Automatic debris removal device for air conditioner muffler body

By combining the vibrating screening component and the air blowing chip removal mechanism, and utilizing pneumatic arc clamps and high-pressure airflow, the problem of residual debris after processing air conditioner mufflers is solved, achieving high-quality positioning and debris removal of the muffler, and improving product performance and quality.

CN224673392UActive Publication Date: 2026-08-25安徽汉峰科技股份有限公司
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Patent Information

Application Number
CN202521393872.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-04
Publication Date
2026-08-25
Estimated Expiration
2035-07-04

AI Technical Summary

Technical Problem

After the existing air conditioner mufflers are manufactured, residual debris affects the product's performance and quality, and needs to be effectively treated.

Method used

By combining a vibrating screening component with an air-blowing chip removal mechanism, and through the coordination of pneumatic arc clamp positioning, hydraulic telescopic frame and high-pressure airflow, the silencer body can be clamped, positioned and small objects blown off.

Benefits of technology

To ensure the high-quality performance of the muffler body, effectively remove internal debris, and improve product performance and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic debris removal device of air conditioner silencer body belongs to air conditioner silencer processing technical field, including vibrating sieve subassembly and blowing scrap mechanism, the upper end of vibrating sieve subassembly is provided with bolt assembly's distribution feeding part, and the lower end of vibrating sieve subassembly is provided with inlet and outlet transfer mechanism. The device mainly utilizes the inner edge side of arc shell to make the product body carry out clamping positioning through the output operation of pneumatic arc -shaped clamp, makes the product body run to the suitable position through the output operation of electric rotary seat, rotating wheel, conveying chain, connecting rod, wheel seat, sliding wheel, track strip after clamping positioning, makes the product suit up under the common cooperation of hydraulic telescopic support, upper sleeve mouth, upper connecting pipe, blowing pump, central plate, recovery cabin, carries out blowing to the small object inside the product through high pressure airflow, thereby guarantees the high quality use effect of product subsequent.
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Description

Technical Field

[0001] This utility model relates to the field of air conditioner muffler processing technology, and in particular to an automatic debris removal device for the body of an air conditioner muffler. Background Technology

[0002] The working principle of air conditioner compressor silencers mainly includes two methods: reactive silencers and Helmholtz resonators. In practical applications, reactive silencers and Helmholtz resonators are usually used in combination to achieve better noise reduction. In air conditioner compressors, this combination silencer can significantly reduce the noise of the compressor during operation, improve the overall performance of the equipment and the user experience. Specifically, this combination silencer can reduce noise by 35-45 decibels, and in some scenarios, it can even be controlled within the range of 55-80 decibels.

[0003] Existing muffler chip removal devices, such as the front muffler port grinding device disclosed in application number CN201821979625.7, include a base, with vertical plates symmetrically fixed to the top of the base, a support plate fixed to the top of the vertical plates, support rods symmetrically fixed to the top of the support plates, a top plate fixed to the top of the support rods, a drive motor fixed to the top of the top plate, and a transparent cover fixed to the top of the support plate. The output shaft of the drive motor passes through the bottom of the top plate and the top of the transparent cover, and a grinding head is fixed thereon. However, in the above technology, some debris remains on the product after the muffler is processed. If it is not effectively treated, it will affect the performance and quality of the muffler. Therefore, we propose an automatic chip removal device for the air conditioner muffler body to solve the above problem. Summary of the Invention

[0004] To address the aforementioned problems, this utility model proposes an automatic debris removal device for air conditioner mufflers. This device utilizes a pneumatic arc-shaped clamp on the inner side of the arc-shaped shell to clamp and position the product body. After clamping and positioning, the device moves to a suitable position via an electric rotating seat, rotating wheel, conveyor chain, connecting rod, wheel seat, sliding wheel, and track. Through the combined action of a hydraulic telescopic frame, upper sleeve, upper connecting pipe, air pump, central plate, fitting block, pneumatic lifting bar, lower sleeve nozzle, lower connecting pipe, and recovery chamber, the product is properly fitted. High-pressure airflow then blows away small objects inside the product, ensuring high-quality performance in subsequent use.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] An automatic debris removal device for an air conditioner muffler body includes a vibrating screen assembly and an air blowing debris removal mechanism. The upper end of the vibrating screen assembly is provided with a bolt-assembled distribution feeding component, the lower end of the vibrating screen assembly is provided with an infeed and discharge transfer mechanism, and the outer side of one end of the infeed and discharge transfer mechanism is provided with an air blowing debris removal mechanism.

