Raw material processing device for minced garlic seasoning production

By designing a raw material processing device including spherical grinding tanks, grinding parts and electromagnetic drive parts, the problem of poor grinding effect in existing equipment is solved, multi-dimensional, blind-angle-free grinding is achieved, and the refinement and uniformity of garlic raw materials are significantly improved.

CN120054706AActive Publication Date: 2025-05-30SHANDONG XINNUO FOOD TECH CO LTD
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Patent Information

Application Number
CN202510501295.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2025-05-30
Estimated Expiration
2045-04-21

AI Technical Summary

Technical Problem

During the grinding process, the existing raw material grinding equipment rotates unidirectionally, causing the raw material to rotate along the cup wall, weakening the grinding effect, and the grinding angle is single, so the overall crushing effect is not high.

Method used

A raw material processing device including a spherical grinding tank, a grinding component and an electromagnetic drive component is designed. The grinding parts are composed of a grinding round frame, a broken arc plate, a broken spike, abrasive bar and a permanent magnet block. The electromagnetic driving parts drive the grinding round frame and a broken arc plate to rotate through an arc-shaped electromagnetic coil and a permanent magnet block, achieving multi-dimensional, blind spot-free grinding.

Benefits of technology

Through the multi-dimensional and blind-angle-free grinding method, the refinement degree and grinding uniformity of the garlic raw materials are significantly improved, and the grinding effect is further improved through reverse rotation and multiple grinding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of raw material treatment, in particular to a raw material treatment device for minced garlic seasoning production, which comprises a grinding rack, a spherical grinding tank is arranged in the grinding rack, a grinding part is movably arranged in the spherical grinding tank, and an electromagnetic driving part is rotatably arranged on the periphery of the spherical grinding tank. The grinding component is driven by the electromagnetic driving component to conduct multi-dimensional dead-corner-free grinding on the minced garlic raw materials in the spherical grinding tank, the grinding uniformity of the minced garlic raw materials is further improved, meanwhile, the dynamic crushing disc slides back and forth along the outer wall of the guide rod, the minced garlic raw materials located between the static crushing disc and the dynamic crushing disc are crushed, and the grinding efficiency of the minced garlic raw materials is improved. And when the dynamic crushing disc impacts the minced garlic raw material, a rolling effect can be exerted, and under the cooperation of a plurality of crushing nails, it is further guaranteed that some materials, which are difficult to crush, in the minced garlic raw material are thoroughly crushed.
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Description

Technical Field

[0001] The present invention relates to the technical field of raw material processing, and particularly to a raw material processing device for the production of garlic sauce seasonings. Background Art

[0002] According to the Chinese patent authorization announcement number: CN113102038B, a raw material grinding device for the production of solid beverages is disclosed, including a support plate, etc.; a placement cup is threadedly engaged in the middle of the upper part of the support plate, and a housing is covered on the middle of the upper part of the support plate. The placement cup is located inside the housing. A driving mechanism is provided at the rear side of the upper part inside the housing, and a lifting mechanism is provided between the middle of the upper part inside the housing and the driving mechanism, which has the advantages of stabilizing the housing, preventing the housing from shaking randomly during grinding, easily fixing the device at the edge of the table, reflecting the portability of the device, and more easily unlocking the device.

[0003] During the grinding process of the above-mentioned raw material grinding device, due to the unidirectional rotation effect of the grinding plate, when the grinding plate rotates, it will cause the raw materials located inside the placement cup to rotate along the cup wall, weakening the crushing effect of the grinding plate on the raw materials, and the grinding angle of the raw materials is too single, resulting in a low overall crushing effect. Summary of the Invention

[0004] Therefore, the present invention provides a raw material processing device for the production of garlic sauce seasonings to solve the above problems.

[0005] The present invention provides the following technical solution: A raw material processing device for the production of garlic sauce seasonings includes a grinding machine frame. A spherical grinding tank is provided inside the grinding machine frame. A grinding component is movably provided inside the spherical grinding tank, and an electromagnetic driving component is rotatably provided outside the spherical grinding tank.

