A drying device for processed fine dried noodles

By using components such as toggle auxiliary parts, noodle mounting parts and switching controls in the drying device, the problem of end positioning of noodles is solved, and efficient and even drying of noodle processing is achieved, reducing production costs and improving the quality of noodles.

CN119533108BActive Publication Date: 2025-07-29ZHEJIANG JUXIANG FOOD
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Patent Information

Application Number
CN202510105214.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-07-29
Estimated Expiration
2045-01-23

AI Technical Summary

Technical Problem

The existing drying device for noodles processing is not convenient for positioning the ends of noodles, resulting in large drying errors, high production costs, and the noodles are prone to breakage and contamination, making it difficult to achieve uniform drying.

Method used

The toggle auxiliary parts, hanging mounting parts, point-changing clamps and switching controls installed on the dry support are used to ensure that the end of the noodles is stable and dry by typing, clamping and detecting the end of the noodles. The length of the noodles is detected by hanger detection parts, and the clamping position is automatically adjusted to avoid bending and breaking.

Benefits of technology

It reduces production costs, improves drying uniformity and consistency of noodles quality, reduces waste, prevents noodles from contamination, and improves the finished product quality of noodles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a drying device for processing noodles, which relates to the technical field of noodle drying; it comprises a drying support member, on which is mounted an auxiliary member for shifting dropped noodles; a noodle mounting member is mounted on the drying support member; the noodle mounting member is used to fit the end of the noodles; a point-changing clamping member is mounted on the noodle mounting member; the point-changing clamping member is used to rotate the clamping position of the noodle end; this structure clamps the end of the noodles without bending waste, and has a positive role in reducing the cost of mass production; a switching control member can be used to control the rotation of the clamping positions of the noodles by two clamping sponges, while keeping the noodle clamping stable, ensuring that the ends of the noodles can be dried together, so as to solve the problem that the current drying device for processing noodles is not convenient for positioning the noodle ends to reduce the error caused by drying, and the production cost is high.
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Description

Technical Field

[0001] The invention relates to the technical field of dried noodles, in particular to a drying device for processing dried noodles. Background Art

[0002] The drying of noodles is a crucial link in the production process of noodles. It directly affects the quality, taste and shelf life of noodles. In actual noodle manufacturing, it is usually necessary to hang the noodles cut into strips from the middle on the horizontal bar of the drying rack to facilitate the noodles to be fully dried. This method is flexible and convenient to use and is widely used. However, the current drying devices for noodle processing mostly use the method of hanging noodles on the horizontal bar. The noodles at the horizontal bar are arc-shaped after solidification and need to be cut off later. At the same time, as the noodles dry, the length of the noodles changes differently, and the subsequent segmentation work wastes a lot. It is not convenient to locate the end of the noodles to reduce the error caused by drying, and the production cost is high. It is also not convenient to monitor the deformation of the noodles. If the ratio of some noodles is inaccurate, it is easy to cause breakage and excessive stretching, which affects the taste of the finished product. It is also easy to cause noodles to scatter and be contaminated, which is not convenient for automatic winding and anti-pollution recovery. The controllable effect of noodle drying is poor, and it is not convenient to recycle scattered noodles. Direct disposal will cause unnecessary waste.

[0003] For this reason, we propose a drying device for processing fine noodles. Summary of the Invention

[0004] The object of the present invention is to provide a drying device for processing dried noodles to solve the problems mentioned in the above background art that the current drying device for processing dried noodles is not convenient for positioning the noodle ends to reduce the error caused by drying and has high production costs.

[0005] To achieve the above-mentioned object, the present invention provides the following technical solutions: a drying device for processing noodles, comprising a drying support, wherein the drying support is equipped with a toggling auxiliary member, and the toggling auxiliary member is used to toggle fallen noodles; a noodle mounting member is installed on the drying support; the noodle mounting member is used to fit the end of the noodles; a switching point clamping member is installed on the noodle mounting member; the switching point clamping member is used to rotate the clamping position of the noodle end; a switching control member is installed on the noodle mounting member; the switching control member is used to control the power supply of the switching point clamping member ; A noodle detection part is installed on the noodle mounting part; the noodle detection part is used to detect the length of noodles; two positioning parts are installed on the noodle mounting part; the noodle detection part is used to control the power supply of the two positioning parts; the drying support part includes: a support mounting frame and a drying connection shell, the support mounting frame is fixedly mounted with a drying connection shell, and the drying connection shell is provided with three V-shaped grooves, and the bottom of the three V-shaped grooves on the drying connection shell are respectively provided with slot holes; the interior of the drying connection shell is a hollow structure; two rows of jacks are provided on the support mounting frame.

[0006] Preferably, the switching control component includes: a switching control motor, a rotating switching disk and a power connection block. The switching control motor is fixedly mounted on the noodle mounting frame through a bracket; a rotating switching disk is fixedly mounted on the output shaft of the switching control motor; a power connection block is fixedly mounted on the rotating switching disk; the rotating switching disk is an insulating structure; the power connection block is aligned with two power connection springs.

