Automatic dough kneading and flattening device for cooked wheaten food
By designing the operating mechanism of the pasta automatic kneading and flattening device, the pressing stick can be quickly disassembled and cleaned, and water resources are saved through pressing sticks of different lengths, solving the problems of cleaning difficulties, waste of water resources and poor heat dissipation in the existing technology, and achieving efficient cleaning and long life of the equipment.
Patent Information
- Application Number
- CN202421774107.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-07-25
AI Technical Summary
The existing automatic pasta dough flattening device has difficulties in cleaning the dough pressing stick, which can easily lead to water inlet, failure and waste of water resources in the equipment. At the same time, the device design is not conducive to heat dissipation and reduces service life.
A pasta automatic kneading and flattening device is designed, including a base, a workbench and a running mechanism. The operating mechanism can quickly disassemble and clean the pressing rod through the cooperation of the reciprocating block and the reciprocating rod, and save water resources through pressing rods of different lengths. The guide panel and baffle are also designed to be replaceable, and the fan heat dissipation port uses air convection to dissipate heat.
It realizes rapid disassembly and assembly and cleaning of the pressing rod, saves water resources, extends the service life of the equipment, and improves the reliability of the equipment through effective heat dissipation measures.
Smart Images

Figure CN222997281U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of automatic noodle pressing, in particular to an automatic noodle kneading and flattening device for pasta. Background Technique
[0002] The automatic noodle kneading and flattening device for pasta, namely the noodle press often mentioned by people, can press the dough into the required shape. The noodle press is convenient for users to further process the dough into noodles, dumpling wrappers, etc., and is thus loved by more and more people. Traditional noodle presses are mostly manual and cannot meet the needs of large-scale production. Therefore, electric noodle presses came into being and are more labor-saving to use.
[0003] The existing water purification devices have the following deficiencies:
[0004] 1. The cleaning work of the noodle pressing roller of the existing automatic noodle kneading and flattening device for pasta is relatively difficult after use. It is inconvenient to disassemble and assemble, and if directly cleaned, it is easy to cause water to enter the equipment, resulting in equipment failure and affecting work efficiency.
[0005] 2. At the same time, the noodle pressing rollers generally have only one length and the length is relatively long. If cleaning is required, a large amount of water resources will be consumed, which is not conducive to energy conservation.
[0006] 3. The device is generally large and tightly wrapped, which is not conducive to heat dissipation. Over time, the service life of the device will be reduced.
[0007] Therefore, a solution needs to be given. Content of the Utility Model
[0008] In view of the deficiencies of the prior art, the utility model provides an automatic noodle kneading and flattening device for pasta to solve the problems raised in the above background technique.
[0009] To achieve the above purposes, the utility model is realized through the following technical solutions:
[0010] An automatic noodle kneading and flattening device for pasta, including a base, a workbench and an operating mechanism. The workbench is arranged above the base and is integrally formed. The operating mechanism is arranged above the workbench; a plurality of fan heat dissipation openings are oppositely arranged at the rear ends of the left and right side walls of the base. A PLC controller is arranged at the rear end of the right side wall of the workbench, and a movable groove one is arranged at the rear end of the top of the workbench;
[0011] The operating mechanism includes several reciprocating blocks, several working boxes, a groove plate, a first reciprocating rod, a fixed block, a guide panel, a dough pressing mechanism, several dough pressing rollers and a baffle. The lower halves of several of the reciprocating blocks are oppositely arranged at both ends inside the first movable groove, and the upper halves of the reciprocating blocks extend upward; several of the working boxes are arranged on top of each of the reciprocating blocks; several of the groove plates are arranged on top of each of the working boxes, and there is a second movable groove formed by opening one side inside the groove plate; several of the first reciprocating rods are all arranged through each of the reciprocating blocks; the fixed blocks are arranged at both ends of each of the first reciprocating rods; the guide panel is arranged between several of the groove plates. The guide panel includes a plate body and a fixed strip. The plate body is obliquely arranged on the fixed strip in the shape of a flat cuboid and is integrally formed. The fixed strip is in the shape of a cuboid; the dough pressing mechanism is arranged inside the working box; several of the dough pressing rollers and the baffle are arranged between several of the working boxes. The baffle includes a plate body and several groove insertion posts. The plate body is in the shape of a bent flat cuboid, and several of the groove insertion posts are arranged in a cylindrical structure oppositely on both side walls of the plate body.
[0012] Preferably, the workbench is in a stepped structure.
[0013] Preferably, several insertion slots one and several movable windows are arranged inside the working box. Several of the movable windows are arranged in an elliptical structure on the inner side of the working box, and several of the insertion slots one are all arranged beside each of the movable windows.
