Multi-parameter real-time monitoring equipment and method for edible oil preparation process

By designing a multi-parameter real-time monitoring equipment for the preparation of edible oil, using components such as soybean bins and electrode rods, the problem of poor oil production quality caused by uneven water content under soybeans is solved, and accurate monitoring of the multi-directional water content of soybeans and the improvement of soybean drying effect is achieved.

CN120044078AActive Publication Date: 2025-05-27SHAANXI WUGUYUAN FOOD BIOTECHNOLOGY DEV CO LTD
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Patent Information

Application Number
CN202510510630.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-05-27
Estimated Expiration
2045-04-23

AI Technical Summary

Technical Problem

The existing edible oil monitoring system is difficult to accurately monitor the problem of uneven water content under soybeans, resulting in poor quality of soybean oil production.

Method used

A multi-parameter real-time monitoring device for the preparation of edible oil was designed. Through the combination of bean bin, U-shaped frame, hood, screw, servo motor, inner groove block, resistance measuring device and electrode rod, real-time monitoring and display of the multi-directional moisture content under soybeans is achieved.

Benefits of technology

Accurate monitoring of the water content in multiple directions below soybeans is achieved, avoiding the problem of poor quality of soybean oil production caused by inaccurate monitoring. Through the bean turning device and anti-spill device, the soybean drying effect and preventing soybean spillage are ensured.

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Abstract

The invention discloses an edible oil preparation process multi-parameter real-time monitoring device and method, and relates to the technical field of real-time monitoring, the edible oil preparation process multi-parameter real-time monitoring device comprises a bean bin, U-shaped frames are fixed to the tops of the left side and the right side of the bean bin, sliding grooves are formed in the top faces of the U-shaped frames, a machine cover is fixed to the top faces of the U-shaped frames, and triangular rings are fixed to the two sides of the top faces of the U-shaped frames; a screw rod is rotatably installed on the inner wall of the triangular ring and located in the machine cover, the machine cover is used for preventing dust from entering a threaded groove of the screw rod, a bottom frame is fixed to the left side of the U-shaped frame, a servo motor is fixedly installed on the top face of the bottom frame, and the right side of a rotating shaft of the servo motor is fixedly connected with the left side of the screw rod; according to the soybean oil preparation device, the water content of soybeans in multiple directions is measured through the multiple electrode bars by using the resistance value, so that the problem of poor soybean oil preparation quality caused by inaccurate monitoring of the water content below the soybeans is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of real-time monitoring, and specifically to a multi-parameter real-time monitoring device and method for the edible oil preparation process. Background Art

[0002] Soybean oil is a common vegetable oil, which is rich in various important nutrients. During the preparation of soybean oil, soybeans need to be naturally dried so that the water content in the soybeans does not exceed 8%, and then the soybeans are shelled. The main function of the multi-parameter real-time monitoring device is to monitor the water content in the soybeans, improve the efficiency of soybean air-drying and the quality of soybeans.

[0003] The patent with the publication number CN217931614U discloses a quality monitoring system for edible oil, including a conveying device and a monitor body. Inside the monitor body, there is a CPU analysis processor; on the front side of the monitor body, a display screen and a control button are respectively embedded. It is characterized in that a support plate is bolted to the rear side of the conveying device; an elevating positioning device is installed on the upper part of the front side of the support plate; an adjustable edible oil concentration monitoring device is installed on the lower part of the elevating positioning device; an audible and visual alarm lamp is installed on the upper right side of the monitor body; an edible oil barrel is placed on the upper part of the conveying device. When the probe moves downward, the receiving hopper is rotated downward, so that the oil liquid in the receiving hopper is diverted into the edible oil barrel, and when the probe moves upward, the receiving hopper is pushed upward under the action of the torsion spring, and the oil liquid on the probe is prevented from dripping downward.

[0004] However, the above patent still has the following problems: When the above edible oil monitoring system monitors edible oil, since the water content at the bottom of the stacked soybeans is uneven during the preparation of edible oil, it is difficult for the device to monitor, which leads to poor quality of subsequent soybean oil production. Therefore, we propose a multi-parameter real-time monitoring device and method for the edible oil preparation process. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides a multi-parameter real-time monitoring device and method for the edible oil preparation process, which solves the problems raised in the above background art.

