Dough beating machine capable of intelligently sensing dough humidity and adjusting dough humidity
By designing the support and placement collection mechanism and reinforcement mechanism, the problem of dripping residues and dirt inside the support fixing ring of the noodle machine is solved, and the stable support of the mixing barrel and the convenient collection of dirt is achieved, which improves the operation stability and cleaning convenience of the noodle machine.
Patent Information
- Application Number
- CN202422614043.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-28
AI Technical Summary
When operating the existing noodle machine, the surface residue may easily drip or fall into external dirt when the support fixing ring, resulting in inconvenient cleaning and processing and affecting operation stability.
The support placement collection mechanism and reinforcement mechanism are designed, including pulling components, collection support placement components, elastic engaging components and toggle adjustment components. These components enable stable support and dirt collection of the mixing barrel to improve operational stability.
It realizes stable support of the mixing barrel and convenient collection of dirt, improving the operating stability and cleaning convenience of the noodle machine.
Smart Images

Figure CN223231943U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of noodle making machines, and in particular relates to an intelligent noodle making machine for sensing dough humidity and regulating dough. Background Art
[0002] Existing dough mixers, also known as noodle mixers, are devices that mix flour and water to form dough. These machines typically consist of a mixing drum, a stirrer, a motor, and an intelligent dough humidity sensor. These mixers are designed to ensure stable positioning during operation, ensuring more stable operation under load, and improving the convenience of collecting dirt inside the support ring after operation, as well as operational stability.
[0003] When operating an existing noodle making machine, the mixing bucket is directly placed inside the supporting and fixing ring provided on the upper surface of the base, and is fixed and installed again. When the mixing bucket is removed, the residues produced during the beating of the noodles or dirt from the outside may easily drip into the supporting and fixing ring, making it convenient to clean the inside. However, when the mixing bucket is placed again for use, it may be easily obstructed, resulting in an unstable placement, making the operation unstable, affecting the convenience of cleaning and collecting dirt on the supporting and fixing ring during operation of the noodle making machine and the stability of use. For this reason, the utility model proposes an intelligent dough humidity regulating noodle making machine. Utility Model Content
[0004] The purpose of the utility model is to provide an intelligent dough moisture regulating dough beating machine, so as to solve the problem proposed in the above background technology that when the dough beating machine is in operation, the inside of the supporting fixed ring is prone to dripping residues produced during dough beating or dirt falling into the outside, making it convenient to clean the inside, and the mixing barrel is easily obstructed when placed for reuse, resulting in unstable placement, making the operation unstable.
[0005] To achieve the above-mentioned object, the present invention provides the following technical solutions: an intelligent induction dough humidity regulating noodle making machine, comprising a noodle making machine body, the noodle making machine body comprising a base, a support fixing ring welded to the other end of the upper surface of the base, a stirring barrel placed inside the support fixing ring, a column welded and fixed to one end of the upper surface of the base, a top box body mounted on the top of the column through a cylinder, a motor disposed inside the top box body, a stirrer mounted on the end of the motor, a barrel cover mounted on the top of the stirrer through a bearing, and the noodle making machine body further comprising:
[0006] A support placement collection mechanism, wherein the support placement collection mechanism comprises a pull-out assembly arranged at the bottom end of the support fixing ring and located inside the base, wherein a collection support placement assembly is arranged inside the pull-out assembly;
[0007] The reinforcing mechanism includes an elastic clamping assembly arranged at the connection between the mixing barrel and the barrel cover, and the lower surface of the elastic clamping assembly is located at the toggle adjustment assembly at the top edge of the mixing barrel.
[0008] Preferably, a humidity sensor is fixedly installed on the inner top of the barrel cover, a solenoid valve is installed at one end of the upper surface of the barrel cover, a spray part is provided inside the barrel cover at the end of the solenoid valve extending, and a controller is provided on the front surface of the top box body. The humidity sensor, motor, solenoid valve and controller are all electrically connected through wires.
[0009] Preferably, the pulling assembly includes a mounting groove provided at the bottom end of the supporting fixing ring and located inside the base, and a connecting plate is placed inside the mounting groove.
