Rice flour rubbing and scattering device
By introducing horizontal and vertical conveying mechanisms into the rice noodle processing device and using a rubbing roller during vertical conveying, the problems of rice noodles sticking and slipping are solved, achieving a more efficient rubbing effect.
Patent Information
- Application Number
- CN202520032991.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Existing rice noodle processing equipment is prone to causing rice noodle strips to stick together during the kneading process, and the kneading effect is not good, causing the rice noodles to slip off the hanging rod, which affects production efficiency.
The system employs a first horizontal conveying mechanism and a vertical lifting conveying mechanism, combined with the rubbing mechanisms on both sides. It converts horizontal conveying to vertical conveying, and during the vertical conveying process, the rubbing rollers are used to rub and break up the rice noodles to ensure that the rice noodles are subjected to uniform force and prevent them from slipping.
It improves the effect of breaking up rice noodles, ensuring that the rice noodles do not slip during transportation, and improves production efficiency and the uniformity of breaking up.
Smart Images

Figure CN223640135U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rice noodle processing technology, specifically to a rice noodle kneading and dispersing device. Background Technology
[0002] Rice noodles are a popular food among consumers. They are made from rice through processes such as soaking, steaming, and pressing. Rice noodles are soft, chewy, and elastic. They don't become mushy when boiled and don't break easily when stir-fried. They can be served with various toppings or soups, and are smooth and flavorful.
[0003] Existing rice noodle processing involves extruding the rice noodles into strips using a rice noodle machine. However, the extruded rice noodle strips tend to stick together, forming a cloth-like structure. To prevent this clumping, the sticky rice noodle strips need to be loosened and separated. A utility model patent application with application number "202321600567.3," entitled "A Dispersing Device to Prevent Rice Noodle Breakage," utilizes a dispersing mechanism and a reciprocating mechanism inside a housing. These mechanisms work together to hang multiple sets of rice noodles on hanging rods, which are then placed on a transmission belt within sliding holes. With the assistance of a drive motor and protrusions, multiple sets of hanging rods can be simultaneously mounted, enabling assembly line operation and improving work efficiency. The reciprocating groove contains a rotating rod, a cam, and a reciprocating spring. Driven by a reciprocating motor, the slider and brush perform a frequency-controlled reciprocating motion, dispersing the gradually moving rice noodles from top to bottom, thus preventing clumping. This patented method involves rubbing the rice noodles from one side, which makes them easy to slip off the hanging rod, resulting in a low rubbing rate and poor effect. Utility Model Content
[0004] The purpose of this invention is to provide a rice flour kneading and dispersing device to solve the problems existing in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a rice noodle rubbing and dispersing device, comprising: a first horizontal conveying mechanism for conveying a hanging rod for suspending rice noodles; a vertical lifting conveying mechanism connected to the first horizontal conveying mechanism for vertically lifting and conveying the hanging rod on the first horizontal conveying mechanism; and two sets of rubbing and dispersing mechanisms located on both sides of the vertical lifting conveying mechanism and above the first horizontal conveying mechanism for rubbing and dispersing the rice noodles on the vertical lifting conveying mechanism.
[0006] As a preferred embodiment of this technical solution, the first horizontal conveying mechanism includes two sets of parallel conveying components I. Each conveying component I includes a driver I, a drive wheel I, a driven wheel I, and a conveying element I. The output end of the driver I is connected to the drive wheel I, and the conveying element I is connected between the drive wheel I and the driven wheel I. A limiting mechanism for the hanging rod is provided on the conveying element I.
[0007] As a preferred embodiment of this technical solution, the vertical lifting and conveying mechanism includes two sets of parallel conveying components II. The two sets of conveying components II are symmetrically arranged on the outside or inside of the first horizontal conveying mechanism. The conveying component II includes a driver II, a driving wheel II, a driven wheel II, and a conveying element II. A fixed rod perpendicular to its surface is provided on the conveying element II. The outer end of the fixed rod is rotatably connected to a hook for gripping the hanging rod. The opening of the hook always faces upward. The driving wheel II, the driven wheel II, and the conveying element II are arranged into two square closed loops with a vertical section and a horizontal section. One of the vertical sections is connected to the hanging rod on the first horizontal conveying mechanism through the hook on the conveying element II.
