Seasoning fine preparation machine

The multi-layer horizontally supported discharge frame and automated control solve the problem of low space utilization of the seasoning mixing machine, and achieve efficient seasoning mixing and guarantee of weighing accuracy.

CN223392364UActive Publication Date: 2025-09-30ZHENGZHOU SANHUA TECH & IND
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Patent Information

Application Number
CN202422591573.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-09-30
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

Existing seasoning mixing machines take up a large space, especially the seasoning barrel, which results in poor space utilization in the kitchen.

Method used

The material discharging frame is designed with multiple layers of horizontal support. The seasoning barrels are arranged in multiple layers in the vertical direction. Combined with the automatic control of the stirring power component and the powder box, efficient use of space is achieved. The receiving box is used to prevent residual liquid or powder from affecting the weighing accuracy.

Benefits of technology

More efficient seasoning mixing is achieved in a limited space, space utilization is improved, and weighing accuracy and device cleanliness are ensured.

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Abstract

The utility model provides a seasoning fine preparation machine capable of improving the space utilization rate, which comprises at least two seasoning barrels used for containing liquid raw materials, a material receiving position used for receiving the materials and a material falling position arranged above the material receiving position, and the seasoning barrels are connected with an inlet of a pump body through feeding pipes. An outlet of the pump body is communicated to a blanking position above the receiving position through a discharging pipe; the device further comprises at least one discharging frame, each discharging frame comprises a supporting vertical cabinet, the supporting vertical cabinet is fixedly provided with at least two layers of transverse supports from top to bottom, and the seasoning barrels are arranged on the transverse supports. The pump body is arranged in the supporting vertical cabinet, and the inner space of the transverse support is communicated with the inner space of the supporting vertical cabinet. The multi-layer seasoning barrel placing mode is adopted in the vertical direction, the three-dimensional space can be utilized in a limited mode, the space in the horizontal direction is saved, and the multi-layer seasoning barrel can better adapt to the small space.
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Description

Technical Field

[0001] The utility model belongs to the field of food machinery, and in particular relates to a seasoning mixing machine. Background Art

[0002] With the advancement of automation and intelligence in the catering industry, several seasoning dispensers are now available on the market that automatically mix liquid, powdered, or mixed ingredients. These include the intelligent automatic catering seasoning dispenser described in patent CN105640378A and the seasoning dispenser described in patent CN208463884U. However, existing seasoning dispensers, particularly the seasoning barrel, take up considerable space, resulting in poor kitchen utilization. Summary of the Invention

[0003] The utility model provides a seasoning mixing machine which improves space utilization.

[0004] The purpose of the present utility model is achieved in the following way: a seasoning mixing machine includes at least two seasoning barrels for arranging liquid raw materials, a receiving position for receiving materials, and a discharge position arranged above the receiving position, the seasoning barrels are connected to the pump body inlet through a feed pipe, and the pump body outlet is connected to the discharge position above the receiving position through a discharge pipe; it also includes at least one discharge frame, each discharge frame includes a support cabinet, the support cabinet is fixedly provided with at least two layers of horizontal supports from top to bottom, and the seasoning barrels are arranged on the horizontal supports.

[0005] The pump body is arranged in the supporting cabinet, the transverse support is in the shape of a hollow box, the inner space of the transverse support is connected with the inner space of the supporting cabinet, and the feed pipe between the pump body and the seasoning barrel passes through the inner space of the transverse support.

[0006] A stirring power assembly is arranged inside the transverse support, and the stirring power assembly includes at least one reduction motor fixed inside the transverse support, and the output shaft of the reduction motor is arranged vertically and extends from the lower surface of the transverse support; a driving plate is arranged at the bottom of the output shaft, and the seasoning barrel includes a detachably connected barrel body and a barrel cover, a stirring shaft is rotatably arranged in the seasoning barrel, and the upper end of the stirring shaft extends out of the barrel cover; a fork is arranged at the top of the stirring shaft, and the driving plate cooperates with the fork; the reduction motor is electrically connected to the control module.

[0007] The material receiving position includes a drop hole, and the outlet of the discharge pipe of the pump body is connected to the drop hole; a powder box is arranged near the discharge frame, and the drop hole is arranged at the bottom of the powder box; at least one powder box is arranged in the powder box, and the discharge port of the powder box is connected to the drop hole through a powder feeding mechanism.

