Machining device for metal fittings for doors and windows

By designing conveying components, fuel tanks and cooling components in the processing device of door and window metal accessories, the problem of accelerated wear caused by long-term friction is solved, rapid cooling and service life of the drill bit is achieved, and drilling quality and cooling system performance are improved.

CN120023361AInactive Publication Date: 2025-05-23GUANGZHOU XIANGHE HARDWARE PROD CO LTD
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Patent Information

Application Number
CN202510495231.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2025-05-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the existing market, drill bits in drilling and milling equipment similar to those mentioned above, during long-term operation, due to continuous friction, a large amount of heat is generated. If it cannot be dissipated in time, the drill bit temperature will rise sharply, resulting in accelerated wear of the drill bit and shortened service life.

Method used

A processing device for metal accessories for doors and windows is designed, including processing machine tool body, servo linear module, power component, conveying component, fuel tank and cooling component. When drilling and milling intervals between drill bits, the drill bits can be quickly cooled by using the cooperation of the conveying components and the oil tank; at the same time, the cooling speed of the cooling oil is accelerated through the control of the air supply pipe and solenoid valve.

Benefits of technology

It achieves rapid cooling during drilling and milling intervals of drill bits, extends the service life of the drill bits, and improves drilling quality. At the same time, through the design of circulating cooling oil, the cooling oil is easy to replace and process, further improving the overall performance of the cooling system.

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Abstract

The invention relates to the technical field of drilling and milling machine tools, in particular to a machining device for metal accessories for doors and windows, which comprises a machining machine tool body, a servo linear module and a power assembly mounted on the servo linear module, a positioning part is mounted on the power assembly, and the power assembly comprises a mounting frame. A conveying assembly is mounted between the mounting frame and the machining tool body, and an oil tank is mounted on the outer wall of the machining tool body. According to the machining device for the metal accessories for the doors and windows, the conveying assembly, the oil tank and the drill bit are arranged in the machining device for the metal accessories for the doors and windows, in the using process of the device, through mutual cooperation of the structures, the drill bit can be rapidly cooled during drilling and milling interval of the drill bit, and therefore the purposes of prolonging the service life of the drill bit and improving the machining efficiency are achieved. And the drilling quality is further ensured.
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Description

Technical Field

[0001] The invention belongs to the technical field of drilling and milling machine tools, and in particular relates to a processing device for metal accessories for doors and windows. Background Art

[0002] Alloy doors and windows are an important component widely used in various types of buildings and are widely used. Metal accessories for doors and windows are key components of alloy doors and windows. Their processing accuracy and quality directly affect the overall performance and use effect of doors and windows.

[0003] In the patent with publication number CN219684554U, a drilling and milling device for alloy doors and windows is mentioned, which includes a main body, a leg column is installed at the bottom of the main body, a mobile frame is installed at the top of the main body, a clamping plate is installed between the main body and the mobile frame, a bottom plate is installed between the leg columns, and a side plate is installed on one side of the bottom plate. The present invention installs a clamping plate, and the staff pushes the clamping plate, moves the clamping plate to a suitable position, and then tightens the bolts to fix the clamping plate, and the aluminum alloy doors and windows are placed on top of the clamping plate and the pad. The staff fixes the aluminum alloy doors and windows by turning the handle to make the movable plate fix the aluminum alloy doors and windows; However, the drilling and milling devices similar to the above mentioned ones in the existing market can drill holes in doors, windows and their accessories. The drill bit will generate a lot of heat due to continuous friction during long-term operation. If the heat cannot be dissipated in time, the temperature of the drill bit will rise sharply. The high temperature will accelerate the wear of the drill bit, resulting in a problem of shortening the service life of the drill bit. Therefore, the present invention provides a processing device for metal fittings for doors and windows to solve the above problems. Summary of the invention

[0004] The purpose of the present invention is to provide a processing device for metal accessories for doors and windows, so as to solve the problem of drilling and milling devices similar to the above in the existing market, in which the drill bit will generate a large amount of heat due to continuous friction during long-term operation. If this heat cannot be dissipated in time, the temperature of the drill bit will rise sharply. The high temperature will accelerate the wear of the drill bit, resulting in a shortened service life of the drill bit.