[0007] As a further technical solution, the vibrating screening assembly includes a first base plate, a shock-absorbing base, a base frame, a set of side plates, a vibrating cylinder, a vibrating motor, an eccentric wheel, an inclined box chamber, a grid plate, a temporary storage isolation chamber, and a pump. A bolt-assembled shock-absorbing base is provided above the first base plate, and a base frame is provided above the shock-absorbing base. A set of side plates are provided on one side of the base frame, and a vibrating cylinder connected to the output end of the vibrating motor is provided on the inner side of the set of side plates. An eccentric wheel is provided inside the vibrating cylinder. An inclined box chamber is provided at the top of the base frame, and a grid plate is provided on the inner side of one end of the inclined box chamber. A grid plate is provided on the outer end of the grid plate, and a pump is provided at the output end of the grid plate.

[0008] As a further technical solution, the distributed feeding component includes a bolted connecting strip, a partition plate, a first lifting plate, a second lifting plate, a hydraulic telescopic rod, and a hydraulic base. The bolted connecting strip is bolted to the outer side of one end of the inclined box compartment. A partition plate is provided at one end of the bolted connecting strip, and a first lifting plate is provided on one set of the inner side of the partition plate, and a second lifting plate is provided on the other set of the inner side of the partition plate. A hydraulic telescopic rod is provided below the first lifting plate and the second lifting plate, and a hydraulic base is provided below the hydraulic telescopic rod.

[0009] As a further technical solution, the feeding and discharging transfer mechanism includes a second base plate, a bolted frame, a slotted guard plate, an inner pad, a gearbox, a drive motor, a meshing gear set, an output roller, a conveyor belt, an end-mounting frame, a mounting plate, a first cylinder, a folding push plate, a side sliding chamber, a second cylinder, a hanger, an inclined chamber, a side guard plate, a hydraulic telescopic strip, a hydraulic clamp, and a product box. The second base plate is disposed at one end of the first base plate. A bolted frame for bolt assembly is disposed above the side of the second base plate. A slotted guard plate is disposed above the bolted frame, and an inner pad is disposed on the inner side of the slotted guard plate. A gearbox is disposed on the outer side of one end of the slotted guard plate, and a meshing gear set connected to the output end of the drive motor is disposed inside the gearbox. An output roller on which the conveyor belt is mounted is disposed at the output end of the meshing gear set.

[0010] As a further technical solution, an end-to-end frame is provided on the outer side of one end of the bolt connecting frame, and a mounting plate is provided above one end of the end-to-end frame. A first cylinder is provided on the inner side above the mounting plate, and a folded push plate is provided at the output end of the first cylinder. A side sliding chamber is provided above the other end of the end-to-end frame, and a second cylinder is provided on the inner side of one end of the side sliding chamber.

[0011] As a further technical solution, a hanger is provided below one end of the side sliding compartment, and an inclined compartment is provided below the hanger. A bolted side guard plate is provided in the middle of a group of bolted connecting frames, and a hydraulic telescopic bar is provided at the output end of the side guard plate. A hydraulic clamp is provided at one end of the hydraulic telescopic bar, and a product box is provided above one end of the second base plate.