[0006] The grinding component includes a grinding circular frame. A plurality of equally angularly distributed crushing arc plates are fixedly connected to both the top and bottom of the grinding circular frame. A plurality of equally spaced crushing spikes are provided on both sides of the plurality of crushing arc plates. And the closer ends of the plurality of crushing arc plates are commonly connected with connection blocks. There are two connection blocks, and the two connection blocks are symmetrically distributed with respect to the grinding circular frame. A grinding strip is fixedly installed on the side surface of the crushing arc plate close to the inner wall of the spherical grinding tank. A plurality of equally angularly distributed positioning grooves are provided on the outer wall of the grinding circular frame, and a permanent magnet block is fixedly installed inside the positioning groove.

[0007] The electromagnetic driving component includes two transfer frames distributed left and right. The two transfer frames are located on both sides of the spherical grinding tank, and two arc-shaped electromagnetic coils are commonly connected between the two transfer frames. The two arc-shaped electromagnetic coils are symmetrically distributed with respect to the center of the sphere of the spherical grinding tank, and the positions of the two arc-shaped electromagnetic coils correspond to the positions of the plurality of permanent magnet blocks.

[0008] As a preferred solution of the present invention, a rotating sleeve is fixedly connected to the middle of the outer side surface of one of the adapter frames. A driven pulley is fixedly installed on the outer wall of the rotating sleeve. An AC motor is fixedly installed inside the grinding machine frame. A driving pulley is fixedly installed on the output shaft of the AC motor. A V-belt is sleeved between the driving pulley and the driven pulley.

[0009] As a preferred solution of the present invention, a plurality of fixing seats distributed at equal angles are fixedly connected to the mutually approaching side surfaces of the two connecting blocks. Moreover, a guiding rod is commonly connected to the abutting ends of the plurality of fixing seats. Two static crushing discs are fixedly installed on the outer wall of the guiding rod. The two static crushing discs are symmetrically distributed about the center of the spherical grinding tank. A dynamic crushing disc is slidably installed on the outer wall of the guiding rod.

[0010] As a preferred solution of the present invention, a plurality of crushing nails are fixedly connected to the mutually approaching side surfaces of the dynamic crushing discs. A spiral groove is formed on the outer wall of the guiding rod. A sliding pin is fixedly connected to the inner wall of the dynamic crushing disc. The outer wall of the sliding pin is slidably connected to the groove wall of the spiral groove.

[0011] As a preferred solution of the present invention, a material guiding hole is formed through the mutually approaching side surfaces of the two connecting blocks. The center of the material guiding hole and the center of the guiding rod are on the same straight line.

[0012] As a preferred solution of the present invention, a plurality of placement grooves distributed at equal angles are formed on the outer wall of the grinding circular frame. The placement grooves are all located between two adjacent positioning grooves. Moreover, a universal ball is rotatably installed inside each placement groove. The outer wall of the universal ball abuts against the inner wall of the spherical grinding tank.

[0013] As a preferred solution of the present invention, a pick-up and placement opening is formed at the top of the spherical grinding tank. The pick-up and placement opening extends into the spherical grinding tank. Moreover, a sealing cover is threadedly connected inside the pick-up and placement opening.

[0014] As a preferred solution of the present invention, support rotating shafts are fixedly connected to the left and right parts of the outer wall of the spherical grinding tank. The two support rotating shafts are symmetrically distributed about the center of the spherical grinding tank. Moreover, the two support rotating shafts are rotatably installed on the top of the grinding machine frame through two bearing seats. The two adapter frames are rotatably installed on the outer walls of the two support rotating shafts.

[0015] As a preferred solution of the present invention, a worm gear is fixedly installed on the outer wall of one of the support rotating shafts. A worm is meshed with the outer periphery of the bottom of the worm gear. A torsion rod is fixedly connected to the inner wall of the worm. Two rotating seats are rotatably installed on the outer wall of the torsion rod. The two rotating seats are both fixedly installed on the surface of the grinding machine frame. Moreover, a force-applying handle is fixedly installed at the end of the torsion rod away from the worm.

