A material distribution and conveying device for manufacturing industrial packaging products with biodegradable materials

The biodegradable material production system addresses the issue of inconsistent product sizes by using a controlled distribution mechanism, ensuring equal weights and sizes, thereby improving yield and automation.

CN114634010BActive Publication Date: 2025-07-15TRIFOLIUM NEW BIODEGRADABLE MATERIAL TECH (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202210264429.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2021-06-04
Filing Date
2022-03-17
Publication Date
2025-07-15
Estimated Expiration
2042-03-17

AI Technical Summary

Technical Problem

The existing biodegradable product production equipment is difficult to ensure the equal weight of the raw materials when distributing materials, resulting in inconsistent product size, low yield rate, and affecting the normal operation of automation equipment.

Method used

A material distribution conveying device including a mixer, a material distribution mechanism, a conveying mechanism and a raw material carrier is designed. Components such as equal weight material distribution machine, a cutting knife, a mass testing part and a length testing part are used to realize precise material distribution and transmission through the control module to ensure that the raw material is cut and conveyed according to the preset weight and length.

Benefits of technology

The material is divided into equal weights of raw materials, which improves product yield, reduces manual intervention, improves the degree of automation and production efficiency of equipment, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

A material distribution and conveying device for manufacturing industrial packaging products from biodegradable materials, comprising a mixer, a material distribution mechanism, a conveying mechanism and a raw material carrier; the mixer, the material distribution mechanism, the conveying mechanism and the raw material carrier are arranged in sequence; the material distribution mechanism includes an equal-weight material distributor, and the equal-weight material distributor is arranged at the feeding position in the conveying direction of the conveying mechanism, and the raw material carrier is arranged at the discharging position of the conveying mechanism. The mixer, the material distribution mechanism, the conveying mechanism and the raw material carrier are arranged in sequence, so that when the product is produced, processes such as stirring, distributing and loading the raw materials are completed in one transmission process, saving a large amount of conveying time. The equal-weight material distributor can distribute materials according to a preset weight, so that the discharged materials of the equal-weight material distributor can keep each raw material with equal weight, making the weight of the final product the same, avoiding differences in the quality of the product, ensuring the yield of the product from the size of the raw materials, greatly reducing the waste of raw materials, improving the labor productivity and reducing the comprehensive cost of the product.
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Description

Technical Field

[0001] The present invention relates to the field of production equipment for fully biodegradable products, and particularly to a material distribution and conveying device for manufacturing industrial packaging products from biodegradable materials. Background Art

[0002] With the rapid development of plastic industry technology, a large amount of plastic waste has been abandoned in the social environment. However, the effect of treating "white pollution" from the consumer end is very limited. To fundamentally solve the environmental pollution problem of waste plastics, it is more in line with the current environmental protection requirements to replace the existing plastic products with fully biodegradable products that can be degraded and are easily degradable.

[0003] However, when the existing degradation product manufacturing equipment is making products, the raw material distribution fails to meet the requirement of equal weight, the product volume is prone to be inconsistent, and the product yield is low. This not only seriously wastes raw materials and greatly increases production costs, but also affects the normal operation of the next production line of automated equipment. Summary of the Invention

[0004] The research and development of biomass fully degradable packaging materials is relatively scarce globally. The production equipment is basically in the semi-automated laboratory stage and has not yet formed an independent whole industrial production line. The equal-weight material distribution equipment is even blank. To overcome the technical problems that when the existing degradation product manufacturing equipment is making products, the raw material distribution fails to meet the requirement of equal weight, the product volume is prone to be inconsistent, and the product yield is low, the present invention provides a material distribution and conveying device for manufacturing industrial packaging products from biodegradable materials.

