Nylon rod processing method and equipment

By cutting first, then drilling small holes and polishing hole walls during the processing of nylon rods, the problems of low processing efficiency and low drilling quality of nylon rods are solved, and higher processing accuracy and efficiency are achieved.

CN120347844APending Publication Date: 2025-07-22ZHUHAI CITY XIEJUN TOYS LTD
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Patent Information

Application Number
CN202510332222.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-07-22

AI Technical Summary

Technical Problem

In the prior art, the processing efficiency of nylon rods is low and the drilling quality is not high.

Method used

Using a nylon rod processing method and equipment, the sides of the nylon rod are cut through the cutting tool, and then a first through hole is formed by a first drilling mechanism, and the second through hole is expanded by a second drilling mechanism, and the hole wall is polished through the grinding mechanism to improve processing accuracy and efficiency.

Benefits of technology

By drilling small holes first and then reaming holes, the accuracy and accuracy of the holes are ensured, and the drilling burrs are removed, which improves the processing accuracy and efficiency of the nylon rods.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a nylon rod processing method and equipment, and relates to the technical field of nylon rod processing. The method comprises the following steps: placing a nylon rod in a mounting hole, and clamping the nylon rod through a clamping mechanism; the console controls the rotating mechanism to drive the nylon rod to rotate; the machining table and the sliding table drive the cutting tool to make contact with the side face of the nylon rod, and the nylon rod is cut. After cutting is completed, the third guide rail gets close to the nylon rod along the first guide rail, so that the first drilling mechanism drills the nylon rod for the first time, and a first through hole is formed; after first-time drilling is completed, the first drilling mechanism and the second drilling mechanism move along the third guide rail, the second drilling mechanism is aligned with the first through hole to conduct second-time drilling on the nylon rod, the first through hole is expanded, and a second through hole is formed; the third guide rail is far away from the nylon rod along the first guide rail, and the polishing mechanism polishes the hole wall of the second through hole. According to the machining method of the nylon rod, the machining efficiency and the drilling precision can be improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of nylon rod processing, and in particular to a processing method and equipment for nylon rods. Background Art

[0002] Due to the excellent wear resistance and impact resistance of nylon rods, they are commonly used to manufacture some parts with high performance requirements, such as bearings, gears, etc. Currently, when processing nylon rods into required parts, the surface of the nylon rod is usually cut using a lathe, and then drilled using a drilling machine to process it into the required shape. However, when processing in this way, there are problems of low processing efficiency and poor drilling quality. Summary of the Invention

[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. For this purpose, the present invention provides a processing method and equipment for nylon rods, which can improve processing efficiency and drilling quality.

[0004] On the one hand, a processing method for a nylon rod according to an embodiment of the present invention is applied to a processing device. The processing device includes: a control console, a rotating mechanism provided on the control console, a clamping mechanism provided on the rotating mechanism, a first guide rail connected to the control console and located below the rotating mechanism, a processing table slidably provided on the first guide rail, a second guide rail provided on the processing table, a sliding table slidably connected to the second guide rail, a mounting table movably provided on the sliding table, a cutting tool provided on the mounting table, a third guide rail further provided on the first guide rail, a first drilling mechanism and a second drilling mechanism slidably provided at intervals on the third guide rail, a mounting hole provided in the rotating mechanism, the clamping mechanism being located on the periphery of the mounting hole, a retractable grinding mechanism provided in the mounting hole, and the extending directions of the second guide rail and the third guide rail are both perpendicular to the extending direction of the first guide rail; the processing method for the nylon rod includes the following steps:

[0005] Place the nylon rod at the mounting hole and clamp the nylon rod through the clamping mechanism;

[0006] The control console controls the rotating mechanism to drive the nylon rod to rotate;

[0007] Drive the cutting tool to contact the side surface of the nylon rod through the processing table and the sliding table to perform a cutting action on the nylon rod;

[0008] After cutting, the third guide rail moves close to the nylon rod along the first guide rail, so that the first drilling mechanism drills the nylon rod for the first time to form a first through hole;

[0009] After the first drilling is completed, the first drilling mechanism and the second drilling mechanism move along the third guide rail to align the second drilling mechanism with the first through hole and perform a second drilling on the nylon rod to expand the first through hole and form a second through hole; the size of the second drill bit of the second drilling mechanism is larger than the size of the first drill bit of the first drilling mechanism;

[0010] The third guide rail moves away from the nylon rod along the first guide rail, and the grinding mechanism grinds the hole wall of the second through hole.