[0008] As a preferred embodiment of this technical solution, the vertical lifting and conveying mechanism includes two sets of parallel conveying components II. The two sets of conveying components II are symmetrically arranged on the outside or inside of the first horizontal conveying mechanism. Each conveying component II includes a column, a driver II, a lead screw, and a moving block. The column is symmetrically arranged on the outside or inside of the first horizontal conveying mechanism. The driver II is located at the upper end of the column. The lead screw is rotatably arranged on the opposing surfaces of the column. The output end of the driver II is connected to the lead screw, driving the lead screw to rotate. The moving block is threadedly connected to the lead screw, and the moving block is provided with a groove for supporting the hanging rod.
[0009] As a preferred embodiment of this technical solution, a second horizontal conveying mechanism is also included. The second horizontal conveying mechanism is located on one side of the upper part of the column and includes two sets of parallel conveying components III. The conveying component III includes a driver III, a driving wheel III, a driven wheel III, an adjusting wheel III, and a conveying element III. The output end of the driver III is connected to the driving wheel III. The adjusting wheel III is located between the driving wheel III and the driven wheel III and is used to adjust the tension of the conveying element III. The driving wheel III, the driven wheel III, and the adjusting wheel III are connected to the conveying element III. A limiting mechanism for the hanging rod is provided on the conveying element III. Both the driven wheel III and the adjusting wheel III are provided with adjusters. The adjusters drive the driven wheel III and the adjusting wheel III to slide on the second horizontal conveying mechanism.
[0010] As a preferred embodiment of this technical solution, the limiting mechanism includes a limiting block, on which a groove corresponding to the hanging rod is provided.
[0011] As a preferred embodiment of this technical solution, the dispersing mechanism includes a support column and a driver IV. The support column is located on the outside or inside of the first horizontal conveying mechanism, the driver IV is located on the support column, and a dispersing roller is arranged between the support columns. The output end of the driver IV is connected to the dispersing roller to drive the dispersing roller to rotate. A dispersing rod is arranged on the dispersing roller.
[0012] As a preferred embodiment of this technical solution, it also includes a controller, and the first horizontal conveying mechanism, the vertical lifting conveying mechanism, and the shredding mechanism are all electrically connected to the controller.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: This utility model is provided with a first horizontal conveying mechanism and a vertical lifting conveying mechanism. The vertical lifting conveying mechanism is provided with a rubbing mechanism on both sides. After the hanging rod with rice noodles is horizontally conveyed, it is vertically conveyed. At the vertical conveying point, the rubbing mechanism on both sides rubs the rice noodles, so that the rice noodles are evenly stressed and prevented from slipping off the hanging rod, thus improving the rubbing effect. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model.
[0015] Figure 2 This utility model Figure 1 AA view.
[0016] Figure 3 This is another structural schematic diagram of the AA view of this utility model.
[0017] Figure 4 This is a three-dimensional structural diagram of the present invention.
[0018] Figure 5 The form of the fixing rod and hook of this utility model. Figure 1 .
[0019] Figure 6 The form of the fixing rod and hook of this utility model. Figure 2 .
[0020] Figure 7 The form of the fixing rod and hook of this utility model. Figure 3 .
[0021] Figure 8 This is another structural schematic diagram of the present invention.
[0022] Figure 9 This utility model Figure 8 Top view.
[0023] Figure 10 This is a schematic diagram of the vertical lifting and conveying mechanism of this utility model.
[0024] Figure 11 This is another structural schematic diagram of the vertical lifting and conveying mechanism of this utility model.
