Machining scrap treatment device for sealing element

By designing a seal machining debris treatment device including a brake motor, a rotary fixing member, a workbench, a groove milling cutter member and a suction member, the problem of debris collection and treatment during seal processing is solved, and efficient debris treatment and seal processing are achieved.

CN120134043APending Publication Date: 2025-06-13XUZHOU TELIYOU NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202510242678.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-06-13

AI Technical Summary

Technical Problem

During the machining of seals, the generated debris are difficult to collect and process effectively, resulting in difficult splashing and cleaning of debris, wasting manpower and material resources, and may be interspersed in difficult-to-clear gaps.

Method used

A machined debris treatment device for seals is designed, including a brake motor, a rotary fixing member, a workbench, a groove milling cutter member and a suction member. The suction member uses a combination of a suction tube, a vacuum pump and a placement cavity to generate negative pressure using a vacuum pump to suck debris generated during the milling groove processing into the placement cavity.

Benefits of technology

It effectively avoids debris splashing, significantly improves the rate of debris treatment, reduces the waste of manpower and material resources, and improves the processing efficiency of seals.

✦ Generated by Eureka AI based on patent content.

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Abstract

A machining scrap treatment device for a sealing element relates to the technical field of sealing element treatment and comprises a brake motor, a rotary fixing component, a workbench, a groove milling cutter component and a suction component, the brake motor drives the rotary fixing component to rotate, the rotary fixing component is configured to fix the sealing element, and the suction component is configured to suck the sealing element. The groove milling cutter component is connected to the workbench, the workbench is configured to drive the groove milling cutter component to move back and forth relative to the rotating fixing piece, the groove milling cutter component is configured to conduct groove milling on the sealing piece, and the suction component and the groove milling cutter component are arranged in a matched mode; and through the arrangement of the suction assembly, a large number of chippings generated in the process of milling the groove to machine the sealing element can be sucked into the containing cavity, and the chipping treatment speed is increased to a great extent.
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Description

Technical Field

[0001] The invention relates to the technical field of seal processing, in particular to a sealing component machining debris processing device. Background Art

[0002] A seal is a device used to prevent liquid or gas leakage. It is usually made of elastic material and has a sealing effect. The choice of material is of great significance to its sealing performance and service life. The performance of the material directly affects the performance of the seal.

[0003] In the prior art, during the preparation process of the seal, the seal needs to be machined by an automatic lathe. During the process of milling the grooves of the seal, a large amount of debris is generated. Generally, a special collection container is set under the cutting station to collect the generated debris. However, during the cutting process, it is inevitable that a certain amount of debris will splash out of the collection container. Cleaning the splashed debris is a waste of manpower and material resources, and the debris may be mixed in some gaps that are difficult to clean. Summary of the invention

[0004] The present invention aims to solve the shortcomings existing in the background technology and provides a machining debris processing device for a seal and a seal, which at least solves some of the technical problems in the prior art.

[0005] To achieve the above object, the present invention provides the following technical solutions: A machining chip processing device for a seal comprises a brake motor, a rotating fixed component, a workbench, a slotting cutter component, and a suction component, wherein the brake motor drives the rotation of the rotating fixed component, the rotating fixed component is configured to fix the seal, the slotting cutter component is connected to the workbench, the workbench is configured to drive the slotting cutter component to move forward and backward relative to the rotating fixed component, the slotting cutter component is configured to mill slots on the seal, and the suction component is arranged in cooperation with the slotting cutter component; Wherein, the suction component includes a suction tube, a vacuum pump, and a placement cavity. The suction tube and the vacuum pump are respectively connected to the placement cavity. The suction tube is configured to suck impurities present in the milling groove seal of the milling cutter component into the placement cavity. The vacuum pump is configured to perform vacuum processing on the space in the placement cavity and the suction tube.

[0006] Furthermore, the suction pipe includes a suction pipe, a telescopic pipe, and a feeding pipe, and the suction pipe and the feeding pipe are respectively arranged at both ends of the telescopic pipe; Among them, the suction port of the suction pipe is arranged at the corresponding position of the milling cutter, the end of the feed pipe close to the placement cavity is connected to the placement cavity, and the telescopic tube is configured as a soft plastic tube with adjustable length.

