Blowing cleaning machine
By designing an air-blowing cleaning machine and adopting a linear drive and air-blowing cleaning mechanism, the problem of incomplete cleaning of mechanical parts was solved, realizing automated cleaning and waste collection, and improving the cleaning effect and the cleanliness of the workshop environment.
Patent Information
- Application Number
- CN202423165304.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-21
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-12-21
AI Technical Summary
In existing technologies, it is difficult to thoroughly clean the surface of mechanical parts, especially irregularly shaped parts, and manual operation can easily lead to workshop pollution and waste smearing, making cleaning inconvenient.
Design an air-blowing cleaning machine that uses a linear drive mechanism and an air-blowing cleaning mechanism, combined with a waste collection mechanism, to achieve automated cleaning of mechanical parts, avoiding the scattering of oil and debris. The cleaning and collection work is completed through the cooperation of the air-blowing cleaning mechanism and the waste collection mechanism.
It achieves efficient cleaning of mechanical parts surfaces, avoids workshop pollution, and improves cleaning effectiveness and the cleanliness of the working environment.
Smart Images

Figure CN223789098U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mechanical equipment technology, specifically, it demonstrates an air blowing cleaning machine. Background Technology
[0002] After the mechanical parts are manufactured, their surfaces will have waste chips, oil stains, dust and other contaminants generated during the manufacturing process. The surfaces of the mechanical parts need to be cleaned to ensure their cleanliness and reduce defective costs.
[0003] Currently, mechanical parts are typically cleaned manually. However, manual operation makes it difficult to thoroughly clean the surfaces of mechanical parts, especially when dealing with irregularly shaped parts. Furthermore, manual operation often results in the inability to collect waste materials effectively, causing oil stains, debris, and other contaminants to rub onto the parts, leading to pollution in the factory workshop that is difficult to clean. Utility Model Content
[0004] The purpose of this invention is to provide an air-blowing cleaning machine with good cleaning effect.
[0005] The technical solution is as follows:
[0006] An air-blowing cleaning machine includes a frame, which is hollow inside and open at the center of its front side. A vertically movable baffle is provided on the front side of the frame. A horizontal operating platform is provided in the center of the frame, with an opening at the middle. The operating platform has a linear drive mechanism and a support platform. The linear drive mechanism drives the support platform to freely move in and out of the frame along the extension direction of the operating platform. The surface of the support platform has two sets of placement stations for placing products. Two sets of downward-operating air-blowing cleaning mechanisms are provided in the upper part of the frame to correspond to the products in the two placement stations respectively. A waste collection mechanism is provided in the lower part of the frame.
[0007] Furthermore, the operating platform includes a pair of parallel, spaced-apart mounting side plates. These mounting side plates are positioned against the inner wall of the frame, with one side extending inward into the frame and the other side extending outward beyond the frame. This design avoids interfering with the operation of the air-blowing cleaning mechanism and the waste collection mechanism.
[0008] Furthermore, the linear drive mechanism includes a horizontal guide rail arranged along the length of the mounting side plate. Horizontal sliders are movably mounted on the horizontal guide rail via a snap-fit mechanism. Two horizontal sliders are connected upwards to the bottom surface of the support platform. A linear motor module along the length of one of the mounting side plates is arranged on its surface. One side of the support platform is connected to the displacement end of the linear motor module via an extension frame. In this way, the linear drive mechanism controls the product on the support platform to freely enter and exit the frame, ensuring that the product is fully subjected to the powerful air blowing of the air cleaning mechanism and that the cleaned product can be removed from the frame.
[0009] Furthermore, symmetrical sensor brackets are provided at the rear of the two mounting side plates, and inward-facing through-beam sensors are mounted on these brackets. This set of through-beam sensors automatically identifies whether a product is placed at the workstation, facilitating the operation of the subsequent linear drive mechanism.
[0010] Furthermore, several vertical positioning support columns are arranged on the placement station. The number, height, and placement of the positioning support columns can be adjusted according to the actual product to ensure that the product can be stably lifted.