[0016] As a preferred embodiment of the present invention, a PLC control module is fixedly installed inside the grinding frame, and the PLC control module is electrically connected to the two arc-shaped electromagnetic coils and the AC motor respectively.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0018] 1. In the present invention, after the two arc-shaped electromagnetic coils are energized to form an electromagnetic field, under the magnetic force action of multiple permanent magnets, the permanent magnets are driven to rotate. The rotation of multiple permanent magnets drives the grinding circular frame to rotate, further driving multiple crushing arc plates to rotate together. The rotation of multiple crushing arc plates drives the crushing spikes to rotate, so as to crush the garlic puree raw material inside the spherical grinding tank. At the same time, the crushing arc plates also drive the grinding bars to rotate. Further, under the extrusion action between the grinding bars and the inner wall of the spherical grinding tank, the crushed garlic puree raw material is ground, further improving the refinement degree of the garlic puree raw material. At the same time, after a certain period of time, the PLC control module periodically switches the current direction inside the arc-shaped electromagnetic coils, so that the driving force directions of the two arc-shaped electromagnetic coils on the multiple permanent magnets are changed, thereby driving the grinding circular frame and multiple crushing arc plates to rotate in the reverse direction, and grinding the garlic puree raw material back and forth, which can improve the grinding effect.

[0019] 2. In the present invention, the output shaft of the AC motor drives the driving pulley to rotate. Further, under the transmission action of the triangular belt, the driven pulley is driven to rotate. The rotation of the driven pulley is transmitted to the transfer rack connected to the rotating sleeve through the rotating sleeve, thereby driving the transfer rack to rotate around the outer wall of the support rotating shaft, and driving the two arc-shaped electromagnetic coils and another transfer rack to rotate together. When the two arc-shaped electromagnetic coils rotate, under the magnetic attraction force between the arc-shaped electromagnetic coils and the multiple permanent magnets, the grinding circular frame is driven to rotate together with the two arc-shaped electromagnetic coils, so as to continuously adjust the rotation angle of the grinding circular frame, that is, continuously adjust the rotation angles of the multiple crushing arc plates, crushing spikes and grinding bars, so as to perform multi-dimensional and dead-angle-free grinding on the garlic puree raw material inside the spherical grinding tank, further improving the uniformity of the grinding of the garlic puree raw material.

[0020] 3. In the present invention, the crushing arc plates drive the two connecting blocks and the guide rods to rotate together, so that the dynamic crushing disc slides back and forth along the outer wall of the guide rod and collides with the two static crushing discs, thereby crushing the garlic puree raw material located between the static crushing disc and the dynamic crushing disc. The dynamic crushing disc is connected to the guide rod through a sliding pin and a spiral groove. When the dynamic crushing disc slides along the guide rod, it also rotates radially along the guide rod. Therefore, when the dynamic crushing disc impacts the garlic puree raw material, a kneading effect will also be applied. With the cooperation of multiple crushing nails, it is further ensured that some difficult-to-crush parts of the garlic puree raw material are completely crushed.

[0021] 4. In the present invention, by rotating the force - applying handle, the torsion bar is driven to rotate along the two rotating seats, and the worm is driven to rotate together. The rotation of the worm drives the meshing worm wheel and the supporting rotating shaft connected to the worm wheel to rotate. The rotation of the supporting rotating shaft drives the spherical grinding tank to rotate together, so that the access opening is rotated downward, and then the sealing cover is unscrewed. At this time, the ground garlic raw material inside the spherical grinding tank is poured out through the access opening, which facilitates discharging and improves the convenience of discharging. At the same time, the electromagnetic driving component continues to drive the grinding component to operate, stirring the ground garlic raw material inside the spherical grinding tank to completely pour out the garlic raw material inside the spherical grinding tank and avoid residue. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a schematic structural view of the right - front perspective of the present invention;

[0023] Figure 2 In the present invention Figure 1 is a schematic semi - sectional view of the spherical grinding tank;

[0024] Figure 3 is a schematic structural view of the grinding component and the electromagnetic driving component in the present invention;

[0025] Figure 4 is a schematic detailed structural view of the grinding component in the present invention;

[0026] Figure 5 is a schematic structural view of the grinding round frame and the crushing arc plate in the present invention;

[0027] Figure 6 In the present invention Figure 5 is an enlarged schematic view of part A;

[0028] Figure 7 is a schematic structural view of the guide rod and the connecting block in the present invention;

[0029] Figure 8 is a schematic detailed structural view of the dynamic crushing disc in the present invention.

