Flour recovery device for coarse cereal fresh noodle processing
By combining the cleaning mechanism with the conveyor belt in the noodle processing equipment and utilizing the design of the telescopic spring and the brush rubbing component, efficient cleaning of the conveyor belt is achieved, solving the problem of poor flour recovery effect in the existing technology and improving production efficiency.
Patent Information
- Application Number
- CN202422750724.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-11
AI Technical Summary
When cleaning excess flour, existing noodle processing equipment is difficult to completely scrape off the flour attached to the processing equipment, resulting in poor recovery effect and affecting production efficiency.
A fabric recovery device for processing multi-grain fresh noodles was designed. The cleaning mechanism was combined with the conveyor belt. The telescopic spring pushed the scraper to fit tightly against the bottom of the conveyor belt, and the reciprocating motion of the brush assembly was coordinated to achieve efficient cleaning of the conveyor belt.
While the conveyor belt is normally transporting materials, it automatically completes the cleaning work, improving the efficiency of equipment use, reducing cleaning time, and ensuring the smooth progress of the production process.
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Figure CN223341709U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of noodle processing, in particular to a fabric recovery device for processing fresh cereal noodles. Background Art
[0002] As a unique and nutritious pasta, multi-grain fresh noodles are made by carefully mixing a variety of grains and wheat flour. Common grains include corn flour, buckwheat flour, oat flour, sorghum flour and many other categories. The integration of these grains injects rich nutrients into the noodles, such as dietary fiber, vitamins and minerals. In its production process, it is necessary to mix an appropriate amount of multi-grain flour with wheat flour in a certain proportion, and then add water and a small amount of salt and other seasonings. After the kneading process, a dough with a specific hardness and elasticity is formed. Then, with the help of a rolling pin, Alternatively, a noodle machine can be used to roll out the dough and cut it into noodles of uniform thickness. Multi-grain fresh noodles fully retain the natural flavor of the grains and have a chewier, slightly rougher texture, significantly different from ordinary white noodles. These noodles are extremely versatile in cooking and can be cleverly combined with various sauces, vegetables, meats, and other ingredients. Whether made into soup noodles with rich bone broth or mixed noodles with fresh and fragrant fried sauce, they can fully demonstrate their unique flavor charm, making them deeply loved by consumers who pursue a healthy diet and desire a rich taste.
[0003] Currently, during the processing of multi-grain fresh noodles, excess flour is recovered during the processing. However, some existing flour recovery devices for noodle processing have exposed some problems in actual use. For example, some flour attached to the processing equipment is difficult to be completely scraped off, resulting in unsatisfactory flour recovery effect and causing certain inconveniences in use.
[0004] For example, a flour recovery device for noodle processing disclosed in the Chinese patent with the announcement number "CN218921432U" includes a processing table, and a flour recovery mechanism is provided on one side of the processing table. The flour recovery mechanism is mainly composed of mounting grooves fixedly mounted on both sides of the lower surface of the processing table, a threaded rod is rotatably mounted inside the mounting groove, and the outer side of the threaded rod is threadedly connected to a moving block, a U-shaped connector is fixedly mounted on one side of the moving block, and the U-shaped connectors on both sides are fixedly connected to the mounting plate, and a scraper and a brush are fixedly mounted on the lower side of the mounting plate. The scraper and the brush can be driven to move by controlling the servo motor. The scraper can scrape up the flour attached to the surface of the processing table and push the flour to the tail end of the processing table. At the same time, with the arrangement of the mounting cylinder, the piston rod and the spring, the elastic action of the spring can tighten the piston rod and the scraper, so that the scraper fits closely to the processing table, thereby improving the flour scraping effect. In addition, the synergistic effect of the brush can sweep up the flour, which is beneficial to enhance the flour recovery effect to a certain extent.
[0005] However, the above device still has some shortcomings during actual application. Although it can play an auxiliary cleaning role, during the cleaning process, since the cleaning device needs to move on the table board, the entire device obviously cannot be put into production and processing at the same time. This means that the cleaning period will occupy the production and processing time, which is very likely to have a negative impact on the production and processing efficiency. Moreover, the brush plate only uses a lateral displacement method for cleaning, and can only perform one scraping operation each time. It is obviously difficult to scrape off the flour stably and thoroughly. It can be seen that the existing technical means still have many areas that need to be improved in actual applications and need to be further optimized and improved. Utility Model Content
[0006] In view of the problems mentioned in the background technology, the purpose of the present invention is to provide a fabric recovery device for processing multi-grain fresh noodles, so as to solve the problem that the existing equipment will affect the processing efficiency when cleaning and recovering flour.
