Feeding device for biscuit production
By designing a feeding device including a feeding seat, a water adding funnel and a mixing shell, the premixing of powder is achieved, the problem of low powder mixing efficiency is solved, and the mixing efficiency is improved.
Patent Information
- Application Number
- CN202422718702.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-07
AI Technical Summary
In the prior art, powders cannot be pre-mixed when being fed, resulting in low mixing efficiency of different powders.
A feeding device is designed, which includes a feeding seat, a water adding funnel, a powder funnel and a mixing shell. The powder is delivered to the mixing shell through a feeding pipe, and the blades are stirred by a rotating rod to achieve pre-mixing of the powder and then mixed with water.
The pre-mixing of multiple powders is achieved, and the mixing efficiency of powders and water is improved.
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Figure CN223364887U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of feeding devices, in particular to a feeding device for biscuit production. Background Art
[0002] Biscuits are a popular snack that not only tastes good but also provides the energy needed by the human body. The main raw material of biscuits is wheat flour, which is then added with sugar, oil, eggs, dairy products or powder and other auxiliary materials. When processing biscuits, powder needs to be added through a feeding device first, and then water is added to mix and stir;
[0003] For example, the utility model patent with Chinese patent application number: CN202322976715.8 discloses a feeding machine for biscuit processing, including a feeding seat; a plurality of water adding funnels are provided at the upper end of the feeding seat, the water adding funnels and the feeding seat are connected to each other, the upper end of the water adding funnel is provided with a water inlet pipe, and the inner upper part of the water adding funnel is provided with a powder funnel; the inner wall of the water adding funnel and the outer wall of the powder funnel are fitted with each other. The beneficial effect of the utility model is: by providing a plurality of water adding funnels at the upper end of the feeding seat, and providing a powder funnel at the inner upper part of each water adding funnel, the feeding amount of each water adding funnel and the powder funnel is separately controlled by the control panel and the first solenoid valve, and when powder is under the powder funnel, the water adding funnel can be added water synchronously, so that the powder and water start to mix when feeding, thereby facilitating subsequent mixing and stirring, and improving processing efficiency.
[0004] Although the above-mentioned feeder can add powder and water at the same time, so that the powder and water begin to mix when feeding, different powders cannot be pre-mixed when feeding. Subsequently, different powders are mixed with water separately and then merged into one for stirring and mixing, which reduces the efficiency of mixing different powders. Utility Model Content
[0005] The utility model discloses a feeding device for biscuit production, which solves the problem that different powder materials cannot be pre-mixed when feeding, thereby reducing the mixing efficiency of different powder materials.
[0006] In order to solve the above technical problems, the present invention specifically adopts the following technical solutions:
[0007] A feeding device for biscuit production includes a feeding seat, a fixedly connected water adding funnel passes through the top of the feeding seat, a fixedly connected water inlet pipe passes through one side of the water adding funnel, a mixing shell is provided above the water adding funnel, a perforated plate is fixed in the mixing shell, a rotating rod is provided above the perforated plate, a blade is fixed on the rotating rod, and a motor for driving the rotating rod to rotate is provided on the mixing shell; a group of powder hoppers are provided above the feeding seat, the bottom of the powder hoppers is connected to a feeding pipe connected to the mixing shell, a support plate fixed to the mixing shell is fixed on the feeding seat, and the bottom of the mixing shell is connected to a vertical pipe inserted into the water adding funnel.
[0008] Compared with the prior art, the present invention has the following beneficial effects:
[0009] After a variety of different powders are respectively loaded into a group of powder hoppers, the powder hopper can continuously discharge the powders into the mixing shell through the feeding pipe, and at the same time, the motor is started to drive the rotating rod to rotate the blades. When the various different powders fall on the perforated plates respectively, the blades can stir and mix the various different powders entering the mixing shell, so that the various different powders are premixed. The premixed powders can fall downward through the perforations on the perforated plates into the vertical pipe, and then be discharged from the bottom of the vertical pipe to the water adding funnel; at the same time, after water enters the water adding funnel through the water inlet pipe, the water and the various different powders are mixed when they are discharged through the bottom of the water adding funnel, so as to improve the mixing efficiency of water and the various different powders; the utility model can premix a variety of different powders and then contact and mix the premixed powders with water, thereby further improving the mixing efficiency of the various different powders. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 This is a schematic diagram of the structure of the utility model in a front view and section;
[0011] Figure 2 This is a schematic structural diagram of a cross-section of the mixing shell of the present invention.