[0030] In the figure: 1, grinding frame; 2, spherical grinding tank; 201, pick-up and placement port; 202, airtight cover; 203, support rotating shaft; 301, grinding circular frame; 302, crushing arc plate; 303, crushing spike; 304, grinding bar; 305, connecting block; 306, material guiding hole; 307, fixing seat; 308, guiding rod; 309, static crushing disk; 3010, dynamic crushing disk; 3011, crushing nail; 3012, spiral groove; 3013, sliding pin; 3014, placement groove; 3015, universal rolling ball; 3016, positioning groove; 3017, permanent magnet block; 401, adapter frame; 402, arc-shaped electromagnetic coil; 403, rotating sleeve; 404, driven belt pulley; 405, AC motor; 406, driving belt pulley; 407, V-belt; 501, worm gear; 502, worm; 503, torsion bar; 504, rotating seat; 505, force-applying handle; 6, PLC control module. Specific implementation mode

[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0032] Please refer to Figures 1-8 , the technical solutions provided by the present invention specifically include the following embodiments:

[0033] Embodiment 1:

[0034] A raw material processing device for the production of garlic sauce seasonings includes a grinding frame 1. Inside the grinding frame 1, there is a spherical grinding tank 2. Inside the spherical grinding tank 2, there is a grinding component movably arranged, and outside the spherical grinding tank 2, there is an electromagnetic driving component rotatably arranged;

[0035] The grinding component includes a grinding circular frame 301. At the top and bottom of the grinding circular frame 301, a plurality of crushing arc plates 302 are fixedly connected at equal angles. On both sides of the plurality of crushing arc plates 302, a plurality of crushing spikes 303 are arranged at equal distances. The closer ends of the plurality of crushing arc plates 302 are commonly connected to a connecting block 305. There are two connecting blocks 305, and the two connecting blocks 305 are symmetrically distributed with respect to the grinding circular frame 301. On the side of the crushing arc plate 302 close to the inner wall of the spherical grinding tank 2, a grinding bar 304 is fixedly installed. On the outer wall of the grinding circular frame 301, a plurality of positioning grooves 3016 are arranged at equal angles. Inside the positioning grooves 3016, a permanent magnet block 3017 is fixedly installed;

[0036] The electromagnetic drive component includes two adapter brackets 401 distributed left and right. The two adapter brackets 401 are located on both sides of the spherical grinding tank 2. Two arc-shaped electromagnetic coils 402 are jointly connected between the two adapter brackets 401. The two arc-shaped electromagnetic coils 402 are symmetrically distributed about the center of the spherical grinding tank 2. The positions of the two arc-shaped electromagnetic coils 402 correspond to the positions of a plurality of permanent magnet blocks 3017;

[0037] The middle part of the outer side of one of the adapter brackets 401 is fixedly connected with a rotating sleeve 403. A driven pulley 404 is fixedly installed on the outer wall of the rotating sleeve 403. An AC motor 405 is fixedly installed inside the grinding machine frame 1. A driving pulley 406 is fixedly installed on the output shaft of the AC motor 405. A V-belt 407 is sleeved between the driving pulley 406 and the driven pulley 404;

[0038] Both the left part and the right part of the outer wall of the spherical grinding tank 2 are fixedly connected with support rotating shafts 203. The two support rotating shafts 203 are symmetrically distributed about the center of the spherical grinding tank 2. The two support rotating shafts 203 are rotatably installed on the top of the grinding machine frame 1 through two bearing seats. The two adapter brackets 401 are rotatably installed on the outer walls of the two support rotating shafts 203;

[0039] A PLC control module 6 is fixedly installed inside the grinding machine frame 1. The PLC control module 6 is electrically connected to the two arc-shaped electromagnetic coils 402 and the AC motor 405 respectively;