[0012] As a further technical solution, the air blowing and chip removal mechanism includes a third base plate, a housing, a control panel, an electric rotary seat, a rotating wheel, a conveyor chain, a connecting rod, a wheel seat, a sliding wheel, a track bar, an arc-shaped shell, a pneumatic arc-shaped clamp, a product body, a top frame, a hydraulic telescopic frame, an upper sleeve, an upper connecting pipe, an air pump, a central plate, a mounting block, a pneumatic lifting bar, a lower sleeve, a lower connecting pipe, a recovery chamber, and a contact base. The third base plate is disposed on the outer side of one end of the second base plate. The housing is disposed above the third base plate, and a control panel is disposed on one side of the housing. An electric rotary seat is disposed on the other side of the housing. A rotating wheel is disposed at the output end of the electric rotary seat, and a conveyor chain is disposed at the output end of the rotating wheel. A connecting rod is disposed on the outer side of the conveyor chain, and a wheel seat for mounting the sliding wheel is disposed at the outer end of the connecting rod.

[0013] As a further technical solution, an arc-shaped shell is provided on one side of the wheel seat, and a pneumatic arc-shaped clamp is provided on the inner side of the arc-shaped shell. The product body is provided on the inner side of the pneumatic arc-shaped clamp, a central plate is provided on the outer side of the rotating wheel, and an abutment base is provided on one side of the central plate.

[0014] As a further technical solution, a top frame is provided above the cabin shell, and a hydraulic telescopic frame is provided at the output end of the top frame. An upper sleeve is provided on one side of the hydraulic telescopic frame, and an air pump is connected to the upper sleeve via an upper connecting pipe. A sleeve block is provided on one side above the central plate, and a pneumatic lifting bar is provided on the outer side of the sleeve block. A lower nozzle is provided at the output end of the pneumatic lifting bar. A lower connecting pipe is provided below the sleeve block, and a recovery chamber is provided below the lower connecting pipe.

[0015] Compared with the prior art, the beneficial effects of this utility model are:

[0016] This utility model device mainly utilizes the inner side of the arc-shaped shell to clamp and position the product body through a pneumatic arc-shaped clamp. After clamping and positioning, the product body moves to a suitable position through the output of an electric rotating seat, rotating wheel, conveyor chain, connecting rod, wheel seat, sliding wheel, and track. With the joint cooperation of the hydraulic telescopic frame, upper sleeve, upper connecting pipe, air pump, central plate, fitting block, pneumatic lifting bar, lower sleeve nozzle, lower connecting pipe, and recovery chamber, the product is fitted together. High-pressure airflow blows away small objects inside the product, thereby ensuring the high-quality use effect of the product in the future. Attached Figure Description

[0017] Figure 1 A schematic diagram of an automatic debris removal device for an air conditioner muffler body;

[0018] Figure 2 This is a schematic diagram of the structure of this utility model viewed from below;

[0019] Figure 3 This is a schematic diagram of the structure of the vibrating screening assembly in this utility model;

[0020] Figure 4 This is a schematic diagram of the structure of the distributed feeding component in this utility model;

[0021] Figure 5 This is a schematic diagram of the material feeding and discharging transfer mechanism in this utility model;

[0022] Figure 6 This is a schematic diagram of the structure of the hanger and inclined chamber in this utility model;

[0023] Figure 7 This is a schematic diagram of the air blowing and chip removal mechanism in this utility model.

[0024] In the diagram: 1. Vibrating screen assembly; 101. First base plate; 102. Shock-absorbing base; 103. Base frame; 104. Side plate assembly; 105. Vibrating cylinder; 106. Vibrating motor; 107. Eccentric wheel; 108. Inclined box compartment; 109. Grid plate; 1010. Temporary storage isolation compartment; 1011. Extraction pump; 2. Distributed feeding assembly; 201. Bolt connecting strip; 202. Separating stage plate; 203. First lifting plate; 204. Second lifting plate 205. Hydraulic telescopic rod; 206. Hydraulic base; 3. Feeding / discharging transfer mechanism; 301. Second base plate; 302. Bolted connecting frame; 303. Slotted guard plate; 304. Inner pad platform; 305. Gearbox; 306. Drive motor; 307. Meshing gear set; 308. Output roller; 309. Conveyor belt; 3010. End-aligning frame; 3011. Set plate; 3012. First cylinder; 3013. Folding push plate; 3014. 3015. Side sliding compartment; 3016. Second cylinder; 3017. Hanger; 3018. Inclined compartment; 3019. Side guard plate; 3020. Hydraulic telescopic strip; 3021. Hydraulic clamp; 3022. Product box; 4. Air blowing and chip removal mechanism; 401. Third base plate; 402. Cabin shell; 403. Control panel; 404. Electric rotary seat; 405. Rotating wheel; 406. Conveyor chain; 407. Connecting rod; 408. Wheel seat; 409. Sliding... Wheel; 4010, Track bar; 4011, Arc-shaped shell; 4012, Pneumatic arc-shaped clamp; 4013, Product body; 4014, Top frame; 4015, Hydraulic telescopic frame; 4016, Upper sleeve; 4017, Upper connecting pipe; 4018, Air pump; 4019, Central plate; 4020, Set block; 4021, Pneumatic lifting bar; 4022, Lower sleeve; 4023, Lower connecting pipe; 4024, Recovery chamber; 4025, Contact base. Detailed Implementation

