Electric detachable handle
Through the design of the electric detachable handle, the automatic expansion and contraction of the slider is achieved using electric drive equipment and power transmission structure, which solves the problem of large space occupancy of traditional cooking utensils, and realizes the removable installation and convenient disassembly of the handle, saving storage space.
Patent Information
- Application Number
- CN202422396880.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-09-29
AI Technical Summary
Traditional cookware handles are fixed by riveting or welding, which causes the cookware to occupy a large space, causing inconvenience to packaging, transportation, carrying, collecting and cleaning.
An electric detachable handle is designed to removably connect the slider to the ear holder, and the handle is automatically telescopic and retracted by using the electric drive device and the power transmission structure. The slider can movably lock or loosen the ear holder, and the push button controls the operation of the electric drive device.
It realizes the removable installation of the handle and the pot body, with a simple structure, convenient disassembly and assembly, and saves storage space.
Smart Images

Figure CN223208277U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cooker handles, in particular to an electric detachable handle. Background Art
[0002] Traditional cooker handles are fixedly connected to the cooker body by riveting or welding, which makes the cooker take up a lot of space and brings inconvenience to packaging, transportation, carrying, storage and cleaning. Utility Model Content
[0003] The purpose of the utility model is to overcome the above-mentioned deficiencies in the prior art and provide an electric detachable handle.
[0004] The utility model is realized through the following technical solutions: an electric detachable handle, which cooperates with a pot body and includes a handle body, in which a slider, a push button, a power transmission structure and an electric drive device are installed; an ear seat is installed on the side wall of the pot body, and the handle body is provided with a slide groove, and the slider is inserted in the slide groove and can slide along the slide groove; the input end of the power transmission structure is connected to the electric drive device, the output end of the power transmission structure is connected to the inner end of the slider and drives the slider to slide along the slide groove, and the outer end of the slider can movably lock or release the ear seat; the push button is connected to the electric drive device.
[0005] The electric drive device provides power to the power transmission structure, so that it converts the rotational force into the sliding power of the slider. The slider can movably lock or release the ear seat to realize the detachable installation function of the handle body; the push button is used to control the operation of the electric drive device, and the slide groove provides a sliding channel for the slider.
[0006] The power transmission structure includes a worm shaft and a turbine. A first gear is provided at one end of the worm shaft, and the first gear engages with the electric drive device. The turbine is provided with two partitioned racks, namely a first rack and a second rack. A plurality of first racks are evenly arranged at one end of the outer surface of the turbine, and a plurality of second racks are evenly arranged at the other end of the outer surface of the turbine. The first rack engages with the helical teeth of the worm shaft, and the second rack engages with the inner end of the slider and drives the slider forward or backward.
[0007] The electric drive device includes an electric motor, a battery for powering the electric motor, and a processor for controlling the electric motor; the electric motor and the battery are connected to the processor, and the processor is connected to the push button; the output shaft of the electric motor is equipped with a second gear, and the second gear is engaged with the first gear.
[0008] Three trigger points connected to the processor are provided on the handle body, which are the first trigger point, the second trigger point and the third trigger point; the handle body is provided with a guide groove, the upper part of the push button is arranged in the guide groove and can slide along the guide groove, and a trigger key is provided at the rear end of the lower part of the push button, and the trigger key can switchably touch the three trigger points respectively as the push button slides; when the push button is located in the middle position of the guide groove, the trigger key touches the second trigger point, and the processor drives the motor to stop rotating; when the push button slides forward to the frontmost position of the guide groove, the trigger key touches the first trigger point, and the processor drives the motor to rotate forward; when the push button slides backward to the rearmost position of the guide groove, the trigger key touches the third trigger point, and the processor drives the motor to rotate in the reverse direction.
[0009] The handle body is provided with a mounting groove open toward the bottom, and also includes a support bracket, which is installed in the mounting groove by screws; the support bracket is provided with a first receiving groove, and a first lower positioning groove and a second lower positioning groove are respectively provided at both ends of the first receiving groove, and the first lower positioning groove and the second lower positioning groove are both connected to the first receiving groove; a first upper positioning groove is provided in the handle body, and the first upper positioning groove is positioned opposite to the first lower positioning groove; the middle part of the worm shaft is installed in the first receiving groove, one end of the worm shaft is sleeved in the positioning groove formed by combining the first upper positioning groove and the first lower positioning groove, and the other end of the worm shaft is sleeved in the second lower positioning groove; the support bracket located on the opposite sides of the first receiving groove is symmetrically provided with a pair of support plates, and the two support plates are symmetrically provided with a pair of positioning holes, and a fixed shaft is installed in the positioning holes, and the turbine is installed on the fixed shaft; the inner end of the slider slides in the space between the two support plates.
