Canna edulis ker powder stirring machine

By designing a banana taro flour slurry machine, the slurry, filtration and precipitation processes are used to solve the problem of low extraction efficiency of banana taro flour in the existing technology, and high-efficiency and high-quality taro flour processing is achieved.

CN222900804UActive Publication Date: 2025-05-27XINGWEN FUYU AGRICULTURAL TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202421592513.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-08
Publication Date
2025-05-27
Estimated Expiration
2034-07-08

AI Technical Summary

Technical Problem

In the prior art, the extraction efficiency of banana taro flour is not high, and manual preparation affects product quality.

Method used

A banana taro flour slurry slurry machine is designed, including a beating mechanism, a filtration mechanism and a precipitation frame. Through the beating, filtration and precipitation process, the extraction efficiency and quality of the taro flour are improved.

Benefits of technology

Through mechanized processing steps, the extraction efficiency of banana taro flour is improved, labor costs are reduced, and product quality is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

A canna edulis ker powder stirring machine comprises a pulping mechanism, a filtering mechanism is arranged at the discharging end of the pulping mechanism, and a canna edulis ker powder precipitation mechanism is arranged at the discharging end of the filtering mechanism; the canna edulis ker powder precipitation mechanism comprises a first rack, a precipitation frame is fixed on the first rack, a precipitation channel is formed in the precipitation frame, the middle of the precipitation channel is bent for multiple times to form a loop, and the bottom of the precipitation channel is an inclined plane; the pulping mechanism comprises a second rack, a pulping cylinder is fixed to the second rack, an opening is formed in the upper side of the pulping cylinder, a feeding hopper is fixed to the opening of the pulping cylinder, a fixing frame is fixed to the opening, a shaft sleeve is fixed to the fixing frame, and a rotating shaft is installed in the shaft sleeve in a penetrating mode; and the lower side end of the rotating shaft extends to the bottom of the pulping cylinder.
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Description

Technical Field

[0001] The utility model relates to the technical field of mechanical processing of taro flour, in particular to a taro flour agitator. Background Art

[0002] Banana leaf, a Chinese medicine name. It belongs to the genus Musa, Musaceae, and Musa order. It is distributed in Fujian, Guangdong, Hainan, Guangxi, Yunnan, etc. The leaves are used as medicine, with a cold nature, sweet and light taste, and have the effects of clearing heat, diuresis, and detoxification. It is often used for fever, heatstroke, beriberi, carbuncle, heat toxin, and burns.

[0003] The taro flour is made by mixing banana leaves with water, using mechanical equipment to extract the main component of starch, then filtering, drying, and finally crushing it into taro flour. However, the extraction of taro flour is still done manually, which is inefficient and affects the final quality. Utility Model Content

[0004] The utility model aims to overcome the deficiencies of the prior art and provide a taro flour pulverizer.

[0005] The purpose of this utility model is achieved through the following technical solutions:

[0006] A taro flour blending machine, comprising:

[0007] A beating mechanism, wherein a filtering mechanism is provided at the discharge end of the beating mechanism, and a taro powder precipitation mechanism is provided at the discharge end of the filtering mechanism; the taro powder precipitation mechanism comprises a first frame, a precipitation frame is fixed on the first frame, a precipitation channel is formed in the precipitation frame, the middle part of the precipitation channel is bent multiple times to form a loop, and the bottom of the precipitation channel is an inclined surface.

[0008] In one or more embodiments of the utility model, the beating mechanism includes a second frame, a beating cylinder is fixed on the second frame, the upper side of the beating cylinder is an opening, a feed hopper is fixed on the opening of the beating cylinder, a fixing frame is fixed on the opening, a shaft sleeve is fixed on the fixing frame, a rotating shaft is installed through the shaft sleeve, the lower side end of the rotating shaft extends to the bottom of the beating cylinder, a motor seat is also fixed on the fixing frame, a motor is fixed on the motor seat, a driving wheel is fixed on the output end of the motor, a rotating wheel is fixed on the upper end of the rotating shaft, a synchronous belt is installed on the driving wheel and the rotating wheel; a plurality of mounting sleeves are fixed on the rotating shaft, and beating blades are fixed on the outer side of the mounting sleeves.

