Cleaning device for metal machining

By introducing compression chambers and hydraulic systems into metal processing devices, compressing and launching waste blocks, the problem of waste storage volume waste is solved, and efficient waste collection and storage is achieved.

CN120348023AInactive Publication Date: 2025-07-22HEFEI SHENGERWO INTELLIGENT MANUFACTURING EQUIPMENT CO LTD
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Patent Information

Application Number
CN202510832167.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-20
Publication Date
2025-07-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing metal processing and cleaning equipment still needs professional equipment to operate after the iron filings are collected, which wastes the use volume.

Method used

The compression chamber is used to gather waste, and the hydraulic cylinder drives the pressure rod and the compression plate to compress the waste into blocks. It combines the push plate, connecting rod and pneumatic telescopic rod to push the equipment to save storage volume.

Benefits of technology

It realizes efficient compression of waste and saves storage space, simplifying the iron filing collection process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The cleaning device for metal machining comprises a carrying waste extraction assembly and a compression discharging mechanism, a transverse cleaning mechanism installed in a sleeved mode is arranged on the inner side of the upper portion of the carrying waste extraction assembly, and a material conveying mechanism assembled through bolts is arranged on the inner side of the middle of the carrying waste extraction assembly. The output end of the material conveying mechanism is provided with a compression discharging mechanism installed in a sleeving mode. Waste materials in the compression cabin are gathered in a balanced mode, after the waste materials are gathered in a balanced mode, the hydraulic oil cylinder above the oil cylinder base outputs power to drive the output end to operate, and after the hydraulic oil cylinder outputs and operates, the compression plate compresses the gathered waste materials into blocks after the compression rod and the compression plate descend; and after compression, a push plate, a connecting rod, a sliding base, a lower lead screw set, a pneumatic telescopic rod and an opening and closing door plate push the waste materials compressed into blocks out of equipment, and therefore the effect of saving the storage size is achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of metal processing, and in particular to a cleaning device for metal processing. Background Art

[0002] Metal processing is a production activity that processes materials composed of metal elements or mainly composed of metal elements with metal characteristics. It is a process technology that processes metal materials into articles, parts, and components, including large parts such as bridges and ships, and even delicate components such as engines, jewelry, and watches. It is widely used in different fields such as science, industry, art, and handicrafts.

[0003] When the existing cleaning device for metal processing is in use, as the application number CN202411161700.9 relates to the technical field of metal processing, and discloses a cleaning device for metal processing, including a box body. The box body has no upper and lower walls. Semi-circular grooves are opened on the left and right walls of the box body. Arc-shaped plates are fixedly installed in the two semi-circular grooves. Support frames are fixedly installed on both sides of the box body. A rotating rod is arranged on the two support frames. A rotating column is fixedly sleeved on the rotating rod. A number of magnets are movably sleeved on the rotating column. By placing the rotating tube on the ground and then pushing the box body to move, the iron filings on the upper end of the ground can be adsorbed on the rotating tube by the magnets. As the box body is pushed to move, the rotating tube can be rotated, thereby driving the adsorbed iron filings to move into the box body. When the iron filings move to the arc-shaped plate, the iron filings will be scraped off and then move to the inclined plate with the subsequent iron filings being pushed, and then the iron filings will move along the inclined plate into the collection box, so that the iron filings on the ground can be quickly cleaned and collected.

[0004] However, in the above technical solution, after the iron filings are collected, they still need to be operated by a professional device, which will waste a relatively large use volume. For this reason, we propose a cleaning device for metal processing to solve the above problems. Summary of the Invention

[0005] In view of the above problems, the present invention proposes a cleaning device for metal processing. The cleaning device for metal processing mainly utilizes the compression chamber to evenly gather the waste materials in the compression chamber. After the even gathering, the hydraulic cylinder above the oil cylinder base outputs power to drive the output end to operate, so that after the hydraulic cylinder outputs and operates, the pressure rod and the compression plate descend, and then the compression plate compresses the gathered waste materials into blocks. After compression, the push plate, connecting rod, sliding base, and lower lead screw group, together with the pneumatic telescopic rod and the opening and closing door plate, push the compressed waste materials out of the device, thereby achieving the effect of saving storage volume.