[0005] The present invention provides a material distribution and conveying device for manufacturing industrial packaging products from biodegradable materials, including a mixer, a material distribution mechanism, a conveying mechanism, and a raw material carrier;

[0006] The mixer, the material distribution mechanism, the conveying mechanism, and the raw material carrier are arranged in sequence;

[0007] The material distribution mechanism includes an equal-weight material distributor, which is arranged at the feeding position in the conveying direction of the conveying mechanism, and the raw material carrier is arranged at the discharging position of the conveying mechanism.

[0008] Preferably, a conveyor belt and a cutter are arranged on the equal-weight material distributor, and the cutter is arranged at the beginning of the conveyor belt in the conveying direction.

[0009] Preferably, at least two slots are arranged on the conveyor belt, the slots are arranged at equal distances, and the slots are used for carrying raw materials.

[0010] Preferably, the equal-weight material distributor includes a first control module, and the first control module is electrically connected to the conveyor belt;

[0011] The first control module is a PLC control system.

[0012] Preferably, the equal-weight feeder includes a mass detection component and a length detection component, and the mass detection component and the length detection component are electrically connected to the first control module;

[0013] The length detection component is arranged at the discharge port of the equal-weight feeder, and the mass detection component is arranged at the feeding port of the conveyor belt.

[0014] Preferably, the cutting knife is driven by a cylinder or a motor.

[0015] Preferably, the intelligent feeding device for manufacturing industrial packaging products from biomass new materials further includes a clamping component, which is arranged at the discharge position of the conveying mechanism, and the clamping component is used to clamp the raw materials into the raw material carrier.

[0016] Preferably, the clamping component rotates to clamp the raw materials, and the rotation amplitude is 0-90°;

[0017] The clamping component is a four-axis robot.

[0018] Preferably, the raw material carrier is provided with grooves distributed in an array, and the grooves are used to carry the raw materials.

[0019] Preferably, the conveying speeds of the conveying mechanism and the conveyor belt are the same.

[0020] Compared with the prior art, the feeding and conveying device for manufacturing industrial packaging products from biodegradable materials provided by the present invention has the following advantages:

[0021] 1. The mixer, the feeding mechanism, the conveying mechanism, and the raw material carrier are arranged in sequence, so that during the production of the product, the processes of mixing, feeding, and loading the raw materials are completed in one transmission process, saving a large amount of conveying time for manual operation. The equal-weight feeder can feed according to a preset weight, so that the discharged materials of the equal-weight feeder can maintain equal weight for each raw material, ensuring that the final products have the same weight and avoiding differences in product quality, and ensuring the yield rate of the products from the size of the raw materials; the weight feeder is arranged at the feeding position in the conveying direction of the conveying mechanism, and the raw material carrier is arranged at the discharge position of the conveying mechanism, making the weight feeder, the conveying mechanism, and the raw material carrier more compactly arranged, reducing the conveying time and at the same time reducing the equipment space occupancy rate.

[0022] 2. The cutting knife is used to cut the raw materials so that the raw materials are cut according to a preset weight. The raw materials can enter the subsequent processes in block form for production and processing. The first control module can control the cutting knife to drop and cut the raw materials. The first control module can adjust the falling time of the cutting knife and the time interval between two drops of the cutting knife. By controlling the time interval between two drops of the cutting knife, the cutting interval can be controlled to be equal, so that the raw materials produced by the material distribution process are of equal weight, improving the accuracy of the equal-weight material distributor, avoiding errors in the product caused by unequal weights of the raw materials produced by material distribution, and improving the yield rate of the product.

[0023] 3. Slots are provided on the conveyor belt. The slots carry the raw materials cut by the equal-weight material distributor. The slots are equidistantly arranged on the conveyor belt. Since there is a certain time for the equal-weight material distributor to cut the raw materials, the distance between the slots can correspond to this period of time, so that the raw materials can smoothly fall onto the slots on the conveyor belt. When the conveyor belt is transporting the raw materials, the equal-weight material distributor can accurately drop the materials onto the slots, avoiding multiple raw materials from falling onto the same slot repeatedly, preventing the failure of the subsequent clamping operation due to unequal spacing, and improving the production efficiency of the equipment and the automation of the equipment.