[0040] Specifically, in this embodiment, after two arc-shaped electromagnetic coils 402 are energized to form an electromagnetic field, under the magnetic force of multiple permanent magnet blocks 3017, the permanent magnet blocks 3017 are driven to rotate. The rotation of multiple permanent magnet blocks 3017 drives the grinding turntable 301 to rotate, further driving multiple crushing arc plates 302 to rotate together. The rotation of multiple crushing arc plates 302 drives the crushing spikes 303 to rotate, crushing the garlic puree raw material inside the spherical grinding tank 2. At the same time, the crushing arc plates 302 also drive the grinding bars 304 to rotate. Further, under the extrusion of the grinding bars 304 and the inner wall of the spherical grinding tank 2, the crushed garlic puree raw material is ground, further improving the refinement degree of the garlic puree raw material. At the same time, after a certain period of time, the PLC control module 6 is used to regularly switch the current direction inside the arc-shaped electromagnetic coils 402, so that the driving force directions of the two arc-shaped electromagnetic coils 402 on the multiple permanent magnet blocks 3017 are changed, thereby driving the grinding turntable 301 and multiple crushing arc plates 302 to rotate in the reverse direction, and grinding the garlic puree raw material back and forth, which can improve the grinding effect. At the same time, the output shaft of the AC motor 405 drives the driving pulley 406 to rotate. Further, under the transmission of the V-belt 407, the driven pulley 404 is driven to rotate. The rotation of the driven pulley 404 is transmitted to the adapter frame 401 connected to the rotating sleeve 403 through the rotating sleeve 403, thereby driving the adapter frame 401 to rotate around the outer wall of the support rotating shaft 203, and driving the two arc-shaped electromagnetic coils 402 and another adapter frame 401 to rotate together. When the two arc-shaped electromagnetic coils 402 rotate, under the magnetic attraction force between the arc-shaped electromagnetic coils 402 and the multiple permanent magnet blocks 3017, the grinding turntable 301 is driven to rotate together with the two arc-shaped electromagnetic coils 402, so as to continuously adjust the rotation angle of the grinding turntable 301, that is, continuously adjust the rotation angles of the multiple crushing arc plates 302, crushing spikes 303 and grinding bars 304, so as to perform multi-dimensional and dead-angle-free grinding on the garlic puree raw material inside the spherical grinding tank 2, further improving the uniformity of the grinding of the garlic puree raw material.

[0041] Embodiment 2:

[0042] On one side surface of the two connecting blocks 305 close to each other, a plurality of equally angularly distributed fixing seats 307 are fixedly connected. The abutting ends of the plurality of fixing seats 307 are jointly connected with a guide rod 308. Two static crushing disks 309 are fixedly installed on the outer wall of the guide rod 308. The two static crushing disks 309 are symmetrically distributed about the center of the spherical grinding tank 2. A dynamic crushing disk 3010 is slidably installed on the outer wall of the guide rod 308;

[0043] On one side of the dynamic crushing disc 3010 close to the connecting block 305, a plurality of crushing nails 3011 are fixedly connected. A spiral groove 3012 is formed on the outer wall of the guide rod 308. A sliding pin 3013 is fixedly connected to the inner wall of the dynamic crushing disc 3010. The outer wall of the sliding pin 3013 is slidably connected to the groove wall of the spiral groove 3012;

[0044] Specifically in this embodiment, the output shaft of the AC motor 405 drives the driving pulley 406 to rotate. Further, under the driving action of the V-belt 407, the driven pulley 404 is driven to rotate. The rotation of the driven pulley 404 is transmitted to the adapter frame 401 connected to the rotating sleeve 403 through the rotating sleeve 403. Then, the adapter frame 401 is driven to rotate around the outer wall of the support rotating shaft 203, and the two arc-shaped electromagnetic coils 402 and another adapter frame 401 are driven to rotate together. When the two arc-shaped electromagnetic coils 402 rotate, under the action of the magnetic attraction force between the arc-shaped electromagnetic coils 402 and the plurality of permanent magnets 3017, the grinding circular frame 301 is driven to rotate together with the two arc-shaped electromagnetic coils 402, and the crushing arc plate 302, the connecting block 305 and the guide rod 308 are driven to rotate together, so that the dynamic crushing disc 3010 slides back and forth along the outer wall of the guide rod 308 and collides with the two static crushing discs 309, thereby crushing the garlic puree raw material located between the static crushing disc 309 and the dynamic crushing disc 3010. Due to the sliding connection between the sliding pin 3013 and the spiral groove 3012, the dynamic crushing disc 3010 rotates radially along the guide rod 308 while sliding along the guide rod 308. Therefore, when the dynamic crushing disc 3010 impacts the garlic puree raw material, a kneading effect is also applied, and with the cooperation of the plurality of crushing nails 3011, it further ensures the complete crushing of some difficult-to-crush parts of the garlic puree raw material.

