A soybean meal grinding and forming device
The multi-stage crushing and forming device driven by a single power source solves the problems of complexity, high energy consumption and poor crushing effect of existing devices, and realizes efficient two-stage crushing and forming of soybean meal. It has a compact structure and low cost.
Patent Information
- Application Number
- CN202311700946.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-12
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2043-12-12
AI Technical Summary
Existing soybean meal grinding equipment suffers from problems such as complex systems, high energy consumption, and poor grinding effect, especially lacking coarse and fine two-stage grinding and forming functions.
The device employs a single power source-driven coarse grinding mechanism, fine grinding mechanism, and forming mechanism. Through multi-stage grinding and forming processes, it achieves coarse and fine two-stage grinding and forming of soybean meal. The device has a compact structure and low cost.
It achieves smaller soybean meal powder particle diameter, can be formed into arbitrary shapes, has a compact structure, low cost, and is easy to control.
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Figure CN117898446B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of soybean meal grinding technology, and in particular to a soybean meal grinding and forming device. Background Technology
[0002] Soybean meal, an important organic byproduct of soybean pressing, is typically used only as feed for poultry and fish in its conventional form. To further broaden and expand the application areas and scope of soybean meal, it can be further pulverized and shaped using chemical processes to prepare new materials using soybean meal as raw material.
[0003] Prior art (application number: CN 105495358 A, application date: December 17, 2015, "A method and apparatus for cooling and pulverizing fermented soybean meal") proposed a two-stage cooling and pulverizing system for soybean meal. First, dried fermented soybean meal material is fed into a first-stage cooler for cooling. Then, the cooled fermented soybean meal material is fed into a pulverizer for pulverization. Finally, the pulverized material is fed into a second-stage cooler for further cooling. After cooling to a certain temperature, the pulverized material is discharged from the second-stage cooler and, after inspection, becomes the finished product. Both the first and second-stage coolers are impeller-type counter-current coolers. The apparatus includes coolers, a pulverizer, and a conveyor. There are two coolers, both impeller-type counter-current coolers. However, this system involves multiple power sources driving the system, making it complex and energy-intensive.
[0004] The prior art (application number: CN 216936163 U, application date: December 30, 2021, "A soybean meal grinding device for soybean peptone production") includes a shell, a crushing mechanism and a grinding mechanism located below the crushing mechanism inside the shell; a feed inlet is provided at the upper end of the shell, and a feed plate is hinged inside the shell and located below the feed inlet for guiding material into the crushing mechanism. The feed plate is arranged at an inclination, and the upper end of the feed plate is a hinged end. A drive mechanism is provided inside the shell and located on the feed plate for driving the feed plate to swing up and down around the hinge axis. The device uses an active grinding roller and a driven grinding roller to crush the soybean meal, thus achieving the crushing of soybean meal. However, it only has a single-stage crushing process, and the crushing effect of soybean meal is poor.
[0005] Therefore, there is an urgent need for a device that can achieve two-stage grinding and shaping of soybean meal, including coarse and fine grinding. Summary of the Invention
[0006] The purpose of this invention is to overcome the shortcomings of the existing technology by proposing a soybean meal crushing and forming device. Through the coarse crushing mechanism, fine crushing mechanism and forming mechanism, the device can automatically realize the coarse and fine two-stage crushing and forming of soybean meal, resulting in smaller soybean meal powder particles that can be extruded into arbitrary shapes. A single power source drives the crushing mechanism, fine crushing mechanism and forming mechanism, making the device structure more compact, the cost lower and the control easier.
[0007] The objective of this invention can be achieved through the following technical solutions:
[0008] This invention provides a soybean meal crushing and forming device, comprising a cover, a coarse crushing mechanism, a fine crushing mechanism, a forming mechanism, a sleeve, and a connecting plate; the cover and the sleeve are coaxially mounted; the coarse crushing mechanism is disposed inside the sleeve and is connected to the fine crushing mechanism; the coarse crushing mechanism is fixed to the sleeve via the connecting plate; the fine crushing mechanism is connected to the forming mechanism; the coarse crushing mechanism includes a coarse crushing sleeve, a first rotating shaft, a scraper, a drum, and a third rotating shaft; the first rotating shaft is fixedly connected to the drum; the drum is connected to the third rotating shaft; the third rotating shaft passes through the bottom of the coarse crushing sleeve; the scraper is tangential to the coarse crushing sleeve.
