Wind energy drying and dewatering equipment for packaging surface

By designing an adjustable guide rod and a multi-angle blowing assembly, the packaging surface wind-powered drying and dehumidification equipment solves the compatibility problem of packaging materials of various specifications, achieves efficient and energy-saving drying effect, and reduces manual intervention and consumable usage.

CN223795713UActive Publication Date: 2026-01-13SHIXINGCHEN INTELLIGENT TECH (XIAMEN) CO LTD
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Patent Information

Application Number
CN202520316841.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-01-13
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

Existing dehydration equipment is not compatible with air drying operations for products of various sizes, and traditional high-temperature steam sterilization leaves moisture that needs to be wiped off manually, which is time-consuming and labor-intensive.

Method used

Design a wind-powered drying and dehumidification device for packaging surfaces, comprising adjustable guide rods, adjustable blowing components, and horizontal and vertical blowing components, which can adapt to packaging materials of different specifications through multi-angle and multi-directional air drying methods, combined with a chain-type mesh conveyor belt and a water collection tank.

Benefits of technology

It improves the versatility and drying efficiency of the equipment, reduces manual intervention, lowers the use of consumables, and enables efficient air drying of packaging materials of various specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses wind energy drying and dewatering equipment for a package surface, which comprises a rack, and a feeding conveying belt, an air drying area and a discharging buffer area are sequentially arranged on the upper portion of the rack according to the material conveying direction. A chain type net-shaped conveying belt is arranged on the lower portion of the air drying area, and a guide assembly, a plurality of adjustable air blowing assemblies, a plurality of horizontal air blowing assemblies and a plurality of vertical air blowing assemblies are arranged on the upper portion of the air drying area. And the fixing rod on the guide rod is matched with the first mounting groove in the first mounting frame through the polished rod fixing seat, so that the guide rod is very convenient to mount and adjust due to the structural design. And if the distance or the position of the guide rods needs to be adjusted according to the sizes of different packaging materials, only the position of the polish rod fixing seat in the first mounting groove needs to be adjusted, and the universality and the flexibility of the equipment are improved.
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Description

Technical Field

[0001] This utility model belongs to the field of packaging air drying technology, and specifically relates to a packaging surface air-powered drying and dehydration device. Background Technology

[0002] Product packaging is a crucial branch of manufacturing, involved in multiple sectors such as food, pharmaceuticals, and chemicals. Packaging also encompasses many sub-sectors, including paper products, plastics, metals, and glass packaging materials. For companies with hygiene standards, high-temperature sterilization after packaging is essential. To prevent damage, most manufacturers use steam sterilization, but this method easily leaves moisture on the product packaging surface, making it unsuitable for direct packing. Manual wiping is also time-consuming, labor-intensive, and consumes a significant amount of consumables. Therefore, in today's rapidly developing manufacturing industry, an energy-saving and emission-reducing packaging surface dehumidification device is particularly important.

[0003] In current technology, most dehydration machines only consider the operation of a single product and cannot be compatible with products of multiple sizes. However, companies often have a wide variety of products. Therefore, this application provides a wind-powered drying and dehydration device for packaging surfaces, which aims to improve the drying efficiency of packaging and facilitate compatibility with products of multiple sizes. Utility Model Content

[0004] This invention provides a wind-powered drying and dehydration device for packaging surfaces, aiming to solve the problems mentioned in the background art.

[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:

[0006] A packaging surface wind-powered drying and dehydration device includes: a frame, wherein the upper part of the frame is provided with: a feeding conveyor belt, a drying area and a discharge buffer zone arranged sequentially according to the material conveying direction;

[0007] The lower part of the air-drying area is equipped with a chain-type mesh conveyor belt, and the upper part of the air-drying area is equipped with a guide component, several sets of adjustable air-blowing components, several sets of horizontal air-blowing components and several sets of vertical air-blowing components.

[0008] The guiding assembly includes: at least two first mounting brackets, which are fixedly connected to the frame. At least two pairs of guide rods are provided at the lower part of the first mounting brackets. A fixing rod is vertically provided on each guide rod. A smooth rod fixing seat is provided at the upper end of each fixing rod and is fixedly connected to the first mounting bracket through the smooth rod fixing seat. A first mounting groove is provided on each first mounting bracket, which cooperates with the smooth rod fixing seat. Transition rods are provided at both ends of each guide rod, and the transition rods are used to guide materials into the space between the guide rods.

[0009] Furthermore, the adjustable blower assembly includes: a second mounting bracket, which is fixedly connected to the frame. The second mounting bracket is provided with a plurality of first mounting plates, each of which is L-shaped and has a second mounting groove on both its horizontal and vertical side plates.