[0008] A discharge frame is respectively provided on the left and right sides of the powder box; an electronic scale electrically connected to the control module is provided at the material receiving position; an input module electrically connected to the control module is provided above the powder box or above the discharge frame.

[0009] The left side of the powder box is fixed on the right end face of the left discharge frame, and the right side of the powder box is fixed on the left end face of the right discharge frame; the space between the bottom of the powder box and the electronic scale is connected front to back, and no obstructions are set in front and behind the position of the electronic scale; the input module is set on the upper surface of the powder box.

[0010] A weighing mechanism is provided at the material receiving position; a material receiving box is provided in the space above the material receiving position and below the material dropping position; the material receiving box is driven by a linear drive mechanism to move linearly to the position directly below the material dropping position to cover the material dropping position or to move linearly to a position away from the material dropping position.

[0011] The material receiving position includes a drop hole, and the outlet of the discharge pipe of the pump body is connected to the drop hole; the seasoning mixing machine also includes a powder box, and the drop hole is arranged at the bottom of the powder box; two horizontal guide rails are also arranged on both sides of the bottom of the powder box, and sliders are arranged on the horizontal guide rails, and the material receiving box is slidably arranged on the horizontal guide rails through sliders; the linear drive mechanism includes a driving motor arranged at the bottom of the powder box, a driving wheel is fixedly arranged on the output shaft of the driving motor, and a driven wheel is rotatably arranged at the bottom of the powder box, a synchronous belt is arranged between the driving wheel and the driven wheel, and the synchronous belt is fixedly connected to the material receiving box or the slider; the driving motor is electrically connected to the control module.

[0012] Compared to the existing technology, the present invention uses a multi-layered horizontal support frame to place the seasoning barrels. The multi-layered vertical arrangement of the seasoning barrels can effectively utilize the three-dimensional space, save horizontal space, and better adapt to smaller spaces. A receiving box is provided below the drop position to prevent residual liquid or powder from falling onto the electronic scale, ensuring accuracy and cleanliness of the electronic scale. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is an overall schematic diagram of the utility model.

[0014] Figure 2 It is a cross-sectional view of the unloading frame.

[0015] Figure 3 This is the matching diagram of the drive plate and the shift fork.

[0016] Figure 4 It is a schematic diagram of the powder box.

[0017] Figure 5 It is a schematic diagram of the bottom drop hole of the powder box and the bottom of the receiving box.

[0018] Figure 6 It is a schematic diagram of the side of the powder box and the bottom receiving box.

[0019] Figure 7 yes Figure 6 Another perspective view of .

[0020] Figure 8 This is a schematic diagram of the powder box and powder drive mechanism.

[0021] Figure 9 yes Figure 8 Sectional view.

[0022] Figure 10 yes Figure 1 Cross-section view from the middle.

[0023] Among them, there are the discharge frame 1, input module 2, powder box 3, drop hole 31, seasoning barrel 4, shift fork 41, powder box 5, discharge port 51, feeding screw 52, ​​DC motor 53, electronic scale 6, horizontal guide rail 7, receiving box 8, drive motor 9, driven wheel 10, driving wheel 11, synchronous belt 12, reduction motor 13, drive plate 14, storage partition 15, pump body 16, support cabinet 17, and horizontal support 18. DETAILED DESCRIPTION

[0024] In this utility model, unless otherwise specified or limited, the technical terms used herein shall have the ordinary meanings understood by persons skilled in the art to which this utility model relates. Terms such as "connected," "connected," "fixed," and "disposed" should be interpreted broadly and may refer to fixed, removable, or integral connections; direct or indirect connections through an intermediary; and mechanical or electrical connections. Unless otherwise specified or limited, a first feature being "above" or "below" a second feature may mean that the first and second features are in direct contact or indirect contact through an intermediary. Furthermore, a first feature being "above," "above," or "above" a second feature may mean that the first feature is directly above or diagonally above the second feature, or simply means that the first feature is at a higher level than the second feature. A first feature being "below," "below," or "below" a second feature may mean that the first feature is directly below or diagonally below the second feature, or simply means that the first feature is at a lower level than the second feature. Relational terms such as first and second are used solely to distinguish one entity or operation from another and do not necessarily require or imply any actual relationship or order between these entities or operations. The terms used in the description, such as "center", "transverse", "longitudinal", "length", "width", "thickness", "height", "front", "back", "left", "right", "up", "down", "vertical", "horizontal", "top", "bottom", "inside", "outside", "axial", "radial", "circumferential", "clockwise", "counterclockwise", etc., to indicate the orientation or position relationship are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the device or component referred to must have a specific orientation, be constructed and operate in a specific orientation.