[0010] A fourth trigger point and a fifth trigger point are provided at the rear portion of the bottom side of the push button, and both the fourth trigger point and the fifth trigger point are connected to the processor; the fourth trigger point is located on the front side, and the fifth trigger point is located on the rear side; a protrusion is provided at the rear portion of the inner end of the slider, and the protrusion is located and moves in the area between the fourth trigger point and the fifth trigger point; when the protrusion touches the fourth trigger point or the fifth trigger point, the processor drives the motor to stop rotating.
[0011] The top of the push button is provided with an anti-slip structure; the anti-slip structure is a plurality of raised portions, and the plurality of raised portions are evenly distributed in rows and columns on the top of the push button.
[0012] There are three second racks, and the slider is evenly provided with three slots for the second racks to insert; the length of the second rack extending along the circumference of the turbine is greater than the length of the first rack extending along the circumference of the turbine.
[0013] The trigger keys are provided on both sides of the rear end of the lower part of the push button, and the first trigger point, the second trigger point and the third trigger point are provided on both sides of the handle body. The trigger keys can be moved to touch the three trigger points on the same side respectively.
[0014] The slider includes a slider body and a tongue arranged at the front end of the slider body, and the tongue locks or releases the ear seat as the slider slides; the lower part of the front end of the handle body protrudes toward the front side to form a step, and the slider slides backward, and the structure at the connection between the tongue and the slider body is embedded in the range of the step, and the tongue is close to the front end surface of the slider body.
[0015] Compared with the existing technology, the advantages of the present invention are: the handle drives the electric drive device through the push button, and converts the rotational power into the power of the slider through the power transmission structure, thereby realizing the automatic extension and retraction of the slider, and realizing the detachable installation of the handle body and the ear seat, so that the handle body is fixed and stable; the device has a simple structure, is easy to disassemble and assemble, can be detached and stored, and saves storage space. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the structure decomposition of an embodiment of the utility model;
[0017] Figure 2 A perspective view of an embodiment of the present utility model;
[0018] Figure 3 This is a cross-sectional view taken along the longitudinal direction when the push button of the embodiment of the utility model is in the middle position;
[0019] Figure 4 This is a three-dimensional view cut along the longitudinal direction when the push button of the embodiment of the utility model is in the middle position;
[0020] Figure 5 This is a three-dimensional cross-sectional view of the handle body of the embodiment of the utility model cut along the longitudinal direction;
[0021] Figure 6 This is a sectional view of the handle body of the embodiment of the utility model taken along the longitudinal direction;
[0022] Figure 7 This is a three-dimensional diagram of the handle body of an embodiment of the present utility model;
[0023] Figure 8 This is a three-dimensional view of the lower side of the handle body of the embodiment of the utility model;
[0024] Figure 9 This is a bottom view of the handle body of an embodiment of the present utility model;
[0025] Figure 10This is a cross-sectional view of the support frame according to an embodiment of the utility model cut along the longitudinal direction;
[0026] Figure 11 A three-dimensional diagram of a support frame according to an embodiment of the present invention;
[0027] Figure 12 This is a schematic diagram of the structure of the power transmission structure and the electric drive device of the embodiment of the utility model when they are assembled on the support frame;
[0028] Figure 13 This is a perspective view of the power transmission structure and electric drive device of the embodiment of the utility model when assembled on the support frame;
[0029] Figure 14 This is a schematic diagram of the structure of the power transmission structure and the motor in accordance with an embodiment of the present utility model;
[0030] Figure 15 This is a schematic diagram of the structure of the power transmission structure, slider and motor in accordance with an embodiment of the present utility model;
[0031] Figure 16 This is a longitudinally sectioned front view of the embodiment of the utility model in a state where the ejection is stopped;
[0032] Figure 17 for Figure 16 A partial enlarged view of point A in the middle;
[0033] Figure 18 This is a three-dimensional view of the embodiment of the utility model cut along the longitudinal direction when the push-out stop state is in progress;
[0034] Figure 19 This is a longitudinally sectioned front view of the embodiment of the utility model in a tightening stop state;
[0035] Figure 20 for Figure 19 A partial enlarged view of point B in the middle;
[0036] Figure 21 This is a three-dimensional view of the embodiment of the utility model cut along the longitudinal direction when it is in a tightening stop state;
[0037] Figure 22 This is a schematic diagram of the structural relationship between the slider and the trigger point when the push button is in the middle position and stopped state according to the embodiment of the utility model;
[0038] Figure 23 This is a schematic diagram of the structural relationship between the slider and the trigger point when the push button is in the pushed-out state according to an embodiment of the present invention;
[0039] Figure 24 This is a schematic diagram of the structural relationship between the slider and the trigger point when the push button is in a tightened state according to an embodiment of the present invention.
