Bird's nest mixing and canning equipment with automatic batching function

The weighing plate and side discharge port design solves the problem of inaccurate weight in the bird's nest batching device, achieves accurate canning of bird's nest ingredients, and improves production efficiency.

CN120664166AInactive Publication Date: 2025-09-19广东润康药业有限公司
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Patent Information

Application Number
CN202511184113.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-22
Publication Date
2025-09-19
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing bird's nest batching devices have problems such as seal wear and leakage, vibration interference causing reading drift, and fiber jamming in the screw gap, which causes the bird's nest ingredients to be overweight or underweight, affecting the canning accuracy.

Method used

The weighing plate design is adopted to realize measurement, underweight/overweight discharge and standard discharge functions by rotating the weighing plate. Combined with the side discharge port and opening and closing baffle, the accuracy of ingredient weight is ensured.

Benefits of technology

The accurate weight control of bird's nest ingredients is achieved to avoid overweight or underweight, and the canning accuracy and production efficiency are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses cubilose mixing and canning equipment with an automatic batching function, and relates to the technical field of cubilose mixing and canning, and the cubilose mixing and canning equipment comprises a conveying belt on which a container for accommodating cubilose is borne and conveyed; the two weighing plates are hinged to the batching cylinder in a split rotating manner; the weighing plate has a measurement function, a low-weight / overweight discharge function and a standard discharge function; re-weighing is carried out through the arranged weighing panel and the sensor to determine whether the weight of the ingredients discharged by the quantifying device is a standard value or not, whether the weight of the ingredients is overweight or not is judged to be unqualified, at the moment, the weighing plate rotates upwards, meanwhile, the side discharging opening is opened, the overweight / low-weight ingredients are discharged from the side discharging opening, and then the ingredients are discharged. When the weight detected by the weighing plates is the standard weight, the motor drives the transmission shaft to rotate, the limiting plate continues to descend, the weighing plates rotate downwards, the opening and closing baffle slowly retracts into the weighing plates, a discharging opening is formed between the two weighing plates / the opening and closing baffle, and ingredients fall down from the opening.
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Description

Technical Field

[0001] The invention relates to the technical field of bird's nest mixture canning, and in particular to bird's nest mixture canning equipment with an automatic batching function. Background Art

[0002] When canning bird's nest, solid ingredients such as bird's nest, white fungus, red dates, wolfberry, and rock sugar need to be placed. Nowadays, bird's nest ingredients are generally made with mechanical dosing devices. During the use of mechanical dosing, the dosing devices include piston pumps, weighing types, screw types, etc.:

[0003] The piston pump uses the plunger to suck and discharge constant volume. Disadvantages: seal wear causes leakage and viscous material is sucked back and remains 5%;

[0004] The weighing type is controlled by dynamic weighing feedback. Disadvantages: vibration interference causes reading drift, and dripping delay causes overdose.

[0005] The screw type measures volume by spiral propulsion. Its disadvantages are that the fibers are stuck in the screw gap and there will still be weight deviations, which will cause the bird's nest ingredients to be overweight or underweight when canning. In order to solve the above problems, a bird's nest mixing canning equipment was proposed. Summary of the Invention

[0006] The purpose of the present invention is to provide a bird's nest mixing canning equipment with an automatic batching function, which has the advantage that if the weight of the ingredients is overweight or underweight, the weight is judged as unqualified. At this time, the weighing plate rotates upward and the side discharge port is opened at the same time to discharge the overweight / underweight ingredients from the side discharge port. When the weight detected by the weighing plate is the standard weight, a discharge opening is formed between the two weighing plates / opening and closing baffles, and the ingredients fall from the opening.

