Full-automatic fresh and wet noodle maker
By designing a fully automatic fresh and wet noodles machine, using the combination technology of feed mixing rod and powder stop mechanism, the problems of uneven mixing of flour and water and blocking of flour are solved, and the molding of high-quality noodles and reliable operation of equipment are achieved.
Patent Information
- Application Number
- CN202422231491.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-12
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-12
AI Technical Summary
The uneven mixing of existing flour and water causes the noodles to taste less, and the agglomeration of flour will clog the equipment and damage the drive motor.
A fully automatic fresh and wet noodles machine is designed, including a flour hopper, feeding mixing rod, powder stop mechanism, drive unit and noodles extrusion forming mechanism. Through the stirring action of the feed mixing rod and the adjustment of the powder barrier mechanism, ensure uniform mixing of flour and water, and prevent the flour from agglomeration and clogging.
It realizes even mixing and high-quality molding of noodles, avoids equipment blockage and motor damage caused by flour clumping, and improves the taste of noodles and the reliability of equipment.
Smart Images

Figure CN223025319U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of dough-kneading and noodle-extruding equipment, and particularly relates to a full-automatic fresh wet noodle machine. Background Art
[0002] There are two special foods, cold noodles and crushed noodles, in northern cities. There are many types of traditional noodle machines for processing cold noodles and crushed noodles, which extrude noodles by putting the kneaded dough into the extrusion device; while for the fresh noodle machines on the market, the flour and water are often not evenly mixed, which will not only greatly reduce the taste of the extruded noodles, but also affect the taste, smoothness and toughness of the noodles. The dough that has not fully absorbed water will form white spots and white stripes on the surface of the dried noodles, seriously affecting the product quality; the poor mixing of flour and water will block the flour outlet, jam the stirring rod with flour, and damage the driving motor of the equipment. Summary of the Invention
[0003] The purpose of the present invention is to solve the above problems, and provide a full-automatic fresh wet noodle machine.
[0004] A full-automatic fresh wet noodle machine, which comprises: a frame, a flour hopper, a feeding stirring rod, a first telescopic rod, a powder blocking mechanism, a driving unit, a noodle extrusion and forming mechanism, a water pipe, and a controller; characterized in that: the described frame comprises: an upper support frame, a support plate, and a column; the upper support frame and the support plate are fixed on the column; the flour hopper is fixed on the upper support frame; the lower inner side of the flour hopper is a feeding stirring part; the feeding stirring rod is axially connected in the feeding stirring part; one end of the feeding stirring part is provided with a powder outlet; the powder blocking mechanism is arranged at the powder outlet; one side of the noodle extrusion and forming mechanism is docked with the powder outlet; the water source is connected to the noodle extrusion and forming mechanism through the water pipe; the driving unit drives the feeding stirring rod and the auger shaft in the noodle extrusion and forming mechanism to rotate; the controller is fixed on the side of the upper support frame; the controller is electrically connected to the first telescopic rod, the powder blocking mechanism, and the driving unit; when the powder outlet is blocked; the controller drives the first telescopic rod to drive the feeding stirring rod to move horizontally in the feeding stirring part; the powder blocking mechanism adjusts the diameter of the powder outlet.
[0005] A feeding port is arranged above the flour hopper; the bottom of the feeding stirring part is arc-shaped; one side of the feeding stirring part is provided with an axial connection part; the other side of the feeding stirring part is provided with a shaft rod through hole; the axial center lines of the axial connection part, the shaft rod through hole, and the arc-shaped bottom of the feeding stirring part coincide.
[0006] The described feeding and stirring rod includes: a stirring rod main shaft, stirring blades, a stirring rod driving wheel, a wheel shaft linkage frame, and a driving wheel pad; both ends of the stirring rod main shaft are respectively provided with a first stepped shaft and a second stepped shaft; the first stepped shaft is pivotally connected in the pivoting part; the second stepped shaft is pivotally connected in the shaft rod through hole, and the second stepped shaft extends out from the flour hopper; the through hole of the stirring rod driving wheel is sleeved on the second stepped shaft; the driving wheel pad is fixedly connected to the second stepped shaft by bolts; the wheel shaft linkage frame is pivotally connected between the stirring rod driving wheel and the driving wheel pad; both ends of the wheel shaft linkage frame are provided with frame arms; one end of the first telescopic rod is fixedly connected to the frame arm; the other end of the first telescopic rod is fixedly connected to the upper support frame.