[0025] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships, are based on the orientation or positional relationships shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.

[0026] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0027] 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 protection scope of the present utility model.

[0028] Please see Figure 1-7 In this embodiment of the utility model, an automatic debris removal device for an air conditioner muffler body includes a vibrating screen assembly 1 and an air blowing debris removal mechanism 4. A bolt-assembled distribution feeding component 2 is provided at the upper end of the vibrating screen assembly 1, and an infeed / outfeed transfer mechanism 3 is provided at the lower end of the vibrating screen assembly 1. An air blowing debris removal mechanism 4 is provided on the outer side of one end of the infeed / outfeed transfer mechanism 3.

[0029] The vibrating screening assembly 1 includes a first base plate 101, a shock-absorbing base 102, a base frame 103, a set of side plates 104, a vibrating cylinder 105, a vibrating motor 106, an eccentric wheel 107, an inclined box chamber 108, a grid plate 109, a temporary storage isolation chamber 1010, and a extraction pump 1011. The shock-absorbing base 102, bolted together, is disposed above the first base plate 101, and the base frame 103 is disposed above the shock-absorbing base 102. One side of the base frame 103... A side plate 104 is provided on the side of the assembly, and a vibrating cylinder 105 connected to the output end of the vibrating motor 106 is provided on the inner side of the side plate 104. An eccentric wheel 107 is provided inside the vibrating cylinder 105. An inclined box chamber 108 is provided at the top of the base frame 103, and a grid plate 109 is provided on the inner side of one end of the inclined box chamber 108. A grid plate 109 is provided on the outer end of the grid plate 109, and a pump 1011 is provided at the output end of the grid plate 109.

[0030] In this embodiment of the utility model, during use, the vibration motor 106 on one side of the side plate 104 of the set outputs power to drive the output end to run, thereby driving the eccentric wheel 107 inside the vibration cylinder 105 to run and generate a vibration effect. The product body 4013 to be processed is placed on the inclined box chamber 108 to generate a sufficient vibration effect. After vibration, large granular waste materials are shaken off. Then, the extraction pump 1011 at one end of the temporary storage isolation chamber 1010 is used to output and run to extract air, so that the waste material is extracted and temporarily stored through the temporary storage isolation chamber 1010 on the outer side of the grid plate 109.

[0031] The distribution feeding component 2 includes a bolt connecting bar 201, a partition plate 202, a first lifting plate 203, a second lifting plate 204, a hydraulic telescopic rod 205, and a hydraulic base 206. The bolt connecting bar 201 is bolted to the outer side of one end of the inclined box compartment 108. A partition plate 202 is provided at one end of the bolt connecting bar 201. The first lifting plate 203 is provided on one set of the inner side of the partition plate 202, and the second lifting plate 204 is provided on the other set of the inner side of the partition plate 202. A hydraulic telescopic rod 205 is provided below the first lifting plate 203 and the second lifting plate 204, and a hydraulic base 206 is provided below the hydraulic telescopic rod 205.

[0032] In this embodiment of the present invention, after vibration, the hydraulic telescopic rod 205 outputs power to drive the output end to run, so that the product body 4013 is gradually input onto the conveyor belt 309 through the gradual operation of the partition plate 202 under the cooperation of the first lifting plate 203 and the second lifting plate 204.