[0007] To achieve the above-mentioned object, the present invention provides the following technical solution: a bird's nest mixing and canning device with automatic batching function, comprising:

[0008] a conveyor belt for carrying and conveying containers for containing bird's nests;

[0009] The frame is arranged above the conveyor belt;

[0010] There are multiple batching barrels assembled on the frame, and each batching barrel is used to store bird's nest ingredients of different components. The discharge channel inside the weighing plate is connected to the discharge port at its bottom, and side discharge ports are also provided on the symmetrical two sides of the batching barrel;

[0011] A weighing plate is provided, which is hinged on the batching barrel in a split-rotating manner;

[0012] The weighing plate has measurement function, underweight / overweight discharge function and standard discharge function;

[0013] Measuring function: When the weighing plate rotates to the horizontal position, it is used to weigh the weight of the ingredients;

[0014] Underweight / overweight discharge function: The weighing plate rotates upward to discharge underweight / overweight ingredients into the recovery pipe through the side discharge port;

[0015] Standard discharge function: When the weighing plate rotates downward, it is used to discharge the standard weight of ingredients into the container through the tapered port;

[0016] A side baffle, which slides up and down along the direction of the side discharge port to open or close the side discharge port;

[0017] An opening and closing baffle, which is arranged inside the weighing plate;

[0018] When the weighing plate realizes the measuring function, the side baffles always keep in contact with the weighing plate to seal the side discharge port above the weighing plate, and the opening and closing baffles on both sides always keep in contact to seal the discharge channel of the batching barrel;

[0019] When the weighing plate realizes the underweight / overweight discharge function, the side baffles are separated from the weighing plate and a discharge opening is formed between them. The opening and closing baffles on both sides always keep in contact to seal the discharge channel of the batching barrel;

[0020] When the opening and closing baffles realize the standard discharge function of the weighing plate, the side baffles always keep in contact with the weighing plate, which is used to seal the side discharge port above the weighing plate. The opening and closing baffles on both sides are disengaged and a discharge opening is formed between them.

[0021] As an optional embodiment, the shape of the container is one of round, oval, square and rectangular.

[0022] As an optional embodiment, the frame is further provided with a quantitative device corresponding one-to-one to the ingredient barrel, and the quantitative device discharges the bird's nest ingredients into the ingredient barrel.

[0023] As an optional embodiment, a weighing panel is provided on the top surface of the weighing plate, and the weighing panel is connected to the weighing plate via a sensor for measuring the weight of the ingredients.

[0024] As an optional embodiment, the hinged position between the weighing plate and the dispensing barrel is located at the bottom of the side discharge port, wherein the rotating shaft connected to the edge of the weighing plate rotates around the side discharge port.

[0025] As an optional embodiment, the side baffle includes an upper baffle, a lower baffle, a transmission shaft and a limit plate. The lower baffle can slide in the slide groove at the bottom of the upper baffle. The limit plate is used to separate the slide groove and divide the slide groove into an upper cavity and a lower cavity. The limit plate is also threadedly connected to the transmission shaft, and the bottom surface of the limit plate is connected to the lower baffle through a spring.

[0026] As an optional embodiment, a worm gear is sleeved on the rotating shaft connected to the weighing plate, the bottom of the transmission shaft passes through the lower baffle and a worm engaged with the worm gear is provided at the bottom thereof.

[0027] As an optional embodiment, an inclined plate is also fixed on the side discharge port between the lower baffle and the worm gear, wherein the inclined plate is penetrated by the transmission shaft, and a movable plate hinged along the edge of the inclined plate is inserted into a slot on a side of the weighing plate.

[0028] As an optional embodiment, the opening and closing baffle is inserted from the slot on the other side of the weighing plate, and a slot connected to the slot is also provided in the weighing plate, wherein the slot is connected to the upper cavity through a pipe, and a hydraulic device is installed in the slot, and the power is transmitted to the opening and closing baffle through the hydraulic device through the up and down movement of the limit plate.