[0007] Preferably, the toggle auxiliary component includes: a toggle motor and a toggle brush, the toggle motor is fixedly mounted on the drying connection shell, and the output shaft of the toggle motor is rotatably mounted on the drying connection shell; the toggle brush is fixedly mounted on the output shaft of the toggle motor, and the toggle brush is used to brush the drying connection shell; the length of the toggle brush cannot reach the bottom of the V-shaped groove on the drying connection shell.

[0008] Preferably, the switching control component also includes: a long-pass power-connecting ring and a fitting spring clip, the changing point connection shell is fixedly mounted with a fitting spring clip, and the long-pass power-connecting ring is fixedly mounted on the fitting spring clip, and the long-pass power-connecting ring is a ring structure; the fitting spring clip is an "L"-shaped structure; the long-pass power-connecting ring elastically fits the power-connecting block; the long-pass power-connecting ring, the power-connecting block, the power-connecting spring clip and the separation electromagnet are connected in series with a power supply.

[0009] Preferably, the changing point clamping part includes: a changing point connection shell, a clamping slide, a clamping sponge, a clamping spring, a separation electromagnet and a power-connecting spring. The changing point connection shell is fixedly installed on the noodle mounting frame; two clamping slides are slidably installed on the changing point connection shell; the two clamping slides are respectively fixedly installed with clamping sponges, and the clamping sponges are breathable and soft structures; the two clamping sponges are respectively used to fit the ends of the clamped noodles; two rows of clamping springs are provided inside the changing point connection shell; two separation electromagnets are fixedly installed on the changing point connection shell; the ends of the two rows of clamping springs are respectively connected to the sides of the two separation electromagnets; the other ends of the two rows of clamping springs are respectively connected to the two clamping slides; the two separation electromagnets are respectively fixedly installed with power-connecting springs, and the power-connecting springs are elastic conductive structures.

[0010] Preferably, the drying support also includes: an exhaust thrust groove and an air pump pipe. A row of exhaust thrust grooves is provided on the drying connection shell; the exhaust thrust grooves are used to exhaust air to push up the hanging noodles; an air pump pipe is fixedly installed on the side of the drying connection shell; and the air pump pipe is externally connected to an air pump.

[0011] Preferably, the noodle detection member includes: a lifting slider, an upper pulling spring, a rotating plate and a gear. There are two lifting sliders, and the two lifting sliders are respectively slidably mounted on the noodle mounting frame; upper pulling springs are respectively fixedly mounted on the two lifting sliders, and the end portions of the two upper pulling springs are respectively connected to the noodle mounting frame; a rotating plate is rotatably mounted on the two lifting sliders; a gear is fixedly mounted at the end of the rotating plate, and the gear is used to meshingly drive a rack.

[0012] Preferably, the noodle mounting member includes: a noodle mounting frame, a driving rack, a connecting pin shaft, a suction shell and a suction fan. There is a row of noodle mounting frames, and the structures on the row of noodle mounting frames are the same; both ends of the bottom of the noodle mounting frame are slidably inserted into the jacks on the support mounting frame; a driving rack is fixedly mounted on the side of the noodle mounting frame; a connecting pin shaft is threadedly connected to the top of the noodle mounting frame, and a handle is provided at the end of the connecting pin shaft; a suction shell is attached to the top of the noodle mounting frame; the connecting pin shaft passes through the suction shell; micropores are provided at the end of the suction shell; a cloth covers the surface of the micropores provided at the end of the suction shell; a suction fan is fixedly mounted on the outside of the suction shell, and the end of the suction shell is used to adsorb the end of the noodle.

[0013] Preferably, the positioning member includes: a positioning frame, an electromagnet, a positioning column and a positioning pulling spring. The positioning frame is fixedly mounted on the noodle mounting frame by bolts; an electromagnet is fixedly mounted on the positioning frame; the conductive layer, the electromagnetic conduction sheet and the electromagnet on the top of the rotating plate are connected in series with a power source; a positioning column is slidably mounted on the positioning frame, and a positioning pulling spring is sleeved on the positioning column; the end of the positioning pulling spring is connected to the positioning frame; the other end of the positioning pulling spring is fixedly mounted on the positioning column; the positioning column is inserted into the lifting slider; the electromagnet is aligned with the positioning column.