[0007] The described powder blocking mechanism includes: a powder blocking plate, a pull rod, a pull rod spring, a C-shaped linkage frame, and a second telescopic rod; a baffle card slot is provided above the powder outlet; a pull rod sliding frame is provided above the baffle card slot; a pull rod sliding hole is provided on the pull rod sliding frame; the powder blocking plate is inserted into the baffle card slot; the lower end of the pull rod is fixedly connected to the powder blocking plate; the pull rod spring is sleeved on the pull rod; the upper end of the pull rod is sleeved in the pull rod sliding hole; the lower end of the pull rod spring abuts against the baffle edge, and the upper end of the pull rod spring abuts against the lower end face of the pull rod sliding frame; the lower end of the C-shaped linkage frame is provided with a linkage rod flange; the upper end of the pull rod is sleeved in the moving rod flange; a lifting handle is locked at the top of the pull rod; the lower end face of the lifting handle abuts against the linkage rod flange; the second telescopic rod is fixed above the pull rod sliding frame; the telescopic arm in the second telescopic rod is connected to the top of the C-shaped linkage frame; the second telescopic rod pulls the powder blocking plate to move up and down.
[0008] The described driving unit includes: a driving motor, a main driving pulley, an extrusion mechanism transmission shaft, a transmission auxiliary pulley, a first transmission belt, and a second transmission belt; the driving motor is fixed on the support plate; the main driving pulley is fixed on the output shaft of the driving motor; the extrusion mechanism transmission shaft is pivotally connected to the transmission shaft support; the transmission auxiliary pulley is fixed on one end of the extrusion mechanism transmission shaft; a linkage tooth opening is provided at the other end of the extrusion mechanism transmission shaft; the main driving pulley and the stirring rod driving wheel are drivingly connected by the first transmission belt; the stirring rod driving wheel is drivingly connected to the transmission auxiliary pulley by the second transmission belt.
[0009] The main driving pulley and the stirring rod driving wheel have the same wheel diameter; the wheel diameter of the transmission auxiliary pulley is twice that of the stirring rod driving wheel 33; to achieve synchronous rotation speed of the driving motor and the feeding and stirring rod; the rotation speed of the extrusion mechanism transmission shaft is lower than that of the feeding and stirring rod 3.
[0010] The described noodle extrusion and forming mechanism includes: a kneading cylinder, a cylinder fixing seat, a screw shaft, a noodle forming hole plate, a hole plate cover, and a mixing rack; the kneading cylinder is fixed on the cylinder fixing seat; the cylinder fixing seat is fixed below on the support plate; one side of the kneading cylinder is open; a feeding port is provided above the kneading cylinder near the open side; the mixing rack is fixed at the feeding port; the screw shaft is pivotally connected in the kneading cylinder; the noodle forming hole plate is fixed at the end of the kneading cylinder through the hole plate cover.
[0011] One side above the mixing rack is provided with a water inlet; the other side above the mixing rack is provided with an observation port; the water inlet is communicated with the observation port; a flow equalizing orifice plate is arranged inside the water inlet; a plurality of equally spaced water permeable holes are arranged on the flow equalizing orifice plate; an observation cover plate is arranged at the observation port; a powder inlet is also arranged at the side end of the mixing rack; a powder inlet edge plate is arranged inside the powder inlet; the powder inlet is sleeved on the powder outlet; the powder inlet edge plate is below the end of the powder outlet.
[0012] A valve is arranged on the water pipe; one end of the water pipe is fixed outside the water inlet through a first water pipe support; the water outlet of the water pipe extends above the flow equalizing orifice plate; the middle of the water pipe is fixed on the side of the upper support frame through a second water pipe support; the other end of the water pipe is connected to the water supply pipeline.
