Insert plate feeding mechanism of pasta sheeting machine
By introducing a plug-in feeding mechanism into the pasta sheeting machine and using a drive motor and connecting rod structure to make the feeding plate move back and forth in the calendering bin, the problem of dough sheets caused by uneven dough moisture and size is solved, the firmness and elasticity of the dough sheets are improved, and production waste is reduced.
Patent Information
- Application Number
- CN202210657679.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-10
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2042-06-10
AI Technical Summary
When the dough is highly humid and uneven in size, existing pasta sheeting machines can easily lead to uneven particle size and thickness inside the dough sheets, causing holes in the dough and broken noodles, resulting in production waste.
A plug-in feeding mechanism for a pasta sheeting machine was designed, which included a drive motor, a transmission shaft, a feeding plate, a pressing rod, a crank, and a connecting rod. The motor drives the transmission shaft to rotate, and the crank and the connecting rod cooperate to make the feeding plate reciprocate in the rolling chamber, thereby kneading the dough and improving the density and elasticity of the dough sheets.
The firmness and elasticity of the noodles are improved, internal defects of the noodles are avoided, production efficiency and noodle quality are improved, and production costs are reduced.
Smart Images

Figure CN114903067B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a plug-in type feeding mechanism of a pasta slice forming machine. Background Art
[0002] The pasta sheeting machine is a widely used equipment in the pasta processing production line. The pasta sheeting machine generally has a calendering chamber and a calendering roller. After the dough processed by the dough mixer in the previous process enters the calendering chamber of the pasta sheeting machine, it is pressed into a dough sheet with uniform thickness by the calendering roller.
[0003] However, in existing pasta processing lines, when the dough mixer's early process is unstable, the dough is too wet, and the dough is uneven in size, the dough sheets produced by the sheeting machine often have uneven particle size and thickness. Furthermore, there is a lack of the manual dough kneading action, which can lead to holes in the dough, obvious particles, and broken and discontinuous noodles during the subsequent rolling process of the pasta sheeting machine, resulting in waste in the production process. In summary, there is an urgent need for a dough kneading mechanism that assists the pasta sheeting machine in feeding operations. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to provide a plug-in feeding mechanism for a pasta sheeting machine which can improve the firmness and elasticity of the pasta sheets.
[0005] In order to solve the above technical problems, the present invention provides a plug-in feeding mechanism for a pasta sheeting machine;
[0006] It includes a driving motor, a transmission shaft, a feeding plate, a pressure rod, at least one crank and at least one connecting rod. Both ends of the transmission shaft are respectively supported on the frame of the pasta sheet machine. The driving motor drives the transmission shaft to rotate. There is a one-to-one correspondence between the at least one crank and the at least one connecting rod. The crank and the connecting rod are respectively located on the side of the frame of the pasta sheet machine. One end of the crank is fixedly mounted on the transmission shaft, and the other end of the crank is hinged to the lower end of the connecting rod. The upper end of the connecting rod is hinged to the pressure rod. The pressure rod is located on the upper side of the frame of the pasta sheet machine. The feeding plate is fixedly connected to the pressure rod, and the feeding plate extends into the rolling bin of the corresponding pasta sheet machine.
[0007] As a preferred embodiment of the plug-in type feeding mechanism of the pasta sheet machine, the plug-in type feeding mechanism of the pasta sheet machine includes two cranks and two connecting rods, the two cranks and the two connecting rods correspond to each other one by one, the two cranks and the two connecting rods are respectively located on both sides of the frame of the pasta sheet machine, the ends of the two cranks are respectively fixedly mounted on the two ends of the transmission shaft extending outward from the frame of the pasta sheet machine, and the upper ends of the two connecting rods are respectively hinged to the two ends of the pressure rod.
[0008] As a preferred embodiment of the plug-in type feeding mechanism of the pasta sheeting machine, the plug-in type feeding mechanism of the pasta sheeting machine also includes at least one guide rod and at least one guide sleeve, the guide sleeve is fixedly connected to the frame of the pasta sheeting machine, the guide rod cooperates with the guide sleeve, the upper end of the guide rod is hinged to the pressure rod, the lower end of the guide rod extends into the guide sleeve, and the guide rod moves back and forth up and down along the axial direction of the guide sleeve.
