Induction type door handle
By designing induction door handles, the automatic storage of handles is achieved using sensors and power components, the safety hazards existing in existing door handles are solved and the safety of the door is improved.
Patent Information
- Application Number
- CN202421729366.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-22
AI Technical Summary
There are safety risks for existing door handles, especially children may be injured by pulling the door handles naughtyly or touching the door handles when they fall.
An induction door handle is designed to transmit signals to the power component through the sensor. The power component drives the handle to move in the placement groove. When the handle moves outside, it squeezes the sealing plate to rotate, which drives the torsion spring to rotate, realizing the automatic storage of the handle and avoids illegal operation or injury from children.
It effectively avoids the situation where children pull the door handle by naughtyly, and at the same time avoids the risk of children getting injured when they hit the door handle when they fall, improving the safety of the door handle.
Smart Images

Figure CN222863078U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of induction type door handles, in particular to an induction type door handle. Background Art
[0002] The main function of the door handle is to facilitate people to open and close the door. Its design is varied, from simple and practical styles to gorgeous and exquisite styles, meeting the aesthetic and functional needs of different users. The materials of door handles are also very rich. In addition to the stainless steel, wood and glass mentioned above, there are also copper, aluminum, zinc alloy, etc. Different materials have different characteristics. For example, copper door handles have a heavy texture, while aluminum door handles are light and rust-proof.
[0003] Common door handles are usually exposed to the outside world. Naughty children can easily pull the door handle to open the cabinet and rummage through the things inside the cabinet. Generally, the corners of door handles are sharp. When naughty children accidentally fall, they are likely to touch the door handle and get injured, which poses a certain safety hazard. In view of this, we propose an induction door handle. Utility Model Content
[0004] The purpose of the utility model is to provide an induction door handle to solve the problems raised in the above background technology.
[0005] In view of this, the utility model provides an induction door handle, comprising:
[0006] A door body, wherein a placement groove is provided on the front side of the door body, a handle is slidably installed in the placement groove, a circular groove is provided on the top and bottom of the placement groove, and the two circular grooves are both located on one side of the handle, a sealing plate is rotatably installed between the two circular grooves and in the placement groove, and torsion springs are sleeved at the upper and lower ends of the sealing plate and are respectively located in the two circular grooves;
[0007] A power assembly, which is located in the door body and is used to drive the handle to move;
[0008] The sensor is fixedly mounted on the front side of the door body and located above the placement slot. A groove is provided on the rear side of the door body and is located on one side of the sensor. A battery is inserted and installed in the groove. A revolving door is rotatably installed in the groove and located on one side of the battery.
[0009] A limiting component is located inside the revolving door and is used to limit the revolving door.
[0010] In the technical solution, through the set sensor, people can touch the sensor with their hands, and the sensor will transmit the signal to the power component, which will drive the handle to move, so that the handle moves outward in the placement groove. At the same time, the outward movement of the handle will squeeze the sealing plate, causing the sealing plate to rotate, and the sealing plate will rotate outward. At the same time, the rotation of the sealing plate will also drive the two torsion springs to twist until one side of the handle extends from the placement groove to the outside. At this time, the person can pull the handle and open the door body. When the person closes the door body, he can touch the sensor again with his hand. The sensor transmits the signal to the power component, which drives the handle to move, so that the handle moves inward in the placement slot until the handle completely enters the placement slot. At the same time, under the action of the rebound force of the two torsion springs, the two torsion springs also drive the sealing plate to rotate inward until the sealing plate completely seals the placement slot, ensuring that when the door body is closed, the handle can be automatically retracted into the placement slot, thereby preventing children from opening the door body in a naughty way. At the same time, the handle is retracted into the placement slot, which can also prevent children from touching the handle and getting injured when they fall, thereby avoiding safety hazards;
[0011] Through the setting of the limit assembly, the limit assembly can release the limit of the revolving door, and then the personnel can rotate the revolving door to open it, pull out the battery from the groove, replace it with a new battery, and rotate the revolving door again. When the revolving door completely seals the groove, the limit assembly can limit the revolving door to ensure that the dead battery can be easily replaced by the personnel. The operation is simple and does not require the use of tools, which is quite convenient.
[0012] In the above technical solution, further, the power assembly includes:
[0013] A rectangular groove is provided in the door body and is located on one side of the placement groove, a rectangular plate is fixedly installed on one side of the handle and is located in the rectangular groove, an installation groove is provided in the door body and is located on one side of the rectangular groove, a micro motor is fixedly installed in the installation groove, an output end of the micro motor passes through one side of the installation groove and extends into the rectangular groove and is fixedly installed with a threaded rod, one end of the threaded rod passes through the rectangular plate.