[0006] To achieve the above objectives, the present invention is realized through the following technical solutions: A multi-parameter real-time monitoring device for the edible oil preparation process, including a bean bin. U-shaped frames are fixed to the tops of the left and right sides of the bean bin. A chute is provided on the top surface of the U-shaped frame. A machine cover is fixed to the top surface of the U-shaped frame. Triangular rings are fixed to both sides of the top surface of the U-shaped frame. A screw rod is rotatably installed on the inner wall of the triangular ring. The screw rod is located inside the machine cover. The machine cover is used to prevent dust from entering the thread groove of the screw rod. A bottom frame is fixed to the left side of the U-shaped frame. A servo motor is fixedly installed on the top surface of the bottom frame. The right side of the rotating shaft of the servo motor is fixedly connected to the left side of the screw rod. The rotating shaft of the servo motor is used to drive the screw rod to rotate. An inner groove block is slidably installed on the outer wall of the screw rod. The inner wall of the inner groove block meshes with the inner wall of the thread groove of the screw rod. The bottom of the outer wall of the inner groove block is in sliding contact with the inner wall of the chute of the U-shaped frame. A resistance measurer is fixed to the bottom surface of the inner groove block. A vertical column is fixed to the middle of the bottom surface of the resistance measurer. A slide plate is fixed to the bottom surface of the vertical column. An electrode rod is fixed to the top surface of the slide plate. The electrode rod is used to discharge electricity below the soybeans. Multiple electrode rods perform moving discharges below the soybeans, so that the multiple electrode rods measure the moisture content of the soybeans in multiple directions through resistance values.

[0007] According to the above technical solution, a display is fixedly installed on the right side of the top surface of the machine cover. The display is used to display the moisture content of different areas below the soybeans. Bottom feet are fixed to the four sides of the bottom surface of the bean bin. A bean outlet is provided on the front surface of the bean bin. A bin door is hinged to the left side of the front surface of the bean bin.

[0008] According to the above technical solution, chutes are provided on the front and back inner walls of the bean bin. The resistance measurer is located above the bean bin. Chamfers are provided on both the left and right sides of the slide plate. The bottom surface of the slide plate is in sliding contact with the bottom end inside the bean bin.

[0009] According to the above technical solution, a bean turning device is provided on the top of the outer wall of the vertical column. The bean turning device is used to turn the soybeans in the bean bin. Anti-overflow devices are provided on the front and back of the bean turning device. The anti-overflow devices are used to prevent the soybeans from overflowing.

[0010] According to the above technical solution, the bean turning device includes a U-shaped slide plate. The U-shaped slide plate is fixed to the top of the outer wall of the vertical column. Two through grooves are provided on the top surface of the U-shaped slide plate. The front and back of the U-shaped slide plate are slidably connected to the inner wall of the chute of the bean bin. The U-shaped slide plate is located below the resistance measurer. A number of vertical plates are fixed to the bottom surface of the U-shaped slide plate. An adapter plate is fixed to the bottom surface of the vertical plate. Arc-shaped plates are fixed to both the left and right sides of the adapter plate. The vertical plate drives the adapter plate to move to the right. The adapter plate drives the arc-shaped plate to move to the right. The arc-shaped plate turns the piled-up soybeans.

[0011] According to the above technical solution, a return-shaped frame is fixed to the outer wall of the vertical plate. A number of L-shaped rods are fixed to both the left and right sides of the return-shaped frame. A chamfered frame is fixed to the bottom surface of the L-shaped rod. The chamfered frame is used to cut open the surface of the soybeans piled together. The L-shaped rod drives the chamfered frame to move to the right, and the chamfered frame cuts open the surface of the soybeans in the silo.

[0012] According to the above technical solution, the anti-overflow device includes an L-shaped column, which is respectively fixed to the front and back of the return-shaped frame. The L-shaped column is located inside the through groove of the U-shaped slide plate. A thin strip board is fixed to the top surface of the L-shaped column. Straight rods are fixed to both the left and right sides of the thin strip board. Double-arc plates are fixed to the ends of the straight rods away from each other. Baffles are fixed to the sides of the double-arc plates away from each other. The straight rod drives the double-arc plate to move to the right, and the double-arc plate drives the baffle to move to the right. The baffle blocks the soybeans from overflowing from the silo.

