outer cover through the annular clamping groove.
[0030] In this way, the third limiting tooth cooperates with the first track to guide the connection between the control disc and the outer cover, and the annular clamping groove clamps the buckle teeth to facilitate the connection of the inner cover to the outer cover.
[0031] Optionally, the upper part of the annular clamping groove is provided with a plurality of circumferentially distributed first damping teeth, the plurality of first damping teeth are located on the outer wall of the inner cover, the upper part of the plurality of buckle teeth is provided with a plurality of second damping teeth, the plurality of second damping teeth are located on the inner wall of the outer cover, and the plurality of first damping teeth are rotatably engaged with the plurality of second damping teeth.
[0032] In this way, when the outer cover is rotated clockwise, the cooperation between the plurality of first damping teeth and the plurality of second damping teeth provides a damping feedback on the operator's hand, effectively preventing the outer cover from being accidentally rotated, thereby stabilizing the distance between the top end of the salt outlet pipeline and the sealing end face, preventing the outer cover from being easily rotated, ensuring that the salt in the salt tank is not easily leaked, and making the salt tank have reliable sealing.
[0033] Optionally, the outer wall of the inner cover is further provided with a pointer, and the outer top wall of the outer cover is provided with a plurality of scales, and the plurality of scales are uniformly distributed in the counterclockwise direction of the outer cover.
[0034] In this way, the pointer indicating different scales can represent the angle of rotation of the outer cover, thereby facilitating the operator to intuitively see the specific weight of the salt outlet.
[0035] Optionally, the top end of the salt outlet pipeline has a salt outlet, and the salt outlet abuts against the sealing end face.
[0036] In this way, the arrangement of the salt outlet facilitates the entry of salt from the salt storage bin into the salt outlet pipeline, thereby facilitating the salt tank to sprinkle salt.
[0037] Optionally, the inner bottom of the outer cover is provided with a through hole, and the bottom end of the flow guide disc is located inside the through hole.
[0038] Thus, the through hole is arranged to facilitate the flow guide disc to extend out of the through hole, thereby achieving the purpose of salt scattering.
[0039] In summary, the quantitative salt tank with freely selectable salt weight has the advantages of smooth salt discharge, reliable sealing, uniform salt scattering, and easy disassembly and cleaning of components. BRIEF DESCRIPTION OF DRAWINGS
[0040] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed in the embodiments. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be considered as limiting the scope. For those skilled in the art, other related drawings can also be obtained without creative labor.
[0041] Figure 1 An exploded structural diagram of the quantitative salt tank with freely selectable salt weight in the embodiments of the present application;
[0042] Figure 2 A partially exploded view of the quantitative salt tank with freely selectable salt weight in the embodiments of the present application;
[0043] Figure 3 A three-dimensional view of the sealed state of the quantitative salt tank with freely selectable salt weight in the embodiments of the present application;
[0044] Figure 4 A sectional view of the quantitative salt tank with freely selectable salt weight in the embodiments of the present application; Figure 3
[0045] Figure 5 A three-dimensional view of the salt discharge state of the quantitative salt tank with freely selectable salt weight in the embodiments of the present application;
[0046] Figure 6 A sectional view of the quantitative salt tank with freely selectable salt weight in the embodiments of the present application; Figure 5
[0047] Figure 7 A structural diagram of the inner cover in the embodiments of the present application;
[0048] Figure 8 A structural diagram of the control disc in the embodiments of the present application;
[0049] Figure 9 A structural diagram of the flow guide disc in the embodiments of the present application;
[0050] Figure 10 A structural diagram of the outer cover in the embodiments of the present application.
[0051] Figure icon: 1 - pot body, 2 - inner cover, 3 - outer cover, 4 - funnel, 5 - control disc, 6 - flow guide disc, 7 - salt outlet pipeline, 8 - external thread, 9 - internal thread, 10 - sealing end face, 11 - leakage hole, 12 - salt storage bin, 13 - first inclined rail, 14 - second inclined rail, 15 - first limit tooth, 16 - second limit tooth, 17 - guide rod, 18 - guide groove, 19 - clamping tooth, 20 - clamping hole, 21 - conical protrusion, 22 - flow guide hole, 23 - third limit tooth, 24 - first rail, 25 - annular clamping groove, 26 - buckling tooth, 27 - first damping tooth, 28 - second damping tooth, 29 - pointer, 30 - scale, 31 - salt outlet, 32 - through hole. DETAILED DESCRIPTION
[0052] To make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.
[0053] Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the scope of protection of the present application.
