Brewing type instant rice flour crushing equipment and process thereof
By setting up a transfer mechanism between the hopper-shaped base and the installation pipe, and designing a liftable fan-shaped plate, the problem of manually collecting large rice noodles in rice noodle crushing equipment is solved, realizing automated discharge and cooling of rice noodle raw materials, and improving production efficiency and the degree of automation of the equipment.
Patent Information
- Application Number
- CN202512052622.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-31
- Publication Date
- 2026-02-17
AI Technical Summary
Existing rice noodle crushing equipment requires workers to manually disassemble the equipment to collect large rice noodle raw materials after the crushing process is completed. This is a tedious task, and the rice noodle raw materials tend to accumulate and remain at high temperatures during the discharge process.
A transfer mechanism including a bucket-shaped base and an installation tube was designed to promote the discharge and cooling of rice noodle raw materials of the appropriate size through air supply and suction. The opening and closing of the fan-shaped groove is controlled by a liftable and deflectable fan-shaped plate to realize the automated discharge and cooling of rice noodle raw materials. A magnetic component is used to assist in the secondary crushing of large-particle rice noodles.
It achieves automated discharge and cooling of rice noodle raw materials, avoiding the tedious work of manually disassembling equipment, improving production efficiency, reducing the temperature of rice noodle raw materials, and ensuring smooth discharge.
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Figure CN121534813A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to a milling processing technology of millet powder, in particular to a brewing type instant millet powder milling equipment and a process thereof. BACKGROUND
[0002] The core purpose of the brewing type instant millet powder processing is to realize the ultimate experience of "instant rehydration, instant eating". By milling millet into fine powder, the surface area of the millet in contact with water increases exponentially, which enables hot water to almost instantly penetrate and gelatinize each starch particle, thereby quickly completing the rehydration and maturation effect that takes several minutes in traditional cooking. However, during the processing of the millet raw material, it needs to be crushed.
[0003] In the patent with the publication number CN215140436U, a millet instant millet powder milling device is disclosed, which includes a support, a filtering mechanism, a milling mechanism and a screening mechanism fixedly connected in sequence from top to bottom on the support. The device achieves the purpose of sufficient filtering and milling with adjustable degree of milling, and can filter out impurities larger and smaller than the weight of millet. However, the large particle millet raw material is intercepted inside the device, and after the milling work is completed, the worker needs to disassemble the device and manually collect the large particle millet raw material, which is tedious. SUMMARY
[0004] In order to overcome the problem that the large particle millet raw material is intercepted inside the device, and after the milling work is completed, the worker needs to disassemble the device and manually collect the large particle millet raw material, which is tedious, the application provides a brewing type instant millet powder milling equipment, which includes a ring-shaped frame, and further comprises: a connecting frame installed outside the ring-shaped frame; a milling cylinder arranged inside the ring-shaped frame; a transfer mechanism arranged outside the connecting frame, the transfer mechanism comprising a bucket-shaped seat and an installation pipe with a channel installed on the bucket-shaped seat, the bucket-shaped seat and the installation pipe being in communication through the channel, a first lifting rod being arranged outside the bucket-shaped seat, the first lifting rod being used to control the bucket-shaped seat and the installation pipe to suck the material in the milling cylinder.
[0005] Preferably, the application further comprises: a docking mechanism arranged below the ring-shaped frame, the docking mechanism comprising a lifting column installed at the bottom of the ring-shaped frame, a base being installed at the end of the lifting column away from the ring-shaped frame, a connecting table with a placing groove being installed outside the base; a milling mechanism arranged inside the milling cylinder, the milling mechanism comprising a base frame installed inside the milling cylinder, a receiving assembly being installed at the top of the base frame.
[0006] Preferably, the transfer mechanism further comprises: A sliding block is slidingly connected inside the connecting frame, and the fixed end of the first lifting rod is connected with the sliding block. An L-shaped rod is connected with the telescopic end of the first lifting rod. A first motor box is installed at the end of the L-shaped rod away from the first lifting rod, and a first motor is arranged inside the first motor box, and the bucket-shaped seat is arranged below the first motor box.
[0007] Preferably, the transfer mechanism further comprises: A ring-shaped tube is connected with the plurality of installation tubes. A bottom plate and a fan-shaped slot arranged inside the bottom plate are installed at the bottom of the bucket-shaped seat. A rotating assembly is arranged inside the bucket-shaped seat.