[0007] Further, the rotation fixing member includes a fixing disk and a dual-purpose charging and suction pump, and the fixing disk is connected to the dual-purpose charging and suction pump; Wherein, a plurality of through holes are provided on the fixing disk, and the plurality of through holes are respectively connected to the dual-purpose charging and suction pump in a parallel connection manner, and the dual-purpose charging and suction pump is configured to provide negative pressure or positive pressure to the through holes.

[0008] Further, the fixing disk includes a chassis, and a plurality of grooves with different inner diameter ranges are provided on the chassis; Wherein, a plurality of uniformly arranged through holes are provided in the plurality of grooves, a confluence cavity is provided in the chassis, the bottom ends of the plurality of through holes are all connected to the confluence cavity, a through groove penetrating the chassis is provided at one end of the confluence cavity close to the dual-purpose charging and suction pump, and the through groove is connected to the dual-purpose charging and suction pump.

[0009] Further, the milling groove cutter member includes a milling groove cutter, a support member, a sliding member and a control motor, the support member is arranged on the workbench, the sliding member is arranged on the support member, and the control motor is arranged on the support member; Wherein, a driving motor is provided in the workbench, the driving motor is configured to drive the support member to slide back and forth relative to the rotation fixing member on the workbench, and the control motor is configured to drive the sliding member to slide up and down or left and right on the support member.

[0010] Further, a water supply member is further included, and the water supply member includes a water storage tank, a water pipe and a spray gun; Wherein, the spray gun is connected to the water storage tank through the water pipe, and the spray gun is arranged above the milling groove cutter.

[0011] Further, a housing is further included, the fixing disk, the workbench, the water storage tank and the water pipe are respectively connected to the inner side wall of the housing, the dual-purpose charging and suction pump and the spray gun are arranged in the housing, and a sliding door is further provided on the housing.

[0012] Further, a water pump is further provided in the water storage tank, and two water suction pipes are provided on the water pump, and the two water suction pipes are respectively connected to a suction member and a water source.

[0013] Further, a filter screen is provided in the placement cavity, and the filter screen is connected to the inner wall of the placement cavity; Wherein, the filter screen divides the placement cavity into two spaces, a solid cavity and a liquid cavity, the filter screen is configured to be detachably arranged in the placement cavity, a water outlet is provided at the bottom surface of the placement cavity, and a valve is provided at the position of the water outlet.

[0014] Advantages of the present invention: (1) By providing a suction assembly, the present invention can suck a large amount of debris generated during the milling groove process of the seal into the placement cavity, and effectively avoid the phenomenon of debris splashing by setting the negative pressure value generated by the suction assembly, greatly increasing the rate of debris processing.

[0015] (2) By setting a part of the suction pipe as an adjustable-length adjustment pipe, the present invention can ensure that during the working process, the suction pipe does not need to be readjusted due to the position change of the milling cutter. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of an embodiment of the present invention; Figure 2 is a schematic structural diagram of a rotary fixing member of an embodiment of the present invention; Figure 3 is a front view of a fixing plate of an embodiment of the present invention; Figure 4 is a schematic structural diagram of a water storage tank and a water pump of an embodiment of the present invention; Figure 5 is a schematic structural diagram of a placement cavity and a vacuum pump of an embodiment of the present invention; In the figure, 1 - brake motor; 2 - rotary fixing member; 3 - workbench; 4 - milling cutter member; 5 - suction member; 7 - housing; 21 - fixing plate; 22 - charging and suction dual-purpose pump; 23 - rotary cylinder; 31 - driving motor; 41 - milling cutter; 42 - support member; 43 - sliding member; 44 - control motor; 51 - suction pipe; 52 - vacuum pump; 53 - placement cavity; 54 - filter screen; 61 - water storage tank; 62 - water pipe; 63 - spray gun; 211 - through hole; 212 - chassis; 213 - groove; 214 - confluence cavity; 215 - through slot; 511 - suction pipe; 512 - telescopic pipe; 513 - feed pipe; 531 - solid cavity; 532 - liquid cavity; 533 - water outlet; 534 - valve; 611 - water pump; 612 - water suction pipe. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0017] 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. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of the present invention.