[0011] According to some embodiments of the present invention, the first drilling mechanism includes a first drill table, a first transmission mechanism and a first drill bit. The first transmission mechanism includes a first operation turntable, a first transmission telescopic rod and a first drill bit mounting structure. The first operation turntable is arranged on the side of the first drill table away from the rotating mechanism. The first transmission telescopic rod penetrates through the first drill table. The first drill bit mounting structure is arranged on the side of the first drill table close to the rotating mechanism. One end of the first transmission telescopic rod is connected to the first operation turntable, and the other end of the first transmission telescopic rod is connected to the first drill bit mounting structure. The first drill bit is arranged at the first drill bit mounting structure. After the cutting is completed, the step of the third guide rail moving along the first guide rail close to the nylon rod to enable the first drilling mechanism to perform the first drilling on the nylon rod to form the first through hole includes:

[0012] Push the first operation turntable to move the third guide rail along the first guide rail close to the nylon rod;

[0013] Rotate the first operation turntable to extend the first transmission telescopic rod outward and make the first drill bit perform the first drilling on the nylon rod;

[0014] During the drilling process of the first drill bit, rotate the first operation turntable to drive the first transmission telescopic rod to drive the first drill bit forward to form the first through hole.

[0015] According to some embodiments of the present invention, a cooling mechanism is arranged on one side of the first guide rail; the step of driving the cutting tool to contact the side surface of the nylon rod through the processing table and the sliding table to perform a cutting action on the nylon rod includes:

[0016] Adjust the angle of the mounting table according to the cutting requirement of the nylon rod;

[0017] The sliding table slides along the second guide rail to make the cutting tool contact the side surface of the nylon rod and perform a cutting action on the nylon rod;

[0018] After the cutting is completed, the cooling mechanism sprays cold air on the nylon rod to cool the nylon rod.

[0019] According to some embodiments of the present invention, a dust suction mechanism is provided on the other side of the first guide rail. The dust suction mechanism includes a suction fan and a collection box, and the suction fan is arranged on the collection box; the step of driving the cutting tool to contact the side surface of the nylon rod through the processing table and the sliding table to perform a cutting action on the nylon rod further includes:

[0020] When the cutting tool performs a cutting action on the nylon rod, the dust suction mechanism is started;

[0021] The suction fan adsorbs the chips generated by cutting into the collection box.

[0022] According to some embodiments of the present invention, when the first drilling mechanism drills the nylon rod for the first time, the rotation speed of the rotating mechanism is the first rotation speed, and when the second drilling mechanism drills the nylon rod for the second time, the rotation speed of the rotating mechanism is the second rotation speed, and the second rotation speed is greater than the first rotation speed.

[0023] According to some embodiments of the present invention, a lighting lamp is arranged on the processing table, and the light source of the lighting lamp faces the rotating mechanism.

[0024] According to some embodiments of the present invention, the clamping mechanism includes a plurality of clamping plates evenly distributed outside the mounting hole. A transmission structure is arranged inside the rotating mechanism, and the transmission structure is connected to the clamping plates. An adjustment hole is arranged on the surface of the rotating mechanism; the step of placing the nylon rod at the mounting hole and clamping the nylon rod by the clamping mechanism includes:

[0025] Place the nylon rod at the mounting hole;

[0026] Insert an adjustment rod into the adjustment hole and rotate the adjustment rod to drive the transmission structure;

[0027] The transmission structure drives the clamping plates to clamp the nylon rod.

[0028] According to some embodiments of the present invention, the console is provided with a rotation speed adjustment rod and a rotation direction adjustment rod. The rotation speed adjustment rod is used to adjust the rotation speed of the rotating mechanism, and the rotation direction adjustment rod is used to adjust the rotation direction of the rotating mechanism.

[0029] On the other hand, the processing equipment for nylon rods according to an embodiment of the present invention includes: a console, a rotating mechanism disposed on the console, a clamping mechanism disposed on the rotating mechanism, a first guide rail connected to the console and located below the rotating mechanism, a processing table slidably disposed on the first guide rail, a second guide rail provided on the processing table, a sliding table slidably connected to the second guide rail, a mounting table movably disposed on the sliding table, a cutting tool provided on the mounting table, a third guide rail further provided on the first guide rail, a first drilling mechanism and a second drilling mechanism slidably disposed at intervals on the third guide rail, a mounting hole provided in the rotating mechanism, the clamping mechanism located on the periphery of the mounting hole, a telescopic grinding mechanism provided in the mounting hole, and the extending directions of the second guide rail and the third guide rail are both perpendicular to the extending direction of the first guide rail; the processing equipment for nylon rods is used to execute the above-mentioned processing method for nylon rods.