[0025] The following will combine the accompanying drawings and specific embodiments to clearly and completely describe the technical solution of the present invention. Figure 1-10 As shown, a seasoning blending machine includes at least two seasoning barrels 4 for storing liquid raw materials, a receiving station for receiving the materials, and a discharge station located above the receiving stations. The seasoning barrels 4 are connected to the inlet of a pump body 16 via a feed pipe, and the outlet of the pump body 16 is connected to the discharge station above the receiving station via a discharge pipe. The machine also includes at least one discharge frame 1, each of which includes a support cabinet 17 with at least two layers of transverse supports 18 fixedly arranged from top to bottom. The seasoning barrels 4 are mounted on these transverse supports 18. The shape of these transverse supports 18 can be customized and can include various shapes such as plate, frame, or hollow box. Each pump body 16 corresponds to a different type of liquid raw material. In this utility model, a discharge frame 1 with multiple layers of transverse supports 18 is used to store the seasoning barrels 4. This vertical arrangement of the seasoning barrels 4 in multiple layers maximizes the use of three-dimensional space, conserves horizontal space, and is more adaptable to smaller spaces.

[0026] The pump body 16 is housed within the support cabinet 17. The transverse support 18 is hollow and box-shaped, with the interior of the transverse support 18 communicating with the interior of the support cabinet 17. The feed pipe between the pump body 16 and the seasoning barrel 4 passes through the interior of the transverse support 18. In this utility model, the support cabinet 17 can be provided with multiple mounting plates arranged from top to bottom. The pump bodies 16 are layered on these mounting plates, maintaining a relatively close distance to their corresponding seasoning barrels 4. The mounting plates can be either horizontal or vertical, depending on the needs. In this utility model, the pump bodies 16 are housed within the support cabinet 17. The inlet of each pump body 16 is connected to its corresponding seasoning barrel 4 via a feed pipe, while the outlet of each pump body 16 is connected to a discharge point via a discharge pipe. The feed pipe between the pump body 16 and the seasoning barrel 4 can pass through the interior of the transverse support 18, further saving space. The lid of the seasoning barrel 4 is provided with a hole through which the feed pipe extends into the seasoning barrel 4. The pump body 16 in the present invention may be a peristaltic pump.

[0027] The transverse support 18 houses a stirring power assembly. The stirring power assembly includes at least one reduction motor 13 fixed within the transverse support 18. The output shaft of the reduction motor 13 is vertically positioned and extends from the bottom surface of the transverse support 18. A drive plate 14 is located at the bottom of the output shaft. The seasoning barrel 4 comprises a detachably connected barrel body and a barrel lid. A stirring shaft is rotatably mounted within the barrel 4, with the upper end of the stirring shaft extending from the barrel lid. A shift fork 41 is located at the top of the stirring shaft, and the drive plate 14 engages with the shift fork 41. The reduction motor 13 is electrically connected to a control module. A hole is provided in the bottom surface of the transverse support 18, and the output shaft of the reduction motor 13 extends vertically from the hole provided in the bottom surface of the transverse support 18. A sheet-like drive plate 14 is connected to the output shaft of the reduction motor 13 via a horizontal pin or pin. The drive plate 14 swings around the horizontal pin or pin, allowing for easier insertion of the shift fork 41. The barrel body and the barrel lid are connected to each other via a threaded pair and can be separated. A stirring shaft is provided at the center of the barrel cover through a bearing, the top end of the stirring shaft is located outside the barrel cover, and a shift fork 41 is provided on the top of the stirring shaft. The shift fork 41 has two separately arranged cylinders, and the drive plate 14 is inserted between the two cylinders. When the output shaft of the reduction motor 13 drives the drive plate 14 to rotate until it contacts the shift fork 41, the drive plate 14 drives the shift fork 41 to rotate. The connection method of the shift fork 41 and the drive plate 14 belongs to the prior art, and reference can be made to the structure of the shift fork 41 and the drive plate 14 in patent CN111466802B. A stirring blade can be provided on the stirring shaft, and the stirring shaft is driven to rotate by the reduction motor 13 to ensure that the liquid raw materials in the seasoning barrel 4 are kept in a uniform state. The reduction motor 13 of the stirring power assembly in the present utility model is arranged in the horizontal support 18 to save space. The seasoning barrel 4 on the bottom layer of the present utility model is placed on the table or the ground where the device is placed, and the remaining seasoning barrels 4 are placed on the upper surface of the horizontal support 18. Some other spare materials can be placed on the upper top surface of the top horizontal support 18. In order to ensure the safety of the materials, a storage partition 15 can be set above the top horizontal support 18. The tail of the storage partition 15 can also be fixed to the supporting cabinet 17, and the internal spaces of the two are connected.