[0013] According to the above technical solution, two square plates are respectively fixed to the bottom of the front side of the baffle. An L-shaped plate is fixed to the front surface of the square plate. A spring piece is fixed to the bottom of the side of the L-shaped plate away from each other. The spring piece is used to sweep out the soybeans in the chute of the silo. The L-shaped plate drives the spring piece to move to the right, and the spring piece shovels out the soybeans in the chute of the silo.

[0014] A method for using a multi-parameter real-time monitoring device in the process of preparing edible oil: includes the following steps: S1. The operator pours the soybeans into the silo, and the soybeans are naturally dried in the silo. S2. The slide plate drives a plurality of electrode rods to move to the right. The plurality of electrode rods perform moving discharge under the soybeans. The plurality of electrode rods measure the moisture content of the soybeans in multiple directions through the resistance value. S3. The connecting plate drives the arc-shaped plate to move to the right, and the arc-shaped plate turns over the piled soybeans. S4. The L-shaped rod drives the chamfered frame to move to the right, and the chamfered frame cuts open the surface of the soybeans in the silo. S5. The double-arc plate drives the baffle to move to the right, and the baffle blocks the soybeans from overflowing from the silo. S6. The L-shaped plate drives the spring piece to move to the right, and the spring piece shovels out the soybeans in the chute of the silo.

[0015] The present invention provides a multi-parameter real-time monitoring device in the process of preparing edible oil. It has the following beneficial effects: (1) In the present invention, through the cooperation of a bean bin, a U-shaped frame, a machine hood, a triangular ring, a screw rod, a chassis, a servo motor, an inner groove block, a resistance measurer, a vertical column, and a slide plate with an electrode rod, the slide plate slides to the right in the bean bin, and the slide plate drives a plurality of electrode rods to move to the right. The plurality of electrode rods perform moving discharge under the soybeans, so that the plurality of electrode rods measure the water content of the soybeans in multiple directions through the resistance value. The resistance measurer transmits a plurality of detection data to a display through a data line, enabling an operator to monitor the water content of the soybeans in multiple directions in real time and preventing poor quality of soybean oil production caused by inaccurate monitoring of the water content under the soybeans.

[0016] (2) In the present invention, through the setting of the bean turning device, the U-shaped slide plate, the vertical plate, and the connecting plate cooperate with the arc plate. The vertical plate drives the connecting plate to move to the right, and the connecting plate drives the arc plate to move to the right. The arc plate turns the piled-up soybeans, preventing the piled-up soybeans in the bean bin from caking and preventing the quality of the soybeans from deteriorating due to caking of the piled-up soybeans in the bean bin.

[0017] (3) In the present invention, through the setting of the bean turning device, the loop frame and the L-shaped rod cooperate with the chamfered frame. The L-shaped rod drives the chamfered frame to move to the right, and the chamfered frame cuts open the surface of the soybeans in the bean bin, allowing the soybeans in the bean bin to discharge the accumulated moisture, and preventing poor drying effect of the soybeans caused by a large amount of accumulated moisture in the soybeans.

[0018] (4) In the present invention, through the setting of the anti-overflow device, the L-shaped column, the thin strip plate, the straight rod, and the double-arc plate cooperate with the baffle. The straight rod drives the double-arc plate to move to the right, and the double-arc plate drives the baffle to move to the right. The baffle blocks the soybeans from overflowing from the bean bin, preventing waste of soybean oil production caused by soybeans overflowing from the bean bin.

[0019] (5) In the present invention, through the setting of the anti-overflow device, the square plate and the L-shaped plate cooperate with the spring piece. The L-shaped plate drives the spring piece to move to the right, and the spring piece shovels out the soybeans in the chute of the bean bin, preventing the equipment from jamming due to soybeans stuck in the chute of the bean bin. Description of the Drawings

[0020] Figure 1 is a schematic diagram of the whole of the present invention; Figure 2 is a schematic diagram of the internal components of the present invention; Figure 3 is a cross-sectional schematic diagram at the bean bin of the present invention; Figure 4 is a schematic diagram of the bean turning device of the present invention; Figure 5 is of the present invention Figure 4 a partial enlarged schematic diagram at A in; Figure 6 is a schematic diagram of the anti-overflow device of the present invention; Figure 7 is of the present invention Figure 6 a partial enlarged schematic diagram at B in.

