Machining tool for ADI gear

By integrating gear machining components, position control components, anti-rotation warning components, and stabilizing limit components into a drilling machine, the problems of inconvenient adjustment of ADI gear models, anti-rotation, and loose screws were solved, realizing automatic positioning and safe machining of ADI gears.

CN121360972APending Publication Date: 2026-01-20江苏震业新材料股份有限公司
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Patent Information

Application Number
CN202511902032.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-17
Publication Date
2026-01-20

AI Technical Summary

Technical Problem

Existing drilling machines are not convenient for adjusting positioning fixtures according to ADI gear models. When ADI gears move, they cannot automatically alert the operator to move away. After adjustment, the gears are prone to rotation, and the mounting screws are prone to loosening, affecting machining accuracy.

Method used

It employs gear machining components, position control components, anti-rotation warning components, and stabilizing limit components. Through a motor and electric telescopic rod, it achieves automatic positioning and anti-rotation of ADI gears. An alarm is set to alert personnel to stay away, and a stabilizing limit frame prevents screws from loosening.

Benefits of technology

It enables automatic positioning and anti-rotation of different ADI gear models, avoids accidental injury to workers, ensures machining accuracy and screw stability, and improves the convenience and safety of ADI gear machining.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a machining machine tool for an ADI gear, and relates to the technical field of ADI gear machining, the machining machine tool comprises a gear machining part, a position control part, a prompt anti-rotation part and a stable limiting part; the position control piece is installed on the gear machining piece and used for adjusting the position of the ADI gear. The prompting anti-rotation piece is installed on the position control piece, the prompting anti-rotation piece is used for prompting a worker to be away from the position control piece, and the prompting anti-rotation piece is further used for preventing the adjusted ADI gear from rotating; the stable limiting piece is installed on the gear machining piece and used for preventing the gear machining piece from loosening. When an output shaft of a motor b drives an adjusting lead screw to rotate, the position of a movable mounting block is changed, and the ADI gear machining device is suitable for machining ADI gears of different models; the problems that a worker cannot conveniently and properly adjust a positioning tool and a machining position according to the model of the ADI gear, and ADI gears of different models cannot be conveniently used are solved.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the field of ADI gear processing technology, more particularly relates to a machining tool for ADI gear. BACKGROUND

[0002] ADI gear refers to the gear made of isothermal quenching nodular cast iron material; through special heat treatment process, the gear has high strength, high toughness, light weight, wear resistance, shock absorption and noise reduction and other excellent performance; in the ADI gear processing process, the drilling machine is mainly used for processing installation hole, positioning hole or oil hole on ADI gear.

[0003] The drilling machine currently used still has the following problems: 1. It is inconvenient for workers to adjust the positioning tool and the processing position according to the model of ADI gear, which is not conducive to the use of ADI gears of different models; 2. Workers cannot be automatically prompted to move away when ADI gear moves, which is easy to injure workers; 3. Usually, there is no automatic positioning structure, so that the adjusted ADI gear is easy to rotate, affecting the drilling precision of ADI gear; 4. Generally, the installation screw is used, so that the installation screw is easy to loosen after long time use. SUMMARY

[0004] The disclosed embodiment relates to a machining tool for ADI gear, which has gear processing parts, position control parts, prompt anti-rotation parts and stable limiting parts; when the output shaft of motor b drives the adjusting screw to rotate, the position of the movable mounting block changes, which is suitable for ADI gear processing of different models; when the output shaft of four electric telescopic rods is contracted, the rectangular anti-rotation plate slowly inserts into the left clamping groove, avoiding the rotation of the adjusted tool connecting disc; when the switch is pressed, the alarm works, which can prompt workers to move away, avoiding injuring workers; the setting of two stable limiting racks limits the four screws on the gear processing rack, avoiding the loosening of the four screws on the gear processing rack; the problems of not being conducive to the use of ADI gears of different models, workers cannot be automatically prompted to move away when ADI gear moves, the adjusted ADI gear is easy to rotate and the installation screw is easy to loosen are solved.