[0006] To achieve the above object, the present invention provides the following technical solutions: A cleaning device for metal processing, comprising a waste extraction component and a compression discharging mechanism. Above the inner side of the waste extraction component, a horizontally cleaning mechanism is sleeved and installed. Inside the middle of the waste extraction component, a material transmission mechanism is bolted. And at the output end of the material transmission mechanism, a compression discharging mechanism is sleeved and installed.

[0007] As a further technical solution, the waste extraction component includes a cushion block, a lifting frame, an open substrate, a bolt cushion frame, a machine tool housing, an inner base, a processing table, a non-woven fabric cover, an inclined chamber, an evacuation fan, an inner connecting cross bar, a vibration chamber, a driving motor, a rotating roller, and an eccentric wheel set. Above the side of the cushion block, a lifting frame is provided. And at the top of the lifting frame, an open substrate is bolted. Above the side of the open substrate, a bolt cushion frame is bolted. And inside the side of the bolt cushion frame, an inner connecting cross bar is provided. On the side of the inner connecting cross bar, a vibration chamber is provided. And at one end of the vibration chamber, a driving motor is provided. At the output end of the driving motor, a rotating roller is provided. And at the output end of the rotating roller, an eccentric wheel set is provided.

[0008] As a further technical solution, above the bolt cushion frame, a machine tool housing is bolted. And inside the side of the machine tool housing, an inner base is provided. Above the inner base, a processing table is provided. Inside both ends of the machine tool housing, a non-woven fabric cover is provided. And at the output end of the non-woven fabric cover, an inclined chamber is provided. At the output end of the inclined chamber, an evacuation fan is sleeved and installed.

[0009] As a further technical solution, the horizontally cleaning mechanism includes an output motor, an inner screw rod group, a sliding block, a connecting frame, a cleaning piece, an upper cross frame, an electric rotating shaft, a central base, a flexible strip, and a rubber ball. The output motor is arranged on the side of the machine tool housing. At the output end of the output motor, an inner screw rod group is provided. And at the output end of the inner screw rod group, a sliding block connected by thread is provided. Inside the side of the sliding block, a connecting frame is provided. And below the connecting frame, a cleaning piece is provided.

[0010] As a further technical solution, above the connecting frame, an upper cross frame is provided. And at the inner bottom side of the upper cross frame, an electric rotating shaft is provided. At the output end of the electric rotating shaft, a central base is provided. And at the output end of the central base, a flexible strip is provided. At one end of the flexible strip, a rubber ball is provided.

[0011] As a further technical solution, the material transmission mechanism includes a bolt pad base, a pipeline cabin, a bridging cabin, a bolt pad disc, a speed change gearbox, a driving motor, a pulley group, a meshing gear group, a rotating rod and a spiral auger. The bolt pad base is bolted to the upper inner side of the opening substrate. A pipeline cabin is arranged at the inner end of the bolt pad base, and a bridging cabin is arranged above the pipeline cabin. A bolt pad disc is arranged at one end of the pipeline cabin, and a speed change gearbox is arranged at the outer end of the bolt pad disc.

[0012] As a further technical solution, a driving motor is arranged on one side below the speed change gearbox, and a pulley group is arranged at the output end of the driving motor. The output end of the pulley group is provided with a meshing gear group, and the output end of the meshing gear group is provided with a rotating rod. A spiral auger is arranged on the outer side of the rotating rod.

[0013] As a further technical solution, the compression and discharging mechanism includes a compression cabin, a pneumatic telescopic rod, an opening and closing door plate, an upper cover plate, a bottom cushion plate, a support frame, an oil cylinder base, a hydraulic oil cylinder, a pressure rod, a compression plate, a push plate, a connecting rod, a sliding base and a lower lead screw group. The compression cabin is arranged at the output end of the pipeline cabin. A pneumatic telescopic rod is arranged on the inner side of one end of the compression cabin, and an opening and closing door plate is arranged at the output end of the pneumatic telescopic rod. A push plate is arranged on the inner side of the other end of the compression cabin, and a connecting rod is arranged at the rear side of the push plate. The rear end of the connecting rod is provided with a sliding base, and the output end of the sliding base is provided with a lower lead screw group connected by threads.