[0025] Figure 12 This is a schematic diagram of the dispersing mechanism of this utility model. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figure 1-12 This utility model discloses a rice noodle rubbing and dispersing device, comprising: a first horizontal conveying mechanism 1 for conveying hanging rods 4 for suspending rice noodles; a vertical lifting conveying mechanism 2 connected to the first horizontal conveying mechanism 1 for vertically lifting and conveying the hanging rods on the first horizontal conveying mechanism 1; and two sets of rubbing and dispersing mechanisms 3 located on both sides of the vertical lifting conveying mechanism 2 and above the first horizontal conveying mechanism 1 for rubbing and dispersing the rice noodles on the vertical lifting conveying mechanism 2.
[0028] In a specific implementation of this utility model, the first horizontal conveying mechanism 1 includes two sets of parallel conveying components I. The conveying components I are mounted on a frame and include a driver I1.1, a driving wheel I1.2, a driven wheel I1.3, and a conveying element I1.4. The output end of the driver I1.1 is connected to the driving wheel I1.2, and the conveying element I1.4 is connected between the driving wheel I1.2 and the driven wheel I1.3. A limiting mechanism for the hanging rod 4 is provided on the conveying element I1.4. The vertical lifting conveying mechanism 2 can adopt two structural forms. One type includes two sets of parallel conveying components II, symmetrically arranged on the outside or inside of the first horizontal conveying mechanism 1, i.e., symmetrically arranged with respect to the axis of the conveying direction of the first horizontal conveying mechanism 1. The conveying component II includes a driver II2.1, a driving wheel II2.2, a driven wheel II2.3, and a conveying element II2.4. A fixed rod 5 perpendicular to its surface is provided on the conveying element II2.4, and the outer end of the fixed rod 5 is rotatably connected to a device for gripping the hanging rod 4. Hook 6, the opening of hook 6 always faces upward, that is, the lower part of hook 6 is heavier than the upper part. When hook 6 moves with conveyor II 2.4, the opening of hook 6 is always at the top. The driving wheel II 2.2, the driven wheel II 2.3 and the conveyor II 2.4 are set into a square closed loop with two vertical sections and a horizontal section. One of the vertical sections is connected to the hanging rod 4 on the first horizontal conveying mechanism 1 through hook 6 on conveyor II 2.4. That is, hook 6 on conveyor II 2.4 hooks the hanging rod 4 on the first horizontal conveying mechanism 1, and converts the hanging rod 4 from horizontal conveying to vertical lifting conveying. Another type of vertical lifting conveying mechanism 2 includes two sets of parallel conveying components II. The two sets of conveying components II are symmetrically arranged on the outside or inside of the first horizontal conveying mechanism 1, that is, symmetrically arranged with respect to the axis of the conveying direction of the first horizontal conveying mechanism 1. The conveying component II includes a column 2.5, a driver II 2.6, a lead screw 2.7, and a moving block 2.8. The column 2.5 is symmetrically arranged on the outside or inside of the first horizontal conveying mechanism 1. The driver II 2.6 is located on the upper end of the column 2.5. The lead screw 2.7 is rotatably mounted on the opposing surfaces of the column 2.5. The output end of actuator II 2.6 is connected to lead screw 2.7, driving lead screw 2.7 to rotate. A moving block 2.8 is threaded onto lead screw 2.7. The moving block 2.8 is provided with a groove for supporting hanging rod 4. Alternatively, actuator II 2.6 can be set on the upper end of one column 2.6, with a pulley at the output end of actuator II 2.6. The upper end of lead screw 2.7 on another column 2.5 extends upward and is provided with another pulley. A transmission belt 2.9 is connected between the two pulleys, that is, only one actuator II 2.6 drives the lead screw 2.7 on both columns 2.5 to rotate.This type of vertical lifting conveyor 2 does not have a horizontal conveying mechanism at the discharge point, so a second horizontal conveying mechanism 7 is provided. The second horizontal conveying mechanism 7 is located on one side of the upper part of the column 2.5 and includes two sets of parallel conveying components Ⅲ. The conveying components Ⅲ are mounted on the frame and include a driver Ⅲ 7.4, a drive wheel Ⅲ 7.1, a driven wheel Ⅲ 7.2, an adjusting wheel Ⅲ 7.3, and a conveying component Ⅲ 7.5. The output end of the driver Ⅲ 7.4 is connected to the drive wheel Ⅲ 7.1. The adjusting wheel Ⅲ 7.3 is located between the drive wheel Ⅲ 7.1 and the driven wheel Ⅲ 7.2 and is used to adjust the tension of the conveying component Ⅲ 7.5. The drive wheel Ⅲ 7.1, the driven wheel Ⅲ 7.2, and the adjusting wheel Ⅲ 7.3 are connected to the conveying component Ⅲ 7.5. A limiting mechanism of the hanging rod 4 is provided on the conveying component Ⅲ 7.5. Both the driven wheel Ⅲ 7.2 and the adjusting wheel Ⅲ 7.3 are provided with adjusters 8. The adjusters 8 drive the driven wheel Ⅲ 7.2 and the adjusting wheel Ⅲ 7.3 to slide on the second horizontal conveying mechanism 7. The limiting mechanism includes a limiting block, on which a groove corresponding to the hanging rod 4 is provided.