[0005] The application provides a machining tool for ADI gear, which comprises a gear machining part, a position control part, a rotation prevention part and a stable limiting part; the position control part is installed on the gear machining part and is used for adjusting the position of the ADI gear; the rotation prevention part is installed on the position control part and is used for prompting the staff to move away and preventing the rotated ADI gear from rotating; the stable limiting part is installed on the gear machining part and is used for preventing the gear machining part from loosening; and the control panel is installed on the gear machining part and is used for controlling the gear machining part and the position control part.

[0006] In at least some embodiments, the gear machining part comprises a gear machining frame, a movable mounting block and a motor a; four screws are installed at the corners of the gear machining frame; the movable mounting block is slidingly installed on the gear machining frame; the motor a is installed at the bottom of the movable mounting block and is electrically connected with the control panel.

[0007] In at least some embodiments, the gear machining part further comprises a machining drill bit, a motor b and an adjusting screw rod; the machining drill bit is installed on the output shaft of the motor a; the motor b is installed on the right side of the gear machining frame and is electrically connected with the control panel; the adjusting screw rod is rotationally installed on the gear machining frame and is threadedly connected with the movable mounting block and is fixedly connected with the output shaft of the motor b.

[0008] In at least some embodiments, the position control part comprises four electric telescopic rods, a position control seat and two triangular control frames; the four electric telescopic rods are installed on the gear machining frame and are electrically connected with the control panel; the position control seat is fixedly installed on the output shafts of the four electric telescopic rods; and the two triangular control frames are fixedly installed at the bottom of the position control seat.

[0009] In at least some embodiments, the position control part further comprises a motor c, a tool connecting disc and a solid supporting ball; the motor c is installed on the position control seat and is electrically connected with the control panel; the tool connecting disc is fixedly installed on the output shaft of the motor c and is provided with a ring of clamping grooves; and the solid supporting ball is rotationally installed on the tool connecting disc and is in contact with the position control seat at the bottom.

[0010] In at least some embodiments, the anti-rotation prompting component comprises: a mounting positioning seat and a rectangular guide rod; the mounting positioning seat is fixedly installed on the top of the position control seat; the rectangular guide rod is slidingly installed on the mounting positioning seat, and the left end of the rectangular guide rod is in contact with the gear machining rack, and the bottom of the rectangular guide rod is provided with a groove a and a groove b.

[0011] In at least some embodiments, the anti-rotation prompting component further comprises: a rectangular anti-rotation plate, a circular limiting ring a and a spring; the rectangular anti-rotation plate is fixedly installed on the right side of the rectangular guide rod; the circular limiting ring a is fixedly installed on the outside of the rectangular guide rod; the spring is sleeved on the outside of the rectangular guide rod, and the spring is located between the mounting positioning seat and the circular limiting ring a.

[0012] In at least some embodiments, the anti-rotation prompting component further comprises: a battery, an alarm and a switch; the battery is fixedly installed on the left side of the mounting positioning seat; the alarm is fixedly installed on the right side of the mounting positioning seat; the switch is installed on the mounting positioning seat, and the switch is connected in series with the battery and the alarm.

[0013] In at least some embodiments, the stable limiting component comprises: a stable limiting frame and a circular limiting ring b; there are two stable limiting frames, and the two stable limiting frames are slidingly installed on the gear machining rack; the outer ends of the two stable limiting frames are in contact with four screws on the gear machining rack, and the inner ends of the two stable limiting frames are in contact with two triangular control frames; there are four circular limiting rings b, and the four circular limiting rings b are fixedly installed on the two stable limiting frames, and the four circular limiting rings b are in contact with the gear machining rack.

[0014] In at least some embodiments, the stable limiting component further comprises: a circular limiting ring c and a tension spring; there are four circular limiting rings c, and the four circular limiting rings c are fixedly installed on the two stable limiting frames; there are four tension springs, and the four tension springs are sleeved on the two stable limiting frames; the outer ends of the four tension springs are fixedly connected with the gear machining rack, and the inner ends of the four tension springs are fixedly connected with the four circular limiting rings c.