[0014] Preferably, the noodle detection member further includes: a lifting sleeve, an electromagnetic conduction sheet, a clamping plate and clamping cotton. A lifting sleeve is slidably sleeved on the rotating plate, and the end of the lifting sleeve is located between the two lifting sliders; an electromagnetic conduction sheet is fixedly mounted inside the lifting sleeve; a conductive layer is provided on the top of the rotating plate; the clamping plate is connected to the lifting sleeve by two pulling springs, and a clamping cotton is attached to the inner side of the clamping plate, and the clamping cotton is used to clamp the bottom end of the noodle.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] The present invention adopts a switching clamping piece that can cooperate with the noodle mounting piece to clamp the end of the noodles, avoiding the traditional method of using a cross bar to hang noodles. The noodles are bent at the cross bar. After drying, this bent position needs to be cut off, which directly causes waste of noodles after drying. By clamping the end of the noodles, there will be no bending waste, which has a positive role in reducing batch production costs. The switching control piece can be used to control the two clamping sponges to rotate the clamping position of the noodles, while keeping the noodle clamping stable, ensuring that the end of the noodles can be dried together, ensuring drying uniformity, and improving drying uniformity. It can avoid the problem of the noodle end not being dry for a long time, and the insufficient drag force on the noodles drying below causing a high breakage rate.

[0017] The use of noodle detection parts can be used to detect the quality of noodles, and prevent noodles from being over-stretched without being detected due to factors such as moisture and humidity in the drying room. When the noodles are detected to be over-stretched, the noodles can be automatically rolled and recovered, which is convenient for reinserting them into the dough for cutting. At the same time, it can also prevent a large number of noodles from breaking and falling to the ground during the over-stretching process, causing pollution. The neatness of the noodles is ensured while ensuring the quality of the noodles, improving the consistency of noodle quality standards, and the structure is more reasonable. At the same time, the clamping plate can also be used to clamp the bottom of the noodles to prevent some noodles from shrinking excessively during drying. The flatness of the ends of the noodles after drying and forming can be improved, and the amount of subsequent waste removed can be reduced.

[0018] The toggle auxiliary part can be used to cooperate with the drying connection shell to automatically toggle the noodles on the drying connection shell to the bottom of the V-shaped groove on the drying connection shell, so as to avoid the broken noodles blocking the exhaust thrust groove. The three V-shaped grooves on the drying connection shell are respectively provided with slot holes, which can facilitate the collected broken noodles to be dried by wind. The method of drying the fallen broken noodles can make it easier to carry out the balancing work during the subsequent weighing and packaging of the noodles, which is more suitable for small-scale use and reduces waste. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the overall structure of a drying device for processing dried noodles according to the present invention;

[0020] Figure 2 This is a schematic diagram of the installation position of the switching control component of the present invention;

[0021] Figure 3 This is a cross-sectional view of the structure of a drying device for processing dried noodles according to the present invention;

[0022] Figure 4 This is a schematic structural diagram of the drying support member of the present invention;

[0023] Figure 5 This is a schematic diagram of the structure of the noodle mounting piece of the present invention;

[0024] Figure 6 This is a schematic diagram of the structure of the point-changing clamping member of the present invention;

[0025] Figure 7 For the present invention Figure 2 A magnified view of the structure of the middle B region;

[0026] Figure 8 This is a schematic diagram of the structure of the noodle detection component of the present invention;

[0027] Figure 9 For the present invention Figure 3 A magnified view of the structure of the middle C region;

[0028] Figure 10 For the present invention Figure 1 A magnified view of the structure of region D in the middle.

[0029] In the figure: 1. Drying support member; 101. Support mounting frame; 102. Drying connection shell; 1021. Exhaust thrust slot; 103. Air pump pipe; 2. Toggle auxiliary member; 201. Toggle motor; 202. Toggle brush; 3. Noodle mounting member; 301. Noodle mounting frame; 302. Drive rack; 303. Connecting pin; 304. Suction shell; 305. Suction fan; 4. Switching point clamping member; 401. Switching point connection shell; 402. Clamping slide; 403. Clamping sponge; 404. Clamping spring; 405. Separation electromagnet; 406, power connection spring; 5, switching control component; 501, switching control motor; 502, rotating switching disk; 503, power connection block; 504, long-pass power connection ring; 5041, fitting spring; 6, noodle detection component; 601, lifting slider; 6011, lifting spring; 602, rotating plate; 603, gear; 604, lifting sleeve; 6041, electromagnetic conductive piece; 605, clamping plate; 6051, clamping cotton; 7, positioning component; 701, positioning frame; 702, electromagnet; 703, positioning column; 7031, positioning spring. DETAILED DESCRIPTION

[0030] 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 described embodiments 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 creative work are within the scope of protection of the present invention.