[0014] As a further technical solution, an upper cover plate is arranged above the compression cabin, a bottom cushion plate is arranged below the compression cabin, and support frames are arranged above the four sides of the bottom cushion plate. The top end of the support frame is provided with an oil cylinder base, and a hydraulic oil cylinder is arranged above the oil cylinder base. The output end of the hydraulic oil cylinder is provided with a pressure rod, and a compression plate is arranged below the pressure rod.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: The device proposed by the present invention evenly aggregates the waste materials in the compression cabin. After the even aggregation, the hydraulic oil cylinder above the oil cylinder base outputs power to drive the operation of the output end. After the hydraulic oil cylinder outputs and operates, the pressure rod and the compression plate descend, and then the compression plate compresses the aggregated waste materials into blocks. After compression, the push plate, the connecting rod, the sliding base and the lower lead screw group, together with the pneumatic telescopic rod and the opening and closing door plate, push the waste materials compressed into blocks out of the device, thereby achieving the effect of saving storage volume. Description of the Drawings

[0016] Figure 1 It is a schematic structural diagram of a cleaning device for metal processing provided by the present invention; Figure 2 Schematic structural diagram of the upward view in the present invention; Figure 3 Schematic structural diagram of the cross-section in the present invention; Figure 4 Schematic structural diagram of the waste extraction component carried in the present invention; Figure 5 Schematic structural diagram of the horizontal cleaning mechanism in the present invention; Figure 6 Schematic structural diagram of the material transmission mechanism in the present invention; Figure 7 Schematic structural diagram of the compression and discharging mechanism in the present invention.

[0017] In the figure: 1. Waste extraction component carried; 101. Spacer block; 102. Lifting frame; 103. Open substrate; 104. Bolt cushion frame; 105. Machine tool housing; 106. Inner base; 107. Processing table; 108. Non-woven fabric cover; 109. Inclined cabin; 1010. Evacuation fan; 1011. Inner connecting cross bar; 1012. Vibration cabin; 1013. Driving motor; 1014. Rotating roller; 1015. Eccentric wheel group; 2. Horizontal cleaning mechanism; 201. Output motor; 202. Inner lead screw group; 203. Sliding block; 204. Connecting frame; 205. Cleaning piece; 206. Upper cross frame; 207. Electric rotating shaft; 208. Central base; 209. Flexible strip; 2010. Rubber ball; 3. Material transmission mechanism; 301. Bolt cushion seat; 302. Pipeline cabin; 303. Bridging cabin; 304. Bolt cushion disc; 305. Variable speed gearbox; 306. Transmission motor; 307. Pulley group; 308. Meshing gear group; 309. Rotating rod; 3010. Screw auger; 4. Compression and discharging mechanism; 401. Compression cabin; 402. Pneumatic telescopic rod; 403. Opening and closing door plate; 404. Upper cover plate; 405. Bottom cushion plate; 406. Support frame; 407. Oil cylinder base; 408. Hydraulic oil cylinder; 409. Pressing rod; 4010. Compression plate; 4011. Pushing plate; 4012. Connecting rod; 4013. Sliding base; 4014. Lower lead screw group. Detailed implementation manners

[0018] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the present invention. In addition, the terms "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first", "second", etc. may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, the meaning of "a plurality" is two or more.

[0019] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "mounted", "connected", and "coupled" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood through specific circumstances.

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0021] Please refer to Figure 1-7 , in the embodiment of the present invention, a cleaning device for metal processing includes a waste extraction component 1 and a compression and discharging mechanism 4. A transverse cleaning mechanism 2 is sleeved and installed inside the upper part of the waste extraction component 1, a material transmission mechanism 3 is bolted inside the middle part of the waste extraction component 1, and a compression and discharging mechanism 4 is sleeved and installed at the output end of the material transmission mechanism 3.

