Part machining waste recycling and compressing equipment
By designing waste recycling and compression equipment with cleaning, conveying, compression and collection mechanisms, the problem of low waste treatment efficiency is solved, efficient waste treatment and cleaning of the production environment are achieved, production efficiency is improved and costs are reduced.
Patent Information
- Application Number
- CN202510982305.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-16
- Publication Date
- 2025-09-12
Smart Images

Figure CN120620730A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of parts processing, in particular to a device for recycling and compressing parts machining waste. Background Art
[0002] The component production process involves a series of machining operations on the blank, including roughing and finishing. Roughing involves cutting and grinding, while finishing involves turning, clamping, and milling. Through these machining operations, the blank's shape, size, relative position, and properties are modified, ultimately becoming a component that meets the requirements.
[0003] However, existing scrap parts recycling equipment has significant drawbacks. First, in actual production, collection and processing equipment is mostly separated from the parts processing equipment. This means that the waste generated during the processing needs to be collected first and then transported to specialized processing equipment for treatment. This separate treatment method greatly reduces the efficiency of waste treatment. Second, waste accumulates in the workshop, taking up production space and potentially hindering normal production operations. Furthermore, since waste cannot be cleaned and processed in a timely manner, it may be mixed into newly processed parts, affecting product quality and increasing the defective rate. It requires additional time and cost for screening and repair, which seriously restricts the continuity and efficiency of production.
[0004] In view of this, the purpose of the present invention is to provide a component machining waste recycling and compression equipment to solve the shortcomings of the prior art. Summary of the Invention
[0005] In response to the shortcomings of the existing technology, the present invention provides a component machining waste recycling and compression equipment, which solves the problem of existing component waste recycling devices, in which the collection and processing equipment is mostly separated from the component processing equipment, resulting in low waste processing efficiency.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: a component machining waste recycling and compression equipment, comprising a base plate, a plurality of supporting legs are fixedly mounted on one side of the upper portion of the base plate, and a workbench is fixedly mounted on the top of the plurality of supporting legs, a dust cover is fixedly mounted on the upper portion of the workbench, and an opening is opened on one side of the dust cover, a cleaning mechanism is fixed on the upper portion of the workbench, and the cleaning mechanism is arranged inside the dust cover, and the cleaning mechanism includes a sweeping assembly and an air jet assembly, which is used to clean the processed waste, a conveying mechanism is fixedly mounted on one end of the workbench, which is used to convey the cleaned waste, a compression mechanism is fixedly mounted on the other side of the upper portion of the base plate, the compression mechanism includes a sliding assembly, a squeezing assembly and an auxiliary assembly, which is used to compress the conveyed waste, a collecting mechanism is fixedly mounted on the other side of the upper portion of the base plate, the collecting mechanism includes a shielding assembly and a collecting assembly, which is used to collect the compressed waste, and an operating end is fixedly mounted on the upper portion of the base plate and away from the supporting legs; The cleaning components in the cleaning mechanism include electric slide rails fixedly installed on both sides of the upper part of the workbench, and a rotating shaft 1 is rotatably installed on one side of the two electric slide rail moving seats. A scraper is fixedly connected between the two ends of the rotating shaft 1, and a rubber ring is provided around the outside of the scraper, and the rubber ring is fitly connected to the workbench.
[0007] Preferably, the jet assembly includes bases fixedly mounted on both sides of the inner wall of the dust cover, one side of each of the two bases is rotatably mounted with a second rotating shaft, one side of each of the two rotating shafts is fixedly mounted with a jet nozzle, and one end of each of the two jet nozzles is provided with a jet port that is larger in front and smaller in the back.
[0008] Preferably, the conveying mechanism includes a conveying pipe fixedly installed at one end of the workbench, fixed grooves are fixedly installed on both sides of the outside of the conveying pipe, vibration motors are fixedly installed on one side of the two fixed grooves, and the output ends of the two vibration motors are fixedly connected to the other side of the two fixed grooves respectively. A plurality of electric rotators are arranged inside the conveying pipe, and one end of the conveying mechanism is fixedly installed at the opening of the dust cover.