[0009] Furthermore, the soybean meal crushing and forming device includes a cover, a motor, a coarse crushing mechanism, a fine crushing mechanism, a forming mechanism, a sleeve, and a connecting plate. The cover and the sleeve are coaxially mounted. The motor is mounted on the top of the cover. The coarse crushing mechanism is located inside the sleeve and is fixed to the sleeve via the connecting plate. The motor is connected to the coarse crushing mechanism and provides rotational power to it. The coarse crushing mechanism is connected to the fine crushing mechanism and further transmits the power of the motor to the fine crushing mechanism. The cover has a feed inlet, through which soybean meal enters the coarse crushing mechanism. The coarse crushing mechanism coarsely crushes the soybean meal, and the crushed soybean meal falls from the coarse crushing mechanism into the fine crushing mechanism, where it further crushes the soybean meal. The fine crushing mechanism is connected to the forming mechanism, which further transmits the power of the motor to the forming mechanism, where the soybean meal falls from the fine crushing mechanism into the forming mechanism, where it gathers the loose soybean meal powder into shape.
[0010] Furthermore, multiple through holes are provided at the tangent of the coarse crushing sleeve and the scraper, and the soybean meal is squeezed out through the through holes by the roller.
[0011] Furthermore, the coarse crushing mechanism also includes cam one and cam two; cam one and cam two are mounted on rotating shaft one; cam one and cam two are distributed at a 45° angle along the axis of rotating shaft one.
[0012] Furthermore, the coarse crushing mechanism also includes a pull plate, a guide rail, a slider, a rotating shaft, a swing rod, and a top plate; the top plate is installed at the top of the coarse crushing sleeve; the slider is installed on the top plate; the guide rail is slidably connected to the slider; one end of the guide rail is connected to the pull plate; the rotating shaft is installed on the top plate; one end of the swing rod is rotatably connected to the rotating shaft, and the other end of the swing rod is fixedly connected to the scraper.
[0013] Furthermore, the other end of the guide rail is set as a rectangular frame; the cam is set inside the rectangular frame of the guide rail; the middle of the rocker arm is set as a rectangular frame, and the cam is set inside the rectangular frame of the rocker arm.
[0014] Furthermore, multiple through holes are provided at the tangent between the coarse crushing sleeve and the scraper.
[0015] Furthermore, the coarse crushing mechanism includes a coarse crushing sleeve, a pull plate, a guide rail 1, a slider 1, a rotating shaft 1, a rotating shaft 2, a bearing 1, a swing arm 1, a scraper, a top plate, a drum, a bearing 2, a rotating shaft 3, a cam 1, and a cam 2. The top plate is installed at the top of the coarse crushing sleeve, the bearing 1 is installed on the top plate, the rotating shaft 1 is fixedly connected to the drum through the bearing 1, the cam 1 and cam 2 are installed on the rotating shaft 1, and the cam 1 and cam 2 are distributed at a 45° angle along the axis of the rotating shaft 1. The slider 1 is installed on the top plate, and the guide rail 1 slides against the slider 1. The system is connected in a moving manner. One end of the guide rail is connected to a pull plate, and the other end is set as a rectangular frame. Cam 2 is set inside the rectangular frame of guide rail 1. Rotating shaft 2 is installed on the top plate. One end of the swing rod is rotatably connected to rotating shaft 2, and the other end of the swing rod is fixedly connected to the scraper. The scraper is tangent to the coarse crushing sleeve. Multiple through holes are set at the tangent between the coarse crushing sleeve and the scraper. The middle of the swing rod is set as a rectangular frame. Cam 1 is set inside the rectangular frame of the swing rod. The roller is connected to rotating shaft 3. Bearing 2 is installed at the bottom of the coarse crushing sleeve, and rotating shaft 3 passes through bearing 2.
[0016] Furthermore, the soybean meal crushing and forming device also includes a driving component; the driving component is installed at the top of the cover and is connected to the coarse crushing mechanism.
[0017] Furthermore, the driving component can be a motor.
[0018] Furthermore, the fine grinding mechanism includes cam three and cam four; cam three and cam four are mounted on rotating shaft three; cam three and cam four are distributed at a 180° angle along the axis of rotating shaft three.