[0031] Example 1: Please refer to Figures 1 to 10 As shown:

[0032] The present invention provides a technical solution: a drying device for processing noodles, comprising a drying support 1, a toggling auxiliary member 2 installed on the drying support 1, the toggling auxiliary member 2 is used to toggle the fallen noodles; a noodle mounting member 3 is installed on the drying support 1; the noodle mounting member 3 is used to fit the end of the noodles; a switching point clamping member 4 is installed on the noodle mounting member 3; the switching point clamping member 4 is used to rotate the clamping position of the noodle end; a switching control member 5 is installed on the noodle mounting member 3; the switching control member 5 is used to control the power supply of the switching point clamping member 4; the noodle mounting member 3 is installed Detection part 6; the noodle detection part 6 is used to detect the length of noodles; two positioning parts 7 are installed on the noodle mounting part 3; the noodle detection part 6 is used to control the power supply of the two positioning parts 7; the drying support part 1 includes: a support mounting frame 101 and a drying connection shell 102, the drying connection shell 102 is fixedly mounted on the support mounting frame 101, and the drying connection shell 102 is provided with three V-shaped grooves, and the bottom of the three V-shaped grooves on the drying connection shell 102 are respectively provided with slot holes; the interior of the drying connection shell 102 is a hollow structure; two rows of jacks are provided on the support mounting frame 101.

[0033] Among them, the drying support member 1 also includes: an exhaust thrust groove 1021 and an air pump pipe 103, and a row of exhaust thrust grooves 1021 are provided on the drying connection shell 102; the exhaust thrust groove 1021 is used to exhaust and push up the noodles; an air pump pipe 103 is fixedly installed on the side of the drying connection shell 102; the air pump pipe 103 is externally connected to an air pump; the toggle auxiliary member 2 includes: a toggle motor 201 and a toggle brush 202, a toggle motor 201 is fixedly installed on the drying connection shell 102, and the output shaft of the toggle motor 201 is rotatably installed on the drying connection shell 102; a toggle brush 202 is fixedly installed on the output shaft of the toggle motor 201, and the toggle brush 202 is used to brush the drying connection shell 102; the length of the toggle brush 202 cannot reach the bottom of the V-shaped groove on the drying connection shell 102, and the toggle auxiliary member 2 can be used to cooperate with the drying connection shell 102 to automatically move the noodles in the drying connection The noodles on the connecting shell 102 are moved to the bottom of the V-shaped groove on the drying connecting shell 102, which can prevent the broken noodles from blocking the exhaust thrust groove 1021, and can ensure the wind compensation effect of the exhaust thrust groove 1021 on the noodles and the noodle detection part 6. At the same time, the three V-shaped grooves on the drying connecting shell 102 are respectively provided with slots, which can facilitate the collected broken noodles to be air-dried, and can ensure comprehensive drying. By drying the fallen broken noodles, it is more convenient to balance the weight when weighing and packaging the noodles later, which is more suitable for the use needs of small segments and reduces waste. The fallen noodle segments can fall on the drying connecting shell 102. At this time, the toggle motor 201 can drive the toggle brush 202 to rotate, and the toggle brush 202 can wipe the drying connecting shell 102, promoting the noodles above the drying connecting shell 102 to slide into the V-shaped groove on the drying connecting shell 102.

[0034] Among them, the hanging noodle mounting member 3 includes: a hanging noodle mounting frame 301, a driving rack 302, a connecting pin shaft 303, a suction housing 304, and a suction fan 305. There is a row of hanging noodle mounting frames 301, and the structures on the row of hanging noodle mounting frames 301 are the same; both ends of the bottom of the hanging noodle mounting frame 301 are slidably inserted into the jacks on the support mounting frame 101; a driving rack 302 is fixedly installed on the side of the hanging noodle mounting frame 301; a connecting pin shaft 303 is threadedly connected to the top of the hanging noodle mounting frame 301, and a handle is provided at the end of the connecting pin shaft 303; a suction housing 304 is attached to the top of the hanging noodle mounting frame 301; the connecting pin shaft 303 passes through the suction housing 304; micropores are provided at the end of the suction housing 304; the surface of the micropores provided at the end of the suction housing 304 is covered with cloth; a suction fan 305 is fixedly installed outside the suction housing 304, and the end of the suction housing 304 is used to adsorb the end of the hanging noodle; the changing point clamping member 4 includes: a changing point connection housing 401, a clamping slide bar 402, a clamping sponge 403, a clamping spring 404, a separating electromagnet 405, and an electricity connecting elastic sheet 406. The changing point connection housing 401 is fixedly installed on the hanging noodle mounting frame 301; two clamping slide bars 402 are slidably installed on the changing point connection housing 401; clamping sponges 403 are respectively fixedly installed on the two clamping slide bars 402, and the clamping sponges 403 are of breathable soft structure; the two clamping sponges 403 are respectively used to fit and clamp the end of the hanging noodle; two rows of clamping springs 404 are provided inside the changing point connection housing 401; two separating electromagnets 405 are fixedly installed on the changing point connection housing 401; the ends of the two rows of clamping springs 404 are respectively connected to the sides of the two separating electromagnets 405; the other ends of the two rows of clamping springs 404 are respectively connected to the two clamping slide bars 402; electricity connecting elastic sheets 406 are respectively fixedly installed on the two separating electromagnets 405, and the electricity connecting elastic sheets 406 are of elastic conductive structure; the changing point clamping member 4 can cooperate with the hanging noodle mounting member 3 and can be used to clamp the end of the hanging noodle, avoiding the traditional way of hanging noodles with a cross bar. The noodles at the cross bar are bent. After drying is completed, this bent position needs to be cut off, directly causing waste after the noodles are dried. By clamping the end of the noodles, there will be no bending waste, which is more suitable for the straightness requirement of hanging noodle production. At the same time, it avoids excessive waste and subsequent grinding and crushing for reuse, which affects the quality of the hanging noodles. It can be quickly installed and used. At the same time, the clamping part of the hanging noodles is also kept ventilated and dry. Pass the connecting pin shaft 303 through the hanging noodle mounting frame 301 and the suction housing 304 for positioning, and then the noodles can be clamped. After one end of the noodles is clamped and fixed, the hanging noodle mounting frame 301 can be held by hand and slowly inserted into the jack on the support mounting frame 101, and the self-weight of the hanging noodle mounting frame 301 is used to maintain stability for subsequent drying work. During the process, the suction fan 305 sucks in real time to promote air circulation, and at the same time, it is also convenient to adsorb the noodles on the cloth surface micropore area on one side of the suction housing 304.