[0015] Compared with the prior art, the present application has the following beneficial effects:

[0016] 1、When the output shafts of the four electric telescopic rods are retracted, the position control seat drives the tooling and the ADI gear to move upward; when the output shafts of the four electric telescopic rods are extended and reset, the position control seat drives the tooling and the ADI gear to reset downward; the setting of the tooling connecting disc facilitates the adjustment of the angle of the ADI gear, which is conducive to the machining of multiple circular holes on the ADI gear; the setting of the one-circle solid support ball plays an auxiliary supporting role on the tooling connecting disc;

[0017] In addition, when the output shaft of the motor b drives the adjusting screw rod to rotate, the position of the movable mounting block changes, and the ADI gear machining is suitable for different models; when the motor a works, the output shaft of the motor a drives the machining drill bit to rotate, and the automatic drilling machining of the ADI gear is realized.

[0018] 2、The rectangular anti-rotation plate slowly inserts into the clamping groove on the left when the output shaft of the four electric telescopic rods is retracted, so that the adjusted tool connecting disc is prevented from rotating; the rectangular anti-rotation plate slowly moves out of the clamping groove on the left when the output shaft of the four electric telescopic rods is extended and reset.

[0019] In addition, when the output shaft of the four electric telescopic rods is retracted, the switch moves out of the groove a; when the output shaft of the four electric telescopic rods stops retracting, the switch moves into the groove b; when the output shaft of the four electric telescopic rods is extended and reset, the switch moves out of the groove b; when the output shaft of the four electric telescopic rods stops extending, the switch moves into the groove a; when the switch is separated from the groove a or the groove b, the rectangular guide rod can press the switch, and the alarm works when the switch is pressed, which can prompt the staff to stay away and avoid injuring the staff.

[0020] 3、The two stable limiting frames are provided, which limit the four screws on the gear machining frame, so that the four screws on the gear machining frame are prevented from loosening; the four tension springs are provided, so that the two stable limiting frames only slide inward under stress, thereby ensuring the limiting effect of the four screws.

[0021] In addition, when the output shaft of the four electric telescopic rods is fully extended, the two triangular control frames can drive the two stable limiting frames to slide inward at the same time, so that the two stable limiting frames are separated from the four screws on the gear machining frame, which is beneficial to the disassembly or installation of the four screws; the four circular limiting rings b are provided, which limit the two stable limiting frames after resetting. BRIEF DESCRIPTION OF DRAWINGS

[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0023] The drawings in the following description only relate to some embodiments of the present application, and are not limited to the present application.

[0024] In the drawings:

[0025] Figure 1 The three-dimensional structure schematic diagram of the present application is shown;

[0026] Figure 2 The structure schematic diagram of the gear machining piece of the present application is shown;

[0027] Figure 3A structural schematic diagram of the position control part of the present application is shown.

[0028] Figure 4 A central cut structural schematic diagram of the present application is shown. Figure 1

[0029] Figure 5 A local enlarged structural schematic diagram of the A area in the present application is shown. Figure 4

[0030] Figure 6 A structural schematic diagram of the prompt anti-rotation part of the present application is shown.

[0031] Figure 7 A local enlarged structural schematic diagram of the B area in the present application is shown. Figure 4

[0032] A bottom view structural schematic diagram of the present application is shown. Figure 8 Figure 1

[0033] Figure 9 A local enlarged structural schematic diagram of the C area in the present application is shown. Figure 4

[0034] Figure 10 A local enlarged structural schematic diagram of the D area in the present application is shown. Figure 1

[0035] List of reference signs:

[0036] 100, gear processing part; 101, gear processing frame; 102, movable mounting block; 103, motor a; 104, processing drill bit; 105, motor b; 106, adjusting lead screw;

[0037] 200, position control part; 201, electric telescopic rod; 202, position control seat; 203, triangular control frame; 204, motor c; 205, tool connecting disc; 2051, clamping groove; 206, solid support ball;

