Ethylene block material recovery device

By designing an ethylene block recycling device, and utilizing multiple pipelines and equipment, the problem of low recycling efficiency in traditional ethylene block recycling has been solved. This enables the separate collection and recycling of gas and residue, improving operational efficiency and convenience.

CN223970616UActive Publication Date: 2026-03-06INNER MONGOLIA BAOFENG COAL-BASED NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

In traditional ethylene lump recycling, the lumps are too large to be directly fed into the granulator, making it difficult to effectively break them up. It is also difficult to separate the gas and residue for collection, and the cooling and drying equipment is needed for cooling and drying, resulting in low recycling efficiency and difficulties in feeding and sealing operations.

Method used

Design an ethylene block recycling device. By adding multiple pipes and equipment such as desorbers, cooling dryers, connectors, and feeders, the device can achieve separate collection and recycling of gas and residue, and enhance sealing performance and rapid feeding capability.

Benefits of technology

It improves the operational efficiency of ethylene block recycling, enables the effective separation and storage of gas and residue, and enhances the recycling capacity and ease of operation of the recycling process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an ethylene lump material recovery device, relates to ethylene lump material field, including fixed base plate, transfer pipeline, link up block and feed bin, fixed base plate top surface is equipped with telescopic support frame and cyclic utilization box, fixed base plate top surface is equipped with waste material box, telescopic support frame top surface is equipped with feeder, and the feed bin is equipped with the cyclic utilization box. According to the ethylene block material recycling device, cyclic utilization can be effectively achieved, gas generated by ethylene block materials can be cooled and dried through the cooling dryer, then desorption operation is carried out through the desorption device, in the ethylene block material recycling process, separated storage of gas and residues of all parts can be effectively achieved, overall cyclic utilization can be effectively completed, and the ethylene block material recycling device is economical and practical. According to the ethylene block material recycling device, fast feeding and sealing operation can be achieved, the operation and treatment efficiency can be greatly improved when ethylene block materials are recycled on the whole, fast operation and utilization can be achieved, and operation of an operator can be facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of ethylene lump materials, specifically an ethylene lump material recycling device. Background Technology

[0002] Ethylene, with the chemical formula C₂H₄ and a molecular weight of 28.054, is an organic compound composed of two carbon atoms and four hydrogen atoms, connected by a carbon-carbon double bond. At room temperature and pressure, ethylene is a colorless gas with a sweet odor. It is insoluble in water, less dense than air, and flammable. The functional group and reaction center of ethylene are the carbon-carbon double bond. Because the average bond energy of the π bond is lower than that of the carbon-carbon σ bond, the π bond is easier to open than the σ bond. Since the π electrons are dispersed outwards, they are easily attacked by electrophilic reagents. Therefore, ethylene readily undergoes electrophilic addition reactions, free radical addition reactions, oxidation reactions, catalytic hydrogenation reactions, and polymerization reactions.

[0003] Traditional ethylene lump recycling methods often result in large, unusable granulators that cannot be directly fed into pelletizers. This hinders effective fragmentation and recycling without the use of multiple pipelines. Furthermore, the gases generated from the ethylene lump cannot be cooled and dried using a desorber, making it difficult to separate and collect gases and residues. This hinders overall recycling, rapid feeding, and sealing, resulting in low efficiency and inconvenience for operators.

[0004] Therefore, those skilled in the art have provided an ethylene lump recycling device to solve the problems mentioned in the background art. Utility Model Content

[0005] The purpose of this invention is to provide an ethylene block recycling device to solve the problems mentioned in the background art. Traditional ethylene block recycling methods suffer from several drawbacks: the original crude polyethylene blocks are too large to directly enter the granulator, making effective briquetting impossible; multiple pipelines are not added for recycling, hindering effective recycling; the gases generated from the ethylene blocks cannot be cooled and dried using a cooling dryer; and desorption is difficult. Furthermore, the recycling process fails to effectively separate and collect gases and residues, hindering overall recycling, rapid feeding, and sealing. Overall, the operation and processing efficiency in ethylene block recycling is low, making rapid operation and utilization difficult and inconvenient for operators.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] An ethylene block recycling device includes a fixed base plate, a transfer pipe, a connecting block, and a feeding hopper. The top surface of the fixed base plate is provided with a telescopic support frame and a recycling bin. The top surface of the fixed base plate is also provided with a waste bin. The top surface of the telescopic support frame is provided with a feeder. The bottom surface of the feeder is fixedly connected to a connector. One end of the connector is fixedly connected to a desorber and a cooling dryer. One end of the desorber and cooling dryer is fixedly connected to the recycling bin. One end of the transfer pipe is fixedly connected to a support frame. One end of the transfer pipe is fixedly connected to connecting pipes A, B, C, and D. The top surface of the feeding hopper is provided with a sealing cover. The bottom surface of the feeding hopper is provided with a support frame. The bottom surface of the support frame is fitted with a connecting block. The bottom surface of the connecting block is fixedly connected to a telescopic hydraulic rod. The bottom end of the telescopic hydraulic rod is provided with a telescopic rod.