[0029] In a specific implementation of this utility model, conveying components I, II, and III can adopt a chain conveyor or a belt conveyor structure. When conveying component II is located outside the first horizontal conveying mechanism 1, the hanging rod 4 on the first horizontal conveying mechanism 1 extends beyond the first horizontal conveying mechanism 1, that is, the length of the hanging rod 4 is longer than the width of the first horizontal conveying mechanism 1. The second horizontal conveying mechanism 7 is made movable at the end of the frame near the column 2.5. Specifically, the driven wheel III 7.2 is driven by the adjuster 8 to slide horizontally on the frame, moving closer to or away from the column 2.5. The adjusting wheel III 7.3, under the action of the adjuster 8, correspondingly loosens or tightens the conveying component III 7.5. The dispersing mechanism includes a support column 3.1 and a driver IV 3.2. The support column 3.1 is located on the outside or inside of the first horizontal conveying mechanism 1, and the driver IV 3.2 is located on the upper end of the support column 3.1. A dispersing roller 3.3 is arranged between the support columns 3.1. The output end of the driver IV 3.2 is connected to the dispersing roller 3.3, driving the dispersing roller 3.3 to rotate on the support column 3.1. Dispersing rods are arranged on the dispersing roller 3.3, and the dispersing rods are evenly distributed on the circumference of the dispersing roller 3.3. This utility model also includes a controller. The first horizontal conveying mechanism 1, the vertical lifting conveying mechanism 2, and the dispersing mechanism 3 are all electrically connected to the controller, that is, the driver I, driver II 2.6, driver III 7.4, and the adjuster 8 are electrically connected to the controller.
[0030] In operation, the hanging rod with rice noodles is placed into the groove of the conveying component I of the first horizontal conveying mechanism. As the first horizontal conveying mechanism conveys the rice noodles to the vertical lifting conveying mechanism, the hook of the vertical lifting conveying mechanism hooks onto the hanging rod or the groove of the moving block to support the hanging rod, realizing the conversion from horizontal conveying to vertical lifting conveying. Then, the adjustment mechanism of the second horizontal conveying mechanism drives the frame to move to the column to support the hanging rod, realizing the conversion from vertical lifting conveying to horizontal conveying again. In the vertical lifting conveying stage, this invention uses two rubbing mechanisms to effectively rub and rub the rice noodles, making them evenly rubbed and preventing them from slipping, thus improving the rubbing effect.
[0031] Finally, it should be noted that the above-described embodiments are merely specific implementations of this utility model, used to illustrate the technical solution of this utility model, and not to limit it. The protection scope of this utility model is not limited thereto. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that any person skilled in the art can still modify or easily conceive of changes to the technical solutions described in the foregoing embodiments, or make equivalent substitutions for some of the technical features, within the technical scope disclosed in this utility model. These modifications, changes, or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model, and should all be covered within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.
Claims
1. A rice flour kneading and dispersing device, characterized in that, include: The first horizontal conveying mechanism is used to convey the hanging rods for suspending rice noodles. The vertical lifting conveying mechanism is connected to the first horizontal conveying mechanism and is used to vertically lift and convey the hanging rods on the first horizontal conveying mechanism. Two sets of rubbing and dispersing mechanisms are located on both sides of the vertical lifting conveying mechanism and above the first horizontal conveying mechanism, and are used to rub and disperse the rice noodles on the vertical lifting conveying mechanism.
