Noodle maker
By setting up independent support columns in the noodle machine host to disperse the reaction force, the problem that the existing noodle machine host is difficult to withstand the reaction force, and the working ability of the noodle machine and the protection effect of the host are improved.
Patent Information
- Application Number
- CN202421601608.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-08
AI Technical Summary
Since the host of existing noodles machine is made of plastic, it is difficult to effectively withstand the reaction force generated by the noodles machine when working, especially when squeezing noodles.
An independent support column is set up in the host of the noodles machine to disperse the reaction force during the working of the noodles machine through the support column to avoid direct application on the host machine.
The reaction force is dispersed by independent support columns, which significantly improves the noodle machine's ability to withstand reaction forces, and can cope with greater reaction forces in the form of large flow squeezed noodles or wet dough, while protecting the host from damage.
Smart Images

Figure CN222982349U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of food processors, in particular to a noodle machine. Background Art
[0002] A noodle machine is a tool that can stir flour and water and extrude them into pasta. For example, Chinese Patent Document No. CN220897782U discloses a noodle machine, which includes a flour container provided with an extrusion tube and a flour chamber. An extrusion mechanism is provided on the extrusion tube. The extrusion mechanism includes an extrusion cylinder, an extrusion die head and an extrusion nut. The extrusion cylinder is provided with a hollow inner cylinder, which is axially inserted into the extrusion tube. The head end of the extrusion cylinder is assembled with the extrusion tube. The extrusion nut is screwed onto the extrusion tube through threads and fixes the extrusion cylinder and the extrusion die head on the extrusion tube. The tail end of the extrusion cylinder is provided with a U-shaped feeding plate extending into the flour chamber. The feeding plate is at least open at positions corresponding to the top and the tail end of the extrusion cylinder and forms an extrusion feeding port for communicating the flour chamber and the inner cylinder.
[0003] For the noodle machine of the prior art, its flour container is fixedly installed on the main body through a pressing plate. Specifically, fixing studs are provided on the main body, and nuts are provided on the pressing plate. The nuts are fixed to the fixing studs to install the pressing plate on the main body. When the noodle machine is in use, the pressing plate needs to press the flour container (especially during noodle extrusion), and disperse the reaction force of the flour container (especially the reaction force generated during noodle extrusion) to the main body. However, the main body of the noodle machine is generally made of plastic and can bear a limited reaction force of the flour container, which needs to be further improved. Summary of the Utility Model
[0004] The purpose of the utility model is to overcome the deficiencies of the above-mentioned prior art, and provide a noodle machine, in which an independent support column is arranged in the main body, and the support column is used to disperse the reaction force during the operation of the noodle machine and will not directly apply the reaction force during the operation of the noodle machine to the main body.
[0005] The purpose of the utility model is realized as follows:
[0006] A noodle machine includes a flour container, a main body, a pressing plate, pressing plate studs and nuts. An installation opening is provided on the main body. The flour container is detachably installed on the installation opening. The pressing plate studs are distributed on opposite sides of the main body corresponding to the installation opening. The pressing plate is installed on the pressing plate studs and fixed by nuts. After the pressing plate is fixed to the pressing plate studs, the flour container is fixed in the installation opening. Support columns are provided in the main body corresponding to the positions of the pressing plate studs. The head ends of the pressing plate studs are fixed to the support columns, and the tail ends extend out of the main body to be installed with the pressing plate and fixed with the nuts.
[0007] The upper end of the support column is provided with a first socket, and the lower end is provided with a second socket. The inner side walls of the main body respectively correspond to a first plug post and a second plug post. The first socket is fixedly plugged with the first plug post, and the second socket is fixedly plugged with the second plug post.
[0008] The first socket is fixedly plugged with the first plug post through a fixing screw, and the second socket is fixedly plugged with the second plug post through a fixing screw. The first socket and the second socket are staggered left and right along the length direction of the support column.
[0009] The body of the support column is provided with a force dispersion surface, and the force dispersion surface is at least closely attached to the inner side wall around the main body where the pressure plate stud is located.
[0010] The support column is made of plastic, and staggered reinforcing ribs are formed around the corresponding pressure plate stud.
[0011] A force receiving plate is provided on the support column. The first end of the pressure plate stud is fixed to the force receiving plate through a force receiving screw, and the force receiving plate and the support column are pressed tightly between the two.
[0012] A force receiving plate is provided on the reinforcing rib. The first end of the pressure plate stud is fixed to the force receiving plate through a force receiving screw, and the force receiving plate and the reinforcing rib are pressed tightly between the two.