[0054] EMBODIMENT
[0055] Referring to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 10 , the present embodiment proposes a quantitative salt pot with freely selectable salt outlet weight, comprising a pot body 1;
[0056] The bottom of the pot body 1 is provided with an inner cover 2, one end of the pot body 1 close to the inner cover 2 is threadedly connected to the inner cover 2, and the end of the inner cover 2 away from the pot body 1 is provided with an outer cover 3, and the end of the inner cover 2 close to the outer cover 3 is rotatably buckled to the inner wall of the outer cover 3;
[0057] A funnel 4 is arranged between the tank body 1 and the inner cover 2, the funnel 4 is located inside the inner cover 2, the inner cover 2 and the outer cover 3 are sequentially provided with a control disc 5 and a flow guide disc 6, the control disc 5 has a salt outlet pipeline 7 inside, the top end of the salt outlet pipeline 7 penetrates the inner cover 2 and abuts against the inner top surface of the funnel 4, the control disc 5 is rotatably connected to the lower end outer wall of the inner cover 2, the flow guide disc 6 is buckled to the lower end of the control disc 5, and the control disc 5 and the flow guide disc 6 are located inside the outer cover 3 and are axially slidingly fitted with the outer cover 3.
[0058] In use, first, the outer cover 3 is rotated to select the required salt outlet weight, the outer cover 3 drives the control disc 5 and the flow guide disc 6 to rotate, the control disc 5 rotates downward on the outer wall of the inner cover 2, the top end of the salt outlet pipeline 7 is separated from the inner top end of the funnel 4, then the tank body 1 is shaken, the salt inside the tank body 1 enters the inner cover 2 under the action of gravity through the funnel 4, and finally, under the action of the gap between the top end of the salt outlet pipeline 7 and the inner top end of the funnel 4, the corresponding weight of salt from the salt outlet pipeline 7 enters the flow guide disc 6 and is scattered out.
[0059] The quantitative salt tank with freely selectable salt outlet weight disclosed in the embodiment can freely select the salt outlet weight by rotating the outer cover 3, the control disc 5 and the flow guide disc 6, changing the gap size between the top end of the salt outlet pipeline 7 and the inner top surface of the funnel 4, controlling the salt scattering weight according to the requirements, and thus the quantitative salt tank with freely selectable salt outlet weight has the beneficial effects of smooth salt outlet, reliable sealing, uniform salt scattering and easy disassembly and cleaning of components.
[0060] Referring to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 10 , the outer wall of one end of the tank body 1 close to the inner cover 2 has an outer thread 8, the inner wall of the inner cover 2 has an inner thread 9, the outer thread 8 is adapted to the inner thread 9, the tank body 1 is connected to each other through the outer thread 8 and the inner thread 9, so that the tank body 1 and the inner cover 2 are sealingly connected, and the salt stored in the tank body 1 can enter the inner cover 2.
[0061] The inner top surface of the funnel 4 has a sealing end surface 10, the top end of the salt outlet pipeline 7 abuts against the sealing end surface 10, when the salt outlet pipeline 7 abuts against the sealing end surface 10, the salt tank is in a sealed state and cannot outlet salt, when the salt outlet pipeline 7 is separated from the sealing end surface 10, the salt tank is in an open state and can outlet salt, and the salt outlet weight is controlled by controlling the gap size between the top end of the salt outlet pipeline 7 and the sealing end surface 10.
[0062] A plurality of leakage holes 11 are radially arranged on the funnel 4, and the plurality of leakage holes 11 are arranged through the funnel 4 and uniformly distributed along the circumference of the funnel 4. The plurality of leakage holes 11 can guide the salt stored in the inner part of the tank body 1 into the inner cover 2, thereby facilitating the outflow of a small amount of salt.
[0063] The inner bottom of the inner cover 2 has a salt storage bin 12, which is in communication with the leakage holes 11 and the tank body 1. The salt in the tank body 1 enters the salt storage bin 12 through the plurality of leakage holes 11 for storage, thereby facilitating the outflow of salt when the top end of the salt outflow pipe 7 is separated from the sealing end face 10 by up and down shaking.