[0028] Furthermore, the material receiving position includes a drop hole 31, and the outlet of the discharge pipe of the pump body 16 is connected to the drop hole 31; a powder box 3 is provided near the discharge frame 1, and the drop hole 31 is provided at the bottom of the powder box 3; at least one powder box 5 is provided in the powder box 3, and the discharge port 51 of the powder box 5 is connected to the drop hole 31 through a powder feeding mechanism. The drop hole 31 is provided in the middle position of the bottom of the powder box 3, and the discharge pipe of the pump body 16 is directly opposite the drop hole 31. Multiple powder boxes 5 are provided inside the powder box 3, and each powder box 5 contains a type of powder. The powder box 5 comprises a flat and tall rectangular box, and the top surface of the rectangular box is an open surface, which serves as a feed port. The powder box 5 is provided with a discharge port 51. In order to make the discharge more controllable, the discharge port 51 is preferably provided on the side wall of the rectangular powder box 5, and a bend is provided for drainage. The powder feeding mechanism includes a horizontal feeding screw 52 arranged at the bottom of the rectangular powder box 5, one end of the feeding screw 52 extends into the discharge port 51 of the powder box 5, and the other end of the feeding screw 52 is connected to a DC motor 53 arranged on the outer wall of the powder box 5. The DC motor 53 drives the feeding screw 52 to controllably feed the powder in the rectangular feeding box from the discharge port 51, and finally drops from the drop hole 31. Through orderly arrangement, it is ensured that the discharge port 51 of each rectangular powder box 5 is connected to the drop hole 31. The DC motor 53 is electrically connected to the control module to realize automatic powder discharge and automatic stop. A plurality of drop holes 31 are provided in the accompanying drawings, and the discharge pipe of each pump body 16 corresponds to a drop hole 31, and the discharge port 51 of each powder box 5 corresponds to a drop hole 31.

[0029] A discharge frame 1 is provided on the left and right sides of the powder box 3. An electronic scale 6 electrically connected to a control module is provided at the receiving position. An input module 2 electrically connected to the control module is provided above the powder box 3 or above the discharge frame 1. The left and right sides here are relative positions and are not fixed.

[0030] The left side of the powder box 3 is fixed to the right end face of the left discharge frame 1, and the right side of the powder box 3 is fixed to the left end face of the right discharge frame 1; the space between the bottom of the powder box 3 and the electronic scale 6 is continuous from front to back. There are no obstructions in front or behind the position of the electronic scale 6, and an input module is provided on the upper surface of the powder box 3 facing forward and backward respectively. There are no obstructions in front or behind the electronic scale 6, that is, the user can take the prepared materials on the electronic scale 6 from the front of the device, or from the rear of the device through the passage between the discharge frame 1 and the lower bottom surface of the powder box 3. In order to make more reasonable use of space, the input module 2 of the device can be a touch screen, and the input module 2 is connected to the control module for data. The touch screen can be set above the powder box 3, and a pair of touch screens can also be set back to back. If the device is placed on a table in the middle of the kitchen, that is, the tables in the kitchen are arranged in a "U" shape, one operator stands in the front to operate the device and takes out the seasoning from the front, and the other operator stands in the back to operate the device and then takes out the seasoning on the electronic scale 6 from the back.