[0008] Preferably, the rotating assembly comprises: A connecting cylinder is connected with the end of the first motor box away from the L-shaped rod, and the connecting cylinder is connected with the bucket-shaped seat. A second lifting rod is connected with the telescopic end of the first motor. A fan-shaped plate is connected with the telescopic end of the second lifting rod through a connecting rod, and the fan-shaped plate is used to block the fan-shaped slot during the crushing process. A bucket-shaped cover and a first through hole arranged inside the bucket-shaped cover are installed inside the bucket-shaped cover, and the first through hole is arranged staggered with the channel.
[0009] Preferably, the crushing mechanism further comprises: A ring-shaped slot is arranged inside the crushing cylinder. A magnetic block is installed inside the ring-shaped slot.
[0010] Preferably, the receiving assembly comprises: A second motor box is installed above the base frame, and a second motor is arranged inside the second motor box. A third lifting rod is connected with the output end of the second motor, and a connecting seat is installed at the telescopic end of the third lifting rod, and a contact assembly is arranged outside the connecting seat. A fourth lifting rod is connected with the connecting seat, and the fourth lifting rod is used to adjust the distance between the disc and the clamping rod. A disc and a second through hole arranged inside the disc are connected with the telescopic end of the fourth lifting rod through a joint. An outer ring is installed outside the disc, and the outer ring is arranged inside the ring-shaped slot, and the outer ring is used to cooperate with the magnetic block to limit the disc.
[0011] Preferably, the contact assembly comprises: A support plate and grooves on both sides of the support plate, the support plate is installed outside the connecting seat; A clamping rod, the clamping rod is installed on the top of the support plate, the clamping rod is matched with the second through hole, in the feeding and crushing process, the clamping rod is used to block the second through hole, in the discharging process, the clamping rod is used to hit the bottom of the disc, to promote the downward movement of the rice flour raw materials.
[0012] The present application provides a kind of instant rice powder crushing process of brewing type, comprising the following steps: S1, workers manually place rice flour raw materials in the crushing cylinder, and adjust the hopper seat into the crushing cylinder; S2, the outer ring, disc, clamping rod, bottom plate and sector plate cooperate to surround the crushed rice flour raw materials; S3, the transfer mechanism cooperates with the crushing mechanism to complete the downward discharging work of the rice flour raw materials in a blowing manner; S4, the transfer mechanism transports the large particle raw materials on the disc to the outside of the crushing cylinder in a suction manner.
[0013] The present application provides a kind of instant rice powder crushing equipment and process of brewing type. With the following beneficial effects: 1、The instant rice powder crushing equipment and process of brewing type, by setting the hopper seat and the installation pipe, the rice flour raw materials in the crushing mechanism that meet the size are blown, to promote the discharging and cooling work;Large particle rice flour raw materials in the crushing mechanism are sucked and driven to separate from the crushing cylinder, and follow-up rice flour raw materials for secondary crushing work. In the existing rice flour crushing equipment, large particle rice flour raw materials are intercepted in the equipment, which needs to be disassembled by workers after the crushing work is completed, and the large particle rice flour raw materials are manually collected, which is tedious. Therefore, the hopper seat and the installation pipe are set to solve the above problems.
[0014] 2、The instant rice powder crushing equipment and process of brewing type, by setting the transfer mechanism, after the rice flour raw materials are crushed, cooperate with the crushing mechanism to promote the discharging work of the rice flour raw materials. In a way of sending cold air, the rice flour raw materials are promoted to move downward through the crushing mechanism to complete the discharging work, which can promote the downward movement of the raw materials stuck in the crushing mechanism, and can cool the crushed rice flour raw materials, so that the rice flour raw materials start to cool down during discharging, avoiding the high temperature of the subsequent rice flour raw materials.
[0015] 3、The instant rice powder crushing equipment and process of brewing type, by setting the rotating assembly, the sector plate that can be lifted and deflected is used to control the closing and opening state of the sector groove, in the process of blowing and suction, the sector groove is not blocked, and in the process of crushing and transporting large particle rice flour raw materials, the sector plate is in the sector groove.
