Vacuum pulse industrial dust collector

By designing storage components in vacuum pulse industrial vacuum cleaners, the problem of staff needing to lift the bellows when using the vacuum cleaner is solved, and the automatic storage of the pipe is achieved, reducing operational complexity and work burden.

CN222885336UActive Publication Date: 2025-05-20JIANGSU QUANFENG ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202421896457.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-05-20
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

During the use of existing industrial vacuum cleaners, staff members need to lift the bellows, which increases the operational complexity and workload.

Method used

A vacuum pulse industrial vacuum cleaner is designed, integrating storage components, and the corrugated tube is stored on the vacuum cleaner through a winding unit and a bundling unit, reducing the preparation work during operation.

Benefits of technology

Through the design of storage components, the preparation work of staff when using the vacuum cleaner is reduced, the operation complexity and work burden are reduced, and the storage effect of the vacuum cleaner on additional components is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of industrial dust collectors, in particular to a vacuum pulse industrial dust collector which comprises a base, a machine body and a containing assembly, the machine body is installed on the upper surface of the base, a corrugated telescopic pipe is installed on the upper surface of the machine body, a stand column is installed on the upper surface of the base, and a dust collecting bin is installed on the upper surface of the base. The corrugated telescopic pipe is connected with the upper surface of the dust collection bin, the stand column is connected with the arc face of the dust collection bin, the arc face of the dust collection bin is fixedly connected with a connector, and the storage assembly is arranged on the surface of the stand column. The storage assembly comprises a winding unit, and the winding unit comprises a supporting column. According to the dust collector, due to the fact that the containing assembly is arranged, the pipeline used by the dust collector can be contained in the dust collector, the problem that work burdens are increased due to the fact that more preparatory work is conducted when workers use the dust collector is solved, and the containing effect of the dust collector on additional parts is further improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of industrial vacuum cleaners, in particular to a vacuum pulse industrial vacuum cleaner. Background Art

[0002] The vacuum pulse industrial vacuum cleaner is a high-performance industrial cleaning device. It uses vacuum suction to strongly suck dust and sundries, and the pulse technology is used to regularly clean the filter to prevent blockage. This kind of vacuum cleaner is applicable to various industrial places, such as factories, workshops, warehouses, etc. It can effectively remove a large amount of dust, debris and particulate matter, keep the environment clean, and has remarkable advantages, such as high dust suction efficiency, good filtering effect and strong durability. However, it also has some deficiencies, such as large volume and complex operation. In the future, it is expected to be further improved in aspects such as intelligence and portability to better meet the industrial cleaning needs.

[0003] The prior art such as the utility model with the publication number of CN202860308U discloses a pulse industrial vacuum cleaner. This patent adopts a dust treatment cylinder, and is characterized by further comprising a pulse valve, an air compressor, a differential pressure sensor and a gas storage tank. The gas storage tank enters the filter bag in the dust treatment cylinder through the pulse valve and the venturi tube. It also comprises a differential pressure sensor that can detect the pressure inside and outside the filter bag, and the differential pressure sensor is communicatively connected with the pulse valve. The utility model adopting the above technical scheme has the following beneficial effects: This product uses a vacuum pump as the power and adopts the high-vacuum adsorption principle to clean and collect dust, bulk materials and iron filings, which will not cause secondary dust flying and secondary pollution, and can avoid manual cleaning by workers. At the same time, this product is also equipped with a micro air compressor and a gas storage tank, and uses the pulse high-pressure gas source to automatically clean the filter bag to ensure the cleanliness of the filter bag at any time. It can be continuously used under high-concentration dust conditions and does not require manual cleaning of the filter bag, belonging to maintenance-free, solving the problems that the filter bags and filter elements of general industrial vacuum cleaners are mostly cleaned manually, mechanically vibrated or manually vibrated. This cleaning method can only meet the short-term use of low-concentration dust. When working in high-concentration dust for less than 10 minutes, the filter bags and filter elements will be blocked and cannot work normally. At this time, it is necessary to stop the machine and remove the filter bags for cleaning, or stop the machine for cleaning.