[0007] The above technical objectives of the present invention are achieved through the following technical solutions:
[0008] A fabric recovery device for processing multi-grain fresh noodles, comprising a base, support legs fixedly mounted at the four corners of the top of the base, a top base fixedly mounted on the tops of the support legs, a conveyor belt fixedly mounted in the middle of the top base, a first motor fixedly mounted on one end of the back of the top base, an output end of the first motor passing through the top base and fixedly connected to a rotating shaft at one end of the conveyor belt, the first motor being used to drive the conveyor belt, a cleaning mechanism fixedly mounted in the middle of the bottom of the top base, and a collecting mechanism movably mounted on the top of the base;
[0009] The cleaning mechanism includes a concave seat, which is fixedly installed in the middle of the bottom of the top seat. A fixed plate is fixedly installed in the middle of the concave seat, a scratch assembly is fixedly installed at one end of the fixed plate, and a brush assembly is fixedly installed at the other end of the fixed plate. The tops of the scratch assembly and the brush assembly are both fitted and connected to the bottom of the conveyor belt.
[0010] As an optimal technical solution, the scratch assembly includes a base plate, which is fixedly installed on one end of a fixed plate, and telescopic springs are fixedly installed at equal intervals on the top of the base plate, and a top plate is fixedly installed on the top of the telescopic springs, and a scraper is fixedly installed on the top of the top plate, and the top of the scraper is fitly connected to the bottom of the conveyor belt.
[0011] As a preferred technical solution, support shafts are fixedly installed at equal intervals on the bottom of the top plate, the bottoms of the support shafts pass through the base plate, and the telescopic springs are sleeved on the outer surfaces of the support shafts.
[0012] As an optimal technical solution, the brushing assembly includes a guide frame, which is fixedly mounted on one end of the fixed plate away from the base plate, and a second motor is fixedly mounted on one end of the guide frame, and a screw rod is fixedly mounted on the output end of the second motor through the guide frame, and the screw rod is rotatably connected to the interior of the guide frame, and a slider is threadedly connected to the interior of the guide frame, and a cleaning brush is fixedly mounted on the top of the slider.
[0013] As a preferred technical solution, the overall cross-sectional shape of the guide frame is set to be a rectangle, the side shape of the slider is also set to be a rectangle, and the top of the cleaning brush and the bottom of the conveyor belt are fit together.
[0014] As an optimal technical solution, the collecting mechanism includes a chute, which is opened on both sides of the top of the base. The inner sides of the chute are slidably connected with slides, and a material receiving frame is fixedly installed on the top of the slide.
[0015] As an optimal technical solution, the collecting mechanism further includes a guide plate, which is fixedly mounted on both sides of the bottom of the top seat and located between the inner sides of the supporting legs, and the guide plate is tilted from top to bottom toward the material receiving frame.
[0016] In summary, the present invention has the following beneficial effects:
[0017] First, this device innovatively integrates the cleaning mechanism with the conveyor belt. By starting the first motor to drive the conveyor belt to run smoothly, when the conveyor belt moves to the scraping component, the telescopic spring pushes the top plate, so that the scraper fits tightly against the bottom of the conveyor belt, effectively scraping off the attached flour. The ingenuity of this design lies in its ability to automatically clean while the conveyor belt is normally conveying materials without interfering with its normal use. When stationary, it can serve as a tabletop, achieving efficient cleaning, significantly reducing cleaning time, improving equipment utilization efficiency, effectively ensuring the smooth progress of the production process, and bringing many conveniences to production and processing.
[0018] Secondly, by setting up a brush rubbing component, after the conveyor belt is scraped by the scraper, the second motor performs a reciprocating operation function, driving the screw to rotate forward and reverse, and driving the slider to move flexibly back and forth in the guide frame, prompting the cleaning brush to rub back and forth on the bottom of the conveyor belt. This method, coordinated with the automatic displacement of the conveyor belt, can clean each position multiple times when the conveyor belt rotates one circle, with extremely high efficiency. The cleaned flour falls into the receiving frame through the guide plate, and can be collected by pulling the receiving frame. The convenient design improves the cleaning and production processing efficiency, improves the overall convenience of the equipment, reduces production interruptions and time waste, further optimizes the production process, and improves production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0020] Figure 2 It is a front structural schematic diagram of the utility model;
[0021] Figure 3 This is a schematic diagram of the structure of the collection mechanism of the utility model in an expanded state viewed from above;
[0022] Figure 4 It is a schematic structural diagram of the cleaning mechanism of the present utility model.