[0033] The material handling transfer mechanism 3 includes a second base plate 301, a bolted frame 302, a slotted guard plate 303, an inner pad platform 304, a speed transmission gearbox 305, a drive motor 306, a meshing gear set 307, an output roller 308, a conveyor belt 309, an end-aligning frame 3010, a mounting plate 3011, a first cylinder 3012, a folding push plate 3013, a side sliding chamber 3014, a second cylinder 3015, a hanger 3016, an inclined chamber 3017, a side guard plate 3018, a hydraulic telescopic strip 3019, a hydraulic clamp 3020, and a product box 3021. The second substrate 301 is disposed at one end of the first substrate 101. A bolt bracket 302 for bolt assembly is disposed above the side of the second substrate 301. A slotted guard plate 303 is disposed above the bolt bracket 302. An inner pad 304 is disposed on the inner side of the slotted guard plate 303. A speed change gearbox 305 is disposed on the outer side of one end of the slotted guard plate 303. A meshing gear set 307 connected to the output end of the drive motor 306 is disposed inside the speed change gearbox 305. An output roller 308 for mounting the conveyor belt strip 309 is disposed at the output end of the meshing gear set 307.

[0034] In this embodiment of the present invention, the drive motor 306 on one side of the gearbox 305 is then used to output power to drive the output end to run, so that after the drive motor 306 outputs power, the meshing gear set 307 on the gearbox 305 will mesh and drive, so that after the meshing gear set 307 outputs power, it will drive the conveyor belt 309 to move the product body 4013 to a suitable position.

[0035] An end-to-end bracket 3010 is provided on the outer side of one end of the bolt connecting bracket 302, and a mounting plate 3011 is provided above one end of the end-to-end bracket 3010. A first cylinder 3012 is provided on the inner side above the mounting plate 3011, and a folded push plate 3013 is provided at the output end of the first cylinder 3012. A side sliding compartment 3014 is provided above the other end of the end-to-end bracket 3010, and a second cylinder 3015 is provided on the inner side of one end of the side sliding compartment 3014.

[0036] In this embodiment of the present invention, the first cylinder 3012 above the mounting plate 3011 is then used to output power to drive the output end to run, so that the folding push plate 3013 pushes the product body 4013 away from the side sliding chamber 3014. Then, the second cylinder 3015 is used to output power to drive the output end to run, so that the second cylinder 3015 abuts against the abutting base 4025.

[0037] A hanger 3016 is provided below one end of the side sliding compartment 3014, and an inclined compartment 3017 is provided below the hanger 3016. A bolted side guard plate 3018 is provided in the middle of a set of bolted brackets 302, and a hydraulic telescopic bar 3019 is provided at the output end of the side guard plate 3018. A hydraulic clamp 3020 is provided at one end of the hydraulic telescopic bar 3019. A product box 3021 is provided above one end of the second base plate 301.

[0038] In this embodiment of the utility model, the wheel seat 408 and the sliding wheel 409 are then used to move to a suitable position. Through the clamping and extension of the hydraulic telescopic bar 3019 and the hydraulic clamp 3020, the product body 4013 is input into the inclined chamber 3017 below the hanger 3016, and finally input into the product box 3021 to achieve the effect of discharging.

[0039] The air-blowing and chip-removing mechanism 4 includes a third base plate 401, a machine housing 402, a control panel 403, an electric rotary seat 404, a rotating wheel 405, a conveyor chain 406, a connecting rod 407, a wheel seat 408, a sliding wheel 409, a track bar 4010, an arc-shaped shell 4011, a pneumatic arc-shaped clamp 4012, a product body 4013, a top frame 4014, a hydraulic telescopic frame 4015, an upper sleeve 4016, an upper connecting pipe 4017, an air pump 4018, a central plate 4019, a mounting block 4020, a pneumatic lifting bar 4021, a lower nozzle 4022, and a lower connecting pipe 4023. The recovery chamber 4024 and the contact base 4025 are provided. The third base plate 401 is disposed on the outer side of one end of the second base plate 301. The machine chamber shell 402 is disposed above the third base plate 401. A control panel 403 is disposed on one side of the machine chamber shell 402. An electric rotating seat 404 is disposed on the other side of the machine chamber shell 402. A rotating wheel 405 is disposed at the output end of the electric rotating seat 404. A conveyor chain 406 is disposed at the output end of the rotating wheel 405. A connecting rod 407 is disposed on the outer side of the conveyor chain 406. A wheel seat 408 for mounting a sliding wheel 409 is disposed at the outer end of the connecting rod 407.