[0009] As a preferred embodiment of the plug-in feeding mechanism of the pasta sheeting machine, the connecting rod includes a telescopic rod body, a spring sleeve and an overload spring. A cavity is provided in the spring sleeve, the lower end of the telescopic rod body extends into the cavity of the spring sleeve, the overload spring is sleeved on the outside of the telescopic rod body extending into the spring sleeve, the upper end of the overload spring rests on the cavity wall of the spring sleeve cavity, and the lower end of the overload spring rests on the lower end side wall of the telescopic rod body.
[0010] As a preferred embodiment of the plug-in feeding mechanism of the pasta sheeting machine, the upper side wall of the telescopic rod body of the connecting rod is provided with an external thread, the upper part of the telescopic rod body is fixed with a self-lubricating rod end joint bearing thread, and the self-lubricating rod end joint bearing is hinged to the pressure rod.
[0011] As a preferred embodiment of the plug-in feeding mechanism of the pasta sheeting machine, an adjustment threaded sleeve is also provided on the telescopic rod body of the connecting rod, the adjustment threaded sleeve cooperates with the external thread on the upper part of the telescopic rod body, and the upper end face of the adjustment threaded sleeve rests on the lower end face of the self-lubricating rod end joint bearing.
[0012] As a preferred embodiment of the plug-in feeding mechanism of the pasta sheeting machine, two nylon baffles are fixedly connected to the pressure rod, the feeding plate is located between the two nylon baffles, and the two nylon baffles are respectively in contact with the inner walls on both sides of the rolling bin of the pasta sheeting machine.
[0013] As a preferred embodiment of the insert-plate feeding mechanism of the pasta sheeting machine, both ends of the transmission shaft are supported on the frame of the pasta sheeting machine through circular seat outer spherical ball bearings.
[0014] As a preferred embodiment of the plug-in feeding mechanism of the pasta sheeting machine, the driving motor is a reduction motor.
[0015] As a preferred embodiment of the plug-in feeding mechanism of the pasta sheeting machine, the driving motor drives the transmission shaft to rotate through a chain transmission mechanism.
[0016] With this structure, the matured dough from the dough mixer enters the pasta sheeter. The drive motor rotates, and the chain drive mechanism drives the transmission shaft. The pressing rod, driven by the connecting rod and crank, moves up and down reciprocatingly. This in turn drives the feed plate up and down, and the feed plate completes the downward movement of the dough in the calendering chamber. This improves the density, firmness, toughness, and elasticity of the dough sheet from the first calendering pass, avoiding the uneven size of the dough in the early stages, which often leads to uneven particle size and thickness in the dough sheet extruded by the pasta sheeter. This can lead to holes in the dough skin, obvious particles, and broken and discontinuous noodles during the subsequent calendering, resulting in waste in the production process.
[0017] In addition, after the dough is matured, it enters the pasta sheeting machine, and the sprocket is driven by the reduction motor to drive the swing arm to perform circular motion, and then the spring seat assembly of the safety device drives the joint bearing to perform reciprocating motion to drive the feeding plate downward to rub the dough. At the same time, spring compression is used to avoid motor damage caused by overload of the feeding mechanism.
[0018] The plug-in feeding mechanism of this noodle sheeting machine not only improves the taste, quality and production efficiency of noodles, but also greatly reduces the production cost of the enterprise and improves the production efficiency of the enterprise. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a three-dimensional diagram of the use state of the embodiment of the plug-in feeding mechanism of the pasta sheeting machine.
[0020] Figure 2 It is a front view of an embodiment of the plug-in feeding mechanism of the pasta slicer.
[0021] Figure 3 yes Figure 2 Stereoscopic image.
[0022] Figure 4 It is a partial cross-sectional view of a connecting rod of an embodiment of a plug-in feeding mechanism of the pasta sheeting machine. DETAILED DESCRIPTION
[0023] like Figures 1 to 4 shown
[0024] In combination with the existing pasta sheeting machine, the plug-in feeding mechanism of the pasta sheeting machine is introduced. The pasta sheeting machine includes a frame 13 and two groups of calendering components. The calendering component includes a calendering bin 14 and two calendering rollers 15. The calendering bin 14 has a feed port on the upper side and a discharge port at the bottom. The two calendering rollers 15 are connected by a transmission mechanism. The two calendering rollers 15 extend into the middle of the calendering bin 14 from both sides respectively. The noodle raw materials enter the calendering bin 14 from the feed port on the upper side, pass between the two calendering rollers 15 and are discharged from the discharge port of the calendering bin 14.