[0016] 4. The instant rice powder crushing equipment and process, by setting the crushing mechanism, the rice powder raw materials are crushed and discharged. During the feeding and crushing process, the clamping rod is in the second through hole, avoiding the rice powder raw materials from falling. When discharging, the clamping rod is below the disc and is staggered with the second through hole, avoiding affecting the discharge speed of the raw materials, and promoting the downward movement of the rice powder raw materials through the second through hole in the form of hitting. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 The flow chart of the present application; Figure 2 The overall structure of the present application; Figure 3 The structure of the present application from another perspective; Figure 4 The structure of the transfer mechanism of the present application; Figure 5 The structure of the bucket seat of the present application; Figure 6 The cross-sectional view of the bucket seat of the present application; Figure 7 The structure of the docking mechanism of the present application; Figure 8 The cross-sectional view of the crushing mechanism of the present application; Figure 9 The structure of the receiving assembly of the present application; Figure 10 The structure of the contact assembly of the present application.
[0018] In the figure: 1, annular frame; 2, connecting frame; 3, transfer mechanism; 301, sliding block; 302, first lifting rod; 303, L-shaped rod; 304, first motor box; 305, bucket seat; 306, mounting pipe; 307, annular pipe; 308, bottom plate; 309, rotating assembly; 3091, connecting cylinder; 3092, second lifting rod; 3093, link rod; 3094, fan-shaped plate; 3095, bucket cover; 310, fan-shaped groove; 4, crushing cylinder; 5, docking mechanism; 501, lifting column; 502, base; 503, connecting table; 6, crushing mechanism; 601, annular groove; 602, magnetic block; 603, base frame; 604, receiving assembly; 6041, second motor box; 6042, third lifting rod; 6043, fourth lifting rod; 6044, joint; 6045, disc; 6046, outer ring; 6047, connecting seat; 605, contact assembly; 6051, support plate; 6052, clamping rod; 6053, groove. DETAILED DESCRIPTION
[0019] The application is further described in detail below with reference to the drawings and specific embodiments. The embodiments of the application are given for illustrative and descriptive purposes only and are not intended to be exhaustive or to limit the application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments are chosen and described in order to best explain the principles of the application and its practical application to thereby enable others skilled in the art to best utilize the application in various embodiments and with various modifications as are suited to the particular use contemplated.
[0020] As shown in the drawings and specific embodiments, the application provides a technical solution: a brewing instant rice powder crushing device is described as follows. Figures 1-10
[0021] It comprises a ring-shaped frame 1, and further comprises: a connecting frame 2 installed outside the ring-shaped frame 1; a crushing cylinder 4 arranged inside the ring-shaped frame 1, the crushing cylinder 4 being composed of a straight cylinder and a closed cylinder; a transfer mechanism 3 arranged outside the connecting frame 2, the transfer mechanism 3 comprising a bucket-shaped seat 305 and a mounting pipe 306 with a passage installed on the bucket-shaped seat 305, the bucket-shaped seat 305 and the mounting pipe 306 being in communication through the passage, the outside of the bucket-shaped seat 305 being provided with a first lifting rod 302, the first lifting rod 302 being arranged as an electric push rod, and the first lifting rod 302 being used to control the bucket-shaped seat 305 and the mounting pipe 306 to suck the materials in the crushing cylinder 4; a docking mechanism 5 arranged below the ring-shaped frame 1, the docking mechanism 5 comprising a lifting column 501 installed at the bottom of the ring-shaped frame 1, the lifting column 501 being arranged as an electric push rod, the end of the lifting column 501 away from the ring-shaped frame 1 being provided with a base 502, and the outside of the base 502 being provided with a connecting table 503 with a placing groove; a crushing mechanism 6 arranged inside the crushing cylinder 4, the crushing mechanism 6 comprising a bottom frame 603 installed inside the crushing cylinder 4, and the top of the bottom frame 603 being provided with a receiving assembly 604.
[0022] Before using the device, the transfer mechanism 3 is in a position away from the crushing cylinder 4, a receiving cylinder for receiving the crushed rice powder is manually placed in the connecting table 503, the stroke of the lifting column 501 is adjusted according to the distance between the receiving cylinder and the bottom of the crushing cylinder 4, so that the receiving cylinder is in contact with the bottom of the crushing cylinder 4. Then the worker manually puts the rice powder raw materials into the crushing cylinder 4, adjusts the transfer mechanism 3, and the bucket-shaped seat 305 enters the crushing cylinder 4. Then the transfer mechanism 3 and the crushing mechanism 6 are adjusted to crush the rice powder raw materials. After crushing, the transfer mechanism 3 is used to supply air to the crushing mechanism 6, and the crushed rice powder raw materials are jointly driven by the transfer mechanism 3 and the crushing mechanism 6 to fall into the receiving cylinder through the crushing cylinder 4. Then the transfer mechanism 3 is used to exhaust air to the crushing mechanism 6, so that the large-particle raw materials in the crushing mechanism 6 are sucked and transported outside the crushing cylinder 4.