[0029] As an optional embodiment, the hydraulic device includes sealing plate 1, sealing plate 2 and a guide rod. Sealing plate 1 and sealing plate 2 seal the groove side by side. The guide rod connected to the side of sealing plate 1 passes through sealing plate 2. The spring connected between sealing plate 1 and sealing plate 2 is sleeved on the guide rod. The rod body connected to sealing plate 2 is fixed to the opening and closing baffle.

[0030] Technical effects and advantages of the present invention:

[0031] The weighing panel and sensor are used for re-weighing to determine whether the weight of the ingredients discharged by the quantitative device is the standard value. If the weight of the ingredients is overweight or underweight, the weight is judged to be unqualified. At this time, the weighing plate rotates upward and opens the side discharge port at the same time to discharge the overweight / underweight ingredients from the side discharge port. In the process of the weighing plate rotating upward, the opening and closing baffle slowly extends and compensates for the gap caused by the rotation of the weighing plate, so that the ingredients cannot fall from the discharge channel and can only be discharged from the side discharge port and received by the recovery pipe.

[0032] When the weight detected by the weighing plate is the standard weight, the motor drives the transmission shaft to rotate, the limit plate continues to descend, the weighing plate rotates downward, and the opening and closing baffle slowly retracts into the weighing plate, forming a discharge opening between the two weighing plates / opening and closing baffles, and the ingredients fall from the opening. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] Figure 1 It is the overall axonometric drawing of the present invention;

[0034] Figure 2 This is a structural diagram of a single dispensing barrel of the present invention;

[0035] Figure 3 This is a diagram showing the internal structure of the dispensing barrel of the present invention;

[0036] Figure 4 This is a structural diagram of the weighing plate and opening and closing baffle in the dispensing barrel of the present invention;

[0037] Figure 5 is a cross-sectional view of a side baffle of the present invention;

[0038] Figure 6 This is a connection diagram of the side baffle and weighing plate of the second embodiment of the present invention;

[0039] Figure 7 The inclined plate and the movable plate of the present invention block the worm gear structure diagram;

[0040] Figure 8 This is a connection diagram between the limit plate and the hydraulic device of the present invention;

[0041] Figure 9 For the present invention Figure 8 A magnified view of point A;

[0042] Figure 10 For the present invention Figure 8 Enlarged view of point B;

[0043] Figure 11 A structural diagram of type 1 of the connection between the weighing plate and the opening and closing baffle of the present invention;

[0044] Figure 12 This is a structural diagram of type 2 of the connection between the weighing plate and the opening and closing baffle of the present invention;

[0045] Figure 13 It is the underweight / overweight state diagram of the present invention;

[0046] Figure 14 It is the standard emission state diagram of the present invention;

[0047] Figure 15 This is a type II axonometric view of the connection between the weighing plate and the opening and closing baffle of the present invention.

[0048] In the picture:

[0049] 1. Conveyor belt;

[0050] 2. Frame;

[0051] 3. Batching barrel; 31. Side discharge port;

[0052] 4. Weighing plate;

[0053] 5. Side baffle; 51. Upper baffle; 52. Lower baffle; 53. Drive shaft; 54. Limit plate;

[0054] 6. Open and close baffle;

[0055] 7. Hydraulic device; 71. Sealing plate 1; 72. Sealing plate 2; 73. Guide rod. DETAILED DESCRIPTION

[0056] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0057] Example 1: See Figure 1-Figure 4 A bird's nest mixing and canning device with automatic batching function includes a conveyor belt 1, which carries and transports containers for containing bird's nests. A motor driving the conveyor belt 1 transports the containers to a designated position below a batching barrel 3 and then stops. The ingredients in the batching barrel 3 fall into the container.

[0058] The frame 2 is arranged above the conveyor belt 1, spanning the conveyor belt 1, and is made of steel structure;

[0059] The batching barrel 3 is provided with multiple pieces and assembled on the frame 2. Each batching barrel 3 is used to store bird's nest ingredients of different components. The discharge channel inside the weighing plate 4 is connected to the discharge port at its bottom. Side discharge ports 31 are also provided on the symmetrical two sides of the batching barrel 3.