[0045] Embodiment Three:

[0046] On the side surfaces of the two connecting blocks 305 close to each other, a material guiding hole 306 is formed through. The center of the material guiding hole 306 is on the same straight line as the center of the guide rod 308;

[0047] A taking and placing port 201 is formed at the top of the spherical grinding tank 2. The taking and placing port 201 extends into the spherical grinding tank 2. A sealing cover 202 is threadedly connected inside the taking and placing port 201;

[0048] Furthermore, by unscrewing the sealing cover 202, the garlic puree raw material is put into the spherical grinding tank 2 through the taking and placing port 201. The material guiding hole 306 is provided to prevent the garlic puree raw material from piling up on the top of the connecting block 305, so that the garlic puree raw material is discharged into the spherical grinding tank 2 through the taking and placing port 201 and the material guiding hole 306, ensuring the smoothness of adding the garlic puree raw material into the spherical grinding tank 2.

[0049] A plurality of equally-angularly distributed placement grooves 3014 are formed on the outer wall of the grinding circular frame 301. The placement grooves 3014 are all located between two adjacent positioning grooves 3016. Universal balls 3015 are rotatably installed inside the placement grooves 3014. The outer walls of the universal balls 3015 are in contact with the inner wall of the spherical grinding tank 2.

[0050] Furthermore, by providing a plurality of placement grooves 3014 for rotatably installing the universal balls 3015, the grinding circular frame 301 is further rotatably placed inside the spherical grinding tank 2 through the plurality of universal balls 3015. At the same time, by utilizing the universal rolling effect between the universal balls 3015 and the inside of the spherical grinding tank 2, the resistance of the grinding circular frame 301 to rotate can be reduced, ensuring the smooth and stable rotation of the grinding circular frame 301.

[0051] Embodiment 4:

[0052] A worm gear 501 is fixedly installed on the outer wall of one of the support rotating shafts 203. A worm 502 is engaged with the outer periphery of the bottom of the worm gear 501. A torsion rod 503 is fixedly connected to the inner wall of the worm 502. Two rotating seats 504 are rotatably installed on the outer wall of the torsion rod 503. Both of the two rotating seats 504 are fixedly installed on the surface of the grinding machine frame 1. A force-applying handle 505 is fixedly installed at one end of the torsion rod 503 away from the worm 502.

[0053] Specifically in this embodiment, after the garlic puree raw material is ground, by rotating the force-applying handle 505 to drive the torsion rod 503 to rotate along the two rotating seats 504, and driving the worm 502 to rotate together. The rotation of the worm 502 drives the engaged worm gear 501 and the support rotating shaft 203 connected to the worm gear 501 to rotate. The rotation of the support rotating shaft 203 drives the spherical grinding tank 2 to rotate together, so that the access opening 201 is rotated downward, and then the sealing cover 202 is unscrewed. At this time, the garlic puree raw material that has been ground inside the spherical grinding tank 2 is poured out through the access opening 201, facilitating discharging and improving the convenience of discharging. At the same time, the electromagnetic driving component continues to drive the grinding component to operate, stirring the garlic puree raw material that has been ground inside the spherical grinding tank 2 to thoroughly pour out the garlic puree raw material inside the spherical grinding tank 2 and avoid residue.

[0054] When the raw material processing device for producing garlic seasoning works according to this solution, first, the sealing cover 202 is unscrewed, and the garlic puree raw material is put into the inside of the spherical grinding tank 2 through the access opening 201. Secondly, the sealing cover 202 is screwed tightly again to seal the access opening 201.

[0055] Turn on the control switches of the two arc-shaped electromagnetic coils 402. After the two arc-shaped electromagnetic coils 402 are energized, an electromagnetic field is formed. Under the magnetic force of multiple permanent magnets 3017, the permanent magnets 3017 are driven to rotate. The rotation of multiple permanent magnets 3017 drives the grinding circular frame 301 to rotate, further driving multiple crushing arc plates 302 to rotate together. The rotation of multiple crushing arc plates 302 drives the crushing spikes 303 to rotate, crushing the garlic puree raw material inside the spherical grinding tank 2. At the same time, the crushing arc plates 302 also drive the grinding bars 304 to rotate. Further, under the extrusion of the grinding bars 304 and the inner wall of the spherical grinding tank 2, the crushed garlic puree raw material is ground, further improving the refinement degree of the garlic puree raw material. At the same time, after a certain period of time, the PLC control module 6 periodically switches the current direction inside the arc-shaped electromagnetic coils 402, so that the driving force directions of the two arc-shaped electromagnetic coils 402 on the multiple permanent magnets 3017 are changed, thereby driving the grinding circular frame 301 and multiple crushing arc plates 302 to rotate in the reverse direction, and grinding the garlic puree raw material back and forth, which can improve the grinding effect;