[0040] The meanings of the reference numerals in the figure are as follows: 1. handle body; 11. slide groove; 12. guide groove; 13. mounting groove; 14. first upper positioning groove; 15. step position; 16. hanging hole; 17. recessed position; 18. second upper positioning groove; 2. slider; 21. raised block; 22. slot; 3. push button; 31. fourth trigger point; 32. fifth trigger point; 33. anti-slip structure; 34. trigger key; 35. through groove; 4. worm shaft; 41. first gear; 42. worm Rotary gear; 5. Turbine; 51. First rack; 52. Second rack; 61. Motor; 62. Second gear; 63. First trigger point; 64. Second trigger point; 65. Third trigger point; 7. Support frame; 71. First receiving slot; 72. First lower positioning slot; 73. Second lower positioning slot; 74. Support plate; 75. Positioning hole; 76. Fixed shaft; 77. Second receiving slot; 78. Third receiving slot; 81. Battery; 82. Spring; 9. Screw. DETAILED DESCRIPTION
[0041] The present invention will be described in further detail below with reference to the accompanying drawings and specific implementations.
[0042] Example
[0043] See Figures 1 to 24 It is an electric detachable handle that cooperates with the pot body, including a handle body 1, in which a slider 2, a push button 3, a power transmission structure and an electric drive device are installed; an ear seat is installed on the side wall of the pot body, and the handle body 1 is provided with a slide groove 11, in which the slider 2 is inserted and can slide along the slide groove 11; the input end of the power transmission structure is connected to the electric drive device, and the output end of the power transmission structure is connected to the inner end of the slider 2 and drives the slider 2 to slide along the slide groove 11, and the outer end of the slider 2 can movably lock or release the ear seat; the push button 3 is connected to the electric drive device.
[0044] The electric drive device provides power to the power transmission structure, so that it converts the rotational force into the sliding power of the slider 2. The slider 2 can movably lock or release the ear seat to realize the detachable installation function of the handle body 1; the push button 3 is used to control the operation of the electric drive device, and the slide groove 11 provides a sliding channel for the slider 2.
[0045] The power transmission structure includes a worm shaft 4 and a turbine 5. A circle of first gear 41 is provided at one end of the worm shaft 4, and the first gear 41 engages with the electric drive device; the turbine 5 is provided with two partitioned racks, namely a first rack 51 and a second rack 52. A plurality of first racks 51 are evenly arranged on one end of the outer surface of the turbine 5, and a plurality of second racks 52 are evenly arranged on the other end of the outer surface of the turbine 5. The first rack 51 engages with the spiral teeth 42 of the worm shaft 4, and the second rack 52 engages with the inner end of the slider 2 and drives the slider 2 forward or backward.
[0046] The electric drive device includes an electric motor 61, a battery 81 for powering the electric motor 61, and a processor for controlling the electric motor 61; the electric motor 61 and the battery 81 are connected to the processor, and the processor is connected to the push button 3; the output shaft of the electric motor 61 is equipped with a second gear 62, and the second gear 62 is engaged with the first gear 41.
[0047] Three trigger points connected to the processor are provided on the handle body 1, namely the first trigger point 63, the second trigger point 64 and the third trigger point 65; the handle body 1 is provided with a guide groove 12, the upper part of the push button 3 is arranged in the guide groove 12 and can slide along the guide groove 12, and a trigger key 34 is provided at the rear end of the lower part of the push button 3, and the trigger key 34 can switchably touch the three trigger points respectively as the push button 3 slides; when the push button 3 is located in the middle position of the guide groove 12, the trigger key 34 touches the second trigger point 64, and the processor drives the motor 61 to stop rotating; when the push button 3 slides forward to the frontmost position of the guide groove 12, the trigger key 34 touches the first trigger point 63, and the processor drives the motor 61 to rotate forward; when the push button 3 slides backward to the rearmost position of the guide groove 12, the trigger key 34 touches the third trigger point 65, and the processor drives the motor 61 to rotate in the reverse direction. In this embodiment, the push button 3 within the trigger key 34 is provided with a through groove 35 that penetrates the upper and lower side surfaces and the outer side of the lower part of the push button 3. When the push button 3 slides, the through groove 35 does not touch any trigger point, thereby avoiding accidental contact with the trigger point and causing abnormal operation of the motor 61.