[0008] In a preferred embodiment of this utility model, the telescopic support frame and the recycling box are arranged in parallel, and a desorption device, a cooling dryer and a connector are provided between the telescopic support frame and the recycling box.

[0009] In a preferred embodiment of this utility model, the desorber and the cooling dryer are arranged in parallel, and the desorber and the cooling dryer are arranged in parallel with the recycling box.

[0010] In a preferred embodiment of this utility model, the connecting pipes D and A, B and C are arranged perpendicularly to each other, and the connecting pipes A, B and C are arranged parallel to each other.

[0011] In a preferred embodiment of this utility model, the connector includes a transfer pipe, a connecting pipe A, a connecting pipe B, a connecting pipe C, and a connecting pipe D.

[0012] In a preferred embodiment of this utility model, the connecting pipes A, B, C and D have the same structure and are connected by a connecting pipe.

[0013] In a preferred embodiment of the present invention, the feeder includes a sealing cover, a feed bin, and a support frame, and the sealing cover, feed bin, and support frame are arranged perpendicularly to the fixed base plate.

[0014] In a preferred embodiment of this utility model, the telescopic support frame includes a connecting block and a telescopic rod of a telescopic hydraulic rod, and the telescopic rod of the telescopic hydraulic rod is arranged perpendicularly to the fixed base plate.

[0015] Compared with the prior art, the beneficial effects of this utility model are:

[0016] This utility model discloses an ethylene block recycling device, which overcomes the limitations of traditional ethylene block recycling methods. Traditionally, the large size of the original crude polyethylene blocks prevents direct feeding into the granulator and hinders effective block breaking. By adding multiple pipelines for recycling, it effectively achieves circular utilization. The device cools and dries the gas generated from the ethylene blocks using a cooling dryer, followed by desorption using a desorber. In the recycling of ethylene blocks, it effectively separates and collects the gas and residue from different parts, achieving overall recycling. It also enables rapid feeding and sealing operations, significantly improving the efficiency of operation and processing in ethylene block recycling, allowing for rapid operation and ease of use. Attached Figure Description

[0017] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0018] Figure 1 This is a three-dimensional structural diagram of an ethylene lump material recycling device;

[0019] Figure 2 This is a schematic diagram of the overall isometric side view of an ethylene block recycling device.

[0020] Figure 3 This is a three-dimensional structural diagram of the connection between the telescopic support frame and the feeder in an ethylene block recycling device.

[0021] Figure 4 This is an isometric side view of the connection between the telescopic support frame and the feeder in an ethylene block recycling device.

[0022] Figure 5 This is a schematic diagram of the structure of a connector in an ethylene block recycling device.

[0023] In the diagram: 1. Fixed base plate; 2. Waste bin; 3. Recycling bin; 4. Desorber; 5. Cooling dryer; 6. Connector; 601. Transfer pipe; 602. Connecting pipe A; 603. Connecting pipe B; 604. Connecting pipe C; 605. Connecting pipe D; 7. Telescopic support frame; 701. Connecting block; 702. Telescopic hydraulic rod; 703. Telescopic rod; 8. Feeder; 801. Sealing cover; 802. Feed hopper; 803. Support frame. Detailed Implementation

