A copper processing mill adsorptive oil removal device
Patent Information
- Application Number
- CN202522420343.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-14
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-11-14
AI Technical Summary
[0002]铜加工行业中,轧机在进行轧制过程时,由于清辊器磨损及带材表面起皮使清辊器掺杂着铜粉及铜屑;现有的技术中,对于铜粉及铜屑的清理需要将机器关停;难以在铜带料驱动移动过程中一体自动对油液铜粉铜屑清理去除,影响后续的使用,且停机清理顶部堆积的油液和粉屑的方式,操作繁琐,影响生产效率;鉴于此,本申请提出了一种铜加工轧机吸附除油装置,来解决上述存在的问题
[0019]1、通过设置的U形支座、支撑转辊、清理辊和驱动电机,实现驱动铜带移动并对其顶部堆积的油液铜粉铜屑沾附清理;
Smart Images

Figure CN224657706U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of copper processing technology, specifically to an adsorption degreasing device for copper processing rolling mills. Background Technology
[0002] In the copper processing industry, during the rolling process, copper powder and shavings are mixed into the cleaning rollers due to wear and peeling of the strip surface. Existing technologies require shutting down the machine to clean these materials. It is difficult to automatically remove the oil, copper powder, and shavings during the copper strip's movement, affecting subsequent use. Furthermore, the method of stopping the machine to clean the accumulated oil and powder is cumbersome and reduces production efficiency. Therefore, this application proposes an adsorption degreasing device for copper processing rolling mills to solve the aforementioned problems. Utility Model Content
[0003] The purpose of this invention is to provide an adsorption degreasing device for copper processing rolling mills to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, this utility model provides the following technical solution: an adsorption degreasing device for a copper processing rolling mill, comprising a U-shaped support and two supporting rollers rotatably mounted on the inner wall of its bottom, the tops of the two supporting rollers being in movable contact with the same copper strip, and further comprising:
[0005] The cleaning roller is rotatably mounted on the inner wall of the front side of the U-shaped support and is in close contact with the top of the copper strip. The rear side of the U-shaped support is fixedly mounted with a drive motor whose output shaft is fixedly connected to the rear end of the cleaning roller. The drive motor is used to drive the cleaning roller to rotate so that it frictionally drives the copper strip to the right. The rotation of the cleaning roller achieves horizontal driving while simultaneously adhering and cleaning the oil, copper powder and copper shavings on the top of the copper strip.
[0006] A rectangular box is fixedly connected between the front and rear inner walls of the U-shaped support, and its top is set as an opening;
[0007] A powerful fan is fixedly installed on the top left side of the rectangular box, with an exhaust port on its right side that is connected to the inside of the rectangular box; the powerful fan is used to provide suction force to the inside of the rectangular box.
[0008] The scraping and adsorption assembly is installed on the right side of the rectangular box and makes active contact with the top of the copper strip. The scraping and adsorption assembly is used to scrape away the oil, copper powder and copper shavings remaining on the top of the copper strip when it moves to the right, and to suck up and clean the oil, copper powder and copper shavings that have been scraped and gathered when suction force is generated inside the rectangular box.
[0009] The oil and slag filter assembly is installed inside a rectangular box; the oil and slag filter assembly is used to filter and collect the oil and copper powder and copper shavings pumped into the rectangular box.
[0010] The scraper roller adsorption assembly is fixedly connected between the inner walls of the front and rear sides of the U-shaped support, and is in movable contact with the left side of the cleaning roller and is connected and fixed to the left side of the rectangular box. The scraper roller adsorption assembly is used to scrape and clean the oil, copper powder and copper shavings adhering to its outer side when the cleaning roller rotates, and to suck and clean the scraped and collected oil, copper powder and copper shavings when a suction force is generated in the rectangular box.
[0011] The pre-blowing oil cleaning component is fixedly installed between the inner walls of the front and rear sides of the U-shaped support and connected and fixed to the left air outlet of the powerful fan. The pre-blowing oil cleaning component is used to guide the air discharged from the air outlet when the powerful fan is started, and to pre-blow and clean the top of the copper strip before it is scraped and adsorbed, thereby reducing the oil accumulation on the top and achieving the effect of pre-assisted oil blowing outward.
