Dedusting suction demonstration cabinet for dust collector
By designing a vacuum cleaner suction power demonstration cabinet, the problem of existing demonstration cabinets being unable to intuitively display the suction power and cleaning effect of vacuum cleaners was solved, enabling customers to have an intuitive understanding and real experience of the vacuum cleaner's performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2026-04-03
AI Technical Summary
Existing demonstration cabinets cannot visually showcase the vacuum cleaner's suction power and dust removal capabilities on uneven surfaces, making it difficult for customers to fully understand the product's performance.
A vacuum cleaner suction power demonstration cabinet was designed, which includes a cabinet body, countertop, demonstration material box, drawers, door panels, brackets, corrugated plates and transparent demonstration window. By setting up air inlets, feeding ports, air inlets and corrugated plates to simulate complex ground environments, the suction power and cleaning effect of the vacuum cleaner are demonstrated.
It provides an intuitive product experience, allowing customers to clearly observe the suction power of the vacuum cleaner and its cleaning effect on uneven surfaces, ensuring that every corner is thoroughly cleaned.
Smart Images

Figure CN224082118U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of demonstration devices, and specifically relates to a vacuum cleaner suction power demonstration cabinet. Background Technology
[0002] Small home appliances have become a standard feature of family life, with a wide variety of choices on the market, each product offering its own unique functions. To boost sales, merchants often demonstrate the unique functions and advantages of these products on-site, using visual demonstrations to gain consumers' trust and favor, thereby encouraging them to purchase.
[0003] Currently available demonstration cabinets fail to fully showcase the true capabilities of vacuum cleaners. Customers lack a direct reference point and cannot truly perceive the vacuum cleaner's performance on uneven surfaces. Furthermore, existing demonstration methods fail to provide convincing visual evidence of whether a vacuum cleaner can completely remove dust. Therefore, the ability to achieve complete dust removal cannot be clearly demonstrated to consumers through existing demonstration cabinets, making it difficult for customers to fully understand the product's performance. Utility Model Content
[0004] Purpose of the utility model: In order to solve the above problems, the purpose of this utility model is to provide a vacuum cleaner suction power demonstration cabinet, which can intuitively show the suction power of the vacuum cleaner and allow people to intuitively feel the effectiveness of the vacuum cleaner.
[0005] Technical Solution: A vacuum cleaner suction demonstration cabinet includes a cabinet body, a countertop, a demonstration material box, drawers, doors, a support frame, a corrugated board, and a demonstration window; the drawers, doors, corrugated board, and demonstration window are respectively mounted on the cabinet body; the countertop is installed on the upper part of the cabinet body, and the support frame is installed on the countertop; the demonstration material box is connected to the lower part of the countertop and is disposed inside the cabinet body. This application has a simple structure, can be mass-produced, and is suitable for most demonstration scenarios.
[0006] Furthermore, the work surface includes a demonstration air intake and a feeding port; the air intake is located on the side of the work surface and is connected to the demonstration material box; the feeding port is arranged in the same direction as the air intake, and its lower end is connected to a feeding hopper. This application features an air intake, which overlaps with the vacuum cleaner's air intake during demonstration.
[0007] Furthermore, the bottom of the demonstration material box is vertically connected to an air inlet, which is shaped like a concentrator nozzle. This application features an air inlet, and its shape makes it easier to concentrate airflow.
[0008] Furthermore, the feed port is elliptical in shape, and a movable plate is provided on its surface. The elliptical shape of the feed port in this application provides different material flow characteristics compared to a circular or square opening.
[0009] Furthermore, the feeding hopper is funnel-shaped and inclined downwards. The funnel-shaped feeding hopper designed in this application helps guide the material to flow downwards.
[0010] Furthermore, a sloping feed inlet is assembled in the middle of the demonstration material box; the tail end of the feeding hopper is connected to the feed inlet of the demonstration material box. This application makes full use of the spatial structure, cleverly setting up the feeding hopper and the demonstration material box in a limited space.
[0011] Furthermore, the main body of the cabinet is a sheet metal welded frame structure, and the surface of the cabinet is powder coated. This application uses sheet metal materials to manufacture the cabinet, which has high strength and rigidity, can withstand significant weight and pressure, and ensures the stability and durability of the cabinet.
[0012] Furthermore, the corrugated plate has a wave-like surface and a thickness of 10-20mm. The corrugated plate in this application can be used to demonstrate the vacuum cleaner's suction effect on uneven, bumpy surfaces.
[0013] Furthermore, the bracket is made of metal material at least 2mm thick, and the surface is powder coated. The use of thick metal material and powder coating ensures its load-bearing capacity and resistance to rust.