[0022] The waste extraction component 1 is equipped with a cushion block 101, a lifting frame 102, an open substrate 103, a bolt cushion frame 104, a machine tool housing 105, an inner base 106, a processing table 107, a non-woven fabric cover 108, an inclined cabin 109, an evacuation fan 1010, an inner connecting cross bar 1011, a vibration cabin 1012, a driving motor 1013, a rotating roller 1014, and an eccentric wheel set 1015. Above the side of the cushion block 101, there is a lifting frame 102, and at the top of the lifting frame 102, there is an open substrate 103 assembled with bolts. Above the side of the open substrate 103, there is a bolt cushion frame 104 assembled with bolts, and on the inner side of the bolt cushion frame 104, there is an inner connecting cross bar 1011. On the side of the inner connecting cross bar 1011, there is a vibration cabin 1012, and at one end of the vibration cabin 1012, there is a driving motor 1013. At the output end of the driving motor 1013, there is a rotating roller 1014, and at the output end of the rotating roller 1014, there is an eccentric wheel set 1015.

[0023] In the embodiment of the present invention, when there is less metal waste attached to the non-woven fabric cover 108, the machine tool housing 105, and the inner base 106, the driving motor 1013 on the vibration cabin 1012 on the side of the inner connecting cross bar 1011 is used to output power to drive the output end to operate, so that the driving motor 1013 outputs power to drive the output end to operate, so that the rotating roller 1014 and the eccentric wheel set 1015 rotate to generate vibration, and the vibration shakes off the waste attached to the non-woven fabric cover 108, the machine tool housing 105, and the inner base 106.

[0024] Above the bolt cushion frame 104, there is a machine tool housing 105 assembled with bolts, and on the inner side of the machine tool housing 105, there is an inner base 106. Above the inner base 106, there is a processing table 107. At both ends inside the machine tool housing 105, there is a non-woven fabric cover 108, and at the output end of the non-woven fabric cover 108, there is an inclined cabin 109. At the output end of the inclined cabin 109, there is an evacuation fan 1010 installed in a socketed manner.

[0025] In the embodiment of the present invention, during use, the product is placed above the processing table 107 installed above the inner base 106 by the machine tool housing 105, and the milling cutter inside the machine tool housing 105 effectively processes the product. During the processing, the evacuation fan 1010 above the inclined cabin 109 outputs power to drive the output end to operate, so that the non-woven fabric cover 108 cooperates with the inner base 106 to attract the incoming water waste that needs to be evacuated.

[0026] The horizontal cleaning mechanism 2 includes an output motor 201, an inner screw rod group 202, a sliding block 203, a connecting frame 204, a cleaning piece 205, an upper cross frame 206, an electric rotating shaft 207, a central base 208, a flexible strip 209, and a rubber ball 2010. The output motor 201 is arranged on the side of the machine tool housing 105. The output end of the output motor 201 is provided with an inner screw rod group 202, and the output end of the inner screw rod group 202 is provided with a sliding block 203 connected by threads. The inner side of the sliding block 203 is provided with a connecting frame 204, and a cleaning piece 205 is arranged below the connecting frame 204.

[0027] In the embodiment of the present invention, when cleaning is required, the output motor 201 is used to output power to drive the output end to operate, so that after the output motor 201 outputs and operates, the inner screw rod group 202 outputs and operates, so that the sliding block 203 performs a reciprocating operation, and the connecting frame 204 and the cleaning piece 205 clean the metal waste into the bridging cabin 303.

[0028] An upper cross frame 206 is arranged above the connecting frame 204, and an electric rotating shaft 207 is arranged on the inner bottom side of the upper cross frame 206. The output end of the electric rotating shaft 207 is provided with a central base 208, and the output end of the central base 208 is provided with a flexible strip 209. One end of the flexible strip 209 is provided with a rubber ball 2010.