[0010] Preferably, locking bolts are rotatably provided at both ends of the front surface of the connecting plate, and a handle is fixed at the middle position of the front surface of the connecting plate by screws.
[0011] Preferably, the collection support placement assembly includes a collection trough opened inside the connecting plate, and support columns are fixedly installed at the inner middle position and edge of the collection trough, and the upper surface of the connecting plate and the top of the support column are in contact with the bottom end of the mixing barrel.
[0012] Preferably, the elastic snap-fit assembly includes a limiting groove opened at the top edge of the mixing barrel, the internal limit of the limiting groove is limited by a limiting clamp, an elastic block is provided at the connection between the end of the limiting clamp and the internal connection of the limiting groove, a clamping hole is opened at the edge of the barrel cover, and the limiting clamp passes through the clamping hole.
[0013] Preferably, the toggle adjustment assembly includes a threaded lever arranged on the lower surface of the top end of the mixing barrel, an internal threaded hole is provided at the bottom end of the limiting clamp, and the end of the threaded lever is rotatably connected to the internal thread of the internal threaded hole.
[0014] Compared with the prior art, the beneficial effects of the present invention are:
[0015] By designing a support and placement collection mechanism, the connecting plate can be closed and reinforced inside the installation groove. After the bottom end of the mixing barrel is embedded in the inside of the support fixing ring, the edge of the lower surface of the mixing barrel contacts the upper surface of the connecting plate, and the middle position of the lower surface is supported by the support column. The mixing barrel is supported and placed for operation. When the mixing barrel is removed after beating the dough, the support fixing ring is exposed to the outside world. When the residue of the beating operation drips into the inside or when the external dirt enters, it directly falls into the collection tank for collection. Even after the dirt enters the collection, the mixing barrel is still supported and fixed in a stable and fixed position, and is more stable when subjected to force, thereby improving the convenience of the noodle making machine body in collecting the dirt inside the support fixing ring after operation and the stability of operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a structural diagram of the utility model;
[0017] Figure 2 This is a schematic cross-sectional view of the utility model;
[0018] Figure 3 This is a schematic diagram of the structure of the connecting plate, collecting trough and supporting column of the utility model;
[0019] Figure 4 This is a partial cross-sectional structural diagram of the connecting plate, collecting tank and base of the utility model;
[0020] Figure 5 For this utility model Figure 2 A schematic diagram of the enlarged structure of part A;
[0021] In the figure: 100, noodle making machine body; 101, base; 1011, connecting plate; 1012, mounting slot; 1013, handle; 1014, locking bolt; 1015, collecting trough; 1016, supporting column; 102, column; 103, top box body; 104, controller; 105, agitator; 1051, motor; 106, barrel cover; 1061, limiting slot; 1062, elastic block; 1063, card hole; 1064, limiting card head; 1065, threaded lever; 1066, internal threaded hole; 107, mixing barrel; 108, humidity sensor; 1081, solenoid valve; 109, supporting fixing ring. DETAILED DESCRIPTION
[0022] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0023] See also Figures 1 to 5The utility model provides a technical solution: an intelligent induction dough humidity regulating noodle making machine, comprising a noodle making machine body 100, the noodle making machine body 100 comprising a base 101, a supporting fixing ring 109 welded to the other end of the upper surface of the base 101, a stirring barrel 107 placed inside the supporting fixing ring 109, a column 102 welded and fixed to one end of the upper surface of the base 101, a top box body 103 is installed on the top of the column 102 through a cylinder, when the noodle making machine body 100 is operated, the cylinder drives the top box body 103 and the stirrer 105 to the highest position, after the stirring barrel 107 is engaged with the inside of the supporting fixing ring 109 and fixedly placed, an appropriate amount of flour and seasoning are injected into the stirring barrel 107, and water corresponding to the proportion is injected into the stirring barrel 107;