[0038] 300, prompt anti-rotation part; 301, mounting positioning seat; 302, rectangular guide rod; 3021, groove a; 3022, groove b; 303, rectangular anti-rotation plate; 304, circular limiting ring a; 305, spring; 306, battery; 307, alarm; 308, switch;

[0039] 400, stable limiting part; 401, stable limiting frame; 402, circular limiting ring b; 403, circular limiting ring c; 404, tension spring;

[0040] 500, control panel. DETAILED DESCRIPTION ​​​​​​

[0041] In order to make the purpose, scheme and advantages of the technical solutions of the present application more clear, the technical solutions of the embodiments of the present application will be described clearly and completely below in combination with the drawings of the specific embodiments of the present application. The terms used herein have the meanings commonly used in the art unless otherwise specified. The same reference signs in the drawings represent the same components.

[0042] Embodiment: Please refer to Figures 1 to 10 As shown in the figure, the present application provides a processing machine tool for ADI gear, which comprises a gear processing part 100, a position control part 200, a prompt anti-rotation part 300 and a stable limiting part 400; the position control part 200 is installed on the gear processing part 100, and the position control part 200 is used to adjust the position of the ADI gear; the prompt anti-rotation part 300 is installed on the position control part 200, and the prompt anti-rotation part 300 is used to prompt the staff to keep away, and the prompt anti-rotation part 300 is also used to prevent the adjusted ADI gear from rotating; the stable limiting part 400 is installed on the gear processing part 100, and the stable limiting part 400 is used to prevent the gear processing part 100 from loosening; a control panel 500 is installed on the gear processing part 100, and the control panel 500 is used to control the gear processing part 100 and the position control part 200.

[0043] In the embodiments of the present disclosure, as Figures 2 to 5 As shown in the figure, the gear processing part 100 comprises a gear processing rack 101, a movable mounting block 102 and a motor a 103; four screws are installed at the corners of the gear processing rack 101; the movable mounting block 102 is slidingly installed on the gear processing rack 101; the motor a 103 is installed at the bottom of the movable mounting block 102, and the motor a 103 is electrically connected with the control panel 500; the gear processing part 100 further comprises a processing drill bit 104, a motor b 105 and an adjusting lead screw 106; the processing drill bit 104 is installed on the output shaft of the motor a 103; the motor b 105 is installed on the right side of the gear processing rack 101, and the motor b 105 is electrically connected with the control panel 500; the adjusting lead screw 106 is rotatably installed on the gear processing rack 101, and the adjusting lead screw 106 is threadedly connected with the movable mounting block 102, and the adjusting lead screw 106 is further fixedly connected with the output shaft of the motor b 105;

[0044] The position control piece 200 comprises four electric telescopic rods 201, a position control seat 202 and two triangular control frames 203, the four electric telescopic rods 201 are installed on the gear machining rack 101, and the four electric telescopic rods 201 are electrically connected with the control panel 500; the position control seat 202 is fixedly installed on the output shafts of the four electric telescopic rods 201; the two triangular control frames 203 are fixedly installed at the bottom of the position control seat 202; the position control piece 200 further comprises a motor c 204, a tool connecting disc 205 and a solid support ball 206; the motor c 204 is installed on the position control seat 202, and the motor c 204 is electrically connected with the control panel 500; the tool connecting disc 205 is fixedly installed on the output shaft of the motor c 204, and a clamping groove 2051 is formed in the tool connecting disc 205; the solid support ball 206 is rotatably installed on the tool connecting disc 205, and the bottom of the solid support ball 206 is in contact with the position control seat 202.

[0045] The specific role is that: because the four electric telescopic rods 201 are installed on the gear machining rack 101, and the position control seat 202 is fixedly installed on the output shafts of the four electric telescopic rods 201, when the output shafts of the four electric telescopic rods 201 are retracted, the position control seat 202 drives the tool and the ADI gear to move upwards; when the output shafts of the four electric telescopic rods 201 are extended and reset, the position control seat 202 drives the tool and the ADI gear to reset downwards; because the tool connecting disc 205 is fixedly installed on the output shaft of the motor c 204, the angle of the ADI gear is adjusted, which is beneficial to machining multiple circular holes on the ADI gear, and the solid support ball 206 plays an auxiliary supporting role on the tool connecting disc 205.