[0031] Alternatively, a weighing mechanism is provided at the material receiving position; a material receiving box 8 is provided in a space above the material receiving position and below the material dropping position; the material receiving box 8 is driven by a linear drive mechanism to move linearly to a position directly below the material dropping position to cover the material dropping position or to a position away from the material dropping position. The weighing mechanism here can be an electronic scale 6. The material receiving box 8 is provided so that it can move directly below the material dropping hole 31 to cover the material dropping hole 31, or move away from the material dropping hole 31 to clear the material dropping hole 31. After the weighing mechanism receives a sufficient amount of material, residual drips or residual powder may fall into the collection mechanism, affecting the accuracy of the ingredients. In addition, residual drips or residual powder may also fall onto the electronic scale 6, affecting the cleanliness and accuracy of the upper surface of the electronic scale 6. The present invention provides a movable material receiving box 8 below the material dropping position, and residual drips and residual powder fall into the material receiving box 8, which can better ensure the accuracy of the product. The weighing mechanism is electrically connected to the control module, so that the material dropping is automatically stopped after the sufficient amount is received.

[0032] The material receiving position includes a drop hole 31, and the outlet of the discharge pipe of the pump body 16 is connected to the drop hole 31; the seasoning mixing machine also includes a powder box 3, and the drop hole 31 is set at the bottom of the powder box 3; two horizontal guide rails 7 are also set on both sides of the bottom of the powder box 3, and sliders are set on the horizontal guide rails 7. The material receiving box 8 is slidably set on the horizontal guide rails 7 through the sliders; the linear drive mechanism includes a drive motor 9 set at the bottom of the powder box 3, and a driving wheel 11 is fixedly set on the output shaft of the drive motor 9. A driven wheel 10 is rotatably set at the bottom of the powder box 3. A synchronous belt 12 is set between the driving wheel 11 and the driven wheel 10, and the synchronous belt 12 is fixedly connected to the material receiving box 8 or the slider; the drive motor 9 is electrically connected to the control module. The outlet of the specific discharge pipe can be set in the drop hole 31. Multiple discharge pipes can be set in one drop hole 31, or one discharge pipe can correspond to one drop hole 31. The drive motor 9 is in data communication with the control module, which controls the position of the material receiving box 8. When the materials are mixed, the material receiving box 8 moves along the horizontal guide rail 7 to the position directly below the material drop hole 31, covering the material drop hole 31. The remaining materials can fall into the material receiving box 8, thereby ensuring the cleanliness and accuracy of the upper surface of the electronic scale 6. Other existing linear drive structures are also within the scope of protection of the utility model.

[0033] In the present invention, all electrical components are electrically connected to the control module, and data is exchanged between the control modules, thereby achieving automatic control. This device stacks various raw materials in the vertical direction as much as possible, making full use of the space in office spaces such as kitchens. In addition, there is only one surface connection between the supporting cabinet 17 and the horizontal support 18, which not only provides protection but also fully guarantees the convenience of entering and exiting the powder box 3. The positional relationship between the two input modules 2, the discharge frame 1 on the left, the discharge frame 1 on the right, and the powder box 3 sandwiched between the two frames can ensure that the staff can operate the device from both sides, greatly increasing convenience.

[0034] During specific implementation: the recipe is input through the input module 2, and the control module determines the corresponding seasoning barrel 4 and powder box 5 on the recipe. When the liquid raw material is discharged, the control module turns on the corresponding pump body 16 to complete the discharge. The liquid flows from the seasoning barrel 4, the feed pipe, the pump body 16, and the discharge pipe to the discharge hole 31 and falls into the container below. After the electronic scale 6 weighs the predetermined weight, it sends a signal to the input module 2, and the pump body 16 stops running. When the powder is discharged, the control module starts the DC motor 53, and the DC motor 53 drives the feeding screw 52 to controllably feed the powder in the rectangular feeding box from the discharge port 51, and finally drops from the discharge hole 31. After all the seasoning barrels 4 and powder boxes 5 have been discharged, the control module turns on the corresponding drive motor 9, and the drive motor 9 moves the receiving box 8 to the bottom of the discharge hole 31 to cover the discharge hole 31 through the synchronous belt 12. Of course, it is also possible to move the material receiving box 8 to the bottom of the corresponding material dropping hole 31 to receive the residual material after each material is dropped. After receiving, the material receiving box 8 is removed and the next material is dropped.