[0009] Preferably, the sliding assembly in the compression mechanism includes a compression box fixedly mounted on the other side of the upper portion of the bottom plate, inclined plates are obliquely mounted on both sides of the interior of the compression box, a partition is fixedly mounted between the two sides of the interior of the compression box, a sliding opening is opened in the middle of the partition, and one end of the two inclined plates are respectively arranged at both ends above the sliding opening.
[0010] Preferably, the extrusion assembly includes an electric push rod fixedly mounted on one side of the interior of the compression box, an output end of the electric push rod is fixedly connected to an extrusion block, and the extrusion assembly is arranged below the partition.
[0011] Preferably, the auxiliary component includes an anti-stick coating arranged in the middle of the front end of the extrusion block, protrusions are fixedly installed on both sides of the front end of the extrusion block, and a pressure sensor is fixedly installed on one side of the rear end of the extrusion block, and the pressure sensor is electrically connected to the operating end.
[0012] Preferably, the shielding assembly in the collection mechanism includes fixed plates fixedly mounted on both sides of one end of the outside of the compression box, a sliding groove is provided on one side of the two fixed plates, a baffle is slidably connected between the two fixed plates, a fixed block is fixedly mounted on the upper part of one end of the outside of the compression box, a telescopic rod is fixedly mounted on the bottom of the fixed block, and the output end of the telescopic rod is fixedly connected to the upper part of the baffle.
[0013] Preferably, the collecting assembly comprises a collecting box fixedly mounted on one side of an upper portion of the bottom plate, and a slide is obliquely connected to one side of an interior of the collecting box.
[0014] Preferably, one end of the conveying mechanism is connected to the interior of the compression box.
[0015] Preferably, the collecting assembly is fixedly connected to the bottom of one end outside the compression box.
[0016] The present invention provides a component machining waste recycling and compression device. It has the following beneficial effects: 1. The present invention drives the scraper to move back and forth through the electric slide rail in the cleaning mechanism. At the same time, the rubber ring on the scraper fits tightly with the workbench, which can effectively scrape off the waste. The angle can be flexibly adjusted through the air nozzle. The air nozzle with a large front and a small back ejects a strong impact airflow to blow up the small waste that is difficult to clean. The two work together to prevent waste residue from mixing with newly processed parts, ensure product accuracy, reduce equipment wear, extend equipment service life, provide a stable and clean working environment for parts processing, ensure the smooth progress of the processing flow, and indirectly improve production efficiency.
[0017] 2. The present invention uses a vibration motor on the outside of the conveying pipe to make the pipe vibrate, thereby helping to move the waste, and the internal electric rotator further pushes the waste forward. One end of the conveying pipe is connected to the opening of the dust cover, and the other end is connected to the inside of the compression box, ensuring that the cleaned waste can be stably and quickly transported from the workbench to the compression mechanism, ensuring a continuous and stable material supply, avoiding the compression mechanism from waiting due to lack of material, reducing equipment idle time, making the entire waste recovery and compression process more coherent, and significantly improving the overall waste processing efficiency, thereby improving production efficiency.
[0018] 3. The present invention guides the waste to be concentrated through the inclined plate in the compression box, and pushes the extrusion block to compress the waste through the electric push rod. The anti-stick coating and protrusions on the extrusion block ensure that the compression process is smooth and stable. The pressure sensor monitors the pressure in real time, which is convenient for the operator to control accurately. During collection, the baffle is driven to open by the telescopic rod, and the waste blocks fall into the collection box through the slide plate, which is convenient for centralized collection, improves the compression quality and collection efficiency of the waste, reduces the volume of the waste, reduces the transportation and storage costs, and reduces the pollution of the waste to the environment, with good economic and environmental benefits. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 A perspective view of the present invention; Figure 2 Schematic diagram of the internal structure of the present invention; Figure 3 A schematic diagram of a cleaning assembly of the present invention; Figure 4 It is a schematic diagram of the scraper structure of the present invention; Figure 5 It is a schematic diagram of the jet assembly of the present invention; Figure 6 It is a schematic diagram of the conveying mechanism of the present invention; Figure 7 is a schematic diagram of an extrusion assembly of the present invention; Figure 8 It is a schematic diagram of the collection mechanism of the present invention.