[0012] Preferably, the scraping and adsorption assembly includes a bracket, a rubber scraper, and a plurality of first suction tubes. The bracket is fixedly connected to the right side of the rectangular box, and the bottom of the bracket is configured as a U-shaped structure. The rubber scraper is connected inside the U-shaped structure of the bracket, and the bottom of the rubber scraper is in movable contact with the top of the copper strip. The plurality of first suction tubes are connected and fixedly connected at equal intervals to the right side of the rectangular box, and the bottom end of the first suction tube is inclined to the left near the junction of the rubber scraper and the copper strip.
[0013] Preferably, the rubber scraper is adhesively connected within the U-shaped structure of the bracket.
[0014] Preferably, the rubber scraper is detachably and vertically connected to the U-shaped structure of the bracket. The outer side of the rubber scraper is in movable contact with the inner side of the U-shaped structure of the bracket. Two knob-type bolts are tightly pressed against the bottom right side of the rubber scraper. Two threaded holes are opened at the bottom right side of the U-shaped structure of the bracket, and the threaded holes are threadedly connected to the corresponding knob-type bolts.
[0015] Preferably, the oil and slag collection assembly includes a slag collection box, a connecting rod, a box cover, and a stainless steel filter screen. The slag collection box is movably fitted inside the bottom of a rectangular box, and the box cover is movably fitted on the top outside of the rectangular box. A U-shaped handle is fixedly connected to the top of the box cover. The connecting rod is fixedly connected between the bottom inner wall of the slag collection box and the top inner wall of the box cover. The stainless steel filter screen is fixedly fitted on the outside of the connecting rod and movably fitted inside the rectangular box. A breathable filter cloth is bonded to the bottom of the stainless steel filter screen, and a breathable absorbent cotton is bonded to the top of the stainless steel filter screen. The tops of multiple first suction pipes are located between the bottom of the stainless steel filter screen and the top of the slag collection box. The stainless steel filter screen is located below the powerful blower.
[0016] Preferably, the scraper adsorption assembly includes a slag collection box, three second suction pipes, and an inclined scraper. The slag collection box is fixedly connected between the front and rear inner walls of the U-shaped support. The bottom inner wall of the slag collection box is set as a conical structure. The inclined scraper is fixedly connected to the top right side of the slag collection box. The right side of the inclined scraper is in movable contact with the left side of the cleaning roller. The top ends of the three second suction pipes are all connected and fixed to the left side of the rectangular box. The bottom ends of the three second suction pipes extend into the slag collection box. The top ends of the second suction pipes are located between the bottom of the stainless steel filter screen and the top of the slag collection box.
[0017] Preferably, the pre-blowing cleaning assembly includes an L-shaped tube, a round tube, and multiple air blowing pipes. The round tube is fixedly connected between the inner walls of the front and rear sides of the U-shaped support. The bottom end of the L-shaped tube is connected and fixed to the top of the round tube. The right end of the L-shaped tube is configured as a cover-shaped structure and is connected and fixed to the left air outlet of the powerful blower. Multiple air blowing pipes are connected and fixed at equal intervals to the left side of the bottom of the round tube. All multiple air blowing pipes are inclined to the left and cooperate with the top of the copper strip. The round tube is located on the left side of the slag collection box.
[0018] Compared with the prior art, the beneficial effects of this utility model are:
[0019] 1. By setting up a U-shaped support, supporting roller, cleaning roller and drive motor, the copper strip is driven to move and the oil, copper powder and copper shavings accumulated on its top are adhered and cleaned.
[0020] 2. By using a rectangular box, a powerful fan, a scraping and adsorption assembly, and a filter oil and slag collection assembly, the residual oil and copper powder and shavings on the top of the copper strip are scraped and collected in one go when the copper strip moves to the right.
[0021] Combined with the set scraper adsorption component, when the cleaning roller rotates, it can scrape away and collect the oil, copper powder and copper shavings adhering to its outer side and suck them up for cleaning.