[0035] Among them, the switching control member 5 includes: a switching control motor 501, a rotation conversion point disk 502, and a power connection block 503. The switching control motor 501 is fixedly installed on the noodle hanging mounting bracket 301 through a bracket; a rotation conversion point disk 502 is fixedly installed on the output shaft of the switching control motor 501; a power connection block 503 is fixedly installed on the rotation conversion point disk 502; the rotation conversion point disk 502 is an insulating structure; the power connection block 503 aligns with two power connection elastic pieces 406; the switching control member 5 further includes: a long-through power connection ring 504 and a fitting elastic piece 5041. A fitting elastic piece 5041 is fixedly installed on the conversion point connection housing 401, and a long-through power connection ring 504 is fixedly installed on the fitting elastic piece 5041, and the long-through power connection ring 504 is a ring structure; the fitting elastic piece 5041 is an "L" shaped structure; the long-through power connection ring 504 elastically fits the power connection block 503; the long-through power connection ring 504, the power connection block 503, the power connection elastic piece 406, and the separation electromagnet 405 are connected in series to a power source. The switching control member 5 can be used to control the two clamping sponges 403 to alternately clamp the noodle at different positions. While keeping the noodle clamping stable, it ensures that the ends of the noodles can be dried together, guaranteeing the drying uniformity. The structure is more reasonable. It can improve the drying uniformity of this structure while avoiding the problem that the ends of the noodles are not dried for a long time, resulting in insufficient dragging force on the noodles being dried below and a high breakage rate. The structure control is simple and the operation is convenient. By controlling the two separation electromagnets 405 to be energized and de-energized in sequence, controlling the switching control motor 501 to drive the rotation conversion point disk 502 to rotate can drive the power connection block 503 to rotate. During the process, the long-through power connection ring 504 always fits the power connection block 503 to maintain a conducting path. When the power connection block 503 rotates to the upper power connection elastic piece 406, the upper separation electromagnet 405 can be energized to magnetically attract the upper clamping slide bar 402. At this time, the retraction of the clamping slide bar 402 can drive the clamping sponge 403 to release the extrusion of the noodles. When the power connection block 503 rotates to the lower power connection elastic piece 406, similarly, at this time, the lower clamping sponge 403 will release the extrusion of the noodle ends to perform the work of alternating clamping positions.