[0030] The processing method and equipment for nylon rods according to an embodiment of the present invention have at least the following beneficial effects: First, the side surface of the nylon rod is cut by a cutting tool, then the nylon rod is drilled for the first time by a first drilling mechanism to form a first through hole, and then the nylon rod is drilled for the second time by a second drilling mechanism to form a second through hole. Drilling for the first time to form a first through hole with a smaller diameter can ensure the basic position of the hole, provide a relatively accurate reference for subsequent hole expansion, thereby reducing the offset of the hole center and making the final hole diameter more in line with the design requirements. By drilling a small hole first and then expanding the hole, burrs and defects generated during drilling can be further removed, improving the accuracy and quality of the hole. The hole wall of the second through hole is polished by a grinding mechanism to ensure the smoothness of the hole wall of the second through hole. This method can improve the processing accuracy and processing efficiency of nylon rods.

[0031] The additional aspects and advantages of the present invention will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] The above and / or additional aspects and advantages of the present invention will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, in which:

[0033] Figure 1 is a step flow chart of the processing method for nylon rods according to an embodiment of the present invention;

[0034] Figure 2 is a schematic structural diagram of the processing equipment according to an embodiment of the present invention;

[0035] Figure 3 is a schematic structural diagram of the processing equipment according to an embodiment of the present invention from another perspective;

[0036] Figure 4 Schematic structural diagram of another perspective of the processing equipment according to an embodiment of the present invention;

[0037] Console 100, rotating mechanism 200, clamping mechanism 300, clamping plate 310, first guide rail 400, processing table 500, second guide rail 600, sliding table 700, mounting table 800, cutting tool 900, first adjusting handle 910, third guide rail 1000, first drilling mechanism 1100, first drilling table 1110, first drill bit 1120, first operation turntable 1130, first transmission telescopic rod 1140, first drill bit mounting structure 1150, second drilling mechanism 1200, second drilling table 1210, second drill bit 1220, second operation turntable 1230, second transmission telescopic rod 1240, second drill bit mounting structure 1250, cooling mechanism 1300, dust suction mechanism 1400, exhaust fan 1410, collection box 1420, lighting lamp 1500, adjusting rod 1600, second adjusting handle 1700, nylon rod 1800. Detailed implementation manners

[0038] The embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present application, and should not be construed as a limitation to the present application. For the step numbers in the following embodiments, they are only set for the convenience of explanation and illustration, and no limitation is imposed on the order between the steps. The execution order of each step in the embodiments can be adaptively adjusted according to the understanding of those skilled in the art.

[0039] In the description of the present invention, it should be understood that the orientation or positional relationship involved, such as up, down, front, back, left, right, etc., is based on the orientation or positional relationship shown in the drawings, and 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 to the present invention.

[0040] The terms "first", "second", "third", and "fourth" etc. in the specification and claims of the present invention and the drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not limited to the listed steps or units, but optionally further includes steps or units not listed, or optionally further includes other steps or units inherent to these processes, methods, products, or devices.

[0041] References to "embodiments" in the present invention mean that the specific features, structures, or characteristics described in connection with the embodiments can be included in at least one embodiment of the present invention. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment each time, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.

[0042] On the one hand, an embodiment of the present invention provides a processing method for a nylon rod, which is applied to a processing device, such as Figures 2 to 4 As shown, the processing device includes: a console 100, a rotating mechanism 200 disposed on the console 100, a clamping mechanism 300 disposed on the rotating mechanism 200, a first guide rail 400 connected to the console 100 and located below the rotating mechanism 200, a processing table 500 slidably disposed on the first guide rail 400, a second guide rail 600 provided on the processing table 500, a sliding table 700 slidably connected to the second guide rail 600, a mounting table 800 movably disposed on the sliding table 700, a cutting tool 900 provided on the mounting table 800, a third guide rail 1000 further provided on the first guide rail 400, a first drilling mechanism 1100 and a second drilling mechanism 1200 slidably disposed at intervals on the third guide rail 1000, the rotating mechanism 200 is provided with a mounting hole, the clamping mechanism 300 is located on the periphery of the mounting hole, and a telescopic grinding mechanism is provided in the mounting hole. The extending directions of the second guide rail 600 and the third guide rail 1000 are both perpendicular to the extending direction of the first guide rail 400. The first guide rail 400 extends in the left-right direction, and the second guide rail 600 and the third guide rail 1000 extend in the front-back direction. As Figure 1 As shown, the processing method for the nylon rod according to the embodiment of the present invention includes the following steps:

[0043] Step S100: Place the nylon rod 1800 at the mounting hole and clamp the nylon rod 1800 through the clamping mechanism 300;

[0044] Specifically, as Figure 4 As shown, on the rotating mechanism 200, there is a mounting hole for placing the nylon rod 1800, and on the periphery of the mounting hole, there is a clamping mechanism 300. After placing the nylon rod 1800 in the mounting hole, the nylon rod 1800 can be clamped through the clamping mechanism 300, thereby fixing the nylon rod 1800.

[0045] In this example, the clamping mechanism 300 includes a plurality of clamping plates 310 (such as three, four, or other numbers) evenly distributed outside the mounting hole. A transmission structure is provided inside the rotating mechanism 200, and the transmission structure is connected to the clamping plates 310. An adjustment hole is provided on the surface of the rotating mechanism 200, and the adjustment hole can be used to insert an adjustment rod 1600. The above step S100 specifically includes the following three steps:

[0046] Step S110: Place the nylon rod 1800 at the installation hole;

[0047] Step S120: Insert the adjusting rod 1600 into the adjusting hole and rotate the adjusting rod 1600 to drive the transmission structure;

[0048] Step S130: The transmission structure drives the clamping plate 310 to clamp the nylon rod 1800.

[0049] Specifically, the transmission structure can include common transmission structures such as a gear-rack transmission structure and a worm-gear transmission structure. When the adjusting rod 1600 is rotated, the transmission structure can drive the clamping plate 310 to perform clamping or loosening operations.

[0050] Step S200: The control console 100 controls the rotating mechanism 200 to drive the nylon rod 1800 to rotate;

[0051] Specifically, the control console 100 is used to control the working process of the entire processing equipment. A single-chip microcomputer or a PLC and other controllers are provided inside the control console. The controller is built-in with a control program for controlling the actions of each mechanism. The rotating mechanism 200 can include a turntable and a driving device for driving the turntable to rotate. The driving device can adopt a motor and other devices. The driving device is electrically connected to the controller. The controller can send signals to control the driving device to act, thereby driving the turntable to rotate. Since the nylon rod 1800 is clamped by the clamping plate 310 on the turntable, when the turntable rotates, it will drive the nylon rod 1800 to rotate together.

[0052] Step S300: Drive the cutting tool 900 to contact the side surface of the nylon rod 1800 through the processing table 500 and the sliding table 700 to perform a cutting action on the nylon rod 1800;

[0053] Specifically, as Figure 2 shown, since the processing table 500 is slidably arranged on the first guide rail 400, it can slide left and right along the first guide rail 400 to control the cutting tool 900 to approach or move away from the nylon rod 1800. When a cutting action is to be performed, the processing table 500 moves left to make the cutting tool 900 approach the nylon rod 1800. Since the sliding table 700 is slidably arranged on the second guide rail 600, it can slide back and forth along the second guide rail 600 to make the cutting tool 900 approach or move away from the nylon rod 1800. When a cutting action is to be performed, the sliding table 700 moves backward to make the cutting tool 900 approach the nylon rod 1800. As Figure 3As shown, when adjusting the position of the sliding table 700, the second adjusting handle 1700 can be rotated to drive the sliding table 700 to slide along the second guide rail 600. An installation table 800 is movably arranged on the sliding table 700. The installation table 800 is used to set the cutting tool 900, and the installation angle of the installation table 800 is adjustable, that is, the installation table 800 can rotate on the sliding table 700, so as to adjust the angle of the cutting tool 900 to meet the cutting requirements of different angles. A first adjusting handle 910 is arranged on the installation table 800. By rotating the first adjusting handle 910, the installation table 800 can be in a fixed state or a movable state. In the movable state, the angle of the installation table 800 can be adjusted. After the adjustment is completed, the installation table 800 is kept in a fixed state. After adjusting the angle of the cutting tool 900, the cutting tool 900 is then brought into contact with the side surface of the nylon rod 1800. Since the nylon rod 1800 is in a state of high-speed rotation, during the rotation of the nylon rod 1800, the cutting tool 900 will cut the nylon rod 1800.