[0014] In this technical solution, the micro motor is started, and the output shaft of the micro motor will drive the threaded rod to rotate. Under the action of the thread, the rotation of the threaded rod will drive the rectangular plate to move in the rectangular groove, and the movement of the rectangular plate will drive the handle to move, so that the handle moves outward in the placement groove. At the same time, the outward movement of the handle will squeeze the sealing plate, causing the sealing plate to rotate. The sealing plate will rotate outward, and the rotation of the sealing plate will also drive the two torsion springs to twist until one side of the handle extends from the placement groove to the outside. At this time, the person can pull the handle and open the door body.
[0015] In the above technical solution, further, the rectangular plate is slidably connected to the rectangular groove, the output shaft of the micro motor is rotationally connected to the door body and the rectangular groove, the threaded rod is rotationally connected to the rectangular groove, and the threaded rod is threadedly connected to the rectangular plate.
[0016] In this technical solution, it is ensured that the rectangular plate can slide normally in the rectangular groove, that the output shaft of the micro motor can rotate normally in the door body and the rectangular groove, that the threaded rod can rotate normally in the rectangular groove, and that the rotation of the threaded rod can drive the threaded rod to move.
[0017] In the above technical solution, further, the limit assembly includes:
[0018] A sliding groove is provided in the revolving door, a limit block is slidably installed in the sliding groove, one end of the limit block passes through one side of the sliding groove and extends into the door body, one side of the limit block extends to the outside, and a spring fixed to the limit block is fixedly installed on the inner wall of the sliding groove.
[0019] When the revolving door completely seals the groove, under the action of the spring rebound force, the spring will squeeze the limit block to move until one end of the limit block is inserted into the door body. At this time, the limit block can limit the revolving door, ensuring that it is convenient for personnel to replace the dead battery. The operation is simple and does not require tools, which is convenient.
[0020] In the above technical solution, further, one end of the limit block is plugged into and matched with the door body, and one end of the limit block is in an inclined structure.
[0021] In the technical solution, it is ensured that one end of the limit block can be inserted into the door body, and it is ensured that movement occurs when one end of the limit block squeezes the door body.
[0022] In the above technical solution, further, the two ends of the torsion spring are tightly welded to the sealing plate and the inner wall of the circular groove respectively, and the sealing plate is rotatably connected to the placement groove.
[0023] In this technical solution, the structural stability of the torsion spring is ensured, and the sealing plate is ensured to be able to rotate normally in the placement groove.
[0024] In the above technical solution, further, the sensor is electrically connected to the battery, the micro motor is electrically connected to the battery, and the sensor is electrically connected to the micro motor.
[0025] In this technical solution, it is ensured that the battery can supply power to the sensor and the micro motor, and that the sensor can transmit the signal to the micro motor.
[0026] The beneficial effects of the utility model are:
[0027] 1. The induction door handle, through the set sensor, people can touch the sensor with their hands, the sensor will transmit the signal to the power component, the power component will drive the handle to move, so that the handle moves outward in the placement groove, and at the same time, the outward movement of the handle will squeeze the sealing plate, so that the sealing plate rotates, and the sealing plate will rotate outward. At the same time, the rotation of the sealing plate will also drive the two torsion springs to twist until one side of the handle extends from the placement groove to the outside. At this time, the person can pull the handle and open the door body. When the person closes the door body, he can touch the sensor again with his hand. The sensor will transmit the signal to the power component, which will drive the handle to move, so that the handle moves inward in the placement slot until the handle is completely in the placement slot. At the same time, under the action of the rebound force of the two torsion springs, the two torsion springs will also drive the sealing plate to rotate inward until the sealing plate completely seals the placement slot, ensuring that when the door body is closed, the handle can be automatically retracted into the placement slot, thereby preventing children from opening the door body mischievously. At the same time, the handle is retracted into the placement slot to prevent children from touching the handle and getting injured when they fall, thereby avoiding safety hazards.
[0028] 2. The induction door handle can release the limit of the revolving door through the limit component. Then the staff can rotate the revolving door to open it, pull out the battery from the groove, replace it with a new battery, and rotate the revolving door again. When the revolving door completely seals the groove, the limit component can limit the revolving door to ensure that the dead battery can be easily replaced by the staff. The operation is simple and does not require the use of tools, which is relatively convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 This is one of the overall structural diagrams of the utility model;
[0030] Figure 2 This is the second schematic diagram of the overall structure of the utility model;
[0031] Figure 3 It is a schematic diagram of the detailed internal structure of the door body of the utility model;
[0032] Figure 4 It is a schematic diagram of the cross-sectional structure of the middle door body of the utility model;
[0033] Figure 5 It is a schematic diagram of the regional structure of the door body of the utility model;
[0034] Figure 6 For this utility model Figure 5 The enlarged structural diagram at A in the middle;
[0035] Figure 7 It is a partial structural schematic diagram of the door body of the utility model;
[0036] Figure 8 For this utility model Figure 7 The enlarged structural diagram at B in the middle;
[0037] Fig. 9 It is a schematic diagram of the detailed internal structure of the revolving door in the utility model.