[0018] The following disclosure provides many different embodiments or examples for implementing different structures of the present invention. To simplify the disclosure of the present invention, the components and settings of specific examples are described below. Of course, they are merely examples and are not intended to limit the present invention. In addition, the present invention may repeat reference numerals and / or reference letters in different examples. This repetition is for the purpose of simplification and clarity and does not itself indicate the relationship between the various embodiments and / or settings discussed. In addition, the present invention provides examples of various specific processes and materials, but those of ordinary skill in the art can be aware of the application of other processes and / or the use of other materials.

[0019] As Figure 1 shown, to solve the above problems, this embodiment provides a machining debris treatment device for a seal, including a brake motor 1, a rotary fixing member 2, a workbench 3, a milling groove cutter member 4, and a suction member 5. The brake motor 1 drives the rotation of the rotary fixing member 2, and the rotary fixing member 2 is configured to fix the seal. The milling groove cutter member 4 is connected to the workbench 3, and the workbench 3 is configured to drive the milling groove cutter member 4 to move back and forth relative to the rotary fixing member 2. The milling groove cutter member 4 is configured to mill a groove in the seal, and the suction member 5 is arranged in cooperation with the milling groove cutter member 4; Among them, the suction member 5 includes a suction pipe 51, a vacuum pump 52, and a placement cavity 53. The suction pipe 51 and the vacuum pump 52 are respectively connected to the placement cavity 53. The suction pipe 51 is configured to suck the impurities generated when the milling groove cutter member 4 mills the seal into the placement cavity 53, and the vacuum pump 52 is configured to perform a vacuum treatment on the space in the placement cavity 53 and the suction pipe 51.

[0020] It should be noted that: during use, first place the seal to be processed on the rotary fixing member 2, adsorb and fix the seal to be processed through the rotary fixing member 2, move the milling groove cutter member 4 to the set position through the workbench 3, and control the rotary fixing member 2 to rotate through the brake motor 1 to drive the rotation of the seal to be processed, so that the milling groove cutter member 4 mills the seal.

[0021] During the milling process, the vacuum pump 52 operates to perform a vacuum treatment on the space in the placement cavity 53 and the suction pipe 51, so that the inside of the suction pipe 51 is in a negative pressure state, and the suction pipe 51 sucks the impurities generated during the milling process into the placement cavity 53.

[0022] When the work is completed or the placement cavity 53 is full, clean and recycle the impurities collected in the placement cavity 53. The collected impurities can be used for remelting and reuse or sold to downstream customers, increasing the utilization rate of raw materials and effectively reducing production costs.

[0023] In a further implementation manner of this embodiment, the suction pipe 51 includes a material suction pipe 511, a telescopic pipe 512, and a feed pipe 513. The material suction pipe 511 and the feed pipe 513 are respectively arranged at both ends of the telescopic pipe 512; Wherein, the suction port of the material suction pipe 511 is arranged at the corresponding position of the milling cutter 41. One end of the feed pipe 513 close to the placement cavity 53 is connected to the placement cavity 53. The telescopic pipe 512 is configured as a soft plastic pipe for adjusting the length.

[0024] It should be noted that: by correspondingly arranging the suction port of the material suction pipe 511 with the position of the milling cutter 41, the impurities milled out from the seal can be effectively sucked into the material suction pipe 511 during the milling process.

[0025] By arranging the telescopic pipe 512, during the process of the workbench moving the milling cutter member 4, it is not necessary to adjust the overall suction pipe 51. The increased or decreased length relative to the original length can be adjusted by the telescopic pipe 512, which greatly facilitates the use of the device.

[0026] There are various connection methods between the material suction pipe 511, the telescopic pipe 512, and the feed pipe 513. For example: snap connection, threaded connection, integrally formed setting, etc. However, it should be noted that the material suction pipe 511, the telescopic pipe 512, and the feed pipe 513 need to maintain a sealed state to avoid air leakage, which may affect the suction force at the suction port position of the material suction pipe 511 and cause the impurities not to be well sucked into the material suction pipe 511.