[0023] Figure numerals: 1. base; 2. supporting leg; 3. top seat; 4. conveyor belt; 5. first motor; 6. cleaning mechanism; 61. concave seat; 62. fixing plate; 63. scraping assembly; 631. base plate; 632. telescopic spring; 633. top plate; 634. scraper; 635. support shaft; 64. brush rubbing assembly; 641. guide frame; 642. second motor; 643. screw rod; 644. slider; 645. cleaning brush; 7. collecting mechanism; 71. chute; 72. slide plate; 73. material receiving frame; 74. guide plate. DETAILED DESCRIPTION
[0024] Example
[0025] refer to Figures 1 to 4, a fabric recovery device for processing multi-grain fresh noodles in this embodiment includes a base 1, supporting legs 2 are fixedly installed at the four corners of the top of the base 1, a top base 3 is fixedly installed on the top of the supporting legs 2, a conveyor belt 4 is fixedly installed in the middle of the top base 3, a first motor 5 is fixedly installed at one end of the back of the top base 3, the output end of the first motor 5 passes through the top base 3 and is fixedly connected to a rotating shaft at one end of the conveyor belt 4, the first motor 5 is used to drive the conveyor belt 4, a cleaning mechanism 6 is fixedly installed in the middle of the bottom of the top base 3, and a collecting mechanism 7 is movably installed on the top of the base 1;
[0026] The cleaning mechanism 6 includes a concave seat 61, which is fixedly installed in the middle of the bottom of the top seat 3. A fixed plate 62 is fixedly installed in the middle of the concave seat 61, and a scratching assembly 63 is fixedly installed at one end of the fixed plate 62. A brushing assembly 64 is fixedly installed at the other end of the fixed plate 62. The tops of the scratching assembly 63 and the brushing assembly 64 are both fitted and connected to the bottom of the conveyor belt 4. The base 1 and the supporting legs 2 provide a stable support foundation for the entire device, ensuring the stability of the equipment during operation and ensuring the smooth progress of processing and recycling work. The conveyor belt 4 installed in the middle of the top seat 3 is used to transport materials, which is connected to the first motor 5. The first motor 5 can accurately drive the conveyor belt 4 to operate, realize efficient material transportation, and provide guarantee for the continuous operation of noodle processing. The setting of the cleaning mechanism 6 is a highlight of the device. The concave seat 61 is fixedly installed in the middle of the top seat 3, and a fixed plate 62 is fixedly installed at one end of the fixed plate 62. A scratching assembly 63 and a brushing assembly 64 are fixedly installed at the other end of the fixed plate 62. The tops of the scratching assembly 63 and the brushing assembly 64 are both fitted and connected to the bottom of the conveyor belt 4. The base 1 and the supporting legs 2 provide a stable support foundation for the entire device, ensuring the stability of the equipment during operation and ensuring the smooth progress of processing and recycling work. The conveyor belt 4 installed in the middle of the top seat 3 is used to transport materials. It is connected to the first motor 5. The first motor 5 can accurately drive the conveyor belt 4 to operate, realize efficient material transportation, and provide guarantee for the continuous operation of noodle processing. The setting of the cleaning mechanism 6 is a highlight of the device. The seat 61 is fixed in the middle of the bottom of the top seat 3, providing a stable installation position for the internal fixed plate 62 and the scratching component 63 and the brushing component 64. The scratching component 63 can directly fit with the bottom of the conveyor belt 4, and perform preliminary cleaning on the conveyor belt 4 during its operation to scrape off the attached flour, while the brushing component 64 further performs detailed cleaning on the conveyor belt 4. The two work together to comprehensively and effectively clean the residual fabric on the conveyor belt 4, thereby improving the fabric recycling efficiency. The collecting mechanism 7 is movably installed on the top of the base 1 to facilitate the collection of the cleaned fabric for subsequent processing and reuse. On the whole, the device can efficiently realize fabric recycling in the process of processing fresh multi-grain noodles, reduce waste, and improve production efficiency, while ensuring the continuous and stable operation of the equipment, providing strong support for the high quality and high efficiency of noodle processing.