[0060] The number of ingredient barrels 3 is set according to demand, and the types of ingredients are adjusted according to different bird's nest recipes. Each ingredient barrel 3 stores corresponding ingredients, such as bird's nest, white fungus, red dates, wolfberry, rock sugar, etc. The conveyor belt 1 passes the container under the ingredient barrel 3 in turn, and discharges the ingredients (bird's nest, white fungus, red dates, wolfberry, rock sugar) into the container in turn, greatly improving production efficiency through assembly line canning.

[0061] The weighing plate 4 is provided with two pieces hinged on the batching barrel 3 in a split rotating manner. The weighing plate 4 has the functions of measurement, underweight / overweight discharge and standard discharge;

[0062] The hinged position between the weighing plate 4 and the dispensing barrel 3 is located at the bottom of the side discharge port 31 , wherein the rotating shaft connected to the edge of the weighing plate 4 rotates around the side discharge port 31 .

[0063] Measuring function: When the weighing plate 4 rotates to the horizontal position, it is used to weigh the weight of the ingredients;

[0064] Underweight / overweight discharge function: The weighing plate 4 rotates upward to discharge underweight / overweight ingredients through the side discharge port 31 into the recovery pipe. The recovery pipe receives the recovery system and the ingredients that do not meet the weight standard are recycled;

[0065] Standard discharge function: When the weighing plate 4 rotates downward, it is used to discharge the standard weight of ingredients into the container through the tapered port;

[0066] A side baffle 5 that slides up and down along the side discharge opening 31 to open or close the side discharge opening 31;

[0067] The side baffle 5 is driven by a cylinder, which controls the up and down movement of the side baffle 5. When the weighing plate 4 realizes the underweight / overweight discharge function, the side baffle 5 moves upward to open the side discharge port 31. When the standard discharge function is realized, the side baffle 5 slowly descends to keep the side baffle 5 and the weighing plate 4 in contact at all times, avoiding the ingredients from being discharged from the side discharge port 31, and can only be discharged from the discharge opening between the weighing plates 4.

[0068] The opening and closing baffle 6 is arranged inside the weighing plate 4. The opening and closing baffle 6 is also controlled by the cylinder. The cylinder pushes the opening and closing baffle 6 to move. The weighing plate 4 is connected to the motor for driving the rotation;

[0069] When the weighing plate 4 realizes the measuring function, the side baffles 5 always keep in contact with the weighing plate 4 to seal the side discharge port 31 above the weighing plate 4, and the opening and closing baffles 6 on both sides always keep in contact to seal the discharge channel of the batching barrel 3;

[0070] When the weighing plate 4 realizes the underweight / overweight discharge function, the side baffle 5 is separated from the weighing plate 4 and a discharge opening is formed between them. The opening and closing baffles 6 on both sides always keep in contact to seal the discharge channel of the batching barrel 3;

[0071] When the opening and closing baffles 6 realize the standard discharge function of the weighing plate 4, the side baffles 5 always keep in contact with the weighing plate 4, and are used to seal the side discharge port 31 above the weighing plate 4. The opening and closing baffles 6 on both sides are disengaged and a discharge opening is formed between them.

[0072] The shape of the container is one of round, oval, square and rectangular.

[0073] The frame 2 is also provided with a quantitative device corresponding to the batching barrel 3, and the quantitative device discharges the bird's nest ingredients into the batching barrel 3;

[0074] When the weighing plate 4 is in a horizontal state, the opening and closing baffle 6 is cooperated to seal the discharge channel of the batching barrel 3, and the ingredients are discharged onto the weighing plate 4 through the quantitative device.

[0075] The top surface of the weighing plate 4 is provided with a weighing panel, and the weighing panel is connected to the weighing plate 4 via a sensor for measuring the weight of the ingredients.