[0005] To achieve the above-mentioned object, the present invention provides the following technical solutions: a processing device for metal fittings for doors and windows, comprising a processing machine tool body, a servo linear module and a power assembly installed on the servo linear module, a positioning member is installed on the power assembly, the power assembly comprises a mounting frame, a conveying assembly is installed between the mounting frame and the processing machine tool body, and an oil tank is installed on the outer wall of the processing machine tool body; The conveying assembly includes an air pump and a clamping ring, an air pump is installed on the inner cavity side wall of the processing machine tool body, a connecting pipe 1 is installed on the air inlet end of the air pump, a spring 1 is installed on one side of the air inlet end of the air pump located inside the connecting pipe 1, a mounting ring is installed on the side of the spring 1 away from the air pump, an arc plate 1 is installed above and below the side wall of the mounting ring respectively, a sliding tube is installed together on the side of the two arc plates 1 away from the air pump, an arc plate 3 is installed above the side of the sliding tube away from the arc plate 1, an oil flow groove is opened on the end surface of the arc plate 3, the side of the sliding tube away from the air pump is of closed design, and a through hole is opened in the middle of the side of the sliding tube away from the arc plate 1; The sliding tube is provided with a closing component, which includes a slide plate. The sliding tube is installed with the slide plate once it slides away from the air pump. The slide plate is installed with a connecting frame. The connecting frame is installed with a plug-in column, which is plugged into the through hole.

[0006] Preferably: a metal hose 1 is installed on the side of the connecting pipe 1 away from the air pump, an input pipe 2 is installed on the other end of the metal hose 1, an input pipe 1 and a return pipe 1 are installed on the side wall of the oil tank, the input pipe 1 is connected to the connecting pipe 1, a metal hose 2 is installed on the side of the return pipe 1 away from the oil tank, and a return pipe 2 is installed on the other end of the metal hose 2; The clamping ring is symmetrically provided with transfer tubes, which are rotatably connected to the second input tube and the second return tube respectively, and the side wall of the clamping ring is provided with an arc support plate, and the top surface of the air pump is symmetrically provided with a connecting rod; The moving end of the servo linear module is installed with a mounting frame, the bottom surface of the mounting frame is installed with a hydraulic telescopic rod, the telescopic end of the hydraulic telescopic rod is installed with a motor, and the power output end of the motor is installed with a drill bit; The bottom surface of the installation frame is connected to the air pump.

[0007] Preferably: an annular groove is provided on the top surface of the drill bit, an annular plate is installed above the inner cavity of the annular groove, an isolation plate is symmetrically installed on the bottom surface of the annular plate, the two isolation plates separate the inside of the annular groove, and a plug hole is provided on the top surface of the annular plate; A rubber belt is installed below the inner cavity of the plug hole, and a rubber ring is installed on the bottom surface of the rubber belt.

[0008] Preferably, a cooling component is also included, the cooling component includes an air delivery pipe 1, an air delivery pipe 1 is installed above the side wall of the connecting pipe 1 and on a side close to the air pump, and an electromagnetic valve is arranged on the air delivery pipe 1; The air delivery pipe 2 is installed on the side of the air delivery pipe 1 away from the connecting pipe 1, and multiple air delivery pipes 3 are evenly distributed on the air delivery pipe 2. Multiple air delivery pipes 4 are evenly distributed on the oil tank, and the multiple air delivery pipes 4 and the multiple air delivery pipes 3 correspond to each other.

[0009] Preferably: an arc plate 2 is symmetrically installed on one side of the inner wall of the connecting pipe 1 close to the air pump, and the arc plate 2 is in contact with the arc plate 1; A limiting block is installed below one side of an inner wall of the connecting pipe away from the air pump, and the limiting block contacts the slide plate.