[0020] Among them, 1. bottom plate; 2. supporting legs; 3. workbench; 4. dust cover; 5. cleaning mechanism; 501. electric slide rail; 502. rotating shaft 1; 503. scraper; 504. rubber ring; 505. base; 506. rotating shaft 2; 507. air nozzle; 508. air nozzle; 6. conveying mechanism; 601. conveying pipe; 602. fixing groove; 603. vibration motor; 604. electric rotator; 7. compression mechanism; 701. compression box; 702. inclined plate; 703. partition; 704. electric push rod; 705. extrusion block; 706. anti-stick coating; 707. bump; 708. pressure sensor; 8. collecting mechanism; 801. fixing plate; 802. slide groove; 803. baffle; 804. fixing block; 805. telescopic rod; 806. collecting box; 807. slide plate; 9. operating end. DETAILED DESCRIPTION
[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the present specification. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0022] Please see the attached Figure 1 -Attached Figure 8 The embodiment of the present invention provides a component machining waste recycling and compression equipment, including a base plate 1, a plurality of supporting legs 2 are fixedly installed on one side of the upper part of the base plate 1, and a workbench 3 is fixedly installed on the top of the plurality of supporting legs 2. A dust cover 4 is fixedly installed on the top of the workbench 3, and an opening is opened on one side of the dust cover 4. A cleaning mechanism 5 is fixed on the top of the workbench 3. The cleaning mechanism 5 is arranged inside the dust cover 4. The cleaning mechanism 5 includes a sweeping assembly and an air jet assembly, which is used to clean the processed waste. A conveying mechanism 6 is fixedly installed at one end of the workbench 3 for conveying the cleaned waste. A compression mechanism 7 is fixedly installed on the other side of the upper part of the base plate 1. The compression mechanism 7 includes a sliding assembly, a squeezing assembly and an auxiliary assembly, which is used to compress the conveyed waste. A collecting mechanism 8 is fixedly installed on the other side of the upper part of the base plate 1. The collecting mechanism 8 includes a shielding assembly and a collecting assembly, which is used to collect the compressed waste. An operating end 9 is fixedly installed on the upper part of the base plate 1 and away from the supporting legs 2. The cleaning components in the cleaning mechanism 5 include electric slide rails 501 fixedly mounted on both sides of the upper portion of the workbench 3. A rotating shaft 502 is rotatably mounted on one side of the movable base of the two electric slide rails 501. A scraper 503 is fixedly connected between one end of the two rotating shafts 502. A rubber ring 504 is provided around the outer periphery of the scraper 503. The rubber ring 504 is in close contact with the workbench 3. Specifically, the cleaning components in the cleaning mechanism 5 include electric slides 501 fixedly mounted on both sides of the upper portion of the workbench 3. A rotating shaft 502 is rotatably mounted on one side of the movable base of the two electric slides 501, allowing the scraper 503 to flexibly rotate during movement, better adapting to the shape of the workbench 3 and the distribution of the waste. A scraper 503 is fixedly connected between one end of the two rotating shafts 502. The scraper 503 is the component that directly contacts and cleans the waste. A rubber ring 504 is provided around the outer periphery of the scraper 503. The rubber ring 504 has good flexibility and wear resistance. The rubber ring 504 is in close contact with the workbench 3. When the scraper 503 moves, the rubber ring 504 can closely adhere to the surface of the workbench 3, effectively scraping off the waste on the workbench 3. At the same time, it can also reduce the wear between the scraper 503 and the workbench 3, extending the service life of the scraper 503.
[0023] The jet assembly includes bases 505 fixedly mounted on both sides of the inner wall of the dust cover 4, and a second rotating shaft 506 is rotatably mounted on one side of each base 505. An air jet nozzle 507 is fixedly mounted on one side of each second rotating shaft 506. One end of each air jet nozzle 507 is provided with an air jet port 508 with a larger front portion and a smaller rear portion. Specifically, the air jet assembly includes bases 505 fixedly mounted on either side of the inner wall of the dust cover 4. A second rotating shaft 506 is rotatably mounted on one side of each base 505. This second rotating shaft 506 allows the air jet 507 to flexibly adjust its angle to accommodate different cleaning needs. Air jets 507 are fixedly mounted on one side of each second rotating shaft 506. Each end of each air jet 507 is provided with an air outlet 508 that is larger in front and smaller in the back. This allows the ejected gas to form a powerful airflow. The airflow from the air jets 507 lifts fine waste materials that adhere to the surface of the workbench 3 or are difficult to clean with the scraper 503, working in conjunction with the scraper 503 to ensure that the workbench 3 is thoroughly cleaned.
