Carburetor shell polishing device
By designing a carburetor housing polishing device, a dust extraction component is used to absorb the debris and metal dust generated during polishing, thus solving the environmental pollution problem during carburetor housing polishing and achieving a safe and healthy working environment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2026-03-20
AI Technical Summary
The polishing process of existing carburetor housings generates a large amount of debris and metal dust, resulting in a poor working environment and endangering life and health.
Design a carburetor housing polishing device, comprising an I-shaped base, a portal beam, a cylinder, a drive seat, a disc, a polishing roller, and a dust collection component. The dust collection component absorbs the debris and metal dust generated during polishing. The dust is effectively absorbed and treated through a combination of a breathable mesh, a dust collection hood, a dust collection pipe, a fan, a filter, and a collection box.
It effectively absorbs the debris and metal dust generated during the polishing process, improving the working environment and protecting the health and safety of operators.
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Figure CN224011977U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to carburetor shell processing technical field especially relates to a kind of carburetor shell polishing device. BACKGROUND
[0002] As one of key components of fuel engine, carburetor directly influences the working efficiency and stability of engine with its performance and quality.Carburetor shell, as the external protective structure of carburetor, not only needs to have enough strength and sealing property, but also needs to have good appearance quality.Carburetor shell is usually made of metal material (such as aluminum alloy, cast iron, etc.).
[0003] At present, in production and processing process, shell surface can produce burr, scratch, oxide layer and other defects, these defects not only influence the appearance quality of carburetor, but also can cause adverse effect on its subsequent assembly and use performance, therefore, personnel hand-holds polishing equipment to polish carburetor shell, removes surface defects, and improves surface finish.
[0004] But in the above existing mode, when polishing treatment is carried out to carburetor shell, a large amount of broken end and metal dust are generated, which leads to poor working environment, and can endanger people's life and health. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a kind of carburetor shell polishing device, solve the existing problem that a large amount of broken end and metal dust are generated when polishing treatment is carried out to carburetor shell, which leads to poor working environment, and can endanger people's life and health.
[0006] To achieve the above-mentioned purpose, a kind of carburetor shell polishing device is adopted in the utility model, which includes a work-shaped base, a door-shaped beam, a cylinder, a driving seat, a disc, a polishing roller and a dust collection assembly, the door-shaped beam is fixedly arranged above the work-shaped base, the cylinder is fixedly connected with the door-shaped beam, the driving seat is fixedly connected with the output end of the cylinder, the disc is connected with the driving seat, the polishing roller is fixedly connected with the disc and is eccentrically arranged with the disc;
[0007] The dust suction assembly comprises two air-permeable nets, a dust suction cover, a dust suction pipeline, a fan, a filter screen, a scraping member and a collection box, the I-shaped base has two dust suction holes, the two air-permeable nets are fixedly connected with the I-shaped base and are respectively located in the dust suction holes, the dust suction cover is fixedly connected with the I-shaped base and is located below the two dust suction holes, the dust suction pipeline is connected with the dust suction cover and is located in the I-shaped base, the filter screen is fixedly connected with the dust suction pipeline and is located in the dust suction pipeline, the fan is fixedly connected with the I-shaped base and is located on the I-shaped base, the fan is connected with the dust suction pipeline, the collection box is connected with the dust suction pipeline and is located on one side of the dust suction pipeline, and the scraping member is arranged on the pipeline.
[0008] The scraping member further comprises a support frame, a first telescopic rod and a scraper plate, the support frame is fixedly connected with the dust suction pipeline and is located on the outer side wall of the dust suction pipeline, the first telescopic rod is fixedly connected with the support frame, and the scraper plate is connected with the first telescopic rod and is located in the dust suction pipeline.
[0009] The dust suction assembly further comprises two first magnetic suction blocks and two second magnetic suction blocks, the two first magnetic suction blocks are fixedly connected with the dust suction pipeline and are both located on the dust suction pipeline, and the two second magnetic suction blocks are fixedly connected with the collection box and are both magnetically connected with the corresponding first magnetic suction blocks.
[0010] The dust suction assembly further comprises an annular baffle, the annular baffle is fixedly connected with the I-shaped base and is located above the I-shaped base.
[0011] The carburetor shell polishing device further comprises two second telescopic rods and two clamping plates, the two clamping plates are fixedly connected with the portal frame and are both located above the portal frame, and each clamping plate is connected with the corresponding second telescopic rod.