[0027] As Figure 2 shown, in a further implementation manner of this embodiment, the rotary fixing member 2 includes a fixing disk 21 and a dual-purpose charging and suction pump 22. The fixing disk 21 is connected to the dual-purpose charging and suction pump 22; Wherein, a plurality of through holes 211 are provided on the fixing disk 21. The plurality of through holes 211 are respectively connected to the dual-purpose charging and suction pump 22 in a parallel connection manner. The dual-purpose charging and suction pump 22 is configured to provide negative pressure or positive pressure to the through holes 211.

[0028] It should be noted that: when it is necessary to fix the seal, place the seal on the fixing disk 21, start the dual-purpose charging and suction pump 22 to pump air from the through holes 211 to form a negative pressure to adsorb and fix the seal on the fixing disk 21, so as to avoid falling off during the milling process.

[0029] When it is necessary to remove the seal, adjust the dual-purpose charging and suction pump 22 to inflate the through holes 211, so that a positive pressure is formed in the through holes 211. The seal adsorbed on the fixing disk 21 is pushed out of the fixing disk 21 through the positive pressure, so that the seal can be easily taken out from the fixing disk 21.

[0030] As Figure 2 and Figure 3 shown, in a further implementation manner of this embodiment, the fixed disk 21 includes a chassis 212, and a plurality of grooves 213 with different inner diameter ranges are provided on the chassis 212; Among them, a plurality of uniformly arranged through holes 211 are provided in each of the plurality of grooves 213, a confluence chamber 214 is provided in the chassis 212, the bottom ends of the plurality of through holes 211 are all connected to the confluence chamber 214, and a through slot 215 penetrating the chassis 212 is provided at one end of the confluence chamber 214 close to the dual-purpose filling and suction pump 22, and the through slot 215 is connected to the dual-purpose filling and suction pump 22.

[0031] It should be noted that: by providing the groove 213, the seal is first placed in the groove 213, and then the dual-purpose filling and suction pump 22 is started to pump air to form a negative pressure, so that the seal can be quickly fixed and clamped. The operation is simple and convenient, the operation difficulty is reduced, and the work efficiency can be greatly improved.

[0032] Moreover, due to the existence of the groove 213 during the fixing process of the seal, the seal will be limited, so that the seal is not easily deformed during the process of milling the groove while being fixed in the groove 213, thereby ensuring the processing quality. By providing a plurality of grooves 213 with different inner diameter ranges, it is possible to fix and clamp seals of various specifications, and it has extremely strong applicability.

[0033] As Figure 1 shown, in a further implementation manner of this embodiment, the milling cutter member 4 includes a milling cutter 41, a support member 42, a sliding member 43 and a control motor 44. The support member 42 is arranged on the workbench 3, the sliding member 43 is arranged on the support member 42, and the control motor 44 is arranged on the support member 42; Among them, a driving motor 31 is provided in the workbench 3, and the driving motor 31 is configured to drive the support member 42 to slide back and forth relative to the rotation fixing member 2 on the workbench, and the control motor 44 is configured to drive the sliding member 43 to slide up and down or left and right on the support member 42.

[0034] It should be noted that: the rotation fixing member 2 is connected to the brake motor 1 through a rotating cylinder 23, the dual-purpose suction pump 22 is arranged in the rotating cylinder 23, and the rotating cylinder 23 can drive the fixed disk 21 to rotate.

[0035] The driving motor 31 drives the support member 42 to move on the workbench 3, so as to control the distance between the milling cutter 41 and the seal fixed on the chassis 212. After reaching the preset position, the brake motor 1 is started to drive the rotating cylinder 23 to rotate, and then drive the fixed disk 21 to rotate, so as to drive the seal to rotate; the milling cutter 41 in contact with the seal mills the seal.

[0036] By controlling the motor 44 to drive the height position of the sliding member 43, the position adjustment of the milling cutter 41 can be achieved. The milling cutter 41 can be adjusted to the position of the groove 213 corresponding to the inner diameter, which can meet the milling of seals of various sizes and can mill different positions of seals of the same size, greatly increasing the applicable range of the device.