[0040] In this embodiment of the utility model, the control panel 403 is used to input commands, and the electric rotating seat 404 outputs power to drive the rotating wheel 405 to rotate, so that the conveyor chain 406, connecting rod 407, wheel seat 408, and sliding wheel 409 roll on the track 4010 to a suitable position.

[0041] An arc-shaped shell 4011 is provided on one side of the wheel seat 408, and a pneumatic arc-shaped clamp 4012 is provided on the inner side of the arc-shaped shell 4011. The product body 4013 is provided on the inner side of the pneumatic arc-shaped clamp 4012. A central plate 4019 is provided on the outer side of the rotating wheel 405, and an abutment base 4025 is provided on one side of the central plate 4019.

[0042] In this embodiment of the utility model, the product body 4013 is fed into the inner side of the arc-shaped shell 4011 by the cooperation of the abutment base 4025 and the second cylinder 3015, and the product body 4013 is clamped by the pneumatic arc-shaped clamp 4012.

[0043] A top frame 4014 is provided above the cabin shell 402, and a hydraulic telescopic frame 4015 is provided at the output end of the top frame 4014. An upper sleeve 4016 is provided on one side of the hydraulic telescopic frame 4015, and an air pump 4018 is connected to the upper sleeve 4016 via an upper connecting pipe 4017. A fitting block 4020 is provided on one side above the central plate 4019. A pneumatic lifting bar 4021 is provided on the outer side of the fitting block 4020, and a lower nozzle 4022 is provided at the output end of the pneumatic lifting bar 4021. A lower connecting pipe 4023 is provided below the fitting block 4020, and a recovery chamber 4024 is provided below the lower connecting pipe 4023.

[0044] In this embodiment of the present invention, the hydraulic telescopic frame 4015 and the pneumatic lifting bar 4021 are then used to operate, causing the upper sleeve 4016 and the lower sleeve 4022 to be inserted into the product body 4013. Then, the air pump 4018 is used to operate, causing the upper sleeve 4016, the upper connecting pipe 4017, the air pump 4018, the lower sleeve 4022, and the lower connecting pipe 4023 to blow the waste into the recycling chamber 4024 for temporary storage.

[0045] The working principle of this utility model is as follows: In use, the vibration motor 106 on one side of the side plate 104 outputs power to drive the output end to run, thereby driving the eccentric wheel 107 inside the vibration cylinder 105 to run and generate a vibration effect. The product body 4013 to be processed is placed on the inclined box chamber 108 to generate a sufficient vibration effect. After vibration, large granular waste materials are shaken off. Then, the extraction pump 1011 at one end of the temporary storage isolation chamber 1010 is used to output and extract air, so that the waste material is extracted and temporarily stored through the temporary storage isolation chamber 1010 on the outer side of the grid plate 109. After vibration, the hydraulic telescopic rod 205 outputs power to drive the output end to run, thereby lifting the first plate. With the cooperation of the second lifting plate 203 and the second lifting plate 204, the product body 4013 is gradually fed onto the conveyor belt 309 through the partition plate 202. Then, the drive motor 306 on one side of the gearbox 305 outputs power to drive the output end, so that the meshing gear set 307 on the gearbox 305 engages and drives the conveyor belt 309 to move the product body 4013 to a suitable position. Then, the first cylinder 3012 above the mounting plate 3011 outputs power to drive the output end, so that the folding push plate 3013 pushes the product body 4013 away from the side slide compartment 30. 14. Next, the second cylinder 3015 outputs power to drive the output end to operate, so that the second cylinder 3015 and the contact base 4025 collide. Through the cooperation of the contact base 4025 and the second cylinder 3015, the product body 4013 is input into the inner side of the arc-shaped shell 4011 and clamped by the pneumatic arc-shaped clamp 4012. Then, the control panel 403 inputs commands, and the electric rotating seat 404 outputs power to drive the rotating wheel 405 to rotate. This causes the conveyor chain 406, connecting rod 407, wheel seat 408, and sliding wheel 409 to roll on the track 4010 to a suitable position. Then, hydraulic... After the telescopic frame 4015 and the pneumatic lifting bar 4021 are powered, the upper sleeve 4016 and the lower sleeve 4022 are inserted into the product body 4013. Then, the air pump 4018 is powered to blow the waste material into the recycling chamber 4024 for temporary storage. Then, the wheel seat 408 and the sliding wheel 409 are used to move the material to a suitable position. The product body 4013 is fed into the inclined chamber 3017 below the hanger 3016 and finally into the product box 3021 to achieve the discharge effect.