[0022] Combined with the pre-blowing and oil-cleaning components, the air discharged from the outlet of the powerful blower is guided when it starts, and the top of the copper strip is pre-blown and cleaned before the copper strip is scraped and cleaned, reducing the accumulation of oil on the top and achieving the effect of pre-assisted oil blowing outward.
[0023] 3. By combining the pre-cleaning of the top of the copper strip, the rotary drive for adhesion scraping and suction cleaning, and the scraping and suction cleaning, the oil, copper powder and copper shavings can be effectively and automatically cleaned and removed during the movement of the copper strip material. This avoids the phenomenon of large amounts of oil, copper powder and copper shavings remaining and affecting subsequent use. Moreover, there is no need to stop the machine for cleaning, making the operation simple and improving the convenience of cleaning, the degree of automation and production efficiency.
[0024] 4. The rubber scraper, bracket, knob-type bolt, and threaded hole are designed in a different way, which makes it easy to unlock and lower or disassemble and replace the rubber scraper when it is severely worn after long-term use, so as to continue to scrape and clean stably and improve the flexibility of use.
[0025] This invention features a series of structures that drive the copper strip to move and clean the oil, copper powder, and copper shavings accumulated on its top. It also facilitates sequential pre-blowing, scraping, and suction cleaning of the top of the copper strip as it moves, as well as scraping and suction cleaning of the substances adhering to the outside of the cleaning roller. Utilizing multiple cleaning methods working in synergy, it effectively and automatically removes oil, copper powder, and copper shavings during the copper strip's movement, preventing large amounts of residue from affecting subsequent use. Furthermore, it eliminates the need to stop the machine for cleaning, simplifying operation and improving cleaning convenience, automation, and production efficiency. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the structure of an adsorption degreasing device for a copper processing rolling mill according to Embodiment 1 of this utility model;
[0027] Figure 2 This is a right-side structural schematic diagram of an adsorption degreasing device for a copper processing rolling mill according to Embodiment 1 of this utility model;
[0028] Figure 3 This is a schematic diagram of the main cross-sectional view of an adsorption degreasing device for a copper processing mill according to Embodiment 1 of this utility model;
[0029] Figure 4 This is a schematic diagram of the main cross-sectional structure of an adsorption degreasing device for a copper processing mill according to Embodiment 2 of this utility model.
[0030] In the diagram: 1. U-shaped support; 101. Support roller; 102. Cleaning roller; 2. Rectangular box; 201. Box cover; 202. Connecting rod; 203. Slag collection box; 204. Stainless steel filter screen; 205. Powerful blower; 206. First suction pipe; 3. Bracket; 301. Rubber scraper; 302. Knob bolt; 4. Slag collection box; 401. Inclined scraper; 402. Second suction pipe; 5. L-shaped pipe; 501. Round pipe; 502. Air blowing pipe. Detailed Implementation
[0031] 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.
[0032] Example 1
[0033] like Figures 1 to 3As shown, the copper processing mill adsorption degreasing device proposed in this embodiment includes a U-shaped support 1 and two supporting rollers 101 rotatably mounted on the inner wall of its bottom. The tops of the two supporting rollers 101 are in movable contact with the same copper strip. The device also includes:
[0034] The cleaning roller 102 is rotatably mounted on the inner wall of the front side of the U-shaped support 1 and is in close contact with the top of the copper strip. The output shaft of the drive motor is fixedly mounted on the rear side of the U-shaped support 1 and is fixedly connected to the rear end of the cleaning roller 102. The drive motor is used to drive the cleaning roller 102 to rotate so that it frictionally drives the copper strip to the right. The rotation of the cleaning roller 102 achieves horizontal driving while adhering and cleaning the oil, copper powder and copper shavings on the top of the copper strip.
[0035] A rectangular box 2 is fixedly connected between the front and rear inner walls of the U-shaped support 1, and its top is set as an opening;
[0036] A powerful fan 205 is fixedly installed on the top left side of the rectangular box 2, with an exhaust port on its right side that is connected to the interior of the rectangular box 2; the powerful fan 205 is used to provide suction force to the interior of the rectangular box 2.