[0011] Furthermore, each of the inner walls of the baffle plate is movably fitted onto a vertical guide rod via a bushing. The vertical guide rod is fixed to the outer wall of the frame. A vertical cylinder is installed on the front outer wall of the frame, and the output end of the vertical cylinder is connected downward to the top of the baffle plate. In this way, the vertical cylinder controls the up-and-down movement of the baffle plate, allowing it to cover the front opening of the frame. The baffle plate prevents oil, debris, and other contaminants from flying out of the front opening during the cleaning process, ensuring a clean working area.
[0012] Furthermore, a transparent glass plate is provided in the middle of the shielding plate so that personnel can observe the cleaning process of the products inside the rack through the transparent glass plate.
[0013] Furthermore, the air-blowing cleaning mechanism includes a support frame and two sets of air-blowing units mounted on the support frame. Each air-blowing unit is connected to several air-blowing pipes arranged symmetrically in pairs. The lower part of each air-blowing pipe is connected to an air-blowing head, which is positioned at an angle downwards. It primarily uses air pressure to blow away oil, debris, and other contaminants from the surface of the parts.
[0014] Furthermore, each of the four corners of the bottom of the frame is provided with a support foot, and the bottom end face of the frame is open. The bottom of the frame is raised by the support feet.
[0015] Furthermore, the waste collection mechanism includes a drop box and a collection box. The drop box is located inside the lower part of the frame and is funnel-shaped. The collection box is positioned below the drop box. The collection box can be inserted into the bottom of the frame from one side, ensuring that it is positioned below the drop box. This ensures that oil stains and debris on the product are blown off the product surface by the air-blowing cleaning mechanism and fall into the collection box through the drop box, thus completing the collection.
[0016] Compared with the prior art, the beneficial effects of this utility model are as follows: through the cooperation of the linear drive mechanism and the air blowing cleaning mechanism, the mechanical parts are allowed to enter the machine frame and undergo the air blowing cleaning action of strong pressure air, which replaces the traditional manual wiping work. This can prevent the problem of workshop pollution caused by oil stains, waste debris and other debris on the surface of mechanical parts being blown away at will. The blown-off oil stains, waste debris and other debris can be collected by the waste collection mechanism to ensure the cleanliness of the workshop working environment and the cleanliness of the workpiece surface, thereby improving the effect of QR code marking. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of an air-blowing cleaning machine according to an embodiment of the present invention;
[0018] Figure 2 This is a schematic diagram of the control panel portion in an embodiment of the present invention;
[0019] Figure 3 This is a schematic diagram of the shielding plate part in an embodiment of this utility model;
[0020] Figure 4 This is a schematic diagram of the air-blowing cleaning mechanism in an embodiment of this utility model;
[0021] Figure 5 This is a schematic diagram of the waste collection mechanism in an embodiment of the present invention;
[0022] The following are the relevant markings in the attached diagram: 1-Frame, 2-Baffle plate, 3-Operating table, 4-Linear drive mechanism, 5-Bearing platform, 6-Placement station, 7-Air blowing cleaning mechanism, 8-Waste collection mechanism, 11-Support pad, 21-Shaft sleeve, 22-Vertical guide rod, 23-Vertical cylinder, 24-Transparent glass plate, 31-Mounting side plate, 32-Sensor bracket, 33-Through-beam sensor, 41-Horizontal guide rail, 42-Horizontal slider, 43-Linear motor module, 44-Extension frame, 61-Positioning support column, 71-Bracket, 72-Air blowing assembly, 73-Air blowing pipe, 74-Air blowing head, 81-Falling box, 82-Collection box. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.
[0024] This utility model provides an air-blowing cleaning machine to solve the technical problems mentioned in the background art.