[0021] In the figure: 1. bean bin; 2. U-shaped frame; 3. machine cover; 4. triangular ring; 5. screw rod; 6. chassis; 7. servo motor; 8. inner groove block; 9. resistance measurer; 10. vertical column; 11. slide plate; 12. electrode bar; 13. display; 14. foot; 15. bin door; 16. bean turning device; 161. U-shaped slide plate; 162. vertical plate; 163. connecting plate; 164. arc plate; 165. return frame; 166. L-shaped rod; 167. chamfered frame; 17. anti-overflow device; 171. L-shaped column; 172. thin strip plate; 173. straight rod; 174. double arc plate; 175. baffle; 176. square plate; 177. L-shaped plate; 178. spring piece. Detailed implementation mode

[0022] 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.

[0023] Please refer to Figures 1 - 7, an embodiment of the present invention is: a multi-parameter real-time monitoring device for the edible oil preparation process, including a bean bin 1. On the top of the left and right sides of the bean bin 1, there is a U-shaped frame 2 fixed. On the top surface of the U-shaped frame 2, there is a chute opened. On the top surface of the U-shaped frame 2, there is a machine cover 3 fixed. On both sides of the top surface of the U-shaped frame 2, there is a triangular ring 4 fixed. Inside the inner wall of the triangular ring 4, there is a screw rod 5 rotatably installed. The screw rod 5 is located inside the machine cover 3. The machine cover 3 is used to prevent dust from entering the thread groove of the screw rod 5. On the left side of the U-shaped frame 2, there is a bottom frame 6 fixed. On the top surface of the bottom frame 6, there is a servo motor 7 fixedly installed. The right side of the rotating shaft of the servo motor 7 is fixedly connected to the left side of the screw rod 5. The rotating shaft of the servo motor 7 is used to drive the screw rod 5 to rotate. On the outer wall of the screw rod 5, there is an inner groove block 8 slidably installed. The inner wall of the inner groove block 8 meshes with the inner wall of the thread groove of the screw rod 5. The bottom of the outer wall of the inner groove block 8 is in sliding contact with the inner wall of the chute of the U-shaped frame 2. At the bottom of the inner groove block 8, there is a resistance measurer 9 fixed. In the middle of the bottom surface of the resistance measurer 9, there is a vertical column 10 fixed. At the bottom of the vertical column 10, there is a slide plate 11 fixed. On the top surface of the slide plate 11, there is an electrode rod 12 fixed. The electrode rod 12 is used to discharge electricity under the soybeans. On the front and back sides of the inner wall of the bean bin 1, there are chutes opened. The resistance measurer 9 is located above the bean bin 1. On both the left and right sides of the slide plate 11, there are chamfers opened. The bottom surface of the slide plate 11 is in sliding contact with the bottom end inside the bean bin 1. On the right side of the top surface of the machine cover 3, there is a display 13 fixedly installed. The display 13 is used to display the water content in different areas under the soybeans. On the four sides of the bottom of the bean bin 1, there are feet 14 fixed. On the front of the bean bin 1, there is a bean outlet opened. On the left side of the front of the bean bin 1, there is a bin door 15 hinged. When the rotating shaft of the servo motor 7 drives the screw rod 5 to rotate forward, the screw rod 5 rotates forward in the triangular ring 4. Under the restriction of the chute of the U-shaped frame 2, the inner groove block 8 moves to the right in the thread groove of the screw rod 5. The inner groove block 8 slides to the right in the chute of the U-shaped frame 2. The inner groove block 8 drives the resistance measurer 9 to move to the right. The resistance measurer 9 drives the vertical column 10 to move to the right. The vertical column 10 drives the slide plate 11 to move to the right. The slide plate 11 slides to the right in the bean bin 1. The slide plate 11 drives a plurality of electrode rods 12 to move to the right. The plurality of electrode rods 12 perform moving discharge under the soybeans, so that the plurality of electrode rods 12 measure the water content of the soybeans in multiple directions through the resistance value. The resistance measurer 9 transmits a plurality of detection data to the display 13 through a data line, enabling the operator to monitor the water content of the soybeans in multiple directions in real time, and avoiding inaccurate monitoring of the water content under the soybeans during the use of the multi-parameter real-time monitoring device, which may cause poor quality of soybean oil production; On the top of the outer wall of the vertical column 10, there is a bean turning device 16 arranged. The bean turning device 16 is used to turn the soybeans in the bean bin 1. On the front and back sides of the bean turning device 16, there is an anti-overflow device 17 arranged. The anti-overflow device 17 is used to prevent the soybeans from overflowing.