[0024] 4. The first control module can control the conveying speed of the conveyor belt. The user can adjust its conveying speed to match the falling speed of the equal-weight material distributor, so that the raw materials can be accurately dropped onto the slots. After adjusting the weight of the raw materials, adjusting the speed of the conveyor belt through the first control module can make the equipment more user-friendly and improve the adaptability of the equipment.

[0025] 5. The length detection component can judge the volume of the discharged materials to ensure that the discharged materials are of equal length. The quality detection component is arranged at the feeding port of the conveyor belt. By the size of the gravitational force exerted on the conveyor belt when the raw materials fall on the feeding port, it can be known whether the raw materials cut by the equal-weight material distributor meet the requirements, reducing the manual verification of the weight of the raw materials and improving the automation of the equipment.

[0026] 6. The conveying mechanism has the same conveying speed as the conveyor belt, which can ensure that the speed of conveying the raw materials by the conveying mechanism is the same as that of the conveyor belt, and the spacing between the raw materials is also consistent. At the same time, the conveying mechanism can ensure that there is enough time for the clamping component to clamp the raw materials, avoiding the raw materials from falling or piling up from the conveying mechanism, ensuring that the equipment completes the production process in one transmission, and improving the automation degree of the equipment.

[0027] 7. The clamping component places the raw materials on the conveyor belt onto the raw material carrier one by one, transferring the raw materials from the equal-weight material distributor to the subsequent processes, reducing the degree of manual participation in production, increasing the degree of production automation, reducing the volume size error between products, and improving the product yield rate.

[0028] 8. Grooves distributed in an array, that is, the grooves are set at a fixed distance, which is conducive to placing raw materials by the clamping part. Set the distance between the grooves and the travel of the clamping part in the program, and import the preset program into the clamping part, so that the clamping part can place the raw materials to adapt to the groove distribution of the raw material carrier. The clamping part places the raw materials more precisely on the grooves. The grooves distributed in an array can reduce the steps for the clamping part to identify the groove position and improve the production speed.

[0029] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the principle of the present invention should be included within the protection scope of the present invention. Brief Description of the Drawings

[0030] Figure 1 is a structural framework diagram of a material distribution and conveying device for manufacturing industrial packaging products from biodegradable materials provided by the first embodiment of the present invention;

[0031] Figure 2 is a structural diagram of a material distribution and conveying device for manufacturing industrial packaging products from biodegradable materials provided by the first embodiment of the present invention;

[0032] Figure 3 is a top view of a partial structure of a material distribution and conveying device for manufacturing industrial packaging products from biodegradable materials provided by the first embodiment of the present invention;

[0033] Figure 4 is a schematic diagram of a partial structure of a material distribution and conveying device for manufacturing industrial packaging products from biodegradable materials provided by the first embodiment of the present invention. Detailed Description of the Embodiment

[0034] In order to make the purpose, technical solutions, and advantages of the present invention clearer, the following further details the present invention with reference to the accompanying drawings and implementation examples. It should be understood that the specific implementation examples described herein are only used to explain the present invention and are not used to limit the present invention.

[0035] Please refer to Figures 1-4 , the first embodiment of the present invention provides a material distribution and conveying device 100 for manufacturing industrial packaging products from biodegradable materials, including a mixer 1, a material distribution mechanism 2, a conveying mechanism 3, and a raw material carrier 4; the mixer 1, the material distribution mechanism 2, the conveying mechanism 3, and the raw material carrier 4 are arranged in sequence; the material distribution mechanism 2 includes an equal-weight material distributor 21, and the weight distributor is arranged at the feeding position in the conveying direction of the conveying mechanism 3, and the raw material carrier 4 is arranged at the discharging position of the conveying mechanism 3.