[0064] The outer bottom wall of the inner cover 2 is provided with a first inclined track 13 and a second inclined track 14, which are correspondingly arranged on the outer bottom wall of the inner cover 2. The inner wall of the control disc 5 is provided with a first limiting tooth 15 and a second limiting tooth 16 which are adapted to the first inclined track 13 and the second inclined track 14. The first limiting tooth 15 is slidably adapted to the first inclined track, and the second limiting tooth 16 is slidably adapted to the second inclined track. When the outer cover 3 rotates, the control disc 5 will also rotate. The first limiting tooth 15 and the second limiting tooth 16 on the control disc 5 rotate and move on the first inclined track 13 and the second inclined track 14. In this way, the up and down movement of the control disc 5 can be realized, thereby adjusting the gap size between the top end of the salt outflow pipe 7 and the sealing end face 10, and further controlling the salt outflow weight of the salt tank. The larger the gap, the larger the salt outflow weight, and the smaller the gap, the smaller the salt outflow weight.
[0065] Referring to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 10 , the outer bottom wall of the control disc 5 is provided with a guide rod 17 which is fixedly connected to the outer bottom wall of the control disc 5 along the axial direction of the control disc 5. The inner wall of the flow guide disc 6 is provided with a guide groove 18 which is adapted to the guide rod 17, and the guide rod 17 is slidably limited in the guide groove 18. The outer bottom wall of the control disc 5 is further provided with a clamping tooth 19, and the circumferential direction of the flow guide disc 6 is provided with a clamping hole 20, and the clamping tooth 19 is clamped in the clamping hole 20. The cooperation of the guide rod 17 and the guide groove 18 makes the flow guide disc 6 play a guiding role when it is connected to the control disc 5, and the cooperation of the clamping tooth 19 and the clamping hole 20 facilitates the fixation of the flow guide disc 6 on the control disc 5.
[0066] The inner bottom surface of the flow guide disc 6 has a conical protrusion 21, and a plurality of flow guide holes 22 are formed between the conical protrusion 21 and the inner bottom wall of the flow guide disc 6. The plurality of flow guide holes 22 penetrate the inner bottom surface of the flow guide disc 6 and are uniformly distributed along the circumference of the flow guide disc 6. The plurality of flow guide holes 22 facilitate the flow of salt. Under the action of the conical protrusion 21, the plurality of flow guide holes 22 can uniformly sprinkle the salt, thereby uniformly sprinkling the salt in the salt tank.
[0067] The outer wall of the control disc 5 has a third limiting tooth 23, the inner wall of the outer cover 3 has a first track 24 in the axial direction, and the third limiting tooth 23 is slidably fitted to the first track 24. The outer middle wall of the inner cover 2 has an annular clamping groove 25, and the inner wall of the outer cover 3 has a plurality of uniformly distributed clamping teeth 26 in the axial direction. The inner cover 2 is clamped on the clamping teeth 26 of the outer cover 3 through the annular clamping groove 25. The third limiting tooth 23 cooperates with the first track 24 to realize the guiding connection between the control disc 5 and the outer cover 3. The annular clamping groove 25 clamps the clamping teeth 26, which facilitates the connection of the inner cover 2 to the outer cover 3.
[0068] The upper part of the annular clamping groove 25 is provided with a plurality of first damping teeth 27 distributed in the circumferential direction. The plurality of first damping teeth 27 are located on the outer wall of the inner cover 2. The upper part of each of the plurality of clamping teeth 26 is provided with a plurality of second damping teeth 28. The plurality of second damping teeth 28 are located on the inner wall of the outer cover 3. The plurality of first damping teeth 27 are rotatably engaged with the plurality of second damping teeth 28. When the outer cover 3 is rotated clockwise, the cooperation between the plurality of first damping teeth 27 and the plurality of second damping teeth 28 provides a damping feedback on the operator's hand, effectively preventing accidental rotation of the outer cover 3, thereby stabilizing the distance between the top end of the salt outlet pipe 7 and the sealing end face 10, preventing the outer cover 3 from being easily rotated, ensuring that the salt in the salt tank is not easily leaked, and making the salt tank have reliable sealing.
[0069] Referring to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 10 , the outer wall of the inner cover 2 is also provided with a pointer 29, and the outer top wall of the outer cover 3 is provided with a plurality of scales 30 uniformly distributed in the counterclockwise direction of the outer cover 3. The pointer 29 indicates different scales 30, which can represent the angle of rotation of the outer cover 3, thereby facilitating the operator to intuitively see the specific weight of the salt outlet.
[0070] The top end of the salt outlet pipe 7 has a salt outlet 31 abutting against the sealing end face 10. The arrangement of the salt outlet 31 facilitates the salt to enter the salt outlet pipe 7 from the salt storage bin 12, thereby facilitating the salt tank to sprinkle salt.