[0056] Meanwhile, the output shaft of the AC motor 405 drives the driving pulley 406 to rotate. Further, under the transmission of the V-belt 407, the driven pulley 404 is driven to rotate. The rotation of the driven pulley 404 is transmitted to the adapter frame 401 connected to the rotating sleeve 403 through the rotating sleeve 403, and then drives the adapter frame 401 to rotate around the outer wall of the support rotating shaft 203, and drives the two arc-shaped electromagnetic coils 402 and another adapter frame 401 to rotate together. When the two arc-shaped electromagnetic coils 402 rotate, under the magnetic attraction force between the arc-shaped electromagnetic coils 402 and the multiple permanent magnets 3017, the grinding circular frame 301 is driven to rotate together with the two arc-shaped electromagnetic coils 402, thereby continuously adjusting the rotation angle of the grinding circular frame 301, that is, continuously adjusting the rotation angles of the multiple crushing arc plates 302, crushing spikes 303 and grinding bars 304, so that the garlic puree raw material inside the spherical grinding tank 2 can be ground in multiple dimensions without dead angles, further improving the uniformity of the garlic puree raw material grinding. During this period, the crushing arc plates 302 drive the two connecting blocks 305 and the guide rod 308 to rotate together, so that the dynamic crushing disc 3010 slides back and forth along the outer wall of the guide rod 308 and collides with the two static crushing discs 309, thereby crushing the garlic puree raw material located between the static crushing disc 309 and the dynamic crushing disc 3010. The dynamic crushing disc 3010 is connected to the spiral groove 3012 by the sliding pin 3013. When the dynamic crushing disc 3010 slides along the guide rod 308, it also rotates radially along the guide rod 308. Therefore, when the dynamic crushing disc 3010 impacts the garlic puree raw material, a kneading effect will also be applied, and with the cooperation of multiple crushing nails 3011, it further ensures that some difficult-to-crush parts of the garlic puree raw material are completely crushed;

[0057] After the garlic puree raw material grinding is completed, the torsion bar 503 is driven to rotate along the two rotating seats 504 by rotating the force application handle 505, and the worm 502 is driven to rotate together. The rotation of the worm 502 drives the worm wheel 501 engaged therewith and the support rotating shaft 203 connected to the worm wheel 501 to rotate. The rotation of the support rotating shaft 203 drives the spherical grinding tank 2 to rotate, so that the access port 201 is rotated downward, and then the sealing cover 202 is unscrewed. At this time, the garlic puree raw material that has been ground inside the spherical grinding tank 2 is poured out through the access port 201, which is convenient for discharging and improves the convenience of discharging. At the same time, the electromagnetic drive component continues to drive the grinding component to operate, stir the garlic puree raw material ground inside the spherical grinding tank 2, and completely pour out the garlic puree raw material inside the spherical grinding tank 2 to avoid residue.

[0058] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A raw material processing device for garlic seasoning production, characterized in that: The invention comprises a grinding machine frame (1), wherein a spherical grinding jar (2) is provided inside the grinding machine frame (1), a grinding component is movably provided inside the spherical grinding jar (2), and an electromagnetic driving component is rotatably provided on the periphery of the spherical grinding jar (2); The grinding component comprises a grinding frame (301), the top and bottom of the grinding frame (301) are fixedly connected to a plurality of equally distributed crushing arc plates (302), both sides of the plurality of crushing arc plates (302) are provided with a plurality of equally distributed crushing spikes (303), and the adjacent ends of the plurality of crushing arc plates (302) are commonly connected to a connecting block (305), there are two connecting blocks (305), the two connecting blocks (305) are symmetrically distributed with respect to the grinding frame (301), a grinding strip (304) is fixedly mounted on a side surface of the crushing arc plates (302) close to the inner wall of the spherical grinding jar (2), a plurality of equally distributed positioning grooves (3016) are provided on the outer wall of the grinding frame (301), and a permanent magnet block (3017) is fixedly mounted inside the positioning groove (3016); The electromagnetic drive component comprises two adapter frames (401) distributed on the left and right, the two adapter frames (401) being located on both sides of the spherical grinding jar (2), and two arc-shaped electromagnetic coils (402) being commonly connected between the two adapter frames (401), the two arc-shaped electromagnetic coils (402) being symmetrically distributed about the center of the spherical grinding jar (2), and the positions of the two arc-shaped electromagnetic coils (402) corresponding to the positions of the plurality of permanent magnet blocks (3017).