[0037] The scraping and adsorption assembly is installed on the right side of the rectangular box 2 and is in active contact with the top of the copper strip. The scraping and adsorption assembly is used to scrape away the oil, copper powder and copper shavings remaining on the top of the copper strip when it moves to the right, and to suck up and clean the oil, copper powder and copper shavings that have been scraped and gathered when suction force is generated in the rectangular box 2.
[0038] The oil and slag filter assembly is installed inside the rectangular box 2; the oil and slag filter assembly is used to filter and collect the oil and copper powder and copper shavings pumped into the rectangular box 2.
[0039] The scraper adsorption assembly is fixedly connected between the inner walls of the front and rear sides of the U-shaped support 1, and is in movable contact with the left side of the cleaning roller 102 and is connected and fixed to the left side of the rectangular box 2. The scraper adsorption assembly is used to scrape and clean the oil and copper powder and copper shavings adhering to its outer side when the cleaning roller 102 rotates, and to suck and clean the scraped and collected oil and copper powder and copper shavings when a suction force is generated in the rectangular box 2.
[0040] The pre-blowing oil cleaning component is fixedly installed between the inner walls of the front and rear sides of the U-shaped support 1 and connected and fixed to the left air outlet of the powerful fan 205. The pre-blowing oil cleaning component is used to guide the air discharged from the air outlet of the powerful fan 205 when it is started, and to pre-blowing clean the top of the copper strip before it is scraped and adsorbed, thereby reducing the oil accumulation on the top and achieving the effect of pre-assisted oil blowing outward.
[0041] In this embodiment, a rotating groove is provided on the inner front wall of the U-shaped support 1, and a first bearing is fixedly sleeved in the rotating groove. A rotating shaft is fixedly connected to the front side of the cleaning roller 102, and the inner ring of the first bearing is fixedly sleeved with the outer side of the rotating shaft, so as to achieve the effect of rotating the cleaning roller 102. Two arc-shaped grooves are provided on the inner bottom wall of the U-shaped support 1, and a second bearing is fixedly connected to the inner front and rear sides of the arc-shaped grooves. Pins are fixedly connected to the front and rear ends of the supporting roller 101, and the inner ring of the second bearing is fixedly sleeved with the outer side of the corresponding pin, so as to achieve the effect of rotating the supporting roller 101.
[0042] Furthermore, such as Figure 2 and 3 As shown, the scraping and adsorption assembly includes a bracket 3, a rubber scraper 301, and multiple first suction tubes 206. The bracket 3 is fixedly connected to the right side of the rectangular box 2. The bottom of the bracket 3 is set as a U-shaped structure. The rubber scraper 301 is connected inside the U-shaped structure of the bracket 3. The bottom of the rubber scraper 301 is in movable contact with the top of the copper strip. Multiple first suction tubes 206 are connected and fixed at equal intervals on the right side of the rectangular box 2. The bottom end of the first suction tube 206 is inclined to the left near the junction of the rubber scraper 301 and the copper strip.
[0043] In this embodiment, the bracket 3, the rubber scraper 301, and multiple first suction tubes 206 work together. When the copper strip moves to the right, its top rubs against the bottom of the rubber scraper 301. The rubber scraper 301 scrapes away the oil, copper powder, and copper shavings remaining on the top of the copper strip. When suction force is generated in the rectangular box 2, the rectangular box 2 uses multiple first suction tubes 206 to suck away and clean the scraped and collected oil, copper powder, and copper shavings. This allows the oil, copper powder, and copper shavings to be sucked and collected into the rectangular box 2, achieving the effect of scraping away and sucking away the oil, copper powder, and copper shavings remaining on its top when the copper strip moves to the right.
[0044] Furthermore, the rubber scraper 301 is bonded to the U-shaped structure of the bracket 3.