[0071] The inner bottom of the outer cover 3 is provided with a through hole 32, and the bottom end of the flow guide disc 6 is located inside the through hole 32. The through hole 32 is arranged to facilitate the flow guide disc 6 to extend out of the through hole 32, thereby achieving the purpose of salt scattering.
[0072] Referring to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 and Figure 10 , in the embodiment, the required salt discharge weight is selected by rotating the outer cover 3, and the corresponding weight salt is scattered by shaking the tank body 1. The salt in the tank body 1 enters the salt storage bin 12 through the leakage hole 11 on the funnel 4 under the action of gravity. When the pointer 29 on the outer cylindrical surface of the inner cover 2 corresponds to the “0” scale 30 on the outer cylindrical surface of the outer cover 3, the salt tank is in a sealed state. When the pointer 29 on the outer cylindrical surface of the inner cover 2 corresponds to the “0.5” scale 30 on the outer cylindrical surface of the outer cover 3, 0.5g of salt can be scattered by shaking the salt tank once.
[0073] Referring to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 and Figure 10 , in the embodiment, when the control disc 5 is coaxially assembled with the inner cover 2, the first limiting tooth 15 and the second limiting tooth 16 are respectively slid into the first inclined track 13 and the second inclined track 14. At this time, the inner cover 2 is fixed, and the circumferential rotation of the control disc 5 can realize the up-down movement of the control disc 5. The outer circular surface of the control disc 5 is provided with a third limiting tooth 23 in the circumferential direction, and the inner circular surface of the outer cover 3 is provided with a first track 24. When the assembly of the inner cover 2, the control disc 5 and the flow guide disc 6 is pressed into the outer cover 3 along the axial direction, the third limiting tooth 23 of the control disc 5 needs to be aligned and assembled with the first track 24 of the outer cover 3, until the plurality of buckling teeth 26 of the outer cover 3 are buckled into the annular clamping groove 25 of the inner cover 2. At this time, the inner cover 2, the control disc 5, the flow guide disc 6 and the outer cover 3 are assembled into an assembly. Further, the funnel 4 is assembled into the inner cover 2, and the tank body 1 is threadedly connected with the inner cover 2 after a proper amount of salt is poured into the tank body 1. The salt tank is assembled.
[0074] Referring to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 ,Figure 9 and Figure 10 In the embodiment, the quantitative salt tank is suitable for containing salt, sugar, monosodium glutamate, chicken essence and other granular condiments.
[0075] Referring to , , , , , , , , and In the embodiment, the quantitative salt tank can freely select the specific structure principle of the salt weight: the salt in the tank body 1 is under the action of gravity and enters the salt storage bin 12 through the leakage hole 11 of the funnel 4, when the pointer 29 on the outer cylindrical surface of the inner cover 2 corresponds to the "0" scale 30 on the outer cylindrical surface of the outer cover 3, the salt outlet 31 of the control disc 5 is attached to the sealing end surface 10 of the funnel 4, at this time, the salt tank is in a sealed state, and the salt in the salt tank cannot be scattered by shaking the salt tank; the outer cover 3 is rotated clockwise, and the outer cover 3 drives the control disc 5 to rotate in a circle under the action of the first track 24 in the inner cover and the third limiting tooth 23 of the control disc 5, the first limiting tooth 15 and the second limiting tooth 16 on the inner surface of the control disc 5 are respectively slid into the first inclined track 13 and the second inclined track 14 to realize the downward movement of the control disc 5, when the pointer 29 on the outer cylindrical surface of the inner cover 2 corresponds to the "1" scale 30 on the outer cylindrical surface of the outer cover 3, the salt outlet 31 of the control disc 5 forms a gap with the sealing end surface 10 of the funnel 4, and the flow guide disc 6 corresponds to the through hole 32 extending below the outer cover 3, at this time, the appropriate amount of salt in the salt storage bin 12 flows into the salt outlet 31 inside the control disc 5 through the gap between the salt outlet 31 and the sealing end surface 10, and then flows into the flow guide disc 6 through the salt outlet pipeline 7, and the appropriate amount of salt in the salt outlet pipeline 7 is diffused and scattered under the action of the flow guide hole 22 of the flow guide disc 6, at this time, 1g of salt can be scattered by shaking the salt tank once, and the control of different salt outlet weights can be realized by controlling the gap size between the salt outlet 31 and the sealing end surface 10.