[0029] In the embodiment of the present invention, when a large amount of materials attached to the non-woven fabric cover 108 need to be cleaned, the electric rotating shaft 207 on the upper cross frame 206 is timely started to output power to drive the output end to operate, so that the central base 208, the flexible strip 209, and the rubber ball 2010 perform a high-speed operation, and the rubber ball 2010 knocks on the non-woven fabric cover 108 to achieve the effect of vibrating and falling off.

[0030] The material transmission mechanism 3 includes a bolt gasket seat 301, a pipeline cabin 302, a bridging cabin 303, a bolt gasket disc 304, a speed change gearbox 305, a transmission motor 306, a pulley group 307, a meshing gear group 308, a rotating rod 309, and a spiral auger 3010. The bolt gasket seat 301 is bolted to the inner upper side of the opening substrate 103. The inner end of the bolt gasket seat 301 is provided with a pipeline cabin 302, and a bridging cabin 303 is arranged above the pipeline cabin 302. One end of the pipeline cabin 302 is provided with a bolt gasket disc 304, and the outer end of the bolt gasket disc 304 is provided with a speed change gearbox 305.

[0031] In the embodiment of the present invention, when the spiral auger 3010 rotates and operates, the waste input into the pipeline cabin 302 from the bridging cabin 303 is jointly output and output into the compression cabin 401.

[0032] On one side below the speed change gearbox 305, a driving motor 306 is provided, and a pulley group 307 is provided at the output end of the driving motor 306. The output end of the pulley group 307 is provided with a meshing gear group 308, and the output end of the meshing gear group 308 is provided with a rotating rod 309. A spiral auger 3010 is provided on the outer side of the rotating rod 309.

[0033] In an embodiment of the present invention, then the driving motor 306 on one side below the speed change gearbox 305 outputs power to drive the output end to operate, so that the pulley group 307 inside the speed change gearbox 305 outputs power to drive the output end to operate, so that after the meshing gear group 308 meshes and transmits power, the rotating rod 309 and the spiral auger 3010 rotate and operate.

[0034] The compression and discharging mechanism 4 includes a compression chamber 401, a pneumatic telescopic rod 402, an opening and closing door plate 403, an upper cover plate 404, a bottom cushion plate 405, a support frame 406, an oil cylinder base 407, a hydraulic oil cylinder 408, a pressure rod 409, a compression plate 4010, a push plate 4011, a connecting rod 4012, a sliding base 4013 and a lower lead screw group 4014. The compression chamber 401 is arranged at the output end of the pipeline chamber 302. A pneumatic telescopic rod 402 is arranged on the inner side of one end of the compression chamber 401, and an opening and closing door plate 403 is arranged at the output end of the pneumatic telescopic rod 402. A push plate 4011 is arranged on the inner side of the other end of the compression chamber 401, and a connecting rod 4012 is arranged at the rear side of the push plate 4011. The rear end of the connecting rod 4012 is provided with a sliding base 4013, and a lower lead screw group 4014 connected by threads is arranged at the output end of the sliding base 4013.

[0035] In an embodiment of the present invention, when discharging is required, the pneumatic telescopic rod 402 outputs power to operate, so that the opening and closing door plate 403 is opened. After opening, the lower lead screw group 4014 outputs power to operate, so that the connecting rod 4012 and the sliding base 4013 cooperate with the push plate 4011 to push out the compressed waste blocks.

[0036] An upper cover plate 404 is arranged above the compression chamber 401, a bottom cushion plate 405 is arranged below the compression chamber 401, and support frames 406 are arranged above the four weeks of the bottom cushion plate 405. An oil cylinder base 407 is arranged at the top end of the support frame 406, a hydraulic oil cylinder 408 is arranged above the oil cylinder base 407, a pressure rod 409 is arranged at the output end of the hydraulic oil cylinder 408, and a compression plate 4010 is arranged below the pressure rod 409.