[0012] In the figure: 1. Feeding seat; 2. Water adding funnel; 3. Water inlet pipe; 31. First solenoid valve; 32. Fixed pipe; 4. Mixing shell; 41. Perforated plate; 42. Rotating rod; 43. Blade; 44. Motor; 45. Screen plate; 46. Fixed plate; 47. Support plate; 48. Support rod; 49. Control panel; 5. Powder hopper; 51. Feed pipe; 52. Second solenoid valve; 6. Pressing plate; 61. Electric telescopic rod; 7. Vertical pipe; 8. Automatic telescopic rod; 81. Collecting cylinder; 82. Hose; 9. Mixing funnel; 10. Connecting flange. DETAILED DESCRIPTION
[0013] The specific contents of the present utility model are described in detail below with reference to the accompanying drawings and embodiments.
[0014] like Figure 1 and Figure 2 As shown, the utility model provides a feeding device for biscuit production, comprising a feeding seat 1, a fixedly connected water adding funnel 2 passing through the top of the feeding seat 1, a fixedly connected water inlet pipe 3 passing through one side of the water adding funnel 2, a mixing shell 4 being provided above the water adding funnel 2, a perforated plate 41 being fixed in the mixing shell 4, a rotating rod 42 being provided above the perforated plate 41, a blade 43 being fixed on the rotating rod 42, and a motor 44 for driving the rotating rod 42 to rotate being provided on the mixing shell 4; a group of powder funnels 5 being provided above the feeding seat 1, a feeding pipe 51 being connected to the mixing shell 4 being connected at the bottom of the powder funnel 5, a support plate 47 being fixed to the mixing shell 4 being fixed on the feeding seat 1, and a vertical pipe 7 being inserted into the water adding funnel 2 at the bottom of the mixing shell 4.
[0015] like Figure 1 and Figure 2 As shown, a sieve plate 45 located above the blades 43 is fixed in the mixing shell 4, and a liftable pressing plate 6 is provided above the sieve plate 45. The pressing plate 6 is provided with a perforation, and the discharge end of the feed pipe 51 is located between the sieve plate 45 and the pressing plate 6; an electric telescopic rod 61 is fixed to the top of the mixing shell 4, and the telescopic end of the electric telescopic rod 61 passes through the top of the mixing shell 4 and is connected to the pressing plate 6; a fixed plate 46 located above the pressing plate 6 is fixed in the mixing shell 4, and the telescopic end of the electric telescopic rod 61 passes through the fixed plate 46; a circular hole for the bottom end of the rotating rod 42 to pass through is provided at the axis of the fixed plate 46, the pressing plate 6 and the sieve plate 45. After the powders in a group of powder hoppers 5 enter the mixing shell 4 respectively, they first fall on the top of the sieve plate 45, and the lumpy powders are located on the sieve plate 45, while the unclumped powders pass through the sieve holes on the sieve plate 45 and fall downward; then the telescopic end of the electric telescopic rod 61 drives the pressing plate 6 to move downward, and the pressing plate 6 can crush the agglomerated powders so that the powders can pass through the sieve holes on the sieve plate 45 and fall downward; when the pressing plate 6 moves downward, the powders falling on the pressing plate 6 can also fall downward through the perforations on the pressing plate 6, and after the agglomerated powders fall on the pressing plate 6, when the pressing plate 6 recovers and moves upward, the fixed plate 46 can crush the agglomerated powders on the top of the pressing plate 6 to prevent the agglomerated powders from accumulating on the top of the pressing plate 6.