[0014] Furthermore, the demonstration window and the demonstration material box are positioned in the same direction, and both the demonstration window and the demonstration material box are made of transparent material. The use of transparent material in this application allows for a more intuitive view of the demonstration scene.
[0015] As can be seen from the above technical solution, this utility model has the following beneficial effects:
[0016] 1. This application provides customers with a more intuitive and convincing product experience by proposing a vacuum cleaner suction power demonstration cabinet. This demonstration cabinet effectively showcases the vacuum cleaner's key performance indicators, including but not limited to suction power, performance on uneven surfaces, and ability to thoroughly remove dust.
[0017] 2. This application proposes a vacuum cleaner suction power demonstration cabinet, which is designed with a visualization function so that customers can clearly observe the suction power of the vacuum cleaner; when the vacuum cleaner is working, customers can see test materials of different sizes and weights being easily sucked in, and can directly feel the powerful suction through the numerical changes on the display screen.
[0018] 3. This application proposes a vacuum cleaner suction power demonstration cabinet. In order to improve the cleaning effect on uneven surfaces, the demonstration cabinet is specially set up with a corrugated plate to simulate the test area of complex floor environments in real life. Customers can witness firsthand how the vacuum cleaner can efficiently deal with different floor conditions and ensure that every corner is thoroughly cleaned. Attached Figure Description
[0019] Figure 1 An exploded structural diagram of a vacuum cleaner suction power demonstration cabinet.
[0020] Figure 2 A schematic diagram of the structure of a vacuum cleaner suction power demonstration cabinet;
[0021] Figure 3 A side perspective view of a vacuum cleaner suction power demonstration cabinet;
[0022] Explanation of reference numerals in the attached diagram: 1-Cabinet; 2-Countertop; 3-Demonstration material box; 4-Drawer; 5-Door panel; 6-Bracket; 7-Corrugated plate; 8-Demonstration window; 9-Demonstration air intake; 10-Feeding port; 11-Feeding hopper; 12-Inlet; 13-Air inlet. Detailed Implementation
[0023] The present invention will be further explained below with reference to the accompanying drawings and specific embodiments.
[0024] Example 1
[0025] This embodiment describes a vacuum cleaner suction power demonstration cabinet. Please refer to it. Figure 1 As shown, the cabinet includes a cabinet body 1, a countertop 2, a demonstration material box 3, drawers 4, doors 5, a bracket 6, a corrugated board 7, and a demonstration window 8. The drawers 4, doors 5, corrugated board 7, and demonstration window 8 are respectively installed on the cabinet body 1. The countertop 2 is installed on the upper end of the cabinet body 1, and the bracket 6 is installed on the countertop 2. The lower end of the countertop 2 is connected to the demonstration material box 3, which is located inside the cabinet body 1.
[0026] Please refer to Figure 2 As shown, the tabletop 2 includes a demonstration air intake 9 and a feeding port 10; the air intake is located on the side of the tabletop 2 and is connected to the demonstration material box 3; the feeding port 10 is arranged in the same direction as the air intake, and the lower end of the feeding port 10 is connected to the feeding hopper 11.
[0027] Please refer to Figure 3As shown, the bottom of the demonstration material box 3 is vertically connected to the air inlet 13, which is shaped like a concentrator nozzle. The feeding port 10 is elliptical and has a movable plate on its surface. The feeding hopper 11 is funnel-shaped and slopes downwards, with its tail end connected to the demonstration material box 3. The demonstration window 8 is aligned with the demonstration material box 3, and both the demonstration window 8 and the box body of the demonstration material box 3 are made of transparent material.
[0028] The main body of the cabinet 1 is a sheet metal welded frame structure, and the surface of the cabinet 1 is powder coated. The surface of the corrugated plate 7 is wavy, and the thickness is 10-20mm. The support 6 is made of metal material with a thickness of at least 2mm, and the surface is powder coated.
[0029] In practical application, the front of cabinet 1 serves as a demonstration window 8. A rectangular window is opened on the flat surface of cabinet 1, and a transparent acrylic demonstration window 8 with a thickness of at least 5mm is flatly attached to the rectangular window. A 15mm thick demonstration acrylic corrugated plate 7 is installed on one side to demonstrate the vacuum cleaner's cleaning effect on uneven surfaces. At the back, above is a drawer 4, and below is a door panel 5. The empty spaces inside cabinet 1 are for regular storage. A vacuum cleaner support 6 is installed above the tabletop. It is made of 2mm thick metal and powder coated to prevent rust. It is used to support the vacuum cleaner for demonstration and avoid the need to hold the vacuum cleaner for a long time during the demonstration. A demonstration air intake 9 is opened on the tabletop. During the demonstration, the vacuum cleaner air intake overlaps with the demonstration air intake 9. The vacuum cleaner is turned on and the air is removed from the demonstration material box 3, so that the inside of the demonstration material box 3 is in a vacuum state. The demonstration materials stored in the demonstration material box 3 float up inside the demonstration material box 3 as the vacuum cleaner continues to suck air.