[0019] Furthermore, the fine grinding mechanism also includes a fine grinding sleeve, a fourth rotating shaft, a second swing arm, and a third swing arm; the fourth rotating shaft is mounted on the fine grinding sleeve; the second and third swing arms are arranged vertically; one end of the second and third swing arms is rotatably connected to the fourth rotating shaft; the middle part of the second and third swing arms is set as a rectangular frame; the third cam is set inside the rectangular frame of the second swing arm; the fourth cam is set inside the rectangular frame of the third swing arm.
[0020] Furthermore, the fine grinding mechanism includes a fine grinding sleeve, a fourth rotating shaft, a second and a third swing arm, a third cam, and a fourth cam. The fourth rotating shaft is mounted on the fine grinding sleeve. The second and third swing arms are arranged vertically, with one end of each swing arm rotatably connected to the fourth rotating shaft. The middle of the second and third swing arms is set as a rectangular frame. The third and fourth cams are mounted on the third rotating shaft and are distributed at a 180° angle along the axis of the third rotating shaft. The third cam is set within the rectangular frame of the second swing arm, and the fourth cam is set within the rectangular frame of the third swing arm.
[0021] Furthermore, the forming mechanism includes a partition, a drive plate, a forming plate, a base plate, a second guide rail, and a second slider; multiple forming plates are disposed between the partition and the base plate; the second slider is mounted on the partition; the second guide rail is slidably connected to the second slider; one end of the second guide rail is connected to the forming plate; the drive plate is provided with evenly distributed arc-shaped grooves, and a fourth rotating shaft is disposed within the arc-shaped grooves of the drive plate; the third rotating shaft passes through the partition and is fixedly connected to the drive plate.
[0022] Furthermore, the forming mechanism also includes a rotating shaft five; the other end of the guide rail two is connected to the rotating shaft five; the drive plate is provided with evenly distributed arc-shaped grooves, and the rotating shaft five is disposed in the arc-shaped grooves of the drive plate.
[0023] Furthermore, the forming mechanism includes a partition, a drive plate, a forming plate, a base plate, a second guide rail, a second slider, and a fifth rotating shaft. Multiple forming plates are arranged between the partition and the base plate. The second slider is mounted on the partition. The second guide rail is slidably connected to the second slider. One end of the second guide rail is connected to the forming plate, and the other end is connected to the fifth rotating shaft. The drive plate is provided with evenly distributed arc-shaped grooves. The fifth rotating shaft is arranged in the arc-shaped grooves of the drive plate. The third rotating shaft passes through the partition and is fixedly connected to the drive plate. The drive plate can pull the multiple forming plates together and disperse through the second guide rail.
[0024] Preferably, the pull plate is any one of a semi-circular plate, a flat plate, or a curved plate.
[0025] Preferably, the forming plate is any one of a semi-circular plate, a flat plate, or a curved plate.
[0026] Compared with the prior art, the present invention has the following beneficial effects:
[0027] 1) The soybean meal crushing and forming device of the present invention can automatically realize the coarse and fine two-stage crushing and forming of soybean meal through the coarse crushing mechanism, the fine crushing mechanism and the forming mechanism. The soybean meal powder particles have smaller diameters and can be extruded into arbitrary shapes.
[0028] 2) The soybean meal crushing and forming device of the present invention uses a single power source to drive the crushing mechanism, fine crushing mechanism and forming mechanism, making the device structure more compact, the cost lower and the control easier. Attached Figure Description
[0029] Figure 1 This is a side cross-sectional view of the soybean meal crushing and forming apparatus of the present invention.
[0030] Figure 2 This is a front cross-sectional view of the soybean meal crushing and forming apparatus of the present invention.
[0031] Figure 3 for Figure 2 AA section view.
[0032] Figure 4 for Figure 2 BB cross-sectional view.
[0033] Figure 5 This is a main cross-sectional view of the forming mechanism of the soybean meal crushing and forming apparatus of the present invention.
[0034] Figure 6 This is a side view of the forming mechanism of the soybean meal crushing and forming apparatus of the present invention.
[0035] Figure 7 for Figure 5 CC section view.
[0036] Explanation of reference numerals in the attached figures:
[0037] 1. Cover 1; 2. Motor; 3. Coarse crushing mechanism; 4. Fine crushing mechanism; 5. Forming mechanism; 6. Sleeve; 7. Connecting plate.