[0004] During the process of using an industrial vacuum cleaner, there is a problem that most of the existing industrial vacuum cleaners on the market rely on the installed corrugated pipe to adsorb dust in different areas during operation. After the adsorption operation is completed, the corrugated pipe will be disassembled and stored separately. Since the corrugated pipe is stored separately, when the user moves the industrial vacuum cleaner, it is necessary to separately carry the corrugated pipe to the use area. In this way, the preparatory work that the staff needs to do when using the vacuum cleaner increases, resulting in an increased work burden. Summary of the Utility Model

[0005] The purpose of the present utility model is to solve the disadvantages existing in the prior art that when a user moves an industrial vacuum cleaner, a corrugated pipe needs to be separately taken to the use area. In this way, the preparatory work that the staff needs to do when using the vacuum cleaner increases, resulting in an increased work burden, and a vacuum pulse industrial vacuum cleaner is proposed.

[0006] In order to achieve the above object, the present utility model adopts the following technical scheme: a vacuum pulse industrial vacuum cleaner, including a base, a body and a storage assembly. The body is installed on the upper surface of the base. A corrugated telescopic pipe is installed on the upper surface of the body. A column is installed on the upper surface of the base. A dust collection bin is installed on the upper surface of the base. The corrugated telescopic pipe is connected to the upper surface of the dust collection bin. The column is connected to the arc surface of the dust collection bin. A joint is fixedly connected to the arc surface of the dust collection bin. The storage assembly is arranged on the surface of the column;

[0007] The storage assembly includes a winding unit. The winding unit includes a support column. The support column is fixedly connected to the side surface of the column. A limiting plate is fixedly connected to the side surface of the support column. The limiting plate is fixedly connected to the side surface of the base. A guiding column is fixedly connected to the side surface of the limiting plate. A T-shaped frame is sleeved on the surface of the guiding column. A guiding strip is fixedly connected to the inner wall of the T-shaped frame. A threaded hole is opened on the surface of the guiding column. A threaded shaft is threadedly connected to the inner wall of the guiding column at the threaded hole. A limiting ring is fixedly connected to the arc surface of the threaded shaft. A positioning sleeve is sleeved on the surface of the threaded shaft. The positioning sleeve is sleeved on the surface of the limiting ring. The positioning sleeve is fixedly connected to the side surface of the positioning frame. A knob is fixedly connected to the side surface of the threaded shaft;

[0008] The storage assembly further includes a bundling unit. The bundling unit includes an L-shaped bracket. The L-shaped bracket is fixedly connected to the side surface of the T-shaped frame. A binding frame is fixedly connected to the upper surface of the L-shaped bracket. A binding strap is fixedly connected to the side surface of the L-shaped bracket. A main magic tape is fixedly connected to the surface of the binding strap. A secondary magic tape is fixedly connected to the side surface of the L-shaped bracket. The surface of the main magic tape is attached to the surface of the secondary magic tape.

[0009] Preferably, the number of the support columns is two. The two support columns are symmetrically arranged about the limiting plate. Through the cooperation of the support column and the base, the position of the limiting plate can be supported, thereby improving the stability and firmness of the limiting plate in the installed state.

[0010] Preferably, a sliding groove is opened on the surface of the guiding column. The guiding strip is slidably connected to the inner wall of the sliding groove. Through the guiding strip installed inside the T-shaped frame, the moving direction of the T-shaped frame can be guided in cooperation with the sliding groove during the movement of the T-shaped frame.

[0011] Preferably, the number of the guiding bars is four, and the four guiding bars are arranged in a circumferential array with respect to the guiding column. The position of the threaded shaft can be constrained by the guiding column. At the same time, through the threaded holes formed in the guiding column, when the staff rotates the threaded shaft, the threaded shaft can move.

[0012] Preferably, the threaded shaft penetrates through the side surface of the T-shaped frame. Two symmetrically arranged convex parts are provided on the arc surface of the knob. Through the cooperation of the threaded shaft and the guiding column, the limiting ring can be driven to move under the operation of the staff.

[0013] Preferably, the binding band is sleeved on the inner wall of the binding frame. The end of the pipeline can be bundled through the binding band to ensure that the end of the pipeline can be restricted in the storage area.