[0014] Preferably, the dough pressing mechanism includes several driving blocks, a second reciprocating rod and a fixing plate. The second reciprocating rod passes through several of the driving blocks and is arranged inside the driving blocks. One end of the driving block is opened with several insertion slots two. The insertion slots two are in the shape of an octagonal hollow three-dimensional structure, and a rotating bearing is arranged around each of the insertion slots two. The fixing plate is arranged at one end of the second reciprocating rod.
[0015] Preferably, the dough pressing roller (38) includes a roller body (381) and several groove insertion blocks (382). Several of the groove insertion blocks (382) are arranged in an octagonal three-dimensional structure oppositely at both ends of the roller body (381); the length of the groove insertion block (382) is greater than the length of the insertion slot two (3712).
[0016] The present utility model provides a pasta automatic kneading and flattening device. It has the following beneficial effects:
[0017] 1. By designing an operating mechanism with a unique structure in this solution, the reciprocating block can control the working box to move linearly in and out through the reciprocating rod, so that the dough pressing roller can be quickly disassembled and cleaned.
[0018] 2. Meanwhile, this design can also use rolling pins of different lengths. When small dough needs to be rolled, the long rolling pin can be conveniently replaced with a short one, which saves more water resources during cleaning. The same applies to the guide panel and the baffle.
[0019] 3. The two fan vents can effectively cool the device by using air convection, extending its service life. Brief Description of the Drawings
[0020] Figure 1 It is a schematic diagram of the overall structure of the present utility model;
[0021] Figure 2 It is a schematic diagram of the structure of the working box of the present utility model;
[0022] Figure 3 It is a schematic diagram of the structure of the dough rolling mechanism of the present utility model;
[0023] Figure 4 It is a schematic diagram of the structure of the rolling pin of the present utility model;
[0024] Figure 5 It is a schematic diagram of the structure of the guide panel of the present utility model;
[0025] Figure 6 It is a schematic diagram of the structure of the baffle of the present utility model.
[0026] In the figure, 1 - base; 11 - several fan vents; 2 - workbench; 21 - PLC controller; 22 - first movable slot; 3 - operating mechanism; 31 - several reciprocating blocks; 32 - several working boxes; 321 - several first slots; 322 - several movable windows; 33 - several groove plates; 331 - second movable slot; 34 - several first reciprocating rods; 35 - fixed block; 36 - guide panel; 361 - plate body; 362 - fixing strip; 37 - dough rolling mechanism; 371 - several driving blocks; 3711 - rotating bearing; 3712 - several second slots; 372 - second reciprocating rod; 373 - fixing plate; 38 - several rolling pins; 381 - rod body; 382 - several groove inserting blocks; 39 - baffle; 391 - plate body; 392 - several groove inserting columns. Detailed Description of the Preferred Embodiment
[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0028] Please refer to Figures 1-6, an embodiment of the present utility model provides a technical solution to implement: an automatic dough kneading and flattening device for pasta, including an automatic dough kneading and flattening device for pasta, characterized in that it includes a base 1, a workbench 2 and an operating mechanism 3. The workbench 2 is arranged above the base 1 in a stepped structure and is integrally formed. The operating mechanism 3 is arranged above the workbench 2; several fan heat dissipation openings 11 are oppositely arranged at the rear ends of the left and right side walls of the base 1, a PLC control machine 21 is arranged at the rear end of the right side wall of the workbench 2, and a movable groove 1 22 is arranged at the rear end of the top of the workbench 2.
[0029] During use, the power is turned on by the PLC control machine 21.
[0030] Corely, the operating mechanism 3 includes several reciprocating blocks 31, several working boxes 32, a groove plate 33, a first reciprocating rod 34, a fixed block 35, a guide panel 36, a dough pressing mechanism 37, several dough pressing rollers 38 and a baffle 39. The lower halves of several reciprocating blocks 31 are oppositely arranged at both ends in the movable groove 1 22, and the upper halves of the reciprocating blocks 31 extend upward. Several working boxes 32 are arranged on the top of each reciprocating block 31; several groove plates 33 are arranged on the top of each working box 32, and an activity groove 2 331 is arranged on one side of the inside of the groove plate 33. Several first reciprocating rods 34 are all arranged through each reciprocating block 31. The fixed block 35 is arranged at both ends of each first reciprocating rod 34. The guide panel 36 is arranged between several groove plates 33. The guide panel 36 includes a plate body 361 and a fixed strip 362. The plate body 361 is obliquely arranged on the fixed strip 362 in a flat cuboid structure and is integrally formed. The fixed strip 362 is in a cuboid structure. The dough pressing mechanism 37 is arranged inside the working box 32. Several dough pressing rollers 38 and the baffle 39 are arranged between several working boxes 32. The baffle 39 includes a plate body 391 and several groove insertion posts 392. The plate body 391 is in a bent flat cuboid structure, and several groove insertion posts 392 are arranged in a cylindrical structure oppositely on both side walls of the plate body 391.