[0009] In one or more embodiments of the utility model, a conveying assembly is arranged between the beating mechanism and the filtering mechanism, and the conveying assembly includes a liquid pump fixed to the bottom of the inner cavity of the beating cylinder, and a conveying pipe is fixed to the discharge end of the liquid pump, and the other end of the conveying pipe extends to the feed end of the filtering mechanism.

[0010] In one or more embodiments of the present utility model, the filtering mechanism includes a third frame, an arc-shaped plate is fixed on the third frame, two relatively arranged shaft seats are fixed on the third frame, a rotating shaft is fixed between the two shaft seats through a bearing, a rotating cylinder assembly is fixed on the rotating shaft, the rotating assembly is located on the arc-shaped plate, and a filtering screen is sleeved outside the rotating cylinder assembly.

[0011] In one or more embodiments of the present utility model, a plurality of fixing sleeves sleeved and fixed on the rotating shaft are provided on the rotating cylinder assembly, at least two connecting rods are fixed outside the fixing sleeve, a fixing ring is fixed at the outer end of the connecting rod, a plurality of long rods are fixed outside the fixing ring, and the plurality of long rods form a transverse cylindrical structure. An inlet arc-shaped plate is fixed at the inlet end of the arc-shaped plate, and an outlet arc-shaped plate is fixed at the outlet end of the arc-shaped plate. The outlet end of the outlet arc-shaped plate is located on the inlet end of the precipitation frame.

[0012] In one or more embodiments of the present utility model, a plurality of partition plates in a staggered form are arranged in the precipitation frame, and precipitation channels are formed through the blocking of the partition plates. The inclination of the bottom surface between the inlet and the outlet of the precipitation channel gradually increases, and the formed slope is 2-6 degrees.

[0013] In one or more embodiments of the present utility model, the whole of the third frame is inclined, and the height of the inlet end is greater than the height of the outlet end.

[0014] Advantages of the present utility model:

[0015] A canna starch pulping machine proposed by the present utility model puts the mixture into the pulping mechanism for pulping, then extracts the pulped mixture into the filtering mechanism for filtering, filters out some sundries and lumps that do not meet the requirements, and then sends the filtered mixture to the precipitation frame. It flows through the inclined precipitation channel. When the slurry flows onto the inclined surface, the flow speed and direction will cause the particulate matter to accumulate and deposit on the surface, and then the precipitated banana starch is taken out manually. Through this pulping machine, the high processing steps are mechanized, the processing efficiency is improved, and the labor cost is reduced. Description of the drawings

[0016] Figure 1 is a schematic structural diagram of the present utility model;

[0017] Figure 2 is a front view of the present utility model;

[0018] Figure 3 is a cross-sectional view of the present utility model. Detailed implementation manners

[0019] To make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. Components of the embodiments of the present utility model generally described and illustrated in the accompanying drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present utility model provided in the drawings is not intended to limit the scope of the claimed present utility model, but merely represents selected embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts fall within the protection scope of the present utility model.

[0020] Embodiment 1. In this embodiment, as Figures 1 to 3 shown, a canna starch pulping machine includes a pulping mechanism. A filtering mechanism is provided at the discharge end of the pulping mechanism, and a canna starch precipitation mechanism is provided at the discharge end of the filtering mechanism. The canna starch precipitation mechanism includes a first frame 1. A precipitation frame 2 is fixed on the first frame 1. A precipitation channel is formed inside the precipitation frame 2. The middle of the precipitation channel is bent multiple times to form a loop. The bottom of the precipitation channel is an inclined surface.

[0021] In this embodiment, after the outer skin of the canna leaf is cut and fully soaked and mixed with water, the mixture is put into the pulping mechanism for pulping. Then, the mixture obtained from pulping is pumped into the filtering mechanism for filtering to filter out some impurities and lumps that do not meet the requirements. Then, the filtered mixture is sent into the precipitation frame 2. By flowing through the inclined precipitation channel, the starch remains in the precipitation channel and is then taken out manually.

[0022] In one or more embodiments of the present utility model, the pulping mechanism includes a second frame 3. A pulping cylinder 4 is fixed on the second frame 3. The upper side of the pulping cylinder 4 is open. A feed hopper is fixed on the opening of the pulping cylinder 4. A fixing frame 6 is fixed on the opening. A bushing 7 is fixed on the fixing frame 6. A rotating shaft 8 is installed through the bushing 7. The lower end of the rotating shaft 8 extends to the bottom of the pulping cylinder 4. A motor base 9 is also fixed on the fixing frame 6. A motor 10 is fixed on the motor base 9. A driving wheel 11 is fixed on the output end of the motor 10. A rotating wheel 12 is fixed on the upper end of the rotating shaft 8. A synchronous belt is sleeved on the driving wheel 11 and the rotating wheel 12. A plurality of mounting sleeves are fixed on the rotating shaft 8. Pulping blades 13 are fixed on the outer sides of the mounting sleeves.