[0036] Specifically, the equal-weight batching machine 21 is connected to the mixer 1. The mixer 1 heats and stirs the placed raw materials to produce raw materials, and the raw materials are transferred from the mixer 1 to the equal-weight batching machine 21. The equal-weight batching machine 21 performs equal-total batching to make each raw material of equal weight, and then loads it onto the raw material carrier 4.

[0037] It can be understood that the mixer 1, the batching mechanism 2, the conveying mechanism 3, and the raw material carrier 4 are arranged in sequence, so that during product production, processes such as stirring, batching, and loading of raw materials can be completed in one transfer process, saving a large amount of transfer time. The equal-weight batching machine 21 can batch according to a preset weight, so that the discharged materials of the equal-weight batching machine 21 can maintain each raw material of equal weight, making the weight of the final product the same, avoiding differences in product quality, and ensuring the yield of the product from the size of the raw materials; the equal-weight batching machine 21 is arranged at the feeding position in the conveying direction of the conveying mechanism 3, and the raw material carrier 4 is arranged at the discharging position of the conveying mechanism 3, making the equal-weight batching machine 21, the conveying mechanism 3, and the raw material carrier 4 more compactly arranged, reducing the transfer time and at the same time reducing the equipment space occupancy rate.

[0038] The equal-weight batching machine 21 includes a first control module 213, a conveyor belt 211, and a cutting knife 212. The first control module 213 is electrically connected to the conveyor belt 211; the cutting knife 212 is arranged at the beginning of the conveying direction of the conveyor belt 211.

[0039] At least two slots 2112 are arranged on the conveyor belt 211. The slots 2112 are arranged at equal distances and are used to carry raw materials.

[0040] It can be understood that slots 2112 are arranged on the conveyor belt 211. The slots 2112 carry the raw materials cut by the equal-weight batching machine 21. The slots 2112 are arranged at equal distances on the conveyor belt 211. Since there is a certain time for the equal-weight batching machine 21 to cut the raw materials, the distance between the slots 2112 can correspond to this time, so that the raw materials can smoothly fall onto the slots 2112 on the conveyor belt 211. When the conveyor belt 211 conveys the raw materials, the equal-weight batching can accurately feed the materials onto the slots 2112, avoiding multiple raw materials from falling onto the same slot 2112 repeatedly, preventing the clamping failure during the operation of the clamping part 5 due to unequal spacing, and improving the production efficiency of the equipment and the automation of the equipment.

[0041] Specifically, the first control module 213 can control the conveying speed of the conveyor belt 211. The user can adjust the conveying speed to match the falling speed of the equal weight distributor 21, so that the raw materials can be ready to fall into the slot 2112. After adjusting the weight of the raw materials, adjusting the speed of the conveyor belt 211 through the first control module 213 can make the equipment more user-friendly and improve the adaptability of the equipment.

[0042] Specifically, the cutter 212 is driven by a cylinder or a motor, and the cylinder or the motor is controlled by the first control module 213. The cutter 212 is used to cut the raw materials so that the raw materials are cut according to a preset weight. The raw materials can be in blocks and enter subsequent processes for production processing.

[0043] It can be understood that the first control module 213 can control the cutter 212 to fall and cut the raw material. The first control module 213 can adjust the time when the cutter 212 falls, and the time interval between the two falls of the cutter 212. By controlling the time interval between the two falls of the cutter 212, the cutting interval can be controlled to be equal, so that the raw materials produced by the material division process are of equal weight, the accuracy of the equal weight divider 21 is improved, and errors in the product caused by the unequal weight of the raw materials produced by the material division are avoided, and the yield rate of the product is improved. Alternatively, in some other embodiments, an infrared sensing module is also included for sensing whether the raw material has reached a preset length. When the raw material reaches the preset length, the first control module 213 controls the cutter 212 to cut the raw material. In this way, the raw materials produced by the material division process can also be made of equal weight.