[0023] Transfer agency 3 also includes: The slider 301 is slidably connected inside the connecting frame 2. The fixed end of the first lifting rod 302 is connected to the slider 301. The slider 301 is driven to move inside the connecting frame 2 by an electric push rod located inside the connecting frame 2. L-shaped rod 303, which is connected to the telescopic end of the first lifting rod 302; The first motor housing 304 is installed at the end of the L-shaped rod 303 away from the first lifting rod 302. The first motor housing 304 is equipped with a first motor. The bucket-shaped seat 305 is located below the first motor housing 304. The annular pipe 307 is connected to multiple mounting pipes 306. An external pipe is installed on the outside of the annular pipe 307, and the external pipe is connected to an external fan. The base plate 308 and the fan-shaped grooves 310 formed inside the base plate 308 are installed at the bottom of the bucket-shaped base 305. The fan-shaped grooves 310 are provided with four slots. Rotating component 309 is disposed inside the bucket-shaped base 305.
[0024] The process of using transfer mechanism 3 in conjunction with crushing mechanism 6 to crush rice flour raw materials: The electric push rod located within the connecting frame 2 is activated. The electric push rod drives the slider 301, the first lifting rod 302, the L-shaped rod 303, the first motor housing 304, and the bucket-shaped seat 305 towards the grinding cylinder 4. Then, the stroke of the first lifting rod 302 is adjusted, causing it to drive the bucket-shaped seat 305 into the grinding cylinder 4. The rotating assembly 309 is adjusted, and then the grinding mechanism 6 is activated to grind the rice flour raw material.
[0025] The process of using transfer mechanism 3 in conjunction with crushing mechanism 6 to discharge rice noodle raw materials: When the crushing operation is finished, adjust the stroke of the first lifting rod 302. The first lifting rod 302 drives the bucket-shaped seat 305 to move upward, and the bucket-shaped seat 305 is still not detached from the crushing cylinder 4. Adjust the rotating component 309 and start the external fan to the air supply mode. The gas enters the annular pipe 307 through the external pipe, enters the installation pipe 306 through the annular pipe 307, and then enters the rotating component 309 through the channel. Subsequently, the gas moves downward from the rotating component 309 to the crushing mechanism 6, promoting the downward discharge of the crushed rice flour raw material in the crushing mechanism 6.
[0026] The process of using the transfer mechanism 3 to suction the large-particle rice noodle raw material onto the 6045 disc: When the material discharge operation is finished, adjust the rotating component 309 and then adjust the external fan to the exhaust mode. The large rice noodle raw material in the crushing mechanism 6 is drawn into the rotating component 309. Then, by adjusting the stroke of the first lifting rod 302 and the electric push rod in the connecting frame 2, the bucket seat 305 is controlled to disengage from the crushing cylinder 4. As the bucket seat 305 aligns vertically with the container holding the rice noodle raw material to be crushed, the external fan is turned off, and the rice noodle raw material falls into the container. The material is then fed again for crushing.
[0027] By setting up a transfer mechanism 3, after the rice noodle raw materials have been crushed, the crushing mechanism 6 facilitates the discharge of the rice noodle raw materials. Cold air is supplied to promote the downward movement of the rice noodle raw materials through the crushing mechanism 6 to complete the discharge process. This not only promotes the downward movement of raw materials stuck in the crushing mechanism 6, but also cools the crushed rice noodle raw materials, allowing them to begin cooling during the discharge process and preventing high internal temperatures in the rice noodle raw materials when they accumulate later.
[0028] By setting up the hopper-shaped base 305 and the mounting pipe 306, air is supplied to the rice noodle raw materials of the appropriate size in the crushing mechanism 6 to promote their discharge and cooling; large rice noodle raw materials in the crushing mechanism 6 are sucked in and driven out of the crushing cylinder 4, so that they can be followed by the subsequent rice noodle raw materials for secondary crushing. In existing rice noodle crushing equipment, large rice noodle raw materials are intercepted inside the equipment, requiring workers to disassemble the equipment and manually collect the large rice noodle raw materials after the crushing operation is completed, which is a cumbersome task. Therefore, the hopper-shaped base 305 and the mounting pipe 306 are set up to solve the above problems.