[0046] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0047] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An automatic debris removal device for an air conditioner muffler body, comprising a vibrating screening assembly (1) and an air blowing debris extraction mechanism (4), characterized in that: The vibrating screen assembly (1) has a bolt-assembled distribution feeding component (2) at one upper end, a feeding and discharging transfer mechanism (3) at one lower end, and an air blowing and chip removal mechanism (4) on the outer side of one end of the feeding and discharging transfer mechanism (3).

2. The automatic debris removal device for an air conditioner muffler body according to claim 1, characterized in that: The vibrating screening assembly (1) includes a first base plate (101), a shock-absorbing base (102), a base frame (103), a side plate (104), a vibrating cylinder (105), a vibrating motor (106), an eccentric wheel (107), an inclined box chamber (108), a grid plate (109), a temporary storage isolation chamber (1010), and a pump (1011). A bolt-fitted shock-absorbing base (102) is provided above the first base plate (101), and a base frame (103) is provided above the shock-absorbing base (102). A set of side panels (104) are provided on one side, and a vibrating cylinder (105) connected to the output end of a vibrating motor (106) is provided on the inner side of the side panel (104). An eccentric wheel (107) is provided inside the vibrating cylinder (105). An inclined box chamber (108) is provided at the top of the base frame (103). A grid plate (109) is provided on the inner side of one end of the inclined box chamber (108). A grid plate (109) is provided on the outer end of the grid plate (109). A pump (1011) is provided at the output end of the grid plate (109).

3. The automatic debris removal device for an air conditioner muffler body according to claim 1, characterized in that: The distribution feeding component (2) includes a bolt connecting bar (201), a partition plate (202), a first lifting plate (203), a second lifting plate (204), a hydraulic telescopic rod (205), and a hydraulic base (206). The bolt connecting bar (201) is bolted to the outer side of one end of the inclined box compartment (108). One end of the bolt connecting bar (201) is provided with a partition plate (202). The inner side of the partition plate (202) is provided with a first lifting plate (203), and the other inner side of the partition plate (202) is provided with a second lifting plate (204). The first lifting plate (203) and the second lifting plate (204) are provided below the first lifting plate (203) and the second lifting plate (204), and the hydraulic base (206) is provided below the hydraulic telescopic rod (205).

4. The automatic debris removal device for an air conditioner muffler body according to claim 1, characterized in that: The material transfer mechanism (3) includes a second base plate (301), a bolted frame (302), a slotted guard plate (303), an inner pad (304), a gearbox (305), a drive motor (306), a meshing gear set (307), an output roller (308), a conveyor belt (309), an end-aligning frame (3010), a mounting plate (3011), a first cylinder (3012), a folding push plate (3013), a side sliding chamber (3014), a second cylinder (3015), a hanger (3016), an inclined chamber (3017), a side guard plate (3018), a hydraulic telescopic strip (3019), a hydraulic clamp (3020), and a product box (3021). The second substrate (301) is disposed at one end of the first substrate (101). A bolt bracket (302) for bolt assembly is disposed above the side of the second substrate (301). A slotted guard plate (303) is disposed above the bolt bracket (302). An inner pad (304) is disposed on the inner side of the slotted guard plate (303). A gearbox (305) is disposed on the outer side of one end of the slotted guard plate (303). A gear set (307) for connecting the output end of the drive motor (306) is disposed inside the gearbox (305). An output roller (308) for mounting the conveyor belt strip (309) is disposed at the output end of the gear set (307).