[0025] Please see Figures 1 to 5 As shown. The equipment includes a frame 1, which has a vertical frame structure. The frame 1 is hollow inside and has an open design at the center of the front side. A vertically movable cover plate 2 is installed on the front side of the frame 1, which can cover the open front side of the frame 1. A horizontally extending operating platform 3 is installed in the middle of the frame 1, with an opening in the middle. The operating platform 3 has a linear drive mechanism 4 and a support platform 5. The linear drive mechanism 4 drives the support platform 5 to freely enter and exit the frame 1 along the extension direction of the operating platform 3. The surface of the support platform 5 has two sets of product placement stations 6, one on the left and one on the right, for placing two sets of products. Two sets of downward-working air-blowing cleaning mechanisms 7 are installed in the upper part of the frame 1. When the product on the support platform 5 enters the frame 1 and is below the air-blowing cleaning mechanism 7, the air-blowing cleaning mechanism can perform an air-blowing cleaning action on the product. A waste collection mechanism 8 is installed in the lower part of the frame 1 to collect the waste during the air-blowing cleaning process.
[0026] In detail, the operating table 3 includes a pair of parallel and spaced mounting side plates 31. The mounting side plates 31 are respectively set against the two inner side walls of the frame 1. One side of the mounting side plate 31 extends inward into the frame 1, and the other side of the mounting side plate 31 extends outward from the frame 1. This leaves space in the middle of the operating table to ensure the normal operation of the air blowing cleaning mechanism and the waste collection mechanism, and to prevent excessive waste from sticking to the surface of the operating table.
[0027] The linear drive mechanism 4 includes a horizontal guide rail 41 arranged along the length of the mounting side plate 31. Horizontal sliders 42 are movably mounted on the horizontal guide rail 41 via a snap-fit mechanism. Two horizontal sliders 42 are connected upwards to the bottom surface of the support platform 5. A linear motor module 43 is arranged along the length of one of the mounting side plates 31. One side of the support platform 5 is connected to the displacement end of the linear motor module 43 via an extension frame 44. Thus, the linear drive mechanism controls the product on the support platform to freely enter and exit the frame. Driving the product into the frame ensures it receives sufficient powerful airflow from the air-blowing cleaning mechanism, while driving the product out of the frame ensures it can smoothly exit the frame after cleaning.
[0028] The two mounting side plates 31 are equipped with symmetrical sensor brackets 32 at their rear, and inward-facing through-beam sensors 33 are mounted on the sensor brackets 32. This set of through-beam sensors automatically identifies whether a product is placed at the placement station, so that the subsequent linear drive mechanism can operate.
[0029] In detail, several vertical positioning support columns 61 are arranged on the placement station 6. The number, height, and placement of the positioning support columns can be adjusted according to the actual product to ensure that the product can be lifted stably.
[0030] In detail, the inner walls of both sides of the baffle 2 are movably fitted onto a vertical guide rod 22 via bushings 21. The vertical guide rod 22 is fixed to the outer wall of the frame 1. A vertical cylinder 23 is installed on the front outer wall of the frame 1, and the output end of the vertical cylinder 23 is connected downward to the top of the baffle 2. In this way, the vertical cylinder controls the up and down movement of the baffle, so that the baffle can cover the front opening of the frame. The baffle prevents oil, waste, etc. from flying out of the front opening of the frame during the cleaning process, ensuring the cleanliness of the work area.
[0031] A transparent glass plate 24 is installed in the middle of the shielding plate 2 so that personnel can observe the cleaning process of the products inside the rack through the transparent glass plate.
[0032] In detail, the air-blowing cleaning mechanism 7 includes a support 71 and two sets of air-blowing units 72 mounted on the support 71. The air-blowing units 72 are used to connect to an external air supply source. Several air-blowing pipes 73 are connected to the air-blowing units 72, arranged symmetrically in pairs. The lower part of the air-blowing pipes 73 is connected to air-blowing heads 74, which are arranged at an angle downwards. It mainly uses air pressure to blow away oil stains, debris, etc. from the surface of the parts, and the angled air-blowing heads can better clean the sides of the mechanical parts, resulting in a more comprehensive cleaning range.