[0054] Step S400: After cutting is completed, the third guide rail 1000 moves close to the nylon rod 1800 along the first guide rail 400, so that the first drilling mechanism 1100 drills the nylon rod 1800 for the first time to form a first through hole;

[0055] Step S500: After the first drilling is completed, the first drilling mechanism 1100 and the second drilling mechanism 1200 move along the third guide rail 1000, so that the second drilling mechanism 1200 aligns with the first through hole and drills the nylon rod 1800 for the second time to expand the first through hole and form a second through hole; the size of the second drill bit 1220 of the second drilling mechanism 1200 is larger than the size of the first drill bit 1120 of the first drilling mechanism 1100;

[0056] Step S600: The third guide rail 1000 moves away from the nylon rod 1800 along the first guide rail 400, and the grinding mechanism grinds the hole wall of the second through hole.

[0057] Specifically, after the cutting tool 900 finishes cutting the nylon rod 1800, it is necessary to drill a hole in the nylon rod 1800 to form a through hole in the center of the nylon rod 1800. For this purpose, after the cutting is completed, the third guide rail 1000 is driven to slide along the first guide rail 400, so that the first drilling mechanism 1100 and the second drilling mechanism 1200 approach the nylon rod 1800. In the initial state, the first drilling mechanism 1100 is aligned with the center of the nylon rod 1800, and then the first drilling mechanism 1100 drills the nylon rod 1800 for the first time to form a first through hole; then, the first drilling mechanism 1100 and the second drilling mechanism 1200 move to the left along the third guide rail 1000, so that the second drilling mechanism 1200 is aligned with the center of the nylon rod 1800, and the second drilling mechanism 1200 drills the nylon rod 1800 for the second time to form a second through hole. It should be noted that since the size of the second drill bit 1220 of the second drilling mechanism 1200 is larger than the size of the first drill bit 1120 of the first drilling mechanism 1100, the second through hole is an enlargement of the hole diameter on the basis of the first through hole. Drilling for the first time to form a first through hole with a smaller hole diameter can ensure the basic position of the hole and provide a relatively accurate reference for subsequent hole enlargement, thereby reducing the offset of the hole center and making the final hole diameter more in line with the design requirements. By drilling a small hole first and then enlarging the hole, the burrs and defects generated during drilling can be further removed, and the accuracy and quality of the hole can be improved. It should be noted that when the first drilling mechanism 1100 drills the nylon rod 1800 for the first time, the rotation speed of the rotating mechanism 200 is the first rotation speed, and when the second drilling mechanism 1220 drills the nylon rod 1800 for the second time, the rotation speed of the rotating mechanism 200 is the second rotation speed, and the second rotation speed is greater than the first rotation speed. By controlling different rotation speeds, the quality and accuracy of drilling can be further improved.

[0058] After the drilling is completed, the third guide rail 1000 moves away from the nylon rod 1800 along the first guide rail 400 for reset; then, the grinding mechanism in the mounting hole of the rotating mechanism 200 extends into the second through hole to grind the hole wall of the second through hole to ensure the smoothness of the hole wall of the second through hole. Among them, the grinding mechanism includes an electric telescopic rod and a grinding head. The electric telescopic rod extends into the second through hole, and then drives the grinding head to grind the hole wall of the second through hole. According to the processing method of the nylon rod of the embodiment of the present invention, the processing accuracy and processing efficiency of the nylon rod 1800 can be improved.

[0059] Furthermore, as Figure 3As shown, in some embodiments of the present invention, the first drilling mechanism 1100 includes a first drill table 1110, a first transmission mechanism, and a first drill bit 1120. The first transmission mechanism includes a first operation turntable 1130, a first transmission telescopic rod 1140, and a first drill bit mounting structure 1150. The first operation turntable 1130 is disposed on a side of the first drill table 1110 away from the rotating mechanism 200. The first transmission telescopic rod 1140 is disposed through the first drill table 1110. The first drill bit mounting structure 1150 is disposed on a side of the first drill table 1110 close to the rotating mechanism 200. One end of the first transmission telescopic rod 1140 is connected to the first operation turntable 1130, and the other end of the first transmission telescopic rod 1140 is connected to the first drill bit mounting structure 1150. The first drill bit 1120 is disposed at the first drill bit mounting structure 1150. The above step S400 includes the following three steps:

[0060] Step S410: Push the first operation turntable 1130 to move the third guide rail 1000 along the first guide rail 400 closer to the nylon rod 1800.

[0061] Step S420: Rotate the first operation turntable 1130 to extend the first transmission telescopic rod 1140 outward, and use the first drill bit 1120 to drill the nylon rod 1800 for the first time.