[0044] In particular, the first control module 213 is a PLC control system. It can be understood that the first control module 213 can self-edit the internal program to control the input and output environment, thereby improving the automation level of the equipment.

[0045] The equal weight feeder 21 also includes a quality detection component 214 and a length detection component 215, and the quality detection component 214 and the length detection component 215 are electrically connected to the first control module 213; the length detection component 215 is arranged at the discharge port of the equal weight feeder 21, and the quality detection component 214 is arranged at the feed port of the conveyor belt 211.

[0046] Specifically, the quality detection component 214 and the length detection component 215 are electrically connected to the first control module 213. The quality detection component 214 is a weight sensor, and the length detection component 215 is a length sensor. The first control module 213 can control and detect the working states of the quality detection component 214 and the length detection component 215 through electrical signals, so as to judge whether the raw materials are divided according to the preset weight and whether the weights of the raw materials are equal, which can avoid errors between the raw materials, reduce the error rate of the equal-weight batching machine 21, and improve the yield rate of the equipment.

[0047] It can be understood that the length detection component 215 can judge the volume of the discharged material to ensure that the discharged material is of equal length. The quality detection component 214 is arranged at the feeding port of the conveyor belt 211. By the magnitude of the gravitational force of the raw material on the conveyor belt 211 when it falls on the feeding port position, it can be known whether the cutting of the raw material by the equal-weight batching machine 21 meets the requirements, reducing the manual verification of the weight of the raw material and improving the automation of the equipment.

[0048] The conveying mechanism 3 has the same conveying speed as the conveyor belt 211.

[0049] Specifically, the conveying mechanism 3 can extend the conveying distance of the raw material to ensure sufficient time for the clamping member 5 to clamp the raw material.

[0050] It can be understood that the conveying mechanism 3 has the same conveying speed as the conveyor belt 211, which can ensure that the conveying speed of the conveying mechanism 3 for the raw material is consistent with that of the conveyor belt 211, and the distance between the raw materials also remains consistent. At the same time, the conveying mechanism 3 can ensure sufficient time for the clamping member 5 to clamp the raw material, avoiding the raw material from falling or piling up on the conveying mechanism 3, ensuring the production process of the equipment is completed in one transmission, and improving the automation degree of the equipment.

[0051] The intelligent batching equipment 100 for making industrial packaging products from biomass new materials further includes a clamping member 5. The clamping member 5 is arranged at the discharging position of the conveying mechanism 3. The clamping member 5 is used to clamp the raw material into the raw material carrier 4; the raw material carrier 4 is provided with grooves 41 distributed in an array, and the grooves 41 are used to carry the raw materials.

[0052] It can be understood that the clamping member 5 places the raw materials on the conveyor belt 211 one by one onto the raw material carrier 4, enabling the raw materials to be transferred from the equal-weight dividing machine 21 to the subsequent processes, reducing the degree of manual participation in production, increasing the degree of production automation, reducing the volume size error between products, and improving the yield rate of products. Of course, in order to further improve efficiency, the clamping member 5 is designed to have a structure with a row of clamping parts. The row of clamping parts has multiple clamping parts. Preferably, the row of clamping parts has five clamping parts. Correspondingly, a receiving platform 6 needs to be provided between the conveyor belt 211 and the raw material carrier 4. During operation, the raw materials on the conveyor belt 211 first enter the receiving platform 6 and are arranged in a row. Then, the clamping member 5 clamps all the row of raw materials at once and moves them into the groove 41 of the raw material carrier 4.

[0053] It can be understood that the grooves 41 arranged in an array, that is, the grooves 41 are set at a fixed distance, which is beneficial for the clamping member 5 to place the raw materials. Set the distance between the grooves 41 and the travel distance of the clamping member 5 in the program, and import this preset program into the clamping member 5, so that the clamping member 5 can clamp and place the raw materials to adapt to the distribution of the grooves 41 of the raw material carrier 4, and the clamping member 5 can place the raw materials on the grooves 41 more precisely. The grooves 41 arranged in an array can reduce the steps for the clamping member 5 to identify the positions of the grooves 41 and improve the production speed.