[0013] A protection switch is provided on the support column, and a triggering mechanism for changing the on / off state of the protection switch is provided on the main body and / or the pressure plate.
[0014] The protection switch is a magnetic control switch, and the triggering mechanism is a magnet provided on the pressure plate. After the pressure plate and the pressure plate stud are installed, the magnet approaches the magnetic control switch to change the on / off state of the magnetic control switch.
[0015] The protection switch is a microswitch. The microswitch is fixed on the support column, or the microswitch is fixed on the support column through a bracket. The triggering mechanism includes a connecting rod slidably arranged on the support column and the main body and a pressing block arranged on the pressure plate. The microswitch has an elastic switch contact foot. The first end of the connecting rod abuts against the elastic switch contact foot, and the tail end extends out of the main body and faces the pressing block. After the pressure plate and the pressure plate stud are installed, the pressing block presses the connecting rod and drives the elastic switch contact foot to be pressed together to change the on / off state of the microswitch.
[0016] The beneficial effects of the present utility model are as follows:
[0017] An independent support column is provided inside the main body. The head end of the pressure plate stud is fixed on the support column, and the pressure plate is installed at the tail end of the pressure plate stud. When the noodle machine is working, the reaction force generated by noodle extrusion is transmitted to the support column through the pressure plate and the pressure plate stud, and will not directly apply the aforementioned reaction force to the main body. The independently provided support column can greatly improve the bearing capacity of the aforementioned reaction force. The support column provided above can withstand the greater reaction force generated when the noodle machine extrudes noodles in large quantities or extrudes pasta in the form of wet dough.
[0018] In addition, a protection switch can be provided on the support column to ensure that the noodle machine can only start working after the pressure plate is correctly installed, achieving a better protection effect. Description of the Drawings
[0019] Figure 1 Isometric view of the assembly of the noodle machine according to the first embodiment of the present invention Figure 1 (Sectional view).
[0020] Figure 2 Is Figure 1 The enlarged view at A in
[0021] Figure 3 Exploded isometric view of the noodle machine according to the first embodiment of the present invention Figure 2 (Sectional view).
[0022] Figure 4 Exploded isometric view of the noodle machine according to the first embodiment of the present invention Figure 3 .
[0023] Figure 5 Is the exploded view of the noodle machine according to the first embodiment of the present invention. Detailed Description of the Invention
[0024] The present invention will be further described below with reference to the drawings and embodiments.
[0025] First Embodiment:
[0026] See Figures 1-5, This noodle machine includes a dough container 1, a main body 2, a pressing plate 3, pressing plate studs 4 and nuts 5. An installation opening 20 is provided on the main body 2, and the dough container 1 is detachably installed on the installation opening 20. The pressing plate studs 4 are distributed on opposite sides of the main body 2 corresponding to the installation opening 20. The pressing plate 3 is installed on the pressing plate studs 4 and fixed by nuts 5. After the pressing plate 3 is fixed to the pressing plate studs 4, the dough container 1 is fixed within the installation opening 20. At a position corresponding to the pressing plate studs 4 within the main body 2, support columns 6 are provided. The head ends of the pressing plate studs 4 are fixed to the support columns 6, and the tail ends extend out of the main body 2 to be installed with the pressing plate 3 and fixed with the nuts 5. Through the above improved technical solution, independent-force-bearing support columns 6 are provided within the main body 2. The head ends of the pressing plate studs 4 are fixed to the support columns 6, and the pressing plate 3 is installed at the tail ends of the pressing plate studs 4. When the noodle machine is working, the reaction force generated by noodle extrusion is sequentially transmitted through the pressing plate 3 and the pressing plate studs 4 to the support columns 6, and will not directly apply the aforesaid reaction force directly on the main body 2. The independently provided support columns 6 can greatly improve the bearing capacity for the aforesaid reaction force. The provided support columns 6 can bear the greater reaction force generated when the noodle machine extrudes noodles in a large flow rate or extrudes pasta in the form of wet dough. The reaction force received by the pressing plate 3 is no longer applied on the main body 2, which more effectively protects the main body 2 from being damaged by the reaction force. Among them, there are two groups of pressing plate studs 4, support columns 6 and nuts 5, which are respectively located on opposite sides of the installation opening 20.