[0036] Embodiment 2. On the basis of Embodiment 1, the noodle hanging detection member 6 includes: a lifting slider 601, an upper lifting spring 6011, a rotating plate 602, and a gear 603. There are two lifting sliders 601, and the two lifting sliders 601 are respectively slidably mounted on the noodle hanging mounting frame 301; upper lifting springs 6011 are respectively fixedly mounted on the two lifting sliders 601, and the end parts of the two upper lifting springs 6011 are respectively connected to the noodle hanging mounting frame 301; a rotating plate 602 is rotatably mounted on the two lifting sliders 601; a gear 603 is fixedly mounted at the end of the rotating plate 602, and the gear 603 is used for meshing and driving the rack 302; the noodle hanging detection member 6 further includes: a lifting sleeve 604, an electromagnetic conduction sheet 6041, a clamping plate 605, and a clamping cotton 6051. A lifting sleeve 604 is slidably sleeved on the rotating plate 602, and the end of the lifting sleeve 604 is located between the two lifting sliders 601; an electromagnetic conduction sheet 6041 is fixedly mounted inside the lifting sleeve 604; a conductive layer is provided on the top of the rotating plate 602; the lifting sleeve 604 is connected to the clamping plate 605 through two tension springs, and a clamping cotton 6051 is attached to the inner side of the clamping plate 605, and the clamping cotton 6051 is used for clamping the bottom end of the noodle; the positioning member 7 includes: a positioning frame 701, an electromagnet 702, a positioning column 703, and a positioning tension spring 7031. The positioning frame 701 is fixedly mounted on the noodle hanging mounting frame 301 by bolts; an electromagnet 702 is fixedly mounted on the positioning frame 701; the conductive layer on the top of the rotating plate 602, the electromagnetic conduction sheet 6041, and the electromagnet 702 are connected in series to a power supply; a positioning column 703 is slidably mounted on the positioning frame 701, and a positioning tension spring 7031 is sleeved on the positioning column 703; the end of the positioning tension spring 7031 is connected to the positioning frame 701; the other end of the positioning tension spring 7031 is fixedly mounted on the positioning column 703; the positioning column 703 is inserted into the lifting slider 601;The electromagnet 702 is aligned with the positioning post 703, and the noodle detection part 6 can be used to detect the quality of noodles to prevent noodles from being over-stretched due to factors such as moisture and humidity in the drying room without being detected. When the noodles are detected to be over-stretched, the noodles are automatically rewound and recovered to prevent continuous stretching, making it easier to put them back into the dough for cutting. At the same time, it can also prevent a large number of noodles from breaking and falling to the ground during the over-stretching process, causing pollution, ensuring the neatness of the noodles while ensuring the quality of the noodles, improving the consistency of the noodle quality standards, and making the structure more reasonable. At the same time, the clamping plate 605 can also be used to clamp the bottom of the noodles to prevent some noodles from shrinking excessively during drying, and can improve the flatness of the ends of the noodles after drying and forming, so as to reduce the amount of subsequent waste removed, which is more suitable for batch manufacturing and is beneficial. The tension spring between the lifting sleeve 604 and the clamping plate 605 pulls the flat bottom end of the noodles, helping to improve the consistency of the noodles' length after drying. At the same time, the breathable strip sponge structure of the clamping cotton 6051 does not affect the local drying effect. At this time, the upward air flow from the exhaust thrust groove 1021 can help reduce the downward traction force caused by the noodles' own weight. On this basis, if the noodles still move downward and stretch excessively, the positioning column 703 can be automatically controlled to move backward, releasing the limit lifting slider 601. Under the pull of the upward tension spring 6011, the lifting slider 601 can be driven upward. The middle gear 603 can be meshed and driven by the drive rack 302, driving the rotating plate 602 to rotate. At this time, the noodles can be wound around the lifting sleeve 604, preventing the noodles from continuous stretching and breakage, and also preventing the noodles from being contaminated.

[0037] The working principle of this embodiment is as follows: First, the structure is placed in the noodle drying room. As the noodle cutter cuts the noodles, one end of the noodles is placed on the two clamping sponges 403. At this time, the suction shell 304 is placed against the clamping sponge 403, and the connecting pin 303 is passed through the noodle mounting frame 301 and the suction shell 304 for positioning to clamp the noodles. After one end of the noodles is clamped and fixed, the noodle mounting frame 301 can be held and slowly inserted into the socket on the support mounting frame 101 to carry out subsequent drying work. During the process, the suction fan 305 is used for real-time suction to promote air circulation. It is also convenient to absorb the noodles on the microporous area of the cloth surface on one side of the suction shell 304. After the end of the noodles is clamped by the suction shell 304, the clamping plate 605 is pulled outward to fit the bottom end of the noodles through the clamping cotton 6051. The tension spring between the lifting sleeve 604 and the clamping plate 605 is used to clamp the bottom end of the noodles to help improve the length consistency of the noodles after drying. At this time, the exhaust thrust groove 1021 is used to spray air upward to help reduce the downward traction caused by the weight of the noodles. The fallen noodle segment can fall on the drying connection shell 102. At this time, the motor is toggled 201 can drive the toggle brush 202 to rotate, and the toggle brush 202 can wipe the drying connection shell 102, promoting the noodles above the drying connection shell 102 to slide into the V-shaped groove on the drying connection shell 102. The toggle brushes 202 on both sides can be controlled to toggle the broken noodles to the inside of the drying connection shell 102, which also plays a role in wiping and cleaning. If the noodles are still excessively moved down and stretched, the length of the noodles increases, and the end portion no longer pulls the lifting sleeve 604. As the length of the noodles increases, the lifting sleeve 604 can be gradually moved down. At this time, the lifting sleeve 604 drives the electric The magnetic conductive sheet 6041 moves down to fit the conductive layer on the top of the rotating plate 602. At this time, the electromagnet 702 is turned on to electromagnetically attract the positioning post 703. At this time, the positioning post 703 can move backward, lengthening the positioning tension spring 7031, releasing the limit lifting slider 601, and under the pull of the upward tension spring 6011, the lifting slider 601 can be driven to move upward, driving the rotating plate 602 to move together. During this process, the gear 603 can be engaged and driven by the driving rack 302, driving the rotating plate 602 to rotate. At this time, the noodles can be wound on the lifting sleeve 604, and the staff can remove it later.