[0054] Particularly, the number of raw materials matches the number of loading positions on the raw material carrier 4, which can ensure that each loading position on the raw material carrier 4 can load one raw material. At the same time, it can ensure that multiple raw materials can be transported each time the raw material carrier 4 is conveyed, avoiding the existence of empty loading positions on the raw material carrier 4, increasing the production output, and accelerating the production rate.

[0055] Particularly, the clamping member 5 rotates to clamp the raw materials, and the rotation amplitude is 0 - 90°; the clamping member 5 is a four-axis robot, and the clamping member 5 can rotate within this rotation amplitude. The rotation axis of the clamping member 5 can reach the position of clamping and transporting the raw materials to the designated position within this rotation amplitude. And in this embodiment, a second control module 51 for adjusting and controlling the clamping member 5 is also designed. The second control module 51 is a PLC control system. By setting the four-axis robot, the human hand can be liberated from the production line, saving the labor cost of production. At the same time, it can increase the conveying speed and extend the duration of conveying the raw materials, improving the production efficiency.

[0056] Compared with the prior art, a material dividing and conveying device for manufacturing industrial packaging products from biodegradable materials provided by the present invention has the following advantages:

[0057] 1. The mixer, the material distributor, the conveying mechanism and the raw material carrier are arranged in sequence, so that when the product is produced, the processes of mixing, distributing and loading the raw materials can be completed in one transmission process, thus saving a lot of transmission time. The equal weight distributor can distribute the materials according to the preset weight, so that the discharge of the equal weight distributor can keep the weight of each raw material equal, so that the weight of the final product is the same, avoiding differences in product quality and ensuring the product yield from the size of the raw materials; the weight distributor is arranged at the feeding position of the conveying direction of the conveying mechanism, and the raw material carrier is arranged at the discharging position of the conveying mechanism, so that the weight distributor, the conveying mechanism and the raw material carrier are arranged more compactly, reducing the transmission time and reducing the equipment space occupancy rate.

[0058] 2. The cutter is used to cut the raw materials so that the raw materials are cut according to the preset weight. The raw materials can enter the subsequent process in blocks for production and processing. The first control module can control the cutter to fall and cut the raw materials. The first control module can adjust the time when the cutter falls and the time interval between the two falls of the cutter. By controlling the time interval between the two falls of the cutter, the cutting interval can be controlled to be equal, so that the raw materials generated by the dividing process are of equal weight, thereby improving the accuracy of the equal weight divider, avoiding product errors caused by unequal weight of raw materials generated by dividing, and improving the product yield.

[0059] 3. Slots are provided on the conveyor belt, and the slots carry the raw materials cut by the equal weight feeder. The slots are arranged at equal distances on the conveyor belt. Since it takes a certain amount of time for the equal weight feeder to cut the raw materials, the distance between the slots can correspond to this period of time, so that the raw materials can smoothly fall into the slots on the conveyor belt. When the conveyor belt is conveying the raw materials, the equal weight feeder can accurately unload the materials into the slots, avoiding multiple raw materials from falling on the same slot repeatedly, and preventing the failure of clamping during subsequent clamping operations due to unequal spacing, thereby improving the production efficiency and automation of the equipment.

[0060] 4. The first control module can control the conveying speed of the conveyor belt. The user can adjust the conveying speed to match the falling speed of the equal weight distributor so that the raw materials can be ready to fall into the slot. After adjusting the weight of the raw materials, adjusting the speed of the conveyor belt through the first control module can make the equipment more user-friendly and improve the adaptability of the equipment.