[0037] In an embodiment of the present invention, after the waste material is input into the compression chamber 401, the hydraulic cylinder 408 above the oil cylinder base 407 outputs power to drive the output end to operate, so that the hydraulic cylinder 408 outputs power to make the pressure rod 409 cooperate with the compression plate 4010 to compress the waste material in the compression chamber 401 into blocks.

[0038] The working principle of the present invention is as follows: During use, the product is placed on the processing table 107 installed above the inner base 106 by the machine tool housing 105, and the milling cutter inside the machine tool housing 105 effectively processes the product. During the processing, the evacuation fan 1010 above the inclined chamber 109 outputs power to drive the output end to operate, so that the non-woven fabric cover 108 cooperates with the inner base 106 to attract the incoming waste material that needs to be evacuated. When there is less metal waste attached to the non-woven fabric cover 108, the machine tool housing 105, and the inner base 106, the drive motor 1013 on the vibration chamber 1012 on the side of the inner connecting cross bar 1011 outputs power to drive the output end to operate, so that the drive motor 1013 outputs power to drive the output end to operate, so that the rotating roller 1014 and the eccentric wheel group 1015 rotate to generate vibration, forming vibration to shake off the waste material attached to the non-woven fabric cover 108, the machine tool housing 105, and the inner base 106. When cleaning is required, the output motor 201 outputs power to drive the output end to operate, so that after the output motor 201 operates, the inner screw rod group 202 outputs operation to make the sliding block 203 reciprocate, so that the connecting frame 204 and the cleaning piece 205 clean the metal waste into the bridging chamber 303. When a large amount of material attached to the non-woven fabric cover 108 needs to be cleaned, the electric rotating shaft 207 on the upper cross frame 206 is started in a timely manner to output power to drive the output end to operate, so that the central base 208, the flexible strip 209, and the rubber ball 2010 run at high speed, so that the rubber ball 2010 knocks on the non-woven fabric cover 108 to achieve the effect of shaking off. Next, the driving motor 306 on one side below the variable speed gearbox 305 outputs power to drive the output end to operate, so that the pulley group 307 inside the variable speed gearbox 305 outputs power to drive the output end to operate, so that after the meshing gear group 308 meshes and transmits power, the rotating rod 309 and the spiral auger 3010 rotate. When the spiral auger 3010 rotates, the waste input from the bridging cabin 303 into the pipeline cabin 302 is jointly output to the compression cabin 401. When the waste is input into the compression cabin 401, the hydraulic cylinder 408 above the oil cylinder base 407 outputs power to drive the output end to operate, so that the hydraulic cylinder 408 outputs power to make the pressure rod 409 cooperate with the compression plate 4010 to compress the waste in the compression cabin 401 into blocks. When discharging is required, the pneumatic telescopic rod 402 outputs power to operate, so that the opening and closing door plate 403 opens. After opening, the lower lead screw group 4014 outputs operation, so that the connecting rod 4012, the sliding base 4013 cooperate with the push plate 4011 to push out the waste compressed into blocks.

[0039] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.

[0040] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard 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. A cleaning device for metal processing, comprising a waste extraction component (1) and a compression and discharging mechanism (4), characterized in that: Above the inner side of the waste extraction component (1) is provided a horizontally cleaning mechanism (2) installed in a sleeved manner. In the middle inner side of the waste extraction component (1) is provided a material transmission mechanism (3) assembled by bolts, and at the output end of the material transmission mechanism (3) is provided a compression discharging mechanism (4) installed in a sleeved manner.

2. The cleaning device for metal processing according to claim 1, wherein: The waste extraction component (1) includes a cushion block (101). Above the side of the cushion block (101) is provided a lifting frame (102), and at the top of the lifting frame (102) is provided an open base plate (103) assembled by bolts. Above the side of the open base plate (103) is provided a bolt cushion frame (104) assembled by bolts, and inside the side of the bolt cushion frame (104) is provided an inner connecting cross bar (1011). On the side of the inner connecting cross bar (1011) is provided a vibration chamber (1012), and at one end of the vibration chamber (1012) is provided a driving motor (1013). At the output end of the driving motor (1013) is provided a rotating roller (1014), and at the output end of the rotating roller (1014) is provided an eccentric wheel group (1015).