[0024] A motor 1051 is provided inside the top box body 103, and an agitator 105 is installed at the end of the motor 1051. A barrel cover 106 is installed on the top of the agitator 105 through a bearing. A humidity sensor 108 is fixedly installed on the top of the barrel cover 106. A solenoid valve 1081 is installed on one end of the upper surface of the barrel cover 106. The end of the solenoid valve 1081 extends to the inside of the barrel cover 106 and a spray part is provided. A controller 104 is provided on the front surface of the top box body 103. The humidity sensor 108, the motor 1051, the solenoid valve 1081 and the controller 104 are all electrically connected through wires. The top box body 103 moves downward to drive the barrel cover 106 to close on the surface of the mixing barrel 107. The stirrer 105 is inside the mixing barrel 107. The motor 1051 runs to drive the stirrer 105 to rotate for stirring. When the dough is beaten to a certain degree, the humidity of the internal dough is sensed by the humidity sensor 108. When the humidity is not enough, the humidity sensor 108 senses the feedback controller 104. The controller 104 energizes the solenoid valve 1081 to spray a small amount of water inside to balance the humidity environment, thereby facilitating the dough beating process through the dough beating machine body 100. The dough beating machine body 100 is also provided with:
[0025] The support placement and collection mechanism includes a pull-out assembly arranged at the bottom end of the support fixing ring 109 and located inside the base 101. The collection support placement assembly is arranged inside the pull-out assembly, so that the noodle making machine body 100 can be placed on the mixing barrel 107 during operation and when the mixing barrel 107 is removed after operation, the support placement and collection mechanism can support the mixing barrel 107 to be stably placed for noodle making. After removal, the dirt entering the inside can be collected and processed, and the mixing barrel 107 can be stably supported and placed, and the operation is stable, thereby improving the convenience of collecting dirt inside the support fixing ring 109 and the stability of the operation of the noodle making machine body 100 after operation.
[0026] In order to facilitate the collection of dirt and the support and placement operation of the mixing barrel 107, in this embodiment, preferably, the pulling assembly includes a mounting groove 1012 opened at the bottom end of the supporting fixing ring 109 and located inside the base 101, and a connecting plate 1011 is placed inside the mounting groove 1012. Locking bolts 1014 are rotated at both ends of the front surface of the connecting plate 1011. The connecting plate 1011 can be closed inside the mounting groove 1012 and fixed by the locking bolts 1014, which is convenient for supporting placement and collecting dirt after installation. A handle 1013 is fixed by screws at the middle position of the front surface of the connecting plate 1011, and it is convenient to take the handle 1013 for installation and removal when disassembling the connecting plate 1011.
[0027] In order to facilitate the support and placement of the mixing barrel 107 through the collection support and placement component, and conversely to facilitate collection and processing when dirt enters the interior after the mixing barrel 107 is removed, in this embodiment, preferably, the collection support and placement component includes a collection groove 1015 opened inside the connecting plate 1011, and support columns 1016 are fixedly installed at the middle position and edge of the collecting groove 1015. The upper surface of the connecting plate 1011 and the top of the support column 1016 are in contact with the bottom end of the mixing barrel 107. When the noodle making machine body 100 is in use, the mixing barrel 107 can be embedded in the internal contact connecting plate 1011 and the surface of the support column 1016 of the supporting fixing ring 109 for support and placement, and the mixing barrel 107 can be removed after the noodle making process. When the residue and dirt enter the interior through the supporting fixing ring 109, they are directly collected by the collection groove 1015. When placed again, the mixing barrel 107 is placed stably and is not easily obstructed by dirt.
[0028] The reinforcing mechanism includes an elastic locking assembly arranged at the connection between the mixing barrel 107 and the barrel cover 106. The lower surface of the elastic locking assembly is located at the toggle adjustment assembly at the top edge of the mixing barrel 107. When the noodle making machine body 100 is in operation, the barrel cover 106 is closed on the surface of the mixing barrel 107, and the barrel cover 106 is reinforced and installed by the reinforcing mechanism. It is not easy to shake or become unstable when under force during operation, and the noodle making process is more stable, thereby improving the fixation of the noodle making machine body 100 on the barrel cover 106 during operation.