[0024] The conveying mechanism 6 includes a conveying pipe 601 fixedly mounted on one end of the workbench 3, with fixed grooves 602 fixedly mounted on both sides of the outside of the conveying pipe 601, and a vibration motor 603 fixedly mounted on one side of the two fixed grooves 602. The output ends of the two vibration motors 603 are respectively fixedly connected to the other side of the two fixed grooves 602. A plurality of electric rotators 604 are provided inside the conveying pipe 601, and one end of the conveying mechanism 6 is fixedly mounted on the opening of the dust cover 4; One end of the conveying mechanism 6 is connected to the interior of the compression box 701; Specifically, the conveying mechanism 6 includes a conveying pipe 601 fixedly mounted at one end of the workbench 3, one end of which is connected to the workbench 3 where the cleaning mechanism 5 is located, and the other end leads to the compression mechanism 7. Fixed grooves 602 are fixedly mounted on both sides of the outside of the conveying pipe 601, and vibration motors 603 are fixedly mounted on one side of the two fixed grooves 602. The vibration generated by the vibration motors 603 when working can help the waste move more smoothly in the conveying pipe 601. The output ends of the two vibration motors 603 are respectively fixedly connected to the other side of the two fixed grooves 602 to ensure that the vibration can be evenly transmitted to the conveying pipe 601. A plurality of electric rotators 604 are provided inside the conveying pipe 601. The electric rotators 604 further propel the waste forward, and the power generated by their rotation assists the waste to pass through the conveying pipe 601 quickly. One end of the conveying mechanism 6 is fixedly mounted at the opening of the dust cover 4, so that the cleaned waste can directly enter the conveying pipe 601, realizing a seamless connection between waste cleaning and transportation.
[0025] The sliding assembly in the compression mechanism 7 includes a compression box 701 fixedly mounted on the other side of the upper portion of the bottom plate 1, with inclined plates 702 installed obliquely on both sides of the compression box 701, and a partition 703 fixedly mounted between the two sides of the compression box 701. A sliding opening is opened in the middle of the partition 703, and one end of the two inclined plates 702 is respectively arranged at both ends above the sliding opening; Specifically, the sliding assembly in the compression mechanism 7 includes a compression box 701 fixedly mounted on the other side of the upper portion of the base plate 1. The compression box 701 provides space for the compression of waste. Inclined plates 702 are installed obliquely on both sides of the interior of the compression box 701 to guide the waste to slide naturally and concentrate. A partition 703 is fixedly mounted between the two sides of the interior of the compression box 701. The partition 703 divides the interior of the compression box 701 into different areas, thereby playing a role in rationally planning the space. A sliding opening is provided in the middle of the partition 703, and one end of the two inclined plates 702 is respectively arranged at both ends above the sliding opening, so that the waste sliding from the inclined plate 702 can accurately pass through the sliding opening into the extrusion area below, facilitating subsequent extrusion operations.
[0026] The extrusion assembly includes an electric push rod 704 fixedly mounted on one side of the compression box 701. The output end of the electric push rod 704 is fixedly connected to an extrusion block 705. The extrusion assembly is arranged below the partition 703. Specifically, the extrusion assembly includes an electric push rod 704 fixedly mounted on one side of the compression box 701. The output end of the electric push rod 704 is fixedly connected to an extrusion block 705. The extrusion block 705 compresses the waste under the push of the electric push rod 704. The extrusion assembly is arranged below the partition 703, so that the waste falling from the slide can directly enter the extrusion area, realizing continuous compression.