[0013] This technical solution provides a fully automatic fresh wet noodle machine, which includes: a machine frame, a flour hopper, a feeding stirring rod, a first telescopic rod, a powder blocking mechanism, a driving unit, a noodle extrusion and forming mechanism, a water pipe, a controller; the flour hopper is fixed on the top of the machine frame; the feeding stirring rod is axially connected in the flour hopper; a powder outlet is arranged on one side of the bottom of the flour hopper; the powder blocking mechanism is arranged at the powder outlet; one side of the noodle extrusion and forming mechanism is butted against the powder outlet; water source is connected to the noodle extrusion and forming mechanism through the water pipe; the driving unit drives the feeding stirring rod and the auger shaft in the noodle extrusion and forming mechanism to rotate; the controller is fixed on the side of the upper support frame; the controller is electrically controlled and connected to the first telescopic rod, the powder blocking mechanism, and the driving unit; when the powder outlet is blocked, the controller drives the first telescopic rod to drive the feeding stirring rod to move horizontally in the feeding stirring part; the powder blocking mechanism adjusts the diameter of the powder outlet. Brief Description of the Drawings
[0014] Figure 1 is the overall schematic diagram of a fully automatic fresh wet noodle machine of the present utility model;
[0015] Figure 2 is the partial cross-sectional schematic diagram of a fully automatic fresh wet noodle machine of the present utility model;
[0016] Figure 3 is the cross-sectional schematic diagram of the flour hopper structure of a fully automatic fresh wet noodle machine of the present utility model;
[0017] Figure 4 is the schematic diagram of the flour hopper stirring rod structure of a fully automatic fresh wet noodle machine of the present utility model;
[0018] Figure 5 is the overall schematic diagram of the noodle extrusion and forming mechanism of a fully automatic fresh wet noodle machine of the present utility model;
[0019] Figure 6 is the cross-sectional schematic diagram of the noodle extrusion and forming mechanism of a fully automatic fresh wet noodle machine of the present utility model;
[0020] Figure 7 is a partial cross-sectional view of the noodle extrusion and forming mechanism of a full-automatic fresh wet noodle machine of the present utility model;
[0021] Figure 8 is a cross-sectional view of the mixing rack structure of a full-automatic fresh wet noodle machine of the present utility model;
[0022] Figure 9 is a schematic view of the mixing rack structure of a full-automatic fresh wet noodle machine of the present utility model.
[0023] Reference numerals in the figure: 1, frame; 11, upper support frame; 12, support plate; 13, column; 14, support foot; 2, flour hopper; 21, feeding port; 22, feeding and stirring part; 23, flour outlet; 24, shaft connection part; 25, shaft rod through hole; 26, pull rod sliding frame; 261, pull rod sliding hole; 27, transmission shaft support; 3, feeding and stirring rod; 31, main stirring rod shaft; 311, first stepped shaft; 312, second stepped shaft; 32, stirring blade; 33, stirring rod driving wheel; 34, wheel shaft linkage frame; 341, shaft collar frame; 35, driving wheel pad; 4, first telescopic rod; 5, powder blocking mechanism; 51, powder blocking plate; 511, baffle abutting edge; 52, pull rod; 521, lifting handle; 53, pull rod spring; 54, C-shaped linkage frame; 55, second telescopic rod; 61, drive motor; 62, main drive pulley; 63, extrusion mechanism transmission shaft; 631, linkage tooth opening; 64, transmission auxiliary wheel; 65, first transmission belt; 66, second transmission belt; 7, noodle extrusion and forming mechanism; 71, kneading cylinder; 711, feeding port; 712, external locking thread; 72, cylinder fixing seat; 73, auger shaft; 731, docking tooth opening; 732, auger blade; 733, reamer; 74, noodle forming orifice plate; 741, auger shaft bushing; 743, positioning notch; 75, orifice plate cover; 751, positioning flange; 752, internal locking thread; 76, mixing rack; 761, fixed stop; 762, water inlet; 7621, flow equalizing orifice plate; 763, observation port; 764, observation cover plate; 765, flour inlet; 766, flour inlet edge plate; 8, water pipe; 81, valve; 82, first water pipe support; 9, controller. Detailed implementation manners
[0024] Next, in combination with the drawings of the present technical solution, the technical solution will be further clearly and completely described. The described embodiments are only a part of the technical solution, rather than all the embodiments. Based on the present technical solution, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the protection scope of the present utility model.