[0030] The back of the demonstration material box 3 is made of acrylic sheet with a thickness of at least 5mm. A sloping feed inlet 12 is assembled in the middle part for filling with millet. The front of the demonstration material box 3 is made of transparent acrylic sheet with a thickness of at least 5mm so that consumers can observe the suction power of the vacuum cleaner from the front during the demonstration. The bottom is sealed with 5mm acrylic.
[0031] To find the most suitable material for demonstrating vacuuming performance, this application conducted multiple rounds of experiments, testing various types of particulate matter. These materials include, but are not limited to: dust, millet, cassia seeds, rice, wheat, and flour. Each material was selected based on its unique physical properties to fully demonstrate the vacuum cleaner's cleaning capabilities for different materials and particle sizes.
[0032] After a series of rigorous comparative experiments, and following a demonstration using a vacuum cleaner, millet particles left the least residue on the rectangular demonstration window 8 compared to other materials. Almost no residue was observed, indicating that millet is not only easily sucked up by the vacuum cleaner but also leaves minimal traces or fine particles during cleaning. Furthermore, the millet particles are of a suitable size, neither too small to be difficult to collect (like dust) nor too large to affect suction efficiency or device performance (as might occur when using larger particles).
[0033] Therefore, after comprehensively considering factors such as the effectiveness of the vacuuming demonstration, visual clarity, and ease of operation, Xiaomi was ultimately selected as the best material for demonstrating the dust removal effect. This choice not only ensured the efficiency and intuitiveness of the demonstration process, but also provided the audience with the most realistic cleaning effect experience.
[0034] 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 improvements can be made without departing from the principle of the present utility model, and these improvements should also be considered within the protection scope of the present utility model.
Claims
1. A demonstration stand for a dust extraction vacuum cleaner, characterised in that, Including cabinet (1), table top (2), demonstration material box (3), drawer (4), door panel (5), support (6), corrugated board (7), demonstration window (8), the drawer (4), door panel (5), corrugated board (7), demonstration window (8) are set up on cabinet (1) respectively, the cabinet (1) upper end installs table top (2), the table top (2) is installed support (6), the table top (2) lower end is connected demonstration material box (3), and the demonstration material box (3) is set up in cabinet (1), the surface of corrugated board (7) is wave-shaped.
2. A demonstration stand for a suction cleaner dust extraction force according to claim 1, characterised in that, The table top (2) includes demonstration suction port (9), charging port (10), the suction port is set up in the side position of table top (2), and the suction port is communicated demonstration material box (3), the charging port (10) is set up with the suction port in the same direction, and the lower end of the charging port (10) is communicated with charging hopper (11).
3. A demonstration stand for a suction cleaner dust extraction force according to claim 2, wherein, The bottom end of demonstration material box (3) is vertically communicated with air inlet (13), and the air inlet (13) is in the shape of a wind collecting nozzle.
4. A demonstration stand for a suction cleaner dust extraction force according to claim 2, wherein, The charging port (10) is oval, and the surface is provided with a movable plate.
5. The demonstration stand of claim 2, wherein the demonstration stand further comprises a display stand for displaying the cleaning appliance. 5 The charging hopper (11) is funnel-shaped, and is inclined from top to bottom.
6. A demonstration stand for a suction cleaner dust extraction force according to claim 5, wherein, The middle part of demonstration material box (3) is assembled with slope-shaped feed inlet (12), and the tail end of charging hopper (11) is communicated with the feed inlet (12) of demonstration material box (3).
7. The demonstration stand of claim 1, wherein: The cabinet (1) is mainly a sheet metal welded frame structure, and the surface of the cabinet (1) is powder coated.
8. The demonstration stand of claim 1, wherein: The thickness of the corrugated board (7) is 10-20mm.
9. The demonstration stand of claim 1, wherein, The support (6) is made of metal material with a thickness of at least 2mm, and the surface is powder coated.
10. The demonstration stand for cleaning suction power of a vacuum cleaner according to claim 1, characterized in that, The demonstration window (8) is set in the same direction with the demonstration material box (3), and the demonstration window (8) and the box body of the demonstration material box (3) are made of transparent material.