[0031] Several insertion slots 1 321 and several activity windows 322 are arranged in the working box 32. Several of the activity windows 322 are arranged in an elliptical structure on the inner side of the working box 32, and several insertion slots 1 321 are all arranged beside each activity window 322.
[0032] The dough pressing mechanism 37 includes several driving blocks 371, a second reciprocating rod 372 and a fixing plate 373. The second reciprocating rod 372 is arranged through several driving blocks 371 and is arranged inside the driving blocks 371. One end of the driving block 371 is provided with several insertion slots 2 3712. The insertion slots 2 3712 are in an octagonal hollow three-dimensional structure. A rotating bearing 3711 is arranged around each insertion slot 2 3712. The fixing plate 373 is arranged at one end of the second reciprocating rod 372.
[0033] The dough pressing pin 38 comprises a stick body 381 and a plurality of slot inserting blocks 382, wherein the plurality of slot inserting blocks 382 are arranged oppositely at two ends of the stick body 381 in an octagonal three-dimensional structure. The length of the slot inserting block 382 is greater than the length of the second slot 3712.
[0034] The dough is placed on the guide panel 36, and slides down through the slope of the plate body 361. The two dough pressing pins 38 roll it by rotating in cooperation with the two working boxes 32. The dough is pressed into a dough of the required thickness and then moved to the workbench 2 under the guidance of the baffle 39. The process can be repeated until the desired effect is achieved. When a thinner dough is needed, the PLC control machine 21 can control the driving block 371 to move on the reciprocating rod 2 372 to achieve the required thickness. The dough pressing pin 38 is provided with long and short lengths, so that when the user does not need a large dough pressing pin 38, a shorter dough pressing pin 38 can be installed and used, so that too much water resources will not be wasted in the subsequent cleaning process. At the same time, the two reciprocating blocks 31 can be quickly adjusted to the corresponding required length through the reciprocating rod 1 34 through the PLC control machine 21. Correspondingly, the guide panel 36 and the baffle 39 are also provided with long and short lengths, which can reduce the waste of water resources to a greater extent when needed.
[0035] After a long period of use, the equipment will generate heat. The fans in the two fan cooling ports are operated through the PLC control machine 21. The two fan cooling ports are oppositely distributed, one for inlet and one for outlet, which can speed up the circulation of air inside the base 1 and the workbench 2 and achieve a heat dissipation effect.
[0036] Specifically, after the equipment is used, the PLC control machine 21 can control the reciprocating block 31 to move to both ends in the movable groove 22 through the reciprocating rod 34, and then the guide plate 36, the dough pressing roller 36 and the baffle 39 are taken out for cleaning.
[0037] Working principle: When in use, the PLC control machine 21 turns on the power, puts the dough on the guide plate 36, slides down through the slope of the plate body 361, and the slots 3712 in the two working boxes 32 wrap the slot inserts 382 of the dough pressing pin 38 and rolls the dough into a dough cake of the required thickness through the rotation of the rotating bearing 3711, and then moves to the workbench 2 under the guidance of the baffle 39. The device can also control the reciprocating block 31 on the reciprocating rod 1 34 to drive the working box 32 to move horizontally through the PLC control machine 21, and can also control the driving block 371 to move horizontally on the reciprocating rod 2 372.