[0027] The auxiliary component includes an anti-stick coating 706 provided in the middle of the front end of the extrusion block 705, protrusions 707 are fixedly installed on both sides of the front end of the extrusion block 705, and a pressure sensor 708 is fixedly installed on one side of the rear end of the extrusion block 705. The pressure sensor 708 is electrically connected to the operating end 9; Specifically, the auxiliary components include an anti-stick coating 706 positioned in the middle of the front end of the extrusion block 705. This coating (e.g., a hard chrome coating with high hardness, good wear resistance, and a smooth surface) effectively reduces friction between the waste material and the extrusion block 705, reducing adhesion and effectively preventing the waste material from adhering to the extrusion block 705, thereby ensuring a smooth compression process. Bumps 707 are fixedly mounted on both sides of the front end of the extrusion block 705. These bumps 707 increase friction with the waste material, stabilizing the extrusion process and preventing the waste material from sliding or shifting during compression. A pressure sensor 708 is fixedly mounted on one side of the rear end of the extrusion block 705. This pressure sensor 708 monitors pressure changes in real time during the extrusion process. The pressure sensor 708 is electrically connected to the operating terminal 9. Based on this data, the operator can adjust the thrust of the electric push rod 704 through the operating terminal 9 to ensure that the compression process occurs within the appropriate pressure range, thereby ensuring effective compression while preventing damage to the equipment due to excessive pressure.
[0028] The shielding assembly in the collection mechanism 8 includes fixed plates 801 fixedly mounted on both sides of one end of the outside of the compression box 701, a slide groove 802 is provided on one side of each of the two fixed plates 801, a baffle 803 is slidably connected between the two fixed plates 801, a fixed block 804 is fixedly mounted on the upper part of one end of the outside of the compression box 701, a telescopic rod 805 is fixedly mounted on the bottom of the fixed block 804, and the output end of the telescopic rod 805 is fixedly connected to the upper part of the baffle 803; Specifically, the shielding assembly in the collection mechanism 8 includes fixed plates 801, each fixedly mounted on either side of one end of the compression box 701. Each of the two fixed plates 801 has a slot 802 formed on one side. The slot 802 cooperates with a baffle 803, allowing the baffle 803 to slide between the fixed plates 801. A baffle 803 is slidably connected between the two fixed plates 801, providing a shield to prevent the compressed waste from falling out before collection. A fixed block 804 is fixedly mounted on the upper portion of one end of the compression box 701. This block 804 is used to mount a telescopic rod 805. A telescopic rod 805 is fixedly mounted on the bottom of the fixed block 804. The extension and retraction of the telescopic rod 805 controls the raising and lowering of the baffle 803. The output end of the telescopic rod 805 is fixedly connected to the upper portion of the baffle 803. When waste collection is required, the telescopic rod 805 retracts, causing the baffle 803 to slide upward and open, allowing the compressed waste to fall smoothly into the collection box 806.
[0029] The collection assembly includes a collection box 806 fixedly mounted on one side of the upper portion of the base plate 1, and a slide plate 807 is obliquely connected to one side of the interior of the collection box 806; The collecting assembly is fixedly connected to the bottom of one end of the compression box 701; Specifically, the collection assembly includes a collection box 806 fixedly mounted on one side of the upper portion of the base plate 1. This box is used to store compressed waste. A slide 807 is attached at an angle to one side of the interior of the box 806, allowing waste blocks to slide along the slide to the bottom of the box 806 for centralized collection. This not only facilitates the collection of waste blocks, but also prevents them from accumulating or scattering during the collection process, improving collection efficiency and facilitating subsequent handling and processing of the waste blocks.
[0030] Working Principle: First, the scraper 503 is driven to reciprocate by the movable seat on the electric slide 501, and the rubber ring 504 arranged around the outside of the scraper 503 fits tightly with the workbench 3. During the movement, it can effectively scrape off the waste on the workbench 3. At the same time, the air nozzle 507 is rotatably connected to the base 505 via the second rotating shaft 506, and the angle can be flexibly adjusted. The air nozzle 508, which is larger in front and smaller in the back, is set at one end, which can make the ejected gas form an airflow with strong impact. The airflow ejected by the air nozzle 507 will blow away the fine waste attached to the surface of the workbench 3 or that is difficult to be cleaned by the scraper 503. Working in conjunction with the scraper 503, it ensures that the workbench 3 is thoroughly cleaned, effectively preventing the impact of waste residue on subsequent processing, and ensuring a clean working environment.