[0024] Since the water content of the soybeans at the bottom of the piled soybeans is uneven during the process of preparing edible oil, it is difficult for the equipment to monitor. When using this equipment, the feet 14 support the silo 1, and the operator pours the soybeans into the silo 1. The soybeans are naturally dried in the silo 1. When it is necessary to detect the water content of the soybeans, the operator starts the servo motor 7 on the chassis 6. The rotating shaft of the servo motor 7 starts to rotate forward. The rotating shaft of the servo motor 7 drives the screw 5 to rotate forward. The screw 5 rotates forward in the triangular ring 4. Under the restriction of the chute of the U-shaped frame 2, the inner groove block 8 moves to the right in the thread groove of the screw 5. At the same time, the U-shaped frame 2 supports the hood 3, and the hood 3 prevents dust from contacting the surface of the screw 5. The inner groove block 8 slides to the right in the chute of the U-shaped frame 2. The inner groove block 8 drives the resistance measurer 9 to move to the right. The resistance measurer 9 drives the vertical column 10 to move to the right. The vertical column 10 drives the slide plate 11 to move to the right. The slide plate 11 slides to the right in the silo 1. The slide plate 11 drives a plurality of electrode rods 12 to move to the right. The operator starts the resistance measurer 9, and the resistance measurer 9 transmits electricity to the plurality of electrode rods 12 through wires. The plurality of electrode rods 12 perform moving discharge on the lower part of the soybeans. When the water content of the soybeans increases, its conductivity will also increase correspondingly, and the resistance value on the electrode rod 12 decreases. On the contrary, an increase in the resistance value indicates a decrease in the water content of the soybeans, so that the plurality of electrode rods 12 measure the water content of the soybeans in multiple directions through the resistance value. The resistance measurer 9 transmits a plurality of detection data to the display 13 through the data line, allowing the operator to monitor the water content of the soybeans in multiple directions in real time, preventing inaccurate monitoring of the water content under the soybeans when the equipment is in use, thereby avoiding the problem of poor soybean oil production quality caused by inaccurate monitoring of the water content under the soybeans during the use of the multi-parameter real-time monitoring equipment. When the water content of the soybeans in the silo 1 reaches the standard, the operator rotates to open the door 15 to facilitate the discharge of the silo 1.

[0025] Please refer to Figures 1 - 7 , on the basis of the above embodiment, in another embodiment of the present invention, the bean turning device 16 includes a U-shaped slide plate 161. The U-shaped slide plate 161 is fixed to the top of the outer wall of the vertical column 10. Two through grooves are provided on the top surface of the U-shaped slide plate 161. The front and back surfaces of the U-shaped slide plate 161 are slidably connected to the inner wall of the chute of the silo 1. The U-shaped slide plate 161 is located below the resistance measurer 9. A plurality of vertical plates 162 are fixed to the bottom surface of the U-shaped slide plate 161. A connecting plate 163 is fixed to the bottom surface of the vertical plate 162. Arc-shaped plates 164 are fixed to both the left and right sides of the connecting plate 163. The vertical plate 162 drives the connecting plate 163 to move to the right. The connecting plate 163 drives the arc-shaped plates 164 to move to the right. During the process of moving to the right, the arc-shaped plates 164 turn the piled soybeans, so that the piled soybeans in the silo 1 will not form lumps, avoiding the problem of the decline in soybean quality caused by the lumping of the piled soybeans in the silo 1 during the use of the multi-parameter real-time monitoring equipment.