[0014] Compared with the prior art, the advantages and positive effects of the present utility model are as follows:

[0015] In the present utility model, when performing dust removal operations by setting up a storage component, the pipeline is installed on the connector, the switch of the fuselage is turned on, the fuselage is powered on and works in cooperation with the corrugated telescopic pipe to extract the air in the dust collection bin outwards. The air in the dust collection bin is extracted to form a vacuum environment, and the dust in the working area is sucked through the pipeline installed on the connector. When it is necessary to store the pipeline after completing the dust collection operation, the pipeline is wound around the storage area formed by the guiding column and the T-shaped frame. When the wound pipeline is relatively long and it is necessary to adjust the space of the storage area, the knob is rotated clockwise. The knob drives the threaded shaft to rotate. The threaded shaft meshes with the guiding column and pushes the limiting ring outwards. The limiting ring pushes the T-shaped frame under the force and cooperates with the positioning sleeve. The T-shaped frame expands outwards under the guidance of the guiding bar. When the expanded area of the T-shaped frame is suitable for the pipeline, stop rotating the knob, and then continue to wind the pipeline around the storage area. After completing the winding of the pipeline, place the end of the pipeline in the bundling area formed by the L-shaped bracket and the binding band, pull the binding band, and the binding band tightens under the guidance of the binding frame. The tightened binding band cooperates with the L-shaped bracket to bundle the end of the pipeline. After completing the bundling, attach the main magic tape on the binding band to the secondary magic tape to restrict the binding band. By setting up the storage component, the pipeline used by the vacuum cleaner can be stored on the vacuum cleaner, thereby reducing the problem that the staff has a lot of preparatory work when using the vacuum cleaner, increasing the work burden, and further improving the storage effect of the vacuum cleaner on additional components. Description of the Drawings

[0016] Figure 1 is a three-dimensional structural schematic diagram of a vacuum pulse industrial vacuum cleaner proposed by the present utility model;

[0017] Figure 2 is a rear-view structural schematic diagram of a vacuum pulse industrial vacuum cleaner proposed by the present utility model;

[0018] Figure 3 The structural schematic diagram of the storage component of a vacuum pulse industrial vacuum cleaner is proposed for the present utility model;

[0019] Figure 4 A vacuum pulse industrial vacuum cleaner is proposed for the present utility model Figure 3 The structural schematic diagram at position A in it;

[0020] Figure 5 The structural schematic diagram of the bundling unit of a vacuum pulse industrial vacuum cleaner is proposed for the present utility model;

[0021] Figure 6 A vacuum pulse industrial vacuum cleaner is proposed for the present utility model Figure 5 The structural schematic diagram at position B in it.

[0022] Legend:

[0023] 1. Base; 2. Body; 3. Corrugated telescopic tube; 4. Column; 5. Dust collection bin; 6. Connector; 7. Storage component; 71. Winding unit; 711. Support column; 712. Limiting plate; 713. Guide column; 714. T-shaped frame; 715. Guide strip; 716. Threaded shaft; 717. Limiting ring; 718. Positioning sleeve; 719. Knob; 72. Bundling unit; 721. L-shaped bracket; 722. Restraining frame; 723. Strapping; 724. Main magic tape; 725. Sub magic tape. Specific implementation manners

[0024] Please refer to Figures 1 - 6 , the present utility model provides a technical solution: a vacuum pulse industrial vacuum cleaner, including a base 1, a body 2 and a storage component 7, the body 2 is installed on the upper surface of the base 1, a corrugated telescopic tube 3 is installed on the upper surface of the body 2, a column 4 is installed on the upper surface of the base 1, a dust collection bin 5 is installed on the upper surface of the base 1, the corrugated telescopic tube 3 is connected to the upper surface of the dust collection bin 5, the column 4 is connected to the arc surface of the dust collection bin 5, a connector 6 is fixedly connected to the arc surface of the dust collection bin 5, and the storage component 7 is arranged on the surface of the column 4.