[0062] Step S430: During the drilling process of the first drill bit 1120, rotate the first operation turntable 1130 to drive the first drill bit 1120 to advance by the first transmission telescopic rod 1140, so as to drill through the nylon rod 1800 and form a first through hole.

[0063] Specifically, by pushing the first operation turntable 1130 from right to left, the entire third guide rail 1000 can be driven to move leftward along the first guide rail 400, so that the first drill bit 1120 approaches the nylon rod 1800. Then, by rotating the first operation turntable 1130, the first transmission telescopic rod 1140 can be extended outward. Since the nylon rod 1800 is rotating at a high speed, the first drill bit 1120 can drill the nylon rod 1800 when it contacts the nylon rod 1800. During the drilling process of the first drill bit 1120, continue to rotate the first operation turntable 1130 to drive the first drill bit 1120 to continue to advance by the first transmission telescopic rod 1140 to form a first through hole.

[0064] Such as Figure 3As shown, in some embodiments of the present invention, the structure of the second drilling mechanism 1200 is similar to that of the first drilling mechanism 1100. The second drilling mechanism 1200 includes a second drill table 1210, a second transmission mechanism, and a second drill bit 1220. The second transmission mechanism includes a second operation turntable 1230, a second transmission telescopic rod 1240, and a second drill bit mounting structure 1250. The second operation turntable 1230 is disposed on the side of the second drill table 1210 away from the rotating mechanism 200. The second transmission telescopic rod 1240 passes through the second drill table 1210. The second drill bit mounting structure 1250 is disposed on the side of the second drill table 1210 close to the rotating mechanism 200. One end of the second transmission telescopic rod 1240 is connected to the second operation turntable 1230, and the other end of the second transmission telescopic rod 1240 is connected to the second drill bit mounting structure 1250. The second drill bit 1220 is disposed at the second drill bit mounting structure 1250. The working method of the second drilling mechanism 1200 is the same as that of the first drilling mechanism 1100.

[0065] As Figure 2 shown, in some embodiments of the present invention, a cooling mechanism 1300 is provided on one side of the first guide rail 400; the above step S300: the step of driving the cutting tool 900 to contact the side surface of the nylon rod 1800 by the processing table 500 and the sliding table 700 and performing a cutting action on the nylon rod 1800 includes the following three steps:

[0066] Step S310: Adjust the angle of the mounting table 800 according to the cutting requirements of the nylon rod 1800;

[0067] Step S320: The sliding table 700 slides along the second guide rail 600 to make the cutting tool 900 contact the side surface of the nylon rod 1800 and perform a cutting action on the nylon rod 1800;

[0068] Step S330: After the cutting is completed, the cooling mechanism 1300 sprays cold air on the nylon rod 1800 to cool the nylon rod 1800.

[0069] Specifically, the cooling mechanism 1300 includes a jet pipe for ejecting cold air. After cutting is completed, the cooling mechanism 1300 ejects cold air onto the nylon rod 1800 to rapidly cool the nylon rod 1800. After the nylon rod 1800 is cut, the surface temperature of the nylon rod 1800 is relatively high, and the cooling mechanism 1300 is used to rapidly cool the nylon rod 1800. At the same time, the installation angle of the installation table 800 is adjustable, that is, the installation table 800 can rotate on the sliding table 700, thereby adjusting the angle of the cutting tool 900 to meet the cutting requirements at different angles. A first adjustment handle 910 is provided on the installation table 800. By rotating the first adjustment handle 910, the installation table 800 can be fixed or in an active state. In the active state, the angle of the installation table 800 can be adjusted. After the adjustment is completed, the installation table 800 is fixed again. After adjusting the angle of the cutting tool 900, the cutting tool 900 is brought into contact with the side surface of the nylon rod 1800. Since the nylon rod 1800 is in a high-speed rotating state, during the rotation of the nylon rod 1800, the cutting tool 900 will cut the nylon rod 1800.

[0070] As Figure 2 shown, in some embodiments of the present invention, a dust suction mechanism 1400 is provided on the other side of the first guide rail 400. The dust suction mechanism 1400 includes a suction fan 1410 and a collection box 1420. The suction fan 1410 is provided on the collection box 1420. The above step S300: The processing table 500 and the sliding table 700 drive the cutting tool 900 to contact the side surface of the nylon rod 1800 and perform a cutting action on the nylon rod 1800, further includes the following two steps:

[0071] Step S340: When the cutting tool 900 performs a cutting action on the nylon rod 1800, the dust suction mechanism 1400 is started;

[0072] Step S350: The suction fan 1410 adsorbs the chips generated by cutting into the collection box 1420.