[0012] The utility model discloses a carburetor shell polishing device, when polishing the carburetor shell, first, the carburetor shell is located above the I-shaped base, the polishing roller is located one side of the carburetor shell, starts the cylinder and controls the polishing roller to go down, after moving appropriately, starts the drive base and drives the disc rotation, immediately, the polishing roller polishes around the carburetor shell, and starts the fan under the I-shaped base, the fan makes the dust cover produce suction force, and the carburetor shell polishing produces the broken end and metal powder and will pass through the breathable net and enter the dust cover, then falls on the filter screen in the dust suction pipeline, the filter screen is obliquely arranged, and the broken end and metal dust can slide into the collection box, when the filter screen retains the broken end and metal dust, through the scraping member, the filter screen surface is scraped, and the filter screen retained broken end and metal dust can fall into the collection box, by the above-mentioned mode, the broken end and metal dust produced when polishing the carburetor shell can be absorbed and handled, the working environment is avoided from being polluted, and the life health of people is guaranteed. BRIEF DESCRIPTION OF DRAWINGS
[0013] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, below will be to the embodiment or prior art description needed to use the drawing briefly introduced, obviously, below description in the drawing only some embodiments of the utility model, for those skilled in the art, under the premise of not paying creative labor, can also obtain other drawings according to these drawings.
[0014] Figure 1 It is the structure schematic view of the carburetor shell polishing device of the utility model.
[0015] Figure 2 It is the structure front view of the carburetor shell polishing device of the utility model.
[0016] Figure 3 It is the structure side view of the carburetor shell polishing device of the utility model.
[0017] Figure 4 It is the A-A line structure section view of the utility model's Figure 3 .
[0018] Figure 5 It is the B place local structure enlarged view of the utility model's Figure 4 .
[0019] 101-I-shaped base, 102-Gate beam, 103-Cylinder, 104-Drive seat, 105-Disc, 106-Grinding roller, 107-Ventilating mesh, 108-Dust hood, 109-Dust suction pipe, 110-Fan, 111-Filter screen, 112-Collection box, 113-Dust suction hole, 114-Support frame, 115-First telescopic rod, 116-Scraper, 117-First magnetic block, 118-Second magnetic block, 119-Annular baffle, 120-Second telescopic rod, 121-Clamping plate. Detailed Implementation
[0020] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.
[0021] Please see Figures 1-5 This utility model provides a carburetor housing polishing device, comprising an I-shaped base 101, a portal beam 102, a cylinder 103, a drive seat 104, a disc 105, a polishing roller 106, and a dust collection assembly. The portal beam 102 is fixedly disposed above the I-shaped base 101. The cylinder 103 is fixedly connected to the portal beam 102. The drive seat 104 is fixedly connected to the output end of the cylinder 103. The disc 105 is connected to the drive seat 104. The polishing roller 106 is fixedly connected to the disc 105 and is eccentrically disposed with respect to the disc 105.
[0022] The dust collection assembly includes two breathable meshes 107, a dust collection hood 108, a dust collection pipe 109, a fan 110, a filter 111, a scraper, and a collection box 112. The I-shaped base 101 has two dust collection holes 113. The two breathable meshes 107 are fixedly connected to the I-shaped base 101 and are respectively located inside the dust collection holes 113. The dust collection hood 108 is fixedly connected to the I-shaped base 101 and is located below the two dust collection holes 113. The dust collection pipe 109 is connected to the filter hood 108. The dust collection hood 108 is connected and located inside the I-shaped base 101. The filter screen 111 is fixedly connected to the dust collection pipe 109 and located inside the dust collection pipe 109. The fan 110 is fixedly connected to the I-shaped base 101 and located on the I-shaped base 101. The fan 110 is connected to the dust collection pipe 109. The collection box 112 is connected to the dust collection pipe 109 and located on one side of the dust collection pipe 109. The scraper is disposed on the pipe.
[0023] In the embodiment, when polishing the carburetor shell, the carburetor shell is located above the I-shaped base 101, the polishing roller 106 is located on one side of the carburetor shell, the air cylinder 103 is started to control the polishing roller 106 to move downward, after moving appropriately, the driving seat 104 is started to drive the disc 105 to rotate, then the polishing roller 106 polishes around the carburetor shell, at the same time, the fan 110 below the I-shaped base 101 is started, the fan 110 generates suction force for the dust suction cover 108, the powder and metal dust generated during polishing of the carburetor shell enter the dust suction cover 108 through the air-permeable net 107, and then fall on the filter screen 111 in the dust suction pipeline 109. The filter screen 111 is arranged obliquely, the powder and metal dust slide downward and enter the collection box 112, when the filter screen 111 retains powder and metal dust, the surface of the filter screen 111 is scraped by the scraping member, and the powder and metal dust retained on the filter screen 111 fall into the collection box 112. In the above manner, the powder and metal dust generated during polishing of the carburetor shell can be absorbed and treated, the working environment is prevented from being polluted, and the life and health of people are ensured.
[0024] Further, the scraping member further comprises a support frame 114, a first telescopic rod 115 and a scraper 116. The support frame 114 is fixedly connected with the dust suction pipeline 109 and located on the outer side wall of the dust suction pipeline 109. The first telescopic rod 115 is fixedly connected with the support frame 114. The scraper 116 is connected with the first telescopic rod 115 and located in the dust suction pipeline 109.