[0038] During the drying process, by means of the extrusion of the clamping spring 404, the two clamping sliders 402 can drive the clamping sponge 403 to stably clamp the end of the noodle. At this time, control the switching control motor 501 to drive the rotation of the rotation conversion disk 502, which can drive the power connection block 503 to rotate. During the process, the long-through power connection ring 504 always fits the power connection block 503 to maintain the circuit. When the power connection block 503 rotates to the upper power connection elastic piece 406, the upper separation electromagnet 405 can be powered on to magnetically attract the upper clamping slider 402. At this time, the retraction of the clamping slider 402 can drive the clamping sponge 403 to release the extrusion of the noodle, and the end of the noodle is elastically clamped by the lower clamping sponge 403. As the power connection block 503 rotates between the two power connection elastic pieces 406, at this time, the two separation electromagnets 405 are respectively powered off, and the two clamping sponges 403 can be squeezed by the clamping spring 404 to clamp the end of the noodle. When the power connection block 503 rotates to the lower power connection elastic piece 406, similarly, at this time, the lower clamping sponge 403 will release the extrusion of the end of the noodle. By releasing the extrusion, the air circulation is promoted, and the drying of the end is accelerated.

[0039] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0040] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A drying device for processing dried noodles, comprising a drying support (1), wherein a shifting auxiliary member (2) is mounted on the drying support (1), and characterized in that: The stirring auxiliary member (2) is used to stir the fallen noodles; a noodle mounting member (3) is mounted on the drying support member (1); the noodle mounting member (3) is used to fit the end of the noodles; A point-changing clamping member (4) is installed on the noodle mounting member (3); the point-changing clamping member (4) is used to rotate the clamping position of the end of the noodle; A switching control component (5) is mounted on the noodle mounting component (3); the switching control component (5) is used to control the switching point clamping component (4) to be energized; A noodle detection member (6) is mounted on the noodle mounting member (3); the noodle detection member (6) is used to detect the length of the noodles; two positioning members (7) are mounted on the noodle mounting member (3); the noodle detection member (6) is used to control the power supply of the two positioning members (7); The drying support member (1) comprises: a support mounting frame (101) and a drying connection shell (102); the drying connection shell (102) is fixedly mounted on the support mounting frame (101); the drying connection shell (102) is provided with three V-shaped grooves, and the bottoms of the three V-shaped grooves on the drying connection shell (102) are respectively provided with slot holes; the interior of the drying connection shell (102) is a hollow structure; and the support mounting frame (101) is provided with two rows of sockets.

2. The drying device for processing dried noodles according to claim 1, wherein: The drying support member (1) further comprises: an exhaust thrust groove (1021) and an air pump pipe (103); a row of exhaust thrust grooves (1021) is provided on the drying connection shell (102); the exhaust thrust grooves (1021) are used for exhausting air to push up the noodles; an air pump pipe (103) is fixedly mounted on the side of the drying connection shell (102); and the air pump pipe (103) is externally connected to an air pump.

3. The drying device for processing dried noodles according to claim 1, wherein: The toggle auxiliary component (2) comprises: a toggle motor (201) and a toggle brush (202); the toggle motor (201) is fixedly mounted on the drying connection shell (102), and the output shaft of the toggle motor (201) is rotatably mounted on the drying connection shell (102); the toggle brush (202) is fixedly mounted on the output shaft of the toggle motor (201), and the toggle brush (202) is used to brush the drying connection shell (102); the length of the toggle brush (202) cannot reach the bottom of the V-shaped groove on the drying connection shell (102).

4. A drying device for processing dried noodles according to claim 1, characterized in that: The hanging noodle mounting member (3) includes: a hanging noodle mounting frame (301), a driving rack (302), a connecting pin shaft (303), a suction housing (304), and a suction fan (305). The hanging noodle mounting frames (301) are arranged in a row, and the structures on the row of hanging noodle mounting frames (301) are the same. The two ends of the bottom of the hanging noodle mounting frame (301) are slidably inserted into the jacks on the support mounting frame (101). The driving rack (302) is fixedly installed on the side of the hanging noodle mounting frame (301). The connecting pin shaft (303) is threadedly connected to the top of the hanging noodle mounting frame (301), and a handle is provided at the end of the connecting pin shaft (303). The suction housing (304) is attached to the top of the hanging noodle mounting frame (301). The connecting pin shaft (303) passes through the suction housing (304). Micropores are provided at the end of the suction housing (304). The surface of the micropores provided at the end of the suction housing (304) is covered with cloth. The suction fan (305) is fixedly installed on the outside of the suction housing (304), and the end of the suction housing (304) is used to adsorb the end of the hanging noodle.