[0010] A rotating seat is provided on the vertical side plate of the first mounting plate, and a tornado-type air knife is provided on the rotating seat.

[0011] Furthermore, the rotating base includes: a second mounting plate, which cooperates with the second mounting groove, a rotating rod rotatably connected to the second mounting plate, an extension plate rotatably connected to the end of the rotating rod, and the tornado-type air knife provided on the extension plate.

[0012] Furthermore, the horizontal blowing assembly includes: a first air supply pipe, the two ends of which are fixedly connected to the frame, and the two ends of the first air supply pipe are provided with air inlets. The lower part of the first air supply pipe is connected to several pairs of vertical air outlet pipes, and several air outlet holes are opened on the adjacent side walls of each pair of vertical air outlet pipes.

[0013] Furthermore, the vertical air blowing assembly includes: a pair of second air supply pipes, the two ends of which are fixedly connected to the frame, and the two ends of the second air supply pipes are provided with air inlets. A horizontal air outlet pipe is connected to the adjacent side of the second air supply pipe, and a plurality of air outlet holes are provided on the adjacent side of the horizontal air outlet pipe.

[0014] Furthermore, one of the two horizontal air outlet pipes in the vertical blowing assembly is located above the chain-type mesh conveyor belt, and the other is located inside the chain-type mesh conveyor belt, for drying the bottom of the material.

[0015] Furthermore, a protective cover is provided on the upper part of the drying area, and the protective cover is fixedly connected to the frame.

[0016] Furthermore, a water collection trough is provided at the lower part of the chain mesh conveyor belt, which is used to collect water droplets that fall during the material drying process.

[0017] Compared with the prior art, the present invention has the following technical effects:

[0018] 1. The guide rod of the wind-powered drying and dehydration equipment for packaging surfaces described in this utility model has a fixing rod that engages with the first mounting groove on the first mounting frame via a smooth rod fixing seat. This structural design makes the installation and adjustment of the guide rod very convenient. If it is necessary to adjust the spacing or position of the guide rod according to the size of different packaging materials, only the position of the smooth rod fixing seat in the first mounting groove needs to be adjusted, thus improving the versatility and flexibility of the equipment.

[0019] 2. The packaging surface wind-powered drying and dehumidification equipment of this utility model comprises several sets of adjustable blowing components, several sets of horizontal blowing components, and several sets of vertical blowing components arranged in the upper part of the drying area. Different types of blowing components work together to dry the surface of the packaging material from different angles and directions. The adjustable blowing components can flexibly adjust the blowing angle, wind speed, and air volume according to the different specifications, shapes, and drying requirements of the packaging material, enhancing the adaptability of the equipment and the controllability of the drying effect. The horizontal and vertical blowing components blow air onto the material from horizontal and vertical directions respectively, enabling more comprehensive coverage of the packaging surface, removing moisture, and improving drying efficiency. Attached Figure Description

[0020] Figure 1 This is an overall schematic diagram of a wind-powered drying and dehydration device for packaging surfaces according to this utility model;

[0021] Figure 2 This is a schematic diagram of the drying area of ​​a wind-powered drying and dehydration device for packaging surfaces according to this utility model;

[0022] Figure 3 This is a schematic diagram of the guide assembly of a wind-powered drying and dehydration device for packaging surfaces according to this utility model;

[0023] Figure 4 This is a schematic diagram of the guide assembly of a wind-powered drying and dehydration device for packaging surfaces according to this utility model;

[0024] Figure 5 This is a schematic diagram of an adjustable blowing component for a wind-powered drying and dehydration device for packaging surfaces, as described in this utility model.

[0025] Figure 6 This is a schematic diagram of the rotating seat of a wind-powered drying and dehydration device for packaging surfaces according to this utility model;

[0026] Figure 7 This is a schematic diagram of the horizontal blowing component of a wind-powered drying and dehydration device for packaging surfaces according to this utility model;

[0027] Figure 8 This is a schematic diagram of the vertical blowing component of a wind-powered drying and dehydration device for packaging surfaces according to this utility model;

[0028] Figure 9 This is a schematic diagram of the vertical blowing component and the chain-type mesh conveyor belt of a wind-powered drying and dehydration device for packaging surfaces according to this utility model;

[0029] Figure 10 This is a schematic diagram of the transition plate installation of a wind-powered drying and dehydration device for packaging surfaces according to this utility model;

[0030] Figure 11 This is a schematic diagram of the transition plate structure of a wind-powered drying and dehydration device for packaging surfaces, as described in this utility model.