[0025] Embodiment 1
[0026] Refer to Figures 1 to 9As shown in the figure, a fully automatic fresh wet noodle machine includes: a frame 1, a flour hopper 2, a feeding and stirring rod 3, a first telescopic rod 4, a powder blocking mechanism 5, a driving unit, a noodle extrusion and forming mechanism 7, a water pipe 8, and a controller 9;
[0027] The frame 1 includes: an upper support frame 11, a support plate 12, a column 13, and a support foot 14; the upper support frame 11 and the support plate 12 are fixed on the column 13; the support foot 14 is fixed at the bottom of the column 13; the flour hopper 2 is fixed on the upper support frame 11;
[0028] Above the flour hopper 2 is a rectangular feeding port 21, and below the inner side of the flour hopper 2 is a feeding and stirring part 22; the bottom of the feeding and stirring part 22 is arc-shaped; one end of the arc-shaped bottom of the feeding and stirring part 22 is provided with a powder outlet 23;
[0029] The outer end of the powder outlet 23 is tubular; above the powder outlet 23 is provided with a baffle card slot 231; on one side of the feeding and stirring part 22 is provided with a shaft connection part 24; on the other side of the feeding and stirring part 22 is provided with a shaft rod through hole 25; the axis lines of the shaft connection part 24, the shaft rod through hole 25, and the arc-shaped bottom of the feeding and stirring part 22 coincide;
[0030] Above the baffle card slot 231 is provided with a pull rod sliding frame 26; on the pull rod sliding frame 26 is provided with a pull rod sliding hole 261;
[0031] On both sides below the feeding and stirring part 22 are also provided with drive shaft brackets 27.
[0032] The feeding and stirring rod 3 includes: a stirring rod main shaft 31, stirring blades 32, a stirring rod driving wheel 33, a wheel shaft linkage frame 34, and a driving wheel pad 35;
[0033] At both ends of the stirring rod main shaft 31 are respectively provided with a first stepped shaft 311 and a second stepped shaft 312; the first stepped shaft 311 is arranged on one side of the stirring rod main shaft 31; the second stepped shaft 312 is arranged on the other side of the stirring rod main shaft 31; the first stepped shaft 311 is shaft-connected in the shaft connection part 24; the second stepped shaft 312 is shaft-connected in the shaft rod through hole 25; the second stepped shaft 312 extends out from the flour hopper 2; the through hole of the stirring rod driving wheel 33 is sleeved on the second stepped shaft 312; the through hole of the stirring rod driving wheel 33 is in interference connection with the second stepped shaft 312;
[0034] In the middle of the wheel shaft linkage frame 34 is provided with a shaft ring frame 341; at both ends of the wheel shaft linkage frame 34 are provided with frame arms 342; the driving wheel pad 35 is a rotary body component; the driving wheel pad 35 is shaft-connected in the shaft ring frame 341; the driving wheel pad 35 is fixedly connected to the second stepped shaft 312 by bolts; that is, the stirring blades 32 are fixed on the stirring rod main shaft 31, the stirring rod main shaft 31, the stirring rod driving wheel 33, and the driving wheel pad 35 are connected in sequence, and the wheel shaft linkage frame 34 is shaft-connected between the stirring rod driving wheel 33 and the driving wheel pad 35.
[0035] There are two first telescopic rods 4, and the two first telescopic rods 4 are symmetrically arranged on both sides of the flour hopper 2; one end of the bottom of the fixed sleeve of the main body of the first telescopic rod 4 is fixedly connected to the upper support frame 11; the front end of the telescopic arm of the first telescopic rod 4 is fixedly connected to the arm 342 of the wheel axle linkage frame 34;
[0036] That is, the wheel axle linkage frame 34 is connected to the upper support frame 11 through the first telescopic rod 4; the first telescopic rod 4 drives the stirring blade 32 to move horizontally in the feeding and stirring part 22.