[0038] 31. Coarse crushing sleeve; 32. Pull plate; 33. Guide rail one; 34. Slider one; 35. Rotating shaft one; 36. Rotating shaft two; 37. Bearing one; 38. Swing rod one; 39. Scraper; 310. Top plate; 311. Through hole; 312. Roller; 313. Bearing two; 314. Rotating shaft three; 315. Cam one; 316. Cam two.
[0039] 41. Fine grinding sleeve, 42. Rotating shaft four, 43. Swing rod two, 44. Swing rod three, 45. Cam three, 46. Cam four, 51. Partition plate, 52. Drive plate, 53. Forming plate, 54. Base plate, 55. Guide rail two, 56. Slider two, 57. Rotating shaft five. Detailed Implementation
[0040] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments. The following embodiments will help those skilled in the art to further understand the present invention, but do not limit the invention in any way. It should be noted that those skilled in the art can make several changes and improvements to the opening shape without departing from the concept of the present invention. These all fall within the protection scope of the present invention.
[0041] Any preparation methods, materials, structures, or composition ratios not explicitly described in this technical solution are considered common technical features disclosed in the prior art.
[0042] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0043] It should be noted that in this invention, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0044] Example
[0045] refer to Figures 1-7 This embodiment provides a soybean meal crushing and forming device.
[0046] like Figure 1As shown, a soybean meal crushing and forming device includes a cover 1, a motor 2, a coarse crushing mechanism 3, a fine crushing mechanism 4, a forming mechanism 5, a sleeve 6, and a connecting plate 7. The cover 1 and the sleeve 6 are coaxially mounted. The motor 2 is mounted on the top of the cover 1. The coarse crushing mechanism 3 is located inside the sleeve 6 and is fixed to the sleeve 6 by the connecting plate 7. The motor 2 is connected to the coarse crushing mechanism 3 and provides rotational power to the coarse crushing mechanism 3. The coarse crushing mechanism 3 is connected to the fine crushing mechanism 4 and further transmits the power of the motor 2 to the fine crushing mechanism 4. The cover 1 is provided with a feed inlet. Soybean meal enters the coarse crushing mechanism 3 through the feed inlet. The coarse crushing mechanism 3 coarsely crushes the soybean meal. The crushed soybean meal falls from the coarse crushing mechanism 3 into the fine crushing mechanism 4, where it further crushes the soybean meal. The fine crushing mechanism 4 is connected to the forming mechanism 5 and further transmits the power of the motor 2 to the forming mechanism 5. The soybean meal falls from the fine crushing mechanism 4 into the forming mechanism 5, where it gathers the loose soybean meal powder into a shape.
[0047] like Figures 1-3 As shown, the coarse crushing mechanism 3 includes a coarse crushing sleeve 31, a pull plate 32, a guide rail 33, a slider 34, a rotating shaft 35, a rotating shaft 36, a bearing 37, a rocker arm 38, a scraper 39, a top plate 310, a drum 312, a bearing 313, a rotating shaft 314, a cam 315, and a cam 316. The top plate 310 is installed at the top of the coarse crushing sleeve 31. The bearing 37 is installed on the top plate 310. The rotating shaft 35 is fixedly connected to the drum 312 through the bearing 37. The cams 315 and 316 are installed on the rotating shaft 35 and are distributed at a 45° angle along the axis of the rotating shaft 35. The slider 34 is installed on the top plate 310. The guide rail 33 is slidably connected to the slider 34. One end of the guide rail 33 is connected to the pull plate 32, and the other end is set as a rectangular frame. The cam 316 is set in the rectangular frame of the guide rail 33. The rotating shaft 36 is installed on the top plate 310. One end of the rocker arm 38 is rotatably connected to the rotating shaft 36. The other end of the rocker arm 38 is fixedly connected to the scraper 39. The scraper 39 is tangent to the coarse crushing sleeve 31. Multiple through holes 311 are provided at the tangent between the coarse crushing sleeve 31 and the scraper 39. The middle of the rocker arm 38 is set as a rectangular frame. The cam 315 is set in the rectangular frame of the rocker arm 38. The roller 312 is connected to the rotating shaft 314. The bearing 313 is installed at the bottom of the coarse crushing sleeve 31. The rotating shaft 314 passes through the bearing 313.