[0024] Please see Figure 1-5In this embodiment of the utility model, an ethylene block recycling device includes a fixed base plate 1, a transfer pipe 601, a connecting block 701, and a feeding bin 802. The top surface of the fixed base plate 1 is provided with a telescopic support frame 7 and a recycling bin 3. The top surface of the fixed base plate 1 is provided with a waste bin 2. The top surface of the telescopic support frame 7 is provided with a feeder 8. This device overcomes the limitations of traditional ethylene block recycling, where the original polyethylene crude material is too large to directly enter the granulator, hindering effective block breaking. By adding multiple pipes for recycling, it effectively achieves recycling. The feeder 8 has a connector 6 fixedly connected to its bottom surface. One end of the connector 6 is fixedly connected to a desorber 4 and a cooling dryer 5. One end of the desorber 4 and the cooling dryer 5 is fixedly connected to the recycling bin 3. One end of the transfer pipe 601 is fixedly connected to a support frame 803. The other end of the transfer pipe 601 is fixedly connected to a connecting block 802. The feed hopper 802 is connected to pipes A602, B603, C604, and D605. A sealing cover 801 is provided on the top surface of the feed hopper 802, and a support frame 803 is provided on the bottom surface of the feed hopper 802. A connecting block 701 is fitted onto the bottom surface of the support frame 803. This allows for cooling and drying by the cooling dryer, followed by desucking by the desuction device. Feed can be fed through the feed hopper 802, and the sealing cover 801 effectively seals the feed. The support frame 803 provides support, and the connecting block 701 provides connection. The telescopic hydraulic rod 703 of the telescopic hydraulic rod 702 allows for height adjustment, and the recycling box 3 can move up and down in coordination. Ethylene blocks in the feed hopper 802 can be separated and recycled through the transfer pipe 601. The bottom surface of the connecting block 701 is fixedly connected to the telescopic hydraulic rod 702, and the bottom end of the telescopic hydraulic rod 702 is equipped with a telescopic rod 703.

[0025] Please see Figure 1 , Figure 3 and Figure 5The telescopic support frame 7 and the recycling box 3 are arranged in parallel, and a desorber 4, a cooling dryer 5, and a connector 6 are provided between the telescopic support frame 7 and the recycling box 3. The desorber 4 and the cooling dryer 5 are arranged in parallel, and the desorber 4 and the cooling dryer 5 are arranged in parallel with the recycling box 3. Connecting pipes D605 and A602, B603 and C604 are arranged perpendicularly, and connecting pipes A602, B603 and C604 are arranged in parallel. The connector 6 includes a transition pipe 601, connecting pipes A602, B603, C604 and D605. Under the action of connecting pipes B603, C604, and D605, the broken ethylene lumps are subjected to desorption 4 and cooling dryer 5 by adding pipelines, which can effectively realize desorption and cooling drying operations. Then, they are recycled through recycling box 3. Connecting pipes A602, B603, C604, and D605 have the same structure, and they are connected by a transition pipe 601. The feeder 8 includes a sealing cover 801, a feed hopper 802, and a support frame 803, and the sealing cover 801, feed hopper 802, and support frame 803 are arranged vertically to the fixed base plate 1. In the recycling of ethylene lumps, the gas and residue of each part can be effectively collected separately, enabling efficient overall recycling. It also allows for rapid feeding and sealing operations, significantly improving the efficiency of operation and processing during ethylene lump recycling. This facilitates rapid operation and user-friendly operation. The telescopic support frame 7 includes a connecting block 701 and a telescopic rod 703 of the telescopic hydraulic rod 702, with the telescopic rod 703 of the telescopic hydraulic rod 702 perpendicularly positioned to the fixed base plate 1.

[0026] It should be noted that this utility model is an ethylene block recycling device, including: 1. a fixed base plate; 2. a waste bin; 3. a recycling bin; 4. a desorber; 5. a cooling dryer; 6. a connector; 601. a transfer pipe; 602. a connecting pipe A; 603. a connecting pipe B; 604. a connecting pipe C; 605. a connecting pipe D; 7. a telescopic support frame; 701. a connecting block; 702. a telescopic hydraulic rod; 703. a telescopic rod; 8. a feeder; 801. a sealing cover; 802. a feed hopper; 803. a support frame. All components are general standard parts or components known to those skilled in the art, and their structure and principle can be obtained by those skilled in the art through technical manuals or conventional experimental methods.