[0029] Rotating assembly 309 includes: Connecting cylinder 3091 is connected to the end of the first motor box 304 away from the L-shaped rod 303, and connecting cylinder 3091 is connected to bucket-shaped seat 305; The second lifting rod 3092 is configured as an electric push rod and is connected to the telescopic end of the first motor. Four sector plates 3094 are provided. The sector plates 3094 are connected to the telescopic end of the second lifting rod 3092 via the connecting rod 3093. The second lifting rod 3092 controls the sector plates 3094 to enter and exit the sector groove 310. The funnel-shaped cover 3095 and the first through hole opened inside the funnel-shaped cover 3095 are installed inside the funnel-shaped cover 3095, and the first through hole is offset from the channel.
[0030] The process of using rotating component 309 in conjunction with crushing mechanism 6 to crush rice noodle raw materials: The second lifting rod 3092 is activated, which drives the connecting rod 3093 and the sector plate 3094 to move downwards. The sector plate 3094 enters the sector groove 310, and the bottom surface of the sector plate 3094 gradually becomes level with the bottom surface of the base plate 308. The crushing mechanism 6, the sector plate 3094, and the base plate 308 work together to crush the rice noodle raw materials.
[0031] The working process of using the rotating component 309 in conjunction with air supply: Before the air supply begins, the second lifting rod 3092 is adjusted to its initial state. The second lifting rod 3092 drives the connecting rod 3093 and the sector plate 3094 upwards, activating the first motor located in the first motor housing 304. The first motor drives the second lifting rod 3092, the connecting rod 3093, and the sector plate 3094 to deflect, at which point the sector plate 3094 is misaligned with the sector groove 310. The gas passes through the channel and the first through hole of the funnel-shaped cover 3095, and then moves downwards through the sector groove 310.
[0032] The working process of using the rotating component 309 in conjunction with the suction operation: Before the suction operation, the second lifting rod 3092 is adjusted to its initial state. The second lifting rod 3092 drives the connecting rod 3093 and the sector plate 3094 to move upward, activating the first motor located in the first motor housing 304. The first motor drives the second lifting rod 3092, the connecting rod 3093, and the sector plate 3094 to deflect, at which point the sector plate 3094 is misaligned with the sector groove 310. Large-particle rice noodle raw materials are sucked onto the hopper-shaped cover 3095 through the sector groove 310, and the large-particle rice noodle raw materials cannot pass through the first through hole.
[0033] During the transfer of large-particle rice noodle raw materials, the fan-shaped plate 3094 is positioned in the fan-shaped groove 310 to prevent the large-particle rice noodle raw materials from falling off.
[0034] By setting a rotating component 309, the opening and closing states of the fan-shaped groove 310 are controlled by a lifting and deflecting fan-shaped plate 3094. During the air supply and suction process, the fan-shaped groove 310 is not obstructed. During the crushing and transportation of large-particle rice noodle raw materials, the fan-shaped plate 3094 is always in the fan-shaped groove 310.
[0035] The crushing mechanism 6 also includes: An annular groove 601 is formed inside the crushing cylinder 4; Magnetic blocks 602, multiple magnetic blocks 602 are provided, and magnetic blocks 602 are installed inside the annular groove 601.
[0036] Component 604 includes: The second motor housing 6041 is mounted on top of the base frame 603, and the second motor is installed inside the second motor housing 6041; The third lifting rod 6042 is configured as an electric push rod. The third lifting rod 6042 is connected to the output end of the second motor. The telescopic end of the third lifting rod 6042 is equipped with a connecting seat 6047. The outside of the connecting seat 6047 is provided with a contact component 605. The fourth lifting rod 6043 is an electric push rod and is connected to the connecting seat 6047. The disc 6045 and the second through hole opened inside the disc 6045 are connected to the telescopic end of the fourth lifting rod 6043 through the connector 6044. The outer ring 6046 is made of magnetic material and is installed on the outside of the disc 6045. The outer ring 6046 is set inside the annular groove 601 and cooperates with the magnetic block 602. During the crushing process, the bottom plate 308 is always in the outer ring 6046.
[0037] Contact component 605 includes: The support plate 6051 and the grooves 6053 formed on both sides of the support plate 6051 are installed on the outside of the connecting seat 6047. The locking rod 6052 is installed on the top of the support plate 6051 and is adapted to the second through hole.