[0037] The powder blocking mechanism 5 includes: a powder blocking plate 51, a pull rod 52, a pull rod spring 53, a C-shaped linkage frame 54, and a second telescopic rod 55; a T-shaped slot is provided in the baffle slot 231; the main body of the powder blocking plate 51 is inserted into the T-shaped slot of the baffle slot 231; the powder blocking plate 51 can completely block the powder outlet 23; a baffle abutting edge 511 is provided at the upper end of the powder blocking plate 51; the lower end of the pull rod 52 is fixed on the baffle abutting edge 511; the upper end of the pull rod 52 is sleeved in the pull rod sliding hole 261; the pull rod spring 53 is sleeved on the pull rod 52; the lower end of the pull rod spring 53 abuts against the baffle abutting edge 511, and the upper end of the pull rod spring 53 abuts against the lower end surface of the pull rod sliding frame 26; a linkage rod flange 541 is provided at the lower end of the C-shaped linkage frame 54; the upper end of the pull rod 52 is sleeved in the moving rod flange 541; a lifting handle 521 is locked at the top of the pull rod 52; the lower end surface of the lifting handle 521 abuts against the linkage rod flange 541; the lifting handle 521 can manually lift and lower the powder blocking plate 51.
[0038] The second telescopic rod 55 has the same structure as the first telescopic rod 4; the fixed sleeve of the main body of the second telescopic rod 55 is fixed above the pull rod sliding frame 26; the front end of the telescopic arm of the second telescopic rod 55 is connected to the C-shaped linkage frame 54; the second telescopic rod 55 pulls the powder blocking plate 51 to lift and lower through the C-shaped linkage frame 54.
[0039] The driving unit includes: a driving motor 61, a main driving pulley 62, an extrusion mechanism transmission shaft 63, a transmission auxiliary pulley 64, a first transmission belt 65, and a second transmission belt 66;
[0040] The driving motor 61 is fixed on the support plate 12; the main driving pulley 62 is fixed on the output shaft of the driving motor 61; the extrusion mechanism transmission shaft 63 is pivotally connected to the transmission shaft support 27; the transmission auxiliary pulley 64 is fixed on one end of the extrusion mechanism transmission shaft 63; a linkage tooth opening 631 is provided at the other end of the extrusion mechanism transmission shaft 63; the main driving pulley 62 is drivingly connected to the stirring rod driving pulley 33 through the first transmission belt 65; the stirring rod driving pulley 33 is drivingly connected to the transmission auxiliary pulley 64 through the second transmission belt 66;
[0041] The main drive pulley 62 has the same diameter as the stirring rod drive pulley 33; the diameter of the transmission secondary pulley 64 is twice that of the stirring rod drive pulley 33; the synchronous rotation speed of the drive motor 61 and the feeding and stirring rod 3 is achieved; the rotation speed of the extrusion mechanism transmission shaft 63 is lower than that of the feeding and stirring rod 3.