[0031] The cleaned waste enters the conveying link, and one end of the conveying pipe 601 of the conveying mechanism 6 is fixed at the opening of the dust cover 4 to receive the cleaned waste. Vibration motors 603 are installed in the fixed grooves 602 on both sides of the outside of the conveying pipe 601. When the vibration motor 603 is working, it drives the conveying pipe 601 to vibrate, so that the waste moves more smoothly in the conveying pipe 601. At the same time, the multiple electric rotators 604 set inside the conveying pipe 601 further push the waste forward. The power generated by its rotation assists the waste to pass through the conveying pipe 601 quickly, ensuring that the waste can be stably and efficiently transported from the workbench 3 to the compression mechanism 7, providing a continuous material supply for subsequent compression processing.
[0032] After the waste is transported to the compression mechanism 7, inclined plates 702, mounted on either side of the compression box 701, guide the waste toward the drop opening in the center of the partition 703. This allows the waste to slide naturally and gather in a designated location, facilitating subsequent extrusion operations. Below the partition 703, an electric push rod 704 pushes the extrusion block 705 to compress the accumulated waste. Under the thrust, the extrusion block 705 gradually approaches the waste, compressing it into a compact block. Furthermore, an anti-stick coating 706 (a hard chrome coating with high hardness, excellent wear resistance, and a smooth surface) applied to the center of the front end of the extrusion block 705 effectively reduces friction between the waste and the extrusion block 705, minimizing sticking and effectively preventing the waste from adhering to the extrusion block 705. This ensures a smooth compression process and prevents waste from adhering to the block, which could lead to poor compression or affect subsequent operations. Furthermore, bumps 707 on either side of the front end of the extrusion block 705 increase friction with the waste material, making the extrusion process more stable and preventing the waste material from sliding or shifting during compression. Simultaneously, a pressure sensor 708 mounted on one side of the rear end of the extrusion block 705 monitors pressure changes during the extrusion process in real time and transmits this data to the operating terminal 9. Based on this data, the operator can adjust the thrust of the electric push rod 704 through the operating terminal 9 to ensure that the compression process occurs within the appropriate pressure range, thereby ensuring effective compression while preventing damage to the equipment due to excessive pressure.
[0033] After compression is completed, the waste blocks enter the collection stage. When the waste is compressed, the telescopic rod 805 contracts, thereby driving the baffle 803 to slide upward and open, and the compressed waste blocks fall from the opening at one end of the compression box 701 into the collection box 806. The slide 807 connected to the side of the collection box 806 is tilted, so that the waste blocks can slide along the slide 807 to the bottom of the collection box 806 for convenient centralized collection. This not only facilitates the collection of waste blocks, but also prevents the waste blocks from accumulating or scattering during the collection process, thereby improving the collection efficiency and facilitating the subsequent transportation and processing of the waste blocks.
[0034] The operating terminal 9 receives the pressure data transmitted by the pressure sensor 708 and provides real-time feedback to the operator so that the compression parameters can be adjusted in time, thereby improving the operating convenience and operating stability of the equipment, enabling the equipment to operate efficiently and stably, and realizing the recycling and compression processing of parts processing waste, effectively solving the problem of low waste treatment efficiency in the existing technology, improving production efficiency, reducing production costs, and also reducing the pollution of waste to the environment, with significant economic and environmental benefits.
[0035] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A component machining waste recycling and compression equipment, characterized in that: The invention comprises a bottom plate (1), a plurality of supporting legs (2) are fixedly mounted on one side of the upper portion of the bottom plate (1), a workbench (3) is fixedly mounted on the top of each of the plurality of supporting legs (2), a dust cover (4) is fixedly mounted on the upper portion of the workbench (3), an opening is provided on one side of the dust cover (4), a cleaning mechanism (5) is fixed on the upper portion of the workbench (3), the cleaning mechanism (5) is arranged inside the dust cover (4), the cleaning mechanism (5) comprises a cleaning component and an air jet component, and is used for cleaning the waste material after processing, and the workbench (3) is fixed at one end thereof. A conveying mechanism (6) is installed, which is used to convey the cleaned waste. A compression mechanism (7) is fixedly installed on the other side of the upper part of the bottom plate (1). The compression mechanism (7) includes a sliding component, a squeezing component and an auxiliary component, which is used to compress the conveyed waste. A collection mechanism (8) is fixedly installed on the other side of the upper part of the bottom plate (1). The collection mechanism (8) includes a shielding component and a collecting component, which is used to collect the compressed waste. An operating end (9) is fixedly installed on the upper part of the bottom plate (1) and away from the supporting leg (2); The cleaning components in the cleaning mechanism (5) include electric slide rails (501) fixedly mounted on both sides of the upper portion of the workbench (3), a rotating shaft (502) being rotatably mounted on one side of the movable seat of the two electric slide rails (501), a scraper (503) being fixedly connected between one end of the two rotating shafts (502), a rubber ring (504) being provided around the outer periphery of the scraper (503), and the rubber ring (504) being in close contact with the workbench (3).