[0035] The technical features of the above-described embodiments may be combined in any manner, and as long as there are no contradictions in the combination of these technical features, they shall be deemed to be within the scope of this specification. Without departing from the overall concept of the present invention, the technical solutions of the present invention, their equivalent replacements or modifications, and certain changes and improvements made thereto shall also be deemed to be within the scope of protection of the present invention.

Claims

1. A seasoning blending machine comprising at least two seasoning barrels for accommodating liquid raw materials, a receiving station for receiving the liquid raw materials, and a discharge station disposed above the receiving stations, wherein the seasoning barrels are connected to a pump inlet via a feed pipe, and the pump outlet is connected to the discharge station above the receiving stations via a discharge pipe; characterized in that: It also includes at least one material discharging frame, each material discharging frame includes a supporting cabinet, and the supporting cabinet is fixed with at least two layers of horizontal supports from top to bottom, and the seasoning barrel is arranged on the horizontal supports.

2. The seasoning blending machine according to claim 1, characterized in that: The pump body is arranged in the supporting cabinet, the transverse support is in the shape of a hollow box, the inner space of the transverse support is connected with the inner space of the supporting cabinet, and the feed pipe between the pump body and the seasoning barrel passes through the inner space of the transverse support.

3. The seasoning blending machine according to claim 2, characterized in that: A stirring power assembly is arranged inside the transverse support, and the stirring power assembly includes at least one reduction motor fixed inside the transverse support, and the output shaft of the reduction motor is arranged vertically and extends from the lower surface of the transverse support; a driving plate is arranged at the bottom of the output shaft, and the seasoning barrel includes a detachably connected barrel body and a barrel cover, a stirring shaft is rotatably arranged in the seasoning barrel, and the upper end of the stirring shaft extends out of the barrel cover; a fork is arranged at the top of the stirring shaft, and the driving plate cooperates with the fork; the reduction motor is electrically connected to the control module.

4. The seasoning blending machine according to claim 2, characterized in that: The material receiving position includes a drop hole, and the outlet of the discharge pipe of the pump body is connected to the drop hole; a powder box is arranged near the discharge frame, and the drop hole is arranged at the bottom of the powder box; at least one powder box is arranged in the powder box, and the discharge port of the powder box is connected to the drop hole through a powder feeding mechanism.

5. The seasoning blending machine according to claim 4, characterized in that: A discharge frame is respectively provided on the left and right sides of the powder box; an electronic scale electrically connected to the control module is provided at the material receiving position; an input module electrically connected to the control module is provided above the powder box or above the discharge frame.

6. The seasoning blending machine according to claim 5, characterized in that: The left side of the powder box is fixed on the right end face of the left discharge frame, and the right side of the powder box is fixed on the left end face of the right discharge frame; the space between the bottom of the powder box and the electronic scale is connected front to back, and no obstructions are set in front and behind the position of the electronic scale; the input module is set on the upper surface of the powder box.

7. The seasoning blending machine according to claim 1, characterized in that: A weighing mechanism is provided at the material receiving position; a material receiving box is provided in the space above the material receiving position and below the material dropping position; the material receiving box is driven by a linear drive mechanism to move linearly to the position directly below the material dropping position to cover the material dropping position or to move linearly to a position away from the material dropping position.

8. The seasoning blending machine according to claim 7, characterized in that: The material receiving position includes a drop hole, and the outlet of the discharge pipe of the pump body is connected to the drop hole; the seasoning mixing machine also includes a powder box, and the drop hole is arranged at the bottom of the powder box; two horizontal guide rails are also arranged on both sides of the bottom of the powder box, and sliders are arranged on the horizontal guide rails, and the material receiving box is slidably arranged on the horizontal guide rails through sliders; the linear drive mechanism includes a driving motor arranged at the bottom of the powder box, a driving wheel is fixedly arranged on the output shaft of the driving motor, and a driven wheel is rotatably arranged at the bottom of the powder box, a synchronous belt is arranged between the driving wheel and the driven wheel, and the synchronous belt is fixedly connected to the material receiving box or the slider; the driving motor is electrically connected to the control module.

Citation Information

Patent Citations

  • Intelligent automatic blending device for catering seasonings

    CN105640378A

  • Seasoning machine

    CN208463884U