[0025] The plug-in feeding mechanism of the pasta sheeting machine includes a driving motor 2, a transmission shaft 1, a feeding plate 9, a pressure rod 8, two cranks 4, two connecting rods 5, two guide rods 10 and two guide sleeves 11.
[0026] Both ends of the transmission shaft 1 are supported on a frame 13 of the pasta sheet machine, and the end of the transmission shaft 1 is matched with the frame 13 of the pasta sheet machine through a circular seat outer spherical ball bearing 1a.
[0027] The driving motor 2 is installed on the frame 13 of the pasta sheeting machine through the motor connecting seat 2a. The driving motor 2 is a reduction motor. The driving motor 2 drives the transmission shaft 1 to rotate through the chain transmission mechanism. The chain transmission mechanism includes a driving sprocket 3a, a driven sprocket 3b and a chain 3c. The driving sprocket 3a is installed on the output shaft of the driving motor 2, and the driven sprocket 3b is installed on the transmission shaft 1. The chain 3c is tensioned on the outside of the driving chain 3c and the driven chain 3c.
[0028] The two cranks 4 and the two connecting rods 5 have a one-to-one correspondence. The two cranks 4 and the two connecting rods 5 are respectively located on both sides of the frame 13 of the pasta sheet machine. The ends of the two cranks 4 are respectively fixedly mounted on the two ends of the transmission shaft 1 extending outward from the frame 13 of the pasta sheet machine. The upper ends of the two connecting rods 5 are respectively hinged to the two ends of the pressure rod 8.
[0029] Each connecting rod 5 includes a telescopic rod body 5a, a spring sleeve 5b and an overload spring 5c. A cavity is provided in the spring sleeve 5b. The upper end opening of the cavity of the spring sleeve 5b is provided with a cover plate 5b1. The lower end of the telescopic rod body 5a extends into the cover plate 5b1 of the spring sleeve 5b and extends into the cavity. The bottom of the telescopic rod body 5a is provided with an outer convex ring 5a1. The overload spring 5c is sleeved on the outside of the telescopic rod body 5a extending into the spring sleeve 5b. The upper end of the overload spring 5c rests on the cover plate 5b1 of the spring sleeve 5b, and the lower end of the overload spring 5c rests on the outer convex ring 5a1 of the telescopic rod body 5a.
[0030] The upper sidewall of the telescopic rod body 5a of the connecting rod 5 is provided with an external thread. The upper portion of the telescopic rod body 5a is threadedly engaged with a self-lubricating rod end joint bearing 6, which is hingedly connected to the pressure rod 8. The telescopic rod body 5a of the connecting rod 5 is also provided with an adjustment threaded sleeve 7. The adjustment threaded sleeve 7 engages with the external thread on the upper portion of the telescopic rod body 5a, and the upper end surface of the adjustment threaded sleeve 7 abuts against the lower end surface of the self-lubricating rod end joint bearing 6.
[0031] The pressing rod 8 is located on the upper side of the frame 13 of the pasta sheeting machine, and the feeding plate 9 is fixedly mounted on the pressing rod 8. The feeding plate 9 extends into the rolling bin 14 of the corresponding pasta sheeting machine.
[0032] The two guide rods 10 and the two guide sleeves 11 have a one-to-one correspondence. The guide sleeve 11 is fixed to the frame 13 of the pasta sheeting machine by bolts. The guide rod 10 cooperates with the guide sleeve 11. The upper end of the guide rod 10 is hinged to the pressure rod 8, and the lower end of the guide rod 10 extends into the guide sleeve 11. The guide rod 10 moves back and forth up and down along the axial direction of the guide sleeve 11.
[0033] Two guide sleeves 11 and nylon baffles 12 are fixedly mounted on the pressure rod 8 , and the feeding plate 9 is located between the two guide sleeves 11 and nylon baffles 12 . The two guide sleeves 11 and nylon baffles 12 are in contact with the inner walls on both sides of the rolling bin 14 of the pasta sheeting machine respectively.
[0034] During use, the matured dough from the dough mixer enters the sheet forming machine, and the drive motor 2 is driven to operate, and the chain transmission mechanism drives the transmission shaft 1 to rotate. The pressure rod 8 moves back and forth up and down under the action of the connecting rod 5 and the crank 4, and then the pressure rod 8 drives the feeding plate 9 to move back and forth up and down, and the feeding plate 9 completes the action of kneading the dough downwards in the rolling chamber 14.