2. The raw material processing device for producing garlic seasoning according to claim 1, characterized in that: A rotating sleeve (403) is fixedly connected to the middle of the outer side surface of one of the adapter frames (401), a driven pulley (404) is fixedly mounted on the outer wall of the rotating sleeve (403), an AC motor (405) is fixedly mounted inside the grinding machine frame (1), a driving pulley (406) is fixedly mounted on the output shaft of the AC motor (405), and a V-belt (407) is sleeved between the driving pulley (406) and the driven pulley (404).

3. The raw material processing device for producing garlic seasoning according to claim 1, characterized in that: A plurality of fixed seats (307) distributed at equal angles are fixedly connected to the adjacent side surfaces of the two connecting blocks (305), and the abutting ends of the plurality of fixed seats (307) are commonly connected to a guide rod (308), and two static crushing discs (309) are fixedly mounted on the outer wall of the guide rod (308), and the two static crushing discs (309) are symmetrically distributed about the center of the spherical grinding jar (2), and a dynamic crushing disc (3010) is slidably mounted on the outer wall of the guide rod (308).

4. The raw material processing device for producing garlic seasoning according to claim 3, characterized in that: A plurality of crushing pins (3011) are fixedly connected to a side surface of the dynamic crushing disk (3010) close to the connection block (305); a spiral groove (3012) is provided on the outer wall of the guide rod (308); a sliding pin (3013) is fixedly connected to the inner wall of the dynamic crushing disk (3010); and the outer wall of the sliding pin (3013) is slidably connected to the groove wall of the spiral groove (3012).

5. The raw material processing device for producing garlic seasoning according to claim 3, characterized in that: A material guide hole (306) is formed through the adjacent side surfaces of the two connection blocks (305), and the center of the material guide hole (306) is on the same straight line as the center of the guide rod (308).

6. The raw material processing device for producing garlic seasoning according to claim 1, characterized in that: The outer wall of the grinding circular frame (301) is provided with a plurality of equiangularly distributed placement grooves (3014), each of the placement grooves (3014) being located between two adjacent positioning grooves (3016), and each of the placement grooves (3014) has a universal ball (3015) rollingly mounted therein, the outer wall of the universal ball (3015) abutting against the inner wall of the spherical grinding jar (2).

7. The raw material processing device for producing garlic seasoning according to claim 1, characterized in that: The top of the spherical grinding jar (2) is provided with a take-in / take-out opening (201), the take-in / take-out opening (201) extends into the interior of the spherical grinding jar (2), and a sealed cover (202) is screwed onto the internal threads of the take-in / take-out opening (201).

8. The raw material processing device for producing garlic seasoning according to claim 1, characterized in that: The left and right outer wall portions of the spherical grinding jar (2) are both fixedly connected to support rotating shafts (203), the two support rotating shafts (203) are symmetrically distributed about the center of the spherical grinding jar (2), and the two support rotating shafts (203) are rotatably mounted on the top of the grinding machine frame (1) via two bearing seats, and the two adapter frames (401) are rotatably mounted on the outer walls of the two support rotating shafts (203).

9. The raw material processing device for producing garlic seasoning according to claim 8, characterized in that: A worm wheel (501) is fixedly mounted on the outer wall of one of the supporting shafts (203); a worm (502) is meshed on the outer periphery of the bottom of the worm wheel (501); a torsion bar (503) is fixedly connected to the inner wall of the worm (502); two rotating seats (504) are rotatably mounted on the outer wall of the torsion bar (503); both rotating seats (504) are fixedly mounted on the surface of the grinding machine frame (1); and a force application handle (505) is fixedly mounted on one end of the torsion bar (503) away from the worm (502).

10. The raw material processing device for producing garlic seasoning according to claim 1, characterized in that: A PLC control module (6) is fixedly installed inside the grinding machine frame (1), and the PLC control module (6) is electrically connected to the two arc-shaped electromagnetic coils (402) and the AC motor (405).

Citation Information

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