[0073] When the cutting tool 900 performs a cutting action on the nylon rod 1800, a lot of chips will be generated. To prevent the chips from floating everywhere, the suction fan 1410 absorbs all the chips, so that the chips can fall into the collection box 1420 for unified collection, thereby keeping the processing area clean.

[0074] As Figure 2 shown, in some embodiments of the present invention, a lighting lamp 1500 is provided on the processing table 500, and the light source of the lighting lamp 1500 faces the rotating mechanism 200. By using the lighting lamp 1500, it is convenient for the operator to clearly see the processing process and adjust the positions of each structure.

[0075] In some embodiments of the present invention, the console 100 is provided with a rotational speed adjustment lever and a steering adjustment lever. The rotational speed adjustment lever is used to adjust the rotational speed of the rotating mechanism 200, and the steering adjustment lever is used to adjust the steering of the rotating mechanism 200, so that the rotational speed and steering of the rotating mechanism 200 can be set according to different requirements.

[0076] On the other hand, an embodiment of the present invention also provides a processing device for nylon rods, as Figures 2 - 4 shown. The processing device includes: a console 100, a rotating mechanism 200 disposed on the console 100, a clamping mechanism 300 disposed on the rotating mechanism 200, a first guide rail 400 connected to the console 100 and located below the rotating mechanism 200, a processing table 500 slidably disposed on the first guide rail 400. The processing table 500 is provided with a second guide rail 600, a sliding table 700 is slidably connected to the second guide rail 600, a mounting table 800 is movably disposed on the sliding table 700, a cutting tool 900 is disposed on the mounting table 800. A third guide rail 1000 is further disposed on the first guide rail 400, a first drilling mechanism 1100 and a second drilling mechanism 1200 are slidably disposed at intervals on the third guide rail 1000. The rotating mechanism 200 is provided with a mounting hole, the clamping mechanism 300 is located on the periphery of the mounting hole, and a telescopic grinding mechanism is disposed in the mounting hole. The extending directions of the second guide rail 600 and the third guide rail 1000 are both perpendicular to the extending direction of the first guide rail 400. The first guide rail 400 extends in the left-right direction, and the second guide rail 600 and the third guide rail 1000 extend in the front-back direction. This processing device is used to implement the processing method of nylon rods in the above embodiments.

[0077] The above has described the embodiments of the present invention in detail with reference to the drawings. However, the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the scope of knowledge possessed by those of ordinary skill in the art.

Claims

1. A processing method of a nylon rod, characterized in that, Applied to a processing device, the processing device includes: a console, a rotating mechanism arranged on the console, a clamping mechanism arranged on the rotating mechanism, a first guide rail connected to the console and located below the rotating mechanism, a processing table slidably arranged on the first guide rail, the processing table is provided with a second guide rail, a sliding table is slidably connected to the second guide rail, a mounting table is movably arranged on the sliding table, a cutting tool is arranged on the mounting table, a third guide rail is further arranged on the first guide rail, a first drilling mechanism and a second drilling mechanism are slidably arranged at intervals on the third guide rail, the rotating mechanism is provided with a mounting hole, the clamping mechanism is located on the circumferential side of the mounting hole, a telescopic grinding mechanism is arranged in the mounting hole, and the extending directions of the second guide rail and the third guide rail are both perpendicular to the extending direction of the first guide rail; The processing method of the nylon rod includes the following steps: Place the nylon rod at the mounting hole and clamp the nylon rod through the clamping mechanism; The console controls the rotating mechanism to drive the nylon rod to rotate; Drive the cutting tool to contact the side surface of the nylon rod through the processing table and the sliding table to perform a cutting action on the nylon rod; After cutting is completed, the third guide rail moves close to the nylon rod along the first guide rail, so that the first drilling mechanism drills the nylon rod for the first time to form a first through hole; After the first drilling is completed, the first drilling mechanism and the second drilling mechanism move along the third guide rail, so that the second drilling mechanism aligns with the first through hole to drill the nylon rod for the second time to expand the first through hole to form a second through hole; The size of the second drill bit of the second drilling mechanism is larger than the size of the first drill bit of the first drilling mechanism; The third guide rail moves away from the nylon rod along the first guide rail, and the grinding mechanism grinds the hole wall of the second through hole.