[0025] In this embodiment: The storage component 7 includes a winding unit 71. The winding unit 71 includes a support column 711. The support column 711 is fixedly connected to the side surface of the vertical column 4. A limiting plate 712 is fixedly connected to the side surface of the support column 711. The limiting plate 712 is fixedly connected to the side surface of the base 1. A guiding column 713 is fixedly connected to the side surface of the limiting plate 712. A T-shaped frame 714 is sleeved on the surface of the guiding column 713. A guiding strip 715 is fixedly connected to the inner wall of the T-shaped frame 714. A threaded hole is formed in the surface of the guiding column 713. A threaded shaft 716 is threadedly connected to the inner wall of the guiding column 713 at the threaded hole. A limiting ring 717 is fixedly connected to the arc surface of the threaded shaft 716. A positioning sleeve 718 is sleeved on the surface of the threaded shaft 716. The positioning sleeve 718 is sleeved on the surface of the limiting ring 717. The positioning sleeve 718 is fixedly connected to the side surface of the positioning frame. A knob 719 is fixedly connected to the side surface of the threaded shaft 716;

[0026] The storage component 7 further includes a bundling unit 72. The bundling unit 72 includes an L-shaped bracket 721. The L-shaped bracket 721 is fixedly connected to the side surface of the T-shaped frame 714. A restraint frame 722 is fixedly connected to the upper surface of the L-shaped bracket 721. A binding strap 723 is fixedly connected to the side surface of the L-shaped bracket 721. A main magic tape 724 is fixedly connected to the surface of the binding strap 723. A secondary magic tape 725 is fixedly connected to the side surface of the L-shaped bracket 721. The surface of the main magic tape 724 is attached to the surface of the secondary magic tape 725.

[0027] Specifically, the number of the support columns 711 is two. The two support columns 711 are symmetrically arranged left and right with respect to the limiting plate 712. Through the cooperation of the support column 711 and the base 1, the position of the limiting plate 712 can be supported, thereby improving the stability and firmness of the limiting plate 712 in the installed state.

[0028] Specifically, a sliding groove is formed in the surface of the guiding column 713. The guiding strip 715 is slidably connected to the inner wall of the sliding groove.

[0029] In this embodiment: Through the guiding strip 715 installed inside the T-shaped frame 714, during the movement of the T-shaped frame 714, the movement direction of the T-shaped frame 714 can be guided in cooperation with the sliding groove.

[0030] Specifically, the number of the guiding strips 715 is four. The four guiding strips 715 are arranged in a circular array with respect to the guiding column 713. The position of the threaded shaft 716 can be restricted by the guiding column 713. At the same time, through the threaded hole formed in the guiding column 713, when the staff rotates the threaded shaft 716, the threaded shaft 716 can move.

[0031] In this embodiment: The threaded shaft 716 penetrates through the side surface of the T-shaped frame 714. Two symmetrically arranged convex portions are provided on the arc surface of the knob 719.

[0032] In this embodiment: Through the cooperation of the threaded shaft 716 and the guiding column 713, the limiting ring 717 can be driven to move under the operation of the staff.

[0033] Specifically, the strap 723 is sleeved on the inner wall of the restraint frame 722, and the end of the pipeline can be bundled through the strap 723 to ensure that the end of the pipeline can be restricted in the storage area.

[0034] Working principle: When performing dust removal operations, install the pipeline on the joint 6, turn on the switch of the fuselage 2, the fuselage 2 is powered on and works in cooperation with the corrugated expansion pipe 3 to extract the air in the dust collection bin 5 outward. The air in the dust collection bin 5 is extracted to form a vacuum environment, and the dust in the working area is sucked through the pipeline installed on the joint 6; when it is necessary to store the pipeline after the vacuuming operation, wind the pipeline into the storage area formed by the guiding column 713 and the T-shaped frame 714. When the wound pipeline is relatively long and the space of the storage area needs to be adjusted, rotate the knob 719 clockwise. The knob 719 drives the threaded shaft 716 to rotate. The threaded shaft 716 meshes with the guiding column 713 and pushes the limiting ring 717 outward. The limiting ring 717 is forced to cooperate with the positioning sleeve 718 to push the T-shaped frame 714. The T-shaped frame 714 unfolds outward under the guidance of the guiding strip 715. When the area where the T-shaped frame 714 unfolds is suitable for the pipeline, stop rotating the knob 719, and then continue to wind the pipeline into the storage area. After the pipeline is wound, place the end of the pipeline in the bundling area formed by the L-shaped bracket 721 and the strap 723, pull the strap 723, and the strap 723 tightens under the guidance of the restraint frame 722. The tightened strap 723 cooperates with the L-shaped bracket 721 to bundle the end of the pipeline. After the bundling is completed, attach the main magic tape 724 on the strap 723 to the secondary magic tape 725 to restrict the strap 723. By setting the storage component 7, the pipeline used by the vacuum cleaner can be stored on the vacuum cleaner, thereby reducing the problem that the staff has a lot of preparatory work when using the vacuum cleaner, increasing the work burden, and further improving the storage effect of the vacuum cleaner on additional components.