2. The rice flour kneading device according to claim 1, characterized in that: The first horizontal conveying mechanism includes two sets of parallel conveying components I. Each conveying component I includes a driver I, a drive wheel I, a driven wheel I, and a conveying element I. The output end of the driver I is connected to the drive wheel I, and the drive wheel I and the driven wheel I are connected to the conveying element I. A limiting mechanism for the hanging rod is provided on the conveying element I.
3. The rice flour kneading device according to claim 2, characterized in that: The vertical lifting and conveying mechanism includes two sets of parallel conveying components II, which are symmetrically arranged on the outside or inside of the first horizontal conveying mechanism. Each conveying component II includes a driver II, a drive wheel II, a driven wheel II, and a conveying element II. A fixed rod perpendicular to its surface is provided on the conveying element II. The outer end of the fixed rod is rotatably connected to a hook for gripping the hanging rod. The opening of the hook always faces upward. The drive wheel II, the driven wheel II, and the conveying element II are arranged into two square closed loops with a vertical section and a horizontal section. One of the vertical sections is connected to the hanging rod on the first horizontal conveying mechanism through the hook on the conveying element II.
4. The rice flour kneading device according to claim 2, characterized in that: The vertical lifting and conveying mechanism includes two sets of parallel conveying components II. The two sets of conveying components II are symmetrically arranged on the outside or inside of the first horizontal conveying mechanism. Each conveying component II includes a column, a driver II, a lead screw, and a moving block. The column is symmetrically arranged on the outside or inside of the first horizontal conveying mechanism. The driver II is located at the upper end of the column. The lead screw is rotatably arranged on the opposing surfaces of the column. The output end of the driver II is connected to the lead screw, driving the lead screw to rotate. The moving block is threadedly connected to the lead screw, and the moving block is provided with a groove for supporting the hanging rod.
5. The rice flour kneading device according to claim 4, characterized in that: It also includes a second horizontal conveying mechanism, which is located on one side of the upper part of the column. The second horizontal conveying mechanism includes two sets of parallel conveying components Ⅲ. The conveying component Ⅲ includes a driver Ⅲ, a driving wheel Ⅲ, a driven wheel Ⅲ, an adjusting wheel Ⅲ, and a conveying element Ⅲ. The output end of the driver Ⅲ is connected to the driving wheel Ⅲ. The adjusting wheel Ⅲ is located between the driving wheel Ⅲ and the driven wheel Ⅲ and is used to adjust the tension of the conveying element Ⅲ. The driving wheel Ⅲ, the driven wheel Ⅲ, and the adjusting wheel Ⅲ are connected to the conveying element Ⅲ. The conveying element Ⅲ is provided with a limiting mechanism for the hanging rod. Both the driven wheel Ⅲ and the adjusting wheel Ⅲ are provided with adjusters. The adjusters drive the driven wheel Ⅲ and the adjusting wheel Ⅲ to slide on the second horizontal conveying mechanism.
6. The rice flour kneading device according to claim 5, characterized in that: The limiting mechanism includes a limiting block, on which a groove corresponding to the hanging rod is provided.
7. The rice flour kneading device according to claim 1, characterized in that: The dispersing mechanism includes a support column and a driver IV. The support column is located on the outside or inside of the first horizontal conveying mechanism. The driver IV is located on the support column. Dispersing rollers are arranged between the support columns. The output end of the driver IV is connected to the dispersing rollers to drive the dispersing rollers to rotate. Dispersing rods are arranged on the dispersing rollers.
8. The rice flour kneading device according to claim 1, characterized in that: It also includes a controller, and the first horizontal conveying mechanism, the vertical lifting conveying mechanism, and the shredding mechanism are all electrically connected to the controller.
Citation Information
Patent Citations
Twisting device capable of preventing rice noodles from being broken
CN219920236U