[0027] refer to Figure 4The scratch assembly 63 includes a base plate 631, which is fixedly mounted on one end of the fixed plate 62. A telescopic spring 632 is fixedly mounted on the top of the base plate 631 at equal intervals. A top plate 633 is fixedly mounted on the top of the telescopic spring 632. A scraper 634 is fixedly mounted on the top of the top plate 633. The top of the scraper 634 is fitted and connected to the bottom of the conveyor belt 4. A support shaft 635 is fixedly mounted on the bottom of the top plate 633 at equal intervals. The bottom of the support shaft 635 passes through the base plate 631. The telescopic spring 632 is sleeved on the outer surface of the support shaft 635. 635 can support the scraper 634 to prevent the telescopic spring 632 from swaying sideways. The base plate 631 provides a stable installation foundation for the telescopic spring 632 and the top plate 633, ensuring the structural stability of the entire scratch assembly 63. The evenly spaced telescopic springs 632 can evenly apply elastic force. When the conveyor belt 4 runs to the corresponding position, the telescopic spring 632 pushes the top plate 633 upward with its elastic potential energy, so that the scraper 634 fits tightly to the bottom of the conveyor belt 4. This adaptive fitting method can effectively deal with the conveyor belt 4. The slight ups and downs and height changes at different positions during operation ensure that the scraper 634 can always maintain good contact with the conveyor belt 4, thereby scraping off the flour attached to the conveyor belt 4 to the greatest extent possible. The support shafts 635 arranged at equal intervals at the bottom of the top plate 633 play a key supporting and guiding role. The support shafts 635 pass through the base plate 631 and the telescopic springs 632 are sleeved on their outer surfaces. On the one hand, the support shafts 635 can provide stable support for the scraper 634, preventing the scraper 634 from tilting or shaking due to uneven force during operation, thereby ensuring the uniformity and stability of the scraping effect; on the other hand, the support shafts 635 effectively limit the lateral shaking of the telescopic springs 632, so that the telescopic springs 632 can only stably expand and contract in the vertical direction, further improving the accuracy and reliability of the contact between the scraper 634 and the conveyor belt 4, and avoiding the occurrence of poor contact between the scraper 634 and the conveyor belt 4 or uneven scraping force due to lateral deformation of the spring, thereby greatly improving the efficiency and quality of fabric recovery, and providing a strong guarantee for the fabric recovery work in the processing of multi-grain fresh noodles.
[0028] refer to Figure 4The brush rubbing assembly 64 includes a guide frame 641, which is fixedly installed on the end of the fixed plate 62 away from the base plate 631, and a second motor 642 is fixedly installed on one end of the guide frame 641. The output end of the second motor 642 passes through the guide frame 641 and is fixedly installed with a screw rod 643, which is rotatably connected to the inside of the guide frame 641. The outer surface of the screw rod 643 is threadedly connected to a slider 644, and the slider 644 is slidably connected to the inside of the guide frame 641. A cleaning brush 645 is fixedly installed on the top of the slider 644. The overall cross-sectional shape of the interior of the guide frame 641 is set to be rectangular, and the side shape of the slider 644 is also set to be rectangular. The top of the cleaning brush 645 is fitly connected to the bottom of the conveyor belt 4, and the guide frame 641 provides a stable installation frame for the entire assembly to ensure the stable position of each internal component. The second motor 642 serves as a power source and can accurately drive the screw rod 643 to rotate, thereby realizing effective power transmission. The threaded connection between 43 and the slider 644 enables the slider 644 to move accurately in a straight line along the inside of the guide frame 641 when the screw rod 643 rotates. This transmission method has high precision and good stability, and the position of the slider 644 can be flexibly adjusted according to needs. The cleaning brush 645 on the top of the slider 644 fits with the bottom of the conveyor belt 4, and can brush and clean the conveyor belt 4 during the movement of the slider 644, effectively removing residual fabric. The guide frame 641 and the slider 644 are both set to a rectangular cross-sectional shape. This design prevents the slider 644 from rotating or deviating when sliding in the guide frame 641, thereby ensuring the stability of the contact between the cleaning brush 645 and the conveyor belt 4 and the consistency of the cleaning effect. On the whole, the brushing assembly 64 can clean the conveyor belt 4 efficiently and stably, improve the working efficiency and cleaning quality of the fabric recovery device, and provide reliable guarantee for fabric recovery in the processing of multi-grain fresh noodles.