[0029] In order to facilitate the closing of the barrel cover 106 on the surface of the mixing barrel 107 and reinforce its placement for stable operation through the elastic snap-fit assembly, in this embodiment, preferably, the elastic snap-fit assembly includes a limiting groove 1061 opened at the top edge of the mixing barrel 107, and the internal limit of the limiting groove 1061 is limited by a limiting clamp 1064. An elastic block 1062 is provided at the connection between the end of the limiting clamp 1064 and the internal connection of the limiting groove 1061. The limiting clamp 1064 is elastically connected by the elastic block 1062, so as to facilitate the elastic snap-fit installation through the limiting clamp 1064. A clamping hole 1063 is opened at the edge of the barrel cover 106, and the limiting clamp 1064 passes through the clamping hole 1063 until the limiting clamp 1064 is elastically clamped inside the clamping hole 1063 to reinforce the placement of the barrel cover 106, and the operation is more stable.
[0030] In order to facilitate the adjustment of the limit clamp 1064 for the opening operation by toggling the adjustment component, in this embodiment, preferably, the toggle adjustment component includes a threaded lever 1065 arranged on the lower surface of the top of the mixing barrel 107, and an internal threaded hole 1066 is provided at the bottom end of the limit clamp 1064. The end of the threaded lever 1065 is rotatably connected to the internal thread of the internal threaded hole 1066. The threaded lever 1065 can be rotated and embedded into the inside of the internal threaded hole 1066 to install the threaded lever 1065. After the threaded lever 1065 is installed, it is convenient to hold the threaded lever 1065 to adjust the limit clamp 1064. At the same time, after the clamping installation, the threaded lever 1065 is rotated to embed into the inside of the internal threaded hole 1066 to reinforce the installation of the limit clamp 1064.
[0031] The working principle and use process of the present invention are as follows: when using this intelligent dough humidity regulating noodle making machine, first, the bottom end of the base 101 is touched to the ground to stably place the noodle making machine body 100 in the use position. When the noodle making machine body 100 is operated, the cylinder drives the top box body 103 and the stirrer 105 to the highest position. After the stirring barrel 107 is engaged with the inside of the supporting fixing ring 109 and fixedly placed, an appropriate amount of flour and seasoning is injected into the inside of the stirring barrel 107, and water of a corresponding proportion is injected into the inside of the stirring barrel 107. The reverse operation is performed. The top box body 103 is moved downward to drive the barrel cover 106 to close on the surface of the mixing barrel 107. The stirrer 105 is inside the mixing barrel 107. The motor 1051 is driven to rotate and stir the stirrer 105. When the dough is beaten to a certain degree, the humidity of the dough is sensed by the humidity sensor 108. When the humidity is not enough, the humidity sensor 108 senses and feeds back to the controller 104. The controller 104 energizes the solenoid valve 1081 to spray a small amount of water inside to balance the humidity environment, thereby facilitating the dough beating process through the noodle beating machine body 100.
[0032] Then, before the noodle making machine body 100 is used, the connecting plate 1011 is closed inside the mounting groove 1012, and the locking bolt 1014 is rotated to reinforce the connecting plate 1011. After placement, the collecting groove 1015 corresponds to the bottom end of the supporting fixing ring 109, and the bottom end of the mixing barrel 107 is embedded in the supporting fixing ring 109. The edge of the lower surface of the mixing barrel 107 contacts the upper surface of the connecting plate 1011, and the middle position of the lower surface is supported by the supporting column 1016, so that the mixing barrel 107 is supported and placed. When the mixing drum 107 is removed, the support and fixing ring 109 is exposed to the outside world. When the residue of the dough-making operation drips into the inside or the outside dirt enters, it directly falls into the collection groove 1015 for collection. When the mixing drum 107 is placed again, it is convenient for it to contact the surface support of the connecting plate 1011 and the support column 1016 without contacting the dirt. Even after the dirt enters and is collected, the mixing drum 107 is still stably fixed and placed, and the placement of the mixing drum 107 is not easily hindered. The mixing drum 107 is more stable when subjected to force, thereby improving the convenience of collecting dirt inside the support and fixing ring 109 of the noodle-making machine body 100 after operation and the stability of operation.