5. A drying device for processing dried noodles according to claim 4, characterized in that: The changing point clamping member (4) includes: a changing point connecting shell (401), clamping slide bars (402), clamping sponges (403), clamping springs (404), separating electromagnets (405), and power connection elastic pieces (406). The changing point connecting shell (401) is fixedly installed on the hanging noodle mounting frame (301). Two clamping slide bars (402) are slidably installed on the changing point connecting shell (401). Clamping sponges (403) are respectively fixedly installed on the two clamping slide bars (402), and the clamping sponges (403) are air-permeable soft structures. The two clamping sponges (403) are respectively used to fit and clamp the end of the hanging noodle. Two rows of clamping springs (404) are provided inside the changing point connecting shell (401). Two separating electromagnets (405) are fixedly installed on the changing point connecting shell (401). The ends of the two rows of clamping springs (404) are respectively connected to the sides of the two separating electromagnets (405). The other ends of the two rows of clamping springs (404) are respectively connected to the two clamping slide bars (402). Power connection elastic pieces (406) are respectively fixedly installed on the two separating electromagnets (405), and the power connection elastic pieces (406) are elastic conductive structures.

6. The drying device for processing dried noodles according to claim 5, characterized in that: The switching control member (5) includes: a switching control motor (501), a rotating changing point disk (502), and a power connection block (503). The switching control motor (501) is fixedly installed on the hanging noodle mounting frame (301) through a bracket. The rotating changing point disk (502) is fixedly installed on the output shaft of the switching control motor (501). The power connection block (503) is fixedly installed on the rotating changing point disk (502). The rotating changing point disk (502) is an insulating structure. The power connection block (503) is aligned with the two power connection elastic pieces (406).

7. A drying device for processing dried noodles according to claim 6, characterized in that: The switching control member (5) further includes: a long-through power connection ring (504) and a fitting elastic piece (5041). The fitting elastic piece (5041) is fixedly installed on the switching point connection shell (401), and the long-through power connection ring (504) is fixedly installed on the fitting elastic piece (5041), and the long-through power connection ring (504) is of an annular structure; the fitting elastic piece (5041) is of an "L" shape; the long-through power connection ring (504) elastically fits the power connection block (503); the long-through power connection ring (504), the power connection block (503), the power connection elastic piece (406) and the separation electromagnet (405) are connected in series to a power supply.

8. A drying device for processing dried noodles according to claim 4, characterized in that: The noodle hanging detection member (6) includes: a lifting slider (601), an upper lifting spring (6011), a rotating plate (602) and a gear (603). There are two lifting sliders (601), and the two lifting sliders (601) are respectively slidably installed on the noodle hanging mounting frame (301); upper lifting springs (6011) are respectively fixedly installed on the two lifting sliders (601), and the end parts of the two upper lifting springs (6011) are respectively connected to the noodle hanging mounting frame (301); a rotating plate (602) is rotatably installed on the two lifting sliders (601); a gear (603) is fixedly installed at the end of the rotating plate (602), and the gear (603) is used for meshing and driving a rack (302).

9. A drying device for processing dried noodles according to claim 8, characterized in that: The noodle hanging detection member (6) further includes: a lifting sleeve (604), an electromagnetic conduction piece (6041), a clamping plate (605) and a clamping cotton (6051). The lifting sleeve (604) is slidably sleeved on the rotating plate (602), and the end of the lifting sleeve (604) is located between the two lifting sliders (601); the electromagnetic conduction piece (6041) is fixedly installed inside the lifting sleeve (604); a conductive layer is provided at the top of the rotating plate (602); the clamping plate (605) is connected to the lifting sleeve (604) through two tension springs, and the clamping cotton (6051) is attached to the inner side of the clamping plate (605), and the clamping cotton (6051) is used for clamping the bottom end of the noodle.

10. A drying device for processing dried noodles according to claim 9, characterized in that: The positioning member (7) includes: a positioning frame (701), an electromagnet (702), a positioning column (703) and a positioning tension spring (7031). The positioning frame (701) is fixedly installed on the noodle hanging mounting frame (301) by bolts; the electromagnet (702) is fixedly installed on the positioning frame (701); the conductive layer at the top of the rotating plate (602), the electromagnetic conduction piece (6041) and the electromagnet (702) are connected in series to a power supply; the positioning column (703) is slidably installed on the positioning frame (701), and the positioning tension spring (7031) is sleeved on the positioning column (703); the end of the positioning tension spring (7031) is connected to the positioning frame (701); the other end of the positioning tension spring (7031) is fixedly installed on the positioning column (703); the positioning column (703) is inserted into the lifting slider (601); the electromagnet (702) is aligned with the positioning column (703).

Citation Information

Patent Citations

  • Automatic fine dried noodle collecting device

    CN213923031U