[0038] The working process of using the pulverizing mechanism 6 to pulverize rice flour raw materials: The third lifting rod 6042 is activated to its maximum stroke, while the fourth lifting rod 6043 is in its initial stroke. At this time, the locking rods 6052 are all in the second through hole, and the upper surface of the locking rods 6052 is on the same horizontal plane as the upper surface of the disc 6045. The third lifting rod 6042 drives the connecting seat 6047, the fourth lifting rod 6043, the connector 6044, the disc 6045, and the outer ring 6046 to move upward. As the rice noodle raw material is added to the disc 6045, and the bottom plate 308 is in the outer ring 6046, the second motor in the second motor box 6041 is activated. The second motor drives the third lifting rod 6042, the connecting seat 6047, the connector 6044, the disc 6045, the outer ring 6046, and the locking rods 6052 to rotate. The rice noodle raw material is crushed in the bottom plate 308, the fan-shaped plate 3094, and the disc 6045.
[0039] The working process of using the crushing mechanism 6 to discharge rice flour raw materials: Adjust the third lifting rod 6042 to its initial stroke, and start the fourth lifting rod 6043 to its maximum stroke. At this time, the locking rod 6052 is below the disc 6045, and the outer ring 6046 is attracted and fixed to the magnetic block 602. As the locking rod 6052 separates from the second through hole, the crushed rice flour raw material moves downward through the second through hole. Start the second motor in the second motor box 6041. The second motor drives the third lifting rod 6042, the support plate 6051, and the locking rod 6052 to deflect. At this time, the locking rod 6052 is misaligned with the second through hole. During the deflection process, the fourth lifting rod 6043 rotates in the joint 6044, while the disc 6045 and the outer ring 6046 remain stationary.
[0040] Then, the stroke of the fourth lifting rod 6043 is adjusted. The fourth lifting rod 6043 drives the third lifting rod 6042, the connector 6044, the disc 6045 and the outer ring 6046 to move upward. The outer ring 6046 separates from the magnet 602. The second motor drives the disc 6045 and the locking rod 6052 to rotate, which promotes the rice noodle raw material to move downward through the second through hole.
[0041] During the process of cold air delivery by the transfer mechanism 3, by simultaneously increasing the stroke of the third lifting rod 6042 and decreasing the stroke of the fourth lifting rod 6043, the locking rod 6052 can be controlled to repeatedly strike the bottom of the disc 6045, thereby promoting the rice noodle raw material to move downward through the second through hole.
[0042] The rice noodle raw material is crushed and fed through the crushing mechanism 6. During the feeding and crushing process, the locking rod 6052 is positioned within the second through hole to prevent the rice noodle raw material from falling out. During the discharge process, the locking rod 6052 is positioned below the disc 6045 and offset from the second through hole to avoid affecting the discharge speed of the raw material, while promoting the downward movement of the rice noodle raw material through the second through hole by striking it.
[0043] Working principle: Before using the equipment, the transfer mechanism 3 is in a position away from the crushing cylinder 4. Manually place the receiving cylinder for receiving crushed rice noodles into the connecting platform 503. Adjust the stroke of the lifting column 501 according to the distance between the receiving cylinder and the bottom of the crushing cylinder 4 so that the receiving cylinder contacts the bottom of the crushing cylinder 4.
[0044] The electric push rod located within the connecting frame 2 is activated. The electric push rod drives the slider 301, the first lifting rod 302, the L-shaped rod 303, the first motor housing 304, and the bucket-shaped seat 305 towards the grinding cylinder 4. Then, the stroke of the first lifting rod 302 is adjusted, causing it to drive the bucket-shaped seat 305 into the grinding cylinder 4. The rotating assembly 309 is adjusted, and then the grinding mechanism 6 is activated to grind the rice flour raw material.
[0045] The second lifting rod 3092 is activated, which drives the connecting rod 3093 and the sector plate 3094 to move downwards. The sector plate 3094 enters the sector groove 310, and the bottom surface of the sector plate 3094 gradually becomes level with the bottom surface of the base plate 308. The crushing mechanism 6, the sector plate 3094, and the base plate 308 work together to crush the rice noodle raw materials.
[0046] After crushing, the transfer mechanism 3 supplies air to the crushing mechanism 6, and the transfer mechanism 3 and the crushing mechanism 6 together drive the crushed rice noodle raw material through the crushing cylinder 4 into the receiving cylinder.