Claims

1. A vacuum pulse industrial vacuum cleaner, comprising a base (1), a body (2) and a storage assembly (7), characterized in that: The body (2) is mounted on the upper surface of the base (1); a corrugated telescopic tube (3) is mounted on the upper surface of the body (2); a column (4) is mounted on the upper surface of the base (1); a dust collecting bin (5) is mounted on the upper surface of the base (1); the corrugated telescopic tube (3) is connected to the upper surface of the dust collecting bin (5); the column (4) is connected to the arc surface of the dust collecting bin (5); a joint (6) is fixedly connected to the arc surface of the dust collecting bin (5); and the storage assembly (7) is arranged on the surface of the column (4); The storage assembly (7) comprises a winding unit (71), the winding unit (71) comprising a support column (711), the support column (711) being fixedly connected to the side surface of the column (4), the side surface of the support column (711) being fixedly connected to a limiting plate (712), the limiting plate (712) being fixedly connected to the side surface of the base (1), the side surface of the limiting plate (712) being fixedly connected to a guide column (713), the surface of the guide column (713) being sleeved with a T-shaped frame (714), the inner wall of the T-shaped frame (714) being fixedly connected to a guide column (713). The guide post (713) is provided with a threaded hole on its surface, the guide post (713) is located on the inner wall of the threaded hole and is threadedly connected to a threaded shaft (716), the arc surface of the threaded shaft (716) is fixedly connected to a limiting ring (717), a positioning sleeve (718) is sleeved on the surface of the threaded shaft (716), the positioning sleeve (718) is sleeved on the surface of the limiting ring (717), the positioning sleeve (718) is fixedly connected to the side surface of the positioning frame, and the side surface of the threaded shaft (716) is fixedly connected to a knob (719); The storage assembly (7) further comprises a binding unit (72), wherein the binding unit (72) comprises an L-shaped bracket (721), wherein the L-shaped bracket (721) is fixedly connected to the side surface of the T-shaped bracket (714), wherein the upper surface of the L-shaped bracket (721) is fixedly connected to the binding frame (722), wherein the side surface of the L-shaped bracket (721) is fixedly connected to a binding belt (723), wherein the surface of the binding belt (723) is fixedly connected to a main Velcro (724), wherein the side surface of the L-shaped bracket (721) is fixedly connected to a secondary Velcro (725), wherein the main Velcro (724) and the secondary Velcro (725) are in contact with each other.

2. A vacuum pulse industrial vacuum cleaner according to claim 1, characterized in that: The number of the support columns (711) is two, and the two support columns (711) are disposed in a left-right symmetrical manner with respect to the limiting plate (712).

3. A vacuum pulse industrial vacuum cleaner according to claim 1, characterized in that: A sliding groove is provided on the surface of the guide column (713), and the guide strip (715) is slidably connected to the inner wall of the sliding groove.

4. A vacuum pulse industrial vacuum cleaner according to claim 1, characterized in that: The number of the guide bars (715) is four, and the four guide bars (715) are arranged in a circular array with respect to the guide column (713).

5. The vacuum pulse industrial vacuum cleaner according to claim 1, characterized in that: The threaded shaft (716) passes through the side surface of the T-shaped frame (714), and the arc surface of the knob (719) is provided with two symmetrically arranged protrusions.

6. A vacuum pulse industrial vacuum cleaner according to claim 1, characterized in that: The binding belt (723) is sleeved with the inner wall of the restraining frame (722).

Citation Information

Patent Citations

  • Pulse industrial vacuum cleaner

    CN202860308U