[0010] Preferably: a second mounting frame is installed on the side of the sliding tube away from the air pump, a second spring is installed on the side of the second mounting frame close to the sliding tube, a circular plate is installed on the side of the second spring close to the sliding tube, a ball is installed on the side of the circular plate away from the second spring, the through hole and the ball are clamped with each other, and the ball closes the through hole.

[0011] Preferably: it also includes a collecting component, the collecting component includes a collecting box, the collecting box is installed on the bottom surface of the inner cavity of the processing machine body, a plurality of supporting plates are evenly arranged above the side wall of the inner cavity of the collecting box, and a positioning piece is arranged on the top surface of the collecting box.

[0012] Preferably: the positioning member includes a mounting frame, and the four corners of the top surface of the collection box are respectively installed with the mounting frame, an electric push rod is installed on the mounting frame, and a positioning groove is installed between the output ends of the left and right electric push rods. The positioning groove is evenly arranged with positioning grooves, and a pressure rod is inserted between the corresponding positioning grooves on the two connecting plates.

[0013] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention arranges a conveying assembly, an oil tank and a drill bit in a processing device for metal fittings for doors and windows. During the use of the device, the above structures cooperate with each other to achieve rapid cooling of the drill bit during the drilling and milling interval, thereby achieving the effect of increasing the service life of the drill bit and further ensuring the quality of drilling; 2. The present invention arranges a conveying assembly, an oil tank, a closing assembly and a drill bit in a processing device for metal fittings for doors and windows. During the use of the device, the above structures cooperate with each other to realize the rapid circulation and discharge of cooling oil from various pipes and drill bits to the oil tank, thereby achieving the effect of facilitating the replacement and treatment of cooling oil; 3. The present invention sets a conveying component, a cooling component and an air duct four in a processing device for metal accessories for doors and windows. During the use of the device, the above structures cooperate with each other to achieve the goal of accelerating the contact surface of the cooling oil in the oil tank with the outside world. At the same time, by accelerating the air flow rate in the air duct four, the cooling speed of the cooling oil in contact with the air duct four and the oil tank is accelerated, thereby achieving the effect of reducing the temperature of the cooling oil in a shorter time and improving the overall performance of the cooling system. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is one of the three-dimensional diagrams of the present invention.

[0015] Figure 2 It is the second stereogram of the present invention.

[0016] Figure 3 It is a structural diagram of the conveying component of the present invention.

[0017] Figure 4 This is a structural diagram of the power assembly of the present invention.

[0018] Figure 5 It is a front cross-sectional view of the drill bit of the present invention.

[0019] Figure 6 It is a structural diagram of the rubber belt of the present invention.

[0020] Figure 7 This is a structural diagram of a spring installation according to the present invention.

[0021] Figure 8 This is a structural diagram of the sliding tube of the present invention.

[0022] Fig. 9 It is a cross-sectional view of the sliding tube of the present invention.

[0023] Fig.10 It is a side section and a top section view of the drill bit of the present invention.

[0024] Fig.11 It is a schematic diagram of the positioning member structure of the present invention.

[0025] In the figure: 1. Processing machine tool body; 2. Servo linear module; 3. Power assembly; 301. Installation frame; 302. Hydraulic telescopic rod; 303. Motor; 4. Conveying assembly; 401. Air pump; 402. Connecting pipe 1; 403. Input pipe 1; 404. Metal hose 1; 405. Input pipe 2; 406. Return pipe 1; 407. Metal 2; 408. Return pipe 2; 409. Snap ring; 410. Arc support plate; 411. Connecting rod; 412. Transfer pipe; 413. Spring 1; 414. Sliding pipe; 415. Arc plate 1; 416. Installation ring; 417. Arc plate 2; 418. Arc plate 3; 419. Through hole; 420. Oil flow groove; 5. Cooling assembly; 501. Air delivery pipe 1; 502, air delivery pipe two; 503, air delivery pipe three; 504, solenoid valve; 6, control computer; 7, collection component; 701, collection box; 702, support plate; 8, oil tank; 9, positioning piece; 901, mounting frame one; 902, electric push rod; 903, connecting plate; 904, positioning groove; 905, pressure rod; 10, water outlet pipe; 11, air delivery pipe four; 12, oil change pipe; 13, drill bit; 14, annular groove; 15, annular plate; 16, plug-in hole; 17, rubber belt; 18, rubber ring; 19, closing component; 191, mounting frame two; 192, round plate; 193, spring two; 194, ball bearing; 195, slide plate; 196, connecting frame; 197, plug-in column; 20, isolation plate; 21, limit block. DETAILED DESCRIPTION