[0048] The working principle of the coarse crushing mechanism 3 is as follows: the rotating shaft 35 drives the cam 315 and the cam 316 to rotate. The cam 316 pushes the guide rail 33 to move back and forth, squeezing the soybean meal that falls into the coarse crushing sleeve 31 into the space between the drum 312 and the coarse crushing sleeve 31. The drum 312 further squeezes the soybean meal into the through hole 311. The cam 315 pushes the swing rod 38 to swing. The swing rod 38 drives the scraper 39 to swing in the tangential direction of the coarse crushing sleeve 31. The swing distance of the scraper 39 is greater than the diameter of the through hole 311, which can cut and crush the squeezed soybean meal, thus realizing the coarse crushing of soybean meal.
[0049] like Figure 1 and Figure 4 As shown, the fine grinding mechanism 4 includes a fine grinding sleeve 41, a rotating shaft 42, a rocker arm 43, a rocker arm 44, a cam 45, and a cam 46. The rotating shaft 42 is mounted on the fine grinding sleeve 41. The rocker arms 43 and 44 are arranged vertically, with one end of each rocker arm 43 and 44 rotatably connected to the rotating shaft 42. The middle of the rocker arms 43 and 44 is set as a rectangular frame. The cams 45 and 46 are mounted on the rotating shaft 314 and are distributed at a 180° angle along the axis of the rotating shaft 314. The cam 45 is set inside the rectangular frame of the rocker arm 43, and the cam 46 is set inside the rectangular frame of the rocker arm 44.
[0050] The working principle of the fine grinding mechanism 4 is as follows: the rotating shaft 314 drives the adjacent cam 345 and cam 46, which are 180° apart, to rotate. The cam 345 and cam 46 respectively push the swing arm 2 43 and swing arm 3 44 to swing back and forth. The coarsely ground soybean meal is further sheared by the swing arm 2 43 and swing arm 3 44, which move in opposite directions, to achieve fine grinding of soybean meal.
[0051] like Figure 1 , Figure 5 , Figure 6 and Figure 7 As shown, the forming mechanism 5 includes a partition 51, a drive plate 52, a forming plate 53, a base plate 54, a second guide rail 55, a second slider 56, and a fifth rotating shaft 57. Multiple forming plates 53 are arranged between the partition 51 and the base plate 54. The second slider 56 is mounted on the partition 51. The second guide rail 55 is slidably connected to the second slider 56. One end of the second guide rail 55 is connected to the forming plate 53, and the other end is connected to the fifth rotating shaft 57. The drive plate 52 is provided with evenly distributed arc-shaped grooves. The fifth rotating shaft 57 is arranged in the arc-shaped grooves of the drive plate 52. The third rotating shaft 314 passes through the partition 51 and is fixedly connected to the drive plate 52. The drive plate 52 can pull the multiple forming plates 53 to gather and disperse through the second guide rail 55.
[0052] The working principle of the forming mechanism 5 is as follows: the rotating shaft 314 drives the drive plate 52 to rotate. The drive plate 52 can pull multiple forming plates 53 to gather and disperse at the same time through the guide rail 55, and compress the crushed soybean meal that falls into the space surrounded by the multiple forming plates 53 into shape. The shape of the soybean meal depends on the shape of the space surrounded by the multiple forming plates 53.
[0053] The pull plate 32 can be any of a semi-circular plate, a flat plate, or a curved plate; in this embodiment, it is a curved plate.
[0054] The forming plate 53 can be any of a semi-circular plate, a flat plate, or a curved plate; in this embodiment, it is a curved plate.
[0055] The working method of the above-mentioned soybean meal crushing and forming device includes the following steps:
[0056] Motor 2 provides rotational power to coarse crushing mechanism 3. Soybean meal enters coarse crushing mechanism 3 through the feed inlet, and coarse crushing mechanism 3 coarsely crushes soybean meal.
[0057] The crushed soybean meal falls from the coarse crushing mechanism 3 into the fine crushing mechanism 4. The coarse crushing mechanism 3 further transmits the power of the motor 2 to the fine crushing mechanism 4, and the fine crushing mechanism 4 further crushes the soybean meal.
[0058] Soybean meal falls from the fine grinding mechanism 4 into the forming mechanism 5. The fine grinding mechanism 4 further transmits the power of the motor 2 to the forming mechanism 5, and the forming mechanism 5 gathers the loose soybean meal powder into shape.