[0048] The handle body 1 is provided with a mounting groove 13 open downwards, and also includes a support frame 7, which is installed in the mounting groove 13 by means of screws 9; the support frame 7 is provided with a first receiving groove 71, and a first lower positioning groove 72 and a second lower positioning groove 73 are respectively provided at both ends of the first receiving groove 71, and the first lower positioning groove 72 and the second lower positioning groove 73 are both connected to the first receiving groove 71; a first upper positioning groove 14 and a second upper positioning groove 18 are provided in the handle body 1, and the first upper positioning groove 14 is opposite to the first lower positioning groove 72; the worm The middle part of the shaft 4 is installed in the first receiving groove 71, one end of the worm shaft 4 is sleeved in the positioning groove formed by combining the first upper positioning groove 14 and the first lower positioning groove 72, and the other end of the worm shaft 4 is sleeved in the second lower positioning groove 73; the support frame 7 located on the opposite sides of the first receiving groove 71 is symmetrically provided with a pair of support plates 74, and the two support plates 74 are symmetrically provided with a pair of positioning holes 75, and a fixed shaft 76 is installed in the positioning hole 75, and the turbine 5 is installed on the fixed shaft 76; the inner end of the slider 2 slides in the space between the two support plates 74.
[0049] The push button 3 has a fourth trigger point 31 and a fifth trigger point 32 at the rear bottom side, both of which are connected to the processor. The fourth trigger point 31 is located at the front, and the fifth trigger point 32 is located at the rear. A protrusion 21 is located at the rear inner end of the slider 2 and moves within the area between the fourth and fifth trigger points 31 and 32. When the protrusion 21 contacts the fourth or fifth trigger point 31 or 32, the processor stops the motor 61. In this embodiment, the processor can be a central processing unit (CPU), other general-purpose processors, digital signal processors (DSP), application-specific integrated circuits (ASIC), off-the-shelf programmable gate arrays (FPGA), other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. The general-purpose processor can be a microprocessor or any conventional processor. The processor is the control center of the device, connecting various components using various interfaces and circuits.
[0050] An anti-slip structure 33 is provided on the top of the push button 3 .
[0051] The anti-slip structure 33 is a plurality of raised portions, which are evenly distributed in rows and columns on the top of the push button 3 .
[0052] There are three second racks 52 , and the slider 2 is evenly provided with three slots 22 for the second racks 52 to penetrate. The length of the second racks 52 extending along the circumference of the turbine 5 is greater than the length of the first racks 51 extending along the circumference of the turbine 5 .
[0053] Trigger keys 34 are provided on both sides of the rear end of the lower part of the push button 3, and first trigger points 63, second trigger points 64 and third trigger points 65 are provided on both sides of the handle body 1. The trigger key 34 can move to touch the three trigger points on the same side respectively.
[0054] The slider 2 includes a slider body 2 and a tongue arranged at the front end of the slider body 2. The tongue locks or releases the ear seat as the slider 2 slides. The lower front end of the handle body 1 protrudes toward the front side to form a step 15. When the slider 2 slides backward, the structure at the connection between the tongue and the slider body 2 is embedded in the range of the step 15, and the tongue is close to the front end surface of the slider body 2.
[0055] In this embodiment, the support frame 7 is provided with a second receiving groove 77 and a third receiving groove 78. The motor 61 is installed in the second receiving groove 77. The second upper positioning groove 18 of the handle body 1 is sleeved on the top of the motor 61 and cooperates with the second receiving groove 77 to stably fix the motor 61. The third receiving groove 78 is a compartment for the battery 81. The two ends of the third receiving groove 78 are respectively provided with springs 82 used as positive and negative poles. The battery 81 is installed in the third receiving groove 78. The two poles of the battery 81 are respectively clamped with the springs 82 of the corresponding electrodes. In this embodiment, a hanging hole 16 is provided at the rear end of the handle body 1, and the handle body 1 can be hung on a hook in the kitchen. The guide groove 12 is connected to the mounting groove 13, and the mounting groove 13 is connected to the slide groove 11. The rear end of the handle body 1 is recessed inward to form a recess 17.