[0026] The following will be combined with the attached Figure 1 To Attachment Fig.11 The technical solutions in the embodiments of the present invention are described clearly and completely. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0027] It should be noted that if there are directions involved in the embodiments of the present invention, they shall be based on the directions shown in the drawings, such as front and back. Figure 1 The specific Figure 1 The left side is the front, Figure 1 The right side is the back; at the same time Figure 2 As shown in the figure, the left-right direction is roughly the horizontal direction, and the up-down direction shown in the figure is the vertical direction. If a certain posture changes, the directional indication will also change accordingly.

[0028] Reference Figure 1 - Fig.11As shown, the present invention provides a processing device for metal fittings for doors and windows, comprising a processing machine tool body 1, a servo linear module 2 and a power assembly 3 installed on the servo linear module 2, a positioning member 9 is installed on the power assembly 3, the power assembly 3 comprises a mounting frame 301, a conveying assembly 4 is installed between the mounting frame 301 and the processing machine tool body 1, and an oil tank 8 is installed on the outer wall of the processing machine tool body 1; A control computer 6 is installed on the outer wall of the processing machine tool body 1, and the control computer 6 is electrically connected to the electrical equipment in the device and controls the operation of the electrical equipment; The conveying assembly 4 includes an air pump 401 and a clamping ring 409. The air pump 401 is installed on the side wall of the inner cavity of the processing machine tool body 1. A connecting pipe 402 is installed on the air inlet end of the air pump 401. A spring 413 is installed on one side of the air inlet end of the air pump 401 located inside the connecting pipe 402. A mounting ring 416 is installed on the side of the spring 413 away from the air pump 401. An arc plate 415 is installed above and below the side wall of the mounting ring 416 respectively. A sliding tube 414 is installed together on the side of the two arc plates 415 away from the air pump 401. An arc plate 3 418 is installed above the side of the sliding tube 414 away from the arc plate 1 415. An oil flow groove 420 is provided on the end surface of the arc plate 3 418. The side of the sliding tube 414 away from the air pump 401 is of closed design. A through hole 419 is provided in the middle of the side of the sliding tube 414 away from the arc plate 1 415. A closing component 19 is provided on the sliding tube 414, and the closing component 19 includes a slide plate 195. The sliding tube 414 is installed with the slide plate 195 when sliding away from the air pump 401. The slide plate 195 is installed with a connecting frame 196, and the connecting frame 196 is installed with a plug-in column 197, which is plugged into the through hole 419.

[0029] In a further embodiment, referring to Figure 1 - Fig. 9 A metal hose 404 is installed on the side of the connecting pipe 402 away from the air pump 401, and an input pipe 405 is installed on the other end of the metal hose 404. An input pipe 403 and a return pipe 406 are installed on the side wall of the oil tank 8. The input pipe 403 is connected with the connecting pipe 402, and a metal hose 407 is installed on the side of the return pipe 406 away from the oil tank 8. A return pipe 408 is installed on the other end of the metal hose 407. An oil change pipe 12 is provided on the top surface of the oil tank 8, and the oil change pipe 12 is convenient for replacing cooling oil; The clamping ring 409 is symmetrically provided with transfer tubes 412, which are rotatably connected to the second input tube 405 and the second return tube 408 respectively. The side wall of the clamping ring 409 is provided with an arc support plate 410, and the top surface of the air pump 401 is symmetrically provided with a connecting rod 411; The moving end of the servo linear module 2 is installed with a mounting frame 301, the bottom surface of the mounting frame 301 is installed with a hydraulic telescopic rod 302, the telescopic end of the hydraulic telescopic rod 302 is installed with a motor 303, the power output end of the motor 303 is installed with a drill bit 13, and the motor 303 adopts a stepping motor to facilitate the adjustment of the corresponding between the plug hole 16 and the transfer tube 412; The bottom surface of the mounting frame 301 is connected to the air pump 401; In this embodiment, compared with the connection point between the input pipe 403 and the oil tank 8 and the connection point between the return pipe 406 and the oil tank 8, the connection point between the input pipe 403 and the oil tank 8 should be below the connection point between the return pipe 406 and the oil tank 8, and the connection point between the input pipe 403 and the oil tank 8 should be below the cooling oil level, and the connection point between the return pipe 406 and the oil tank 8 should be above the hydraulic oil, so as to facilitate the injection and circulation of the cooling oil.