[0035] The plug-in feeding mechanism of the pasta sheeting machine adds a forced feeding action to the original calendering process, so that the dough enters the sheeting machine for calendering after maturation, and the density, firmness, toughness and elasticity of the dough sheet are improved from the first calendering, so as to avoid the uneven size of the dough in the early stage, which often leads to uneven particle size and thickness inside the dough sheet pressed out by the sheeting machine, and the dough skin having holes, obvious particles and broken and incoherent noodles when calendered by the subsequent calendering roller 15, resulting in waste problems in the production process.
[0036] The above is only one embodiment of the present invention. It should be pointed out that for ordinary technicians in this field, several modifications and improvements can be made without departing from the principles of the present invention, and these should also be regarded as falling within the scope of protection of the present invention.
Claims
1. A plate-type feeding mechanism for a pasta sheeting machine, characterized by: It includes a driving motor, a transmission shaft, a feeding plate, a pressure rod, at least one crank and at least one connecting rod, wherein both ends of the transmission shaft are respectively supported on the frame of the pasta sheet machine, the driving motor drives the transmission shaft to rotate, and the at least one crank corresponds to the at least one connecting rod. The crank and the connecting rod are respectively located on the side of the frame of the pasta sheet machine, one end of the crank is fixedly mounted on the transmission shaft, the other end of the crank is hinged to the lower end of the connecting rod, the upper end of the connecting rod is hinged to the pressure rod, the pressure rod is located on the upper side of the frame of the pasta sheet machine, the feeding plate is fixedly connected to the pressure rod, and the feeding plate extends into the rolling bin of the corresponding pasta sheet machine; The plate-type feeding mechanism of the pasta sheet machine includes two cranks and two connecting rods, which correspond to each other one by one. The two cranks and the two connecting rods are respectively located on both sides of the frame of the pasta sheet machine. The ends of the two cranks are respectively fixedly mounted on the two ends of the transmission shaft extending outside the frame of the pasta sheet machine. The upper ends of the two connecting rods are respectively hinged to the two ends of the pressure rod; The machine also includes at least one guide rod and at least one guide sleeve, wherein the guide sleeve is fixedly connected to the frame of the pasta sheeting machine, the guide rod cooperates with the guide sleeve, the upper end of the guide rod is hinged to the pressure rod, the lower end of the guide rod extends into the guide sleeve, and the guide rod reciprocates up and down along the axial direction of the guide sleeve; The connecting rod includes a telescopic rod body, a spring sleeve and an overload spring. The spring sleeve is provided with a cavity. The lower end of the telescopic rod body extends into the cavity of the spring sleeve. The overload spring is sleeved on the outside of the telescopic rod body extending into the spring sleeve. The upper end of the overload spring abuts against the cavity wall of the spring sleeve cavity, and the lower end of the overload spring abuts against the lower end side wall of the telescopic rod body. The upper side wall of the telescopic rod body of the connecting rod is provided with an external thread, the upper part of the telescopic rod body is fixed with the thread of the self-lubricating rod end joint bearing, and the self-lubricating rod end joint bearing is hinged with the pressure rod; The telescopic rod body of the connecting rod is also provided with an adjustment threaded sleeve, which cooperates with the external thread on the upper part of the telescopic rod body, and the upper end surface of the adjustment threaded sleeve abuts against the lower end surface of the self-lubricating rod end joint bearing; Two nylon baffles are fixedly connected to the pressing rod, the feeding plate is located between the two nylon baffles, and the two nylon baffles are respectively in contact with the inner walls on both sides of the rolling bin of the pasta sheet forming machine.
2. The plate-type feeding mechanism of the pasta sheeting machine according to claim 1 is characterized in that: Both ends of the transmission shaft are supported on a frame of the pasta sheet forming machine through circular seat outer spherical ball bearings.
3. The plate-type feeding mechanism of the pasta sheeting machine according to claim 1 is characterized in that: The driving motor is a reduction motor.
4. The insert plate feeding mechanism of the pasta sheeting machine according to claim 3 is characterized by: The driving motor drives the transmission shaft to rotate through the chain transmission mechanism.
Citation Information
Patent Citations
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