[0033] Finally, when the noodle making machine body 100 is beating noodles, when the agitator 105 and the barrel cover 106 move down to the surface of the mixing barrel 107, the handheld threaded lever 1065 drives the limiting clamp 1064 to enter the inside of the limiting groove 1061 until the barrel cover 106 is moved down to contact the top of the mixing barrel 107 and closed, and the threaded lever 1065 is loosened, and the elastic block 1062 is deformed to drive the limiting clamp 1064 to elastically engage with the temporal part of the clamping hole 1063 to elastically engage and install the barrel cover 106. After the engagement and installation, the threaded lever 1065 is rotated to embed into the inside of the internal threaded hole 1066 to reinforce the installation of the limiting clamp 1064, so that the barrel cover 106 is fixed after closing, so that the agitator 105 is not likely to cause instability of the barrel cover 106 when it is rotated and subjected to force inside the barrel cover 106, thereby reinforcing the placement and mixing process, and improving the fixity of the barrel cover 106 of the noodle making machine body 100 during operation.
[0034] Although embodiments of the present invention have been shown and described (see the detailed description above for details), it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An intelligent induction dough humidity regulating noodle making machine, comprising a noodle making machine body (100), the noodle making machine body (100) comprising a base (101), a supporting fixing ring (109) welded to the other end of the upper surface of the base (101), a stirring barrel (107) placed inside the supporting fixing ring (109), a column (102) welded and fixed to one end of the upper surface of the base (101), a top box body (103) mounted on the top of the column (102) through a cylinder, a motor (1051) disposed inside the top box body (103), a stirrer (105) mounted on the end of the motor (1051), a barrel cover (106) mounted on the top of the stirrer (105) through a bearing, characterized in that: The noodle making machine body (100) is also provided with: A support placement collection mechanism, wherein the support placement collection mechanism comprises a pull-out assembly arranged at the bottom end of a support fixing ring (109) and located inside the base (101), wherein a collection support placement assembly is arranged inside the pull-out assembly; The reinforcing mechanism comprises an elastic snap-fit assembly arranged at the connection between the mixing barrel (107) and the barrel cover (106), and the lower surface of the elastic snap-fit assembly is located at the toggle adjustment assembly at the top edge of the mixing barrel (107).
2. The intelligent induction dough humidity regulating dough beating machine according to claim 1, characterized in that: A humidity sensor (108) is fixedly installed on the top end of the inner part of the barrel cover (106), a solenoid valve (1081) is installed on one end of the upper surface of the barrel cover (106), and a spraying part is provided inside the barrel cover (106) at the end of the solenoid valve (1081). A controller (104) is provided on the front surface of the top box body (103), and the humidity sensor (108), the motor (1051), the solenoid valve (1081) and the controller (104) are all electrically connected through wires.
3. The intelligent induction dough humidity regulating dough beating machine according to claim 1, characterized in that: The pulling assembly comprises a mounting groove (1012) provided at the bottom end of the supporting fixing ring (109) and located inside the base (101), and a connecting plate (1011) is placed inside the mounting groove (1012).
4. The intelligent induction dough humidity regulating dough beating machine according to claim 3, characterized in that: Locking bolts (1014) are rotatably provided at both ends of the front surface of the connecting plate (1011), and a handle (1013) is fixed at the middle position of the front surface of the connecting plate (1011) by screws.
5. The intelligent induction dough humidity regulating dough beating machine according to claim 3, characterized in that: The collecting support placement assembly includes a collecting trough (1015) provided inside the connecting plate (1011), support columns (1016) are fixedly installed at the inner middle position and the edge of the collecting trough (1015), and the upper surface of the connecting plate (1011) and the top of the support column (1016) are in contact with the bottom end of the mixing barrel (107).
6. The intelligent induction dough humidity regulating dough beating machine according to claim 1, characterized in that: The elastic locking assembly comprises a limiting groove (1061) provided at the top edge of the mixing barrel (107); a limiting clamp (1064) is provided inside the limiting groove (1061); an elastic block (1062) is provided at the connection between the end of the limiting clamp (1064) and the inside of the limiting groove (1061); a clamping hole (1063) is provided at the edge of the barrel cover (106); and the limiting clamp (1064) passes through the clamping hole (1063).
7. The intelligent induction dough humidity regulating dough beating machine according to claim 6, characterized in that: The toggle adjustment assembly includes a threaded lever (1065) arranged on the lower surface of the top end of the mixing barrel (107); an internal threaded hole (1066) is provided at the bottom end of the limiting clamp (1064); and the end of the threaded lever (1065) is rotatably connected to the internal thread of the internal threaded hole (1066).