[0030] In a further embodiment, referring to Figure 1 - Fig.10 The top surface of the drill bit 13 is provided with an annular groove 14, an annular plate 15 is installed above the inner cavity of the annular groove 14, and an isolation plate 20 is symmetrically installed on the bottom surface of the annular plate 15. The two isolation plates 20 separate the inside of the annular groove 14, and a plug hole 16 is opened on the top surface of the annular plate 15; A rubber belt 17 is installed below the inner cavity of the plug hole 16, and a rubber ring 18 is installed on the bottom surface of the rubber belt 17; In this embodiment, the design of the rubber belt 17 and the rubber ring 18 is such that when the adapter tube 412 is not plugged into the plug hole 16, the opening of the plug hole 16 is reduced under the action of the rubber ring 18, thereby preventing a large amount of debris from entering the annular groove 14 during the drilling and milling process. When the adapter tube 412 is plugged into the plug hole 16, the rubber belt 17 and the rubber ring 18 are stretched open to facilitate the entry of cooling oil.

[0031] In a further embodiment, referring to Figure 1 - Figure 4 , further comprising a cooling component 5, the cooling component 5 comprising an air delivery pipe 501, an air delivery pipe 501 is installed above the side wall of the connecting pipe 402 and on a side close to the air pump 401, and an electromagnetic valve 504 is arranged on the air delivery pipe 501; A second air delivery pipe 502 is installed on the side of the first air delivery pipe 501 away from the first connecting pipe 402, and a plurality of third air delivery pipes 503 are evenly distributed on the second air delivery pipe 502. A plurality of fourth air delivery pipes 11 are evenly distributed on the oil tank 8, and the plurality of fourth air delivery pipes 11 and the plurality of third air delivery pipes 503 correspond to each other. In this embodiment, when the device does not use the conveying component 4 to cool the drill bit 13, the solenoid valve 504 is controlled by the control computer 6 to remain in an open state, and the air pump 401 is started to inflate the air delivery pipe four 11 through the air delivery pipe one 501, the air delivery pipe two 502 and the air delivery pipe three 503, thereby accelerating the gas flow in the air delivery pipe four 11, thereby accelerating the cooling of the cooling oil in the air delivery pipe four 11 and the oil tank 8.

[0032] In a further embodiment, referring to Figure 1 - Fig. 9 A second arc plate 417 is symmetrically installed on the inner wall of the connecting pipe 1 402 near the air pump 401, and the second arc plate 417 is in contact with the first arc plate 415; A limit block 21 is installed below the inner wall of the connecting pipe 1 402 away from the air pump 401, and the limit block 21 contacts the slide plate 195; In this embodiment, the arc plate 2 417 is convenient for limiting the rebound distance of the sliding tube 414 under the action of the spring 1 413 .

[0033] In a further embodiment, referring to Figure 1 - Fig. 9 A second mounting frame 191 is installed on the side of the sliding tube 414 away from the air pump 401, a second spring 193 is installed on the side of the second mounting frame 191 close to the sliding tube 414, a circular plate 192 is installed on the side of the second spring 193 close to the sliding tube 414, a ball 194 is installed on the side of the circular plate 192 away from the second spring 193, a through hole 419 and the ball 194 are mutually engaged, and the ball 194 closes the through hole 419; In this embodiment, the sealing component 19 is used to prevent the cooling oil from flowing back into the air pump 401 when the cooling oil is injected.