[0046] In addition, because the movable mounting block 102 is slidably installed on the gear machining rack 101, the adjusting screw rod 106 is threadedly connected with the movable mounting block 102, and the adjusting screw rod 106 is further fixedly connected with the output shaft of the motor b 105, when the output shaft of the motor b 105 drives the adjusting screw rod 106 to rotate, the position of the movable mounting block 102 changes, which is suitable for machining ADI gears of different models; because the motor a 103 is installed at the bottom of the movable mounting block 102, and the machining drill bit 104 is installed on the output shaft of the motor a 103, when the motor a 103 works, the output shaft of the motor a 103 drives the machining drill bit 104 to rotate, so that the automatic drilling machining of the ADI gear is realized.

[0047] In the embodiment of the present disclosure, as Figure 6 and Figure 7As shown, the anti-rotation device 300 comprises a mounting positioning seat 301 and a rectangular guide rod 302; the mounting positioning seat 301 is fixedly installed on the top of the position control seat 202; the rectangular guide rod 302 is slidingly installed on the mounting positioning seat 301, and the left end of the rectangular guide rod 302 is in contact with the gear machining rack 101, and the bottom of the rectangular guide rod 302 is provided with a groove a 3021 and a groove b 3022; the anti-rotation device 300 further comprises a rectangular anti-rotation plate 303, a circular limiting ring a 304 and a spring 305; the rectangular anti-rotation plate 303 is fixedly installed on the right side of the rectangular guide rod 302; the circular limiting ring a 304 is fixedly installed outside the rectangular guide rod 302; the spring 305 is sleeved outside the rectangular guide rod 302, and the spring 305 is located between the mounting positioning seat 301 and the circular limiting ring a 304; the anti-rotation device 300 further comprises a battery 306, an alarm 307 and a switch 308; the battery 306 is fixedly installed on the left side of the mounting positioning seat 301; the alarm 307 is fixedly installed on the right side of the mounting positioning seat 301; the switch 308 is installed on the mounting positioning seat 301, and the switch 308 is connected in series with the battery 306 and the alarm 307;

[0048] The specific action is that because the left end of the rectangular guide rod 302 is in contact with the gear machining rack 101, and a circle of clamping grooves 2051 is formed on the tool connecting disc 205, and the rectangular anti-rotation plate 303 is fixedly installed on the right side of the rectangular guide rod 302, when the output shafts of the four electric telescopic rods 201 are retracted, the rectangular anti-rotation plate 303 is slowly inserted into the clamping grooves 2051 on the left side, so that the adjusted tool connecting disc 205 is prevented from rotating; and because the circular limiting ring a 304 is fixedly installed outside the rectangular guide rod 302, and the spring 305 is sleeved outside the rectangular guide rod 302, and the spring 305 is located between the mounting positioning seat 301 and the circular limiting ring a 304, when the output shafts of the four electric telescopic rods 201 are extended and reset, the rectangular anti-rotation plate 303 is slowly moved out of the clamping grooves 2051 on the left side;

[0049] In addition, because the bottom of the rectangular guide rod 302 is provided with the groove a 3021 and the groove b 3022, and the switch 308 is installed on the mounting positioning seat 301, when the output shaft of the four electric telescopic rods 201 is retracted, the switch 308 moves out of the groove a 3021; when the output shaft of the four electric telescopic rods 201 stops retracting, the switch 308 moves into the groove b 3022; when the output shaft of the four electric telescopic rods 201 extends and resets, the switch 308 moves out of the groove b 3022; when the output shaft of the four electric telescopic rods 201 stops extending, the switch 308 moves into the groove a 3021; and because the battery 306 is fixedly installed on the left side of the mounting positioning seat 301, and the alarm 307 is fixedly installed on the right side of the mounting positioning seat 301, and the switch 308 is connected in series with the battery 306 and the alarm 307, when the switch 308 is separated from the groove a 3021 or the groove b 3022, the rectangular guide rod 302 can press the switch 308, and when the switch 308 is pressed, the alarm 307 works, which can prompt the staff to keep away and avoid injuring the staff.