[0023] In this embodiment, the rotating shaft 8 is driven to rotate by the motor 10, so as to drive the beating blades 13 to rotate, so as to cut and continuously stir the banana leaves, and finally form a slurry.

[0024] In one or more embodiments of the present utility model, a conveying assembly is arranged between the beating mechanism and the filtering mechanism. The conveying assembly includes a liquid extraction pump 14 fixed to the bottom of the inner cavity of the beating cylinder 4. The discharge end of the liquid extraction pump 14 is fixed with a conveying pipe 15, and the other end of the conveying pipe 15 extends to the feed end of the filtering mechanism.

[0025] In this embodiment, the liquid extraction pump 14 is used to extract and convey the slurry at the bottom of the beating cylinder 4. The slurry at the bottom of the beating cylinder 4 is the liquid that is formed first and fully mixed. After the bottom is extracted, the upper part continues to enter the bottom for deep beating, and this continues, making the effect better.

[0026] In one or more embodiments of the present utility model, the filtering mechanism includes a third frame 16. An arc plate 17 is fixed on the third frame 16. Two relatively arranged shaft seats 18 are fixed on the third frame 16. A rotating shaft 19 is fixed between the two shaft seats 18 through bearings. A rotating cylinder assembly is fixed on the rotating shaft 19. The rotating assembly is located on the arc plate 17, and a filtering screen is sleeved outside the rotating cylinder assembly.

[0027] In this embodiment, through the arrangement of the arc plate 17, the slurry will not fall to the outside during the filtering process.

[0028] In one or more embodiments of the present utility model, the rotating cylinder assembly includes a plurality of fixing sleeves sleeved and fixed on the rotating shaft 19. At least two connecting rods 20 are fixed outside the fixing sleeve. The outer ends of the connecting rods 20 are fixed with a fixing ring 21. A plurality of long rods 22 are fixed outside the fixing ring 21. The plurality of long rods form a horizontal cylindrical structure. The feed end of the arc plate 17 is fixed with a feed arc plate 23, and the discharge end of the arc plate 17 is fixed with a discharge arc plate 24. The discharge end of the discharge arc plate 24 is located on the feed end of the sedimentation frame 2.

[0029] In this embodiment, the filtering screen is arranged outside the plurality of long rods 22. The uncut blocks are filtered through the filtering screen, making the subsequent taro powder finer; a retaining ring is fixed inside the long rod 22, and the retaining ring is located at the discharge end of the rotating cylinder assembly, and it is used to block the blocks from falling out; due to the optimization of the beating mechanism, not many blocks will be generated, so it is only necessary to clean the inside of the filtering screen at intervals. By rotating the rotating cylinder assembly, the use position of the filtering screen can be adjusted manually, so that the same mesh surface will not be used for a long time, resulting in corrosion and damage.

[0030] In one or more embodiments of the present utility model, a number of staggered partitions 25 are provided inside the precipitation frame 2. Precipitation channels are formed through the blocking of the partitions. The inclination of the bottom surface between the inlet and the outlet of the precipitation channels gradually increases, and the formed slope is 2 to 6 degrees. An outlet is provided on one side of the precipitation frame 2.

[0031] In this embodiment, during the flow process, the particulate matter in the slurry is affected by the surface friction and penetration force, causing them to deposit on the surface. When the slurry flows onto the inclined surface, the flow velocity and direction will cause the particulate matter to aggregate and deposit on the surface. This deposited material can be powder, particles, or other small substances. Therefore, when the slurry flows on the inclined surface, powder will be left on it because the particulate matter is left on the surface due to the influence of the flow.

[0032] In one or more embodiments of the present utility model, the overall third rack 16 is inclined, and the height of its feeding end is greater than the height of its discharging end.

[0033] In this embodiment, due to the inclined setting of the third rack 16, the arc-shaped plate is also inclined, which facilitates the flow of the slurry.