[0026] A rectangular frame 165 is fixed to the outer wall of the vertical plate 162. A number of L-shaped rods 166 are fixed to both the left and right sides of the rectangular frame 165. A chamfered frame 167 is fixed to the bottom surface of the L-shaped rod 166. The chamfered frame 167 is used to cut open the surface of the soybeans piled up together. The L-shaped rod 166 drives the chamfered frame 167 to move to the right. During the process of moving to the right, the chamfered frame 167 cuts open the surface of the soybeans in the silo 1, allowing the soybeans in the silo 1 to discharge the accumulated moisture, avoiding a poor drying effect of the soybeans due to a large amount of accumulated moisture in the soybeans during the use of the multi-parameter real-time monitoring device.

[0027] The anti-overflow device 17 includes an L-shaped column 171, which is fixed to the front and back of the rectangular frame 165 respectively. The L-shaped column 171 is located inside the through groove of the U-shaped slide plate 161. A thin plate 172 is fixed to the top surface of the L-shaped column 171. Straight rods 173 are fixed to both the left and right sides of the thin plate 172. Double arc plates 174 are fixed to the ends of the straight rods 173 away from each other. A baffle 175 is fixed to the side of the double arc plates 174 away from each other. The straight rod 173 drives the double arc plate 174 to move to the right, and the double arc plate 174 drives the baffle 175 to move to the right. During the process of moving to the right, the baffle 175 blocks the soybeans from overflowing from the silo 1, avoiding waste of soybean oil production caused by the overflow of soybeans from the silo 1 during the use of the multi-parameter real-time monitoring device.

[0028] Two square plates 176 are respectively fixed to the bottom of the front side of the baffle 175. An L-shaped plate 177 is fixed to the front surface of the square plate 176. A spring piece 178 is fixed to the bottom of the side of the L-shaped plate 177 away from each other. The spring piece 178 is used to sweep out the soybeans in the chute of the silo 1. The L-shaped plate 177 drives the spring piece 178 to move to the right. During the process of moving to the right, the spring piece 178 shovels out the soybeans in the chute of the silo 1, avoiding the equipment operation jamming caused by the soybeans getting stuck in the chute of the silo 1 during the use of the multi-parameter real-time monitoring device.

[0029] A method for using a multi-parameter real-time monitoring device in the process of preparing edible oil: includes the following steps: S1. The operator pours the soybeans into the silo 1, and the soybeans are naturally dried in the silo 1; S2. The slide plate 11 drives a plurality of electrode rods 12 to move to the right, and the plurality of electrode rods 12 perform moving discharge under the soybeans. The plurality of electrode rods 12 measure the water content of the soybeans in multiple directions through the resistance value; S3. The connecting plate 163 drives the arc plate 164 to move to the right, and the arc plate 164 flips the piled-up soybeans; S4. The L-shaped rod 166 drives the chamfered frame 167 to move to the right, and the chamfered frame 167 cuts open the surface of the soybeans in the silo 1; S5. The double arc plate 174 drives the baffle 175 to move to the right, and the baffle 175 blocks the soybeans from overflowing from the silo 1; S6. The L-shaped plate 177 drives the spring piece 178 to move rightward, and the spring piece 178 shovels out the soybeans in the chute of the bean bin 1.

[0030] While the resistance measurer 9 drives the vertical column 10 to move rightward, the vertical column 10 drives the U-shaped slide bar plate 161 to move rightward, the U-shaped slide bar plate 161 drives the vertical plate 162 to move rightward, the vertical plate 162 drives the connecting plate 163 to move rightward, the connecting plate 163 drives the arc-shaped plate 164 to move rightward. During the rightward movement of the arc-shaped plate 164, the arc-shaped plate 164 flips the piled-up soybeans, so that the piled-up soybeans in the bean bin 1 will not form lumps, preventing the soybeans piled up in the bean bin 1 from forming lumps when the device is in use, thereby avoiding the problem that the quality of the soybeans decreases due to the lumping of the soybeans piled up in the bean bin 1 during the use of the multi-parameter real-time monitoring device.

[0031] While the U-shaped slide bar plate 161 drives the vertical plate 162 to move rightward, the vertical plate 162 drives the loop-shaped frame 165 to move rightward, the loop-shaped frame 165 drives the L-shaped rod 166 to move rightward, the L-shaped rod 166 drives the chamfered frame 167 to move rightward. During the rightward movement of the chamfered frame 167, the chamfered frame 167 cuts open the surface of the soybeans in the bean bin 1, so that the soybeans in the bean bin 1 will discharge the accumulated moisture, preventing a large amount of moisture from accumulating in the soybeans when the device is in use, thereby avoiding the problem that the drying effect of the soybeans is poor due to the accumulation of a large amount of moisture in the soybeans during the use of the multi-parameter real-time monitoring device.