[0076] The weighing panel and sensor are used for re-weighing to determine whether the weight of the ingredients discharged by the quantitative device is the standard value. If the weight of the ingredients is overweight or underweight, the weight is judged to be unqualified. At this time, the weighing plate 4 rotates upward to open the side discharge port 31, and the overweight / underweight ingredients are discharged from the side discharge port 31 and received by the recovery pipe.

[0077] Example 2: See Figure 5-Figure 6 The side baffle 5 of this embodiment is different from that of the first embodiment. The side baffle 5 of this embodiment includes an upper baffle 51, a lower baffle 52, a transmission shaft 53 and a limit plate 54. The lower baffle 52 can slide in the slide groove at the bottom of the upper baffle 51. The limit plate 54 is used to separate the slide groove and divide the slide groove into an upper cavity and a lower cavity. The limit plate 54 is also threadedly connected to the transmission shaft 53, and the bottom surface of the limit plate 54 is connected to the lower baffle 52 through a spring.

[0078] See Figure 7 A worm gear is sleeved on the rotating shaft connected to the weighing plate 4, and the bottom of the transmission shaft 53 passes through the lower baffle 52 and a worm engaged with the worm gear is provided at its bottom.

[0079] The worm gear and worm structure are set to change the speed difference. The transmission shaft 53 rotates a large number of circles, while the worm gear rotates a small angle. Through the above structure, the lifting distance of the limit plate 54 is increased, while the worm gear rotates at a small angle.

[0080] See Figure 7 A ramp is also fixed on the side discharge port 31 between the lower baffle 52 and the worm gear, wherein the ramp is penetrated by the transmission shaft 53, and the movable plate hinged along the edge of the ramp is inserted into a slot on one side of the weighing plate 4.

[0081] The inclined plate structure is set up to block the worm gear and worm structure. When the weighing plate 4 rotates, it will also drive the angle of the movable plate to change, making it tilted. During measurement, the weighing plate 4 is in a horizontal position. When the lower baffle 52 descends and contacts the weighing plate 4, the lower baffle 52 blocks the slot. At this time, the slot is located outside the ingredient barrel 3. During weighing, the ingredients will only fall onto the weighing panel for weighing.

[0082] The ingredients will fall on the movable plate and the inclined plate during the falling process, and then fall into the recovery pipe, ensuring that the ingredients will not accumulate on the worm wheel and worm, causing wear of the worm wheel and worm during use.

[0083] The transmission shaft 53 is driven to rotate by the motor. During the rotation of the transmission shaft 53 , power is also transmitted to the worm. When the transmission shaft 53 rotates, the limit plate 54 is driven to move upward or downward along the slide groove.

[0084] See Figure 8 and Figure 9 , wherein, an insertion rod is also fixed to the bottom surface of the limit plate 54, wherein the bottom end of the insertion rod is inserted into the slot of the lower baffle 52, and a mushroom head is fixed on the end of the insertion rod. Through this structure, when the insertion rod rises to a certain extent, the lower baffle 52 can be driven to rise;

[0085] The lower baffle 52 can slide along the chute of the upper baffle 51. The side discharge port 31 is opened by the movement of the lower baffle 52 when the material is overweight or underweight. When the material is discharged at the standard weight, the lower baffle 52 maintains close contact with the weighing panel.

[0086] The opening and closing baffle 6 is inserted from the slot on the other side of the weighing plate 4. A slot connected to the slot is also provided in the weighing plate 4, wherein the slot is connected to the upper cavity through a pipe. A hydraulic device 7 is installed in the slot, and the power is transmitted to the opening and closing baffle 6 through the hydraulic device 7 by the up and down movement of the limit plate 54.

[0087] See Figure 8 and Figure 10 The hydraulic device 7 includes a sealing plate 1 71, a sealing plate 2 72 and a guide rod 73. The sealing plate 1 71 and the sealing plate 2 72 seal the groove side by side. The guide rod 73 connected to the side of the sealing plate 1 71 passes through the sealing plate 2 72. The spring connected between the sealing plate 1 71 and the sealing plate 2 72 is sleeved on the guide rod 73. The rod body connected to the sealing plate 2 72 is fixed to the opening and closing baffle 6.