[0076] The above only describes preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can be variously changed and modified. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A kind of free selection of the quantitative salt tank of salt weight, it is characterized by: Including tank body (1); The bottom of the tank body (1) is equipped with inner cover (2), the tank body (1) is threadedly connected to the inner cover (2) near one end of the inner cover (2), the end of the inner cover (2) away from the tank body (1) is equipped with outer cover (3), the inner wall of the inner cover (2) is rotatably buckled to the outer cover (3) near the outer cover (3) one end; Funnel (4) is equipped between the tank body (1) and the inner cover (2), the funnel (4) is located in the inner cover (2), the inner cover (2) and the outer cover (3) are sequentially equipped with control disc (5) and flow guide disc (6), the inner cover (2) is rotatably connected on the lower end outer wall of the inner cover (2) with the salt outlet pipeline (7) in the inside of the control disc (5), the top end of the salt outlet pipeline (7) penetrates the inner cover (2) and is in abutment on the inner top surface of the funnel (4), the flow guide disc (6) is buckled to the lower end of the control disc (5), the control disc (5) and the flow guide disc (6) are located in the inner cover (2) and along the axial sliding fit of the outer cover (3).
2. According to the quantitative salt tank of claim 1 of free selection of salt weight, it is characterized by: The outer wall of the tank body (1) is equipped with external thread (8) near the inner cover (2), the inner wall of the inner cover (2) is equipped with internal thread (9), the external thread (8) is adapted to the internal thread (9).
3. According to the quantitative salt tank of claim 1 of free selection of salt weight, it is characterized by: The inner top surface of the funnel (4) has sealing end face (10), the top end of the salt outlet pipeline (7) is in abutment on the sealing end face (10).
4. According to the quantitative salt tank of claim 3 of free selection of salt weight, it is characterized by: The inner top surface of the funnel (4) is equipped with a plurality of leakage holes (11), a plurality of leakage holes (11) are all penetrated through the funnel (4) and are evenly distributed along the circumferential direction of the funnel (4).
5. According to the quantitative salt tank of claim 4 of free selection of salt weight, it is characterized by: The inner bottom of the inner cover (2) has salt storage bin (12), the salt storage bin (12) is mutually penetrated with the leakage hole (11) and the tank body (1).
6. According to the quantitative salt tank of claim 1 of free selection of salt weight, it is characterized by: The outer bottom wall of the inner cover (2) is equipped with first inclined track (13) and second inclined track (14), the first inclined track (13) and the second inclined track (14) are correspondingly distributed on the outer bottom wall of the inner cover (2); The inner wall of the control disc (5) is equipped with first limit tooth (15) and second limit tooth (16) adapted to the first inclined track (13) and the second inclined track (14), the first limit tooth (15) is slidably adapted to the first inclined track (13), the second limit tooth (16) is slidably adapted to the second inclined track (14).
7. The quantitative salt tank of claim 1, wherein the outer bottom wall of the control disc (5) is provided with a guide rod (17) fixedly connected to the outer bottom wall of the control disc (5) along the axial direction of the control disc (5), and the inner wall of the flow guide disc (6) is provided with a guide groove (18) adapted to the guide rod (17), and the guide rod (17) is slidably limited in the guide groove (18).
8. The quantitative salt tank of claim 1, wherein the inner bottom surface of the flow guide disc (6) is provided with a tapered protrusion (21), and a plurality of flow guide holes (22) are formed between the tapered protrusion (21) and the inner bottom wall of the flow guide disc (6), and the flow guide holes (22) pass through the inner bottom surface of the flow guide disc (6) and are uniformly distributed along the circumferential direction of the flow guide disc (6).
9. The quantitative salt tank of claim 1, wherein the outer wall of the control disc (5) is provided with a third limiting tooth (23), the inner wall of the outer cover (3) is provided with a first track (24) in the axial direction, and the third limiting tooth (23) is slidably adapted to the first track (24).
10. The quantitative salt tank of claim 9, wherein the outer middle wall of the inner cover (2) is provided with an annular clamping groove (25), and the inner wall of the outer cover (3) is provided with a plurality of evenly distributed clamping teeth (26) in the axial direction, and the inner cover (2) is clamped on the clamping teeth (26) of the outer cover (3) through the annular clamping groove (25).
10. The quantitative salt tank of claim 9, wherein the upper portion of the annular clamping groove (25) is provided with a plurality of first damping teeth (27) distributed in the circumferential direction, the first damping teeth (27) are located on the outer wall of the inner cover (2), the upper portion of each of the clamping teeth (26) is provided with a plurality of second damping teeth (28), the second damping teeth (28) are located on the inner wall of the outer cover (3), and the first damping teeth (27) are rotatably engaged with the second damping teeth (28).