[0027] Further, a first socket 61 is provided at the upper end of the support column 6, and a second socket 62 is provided at the lower end. On the inner side walls of the main body 2, a first plug post 21 and a second plug post 22 are respectively provided corresponding thereto. The first socket 61 is plugged and fixed with the first plug post 21, and the second socket 62 is plugged and fixed with the second plug post 22. The first socket 61 is plugged and fixed with the first plug post 21 through fixing screws (not shown in the figure), and the second socket 62 is plugged and fixed with the second plug post 22 through fixing screws (not shown in the figure). The first socket 61 and the second socket 62 are staggered left and right along the length direction of the support column 6. In this embodiment, the support column 6 is installed within the main body 2 by a plugging scheme, which simplifies the installation of the support column 6. The first socket 61 and the second socket 62 are staggered left and right along the length direction of the support column 6. This technical solution can stagger the installation of the fixing screws at the upper and lower positions to avoid interference during installation.
[0028] Further, a force-dispersing surface 63 is provided on the body of the support column 6, and the force-dispersing surface 63 at least closely adheres to the inner side wall around the main body 2 where the pressing plate studs 4 are located. Since the support column 6 is installed on the main body 2, therefore, part of the force on the support column 6 will still be transferred to the main body 2. With this technical solution, when the support column 6 receives the aforesaid reaction force, it can evenly disperse the force onto the main body 2. The larger the surface area of the force-dispersing surface 63, the lower the pressure received by the main body 2, that is, the reaction force that the main body 2 can bear is increased.
[0029] Further, the support column 6 is made of plastic, and staggered reinforcing ribs 64 are formed around the corresponding platen stud 4. The reinforcing ribs 64 can greatly enhance the bearing capacity of the support column 6 and at the same time achieve weight reduction of the support column 6.
[0030] Further, a force-bearing plate 65 is provided on the support column 6. The first end of the platen stud 4 is fixed to the force-bearing plate 65 through a force-bearing screw 66, and the force-bearing plate 65 and the support column 6 are pressed tightly between the two. Alternatively, a force-bearing plate 65 is provided on the reinforcing rib 64. The first end of the platen stud 4 is fixed to the force-bearing plate 65 through a force-bearing screw 66, and the force-bearing plate 65 and the reinforcing rib 64 are pressed tightly between the two. Since the support column 6 of this embodiment is provided with the reinforcing rib 64, in the latter technical solution, the force-bearing plate 65 is preferably made of a metal steel plate, which can increase the contact area between the platen stud 4 and the support column 6, effectively reduce the pressure of the platen stud 4 on the support column 6 when receiving the aforementioned reaction force, that is, improve the reaction force that the support column 6 can withstand. In addition, the force-bearing plate 64 and the reinforcing rib 64 or the support column 6 can also be fixed through fixing screws (not shown in the figure), which can be understood by those skilled in the art.
[0031] Further, a protection switch is provided on the support column 6, and the main body 2 and / or the platen 3 is provided with a triggering mechanism for changing the on / off state of the protection switch. As is well known, the noodle machine has a control board. The protection switch is electrically connected to the control board. By changing the on / off state of the protection switch, it can be determined whether the control board allows the noodle machine to start working, which can be understood by those skilled in the art. Specifically, only after the platen 3 is correctly installed, the triggering mechanism will change the on / off state of the protection switch (for example, when the platen 3 is not properly installed, it is in the normally open state, and after the platen 3 is properly installed, it changes to the normally closed state. Only when the control board detects the normally closed state of the protection switch can it allow the noodle machine to start working). At this time, the noodle machine can start working to achieve a better protection effect. Among them, the protection switch can be provided on only one of the support columns 6, or on all of the support columns 6, which can be understood by those skilled in the art. In this embodiment, the former technical solution is adopted.
[0032] In this embodiment, the protection switch is a micro switch 7. Among them, the micro switch 7 is fixed on the support column 6, or the micro switch 7 is fixed on the support column 6 through a bracket 71. The latter technical solution is preferred in this embodiment; the triggering mechanism includes a connecting rod 8 slidably arranged on the support column 6 and the main body 2, and a pressing block 31 arranged on the pressing plate 3. The micro switch 7 has an elastic switch contact 72. The head end of the connecting rod 8 abuts against the elastic switch contact 72, and the tail end extends out of the main body 2 and faces the pressing block 31. After the pressing plate 3 and the pressing plate stud 4 are installed, the pressing block 31 presses the connecting rod 8 and drives the elastic switch contact 72 to be pressed together to change the on-off state of the micro switch 7. When the pressing plate 3 is not correctly installed, the elastic switch contact 72 resets and pushes the connecting rod 8 away again.