[0088] The volume of the upper chamber is changed by moving the limiting plate 54, so that the liquid in the upper chamber is input into the channel or drawn out from the channel to change the position of the sealing plate 71. The weighing plate 4 can be of two types:

[0089] Type 1: Such as Figure 11 As shown, the edges of the two weighing plates 4 rotate around the dispensing barrel 3, and when the weighing plates 4 are in a horizontal state, the edges of the two weighing plates 4 touch each other. At this time, the two weighing plates 4 close the discharge channel, and the opening and closing baffles 6 are located inside the weighing plates 4, and the two opening and closing baffles 6 also keep in contact.

[0090] For this type of weighing plate 4, when discharging underweight or overweight, the two weighing plates 4 rotate upward synchronously, and the opening and closing baffles 6 slowly extend from the weighing plates 4. During the extension process, the two opening and closing baffles 6 always maintain contact. At this time, the opening and closing baffles 6 serve as a structural setting to compensate for the gap between the two weighing plates 4 when they rotate upward;

[0091] Scenario 1:

[0092] like Figure 3 As shown, when the weighing plates 4 realize the measurement function, the weighing plates 4 are in a horizontal state, and the edges of the two weighing plates 4 are in contact to close the discharge channel. The side baffles 5 on both sides are always in contact with the weighing plates 4 to seal the side discharge port 31 above the weighing plates 4.

[0093] When the weight detected by the weighing plate 4 is underweight / overweight, the motor drives the transmission shaft 53 to rotate, and the rotation of the transmission shaft 53 drives the limit plate 54 to move upward. The upward movement of the limit plate 54 simultaneously drives the insertion rod to move, and the connected spring slowly stretches until the mushroom head is stuck in the narrow part of the groove, driving the lower baffle 52 to move upward synchronously, thereby slowly opening the side discharge port 31;

[0094] like Figure 13 As shown, the worm and the worm gear are also driven to rotate. The rotation of the worm gear drives the weighing plate 4 to slowly rotate upward. During the upward movement of the limit plate 54, the liquid in the upper chamber is pushed into the groove to generate a force to push the sealing plate 1 71 to move. During the upward rotation of the weighing plate 4, the two opening and closing baffles 6 are slowly pushed out of the weighing plate 4 by the sealing plate 1 71 and the sealing plate 2 72. The spring is used to keep the opening and closing baffles 6 always in contact during the rotation.

[0095] As the rotation amplitude of the weighing plate 4 increases, the opening amplitude of the side discharge port 31 also increases, and the ingredients on the weighing plate 4 are discharged toward the side discharge port 31 under the action of gravity and fall into the recovery pipe for recycling;

[0096] After the discharge is completed, the reset is realized, the transmission shaft 53 rotates in the opposite direction, and the limit plate 54 is driven to move downward, so that the weighing plate 4 rotates in the opposite direction to the horizontal position, and the opening and closing baffle 6 is slowly retracted into the weighing plate 4, and the end faces of the opening and closing baffles 6 on both sides are in contact, the lower baffle 52 moves downward and slowly closes the side discharge port 31, and the weighing plate 4 is adjusted to Figure 3 Location.

[0097] Scenario 2:

[0098] like Figure 14 As shown, when the weight detected by the weighing plate 4 is the standard weight, the motor drives the transmission shaft 53 to rotate, and the limit plate 54 continues to descend, then the weighing plate 4 rotates downward, and the opening and closing baffle 6 continues to retract into the weighing plate 4, forming a discharge opening between the two weighing plates 4, and the ingredients fall from the opening under the action of gravity and enter the container, and with the elastic force of the spring connected to the limit plate 54, the lower baffle 52 moves downward and keeps in contact with the weighing plate 4, avoiding the ingredients from being discharged from the side discharge port 31 during the discharge process.