[0045] Furthermore, such as Figure 2 and 3As shown, the oil and slag collection and filtration assembly includes a slag collection box 203, a connecting rod 202, a box cover 201, and a stainless steel filter screen 204. The slag collection box 203 is movably fitted inside the bottom of the rectangular box 2. The box cover 201 is movably fitted on the top outside of the rectangular box 2. A U-shaped handle is fixedly connected to the top of the box cover 201. The connecting rod 202 is fixedly connected between the bottom inner wall of the slag collection box 203 and the top inner wall of the box cover 201. The stainless steel filter screen 204 is fixedly fitted on the outside of the connecting rod 202 and movably fitted inside the rectangular box 2. A breathable filter cloth is bonded to the bottom of the stainless steel filter screen 204, and a breathable water-absorbing cotton is bonded to the top of the stainless steel filter screen 204. The tops of multiple first suction pipes 206 are located between the bottom of the stainless steel filter screen 204 and the top of the slag collection box 203. The stainless steel filter screen 204 is located below the powerful blower 205.
[0046] In this embodiment, a sealing sleeve is glued and fixed to the inner side of the box cover 201, and the inner side of the sealing sleeve is in movable contact with the outer side of the rectangular box 2, so as to achieve the effect of movable sealing between the inner side of the box cover 201 and the outer side of the rectangular box 2.
[0047] In this embodiment, the slag collection box 203, connecting rod 202, box cover 201 and stainless steel filter screen 204 work together to filter and adsorb oil and copper powder and copper shavings when they are drawn into the rectangular box 2. The filter element composed of stainless steel filter screen 204, breathable filter cloth and breathable water-absorbing cotton filters and adsorbs them, and collects them into the slag collection box 203, thereby achieving the effect of filtering and collecting oil and copper powder and copper shavings drawn into the rectangular box 2.
[0048] Furthermore, such as Figure 1 and 3 As shown, the scraper adsorption assembly includes a slag collection box 4, three second suction pipes 402 and an inclined scraper 401. The slag collection box 4 is fixedly connected between the inner walls of the front and rear sides of the U-shaped support 1. The bottom inner wall of the slag collection box 4 is set as a conical structure. The inclined scraper 401 is fixedly connected to the right side of the top of the slag collection box 4. The right side of the inclined scraper 401 is in movable contact with the left side of the cleaning roller 102. The top ends of the three second suction pipes 402 are all connected and fixed to the left side of the rectangular box 2. The bottom ends of the three second suction pipes 402 extend into the slag collection box 4. The top ends of the second suction pipes 402 are located between the bottom of the stainless steel filter screen 204 and the top of the slag collection box 203.
[0049] In this embodiment, the slag collection box 4, three second suction pipes 402, and inclined scraper 401 work together. When the cleaning roller 102 rotates and drives the copper strip to move to the right, its outer side rubs against the top of the inclined scraper 401. The inclined scraper 401 scrapes away the oil, copper powder, and copper shavings adsorbed on its outer side. The oil, copper powder, and copper shavings slide down to the left along the top inclined surface and accumulate in the slag collection box 4. When a suction force is generated in the rectangular box 2, the rectangular box 2 uses the three second suction pipes 402 to suck and clean the oil, copper powder, and copper shavings accumulated in the slag collection box 4. This allows the oil, copper powder, and copper shavings to be sucked and collected into the rectangular box 2, achieving the effect of scraping, collecting, and sucking away the oil, copper powder, and copper shavings adhering to its outer side when the cleaning roller 102 rotates.
[0050] Furthermore, such as Figure 1 and 3 As shown, the pre-blowing cleaning assembly includes an L-shaped pipe 5, a round pipe 501, and multiple air blowing pipes 502. The round pipe 501 is fixedly connected between the inner walls of the front and rear sides of the U-shaped support 1. The bottom end of the L-shaped pipe 5 is connected and fixed to the top of the round pipe 501. The right end of the L-shaped pipe 5 is set as a cover-shaped structure and is connected and fixed to the left air outlet of the powerful blower 205. Multiple air blowing pipes 502 are connected and fixed at equal intervals to the bottom left side of the round pipe 501. Multiple air blowing pipes 502 are all tilted to the left and cooperate with the top of the copper strip. The round pipe 501 is located on the left side of the slag collection box 4.