[0031] In the picture:

[0032] 1. Frame; 2. Feed conveyor belt; 3. Drying area; 4. Discharge buffer zone; 5. Protective cover;

[0033] 6. Guide assembly; 601. First mounting bracket; 602. Guide rod; 603. Fixing rod; 604. Smooth rod fixing seat; 605. First mounting groove; 606. Transition rod;

[0034] 7. Adjustable blower assembly; 701. Second mounting bracket; 702. First mounting plate; 703. Second mounting slot;

[0035] 704, Rotating seat; 7041, Second mounting plate; 7042, Rotating rod; 7043, Extension plate;

[0036] 705. Tornado-style air knife;

[0037] 8. Horizontal air blowing assembly; 801. First air supply duct; 802. Vertical air outlet duct;

[0038] 9. Vertical air blowing assembly; 901. Second air supply duct; 902. Horizontal air outlet duct;

[0039] 10. Chain-type mesh conveyor belt;

[0040] 11. Transition plate. Detailed Implementation

[0041] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to specific embodiments of this application and the accompanying drawings.

[0042] like Figure 1-4 and Figure 9 As shown, a packaging surface wind-powered drying and dehydration device includes: a frame 1, wherein the upper part of the frame 1 is provided with: a feeding conveyor belt 2, a drying area 3 and a discharge buffer zone 4 arranged in sequence according to the material conveying direction;

[0043] The lower part of the air-drying area 3 is provided with a chain-type mesh conveyor belt 10, and the upper part of the air-drying area 3 is provided with a guide component 6, several sets of adjustable air-blowing components 7, several sets of horizontal air-blowing components 8 and several sets of vertical air-blowing components 9.

[0044] The guiding assembly 6 includes: at least two first mounting brackets 601, which are fixedly connected to the frame 1. At least two pairs of guide rods 602 are provided at the lower part of the first mounting brackets 601. A fixing rod 603 is vertically provided on the guide rod 602. A smooth rod fixing seat 604 is provided at the upper end of the fixing rod 603, and the smooth rod fixing seat 604 is fixedly connected to the first mounting bracket 601. A first mounting groove 605 is provided on the first mounting bracket 601, which cooperates with the smooth rod fixing seat 604. A transition rod 606 is provided at both ends of the guide rod 602, and the transition rod 606 is used to guide the material into the space between the guide rods 602.

[0045] The fixing rod 603 on the guide rod 602 engages with the first mounting groove 605 on the first mounting frame 601 via the smooth rod fixing seat 604. This structural design makes the installation and adjustment of the guide rod 602 very convenient. If it is necessary to adjust the spacing or position of the guide rods according to the size of different packaging materials, it is only necessary to adjust the position of the smooth rod fixing seat 604 in the first mounting groove 605, which improves the versatility and flexibility of the equipment.

[0046] Several sets of adjustable blowing components 7, several sets of horizontal blowing components 8, and several sets of vertical blowing components 9 are installed in the upper part of the drying zone 3. These different types of blowing components work together to dry the surface of the packaged material from different angles and directions. The adjustable blowing components 7 can flexibly adjust the blowing angle, wind speed, and air volume according to the different specifications, shapes, and drying requirements of the packaged material, enhancing the adaptability of the equipment and the controllability of the drying effect. The horizontal blowing components 8 and vertical blowing components 9 blow air onto the material from horizontal and vertical directions respectively, enabling more comprehensive coverage of the packaging surface, removing moisture, and improving drying efficiency.

[0047] In one specific embodiment, the different blowing components are alternately arranged at intervals in the upper part of the drying area 3 to ensure that the material packaging can be fully dried; each of the blowing components is connected to an external air pump through an air pipe. Preferably, in one specific embodiment, an air pump is provided inside the frame 1 and is connected to each of the blowing components through an air pipe to provide blowing airflow.

[0048] The feeding conveyor belt 2 and the chain mesh conveyor belt 10 are conventional material conveying components, and their specific structures will not be described in detail here. The frame 1 is equipped with corresponding air valve components, control components, etc., to facilitate the control of the airflow size and opening and closing status of the blowing component, as well as the adjustment of the conveying speed of the feeding conveyor belt 2 and the chain mesh conveyor belt 10.

[0049] like Figure 5-6As shown, the adjustable blower assembly 7 includes: a second mounting bracket 701, which is fixedly connected to the frame 1. The second mounting bracket 701 is provided with a plurality of first mounting plates 702. The first mounting plates 702 are L-shaped, and the horizontal and vertical side plates of the first mounting plates 702 are provided with second mounting grooves 703.