[0016] like Figure 1As shown, a first solenoid valve 31 is installed on the water inlet pipe 3, a second solenoid valve 52 is installed on the feed pipe 51, and a control panel 49 is fixed on the support plate 47. The control panel 49 is electrically connected to the first solenoid valve 31 and the second solenoid valve 52, respectively. The opening and closing of the first solenoid valve 31 and the second solenoid valve 52 can be controlled by the control panel 49. By controlling the opening degree of the first solenoid valve 31 and the second solenoid valve 52, the water delivery amount of the water inlet pipe 3 and the delivery amount of the powder delivered by the feed pipe 51 can be controlled respectively, ensuring that the powder and water are discharged and stopped synchronously to ensure that they are fully mixed; and the staff can control the second solenoid valve 52 on a group of feed pipes 51 respectively to ensure that different powders in a group of powder hoppers 5 can also be discharged and stopped synchronously.
[0017] like Figure 1 As shown, a ring-shaped fixed pipe 32 is fixed inside the water adding funnel 2. The bottom of the vertical pipe 7 is located below the inner side of the fixed pipe 32. The drainage end of the water inlet pipe 3 is connected to the fixed pipe 32, and a group of drainage holes are opened at the bottom of the fixed pipe 32. The water inlet pipe 3 is connected to an external water pump. When the external water pump discharges water into the water inlet pipe 3, the water inlet pipe 3 can then transport the water into the fixed pipe 32. The group of drainage holes at the bottom of the fixed pipe 32 are distributed in a ring array. The water entering the fixed pipe 32 can be evenly discharged downward into the water adding funnel 2 through the group of drainage holes, so that the water can cover the inner wall of the water adding funnel 2 below the fixed pipe 32. When the premixed powder enters the water adding funnel 2, it can also fully contact with the water and be premixed.
[0018] like Figure 1 As shown, a mixing funnel 9 is fixed to the top of the feeding seat 1, and the bottom of the water adding funnel 2 is located in the mixing funnel 9; an automatic telescopic rod 8 is fixed to the feeding seat 1, and a collecting cylinder 81 located at the bottom of the mixing funnel 9 is fixed to the telescopic end of the automatic telescopic rod 8. The collecting cylinder 81 is connected to a hose 82 that runs through the feeding seat 1. The powder and water discharged from the bottom of the water adding funnel 2 are pre-mixed and then enter the mixing funnel 9, and then continue to fall downward; when it is necessary to clean the inner walls of the water adding funnel 2 and the mixing funnel 9, the automatic telescopic rod 8 can be activated to make the collecting cylinder 81 directly below the mixing funnel 9, and then water can be allowed to enter the water inlet pipe 3 and then discharged into the water adding funnel 2, so that the inner walls of the water adding funnel 2 and the mixing funnel 9 can be cleaned in time, and the cleaned waste water and impurities are discharged to the outside of the feeding seat 1 through the hose 82.
[0019] like Figure 1 As shown, the powder hopper 5 is fixed with a support rod 48 connected to a support plate 47; the feeding base 1 is fixed with a connecting flange 10. The support rod 48 can increase the stability of the powder hopper 5; the feeding base 1 can be connected to the feed end of the mixer through the connecting flange 10.
[0020] During use, after a plurality of different powders are loaded into a group of powder funnels 5 (the number of a group of powder funnels 5 is at least three), the plurality of different powders can be transported to the mixing shell 4 through a group of feeding pipes 51, and the plurality of different powders fall on the top of the perforated plate 41 respectively; at the same time, after the motor 44 is started (the motor 44 is fixed on the top of the mixing shell 4, and the rotating shaft of the motor 44 passes through the top of the mixing shell 4 and is fixed to the top of the rotating rod 42), the blade 43 can be driven to rotate by the rotating rod 42 (the blade 43 is provided with holes, and the blade 41 is provided with holes). There are two groups of blades 3, and the two groups of blades 43 are symmetrically distributed up and down, so that a variety of different powders can be better stirred), and the various powders falling on the perforated plate 41 are stirred, so that the various powders are premixed, and the premixed powders can fall downward through the perforations on the perforated plate 41. At this time, water enters the water adding funnel 2 through the water inlet pipe 3, and the water can be mixed with the premixed various powders when they are discharged through the bottom of the water adding funnel 2 at the same time, so as to improve the mixing efficiency of water and the various different powders.