[0037] As Figure 1 shown, in a further embodiment of this embodiment, it further includes a water supply member, and the water supply member includes a water storage tank 61, a water pipe 62 and a spray gun 63; Among them, the spray gun 63 is connected to the water storage tank 61 through the water pipe 62, and the spray gun 63 is arranged above the milling cutter 41.

[0038] It should be noted that: the spray gun 63 is arranged above the milling cutter 41 through a fixture. During the milling process, the water in the water storage tank 61 is sprayed onto the milling position through the water pipe 62 and the spray gun 63.

[0039] On the one hand, it can effectively cool down the milling position to avoid overheating of the milling position during the milling process, which may cause deformation of the seal and thus affect the milling result. On the other hand, it can effectively prevent the splashing of impurities during the milling process, making it more convenient for the suction pipe 51 to suck the impurities.

[0040] The water pipe 62 is connected or coiled in the housing 7 through a buckle. The material of the water pipe 62 is an elastic soft plastic pipe. When the milling cutter 41 moves, the water pipe 62 and the spray gun 63 will also move correspondingly to ensure that the spray gun 63 is always arranged at the corresponding position above the milling cutter 41.

[0041] As Figure 1 shown, in a further embodiment of this embodiment, it further includes a housing 7. The fixed disk 21, the workbench 3, the water storage tank 61 and the water pipe 62 are respectively connected to the inner side wall of the housing 7. The charging and suction dual-purpose pump 22 and the spray gun 63 are arranged in the housing 7, and a sliding door is also provided on the housing.

[0042] As Figure 4 shown, a water pump 611 is further arranged in the water storage tank 61. Two water suction pipes 612 are arranged on the water pump 611, and the two water suction pipes 612 are respectively connected to the suction member 5 and the water source.

[0043] It should be noted that: the water storage tank 61 is arranged above the milling cutter 41. The water in the water storage tank 61 can flow into the spray gun 63 through the water pipe 62 under the action of gravity. The speed of the water flow is controlled through the pressurization treatment of the spray gun 63 to spray water and cool down and adsorb debris at the corresponding position of the seal during the milling process.

[0044] By arranging a water pump 611 inside the water storage tank 61, the water remaining at the bottom of the placement cavity 53 can be pumped into the water storage tank 61, so as to achieve the purpose of recycling water. During the suction process of the suction pipe 51, inevitably, some water flow cannot be sucked in. Therefore, the water in the water storage tank 61 is in a consumable state. By adding a second suction pipe 612 to send the water in the water source into the water storage tank 61, it is avoided that the local temperature of the seal is too high and deformed due to water shortage during the milling groove process.

[0045] As Figure 5 shown, in a further implementation manner of this embodiment, a filter screen 54 is arranged inside the placement cavity 53, and the filter screen 54 is connected to the inner wall of the placement cavity 53; Among them, the filter screen 54 divides the inside of the placement cavity 53 into two spaces, a solid cavity 531 and a liquid cavity 532. The filter screen 54 is configured to be detachably arranged inside the placement cavity 53. The bottom surface of the placement cavity 53 is provided with a water outlet 533, and a valve 534 is arranged at the position of the water outlet 533.

[0046] It should be noted that: by arranging the filter screen 54, the mixture of debris and water entering the placement cavity 53 is separated. The water flows into the liquid cavity 532 under the action of gravity and the filter screen 54, and the solid debris remains in the solid cavity 531 above the filter screen 54. By arranging the water outlet 533 and the valve 534, it can be controlled whether the water in the liquid cavity 532 can flow out.

[0047] The above are only the preferred embodiments of the present invention, and do not impose any form of limitation on the present invention. Although the present invention has been disclosed above with the preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art, within the scope of the technical solution of the present invention, can make some changes or modifications to the above-disclosed technical content to obtain equivalent embodiments with the same changes, etc. However, as long as it does not depart from the content of the technical solution of the present invention, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present invention still fall within the scope of the technical solution of the present invention.