[0047] Adjust the third lifting rod 6042 to its initial stroke, and start the fourth lifting rod 6043 to its maximum stroke. At this time, the locking rod 6052 is below the disc 6045, and the outer ring 6046 is attracted and fixed to the magnetic block 602. As the locking rod 6052 separates from the second through hole, the crushed rice flour raw material moves downward through the second through hole. Start the second motor in the second motor box 6041. The second motor drives the third lifting rod 6042, the support plate 6051, and the locking rod 6052 to deflect. At this time, the locking rod 6052 is misaligned with the second through hole. During the deflection process, the fourth lifting rod 6043 rotates in the joint 6044, while the disc 6045 and the outer ring 6046 remain stationary.
[0048] Then, the stroke of the fourth lifting rod 6043 is adjusted. The fourth lifting rod 6043 drives the third lifting rod 6042, the connector 6044, the disc 6045 and the outer ring 6046 to move upward. The outer ring 6046 separates from the magnet 602. The second motor drives the disc 6045 and the locking rod 6052 to rotate, which promotes the rice noodle raw material to move downward through the second through hole into the receiving cylinder.
[0049] When the crushing operation is finished, adjust the stroke of the first lifting rod 302. The first lifting rod 302 drives the bucket seat 305 to move upward, and the bucket seat 305 is still not detached from the crushing cylinder 4. Adjust the second lifting rod 3092 to the initial state. The second lifting rod 3092 drives the connecting rod 3093 and the sector plate 3094 to move upward. Start the first motor in the first motor box 304. The first motor drives the second lifting rod 3092, the connecting rod 3093 and the sector plate 3094 to deflect. At this time, the sector plate 3094 is misaligned with the sector groove 310.
[0050] When the external fan is turned on to the air supply mode, the gas enters the annular pipe 307 through the external pipe, enters the installation pipe 306 through the annular pipe 307, and then passes through the channel and the first through hole of the hopper-shaped cover 3095. After passing through the fan-shaped groove 310, the gas moves downward to the crushing mechanism 6, promoting the downward discharge of the crushed rice flour raw material in the crushing mechanism 6.
[0051] During the process of cold air delivery by the transfer mechanism 3, by simultaneously increasing the stroke of the third lifting rod 6042 and decreasing the stroke of the fourth lifting rod 6043, the locking rod 6052 can be controlled to repeatedly strike the bottom of the disc 6045, thereby promoting the rice noodle raw material to move downward through the second through hole.
[0052] Then, the transfer mechanism 3 draws air from the crushing mechanism 6 to suck up the large particles of raw material in the crushing mechanism 6 and transport them to the outside of the crushing cylinder 4.
[0053] When the material discharge operation is completed, the second lifting rod 3092 is adjusted to its initial state. The second lifting rod 3092 drives the connecting rod 3093 and the sector plate 3094 to move upward, activating the first motor located in the first motor housing 304. The first motor drives the second lifting rod 3092, the connecting rod 3093, and the sector plate 3094 to deflect, at which point the sector plate 3094 is misaligned with the sector groove 310. The external fan is then adjusted to the exhaust mode, and large-particle rice flour raw materials in the crushing mechanism 6 are sucked onto the hopper cover 3095 through the sector groove 310, preventing them from passing through the first through hole. Subsequently, by adjusting the stroke of the first lifting rod 302 and the electric push rod located in the connecting frame 2, the hopper seat 305 is controlled to disengage from the crushing cylinder 4. As the hopper seat 305 aligns vertically with the container holding the rice flour raw materials to be crushed, the external fan is turned off, and the rice flour raw materials fall into the container for subsequent feeding and crushing.
[0054] This invention provides a powdering process for instant rice noodles, comprising the following steps: S1. The worker manually places the rice noodle raw material into the crushing cylinder 4 and adjusts the bucket-shaped seat 305 into the crushing cylinder 4; S2, outer ring 6046, disc 6045, locking rod 6052, bottom plate 308 and fan-shaped plate 3094 work together to surround and crush rice noodle raw materials; S3, the transfer mechanism 3 works with the crushing mechanism 6 to complete the downward discharge of rice noodle raw materials by air supply; S4, the transfer mechanism 3 uses a suction method to transport large particles of raw material on the disc 6045 to the outside of the crushing cylinder 4.
[0055] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.
Claims
1. A powdering device for instant rice noodles, comprising a ring frame (1), characterized in that, Also includes: The connecting frame (2) is installed outside the ring frame (1); The crushing cylinder (4) is located inside the ring frame (1). The transfer mechanism (3) is located outside the connecting frame (2). The transfer mechanism (3) includes a bucket-shaped seat (305) and an installation tube (306) with a channel installed on the bucket-shaped seat (305). The bucket-shaped seat (305) and the installation tube (306) are connected through the channel. A first lifting rod (302) is provided outside the bucket-shaped seat (305). The first lifting rod (302) is used to control the bucket-shaped seat (305) and the installation tube (306) to suck up the material in the crushing cylinder (4).