[0051] In this implementation scheme, by using the L-shaped pipe 5, the round pipe 501 and multiple air blowing pipes 502 in combination, when the powerful blower 205 is started, the air discharged from its outlet is guided into the round pipe 501 through the L-shaped pipe 5, and then the air is blown out to the left through the multiple air blowing pipes 502, so as to pre-blow and clean the top of the copper strip before the copper strip is scraped and adsorbed. This achieves the goal of guiding the air discharged from the outlet of the powerful blower 205 when it is started, and pre-blowing and cleaning the top of the copper strip before the copper strip is scraped and adsorbed, reducing the accumulation of oil on the top and achieving the effect of pre-assisted blowing the oil outward.
[0052] It should be noted that: the breathable filter cloth is preferably made of polypropylene, which has good chemical stability and air permeability, high porosity and uniform pore size, and can effectively intercept copper powder and copper shavings particles. This material is a common application material in industrial dust removal and water filtration, and is widely used in various particulate filtration systems or equipment. Specific specifications (such as density and filtration accuracy) can be selected according to the actual working conditions. In addition, the breathable and absorbent cotton can be selected according to the actual working conditions to ensure appropriate air permeability. The conventional configuration of breathable filter cloth and breathable and absorbent cotton, and the selection of appropriate specifications according to the application, are mature and well-known conventional technical means in this field, and will not be elaborated further.
[0053] This embodiment can drive the copper strip to move and clean the oil, copper powder, and copper shavings accumulated on its top. It also facilitates the sequential pre-blowing, scraping, and suction cleaning of the top of the copper strip and the scraping and suction collection of the substances adhering to the outside of the cleaning roller 102 during the movement of the copper strip. By utilizing multiple cleaning methods in an integrated and coordinated manner, it can effectively and automatically clean and remove oil, copper powder, and copper shavings during the driving movement of the copper strip, avoiding the phenomenon of large amounts of oil, copper powder, and copper shavings remaining and affecting subsequent use. Moreover, it does not require stopping the machine for cleaning, making the operation simple and improving the convenience of cleaning, the degree of automation, and the production efficiency.
[0054] The usage method of this embodiment is as follows: When the copper processing mill adsorption degreasing device is used, the cleaning roller 102 is driven to rotate by the drive motor, and its friction drives the copper strip to the right, so that the copper strip moves to the right on the top of the two support rollers 101. The rotation of the cleaning roller 102 not only achieves horizontal driving, but also adsorbs and cleans the oil and copper powder and copper shavings on the top of the copper strip.
[0055] During the feeding process of the copper strip, the powerful fan 205 is started to draw suction into the rectangular box 2. When the copper strip moves to the right, its top rubs against the bottom of the rubber scraper 301. The rubber scraper 301 scrapes away the oil, copper powder and copper shavings remaining on the top of the copper strip. When suction force is generated in the rectangular box 2, the rectangular box 2 uses multiple first suction pipes 206 to draw and clean the scraped and collected oil, copper powder and copper shavings. The oil, copper powder and copper shavings are drawn and collected into the rectangular box 2. When the oil, copper powder and copper shavings are drawn into the rectangular box 2, the filter element composed of stainless steel filter screen 204, air-permeable filter cloth and air-permeable absorbent cotton is used to filter and adsorb them, and collect them into the slag collection box 203. The oil, copper powder and copper shavings are filtered and collected, achieving the effect of scraping away and collecting the oil, copper powder and copper shavings remaining on the top of the copper strip when it moves to the right.
[0056] When the cleaning roller 102 rotates and drives the copper strip to move to the right, its outer side rubs against the top of the inclined scraper 401. The inclined scraper 401 scrapes away the oil, copper powder and copper shavings adsorbed on its outer side. The oil, copper powder and copper shavings slide down to the left along the top inclined surface and accumulate in the slag collection box 4. When a suction force is generated in the rectangular box 2, the rectangular box 2 uses three second suction pipes 402 to suction and clean the oil, copper powder and copper shavings accumulated in the slag collection box 4. This allows the oil, copper powder and copper shavings to be sucked and collected into the rectangular box 2, achieving the effect of scraping and collecting the oil, copper powder and copper shavings adhering to its outer side and suction and cleaning them together when the cleaning roller 102 rotates.