[0029] refer to Figure 1-Figure 4The chute 71 on both sides of the top of the base 1 provides a stable sliding track for the slide 72, so that the slide 72 can slide smoothly in the chute 71. This design ensures the stability and direction of the material receiving frame 73 during movement, avoiding the deviation or shaking of the material receiving frame 73 during movement, making it convenient for the user to flexibly adjust the position of the material receiving frame 73 according to actual needs. The material receiving frame 73 fixedly installed on the top of the slide 72 is used to collect the material from the conveyor belt 4 The fabric cleaned from the top is connected to the slide 72 in such a way that the material receiving frame 73 can move with the slide 72, which is convenient for collecting and sorting the fabric in different working scenarios. The setting of the guide plate 74 is even more ingenious. It is fixedly mounted on both sides of the bottom of the top seat 3 and is located between the inner sides of the support legs 2. It is tilted from top to bottom toward the material receiving frame 73. This inclined guide plate 74 can use its own slope to guide the fabric to fall accurately into the material receiving frame 73 after the fabric is cleaned, avoiding scattering and waste of fabric during the falling process, and improving the efficiency and accuracy of fabric collection. On the whole, the design of the collection mechanism 7 makes the fabric recycling process more convenient and efficient, reduces the complexity of manual operation, provides strong support for the fabric recycling work in the processing of multi-grain fresh noodles, and helps to improve production efficiency and resource utilization.
[0030] Principle and advantages of use: This device combines the cleaning mechanism 6 with the conveyor belt 4, so that when a cleaning operation is required, the conveyor belt 4 can be driven to rotate by starting the first motor 5. The first motor 5 serves as a power source, and when it drives the conveyor belt 4 to rotate, the whole process is smooth and powerful. At this time, as the conveyor belt 4 moves, when it runs to the position of the scraping component 63, the telescopic spring 632 will play its unique role. The telescopic spring 632 pushes the top plate 633 upward with its elastic potential energy, and the upward movement of the top plate 633 will further prompt the scraper 634 to fit closely to the bottom of the conveyor belt 4. In this tightly fitted state, the scraper 634 can effectively scrape the bottom of the conveyor belt 4. The flour adhering to the conveyor belt 4 can be scraped off. This design can make full use of the conveying operation process of the conveyor belt 4 to realize the function of automatically cleaning the conveyor belt 4 without causing any interference to the normal use of the conveyor belt 4. In other words, while the conveyor belt 4 is normally conveying materials, it can automatically complete the cleaning work, which greatly improves the efficiency of the equipment. Moreover, when the conveyor belt 4 is stationary, it can also be used as a desktop, providing additional convenience for production and processing. It can be seen that this device achieves the goal of efficient cleaning through this innovative design, greatly reduces the time occupied by the cleaning work, thereby significantly improving the efficiency of production and processing, and providing a strong guarantee for the smooth progress of the production process.
[0031] By setting the brush rubbing assembly 64, during the operation of the conveyor belt 4, after being scraped by the scraper 634, the second motor 642 can be started to run. The second motor 642 here has the function of reciprocating operation, which can drive the screw rod 643 to rotate back and forth. When the screw rod 643 rotates forward, it will drive the slider 644 to move to one side in the guide frame 641 according to the principle of screw transmission; and when the screw rod 643 rotates reversely, it can drive the slider 644 to move toward the other side inside the guide frame 641. In this way, the device realizes the flexible back and forth movement of the driving slider 644, and the reciprocating motion of the slider 644 drives the cleaning brush 645 to rub back and forth on the bottom of the conveyor belt 4. This longitudinal short-distance brushing method cooperates with the automatic displacement of the conveyor belt 4 to form an efficient cleaning mode. During one week, the cleaning brush 645 can brush and clean various positions of the conveyor belt 4 multiple times, ensuring that every part of the conveyor belt 4 can be fully cleaned, and the overall cleaning efficiency is extremely high. During the cleaning process, the flour cleaned up will be guided by the guide plate 74 and accurately fall into the interior of the receiving frame 73. When the collected flour needs to be processed, the operation is also very simple. You only need to gently pull the receiving frame 73 to smoothly pull the slide 72 out from the inside of the slide 71 to achieve the purpose of rapid collection and cleaning. This convenient design not only improves the cleaning efficiency of the equipment during production and processing, but also improves the convenience of the equipment as a whole, making the entire production and processing process more efficient and smooth, reducing production interruptions and time waste that may be caused by cleaning work, further optimizing the production process, and improving production efficiency.