5. The automatic debris removal device for an air conditioner muffler body according to claim 4, characterized in that: An end-connector (3010) is provided on the outer side of one end of the bolt connecting frame (302), and a mounting plate (3011) is provided above one end of the end-connector (3010). A first cylinder (3012) is provided on the inner side above the mounting plate (3011), and a folded push plate (3013) is provided at the output end of the first cylinder (3012). A side slide compartment (3014) is provided above the other end of the end-connector (3010), and a second cylinder (3015) is provided on the inner side of one end of the side slide compartment (3014). A hanger (3016) is provided below one end of the side slide compartment (3014), and an inclined compartment (3017) is provided below the hanger (3016). A bolt-assembled side guard plate (3018) is provided in the middle of a set of bolted brackets (302), and a hydraulic telescopic strip (3019) is provided at the output end of the side guard plate (3018). A hydraulic clamp (3020) is provided at one end of the hydraulic telescopic strip (3019), and a product box (3021) is provided above one end of the second base plate (301).

6. The automatic debris removal device for an air conditioner muffler body according to claim 1, characterized in that: The air-blowing and chip-removing mechanism (4) includes a third base plate (401), a machine compartment shell (402), a control panel (403), an electric rotating seat (404), a rotating wheel (405), a conveyor chain (406), a connecting rod (407), a wheel seat (408), a sliding wheel (409), a track bar (4010), an arc-shaped shell (4011), a pneumatic arc-shaped clamp (4012), a product body (4013), a top frame (4014), a hydraulic telescopic frame (4015), an upper sleeve (4016), an upper connecting pipe (4017), an air pump (4018), a central plate (4019), a mounting block (4020), a pneumatic lifting bar (4021), a lower sleeve (4022), and a lower connecting pipe (4023). The third base plate (401) is disposed on the outer side of one end of the second base plate (301). A cabin shell (402) is disposed above the third base plate (401). A control panel (403) is disposed on one side of the cabin shell (402). An electric rotating seat (404) is disposed on the other side of the cabin shell (402). A rotating wheel (405) is disposed at the output end of the electric rotating seat (404). A conveyor chain (406) is disposed at the output end of the rotating wheel (405). A connecting rod (407) is disposed on the outer side of the conveyor chain (406). A wheel seat (408) for mounting a sliding wheel (409) is disposed at the outer end of the connecting rod (407).

7. An automatic debris removal device for an air conditioner muffler body according to claim 6, characterized in that: An arc-shaped shell (4011) is provided on one side of the wheel seat (408), and a pneumatic arc-shaped clamp (4012) is provided on the inner side of the arc-shaped shell (4011). A product body (4013) is provided on the inner side of the pneumatic arc-shaped clamp (4012). A central plate (4019) is provided on the outer side of the rotating wheel (405), and an abutment base (4025) is provided on one side of the central plate (4019).

8. The automatic debris removal device for an air conditioner muffler body according to claim 6, characterized in that: A top frame (4014) is provided above the cabin shell (402), and a hydraulic telescopic frame (4015) is provided at the output end of the top frame (4014). An upper sleeve (4016) is provided on one side of the hydraulic telescopic frame (4015), and an air pump (4018) is connected to the upper sleeve (4016) via an upper connecting pipe (4017). A sleeve block (4020) is provided on one side above the central plate (4019), and a pneumatic lifting bar (4021) is provided on the outer side of the sleeve block (4020). A lower nozzle (4022) is provided at the output end of the pneumatic lifting bar (4021). A lower connecting pipe (4023) is provided below the sleeve block (4020), and a recovery chamber (4024) is provided below the lower connecting pipe (4023).

Citation Information

Patent Citations

  • Leading muffler port grinding device

    CN208614577U