3. The cleaning device for metal processing according to claim 2, characterized in that: Above the bolt cushion frame (104) is provided a machine tool housing (105) assembled by bolts. Inside the side of the machine tool housing (105) is provided an inner supporting base (106). Above the inner supporting base (106) is provided a processing table (107). Inside the two ends of the machine tool housing (105) are provided non-woven fabric covers (108), and at the output end of the non-woven fabric covers (108) is provided an inclined chamber (109). At the output end of the inclined chamber (109) is provided an evacuation fan (1010) installed in a sleeved manner.

4. The cleaning device for metal processing according to claim 2, wherein: The horizontally cleaning mechanism (2) includes an output motor (201), an inner screw rod group (202), a sliding block (203), a connecting frame (204), a cleaning piece (205), an upper cross frame (206), an electric rotating shaft (207), a central base (208), a flexible strip (209), and a rubber ball (2010). The output motor (201) is arranged on the side of the machine tool housing (105). At the output end of the output motor (201) is provided an inner screw rod group (202), and at the output end of the inner screw rod group (202) is provided a sliding block (203) connected by threads. Inside the side of the sliding block (203) is provided a connecting frame (204), and below the connecting frame (204) is provided a cleaning piece (205).

5. The cleaning device for metal processing according to claim 4, wherein: Above the connecting frame (204) is provided an upper cross frame (206), and at the inner bottom side of the upper cross frame (206) is provided an electric rotating shaft (207). At the output end of the electric rotating shaft (207) is provided a central base (208), and at the output end of the central base (208) is provided a flexible strip (209). At one end of the flexible strip (209) is provided a rubber ball (2010).

6. The cleaning device for metal processing according to claim 2, characterized in that: The material transmission mechanism (3) includes a bolt pad base (301). The bolt pad base (301) is bolted to the upper inner side of the opening substrate (103). A pipeline compartment (302) is provided at the inner end of the bolt pad base (301). A bridging compartment (303) is provided above the pipeline compartment (302). A bolt pad disc (304) is provided at one end of the pipeline compartment (302). A speed change gearbox (305) is provided at the outer end of the bolt pad disc (304).

7. A cleaning device for metal processing according to claim 6, characterized in that: A transmission motor (306) is provided on one side below the speed change gearbox (305). A pulley group (307) is provided at the output end of the transmission motor (306). A meshing gear group (308) is provided at the output end of the pulley group (307). A rotating rod (309) is provided at the output end of the meshing gear group (308). A spiral auger (3010) is provided on the outer side of the rotating rod (309).

8. The cleaning device for metal processing according to claim 6, wherein: The compression and discharging mechanism (4) includes a compression compartment (401). The compression compartment (401) is provided at the output end of the pipeline compartment (302). A pneumatic telescopic rod (402) is provided on the inner side at one end of the compression compartment (401). An opening and closing door plate (403) is provided at the output end of the pneumatic telescopic rod (402). A push plate (4011) is provided on the inner side at the other end of the compression compartment (401). A connecting rod (4012) is provided at the rear side of the push plate (4011). A sliding base (4013) is provided at the rear end of the connecting rod (4012). A lower lead screw group (4014) with a threaded connection is provided at the output end of the sliding base (4013).

9. A cleaning device for metal processing according to claim 8, characterized in that: An upper cover plate (404) is provided above the compression compartment (401). A bottom cushion plate (405) is provided below the compression compartment (401). Support frames (406) are provided above the periphery of the bottom cushion plate (405). An oil cylinder base (407) is provided at the top end of the support frames (406). A hydraulic oil cylinder (408) is provided above the oil cylinder base (407). A pressure rod (409) is provided at the output end of the hydraulic oil cylinder (408). A compression plate (4010) is provided below the pressure rod (409).

Citation Information

Patent Citations

  • Cleaning device for metal machining

    CN118664384A