[0050] A rotating seat 704 is provided on the vertical side plate of the first mounting plate 702, and a tornado-type air knife 705 is provided on the rotating seat 704.

[0051] like Figure 6 As shown, the rotating seat 704 includes: a second mounting plate 7041, which cooperates with the second mounting groove 703. A rotating rod 7042 is rotatably connected to the second mounting plate 7041. An extension plate 7043 is rotatably connected to the end of the rotating rod 7042. The tornado-type air knife 705 is provided on the extension plate 7043.

[0052] The first mounting plate 702 is designed in an L-shape, and both its horizontal and vertical side plates have second mounting slots 703, which greatly increases the flexibility of installation. The second mounting slots 703 allow for easy adjustment of the position of the first mounting plate 702 on the second mounting frame 701 to adapt to different drying requirements and equipment layouts. A rotating seat 704 is provided on the vertical side plate of the first mounting plate 702, and a tornado-type air knife 705 is mounted on the rotating seat 704. The rotating seat 704 allows the tornado-type air knife 705 to rotate at multiple angles, enabling the tornado-type air knife 705 to flexibly adjust the blowing angle according to the shape, size, and drying requirements of the packaged material.

[0053] The Tornado-style air knife 705 uses a spiral air duct design to create a tornado-like rotating effect inside the air knife. This rotating airflow is ejected at high speed from the air knife's opening, forming a powerful and concentrated air curtain that can efficiently act on the packaging surface, quickly removing moisture. The rotating airflow can evenly cover all surfaces of the packaging, including irregularly shaped packaging, ensuring that moisture is effectively removed from the entire packaging surface and avoiding the problem of localized residual moisture.

[0054] When a company produces a variety of packaged products with different specifications and shapes, the adjustable air blowing assembly 7 can adapt well to this diversity. By flexibly adjusting the installation position and blowing angle, the same air blowing assembly can provide effective drying services for different packaged products, improving the versatility and applicability of the equipment and reducing the cost for companies to equip different products with different drying equipment.

[0055] like Figure 7As shown, the horizontal blowing assembly 8 includes: a first air supply pipe 801, both ends of which are fixedly connected to the frame 1, and both ends of the first air supply pipe 801 are provided with air inlets. A plurality of pairs of vertical air outlet pipes 802 are connected to the lower part of the first air supply pipe 801, and a plurality of air outlet holes are opened on the adjacent sidewalls of each pair of vertical air outlet pipes 802. The arrangement position of each pair of vertical air outlet pipes 802 corresponds to each pair of guide rods 602 in the guide assembly 6, and is located on the outside of the two guide rods 602 to facilitate the drying of materials conveyed between the guide rods 602.

[0056] like Figure 8 As shown, the vertical air blowing assembly 9 includes: a pair of second air supply pipes 901, the two ends of the second air supply pipes 901 are fixedly connected to the frame 1, and the two ends of the second air supply pipes 901 are provided with air inlets. A horizontal air outlet pipe 902 is connected to the adjacent side of the second air supply pipes 901, and a plurality of air outlet holes are provided on the adjacent side of the horizontal air outlet pipe 902.

[0057] like Figure 9 As shown, one of the two horizontal air outlet pipes 902 in the vertical blowing assembly 9 is located above the chain mesh conveyor belt 10, and the other is located inside the chain mesh conveyor belt 10, for drying the bottom of the material.

[0058] In the vertical blowing assembly 9, one of the two horizontal air outlet pipes 902 is located above the chain mesh conveyor belt 10, and the other is located inside the chain mesh conveyor belt 10. The horizontal air outlet pipe 902 located above can blow air to dry the top of the packaged material, while the horizontal air outlet pipe 902 located inside the conveyor belt can air dry the bottom of the material. This method of blowing air from both above and below simultaneously achieves all-round drying of the material surface, greatly improving the drying effect.

[0059] The chain-type mesh conveyor belt 10 has excellent air permeability, allowing air from the horizontal air outlet 902 located inside to pass smoothly through the mesh structure and act on the bottom of the material. This fully utilizes the characteristics of the conveyor belt, further enhancing the drying effect on the bottom of the material and solving the problem of insufficient drying of the bottom of the material that may exist in traditional drying equipment.

[0060] like Figure 1 As shown, a protective cover 5 is provided on the upper part of the air-drying area 3, and the protective cover 5 is fixedly connected to the frame 1.