[0032] While the vertical plate 162 drives the loop-shaped frame 165 to move rightward, the loop-shaped frame 165 drives the L-shaped column 171 to move rightward, the L-shaped column 171 drives the thin strip plate 172 to move rightward, the thin strip plate 172 drives the straight rod 173 to move rightward, the straight rod 173 drives the double-arc plate 174 to move rightward, the double-arc plate 174 drives the baffle 175 to move rightward. During the rightward movement of the baffle 175, the baffle 175 blocks the soybeans from overflowing from the bean bin 1, preventing the soybeans from overflowing from the bean bin 1 when the device is in use, thereby avoiding the problem that the soybean oil production is wasted due to the overflow of the soybeans from the bean bin 1 during the use of the multi-parameter real-time monitoring device.

[0033] While the double-arc plate 174 drives the baffle 175 to move rightward, the baffle 175 drives the square plate 176 to move rightward, the square plate 176 drives the L-shaped plate 177 to move rightward, the L-shaped plate 177 drives the spring piece 178 to move rightward. During the rightward movement of the spring piece 178, the spring piece 178 shovels out the soybeans in the chute of the bean bin 1, preventing the soybeans from getting stuck in the chute of the bean bin 1 when the device is in use, thereby avoiding the problem that the device operation gets stuck due to the soybeans getting stuck in the chute of the bean bin 1 during the use of the multi-parameter real-time monitoring device.

[0034] The above are only the preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, making equivalent substitutions or changes should be covered by the protection scope of the present invention.

Claims

1. A multi-parameter real-time monitoring device for an edible oil preparation process, comprising a bean bin (1), wherein U-shaped frames (2) are fixed to the tops of the left and right sides of the bean bin (1), and the device is characterized in that: The top surface of the U-shaped frame (2) is provided with a slide groove, a hood (3) is fixed to the top surface of the U-shaped frame (2), triangular rings (4) are fixed on both sides of the top surface of the U-shaped frame (2), a screw (5) is rotatably mounted on the inner wall of the triangular ring (4), and the screw (5) is located inside the hood (3); The hood (3) is used to prevent dust from entering the thread groove of the screw (5); A base frame (6) is fixed on the left side of the U-shaped frame (2), a servo motor (7) is fixedly mounted on the top surface of the base frame (6), and the right side of the rotating shaft of the servo motor (7) is fixedly connected to the left side of the screw rod (5); The rotating shaft of the servo motor (7) is used to drive the screw (5) to rotate; An inner groove block (8) is slidably mounted on the outer wall of the screw rod (5), the inner wall of the inner groove block (8) meshes with the inner wall of the thread groove of the screw rod (5), the bottom of the outer wall of the inner groove block (8) is in sliding contact with the inner wall of the slide groove of the U-shaped frame (2), a resistance measuring device (9) is fixed to the bottom surface of the inner groove block (8), a vertical column (10) is fixed in the middle of the bottom surface of the resistance measuring device (9), a slide plate (11) is fixed to the bottom surface of the vertical column (10), and an electrode rod (12) is fixed to the top surface of the slide plate (11); The electrode rod (12) is used for discharging electricity below the soybeans.

2. The multi-parameter real-time monitoring device for edible oil preparation process according to claim 1, characterized in that: A display (13) is fixedly mounted on the right side of the top surface of the hood (3); The display (13) is used to display the moisture content of different areas below the soybeans; The bean bin (1) has base feet (14) fixed to the four sides of its bottom surface, a bean outlet is provided on the front of the bean bin (1), and a bin door (15) is hingedly connected to the left side of the front of the bean bin (1).

3. The multi-parameter real-time monitoring device for edible oil preparation process according to claim 2, characterized in that: The front and back sides of the inner wall of the bean bin (1) are provided with sliding grooves, the resistance measuring device (9) is located above the bean bin (1), the left and right sides of the slide plate (11) are provided with chamfers, and the bottom surface of the slide plate (11) is in sliding contact with the bottom end of the inside of the bean bin (1).