[0033] In this embodiment, each of the four bottom corners of the frame 1 is provided with a support foot 11, and the bottom end face of the frame 1 is open. The bottom of the frame is raised by the support feet.
[0034] The waste collection mechanism 8 includes a drop box 81 and a collection box 82. The drop box 81 is located inside the lower part of the frame 1 and is funnel-shaped. The collection box 82 is located below the drop box 81. The collection box can be inserted into the bottom of the frame from one side, so that the collection box is located below the drop box. This ensures that oil stains, waste, etc. on the product are blown off the product surface by the air cleaning mechanism and fall into the collection box through the drop box, thus completing the collection.
[0035] The above descriptions are merely some embodiments of this utility model. For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and all such modifications and improvements fall within the protection scope of this utility model.
Claims
1. A blow cleaning machine characterized by, The machine frame is internally hollow and has an open middle part in the front side, and a front side of the machine frame is provided with a vertically movable shielding plate, a middle part of the machine frame is provided with a horizontal operation table, a middle position of the operation table is open, the operation table is provided with a linear driving mechanism and a carrying table, the carrying table is driven by the linear driving mechanism to freely enter and exit the machine frame along the extension direction of the operation table, and a surface of the carrying table is provided with two groups of placing stations for placing products; two groups of downward working air blowing cleaning mechanisms are arranged in the upper part of the machine frame to correspond to the products on the two groups of placing stations respectively, and a waste collecting mechanism is arranged in the lower part of the machine frame.
2. A pneumatic cleaning machine according to claim 1, characterized in that The operation table comprises a pair of parallel and spaced installation side plates, the installation side plates are arranged against the inner side walls of the machine frame, one side of the installation side plates extends into the machine frame, and the other side of the installation side plates extends out of the machine frame.
3. A pneumatic cleaning machine according to claim 2, wherein The linear driving mechanism comprises horizontal guide rails arranged along the length direction of the installation side plates, horizontal sliding blocks are movably connected to the horizontal guide rails in a clamping manner, and the two horizontal sliding blocks are connected to the bottom surface of the carrying table upwardly, a surface of one of the installation side plates is provided with a linear motor module along the length direction of the installation side plate, and one side of the carrying table is connected to a displacement end of the linear motor module through an extension frame.
4. A pneumatic cleaning machine according to claim 3, wherein Sensor supports that are left-right symmetrical are arranged at the rear parts of the two installation side plates, and inward facing opposite sensors are arranged on the sensor supports.
5. A pneumatic cleaning machine according to claim 1, wherein A plurality of vertical positioning support columns are arranged on the placing stations.
6. A pneumatic cleaning machine according to claim 1, wherein Inner walls of two sides of the shielding plate are movably sleeved on vertical guide rods through shaft sleeves, the vertical guide rods are fixed to the outer walls of the machine frame, a vertical cylinder is arranged on the front side of the machine frame, and an output end of the vertical cylinder is connected to the top of the shielding plate downwardly.
7. A pneumatic cleaning machine according to claim 6, wherein A transparent glass plate is arranged at a middle position of the shielding plate.
8. A pneumatic cleaning machine according to claim 1, wherein The air blowing cleaning mechanism comprises a support and two groups of air blowing groups arranged on the support, a plurality of left-right symmetrical air blowing pipes are arranged on the air blowing groups in communication, air blowing heads are arranged at the lower parts of the air blowing pipes in communication, and the air blowing heads are arranged in a downward inclined posture.
9. The air blow cleaning machine according to claim 1, wherein Support pads are arranged at four corners of the bottom of the machine frame, and the bottom end surface of the machine frame is open.
10. A pneumatic cleaning machine according to claim 9, wherein The waste collecting mechanism comprises a falling box and a collecting box, the falling box is arranged below the machine frame, and the falling box is in a funnel shape, and the collecting box is arranged below the falling box.