[0034] In a further embodiment, referring to Figure 1 and Fig.11 , also includes a collecting component 7, the collecting component 7 includes a collecting box 701, the collecting box 701 is installed on the bottom surface of the inner cavity of the processing machine tool body 1, a plurality of supporting plates 702 are evenly arranged above the inner cavity side wall of the collecting box 701, and a positioning member 9 is arranged on the top surface of the collecting box 701.

[0035] The positioning member 9 includes a mounting frame 901, and the four corners of the top surface of the collection box 701 are respectively installed with the mounting frame 901, and an electric push rod 902 is installed on the mounting frame 901. A positioning groove 904 is installed between the output ends of the left and right electric push rods 902, and the positioning grooves 904 are evenly arranged on the positioning groove 904. A pressure rod 905 is inserted between the positioning grooves 904 corresponding to each other on the two connecting plates 903; In this embodiment, the metal accessories for doors and windows are then placed between multiple support plates 702, and then according to the size of the accessories, the pressure rod 905 is selected to be inserted between the corresponding two positioning grooves 904, and the electric push rod 902 is started to drive the connecting plate 903 and the pressure rod 905 to be pressed down, so as to position the metal parts. The collection box 701 can be injected with water when in use, so that when the debris enters the collection box 701 and comes into contact with water, it can be glued together. At the same time, the side wall of the collection box 701 is provided with a water outlet pipe 10, and the water outlet pipe 10 is provided with a butterfly valve to facilitate the replacement of water in the collection box 701.

[0036] The working principle of the present invention is as follows: when the device is used, the device is first powered on; The metal part is then positioned using the collecting assembly 7 and the positioning member 9; Then, the control computer 6 is used to control the servo linear module 2, the power assembly 3 and the drill bit 13 to perform drilling and milling operations on the metal part. After drilling, the hydraulic telescopic rod 302 drives the motor 303 and the drill bit 13 to rise. The control computer 6 controls the rotation angle of the motor 303 so that the plug hole 16 and the adapter tube 412 correspond to each other. As the hydraulic telescopic rod 302 drives the drill bit 13 to rise, the clamping ring 409 is clamped into the annular groove 14 to ensure airtightness. At this time, the time of replacing the metal parts by drilling and milling is used to cool down the drill bit 13, and the specific steps are as follows: First, ensure that the electromagnetic valve 504 is closed, and then start the air pump 401 to inject gas into the connecting pipe 1 402. As the gas pressure in the connecting pipe 1 402 increases, the sliding pipe 414 is pushed to move, and the sliding pipe 414 drives the arc plate 3 418 to move a distance and stop inputting gas. At this time, the oil flow groove 420 is connected with the input pipe 1 403, and then the cooling oil in the oil tank 8 will pass through the input pipe 1 403 and the connecting pipe 1 402, and enter the metal hose 1 404, the input pipe 2 405 and the annular groove 14 in turn; Then, the air pump 401 is started to continuously inject gas into the connecting pipe 1 402, and then the sliding pipe 414 will start to continuously move toward the side away from the air pump 401, and the sliding pipe 414 and the arc plate 1 415 will close the input pipe 1 403, stopping the cooling oil in the oil tank 8 from entering the connecting pipe 1 402; As the sliding tube 414 continues to move, the slide plate 195 on the sliding tube 414 will contact the stop block 21, causing the slide plate 195 to stop moving. The continued movement of the sliding tube 414 will cause the slide plate 195 and the sliding tube 414 to move relative to each other, so that the plug-in column 197 on the slide plate 195 will be disengaged from the through hole 419. Furthermore, under the continuous pressure of the air pump 401, the high-pressure gas between the connecting tube 1 402 and the sliding tube 414 will push the ball 194 to overcome the elastic force of the spring 2 193 and enter the other side of the connecting tube 1 402; Subsequently, under the action of the high-pressure gas, the cooling oil is pushed to move in the connecting pipe 1 402, the metal hose 1 404, the input pipe 2 405, the annular groove 14, the return pipe 2 408, the metal hose 2 407 and the return pipe 1 406 in sequence, and finally the cooling oil is returned to the oil tank 8, thereby preventing the cooling oil from remaining in the above-mentioned pipes; Then, the solenoid valve 504 is opened, and the operation of the air pump 401 is closed. Then, the gas in the connecting pipe 1 402 is injected into the air delivery pipe 4 11 from the air delivery pipe 1 501, the air delivery pipe 2 502 and the air delivery pipe 3 503, and the air flow in the air delivery pipe 4 11 is accelerated. The spring 1 413 drives the mounting ring 416, the arc plate 1 415, the sliding pipe 414 and the arc plate 3 418 to quickly reset. Then the arc plate three 418 will block the input pipe one 403, and when the sliding tube 414 is reset, the sliding tube 414 will drive the slide plate 195 to move synchronously, and under the action of the spring one 413, the plug-in column 197 will be re-engaged in the through hole 419, and at the same time, the ball 194 and the circular plate 192 will also block the through hole 419 under the action of the spring two 193.