Claims
1. A fabric recovery device for processing fresh noodles made from various grains, comprising a base (1), characterized in that: Support legs (2) are fixedly mounted at the four corners of the top of the base (1), a top seat (3) is fixedly mounted on the top of the support legs (2), a conveyor belt (4) is fixedly mounted in the middle of the top seat (3), a first motor (5) is fixedly mounted on one end of the back of the top seat (3), an output end of the first motor (5) passes through the top seat (3) and is fixedly connected to a rotating shaft at one end of the conveyor belt (4), the first motor (5) is used to drive the conveyor belt (4), a cleaning mechanism (6) is fixedly mounted in the middle of the bottom of the top seat (3), and a collecting mechanism (7) is movably mounted on the top of the base (1); The cleaning mechanism (6) comprises a concave seat (61), the concave seat (61) is fixedly mounted in the middle of the bottom of the top seat (3), a fixed plate (62) is fixedly mounted in the middle of the concave seat (61), a scraping assembly (63) is fixedly mounted on one end of the fixed plate (62), and a brushing assembly (64) is fixedly mounted on the other end of the fixed plate (62), and the tops of the scraping assembly (63) and the brushing assembly (64) are both in contact with the bottom of the conveyor belt (4).
2. The fabric recovery device for processing fresh grain noodles according to claim 1, characterized in that: The scratching assembly (63) includes a base plate (631), the base plate (631) is fixedly mounted on one end of the fixed plate (62), the top of the base plate (631) is fixedly mounted with telescopic springs (632) at equal intervals, the top of the telescopic springs (632) is fixedly mounted with a top plate (633), the top of the top plate (633) is fixedly mounted with a scraper (634), and the top of the scraper (634) is in contact with the bottom of the conveyor belt (4).
3. The fabric recovery device for processing fresh grain noodles according to claim 2, characterized in that: The bottom of the top plate (633) is fixedly mounted with support shafts (635) at equal intervals. The bottom of the support shafts (635) passes through the base plate (631). The telescopic springs (632) are sleeved on the outer surface of the support shafts (635).
4. The fabric recovery device for processing fresh grain noodles according to claim 3, characterized in that: The brush rubbing assembly (64) includes a guide frame (641), the guide frame (641) is fixedly mounted on one end of the fixed plate (62) away from the base plate (631), a second motor (642) is fixedly mounted on one end of the guide frame (641), an output end of the second motor (642) passes through the guide frame (641) and is fixedly mounted with a screw rod (643), the screw rod (643) is rotatably connected to the inside of the guide frame (641), an outer surface of the screw rod (643) is threadedly connected to a slider (644), the slider (644) is slidably connected to the inside of the guide frame (641), and a cleaning brush (645) is fixedly mounted on the top of the slider (644).
5. The fabric recovery device for processing fresh grain noodles according to claim 4, characterized in that: The overall cross-sectional shape of the guide frame (641) is set to be a rectangle, the side shape of the slider (644) is also set to be a rectangle, and the top of the cleaning brush (645) and the bottom of the conveyor belt (4) are fitted and connected.
6. The fabric recovery device for processing fresh grain noodles according to claim 1, characterized in that: The collecting mechanism (7) comprises a chute (71) which is opened on both sides of the top of the base (1). The inner sides of the chute (71) are slidably connected to a slide plate (72), and a material receiving frame (73) is fixedly installed on the top of the slide plate (72).
7. The fabric recovery device for processing fresh grain noodles according to claim 6, characterized in that: The collecting mechanism (7) further comprises a guide plate (74), which is fixedly mounted on both sides of the bottom of the top seat (3) and located between the inner sides of the supporting legs (2), and the guide plate (74) is tilted from top to bottom toward the material receiving frame (73).
Citation Information
Patent Citations
Flour recovery device for noodle processing
CN218921432U