Claims

1. A sealing component machining chip processing device, characterized in that: It includes a brake motor, a rotating fixed component, a workbench, a slotting cutter component, a suction component and a water supply component, wherein the brake motor is used to drive the rotation of the rotating fixed component, the rotating fixed component is configured to fix the sealing component, the slotting cutter component is connected to the workbench, the workbench is configured to drive the slotting cutter component to move forward and backward relative to the rotating fixed component, the slotting cutter component is configured to mill the sealing component, and the suction component is arranged in cooperation with the slotting cutter component; Wherein, the suction component includes a suction pipe, a vacuum pump and a placement chamber, the suction pipe and the vacuum pump are respectively connected to the placement chamber, the suction pipe inlet is configured to align with the seal to be machined, the suction pipe is configured to suck impurities that appear during the machining process of the milling groove seal of the milling cutter component into the placement chamber, the vacuum pump is configured to form a negative pressure environment by sucking the space in the placement chamber and the suction pipe, the water supply component includes a water storage tank, a water pipe and a spray gun; the spray gun is connected to the water storage tank through the water pipe, and the spray gun is arranged above the milling groove cutter.

2. The machining chip processing device for a seal according to claim 1, characterized in that: The suction pipe comprises a suction pipe, a telescopic pipe and a feeding pipe, wherein the suction pipe and the feeding pipe are respectively arranged at two ends of the telescopic pipe; Among them, the suction port of the suction pipe is arranged at the corresponding position of the milling cutter, the end of the feed pipe close to the placement cavity is connected to the placement cavity, and the telescopic tube is configured as a soft plastic tube with adjustable length.

3. The machining chip processing device for a seal according to claim 1, characterized in that: The rotating fixed component includes a fixed disk and a dual-purpose charging and suction pump, and the fixed disk is connected to the dual-purpose charging and suction pump; Wherein, the fixed plate is provided with a plurality of through holes, and the plurality of through holes are respectively connected to the dual-purpose charging and suction pumps in parallel, and the dual-purpose charging and suction pumps are configured to provide negative pressure or positive pressure to the through holes.

4. The machining chip processing device for a seal according to claim 3, characterized in that: The fixed plate comprises a bottom plate, and the bottom plate is provided with a plurality of grooves with different inner diameter ranges; Among them, multiple evenly arranged through holes are provided in the multiple grooves, a confluence cavity is provided in the chassis, the bottom ends of the multiple through holes are connected to the confluence cavity, and a through groove penetrating the chassis is provided at one end of the confluence cavity close to the dual-purpose charging and suction pump, and the through groove is connected to the dual-purpose charging and suction pump.

5. The machining chip processing device for a seal according to claim 1, characterized in that: The slot milling cutter component comprises a slot milling cutter, a support, a sliding member and a control motor, wherein the support is arranged on a workbench, the sliding member is arranged on the support, and the control motor is arranged on the support; Wherein, a driving motor is provided in the workbench, and the driving motor is configured to drive the supporting member to slide forward and backward relative to the rotating fixing member on the workbench, and the control motor is configured to drive the sliding member to slide up and down or left and right on the supporting member.

6. The machining chip processing device for a seal according to claim 5, characterized in that: It also includes a shell, the fixed plate, the workbench, the water storage tank and the water pipe are respectively connected to the inner wall of the shell, the charging and suction dual-purpose pump and the spray gun are arranged in the shell, and the shell is also provided with a sliding door.

7. The machining chip processing device for a seal according to claim 5, characterized in that: A water pump is also arranged in the water storage tank, and two water pumping pipes are arranged on the water pump, and the two water pumping pipes are respectively connected to the suction component and the water source.

8. The machining chip processing device for a seal according to claim 1, characterized in that: A filter screen is provided in the placement cavity, and the filter screen is connected to the inner wall of the placement cavity; The filter screen divides the placement cavity into two spaces, a solid cavity and a liquid cavity. The filter screen is configured to be detachably arranged in the placement cavity. A water outlet is arranged on the bottom surface of the placement cavity, and a valve is arranged at the water outlet.