[0037] According to the disclosure and teaching of the above description, those skilled in the art to which the present invention belongs may also make changes and modifications to the above embodiments. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the present invention should also fall within the scope of protection of the claims of the present invention. In addition, although some specific terms are used in this specification, these terms are only for the convenience of description and do not constitute any limitation to the present invention.

Claims

1. A processing device for metal fittings for doors and windows, comprising a processing machine tool body (1), a servo linear module (2) and a power assembly (3) mounted on the servo linear module (2), characterized in that: A positioning member (9) is installed on the power assembly (3), the power assembly (3) comprises a mounting frame (301), a conveying assembly (4) is installed between the mounting frame (301) and the processing machine tool body (1), and an oil tank (8) is installed on the outer wall of the processing machine tool body (1); The conveying assembly (4) comprises an air pump (401) and a clamping ring (409); the air pump (401) is installed on the inner cavity side wall of the processing machine tool body (1); a connecting pipe (402) is installed on the air inlet end of the air pump (401); a spring (413) is installed on one side of the air inlet end of the air pump (401) located inside the connecting pipe (402); a mounting ring (416) is installed on the side of the spring (413) away from the air pump (401); and two mounting rings (416) are installed on the upper and lower side walls of the mounting ring (416), respectively. There is an arc-shaped plate one (415), a sliding tube (414) is installed on one side of the two arc-shaped plates one (415) away from the air pump (401), an arc-shaped plate three (418) is installed above the side of the sliding tube (414) away from the arc-shaped plate one (415), an oil flow groove (420) is provided on the end surface of the arc-shaped plate three (418), the side of the sliding tube (414) away from the air pump (401) is of closed design, and a through hole (419) is provided in the middle of the side of the sliding tube (414) away from the arc-shaped plate one (415); The sliding tube (414) is provided with a closing component (19), the closing component (19) comprising a slide plate (195), the sliding tube (414) being installed with the slide plate (195) at a time of sliding away from the air pump (401), the slide plate (195) being installed with a connecting frame (196), the connecting frame (196) being installed with a plug-in column (197), and the plug-in column (197) being plugged into the interior of the through hole (419).