[0056] Assembly of this embodiment:
[0057] 1) Place the push button 3 below the handle body 1, insert the push button 3 into the mounting groove 13 of the handle body 1 from bottom to top, and sleeve the upper part of the push button 3 into the guide groove 12;
[0058] 2) Place the slider 2 in front of the head of the handle body 1, and insert the tail of the slider 2 into the slide groove 11 set in the handle body 1 from front to back;
[0059] 3) Place the worm shaft 4 on top of the support frame 7, and place the worm shaft 4 into the first receiving groove 71 from top to bottom, with both ends of the worm shaft 4 inserted into the first lower positioning groove 72 and the second lower positioning groove 73 respectively;
[0060] 4) Place the turbine 5 on top of the support frame 7 and move it from top to bottom until it is concentric with the positioning hole 75 of the support plate 74. Ensure that the first rack 51 of the turbine 5 is properly engaged with the worm shaft 4. At the same time, keep the second rack 52 of the turbine 5 in a vertically upward position. Then, insert the fixing shaft 76 into the positioning hole 75 and connect the support plate 74 of the support frame 7 to the turbine 5.
[0061] 5) Insert the second gear 62 onto the output shaft of the motor 61 from front to back;
[0062] 6) Place the motor 61 on top of the support frame 7, and from top to bottom, place the motor 61 into the second receiving groove 77 of the support frame 7, and ensure that the second gear 62 is properly engaged with the first gear 41 at the rear end of the worm shaft 4;
[0063] 7) Place the spring 82 on top of the support frame 7, and position the spring 82 at both ends of the third receiving groove 78 from top to bottom;
[0064] 8) Place the battery 81 on top of the support frame 7, and from top to bottom, place the battery 81 into the third receiving slot 78 of the support frame 7 and clamp it with the spring 82;
[0065] 9) Place the support frame 7 under the handle body 1, and push the support frame 7 into the mounting slot 13 in the middle of the handle body 1 from top to bottom. At the same time, make the second rack 52 of the turbine 5 properly engage with the slot 22 of the slider 2, and then use two screws 9 to lock the support frame 7 and the handle body 1.
[0066] The working principle of this embodiment is as follows:
[0067] 1) Opening of slider 2 (origin state → push-open state)
[0068] Push the push button 3 forward from the origin state to the front end vertex of the guide groove 12, the trigger key 34 of the push button 3 touches the first trigger point 63, the processor controls the motor 61 to be energized in the forward direction, the motor 61 starts to rotate forward, and driven by the second gear 62 meshing with the first gear 41, the worm shaft 4 starts to rotate counterclockwise, and the worm shaft 4 drives the turbine 5 to rotate counterclockwise, and the tongue of the slider 2 is pushed forward. When it is pushed to the set top position, the protrusion 21 of the slider 2 touches the fourth trigger point 31 on the bottom side of the push button 3, the processor controls the motor 61 to enter the power-off state, and the tongue of the slider 2 stops being pushed forward.
[0069] 2) Closing of slider 2 (open state → closed state)
[0070] Pull the push button 3 from the front vertex of the guide slot 12 to the rear vertex of the guide slot 12. The trigger key 34 of the push button 3 touches the third trigger point 65. The processor controls the motor 61 to reverse power. The motor 61 starts to reverse. Driven by the second gear 62 engaging the first gear 41, the worm shaft 4 starts to rotate clockwise.
[0071] The tongue of the slider 2 is tightened backward. When it is tightened to the set top position, the protrusion 21 of the slider 2 touches the fifth trigger point 32 on the bottom side of the push button 3. The processor controls the motor 61 to enter the power-off state, and the tongue of the slider 2 stops tightening backward.
[0072] In this embodiment, no matter the push button 3 is in the origin state, the exit stop state or the tightening stop state, in the previous dynamic process, the three slots 22 at the rear end of the slider 2 are successively engaged with the second rack 52.
[0073] The above detailed description is a specific description of a feasible embodiment of the present invention. The embodiment is not intended to limit the patent scope of the present invention. Any equivalent implementation or modification that does not depart from the present invention should be included in the patent scope of this case.
Claims
1. An electric detachable handle, matched with a pot body, characterized by: The invention comprises a handle body, wherein a slider, a push button, a power transmission structure and an electric drive device are installed in the handle body; an ear seat is installed on the side wall of the pot body, and a slide groove is formed in the handle body, and the slider is inserted into the slide groove and can slide along the slide groove; The input end of the power transmission structure is connected to the electric drive device, the output end of the power transmission structure is connected to the inner end of the slider and drives the slider to slide along the slide groove, and the outer end of the slider can movably lock or release the ear seat; the push button is connected to the electric drive device.