[0050] In the embodiment of the present disclosure, as shown in Figures 8 to 10 The stable limiting piece 400 includes a stable limiting frame 401 and a circular limiting ring b 402. The stable limiting frame 401 is provided with two, and the two stable limiting frames 401 are slidingly installed on the gear machining frame 101. The outer end of the two stable limiting frames 401 is in contact with the four screws on the gear machining frame 101, and the inner end of the two stable limiting frames 401 is in contact with the two triangular control frames 203. The circular limiting ring b 402 is provided with four, and the four circular limiting rings b 402 are fixedly installed on the two stable limiting frames 401, and the four circular limiting rings b 402 are in contact with the gear machining frame 101. The stable limiting piece 400 further includes a circular limiting ring c 403 and a tension spring 404. The circular limiting ring c 403 is provided with four, and the four circular limiting rings c 403 are fixedly installed on the two stable limiting frames 401. The tension spring 404 is provided with four, and the four tension springs 404 are sleeved on the two stable limiting frames 401. The outer end of the four tension springs 404 is fixedly connected with the gear machining frame 101, and the inner end of the four tension springs 404 is fixedly connected with the four circular limiting rings c 403.

[0051] The specific action is that: because the two stable limiting frames 401 are slidably installed on the gear machining frame 101, and the outer ends of the two stable limiting frames 401 are in contact with the four screws on the gear machining frame 101, the four screws on the gear machining frame 101 are limited, and loosening of the four screws on the gear machining frame 101 is avoided; and because the four circular limiting rings c403 are fixedly installed on the two stable limiting frames 401, the outer ends of the four extension springs 404 are fixedly connected with the gear machining frame 101, and the inner ends of the four extension springs 404 are fixedly connected with the four circular limiting rings c403, so that the two stable limiting frames 401 can only slide inward under stress, and the limiting effect of the four screws is ensured.

[0052] In addition, because the two triangular control frames 203 are fixedly installed at the bottom of the position control seat 202, and the inner ends of the two stable limiting frames 401 are in contact with the two triangular control frames 203, when the output shafts of the four electric telescopic rods 201 are all extended, the two triangular control frames 203 can drive the two stable limiting frames 401 to slide inward at the same time, so that the two stable limiting frames 401 are separated from the four screws on the gear machining frame 101, which is beneficial to dismounting or mounting of the four screws; and because the four circular limiting rings b402 are fixedly installed on the two stable limiting frames 401, and the four circular limiting rings b402 are in contact with the gear machining frame 101, the two stable limiting frames 401 after resetting are limited.

[0053] The specific use mode and action of the embodiment are as follows:

[0054] When the application is used, first, the control panel 500 is connected with an external power supply, then the output shafts of the four electric telescopic rods 201 are all extended through the control panel 500, when the output shafts of the four electric telescopic rods 201 are all extended, the two triangular control frames 203 can drive the two stable limiting frames 401 to slide inward at the same time, so that the two stable limiting frames 401 are separated from the four screws on the gear machining frame 101, which is beneficial to dismounting or mounting of the four screws, then the gear machining frame 101 is fixedly installed through the four screws, and then the output shafts of the four electric telescopic rods 201 are reset through the control panel 500. Figure 4The two stable limit racks 401 are arranged to limit the four screws on the gear machining rack 101, avoiding loosening of the four screws on the gear machining rack 101, and suitable positioning tooling is selected according to the ADI gear model, and then the positioning tooling is connected with the tooling connecting disc 205 through the screws, and then the motor b105 is started through the control panel 500, when the output shaft of the motor b105 drives the adjusting screw 106 to rotate, the position of the movable mounting block 102 changes, and the ADI gear machining of different models is suitable; the ADI gear to be drilled is installed on the positioning tooling, the motor a103 is started through the control panel 500, when the motor a103 works, the output shaft of the motor a103 drives the machining drill bit 104 to rotate, automatic drilling of the ADI gear is realized, the output shaft of the four electric telescopic rods 201 is retracted, when the output shaft of the four electric telescopic rods 201 is retracted, the position control seat 202 drives the tooling and the ADI gear to move upwards; when the output shaft of the four electric telescopic rods 201 is retracted, the rectangular anti-rotation plate 303 is slowly inserted into the left clamping groove 2051, avoiding rotation of the adjusted tooling connecting disc 205; when the output shaft of the four electric telescopic rods 201 is retracted, the switch 308 moves out of the groove a 3021; when the output shaft of the four electric telescopic rods 201 stops retracting, the switch 308 moves into the groove b 3022; when the switch 308 is separated from the groove a 3021 or the groove b 3022, the rectangular guide rod 302 can press the switch 308, when the switch 308 is pressed, the alarm 307 works, which can prompt the staff to stay away, avoiding hurting the staff; when the drilling position needs to be replaced, the machining drill bit 104 is removed from the ADI gear, and then the motor c204 is started through the control panel 500, so that the tooling connecting disc 205 changes in angle; after the ADI gear machining is completed, the motor a103 is paused through the control panel 500, the output shaft of the four electric telescopic rods 201 is extended and reset through the control panel 500, when the output shaft of the four electric telescopic rods 201 is extended and reset, the position control seat 202 drives the tooling and the ADI gear to reset downwards; when the output shaft of the four electric telescopic rods 201 is extended and reset, the rectangular anti-rotation plate 303 is slowly removed from the left clamping groove 2051; when the output shaft of the four electric telescopic rods 201 is extended and reset, the switch 308 moves out of the groove b 3022; when the output shaft of the four electric telescopic rods 201 stops extending, the switch 308 moves into the groove a 3021; when the switch 308 is separated from the groove a 3021 or the groove b 3022, the rectangular guide rod 302 can press the switch 308, when the switch 308 is pressed, the alarm 307 works, which can prompt the staff to stay away, avoiding hurting the staff.

[0055] In this paper, the following points need attention:

[0056] 1.The accompanying drawings are only related to the structure involved in the embodiments of the present disclosure, and other structures can be referred to the general design.

[0057] 2.In the case of no conflict, the embodiments and features in the embodiments of the present disclosure can be combined to obtain new embodiments.

[0058] The above is only a specific implementation of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. A machine tool for machining of ADI gears, comprising: Gear processing piece (100), position control piece (200), prompt anti-rotation piece (300) and stable limiting piece (400); Its characterized in that, the position control piece (200) is installed on the gear processing piece (100), the position control piece (200) is used to adjust the position of ADI gear;The prompt anti-rotation piece (300) is installed on the position control piece (200), the prompt anti-rotation piece (300) is used to prompt the staff to keep away, and the prompt anti-rotation piece (300) is also used to prevent the rotation of the adjusted ADI gear;The stable limiting piece (400) is installed on the gear processing piece (100), and the stable limiting piece (400) is used to prevent the gear processing piece (100) from loosening;The control panel (500) is installed on the gear processing piece (100), and the control panel (500) is used to control the gear processing piece (100) and the position control piece (200).

2. A machine tool for machining ADI gears according to claim 1, characterized in that, The gear processing piece (100) comprises gear processing frame (101), movable mounting block (102) and motor a (103);Four screws are installed at the corners of the gear processing frame (101);The movable mounting block (102) is slidingly installed on the gear processing frame (101);The motor a (103) is installed at the bottom of the movable mounting block (102), and the motor a (103) is electrically connected with the control panel (500).

3. A machine tool for machining ADI gears according to claim 2, characterized in that, The gear processing piece (100) further comprises processing drill bit (104), motor b (105) and adjusting screw rod (106);The processing drill bit (104) is installed on the output shaft of the motor a (103);The motor b (105) is installed on the right side of the gear processing frame (101), and the motor b (105) is electrically connected with the control panel (500);The adjusting screw rod (106) is rotatably installed on the gear processing frame (101), and the adjusting screw rod (106) is threadedly connected with the movable mounting block (102), and the adjusting screw rod (106) is further fixedly connected with the output shaft of the motor b (105).