[0061] In one specific embodiment, a water collection trough is provided at the lower part of the chain mesh conveyor belt 10, which is used to collect water droplets that drip during the material drying process.

[0062] like Figure 10-11As shown, in one specific embodiment, a transition plate 11 is provided between the feeding conveyor belt 2 and the chain mesh conveyor belt 10. The lower part of the transition plate 11 is parallel to the chain mesh conveyor belt 10 to prevent the product from tipping over during movement, and the width of the lower part of the transition plate 11 is adapted to the width of the product.

[0063] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several modifications and improvements can be made without departing from the inventive concept of the present utility model, and these all fall within the protection scope of the present utility model.

Claims

1. A packaged surface wind energy drying water removal apparatus, characterized by, The utility model relates to a kind of material drying machine, including: Rack (1), the upper portion of the rack (1) is sequentially provided with: feed conveyor belt (2), air-drying area (3) and discharge buffer zone (4) according to material conveying direction; The lower portion of the air-drying area (3) is provided with chain type net conveyor belt (10), and the upper portion of the air-drying area (3) is provided with guide assembly (6), several groups of adjustable air blowing assembly (7), several groups of horizontal air blowing assembly (8) and several groups of vertical air blowing assembly (9); The guide assembly (6) includes: at least two first mounting racks (601), the first mounting rack (601) is fixedly connected with the rack (1), the lower portion of the first mounting rack (601) is provided with at least two pairs of guide rods (602), the fixed rod (603) is vertically provided on the guide rod (602), the upper end of the fixed rod (603) is provided with a light pole fixing seat (604), and the light pole fixing seat (604) is fixedly connected with the first mounting rack (601), the first mounting rack (601) is provided with a first mounting groove (605), the first mounting groove (605) is matched with the light pole fixing seat (604), and the two ends of the guide rod (602) are provided with transition rods (606), and the transition rods (606) are used to guide material into between guide rods (602).

2. A packaged surface wind energy drying water removal apparatus as defined in claim 1, wherein, The adjustable air blowing assembly (7) includes: a second mounting rack (701), the second mounting rack (701) is fixedly connected with the rack (1), and the second mounting rack (701) is provided with a plurality of first mounting plates (702), the first mounting plate (702) is L-shaped, and the horizontal side plate and the vertical side plate of the first mounting plate (702) are both provided with a second mounting groove (703); The vertical side plate of the first mounting plate (702) is provided with a rotating seat (704), and the rotating seat (704) is provided with a tornado air knife (705).

3. A packaged surface wind energy drying water removal apparatus as defined in claim 2, wherein, The rotating seat (704) includes: a second mounting plate (7041), the second mounting plate (7041) is matched with the second mounting groove (703), the second mounting plate (7041) is rotatably connected with a rotating rod (7042), the end of the rotating rod (7042) is rotatably connected with an extension plate (7043), and the extension plate (7043) is provided with the tornado air knife (705).

4. A packaged surface wind energy drying water removal apparatus as defined in claim 1, wherein, The horizontal air blowing assembly (8) includes: a first air supply pipe (801), both ends of the first air supply pipe (801) are fixedly connected with the rack (1), and both ends of the first air supply pipe (801) are provided with air inlets, and the lower portion of the first air supply pipe (801) is communicated with a plurality of pairs of vertical air outlet pipes (802), a plurality of air outlet holes are formed in the adjacent side walls of each pair of vertical air outlet pipes (802).

5. A packaged surface wind energy drying water removal apparatus as defined in claim 1, wherein, The vertical air blowing assembly (9) includes: a pair of second air supply pipes (901), the two ends of the second air supply pipes (901) are fixedly connected to the frame (1), and the two ends of the second air supply pipes (901) are provided with air inlets. A horizontal air outlet pipe (902) is connected to the adjacent side of the second air supply pipes (901), and a plurality of air outlet holes are provided on the adjacent side of the horizontal air outlet pipe (902).

6. A packaged surface wind energy drying water removal apparatus as defined in claim 5, wherein, The vertical blowing assembly (9) has two horizontal air outlet pipes (902), one located above the chain mesh conveyor belt (10) and the other located inside the chain mesh conveyor belt (10), used to air dry the bottom of the material.

7. A packaged surface wind energy drying water removal apparatus as defined in claim 1, wherein, A protective cover (5) is provided on the upper part of the air-drying area (3), and the protective cover (5) is fixedly connected to the frame (1).

8. A packaged surface wind energy drying water removal apparatus as defined in claim 1, wherein, The lower part of the chain mesh conveyor belt (10) is provided with a water collection trough, which is used to collect water droplets that fall during the material drying process.