[0099] After the discharge is completed, the reset is realized, the limit plate 54 is driven to move upward, the weighing plate 4 is rotated to the horizontal position, the opening and closing baffle 6 extends from the weighing plate 4, and the end faces of the opening and closing baffles 6 on both sides contact, and the weighing plate 4 is adjusted to Figure 3 Location.

[0100] Type 2: Figure 12As shown, when the two weighing plates 4 are in a horizontal position, there is a gap between the two weighing plates 4, and one end of the opening and closing baffles 6 on both sides extends out of the weighing plates 4, and the end surfaces of the opening and closing baffles 6 on both sides are in contact.

[0101] Scenario 3:

[0102] like Figure 15 As shown, when the weighing plate 4 realizes the measurement function, the weighing plate 4 is in a horizontal state, the edges of the opening and closing baffles 6 on both sides contact to close the discharge channel, and the side baffles 5 on both sides always maintain contact with the weighing plate 4 to seal the side discharge port 31 above the weighing plate 4;

[0103] like Figure 13 As shown, when the weight detected by the weighing plate 4 is underweight / overweight, the limit plate 54 moves upward and drives the lower baffle 52 to move upward, thereby slowly opening the side discharge port 31. During the upward rotation of the weighing plate 4, the two opening and closing baffles 6 are slowly pushed out of the weighing plate 4 by the sealing plate 1 71 and the sealing plate 2 72, and the springs are used to keep the opening and closing baffles 6 always in contact during the rotation process.

[0104] As the rotation amplitude of the weighing plate 4 increases, the opening amplitude of the side discharge port 31 also increases, and the ingredients on the weighing plate 4 are discharged toward the side discharge port 31 under the action of gravity and fall into the recovery pipe for recycling;

[0105] After the discharge is completed, the weighing plate 4 is reset and rotated in the opposite direction to the horizontal position. The end faces of the opening and closing baffles 6 on both sides are in contact, and the lower baffle 52 moves downward to slowly close the side discharge port 31 .

[0106] Scenario 4:

[0107] like Figure 14 As shown, when the weight detected by the weighing plate 4 is the standard weight, the motor drives the transmission shaft 53 to rotate, and the limit plate 54 continues to descend, then the weighing plate 4 rotates downward, and the opening and closing baffle 6 slowly retracts into the weighing plate 4, and a material discharge opening is formed between the two opening and closing baffles 6, and the ingredients fall from the opening. With the elastic force of the spring of the limit plate 54, the lower baffle 52 moves downward and keeps in contact with the weighing plate 4, avoiding the ingredients from being discharged from the side discharge port 31 during the material discharge process.

[0108] As shown in the figure, after the discharge is completed, the reset is achieved, the limit plate 54 is driven to move upward, the weighing plate 4 is rotated to a horizontal position, and the opening and closing baffle 6 is slowly extended from the weighing plate 4. When it rotates to a horizontal position or does not reach a horizontal position, the end faces of the opening and closing baffles 6 on both sides are in contact.