2. The component machining waste recycling and compression equipment according to claim 1 is characterized in that: The jet assembly comprises bases (505) fixedly mounted on both sides of the inner wall of the dust cover (4), one side of each of the two bases (505) is rotatably mounted with a second rotating shaft (506), one side of each of the two second rotating shafts (506) is fixedly mounted with a jet nozzle (507), and one end of each of the two jet nozzles (507) is provided with a jet port (508) that is larger in front and smaller in the back.
3. The component machining waste recycling and compression equipment according to claim 1 is characterized in that: The conveying mechanism (6) comprises a conveying pipe (601) fixedly mounted on one end of the workbench (3), fixed grooves (602) are fixedly mounted on both sides of the outside of the conveying pipe (601), a vibration motor (603) is fixedly mounted on one side of the inside of the two fixed grooves (602), the output ends of the two vibration motors (603) are respectively fixedly connected to the other side of the inside of the two fixed grooves (602), a plurality of electric rotators (604) are arranged inside the conveying pipe (601), and one end of the conveying mechanism (6) is fixedly mounted at the opening of the dust cover (4).
4. The component machining waste recycling and compression equipment according to claim 1 is characterized in that: The sliding assembly in the compression mechanism (7) comprises a compression box (701) fixedly mounted on the other side of the upper portion of the bottom plate (1), inclined plates (702) being obliquely mounted on both sides of the compression box (701), a partition (703) being fixedly mounted between the two sides of the compression box (701), a sliding opening being opened in the middle of the partition (703), and one end of the two inclined plates (702) being respectively arranged at both ends above the sliding opening.
5. The component machining waste recycling and compression equipment according to claim 1 is characterized in that: The extrusion assembly comprises an electric push rod (704) fixedly mounted on one side of the interior of the compression box (701), an output end of the electric push rod (704) being fixedly connected to an extrusion block (705), and the extrusion assembly is arranged below the partition (703).
6. The component machining waste recycling and compression equipment according to claim 1, characterized in that: The auxiliary component comprises an anti-stick coating (706) arranged in the middle of the front end of the extrusion block (705), protrusions (707) are fixedly installed on both sides of the front end of the extrusion block (705), and a pressure sensor (708) is fixedly installed on one side of the rear end of the extrusion block (705), and the pressure sensor (708) is electrically connected to the operating end (9).
7. The component machining waste recycling and compression equipment according to claim 1 is characterized in that: The shielding assembly in the collecting mechanism (8) comprises fixed plates (801) fixedly mounted on both sides of one end of the outside of the compression box (701), a sliding groove (802) being provided on one side of each of the two fixed plates (801), a baffle (803) being slidably connected between the two fixed plates (801), a fixed block (804) being fixedly mounted on the upper portion of one end of the outside of the compression box (701), a telescopic rod (805) being fixedly mounted on the bottom of the fixed block (804), and an output end of the telescopic rod (805) being fixedly connected to the upper portion of the baffle (803).
8. The component machining waste recycling and compression equipment according to claim 1 is characterized in that: The collection assembly comprises a collection box (806) fixedly mounted on one side of the upper portion of the base plate (1), and a slide plate (807) is obliquely connected to one side of the interior of the collection box (806).
9. The component machining waste recycling and compression equipment according to claim 1, characterized in that: One end of the conveying mechanism (6) is connected to the interior of the compression box (701).
10. The component machining waste recycling and compression equipment according to claim 1, characterized in that: The collecting assembly is fixedly connected to the bottom of one end of the outside of the compression box (701).