[0042] The described noodle extrusion and forming mechanism 7 is a screw-type noodle forming device;
[0043] The described noodle extrusion and forming mechanism 7 includes: a kneading cylinder 71, a cylinder fixing seat 72, a screw shaft 73, a noodle forming orifice plate 74, an orifice plate cover 75, and a mixing rack 76;
[0044] The described kneading cylinder 71 is fixed on the cylinder fixing seat 72; the cylinder fixing seat 72 is fixed below on the support plate 12;
[0045] One side of the described kneading cylinder 71 is open; above the kneading cylinder 71 near the open side, there is a feeding port 711; on the outer end face of the other side of the kneading cylinder 71, there is an outer locking thread 712;
[0046] The described noodle forming orifice plate 74 is circular; the inner diameter of the orifice plate cover 75 is the same as the diameter of the noodle forming orifice plate 74; at the center of the noodle forming orifice plate 74, there is a screw shaft bushing 741; on the noodle forming orifice plate 74, there are several noodle forming holes; at least 1 positioning notch 743 is provided at the edge of the noodle forming orifice plate 74; in the orifice plate cover 75, there is a positioning flange 751; the positioning notch 743 and the positioning flange 751 are in mechanical cooperation;
[0047] The described screw shaft 73 is pivotally connected in the kneading cylinder 71; at one end of the screw shaft 73, there is a butt tooth opening 731; the butt tooth opening 731 meshes with the linkage tooth opening 631; on the screw shaft 73, there are 2 screw blades 732; between the 2 screw blades, there is a reamer 733; one end of the screw shaft 73 is pivotally connected in the screw shaft bushing;
[0048] The described noodle forming orifice plate 74 is sleeved in the orifice plate cover 75; on the inner side of the orifice plate cover 75, there is an inner locking thread 752; the outer locking thread 712 and the inner locking thread 752 are thread-locked and connected; that is, the noodle forming orifice plate 74 is fixed at the end of the kneading cylinder 71 through the orifice plate cover 75;
[0049] The lower end of the described mixing rack 76 is provided with a fixed stop 761; the mixing rack 76 is fixed on the feeding port 711 through the fixed stop 761; on one side above the mixing rack 76, there is a water inlet 762; on the other side above the mixing rack 76, there is an observation port 763; the water inlet 762 and the observation port 763 are connected and communicated; inside the water inlet 762, there is a flow equalizing orifice plate 7621; on the flow equalizing orifice plate 7621, there are several equally spaced water permeable holes; at the observation port 763, there is an observation cover plate 764;
[0050] A powder inlet 765 is also provided at the side end of the mixing rack 76; a powder inlet edge plate 766 is provided inside the powder inlet 765; the powder inlet 765 is sleeved on the powder outlet 23; the powder inlet edge plate 766 is below the end of the powder outlet 23; the powder inlet edge plate 766 enables the powder to enter the auger blade 732, and the water entering from the water inlet 762 is dispersed and falls into the kneading cylinder 71 through the flow equalizing orifice plate 7621; the kneaded lumps are broken by the reamer 733; to fully blend the flour and water and improve the flexibility of the dough.
[0051] A valve 81 is provided on the water pipe 8; one end of the water pipe 8 is fixed outside the water inlet 762 through the first water pipe bracket 82; the water outlet of the water pipe 8 extends above the flow equalizing orifice plate 7621; the middle of the water pipe 8 is fixed to the side of the upper support frame 11 through the second water pipe bracket; the other end of the water pipe 8 is connected to the water supply source pipeline.
[0052] The controller 9 is fixed to the side of the upper support frame 11; the controller 9 is connected to the first telescopic rod 4, the second telescopic rod 55 and the drive motor 61 through cable control;
[0053] The controller 9 detects the output current of the drive motor 61; when the flour lumps block the powder outlet 23, the feeding and stirring rod 3 will stop rotating; the stop rotation of the feeding and stirring rod 3 causes the rotor of the drive motor 61 to stop rotating or the torque to increase; at this time, the current of the drive motor 61 increases; when the current of the drive motor 61 suddenly increases to the trigger threshold; when the controller 9 detects that the output current of the drive motor 61 reaches the trigger threshold, it drives the first telescopic rod 4 or the second telescopic rod 55;
[0054] The first telescopic rod 4 drives the feeding and stirring rod 3 to move in the opposite direction relative to the powder outlet 23;
[0055] The second telescopic rod 55 drives the powder blocking plate 51 to move vertically upward to increase the diameter of the powder outlet 23;
[0056] The controller 9 can also control the drive motor 61 to reverse to solve the problem of flour lumping.