[0059] The embodiments described herein are provided to enable those skilled in the art to understand and use the invention. It will be apparent to those skilled in the art that various modifications can be made to these embodiments, and the general principles described herein can be applied to other embodiments without inventive effort. Therefore, the invention is not limited to the above embodiments, and any improvements and modifications made by those skilled in the art based on the disclosure of the invention without departing from the scope of the invention should be within the protection scope of the invention.
Claims
1. A soybean meal grinding and forming device, characterized in that, The soybean meal crushing and forming device includes a cover (1), a coarse crushing mechanism (3), a fine crushing mechanism (4), a forming mechanism (5), a sleeve (6), and a connecting plate (7). The cover (1) is coaxially mounted with the sleeve (6); The coarse crushing mechanism (3) is installed inside the sleeve (6), and the coarse crushing mechanism (3) is connected to the fine crushing mechanism (4); The coarse crushing mechanism (3) is fixed to the sleeve (6) by a connecting plate (7); The fine grinding mechanism (4) is connected to the forming mechanism (5); The coarse crushing mechanism (3) includes a coarse crushing sleeve (31), a rotating shaft one (35), a scraper (39), a drum (312), a rotating shaft three (314), a cam one (315), a cam two (316), a pull plate (32), a guide rail one (33), a slider one (34), a rotating shaft two (36), a swing rod one (38), and a top plate (310). The rotating shaft (35) is fixedly connected to the roller (312); The roller (312) is connected to the rotating shaft three (314); The rotating shaft three (314) passes through the bottom of the coarse crushing sleeve (31); The scraper (39) is tangent to the coarse crushing sleeve (31); Multiple through holes (311) are provided at the tangent of the coarse crushing sleeve (31) and the scraper (39). The first cam (315) and the second cam (316) are mounted on the first rotating shaft (35); The first cam (315) and the second cam (316) are distributed at a 45° angle along the axis of the first rotating shaft (35); The top plate (310) is installed at the top of the coarse crushing sleeve (31); The slider (34) is mounted on the top plate (310); The guide rail (33) and the slider (34) are slidably connected; One end of the guide rail (33) is connected to the pull plate (32); The second rotating shaft (36) is mounted on the top plate (310); One end of the swing rod (38) is rotatably connected to the rotating shaft (36), and the other end of the swing rod (38) is fixedly connected to the scraper (39); The other end of the guide rail (33) is set as a rectangular frame; The second cam (316) is set within the rectangular frame of the first guide rail (33); The middle of the swing arm (38) is set as a rectangular frame, and the cam (315) is set inside the rectangular frame of the swing arm (38); Soybean meal is squeezed through a roller (312) and extruded through the through hole (311); The fine grinding mechanism (4) includes a fine grinding sleeve (41), a rotating shaft (42), a swing rod (43), a swing rod (44), a cam (45) and a cam (46). The cam three (45) and cam four (46) are mounted on the rotating shaft three (314); The cam three (45) and cam four (46) are distributed at an angle of 180° along the axis of the rotating shaft three (314); The rotating shaft four (42) is mounted on the fine grinding sleeve (41); The second (43) and third (44) swing rods are arranged vertically; One end of the second (43) and the third (44) of the swing rods is rotatably connected to the fourth (42) of the rotating shaft; The middle part of both the second (43) and the third (44) swing rods is set as a rectangular frame; The cam three (45) is set within the rectangular frame of the rocker arm two (43); The fourth cam (46) is set within the rectangular frame of the third rocker arm (44); The forming mechanism (5) includes a partition (51), a drive plate (52), a forming plate (53), a base plate (54), a guide rail (55), a slider (56), and a rotating shaft (57). Multiple forming plates (53) are arranged between the partition plate (51) and the bottom plate (54); The second slider (56) is mounted on the partition plate (51); The second guide rail (55) and the second slider (56) are slidably connected; One end of the guide rail (55) is connected to the forming plate (53); The drive plate (52) is provided with evenly distributed arc-shaped grooves, and the rotating shaft five (57) is located in the arc-shaped groove of the drive plate (52); The rotating shaft (314) passes through the partition (51) and is fixedly connected to the drive plate (52); The other end of the guide rail 2 (55) is connected to the rotating shaft 5 (57).
2. The soybean meal grinding and forming device according to claim 1, characterized in that, The soybean meal crushing and forming device also includes a drive component; The drive unit is installed at the top of the cover (1) and is connected to the coarse crushing mechanism (3).
Citation Information
Patent Citations
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