[0021] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the utility model and are not limiting. Although the utility model is described in detail with reference to the preferred embodiments, ordinary technicians in this field should understand that the technical solution of the utility model can be modified or replaced by equivalents without departing from the purpose and scope of the technical solution of the utility model, which should be included in the scope of the claims of the utility model.
Claims
1. A feeding device for biscuit production, comprising a feeding seat (1), characterized in that: A fixedly connected water adding funnel (2) is passed through the top of the feeding seat (1), a fixedly connected water inlet pipe (3) is passed through one side of the water adding funnel (2), a mixing shell (4) is provided above the water adding funnel (2), a perforated plate (41) is fixed in the mixing shell (4), a rotating rod (42) is provided above the perforated plate (41), a blade (43) is fixed on the rotating rod (42), and a motor (44) for driving the rotating rod (42) to rotate is provided on the mixing shell (4); a group of powder funnels (5) are provided above the feeding seat (1), the bottom of the powder funnels (5) is connected to a feeding pipe (51) connected to the mixing shell (4), a supporting plate (47) fixed to the mixing shell (4) is fixed on the feeding seat (1), and the bottom of the mixing shell (4) is connected to a vertical pipe (7) inserted into the water adding funnel (2).
2. A feeding device for biscuit production according to claim 1, characterized in that: A sieve plate (45) located above the blade (43) is fixed in the mixing shell (4); a liftable pressing plate (6) is provided above the sieve plate (45); a perforation is provided on the pressing plate (6); a discharge end of the feed pipe (51) is located between the sieve plate (45) and the pressing plate (6); an electric telescopic rod (61) is fixed on the top of the mixing shell (4); the telescopic end of the electric telescopic rod (61) passes through the top of the mixing shell (4) and is connected to the pressing plate (6); a fixed plate (46) located above the pressing plate (6) is fixed in the mixing shell (4); the telescopic end of the electric telescopic rod (61) passes through the fixed plate (46); a circular hole for the bottom end of the rotating rod (42) to pass through is provided at the axis of the fixed plate (46), the pressing plate (6) and the sieve plate (45).
3. A feeding device for biscuit production according to claim 1, characterized in that: A first electromagnetic valve (31) is installed on the water inlet pipe (3), a second electromagnetic valve (52) is installed on the material delivery pipe (51), and a control panel (49) is fixed on the support plate (47).
4. A feeding device for biscuit production according to claim 1, characterized in that: An annular fixed pipe (32) is fixed inside the water adding funnel (2), the bottom of the vertical pipe (7) is located below the inner side of the fixed pipe (32), the drainage end of the water inlet pipe (3) is connected to the fixed pipe (32), and a group of drainage holes are opened at the bottom of the fixed pipe (32).
5. A feeding device for biscuit production according to claim 1, characterized in that: A mixing funnel (9) is fixed on the top of the feeding seat (1), and the bottom of the water adding funnel (2) is located in the mixing funnel (9); an automatic telescopic rod (8) is fixed in the feeding seat (1), and a collecting cylinder (81) located at the bottom of the mixing funnel (9) is fixed at the telescopic end of the automatic telescopic rod (8), and a hose (82) that passes through the feeding seat (1) is connected to the collecting cylinder (81).
6. A feeding device for biscuit production according to claim 1, characterized in that: A support rod (48) connected to a support plate (47) is fixed on the powder funnel (5); and a connecting flange (10) is fixed on the feeding seat (1).
Citation Information
Patent Citations
Feeding machine for biscuit processing
CN221128615U