[0057] The above specific embodiments do not constitute a limitation to the protection scope of the present invention. Those skilled in the art should understand that various modifications, combinations, sub-combinations and substitutions can be made according to design requirements and other factors. Any modifications, equivalent substitutions and improvements made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A fully automatic fresh wet noodle machine, comprising: A frame (1), a flour hopper (2), a feeding stirring rod (3), a first telescopic rod (4), a powder blocking mechanism (5), a driving unit, a noodle extrusion molding mechanism (7), a water pipe (8), and a controller (9); characterized in that: the frame (1) comprises: an upper support frame (11), a support plate (12), and a column (13); the upper support frame (11) and the support plate (12) are fixed on the column (13); the flour hopper (2) is fixed on the upper support frame (11); the feeding stirring part (22) is located at the lower inner side of the flour hopper (2); the feeding stirring rod (3) is axially connected to the feeding stirring part (22); a powder outlet (23) is provided at one end of the feeding stirring part (22); the powder blocking mechanism (5) is provided at the The noodle extrusion molding mechanism (7) is connected to the noodle extrusion molding mechanism (23); a water source is connected to the noodle extrusion molding mechanism (7) through a water pipe (8); a driving unit drives the feeding stirring rod (3) and the auger shaft (73) provided in the noodle extrusion molding mechanism (7) to rotate; a controller (9) is fixed on the side of the upper support frame (11); the controller (9) is electrically connected to the first telescopic rod (4), the powder blocking mechanism (5) and the driving unit; when the noodle outlet (23) is blocked, the controller (9) drives the first telescopic rod (4) to drive the feeding stirring rod (3) to move horizontally in the feeding stirring part (22); and the powder blocking mechanism (5) adjusts the diameter of the noodle outlet (23).
2. The fully automatic fresh wet noodle machine according to claim 1, characterized in that: A feeding port (21) is provided above the flour hopper (2); the bottom of the feeding and stirring portion (22) is arc-shaped; an axle connection portion (24) is provided on one side of the feeding and stirring portion (22); an axle rod through hole (25) is provided on the other side of the feeding and stirring portion (22); and the axis center lines of the axle connection portion (24), the axle rod through hole (25) and the arc-shaped bottom of the feeding and stirring portion (22) coincide with each other.
3. The fully automatic fresh wet noodle machine according to claim 2, characterized in that: The feeding stirring rod (3) comprises: a stirring rod main shaft (31), a stirring blade (32), a stirring rod driving wheel (33), a wheel shaft linkage frame (34), and a driving wheel pad (35); a first stepped shaft (311) and a second stepped shaft (312) are respectively provided at both ends of the stirring rod main shaft (31); the first stepped shaft (311) is axially connected to the shaft connection portion (24); the second stepped shaft (312) is axially connected to the shaft rod through hole (25); the second stepped shaft (312) extends from the flour hopper (2) to the flour hopper (2) and is The stirring rod driving wheel (33) is extended out; the through hole of the stirring rod driving wheel (33) is sleeved on the second stepped shaft (312); the driving wheel pad (35) is fixedly connected to the second stepped shaft (312) by means of bolts; the wheel shaft linkage frame (34) is axially connected between the stirring rod driving wheel (33) and the driving wheel pad (35); the wheel shaft linkage frame (34) is provided with a frame arm (342) at both ends; one end of the first telescopic rod (4) is fixedly connected to the frame arm (342); and the other end of the first telescopic rod (4) is fixedly connected to the upper support frame (11).
4. The fully automatic fresh wet noodle machine according to claim 3, characterized in that: The powder blocking mechanism (5) comprises: a powder blocking plate (51), a pull rod (52), a pull rod spring (53), a C-shaped linkage frame (54), and a second telescopic rod (55); a baffle plate slot (231) is provided above the powder outlet (23); a pull rod sliding frame (26) is provided above the baffle plate slot (231); a pull rod sliding frame (26) is provided on the pull rod sliding frame (26); the powder blocking plate (51) is inserted into the baffle plate slot (231); the lower end of the pull rod (52) is fixedly connected to the powder blocking plate (51); the pull rod spring (53) is sleeved on the pull rod (52); the upper end of the pull rod (52) is sleeved in the pull rod sliding hole (261); the pull rod spring (5 3) The lower end abuts against the baffle edge (511), and the upper end of the pull rod spring (53) abuts against the lower end surface of the pull rod sliding frame (26); the lower end of the C-shaped linkage frame (54) is provided with a linkage rod flange (541); the upper end of the pull rod (52) is sleeved in the linkage rod flange (541); the top of the pull rod (52) is locked with a lifting handle (521); the lower end surface of the lifting handle (521) abuts against the linkage rod flange (541); the second telescopic rod (55) is fixed above the pull rod sliding frame (26); the telescopic arm in the second telescopic rod (55) is connected to the top of the C-shaped linkage frame (54); the second telescopic rod (55) pulls the powder baffle (51) to rise and fall.