2. The electric detachable handle according to claim 1, characterized in that: The power transmission structure includes a worm shaft and a turbine. A first gear is provided at one end of the worm shaft, and the first gear engages with the electric drive device. The turbine is provided with two partitioned racks, namely a first rack and a second rack. A plurality of first racks are evenly arranged at one end of the outer surface of the turbine, and a plurality of second racks are evenly arranged at the other end of the outer surface of the turbine. The first rack engages with the helical teeth of the worm shaft, and the second rack engages with the inner end of the slider and drives the slider forward or backward.
3. The electric detachable handle according to claim 2, characterized in that: The electric drive device includes an electric motor, a battery for powering the electric motor, and a processor for controlling the electric motor; the electric motor and the battery are connected to the processor, and the processor is connected to the push button; the output shaft of the electric motor is equipped with a second gear, and the second gear is engaged with the first gear.
4. The electric detachable handle according to claim 3, characterized in that: Three trigger points connected to the processor are provided on the handle body, which are the first trigger point, the second trigger point and the third trigger point; the handle body is provided with a guide groove, the upper part of the push button is arranged in the guide groove and can slide along the guide groove, and a trigger key is provided at the rear end of the lower part of the push button, and the trigger key can switchably touch the three trigger points respectively as the push button slides; when the push button is located in the middle position of the guide groove, the trigger key touches the second trigger point, and the processor drives the motor to stop rotating; when the push button slides forward to the frontmost position of the guide groove, the trigger key touches the first trigger point, and the processor drives the motor to rotate forward; when the push button slides backward to the rearmost position of the guide groove, the trigger key touches the third trigger point, and the processor drives the motor to rotate in the reverse direction.
5. The electric detachable handle according to claim 2, characterized in that: The handle body is provided with a mounting groove open toward the bottom, and also includes a support bracket, which is installed in the mounting groove by screws; the support bracket is provided with a first receiving groove, and a first lower positioning groove and a second lower positioning groove are respectively provided at both ends of the first receiving groove, and the first lower positioning groove and the second lower positioning groove are both connected to the first receiving groove; a first upper positioning groove is provided in the handle body, and the first upper positioning groove is positioned opposite to the first lower positioning groove; the middle part of the worm shaft is installed in the first receiving groove, one end of the worm shaft is sleeved in the positioning groove formed by combining the first upper positioning groove and the first lower positioning groove, and the other end of the worm shaft is sleeved in the second lower positioning groove; the support bracket located on the opposite sides of the first receiving groove is symmetrically provided with a pair of support plates, and the two support plates are symmetrically provided with a pair of positioning holes, and a fixed shaft is installed in the positioning holes, and the turbine is installed on the fixed shaft; the inner end of the slider slides in the space between the two support plates.
6. The electric detachable handle according to claim 3, characterized in that: A fourth trigger point and a fifth trigger point are provided at the rear portion of the bottom side of the push button, and both the fourth trigger point and the fifth trigger point are connected to the processor; the fourth trigger point is located on the front side, and the fifth trigger point is located on the rear side; a protrusion is provided at the rear portion of the inner end of the slider, and the protrusion is located and moves in the area between the fourth trigger point and the fifth trigger point; when the protrusion touches the fourth trigger point or the fifth trigger point, the processor drives the motor to stop rotating.
7. The electric detachable handle according to claim 1, characterized in that: The top of the push button is provided with an anti-slip structure; the anti-slip structure is a plurality of raised portions, and the plurality of raised portions are evenly distributed in rows and columns on the top of the push button.
8. The electric detachable handle according to claim 2, characterized in that: There are three second racks, and the slider is evenly provided with three slots for the second racks to insert; the length of the second rack extending along the circumference of the turbine is greater than the length of the first rack extending along the circumference of the turbine.
9. The electric detachable handle according to claim 4, characterized in that: The trigger keys are provided on both sides of the rear end of the lower part of the push button, and the first trigger point, the second trigger point and the third trigger point are provided on both sides of the handle body. The trigger keys can be moved to touch the three trigger points on the same side respectively.
10. The electric detachable handle according to claim 1, characterized in that: The slider includes a slider body and a tongue arranged at the front end of the slider body, and the tongue locks or releases the ear seat as the slider slides; the lower part of the front end of the handle body protrudes toward the front side to form a step, and the slider slides backward, and the structure at the connection between the tongue and the slider body is embedded in the range of the step, and the tongue is close to the front end surface of the slider body.