[0109] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A bird's nest mixing canning equipment with automatic batching function, characterized in that: include: a conveyor belt for carrying and conveying containers for containing bird's nests; The frame is arranged above the conveyor belt; There are multiple batching barrels assembled on the frame, and each batching barrel is used to store bird's nest ingredients of different components. The discharge channel inside the weighing plate is connected to the discharge port at its bottom, and side discharge ports are also provided on the symmetrical two sides of the batching barrel; A weighing plate is provided, which is hinged on the batching barrel in a split-rotating manner; The weighing plate has measurement function, underweight / overweight discharge function and standard discharge function; Measuring function: When the weighing plate rotates to the horizontal position, it is used to weigh the weight of the ingredients; Underweight / overweight discharge function: The weighing plate rotates upward to discharge underweight / overweight ingredients into the recovery pipe through the side discharge port; Standard discharge function: When the weighing plate rotates downward, it is used to discharge the standard weight of ingredients into the container through the tapered port; A side baffle, which slides up and down along the direction of the side discharge port to open or close the side discharge port; An opening and closing baffle, which is arranged inside the weighing plate; When the weighing plate realizes the measuring function, the side baffles always keep in contact with the weighing plate to seal the side discharge port above the weighing plate, and the opening and closing baffles on both sides always keep in contact to seal the discharge channel of the batching barrel; When the weighing plate realizes the underweight / overweight discharge function, the side baffles are separated from the weighing plate and a discharge opening is formed between them. The opening and closing baffles on both sides always keep in contact to seal the discharge channel of the batching barrel; When the opening and closing baffles realize the standard discharge function of the weighing plate, the side baffles always keep in contact with the weighing plate, which is used to seal the side discharge port above the weighing plate. The opening and closing baffles on both sides are disengaged and a discharge opening is formed between them.

2. The bird's nest mixing canning equipment with automatic batching function according to claim 1 is characterized in that: The shape of the container is one of round, oval, square and rectangular.

3. The bird's nest mixing and canning equipment with automatic batching function according to claim 1, characterized in that: The frame is also provided with a quantitative device corresponding to the ingredient barrel one by one, and the quantitative device discharges the bird's nest ingredients into the ingredient barrel.

4. The bird's nest mixing canning equipment with automatic batching function according to claim 1, characterized in that: The top surface of the weighing plate is provided with a weighing panel, and the weighing panel is connected to the weighing plate through a sensor for measuring the weight of the ingredients.

5. The bird's nest mixing and canning equipment with automatic batching function according to claim 1, characterized in that: The hinged position between the weighing plate and the dispensing barrel is located at the bottom of the side discharge port, wherein the rotating shaft connected to the edge of the weighing plate rotates around the side discharge port.

6. The bird's nest mixing canning equipment with automatic batching function according to claim 5, characterized in that: The side baffle includes an upper baffle, a lower baffle, a transmission shaft and a limit plate. The lower baffle can slide in the slide groove at the bottom of the upper baffle. The limit plate is used to separate the slide groove and divide the slide groove into an upper cavity and a lower cavity. The limit plate is also threadedly connected to the transmission shaft, and the bottom surface of the limit plate is connected to the lower baffle through a spring.

7. The bird's nest mixing and canning equipment with automatic batching function according to claim 6, characterized in that: A worm gear is sleeved on the rotating shaft connected to the weighing plate, and the bottom of the transmission shaft passes through the lower baffle and a worm engaged with the worm gear is arranged at the bottom of the transmission shaft.

8. The bird's nest mixing and canning equipment with automatic batching function according to claim 6, characterized in that: An inclined plate is also fixed on the side discharge port between the lower baffle and the worm gear, wherein the inclined plate is penetrated by the transmission shaft, and a movable plate hinged on the edge of the inclined plate is inserted into a slot on one side of the weighing plate.

9. The bird's nest mixing and canning equipment with automatic batching function according to claim 1, characterized in that: The opening and closing baffle is inserted from the slot on the other side of the weighing plate. A slot connected to the slot is also provided in the weighing plate, wherein the slot is connected to the upper cavity through a pipe. A hydraulic device is installed in the slot, and power is transmitted to the opening and closing baffle through the hydraulic device through the up and down movement of the limit plate.

10. The bird's nest mixing and canning equipment with automatic batching function according to claim 9, characterized in that: The hydraulic device includes sealing plate 1, sealing plate 2 and a guide rod. Sealing plate 1 and sealing plate 2 seal the groove side by side. The guide rod connected to the side of sealing plate 1 passes through sealing plate 2. The spring connected between sealing plate 1 and sealing plate 2 is sleeved on the guide rod. The rod body connected to sealing plate 2 is fixed to the opening and closing baffle.

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