[0057] When the powerful blower 205 starts, the air discharged from its outlet is guided into the round pipe 501 through the L-shaped pipe 5. The air is then blown out to the left through multiple blowing pipes 502 to pre-blow and clean the top of the copper strip before it is scraped and adsorbed. This achieves the goal of guiding the air discharged from the outlet of the powerful blower 205 when it starts and pre-blowing and cleaning the top of the copper strip before it is scraped and adsorbed, reducing the accumulation of oil on the top and achieving the effect of pre-assisted cleaning of oil. Through the integrated and coordinated method of pre-cleaning the top of the copper strip, rotating adsorption scraping and suction cleaning, and scraping and suction cleaning, the oil, copper powder and copper shavings can be effectively and automatically cleaned and removed during the driving movement of the copper strip material. This avoids the phenomenon of a large amount of oil, copper powder and copper shavings remaining and affecting subsequent use. Moreover, there is no need to stop the machine for cleaning, the operation is simple, and the cleaning convenience, automation level and production efficiency are improved.
[0058] Example 2
[0059] like Figure 4 As shown, this embodiment differs from Embodiment 1 in that: the rubber scraper 301 is detachably and vertically connected to the U-shaped structure of the bracket 3, the outer side of the rubber scraper 301 is in contact with the inner side of the U-shaped structure of the bracket 3, and two knob bolts 302 are tightly pressed against the bottom right side of the rubber scraper 301. Two threaded holes are opened at the bottom right side of the U-shaped structure of the bracket 3, and the threaded holes are threadedly connected to the corresponding knob bolts 302.
[0060] This embodiment facilitates the unlocking, lowering, or disassembly and replacement of the rubber scraper 301 when it wears out severely after prolonged use, so as to continue to stably scrape and clean the application and improve the flexibility of use.
[0061] The usage method of this embodiment differs from that of Embodiment 1 in that it also has the following functions: Using the provided knob-type bolts 302 and threaded holes, the rubber scraper 301 is tightened by the two knob-type bolts 302 to achieve its fixing. If the rubber scraper 301 becomes severely worn after prolonged use and cannot effectively scrape, the operator can rotate the knob-type bolts 302 in the opposite direction to move it to the right within the corresponding threaded hole, releasing the locking of the rubber scraper 301. At this time, the operator can press down and move the rubber scraper 301 to make effective contact with the top of the copper strip. Then, rotating the knob-type bolts 302 in the forward direction will move it back to the left to tighten and fix the rubber scraper 301. This achieves the effect of convenient fixing, unlocking, and adjusting of the rubber scraper 301. Furthermore, due to the unlockable method, when the wear becomes too severe, it can be pulled out from the bracket 3 for replacement. The adjustable and replaceable method facilitates stable scraping and improves the flexibility of use.
[0062] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A copper processing mill adsorption degreasing device, comprising a U-shaped support (1) and two supporting rollers (101) rotatably mounted on the inner wall of its bottom, wherein the tops of the two supporting rollers (101) are in movable contact with the same copper strip, characterized in that: Also includes: The cleaning roller (102) is rotatably mounted on the inner wall of the front side of the U-shaped support (1) and is in close contact with the top of the copper strip. The rear side of the U-shaped support (1) is fixedly mounted with a drive motor whose output shaft is fixedly connected to the rear end of the cleaning roller (102). A rectangular box (2) is fixedly connected between the front and rear inner walls of the U-shaped support (1), and its top is set as an opening; A powerful fan (205) is fixedly installed on the top left side of the rectangular box (2), with an exhaust port on its right side that is connected to the inside of the rectangular box (2); The scraping and adsorption assembly is installed on the right side of the rectangular box (2) and makes active contact with the top of the copper strip; The oil and sludge collection and filtration assembly is installed inside the rectangular box (2); The scraper adsorption assembly is fixedly connected between the inner walls of the front and rear sides of the U-shaped support (1), and is in active contact with the left side of the cleaning roller (102), and is connected and fixed to the left side of the rectangular box (2); The pre-blowing cleaning component is fixedly installed between the inner walls of the front and rear sides of the U-shaped support (1) and connected and fixed to the left air outlet of the powerful blower (205).