4. The multi-parameter real-time monitoring device for edible oil preparation process according to claim 3, characterized in that: A bean turning device (16) is provided on the top of the outer wall of the vertical column (10), and the bean turning device (16) is used to turn the soybeans in the bean bin (1); Anti-overflow devices (17) are provided on the front and back sides of the bean turning device (16), and the anti-overflow devices (17) are used to prevent soybeans from overflowing.

5. The multi-parameter real-time monitoring device for edible oil preparation process according to claim 4, characterized in that: The bean turning device (16) comprises a U-shaped sliding strip plate (161), the U-shaped sliding strip plate (161) being fixed to the top of the outer wall of the vertical column (10), the top surface of the U-shaped sliding strip plate (161) being provided with two through grooves, the front and back surfaces of the U-shaped sliding strip plate (161) being slidably connected to the inner wall of the sliding groove of the bean bin (1), the U-shaped sliding strip plate (161) being located below the resistance measuring device (9), a plurality of vertical plates (162) being fixed to the bottom surface of the U-shaped sliding strip plate (161), a connecting plate (163) being fixed to the bottom surface of the vertical plate (162), and arc-shaped plates (164) being fixed to the left and right sides of the connecting plate (163).

6. The multi-parameter real-time monitoring device for edible oil preparation process according to claim 5, characterized in that: A circular frame (165) is fixed to the outer wall of the vertical plate (162), a plurality of L-shaped rods (166) are fixed to the left and right sides of the circular frame (165), and a chamfered frame (167) is fixed to the bottom surface of the L-shaped rod (166); The chamfering frame (167) is used to cut open the surface of the soybeans piled together.

7. The multi-parameter real-time monitoring device for edible oil preparation process according to claim 6, characterized in that: The anti-overflow device (17) comprises an L-shaped column (171), wherein the L-shaped column (171) is respectively fixed to the front and back surfaces of the circular frame (165), and the L-shaped column (171) is located inside the through groove of the U-shaped sliding strip plate (161). A thin plate (172) is fixed to the top surface of the L-shaped column (171), and straight rods (173) are fixed to the left and right sides of the thin plate (172). A double arc plate (174) is fixed to one end of the straight rod (173) away from each other, and a baffle plate (175) is fixed to one side of the double arc plate (174) away from each other.

8. The multi-parameter real-time monitoring device for edible oil preparation process according to claim 7, characterized in that: Two square plates (176) are fixed to the bottom of the opposite side of the baffle (175), an L-shaped plate (177) is fixed to the front of the square plate (176), and a spring sheet (178) is fixed to the bottom of the side of the L-shaped plate (177) that is away from each other; The spring sheet (178) is used to sweep out the soybeans in the chute of the bean bin (1).

9. A method for using a multi-parameter real-time monitoring device for an edible oil preparation process, using the multi-parameter real-time monitoring device for an edible oil preparation process according to claim 8, characterized in that: The following steps are involved: S1. An operator pours soybeans into a bean bin (1), and the soybeans are naturally dried in the bean bin (1); S2, the slide plate (11) drives the plurality of electrode rods (12) to move rightward, the plurality of electrode rods (12) move and discharge the bottom of the soybeans, and the plurality of electrode rods (12) measure the moisture content of the soybeans in multiple directions through resistance values; S3, the connecting plate (163) drives the arc plate (164) to move rightward, and the arc plate (164) turns over the accumulated soybeans; S4, the L-shaped rod (166) drives the chamfering frame (167) to move rightward, and the chamfering frame (167) cuts the surface of the soybeans in the soybean bin (1); S5, the double arc plate (174) drives the baffle plate (175) to move rightward, and the baffle plate (175) prevents the soybeans from overflowing from the bean bin (1); S6. The L-shaped plate (177) drives the spring sheet (178) to move rightward, and the spring sheet (178) scoops out the soybeans in the chute of the bean bin (1).

Citation Information

Patent Citations

  • Edible oil quality monitoring system

    CN217931614U

  • Linear rolling guide rail

    CN217633469U

  • Intelligent moisture-proof humidity detection device for soybean storage

    CN220730163U

  • Fertilizer humidity detection device

    CN221899108U

  • Drying machine for uniformly drying soybean protein particles

    CN222528149U