2. The processing method of the nylon rod according to claim 1, characterized in that, The first drilling mechanism includes a first drill table, a first transmission mechanism and a first drill bit. The first transmission mechanism includes a first operation turntable, a first transmission telescopic rod and a first drill bit mounting structure. The first operation turntable is arranged on the side of the first drill table away from the rotating mechanism, the first transmission telescopic rod penetrates through the first drill table, and the first drill bit mounting structure is arranged on the side of the first drill table close to the rotating mechanism. One end of the first transmission telescopic rod is connected to the first operation turntable, and the other end of the first transmission telescopic rod is connected to the first drill bit mounting structure. The first drill bit is arranged at the first drill bit mounting structure; After the cutting is completed, the step that the third guide rail moves close to the nylon rod along the first guide rail so that the first drilling mechanism drills the nylon rod for the first time to form a first through hole includes: Push the first operation turntable to make the third guide rail move close to the nylon rod along the first guide rail; Rotate the first operation turntable to make the first transmission telescopic rod extend outwards, so that the first drill bit drills the nylon rod for the first time; During the drilling process of the first drill bit, rotate the first operation turntable to drive the first transmission telescopic rod to drive the first drill bit forward to form the first through hole.

3. The processing method of the nylon rod according to claim 1, characterized in that, A cooling mechanism is provided on one side of the first guide rail; the step of driving the cutting tool to contact the side surface of the nylon rod through the processing table and the sliding table to perform a cutting action on the nylon rod includes: Adjust the angle of the mounting table according to the cutting requirements of the nylon rod; The sliding table slides along the second guide rail to make the cutting tool contact the side surface of the nylon rod and perform a cutting action on the nylon rod; After the cutting is completed, the cooling mechanism sprays cold air on the nylon rod to cool the nylon rod.

4. The processing method of the nylon rod according to claim 1, characterized in that, A dust suction mechanism is provided on the other side of the first guide rail. The dust suction mechanism includes a suction fan and a collection box, and the suction fan is arranged on the collection box; the step of driving the cutting tool to contact the side surface of the nylon rod through the processing table and the sliding table to perform a cutting action on the nylon rod further includes: When the cutting tool performs a cutting action on the nylon rod, the dust suction mechanism is started; The suction fan adsorbs the chips generated by cutting into the collection box.

5. The processing method of the nylon rod according to claim 1, characterized in that, When the first drilling mechanism drills the nylon rod for the first time, the rotational speed of the rotating mechanism is the first rotational speed. When the second drilling mechanism drills the nylon rod for the second time, the rotational speed of the rotating mechanism is the second rotational speed, and the second rotational speed is greater than the first rotational speed.

6. The processing method of the nylon rod according to claim 1, characterized in that, A lighting lamp is provided on the processing table, and the light source of the lighting lamp faces the rotating mechanism.

7. The processing method of the nylon rod according to claim 1, characterized in that, The clamping mechanism includes a plurality of clamping plates evenly distributed outside the mounting hole. A transmission structure is arranged inside the rotating mechanism, and the transmission structure is connected to the clamping plates. An adjustment hole is provided on the surface of the rotating mechanism; the step of placing the nylon rod at the mounting hole and clamping the nylon rod by the clamping mechanism includes: Place the nylon rod at the mounting hole; Insert an adjustment rod into the adjustment hole and rotate the adjustment rod to drive the transmission structure; The transmission structure drives the clamping plates to clamp the nylon rod.

8. The processing method of the nylon rod according to claim 1, wherein The control console is provided with a rotational speed adjustment rod and a steering adjustment rod. The rotational speed adjustment rod is used to adjust the rotational speed of the rotating mechanism, and the steering adjustment rod is used to adjust the steering of the rotating mechanism.

9. A processing device for a nylon rod, characterized in that, Includes: A control console, a rotating mechanism arranged on the control console, a clamping mechanism arranged on the rotating mechanism, a first guide rail connected to the control console and located below the rotating mechanism, a processing table slidably arranged on the first guide rail, the processing table is provided with a second guide rail, a sliding table is slidably connected to the second guide rail, an installation table is movably arranged on the sliding table, a cutting tool is arranged on the installation table, a third guide rail is further arranged on the first guide rail, a first drilling mechanism and a second drilling mechanism are slidably arranged at intervals on the third guide rail, the rotating mechanism is provided with an installation hole, the clamping mechanism is located on the periphery of the installation hole, a telescopic grinding mechanism is arranged in the installation hole, the extending directions of the second guide rail and the third guide rail are both perpendicular to the extending direction of the first guide rail; the processing equipment for nylon rods is used to execute the nylon rod processing method according to any one of claims 1-8.