2. A processing device for metal fittings for doors and windows according to claim 1, characterized in that: A metal hose 1 (404) is installed on the side of the connecting pipe 1 (402) away from the air pump (401), and an input pipe 2 (405) is installed on the other end of the metal hose 1 (404); an input pipe 1 (403) and a return pipe 1 (406) are installed on the side wall of the oil tank (8); the input pipe 1 (403) is connected to the connecting pipe 1 (402); a metal hose 2 (407) is installed on the side of the return pipe 1 (406) away from the oil tank (8), and a return pipe 2 (408) is installed on the other end of the metal hose 1 (407); The clamping ring (409) is symmetrically provided with transfer tubes (412), the two transfer tubes (412) are rotatably connected to the second input tube (405) and the second return tube (408) respectively, the side wall of the clamping ring (409) is provided with an arc-shaped support plate (410), and the top surface of the air pump (401) is symmetrically provided with a connecting rod (411); The movable end of the servo linear module (2) is installed with a mounting frame (301), the bottom surface of the mounting frame (301) is installed with a hydraulic telescopic rod (302), the telescopic end of the hydraulic telescopic rod (302) is installed with a motor (303), and the power output end of the motor (303) is installed with a drill bit (13); The bottom surface of the installation frame (301) is connected to the air pump (401).

3. A processing device for metal fittings for doors and windows according to claim 2, characterized in that: The top surface of the drill bit (13) is provided with an annular groove (14), an annular plate (15) is installed above the inner cavity of the annular groove (14), an isolation plate (20) is symmetrically installed on the bottom surface of the annular plate (15), the two isolation plates (20) separate the inside of the annular groove (14), and a plug hole (16) is opened on the top surface of the annular plate (15); A rubber belt (17) is installed below the inner cavity of the plug hole (16), and a rubber ring (18) is installed on the bottom surface of the rubber belt (17).

4. A processing device for metal fittings for doors and windows according to claim 1, characterized in that: It also includes a cooling component (5), the cooling component (5) including an air delivery pipe (501), the air delivery pipe (501) is installed above the side wall of the connecting pipe (402) and on a side close to the air pump (401), and the air delivery pipe (501) is provided with a solenoid valve (504); A second air supply pipe (502) is installed on the side of the first air supply pipe (501) away from the first connecting pipe (402), and a plurality of third air supply pipes (503) are evenly distributed on the second air supply pipe (502). A plurality of fourth air supply pipes (11) are evenly distributed on the oil tank (8), and the plurality of fourth air supply pipes (11) and the plurality of third air supply pipes (503) correspond to each other.

5. The processing device for metal fittings for doors and windows according to claim 1, characterized in that: A second arc plate (417) is symmetrically mounted on the inner wall of the first connecting pipe (402) near the air pump (401) and the second arc plate (417) is in contact with the first arc plate (415); A limit block (21) is installed below the inner wall of the connecting pipe 1 (402) at a side away from the air pump (401), and the limit block (21) contacts a slide plate (195).

6. The processing device for metal fittings for doors and windows according to claim 1, characterized in that: A second mounting frame (191) is installed on the side of the sliding tube (414) away from the air pump (401), a second spring (193) is installed on the side of the second mounting frame (191) close to the sliding tube (414), a circular plate (192) is installed on the side of the second spring (193) close to the sliding tube (414), and a ball (194) is installed on the side of the circular plate (192) away from the second spring (193), the through hole (419) and the ball (194) are mutually engaged, and the ball (194) seals the through hole (419).

7. The processing device for metal fittings for doors and windows according to claim 1, characterized in that: It also comprises a collection assembly (7), the collection assembly (7) comprising a collection box (701), the collection box (701) being installed on the bottom surface of the inner cavity of the processing machine tool body (1), a plurality of support plates (702) being evenly arranged above the inner cavity side wall of the collection box (701), and a positioning piece (9) being arranged on the top surface of the collection box (701).

8. A processing device for metal fittings for doors and windows according to claim 7, characterized in that: The positioning member (9) comprises a mounting frame (901), the mounting frame (901) being respectively mounted at the four corners of the top surface of the collection box (701), an electric push rod (902) being mounted on the mounting frame (901), a positioning groove (904) being mounted between the output ends of the left and right electric push rods (902), positioning grooves (904) being evenly arranged on the positioning groove (904), and a pressure rod (905) being inserted between the positioning grooves (904) corresponding to each other on the two connecting plates (903).

Citation Information

Patent Citations

  • Drilling and milling machining device for alloy doors and windows

    CN219684554U