[0027] The working principle of this utility model is as follows: It overcomes the limitations of traditional ethylene block recycling methods, where the original large polyethylene lumps cannot directly enter the granulator and are difficult to break up. By adding multiple pipelines for recycling, it effectively achieves circular utilization. The gas generated from the ethylene blocks is cooled and dried by a cooling dryer, then desorbed by a desorber. Feeding occurs through the feed hopper 802, and the sealing cover 801 provides effective sealing. The support frame 803 provides support, the connecting block 701 provides connection, and the telescopic hydraulic rod 702 and telescopic rod 703 allow for height adjustment. The recycling box 3 can then be used in conjunction with... The material moves up and down, and through the transfer pipe 601, the ethylene blocks in the feed hopper 802 can be separated and recycled. With the help of connecting pipes B603, C604, and D605, the broken ethylene blocks are subjected to desorption 4 and cooling dryer 5 by adding pipelines, which can effectively realize desorption and cooling drying operations. Then, it is recycled through recycling box 3. In the recycling of ethylene blocks, the gas and residue of each part can be effectively collected separately, and the overall recycling can be effectively completed. It can also achieve rapid feeding and sealing operations. The overall efficiency of operation and processing in the recycling of ethylene blocks can be greatly improved, enabling rapid operation and utilization, and making it convenient for operators.

[0028] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. An ethylene block recovery device comprising a fixed base plate (1), a transfer pipe (601), a link block (701) and a feed bin (802), characterized in that, The top surface of the fixed bottom plate (1) is provided with a telescopic support frame (7) and a recycling box (3), the top surface of the fixed bottom plate (1) is provided with a waste box (2), the top surface of the telescopic support frame (7) is provided with a feeder (8), the bottom surface of the feeder (8) is fixedly connected with a connecting device (6), one end of the connecting device (6) is fixedly connected with a desorber (4) and a cooling dryer (5), one end of the desorber (4) and the cooling dryer (5) is fixedly connected with the recycling box (3), one end of the adapter pipeline (601) is fixedly connected with a support frame (803), one end of the adapter pipeline (601) is fixedly connected with a connecting pipeline A (602), a connecting pipeline B (603), a connecting pipeline C (604) and a connecting pipeline D (605), the top surface of the feeding bin (802) is provided with a sealing cover (801), the bottom surface of the feeding bin (802) is provided with a support frame (803), the bottom surface of the support frame (803) is sleeved with a connecting block (701), the bottom surface of the connecting block (701) is fixedly connected with a telescopic hydraulic rod (702), and the bottom end of the telescopic hydraulic rod (702) is provided with a telescopic rod (703).

2. The ethylene lumpers recycling device according to claim 1, characterized in that, The telescopic support frame (7) and the recycling box (3) are arranged in parallel, and the desorber (4), the cooling dryer (5) and the connecting device (6) are arranged between the telescopic support frame (7) and the recycling box (3).

3. The ethylene lumpers recycling device of claim 1, wherein, The desorber (4) and the cooling dryer (5) are arranged in parallel, and the recycling box (3) is arranged in parallel between the desorber (4) and the cooling dryer (5).

4. The ethylene lumpers recycling device of claim 1, wherein, The connecting pipeline D (605) and the connecting pipeline A (602), the connecting pipeline B (603) and the connecting pipeline C (604) are arranged vertically, and the connecting pipeline A (602), the connecting pipeline B (603) and the connecting pipeline C (604) are arranged in parallel.

5. The ethylene lumpers recycling device of claim 1, wherein, The connecting device (6) comprises an adapter pipeline (601), a connecting pipeline A (602), a connecting pipeline B (603), a connecting pipeline C (604) and a connecting pipeline D (605).

6. The ethylene lumpers recycling device of claim 1, wherein, The connecting pipeline A (602), the connecting pipeline B (603), the connecting pipeline C (604) and the connecting pipeline D (605) are the same structure, and are sleeved through the adapter pipeline (601).

7. The ethylene lumpers recycling device of claim 1, wherein, The feeder (8) comprises a sealing cover (801), a feeding bin (802) and a support frame (803), and the sealing cover (801), the feeding bin (802) and the support frame (803) are arranged vertically between the fixed bottom plate (1).

8. The ethylene lumpers recycling device of claim 1, wherein, The telescopic support frame (7) comprises a connecting block (701), a telescopic rod (703) of a telescopic hydraulic rod (702), and the telescopic rod (703) of the telescopic hydraulic rod (702) is arranged vertically between the fixed bottom plate (1).