5. The fully automatic fresh wet noodle machine according to claim 4, characterized in that: The driving unit comprises: a driving motor (61), a main driving pulley (62), an extrusion mechanism transmission shaft (63), a transmission sub-wheel (64), a first transmission belt (65), and a second transmission belt (66); the driving motor (61) is fixed on the support plate (12); the main driving pulley (62) is fixed on the output shaft of the driving motor (61); transmission shaft brackets (27) are also provided on both sides below the feeding and stirring part (22); the extrusion mechanism transmission shaft (63) is axially connected to the transmission shaft bracket (27); the transmission sub-wheel (64) is fixed to one end of the extrusion mechanism transmission shaft (63); the other end of the extrusion mechanism transmission shaft (63) is provided with a linkage tooth mouth (631); the main driving pulley (62) is connected to the stirring rod driving wheel (33) by the first transmission belt (65); the stirring rod driving wheel (33) is connected to the transmission sub-wheel (64) by the second transmission belt (66).
6. The fully automatic fresh wet noodle machine according to claim 5, characterized in that: The main driving pulley (62) and the stirring rod driving wheel (33) have the same wheel diameter; the wheel diameter of the transmission secondary wheel (64) is twice that of the stirring rod driving wheel (33); the driving motor (61) and the feeding stirring rod (3) have synchronous rotation speeds; and the rotation speed of the extrusion mechanism transmission shaft (63) is lower than the rotation speed of the feeding stirring rod (3).
7. The fully automatic fresh wet noodle machine according to claim 6, characterized in that: The noodle extrusion forming mechanism (7) comprises: a dough kneading cylinder (71), a cylinder fixing seat (72), an auger shaft (73), a noodle forming orifice plate (74), an orifice plate cover (75), and a mixing frame (76); the dough kneading cylinder (71) is fixed on the cylinder fixing seat (72); the lower part of the cylinder fixing seat (72) is fixed on the support plate (12); one side of the dough kneading cylinder (71) is open; a feed port (711) is provided above the dough kneading cylinder (71) near the opening; the mixing frame (76) is fixed at the feed port (711); the auger shaft (73) is axially connected to the dough kneading cylinder (71); and the noodle forming orifice plate (74) is fixed to the end of the dough kneading cylinder (71) through the orifice plate cover (75).
8. The fully automatic fresh wet noodle machine according to claim 7, characterized in that: A water inlet (762) is provided on one side above the mixing rack (76); an observation port (763) is provided on the other side above the mixing rack (76); the water inlet (762) is communicated with the observation port (763); a flow equalizing orifice plate (7621) is provided on the inner side of the water inlet (762); a plurality of water permeable holes arranged at equal intervals are provided on the flow equalizing orifice plate (7621); an observation cover plate (764) is provided at the observation port (763); a powder inlet (765) is also provided on the side end of the mixing rack (76); a powder inlet edge plate (766) is provided on the inner side of the powder inlet (765); the powder inlet (765) is sleeved on the powder outlet (23); and the powder inlet edge plate (766) is below the end of the powder outlet (23).
9. The fully automatic fresh wet noodle machine according to claim 8, characterized in that: The water pipe (8) is provided with a valve (81); one end of the water pipe (8) is fixed to the outside of the water inlet (762) by a first water pipe bracket (82); the water outlet of the water pipe (8) extends to the top of the flow equalizing orifice plate (7621); the middle of the water pipe (8) is fixed to the side of the upper support frame (11) by a second water pipe bracket; the other end of the water pipe (8) is connected to a water supply source pipeline.