[0038] 1 - Base of the present utility model; 11 - A number of fan heat dissipation openings; 2 - Workbench; 21 - PLC controller; 22 - First movable slot; 3 - Operating mechanism; 31 - A number of reciprocating blocks; 32 - A number of work boxes; 321 - A number of first slots; 322 - A number of movable windows; 33 - A number of groove plates; 331 - Second movable slot; 34 - A number of first reciprocating rods; 35 - Fixed block; 36 - Guide panel; 361 - Plate body; 362 - Fixed strip; 37 - Noodle pressing mechanism; 371 - A number of driving blocks; 3711 - Rotating bearing; 3712 - A number of second slots; 372 - Second reciprocating rod; 373 - Fixed plate; 38 - A number of noodle pressing rollers; 381 - Roller body; 382 - A number of groove inserting blocks; 39 - Baffle; 391 - Baffle body; 392 - A number of groove inserting columns. These components are all common standard parts or parts known to those skilled in the art, and their structures and principles can all be learned by those skilled in the art through technical manuals or obtained through conventional experimental methods. The problems solved by the present utility model are as follows: 1. Existing water purification devices are generally vertically arranged layer by layer and the filter screen cannot be disassembled. Under the limitation of the device volume, the filter layer is generally circular, which will shorten the service life of the device due to high blockage frequency. 2. At the same time, the detachable device will have a water leakage problem. Although it is detachable, the circular filter layer leads to an increase in the cleaning times of the device. Through the mutual cooperation of the above components, the present utility model realizes the effect of rapid disassembly, assembly and cleaning of the noodle pressing rollers, and can also use noodle pressing rollers of different lengths. When pressing small dough, the short noodle pressing rollers can be conveniently replaced, and the cleaning after use will save more water resources. The same applies to the guide panel and the baffle. In addition, the two fan heat dissipation openings can effectively cool the device by air convection and extend the service life.
[0039] The above shows and describes the basic principles, main features and advantages of the present utility model. For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic features of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, it is intended to include all changes falling within the meaning and scope of the equivalent elements of the claims in the present utility model. Any reference signs in the claims should not be regarded as limiting the claimed rights.
[0040] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An automatic dough kneading and flattening device for pasta, characterized in that: The invention comprises a base (1), a workbench (2) and an operating mechanism (3), wherein the workbench (2) is arranged above the base (1) and is integrally formed, and the operating mechanism (3) is arranged above the workbench (2); a plurality of fan heat dissipation openings (11) are arranged opposite to each other at the rear ends of the left and right side walls of the base (1), a PLC control machine (21) is arranged at the rear end of the right side wall of the workbench (2), and a movable slot (22) is arranged at the rear end of the top of the workbench (2); The operating mechanism (3) comprises a plurality of reciprocating blocks (31), a plurality of working boxes (32), a slot plate (33), a reciprocating rod (34), a fixed block (35), a guide plate (36), a dough pressing mechanism (37), a plurality of dough pressing rollers (38) and a baffle (39), wherein the lower halves of the plurality of reciprocating blocks (31) are oppositely arranged at two ends of the movable slot (22), and the upper halves of the reciprocating blocks (31) extend upward; the plurality of working boxes (32) are arranged on the top of each of the reciprocating blocks (31); the plurality of slot plates (33) are arranged on the top of each of the working boxes (32), and a movable slot (331) is arranged on one side of the slot plate (33); the plurality of reciprocating rods (34) are all arranged on each of the reciprocating blocks (31); the fixed block (35) is arranged on each The guide panel (36) is arranged between the plurality of slot plates (33), the guide panel (36) comprising a plate body (361) and a fixing strip (362), the plate body (361) being a flat rectangular parallelepiped structure obliquely arranged on the fixing strip (362) and being integrally formed, the fixing strip (362) being a rectangular parallelepiped structure; the dough pressing mechanism (37) is arranged inside the working box (32); the plurality of dough pressing rollers (38) and the baffle (39) are arranged between the plurality of working boxes (32), the baffle (39) comprising a plate body (391) and a plurality of slot inserting columns (392), the plate body (391) being a bent flat rectangular parallelepiped structure, the plurality of slot inserting columns (392) being cylindrical structures and being arranged oppositely on the two side walls of the plate body (391).
2. The automatic dough kneading and flattening device according to claim 1, characterized in that: The workbench (2) has a stepped structure.
3. The automatic dough kneading and flattening device according to claim 1, characterized in that: A plurality of slots 1 (321) and a plurality of movable windows (322) are arranged in the working box (32); the plurality of movable windows (322) are arranged in an elliptical structure on the inner side of the working box (32); and the plurality of slots 1 (321) are arranged beside each movable window (322).
4. The automatic dough kneading and flattening device according to claim 1, characterized in that: The pressing mechanism (37) comprises a plurality of driving blocks (371), a reciprocating rod (372) and a fixed plate (373); the reciprocating rod (372) penetrates the plurality of driving blocks (371) and is arranged inside the driving block (371); one end of the driving block (371) is provided with a plurality of slots (3712); the slots (3712) are octagonal hollow three-dimensional structures; a rotating bearing (3711) is arranged around each of the slots (3712); and the fixed plate (373) is arranged at one end of the reciprocating rod (372).
5. The automatic dough kneading and flattening device according to claim 1, characterized in that: The dough pressing roller (38) comprises a roller body (381) and a plurality of slot insert blocks (382), wherein the plurality of slot insert blocks (382) are arranged in opposition at two ends of the roller body (381) in an octagonal three-dimensional structure.