2. The instant rice noodle grinding equipment according to claim 1, characterized in that: Also includes: The docking mechanism (5) is located below the ring frame (1). The docking mechanism (5) includes a lifting column (501) installed at the bottom of the ring frame (1). A base (502) is installed at the end of the lifting column (501) away from the ring frame (1). A connecting platform (503) with a placement slot is installed on the outside of the base (502). A crushing mechanism (6) is provided inside the crushing cylinder (4). The crushing mechanism (6) includes a base frame (603) installed inside the crushing cylinder (4). A receiving component (604) is installed on the top of the base frame (603).
3. The instant rice noodle grinding equipment according to claim 2, characterized in that: The transfer mechanism (3) further includes: The slider (301) is slidably connected inside the connecting frame (2), and the fixed end of the first lifting rod (302) is connected to the slider (301); L-shaped rod (303), the L-shaped rod (303) is connected to the telescopic end of the first lifting rod (302); The first motor housing (304) is installed at the end of the L-shaped rod (303) away from the first lifting rod (302). The first motor housing (304) is equipped with a first motor. The bucket-shaped seat (305) is located below the first motor housing (304).
4. The instant rice noodle grinding equipment according to claim 3, characterized in that: The transfer mechanism (3) further includes: An annular tube (307) is connected to a plurality of the mounting tubes (306); The base plate (308) and the fan-shaped groove (310) formed inside the base plate (308) are installed at the bottom of the bucket-shaped base (305); Rotating assembly (309) is disposed inside the bucket-shaped base (305).
5. The instant rice noodle grinding equipment according to claim 4, characterized in that: The rotating assembly (309) includes: A connecting cylinder (3091) is connected to the end of the first motor housing (304) away from the L-shaped rod (303), and the connecting cylinder (3091) is connected to the bucket-shaped seat (305); The second lifting rod (3092) is connected to the telescopic end of the first motor; A sector plate (3094) is connected to the telescopic end of the second lifting rod (3092) via a connecting rod (3093); A funnel-shaped cover (3095) and a first through hole opened inside the funnel-shaped cover (3095), the funnel-shaped cover (3095) being installed inside the funnel-shaped cover (3095), the first through hole being offset from the channel.
6. The instant rice noodle grinding equipment according to claim 5, characterized in that: The crushing mechanism (6) also includes: An annular groove (601) is formed inside the crushing cylinder (4); A magnetic block (602) is installed inside an annular groove (601).
7. The instant rice noodle grinding equipment according to claim 6, characterized in that: The receiving component (604) includes: The second motor housing (6041) is mounted above the base frame (603), and the second motor is installed inside the second motor housing (6041); The third lifting rod (6042) is connected to the output end of the second motor. The telescopic end of the third lifting rod (6042) is equipped with a connecting seat (6047), and a contact component (605) is provided on the outside of the connecting seat (6047). The fourth lifting rod (6043) is connected to the connecting seat (6047); The disc (6045) and the second through hole opened inside the disc (6045) are connected to the telescopic end of the fourth lifting rod (6043) via a connector (6044); An outer ring (6046) is mounted on the outside of a disc (6045) and is disposed inside an annular groove (601).
8. The instant rice noodle grinding equipment according to claim 7, characterized in that: The contact assembly (605) includes: The support plate (6051) and the grooves (6053) formed on both sides of the support plate (6051) are mounted on the outside of the connecting seat (6047); A locking rod (6052) is installed on the top of the support plate (6051) and is adapted to the second through hole.
9. A powdering process for instant rice noodles, characterized in that, Includes the following steps: S1. The worker manually places the rice noodle raw material into the crushing cylinder (4) and adjusts the bucket-shaped seat (305) into the crushing cylinder (4); S2, outer ring (6046), disc (6045), locking rod (6052), bottom plate (308) and fan-shaped plate (3094) work together to surround and crush rice flour raw materials; S3, the transfer mechanism (3) works with the crushing mechanism (6) to complete the downward discharge of rice noodle raw materials by means of air supply; S4. The transfer mechanism (3) uses a suction method to transport the large particles of raw material on the disc (6045) to the outside of the crushing cylinder (4).
Citation Information
Patent Citations
Instant millet rice flour crushing device
CN215140436U