[0025] In the embodiment, the first telescopic rod 115 is fixed on the outer side of the dust suction pipeline 109 through the support frame 114. The output end of the first telescopic rod 115 drives the scraper 116 to move above the filter screen 111. The scraper 116 pushes the powder and impurities retained on the surface of the filter screen 111 to the collection box 112, so that the powder and impurities do not block the filter screen 111 and affect the dust suction effect.
[0026] Further, the dust suction assembly further comprises two first magnetic blocks 117 and two second magnetic blocks 118. The two first magnetic blocks 117 are fixedly connected with the dust suction pipeline 109 and located on the dust suction pipeline 109. The two second magnetic blocks 118 are fixedly connected with the collection box 112 and magnetically connected with the corresponding first magnetic blocks 117 respectively.
[0027] In the embodiment, the first magnetic block 117 and the second magnetic block 118 are arranged, the first magnetic block 117 and the second magnetic block 118 are attracted to each other, the collecting box 112 is conveniently mounted and dismounted outside the dust suction pipe 109, and the use is convenient.
[0028] Further, the dust suction assembly further comprises an annular baffle 119, the annular baffle 119 is fixedly connected with the I-shaped base 101 and located above the I-shaped base 101.
[0029] In the embodiment, the annular baffle 119 is arranged above the I-shaped base 101, the annular baffle 119 blocks dust generated during polishing of the carburetor shell, avoids diffusion of the dust, and is beneficial to dust suction.
[0030] Further, the carburetor shell polishing device further comprises two second telescopic rods 120 and two clamping plates 121, the two clamping plates 121 are fixedly connected with the portal frame 102 and located above the portal frame 102, and each clamping plate 121 is connected with a corresponding second telescopic rod 120.
[0031] In the embodiment, the second telescopic rod 120 drives the clamping plate 121 to move transversely, the two clamping plates 121 fix the carburetor shell above the I-shaped base 101, the carburetor shell is prevented from deviating during polishing, and the polishing quality is greatly improved.
[0032] The above only discloses a preferred embodiment of the utility model, and of course cannot limit the scope of the utility model, and those skilled in the art can understand that all or part of the above-mentioned processes can be implemented, and equivalent changes made according to the utility model claims still belong to the scope of the utility model.
Claims
1. A carburetor housing polishing device, characterized in that, The device includes an I-shaped base, a portal beam, a cylinder, a drive seat, a disc, a grinding roller, and a dust collection assembly. The portal beam is fixedly mounted above the I-shaped base. The cylinder is fixedly connected to the portal beam. The drive seat is fixedly connected to the output end of the cylinder. The disc is connected to the drive seat. The grinding roller is fixedly connected to the disc and is eccentrically positioned relative to the disc. The dust collection assembly includes two breathable meshes, a dust collection hood, a dust collection pipe, a fan, a filter, a scraper, and a collection box. The I-shaped base has two dust collection holes. The two breathable meshes are fixedly connected to the I-shaped base and are located inside the dust collection holes. The dust collection hood is fixedly connected to the I-shaped base and is located below the two dust collection holes. The dust collection pipe is connected to the dust collection hood and is located inside the I-shaped base. The filter is fixedly connected to the dust collection pipe and is located inside the dust collection pipe. The fan is fixedly connected to the I-shaped base and is located on the I-shaped base. The fan is connected to the dust collection pipe. The collection box is connected to the dust collection pipe and is located on one side of the dust collection pipe. The scraper is disposed on the pipe.
2. The carburetor housing polishing device as described in claim 1, characterized in that, The scraping component further includes a support frame, a first telescopic rod, and a scraper. The support frame is fixedly connected to the dust collection pipe and is located on the outer wall of the dust collection pipe. The first telescopic rod is fixedly connected to the support frame. The scraper is connected to the first telescopic rod and is located inside the dust collection pipe.
3. The carburetor housing polishing device as described in claim 2, characterized in that, The vacuuming assembly further includes two first magnetic blocks and two second magnetic blocks. The two first magnetic blocks are fixedly connected to the vacuuming pipe and are located on the vacuuming pipe. The two second magnetic blocks are fixedly connected to the collection box and are magnetically connected to the corresponding first magnetic blocks.
4. The carburetor housing polishing device as described in claim 3, characterized in that, The dust collection assembly also includes an annular baffle, which is fixedly connected to the I-shaped base and located above the I-shaped base.
5. The carburetor housing polishing device as described in claim 4, characterized in that, The carburetor housing polishing device also includes two second telescopic rods and two clamping plates. Both clamping plates are fixedly connected to the portal beam and are located above the portal beam. Each clamping plate is connected to the corresponding second telescopic rod.