[0034] Working principle of the present utility model:

[0035] After cutting the outer skin of the banana leaf and fully soaking and mixing it with water, the mixture is put into a pulping mechanism for pulping. Then, the pulped mixture is pumped into a filtering mechanism for filtering to filter out some impurities and lumps that do not meet the requirements. Then, the filtered mixture is sent into the precipitation frame 2. By flowing through the inclined precipitation channels, the starch remains in the precipitation channels and is then taken out manually.

[0036] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by terms such as "upper", "lower", "inner", "outer", "left", "right", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the present utility model is usually placed during use, or the orientation or positional relationship commonly understood by those skilled in the art. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model. In addition, terms such as "first", "second", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance. In the description of the present utility model, it should also be noted that unless otherwise clearly specified and defined, terms such as "set", "connected", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

Claims

1. A taro flour blender, characterized in that: include: A beating mechanism, wherein a filtering mechanism is arranged at the discharge end of the beating mechanism, and a taro powder precipitation mechanism is arranged at the discharge end of the filtering mechanism; the taro powder precipitation mechanism comprises a first frame (1), a precipitation frame (2) is fixed on the first frame (1), a precipitation channel is formed in the precipitation frame (2), the middle part of the precipitation channel is bent multiple times to form a loop, and the bottom of the precipitation channel is an inclined surface.

2. The taro flour blending machine according to claim 1, characterized in that: The beating mechanism comprises a second frame (3), on which a beating cylinder (4) is fixed, the upper side of the beating cylinder (4) is an opening, a feed hopper is fixed on the opening of the beating cylinder (4), a fixing frame (6) is fixed on the opening, a shaft sleeve (7) is fixed on the fixing frame (6), a rotating shaft (8) is installed through the shaft sleeve (7), the lower side end of the rotating shaft (8) extends to the bottom of the beating cylinder (4), a motor seat (9) is also fixed on the fixing frame (6), a motor (10) is fixed on the motor seat (9), a driving wheel (11) is fixed on the output end of the motor (10), a rotating wheel (12) is fixed on the upper end of the rotating shaft (8), and a synchronous belt is installed on the driving wheel (11) and the rotating wheel (12); a plurality of mounting sleeves are fixed on the rotating shaft (8), and beating blades (13) are fixed on the outer side of the mounting sleeves.

3. A taro flour blending machine according to claim 2, characterized in that: A conveying assembly is provided between the pulping mechanism and the filtering mechanism, and the conveying assembly comprises a liquid pump (14) fixed to the bottom of the inner cavity of the pulping cylinder (4), a conveying pipe (15) is fixed to the discharge end of the liquid pump (14), and the other end of the conveying pipe (15) extends to the feed end of the filtering mechanism.

4. The taro flour blending machine according to claim 1, characterized in that: The filtering mechanism comprises a third frame (16), an arc-shaped plate (17) is fixed on the third frame (16), two shaft seats (18) arranged opposite to each other are fixed on the third frame (16), a rotating shaft (19) is fixed between the two shaft seats (18) via a bearing, a rotating drum assembly is fixed on the rotating shaft (19), the rotating drum assembly is located on the arc-shaped plate (17), and a filter screen is sleeved on the outer side of the rotating drum assembly.

5. The taro flour blending machine according to claim 4, characterized in that: The drum assembly comprises a plurality of fixed sleeves fixed on the rotating shaft (19), at least two connecting rods (20) are fixed outside the fixed sleeves, a fixing ring (21) is fixed to the outer end of the connecting rod (20), a plurality of long rods (22) are fixed to the outer side of the fixing ring (21), and the plurality of long rods form a transverse cylindrical structure, a feeding arc plate (23) is fixed to the feeding end of the arc plate (17), a discharging arc plate (24) is fixed to the discharging end of the arc plate (17), and the discharging end of the discharging arc plate (24) is located on the feeding end of the sedimentation frame (2).

6. The taro flour blending machine according to claim 1, characterized in that: A plurality of partitions (25) in a staggered form are arranged in the sedimentation frame (2), and a sedimentation channel is formed by the obstruction of the partitions. The inclination of the bottom surface between the inlet and the outlet of the sedimentation channel gradually increases, and the formed slope is 2 to 6 degrees.

7. The taro flour blending machine according to claim 4, characterized in that: The third frame (16) is arranged as a whole in an inclined manner, and the height of the feeding end is greater than the height of the discharging end.