[0033] As an alternative technical solution, the protection switch can be replaced with a magnetic control switch (not shown in the figure). The triggering mechanism is a magnet (not shown in the figure) arranged on the pressing plate 3. After the pressing plate 3 and the pressing plate stud 4 are installed, the magnet approaches the magnetic control switch to change the on-off state of the magnetic control switch, which can be understood by those skilled in the art.
[0034] The above is the preferred solution of the present invention, which shows and describes the basic principle, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. A noodle making machine, comprising a noodle holding barrel (1), a main machine (2), a pressing plate (3), a pressing plate stud (4) and a nut (5), wherein the main machine (2) is provided with a mounting opening (20), the noodle holding barrel (1) is detachably mounted on the mounting opening (20), the pressing plate studs (4) are distributed on two opposite sides of the main machine (2) corresponding to the mounting opening (20), the pressing plate (3) is mounted on the pressing plate studs (4) and fixed by nuts (5), and after the pressing plate (3) and the pressing plate studs (4) are fixed, the noodle holding barrel (1) is fixed in the mounting opening (20), characterized in that: A support column (6) is provided at a position corresponding to the pressure plate stud (4) in the main unit (2); the head end of the pressure plate stud (4) is fixed to the support column (6), and the tail end extends out of the main unit (2) to be mounted on the pressure plate (3) and fixed to the nut (5).
2. The noodle machine according to claim 1, characterized in that: The upper end of the support column (6) is provided with a first plug interface (61), and the lower end is provided with a second plug interface (62); the inner side wall of the host (2) is respectively provided with a first plug column (21) and a second plug column (22); the first plug interface (61) is plugged and fixed to the first plug column (21), and the second plug interface (62) is plugged and fixed to the second plug column (22).
3. The noodle machine according to claim 2, characterized in that: The first plug interface (61) is plugged and fixed to the first plug post (21) via a fixing screw, and the second plug interface (62) is plugged and fixed to the second plug post (22) via a fixing screw. The first plug interface (61) and the second plug interface (62) are staggered left and right along the length direction of the support post (6).
4. The noodle machine according to claim 1, characterized in that: The support column (6) has a force dispersing surface (63) on its body, and the force dispersing surface (63) is at least closely attached to the inner wall around the main machine (2) where the pressure plate stud (4) is located.
5. The noodle machine according to claim 1, characterized in that: The support column (6) is made of plastic and has staggered reinforcing ribs (64) formed around the corresponding pressure plate stud (4).
6. The noodle machine according to claim 1, characterized in that: The support column (6) is provided with a force plate (65), and the head end of the pressure plate stud (4) is fixed to the force plate (65) by a force screw (66), and the force plate (65) and the support column (6) are pressed tightly between the two.
7. The noodle machine according to claim 5, characterized in that: A force-bearing plate (65) is provided on the reinforcing rib (64), and the head end of the pressure plate stud (4) is fixed to the force-bearing plate (65) by a force-bearing screw (66), and the force-bearing plate (65) and the reinforcing rib (64) are pressed tightly between the two.
8. The noodle machine according to any one of claims 1 to 7, characterized in that: The support column (6) is provided with a protection switch, and the main unit (2) and / or the pressure plate (3) are provided with a trigger mechanism for changing the on / off state of the protection switch.
9. The noodle machine according to claim 8, characterized in that: The protection switch is a magnetically controlled switch, and the trigger mechanism is a magnet arranged on a pressure plate (3). After the pressure plate (3) and the pressure plate stud (4) are installed, the magnet approaches the magnetically controlled switch to change the on / off state of the magnetically controlled switch.
10. The noodle machine according to claim 8, characterized in that: The protection switch is a micro switch (7), which is fixed on the support column (6), or the micro switch (7) is fixed on the support column (6) via a bracket (71); the trigger mechanism comprises a connecting rod (8) slidably arranged on the support column (6) and the main unit (2), and a pressing block (31) arranged on the pressing plate (3); the micro switch (7) has an elastic switch contact foot (72); the head end of the connecting rod (8) abuts against the elastic switch contact foot (72), and the tail end extends out of the main unit (2) and toward the pressing block (31); after the pressing plate (3) and the pressing plate stud (4) are installed, the pressing block (31) presses the connecting rod (8) and drives the elastic switch contact foot (72) to press together, so as to change the on-off state of the micro switch (7).
Citation Information
Patent Citations
Noodle maker
CN220897782U