[0061] 5. The length detection part can determine the volume of the discharged material to ensure that the discharged material is of equal length. The quality detection part is arranged at the feeding port of the conveyor belt. By the raw materials falling at the feeding port and the magnitude of the gravity force on the conveyor belt, it can be known whether the raw materials cut by the equal weight divider meet the requirements, thereby reducing the manual verification of the raw material weight and improving the automation of the equipment.

[0062] 6. The conveying mechanism has the same conveying speed as the conveyor belt, which can ensure that the speed of the conveying mechanism for conveying raw materials is consistent with that of the conveyor belt, and the spacing between raw materials is also kept consistent. At the same time, the conveying mechanism can ensure that there is sufficient time for the clamping member to clamp the raw materials, avoiding the falling or accumulation of raw materials from the conveying mechanism, ensuring the production process of the equipment in one transmission, and improving the automation degree of the equipment.

[0063] 7. The clamping member places the raw materials on the conveyor belt one by one onto the raw material carrier, transferring the raw materials from the equal-weight batching machine to the subsequent processes, reducing the degree of manual participation in production, increasing the degree of production automation, reducing the volume size error between products, and improving the yield rate of products.

[0064] 8. The grooves distributed in an array, that is, the grooves are set at a fixed distance, which is beneficial for the clamping member to place the raw materials. Set the distance between the grooves and the travel of the clamping member in the program, and import the preset program into the clamping member, which can make the clamping member clamp and place the raw materials adapt to the groove distribution of the raw material carrier, and the clamping member places the raw materials more accurately on the grooves. The grooves distributed in an array can reduce the steps for the clamping member to identify the groove positions and improve the production speed.

[0065] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. A material distribution and conveying device for manufacturing industrial packaging products with biodegradable materials, characterized in that: It includes a blender, a material distribution mechanism, a conveying mechanism and a raw material carrier; The blender, the material distribution mechanism, the conveying mechanism and the raw material carrier are arranged in sequence; The material distribution mechanism includes an equal-weight material distributor. The weight material distributor is arranged at the feeding position in the conveying direction of the conveying mechanism, and the raw material carrier is arranged at the discharging position of the conveying mechanism; A conveyor belt and a cutting knife are arranged on the equal-weight material distributor, and the cutting knife is arranged at the beginning of the conveying direction of the conveyor belt; The equal-weight material distributor includes a first control module, and the first control module is electrically connected to the conveyor belt; the first control module is a PLC control system; The equal-weight material distributor includes a quality detection component and a length detection component, and the quality detection component and the length detection component are electrically connected to the first control module; The length detection component is arranged at the discharging port of the equal-weight material distributor. The length detection component judges the volume of the discharged material to ensure that the discharged material is of equal length. The quality detection component is arranged at the feeding port of the conveyor belt. By the magnitude of the gravitational force of the raw material falling on the feeding port position on the conveyor belt, it is known whether the raw material cut by the equal-weight material distributor meets the requirements; At least two slots are arranged on the conveyor belt. The slots are arranged at equal distances and are used to carry raw materials. There is a certain time for the equal-weight material distributor to cut the raw materials, and the distance between the slots corresponds to this period of time; It further includes a clamping component. The clamping component is arranged at the discharging position of the conveying mechanism and is used to clamp the raw materials into the raw material carrier; The raw material carrier is provided with grooves distributed in an array, and the grooves are used to carry raw materials.

2. The material distribution and conveying device for manufacturing industrial packaging products from biodegradable materials according to claim 1, characterized in that: The cutting knife is driven by a cylinder or a motor.

3. The material distribution and conveying device for manufacturing industrial packaging products from biodegradable materials according to claim 1, characterized in that: The clamping component rotates to clamp the raw materials, and the rotation amplitude is 0-90°; The clamping component is a four-axis robot.

4. The material distributing and conveying device for manufacturing industrial packaging products from biodegradable materials according to claim 1, wherein: The conveying speed of the conveying mechanism is the same as that of the conveyor belt.

Citation Information

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