2. The copper processing rolling mill adsorption degreasing device according to claim 1, characterized in that: The scraping and adsorption assembly includes a bracket (3), a rubber scraper (301), and multiple first suction tubes (206). The bracket (3) is fixedly connected to the right side of the rectangular box (2). The bottom of the bracket (3) is set as a U-shaped structure. The rubber scraper (301) is connected inside the U-shaped structure of the bracket (3). The bottom of the rubber scraper (301) is in movable contact with the top of the copper strip. Multiple first suction tubes (206) are connected and fixed at equal intervals on the right side of the rectangular box (2). The bottom end of the first suction tube (206) is inclined to the left near the junction of the rubber scraper (301) and the copper strip.
3. The copper processing rolling mill adsorption degreasing device according to claim 2, characterized in that: The rubber scraper (301) is bonded to the U-shaped structure of the bracket (3).
4. The copper processing rolling mill adsorption degreasing device according to claim 2, characterized in that: The rubber scraper (301) is detachably and vertically connected to the U-shaped structure of the bracket (3). The outer side of the rubber scraper (301) is in contact with the inner side of the U-shaped structure of the bracket (3). Two knob bolts (302) are tightly pressed against the bottom right side of the rubber scraper (301). Two threaded holes are opened at the bottom right side of the U-shaped structure of the bracket (3), and the threaded holes are threadedly connected to the corresponding knob bolts (302).
5. The copper processing rolling mill adsorption degreasing device according to claim 2, characterized in that: The oil and sludge filtration assembly includes a sludge collection box (203), a connecting rod (202), a box cover (201), and a stainless steel filter screen (204). The sludge collection box (203) is movably fitted inside the bottom of the rectangular box (2), and the box cover (201) is movably fitted on the top outside of the rectangular box (2). A U-shaped handle is fixedly connected to the top of the box cover (201), and the connecting rod (202) is fixedly connected to the bottom inner wall of the sludge collection box (203) and the top inner wall of the box cover (201). Between the walls, a stainless steel filter screen (204) is fixedly sleeved on the outside of the connecting rod (202) and movably sleeved in the rectangular box (2). The bottom of the stainless steel filter screen (204) is bonded with a breathable filter cloth, and the top of the stainless steel filter screen (204) is bonded with a breathable absorbent cotton. The tops of multiple first suction pipes (206) are located between the bottom of the stainless steel filter screen (204) and the top of the slag collection box (203). The stainless steel filter screen (204) is located below the powerful blower (205).
6. The copper processing rolling mill adsorption degreasing device according to claim 5, characterized in that: The scraper adsorption assembly includes a slag collection box (4), three second suction pipes (402) and an inclined scraper (401). The slag collection box (4) is fixedly connected between the inner walls of the front and rear sides of the U-shaped support (1). The bottom inner wall of the slag collection box (4) is set as a conical structure. The inclined scraper (401) is fixedly connected to the right side of the top of the slag collection box (4). The right side of the inclined scraper (401) is in contact with the left side of the cleaning roller (102). The top ends of the three second suction pipes (402) are all connected and fixed to the left side of the rectangular box (2). The bottom ends of the three second suction pipes (402) extend into the slag collection box (4). The top ends of the second suction pipes (402) are located between the bottom of the stainless steel filter screen (204) and the top of the slag collection box (203).
7. The copper processing rolling mill adsorption degreasing device according to claim 6, characterized in that: The pre-blowing cleaning assembly includes an L-shaped tube (5), a round tube (501), and multiple air blowing tubes (502). The round tube (501) is fixedly connected between the inner walls of the front and rear sides of the U-shaped support (1). The bottom end of the L-shaped tube (5) is connected and fixed to the top of the round tube (501). The right end of the L-shaped tube (5) is set as a cover-shaped structure and is connected and fixed to the left air outlet of the powerful blower (205). Multiple air blowing tubes (502) are connected and fixed at equal intervals to the left side of the bottom of the round tube (501). Multiple air blowing tubes (502) are all tilted to the left and cooperate with the top of the copper strip. The round tube (501) is located on the left side of the slag collection box (4).