4. A machine tool for machining of ADI gears according to claim 2, characterized in that, The position control piece (200) comprises electric telescopic rod (201), position control seat (202) and triangular control frame (203);Four electric telescopic rods (201) are provided, and the four electric telescopic rods (201) are installed on the gear processing frame (101), and the four electric telescopic rods (201) are electrically connected with the control panel (500);The position control seat (202) is fixedly installed on the output shaft of the four electric telescopic rods (201);Two triangular control frames (203) are provided, and the two triangular control frames (203) are fixedly installed at the bottom of the position control seat (202).

5. A machine tool for machining ADI gears according to claim 4, characterized in that, The position control piece (200) further comprises a motor c (204), a tool connecting disc (205) and a solid support ball (206); the motor c (204) is installed on the position control seat (202), and the motor c (204) is electrically connected with the control panel (500); the tool connecting disc (205) is fixedly installed on the output shaft of the motor c (204), and a clamping groove (2051) is formed in the tool connecting disc (205); the solid support ball (206) is provided in a circle, and the solid support ball (206) is rotatably installed on the tool connecting disc (205), and the bottom of the solid support ball (206) is in contact with the position control seat (202).

6. A machine tool for machining of ADI gears according to claim 4, characterized in that, The prompt anti-rotation piece (300) comprises a mounting positioning seat (301) and a rectangular guide rod (302); the mounting positioning seat (301) is fixedly installed on the top of the position control seat (202); the rectangular guide rod (302) is slidably installed on the mounting positioning seat (301), and the left end of the rectangular guide rod (302) is in contact with the gear machining rack (101), and the bottom of the rectangular guide rod (302) is provided with a groove a (3021) and a groove b (3022).

7. A machine tool for machining ADI gears according to claim 6, characterized in that, The prompt anti-rotation piece (300) further comprises a rectangular anti-rotation plate (303), a circular limiting ring a (304) and a spring (305); the rectangular anti-rotation plate (303) is fixedly installed on the right side of the rectangular guide rod (302); the circular limiting ring a (304) is fixedly installed on the outside of the rectangular guide rod (302); the spring (305) is sleeved on the outside of the rectangular guide rod (302), and the spring (305) is located between the mounting positioning seat (301) and the circular limiting ring a (304).

8. A machine tool for machining ADI gears according to claim 7, characterized in that, The prompt anti-rotation piece (300) further comprises a battery (306), an alarm (307) and a switch (308); the battery (306) is fixedly installed on the left side of the mounting positioning seat (301); the alarm (307) is fixedly installed on the right side of the mounting positioning seat (301); the switch (308) is installed on the mounting positioning seat (301), and the switch (308) is connected in series with the battery (306) and the alarm (307).

9. A machine tool for machining of ADI gears according to claim 4, characterized in that, The stable limiting piece (400) comprises a stable limiting frame (401) and a circular limiting ring b (402); the stable limiting frame (401) is provided in two, and the two stable limiting frames (401) are slidably installed on the gear machining rack (101); the outer ends of the two stable limiting frames (401) are in contact with the four screws on the gear machining rack (101), and the inner ends of the two stable limiting frames (401) are in contact with the two triangular control frames (203); the circular limiting ring b (402) is provided in four, and the four circular limiting ring b (402) is fixedly installed on the two stable limiting frames (401), and the four circular limiting ring b (402) is in contact with the gear machining rack (101).

10. A machine tool for machining ADI gears according to claim 9, characterized in that, The stable limiting piece (400) further comprises four circular limiting rings c (403) and four pull springs (404); the four circular limiting rings c (403) are fixedly installed on the two stable limiting frames (401); the four pull springs (404) are sleeved on the two stable limiting frames (401); the outer ends of the four pull springs (404) are fixedly connected with the gear machining frame (101), and the inner ends of the four pull springs (404) are fixedly connected with the four circular limiting rings c (403).

Citation Information

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