[0038] The symbols in the figure are:
[0039] 1. Door body; 2. Placement slot; 3. Handle; 4. Sealing plate; 5. Circular slot; 6. Torsion spring; 7. Rectangular slot; 8. Rectangular plate; 9. Threaded rod; 10. Mounting slot; 11. Micro motor; 12. Sensor; 13. Groove; 14. Battery; 15. Revolving door; 16. Sliding slot; 17. Limit block; 18. Spring. DETAILED DESCRIPTION
[0040] The following will be combined with the drawings in the embodiments of the present application to clearly describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments in the present application belong to the scope of protection of this application.
[0041] In the description of the present application, it should be noted that the terms used herein are only for describing specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. For ease of description, the sizes of the various parts shown in the drawings are not drawn according to the actual proportional relationship. The technology, methods and equipment known to ordinary technicians in the relevant field may not be discussed in detail, but in appropriate cases, the technology, methods and equipment should be regarded as part of the authorization specification. In all examples shown and discussed here, any specific value should be interpreted as merely exemplary, rather than as a limitation. Therefore, other examples of the exemplary embodiments may have different values. It should be noted that similar numbers and letters represent similar items in the following drawings, so once an item is defined in one drawing, it does not need to be further discussed in subsequent drawings.
[0042] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the data used in this way can be interchangeable under appropriate circumstances, so that the embodiments of the present application can be implemented in an order other than those illustrated or described here, and the objects distinguished by "first", "second", etc. are generally of one type, and the number of objects is not limited. For example, the first object can be one or more. In addition, "and / or" in the specification and claims represents at least one of the connected objects, and the character " / " generally indicates that the objects associated with each other are in an "or" relationship.
[0043] It should be noted that, in the description of the present application, the orientation or positional relationship indicated by terms such as "front, back, up, down, left, right", "lateral, vertical, perpendicular, horizontal" and "top, bottom" are usually based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description. Unless otherwise stated, these orientation words do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the scope of protection of the present application; the orientation words "inside and outside" refer to the inside and outside relative to the contour of each component itself.
[0044] It should be noted that, in the present application, the terms "comprise", "include" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the sentence "comprises one..." does not exclude the presence of other identical elements in the process, method, article or device including the element. In addition, it should be noted that the scope of the method and device in the embodiment of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in reverse order according to the functions involved, for example, the described method may be performed in an order different from that described, and various steps may also be added, omitted, or combined. In addition, the features described with reference to certain examples may be combined in other examples.
[0045] Embodiment 1:
[0046] See also Figure 1 - Fig. 9 As shown, this embodiment provides an inductive door handle, including:
[0047] A door body 1, a placement groove 2 is provided on the front side of the door body 1, a handle 3 is slidably installed in the placement groove 2, a circular groove 5 is provided on the top and bottom of the placement groove 2, and the two circular grooves 5 are both located on one side of the handle 3, a sealing plate 4 is rotatably installed between the two circular grooves 5 and located in the placement groove 2, and torsion springs 6 are sleeved at the upper and lower ends of the sealing plate 4 and are respectively located in the two circular grooves 5;
[0048] A power assembly, which is located in the door body 1 and is used to drive the handle 3 to move;
[0049] The sensor 12 is fixedly mounted on the front side of the door body 1 and is located above the placement groove 2. A groove 13 is opened on the rear side of the door body 1 and is located on one side of the sensor 12. A battery 14 is inserted and installed in the groove 13. A revolving door 15 is rotatably installed in the groove 13 and is located on one side of the battery 14.
[0050] The limiting component is located inside the revolving door 15 and is used to limit the revolving door 15 .
[0051] Among them, through the set sensor 12, the person can touch the sensor 12 with his hand, the sensor 12 will transmit the signal to the power component, the power component will drive the handle 3 to move, so that the handle 3 moves outward in the placement groove 2, and at the same time, the outward movement of the handle 3 will squeeze the sealing plate 4, so that the sealing plate 4 rotates, and the sealing plate 4 rotates outward. At the same time, the rotation of the sealing plate 4 will also drive the two torsion springs 6 to twist until one side of the handle 3 extends from the placement groove 2 to the outside. At this time, the person can pull the handle 3 and open the door body 1. When the person closes the door body 1, he can touch the sensor 12 again with his hand. , the sensor 12 will transmit the signal to the power component, and the power component will drive the handle 3 to move, so that the handle 3 moves inward in the placement groove 2 until the handle 3 completely enters the placement groove 2. At the same time, under the action of the rebound force of the two torsion springs 6, the two torsion springs 6 will also drive the sealing plate 4 to rotate inward until the sealing plate 4 completely seals the placement groove 2, ensuring that when the door body 1 is closed, the handle 3 can be automatically retracted into the placement groove 2, thereby preventing children from mischievously opening the door body 1. At the same time, the handle 3 is retracted into the placement groove 2, which can also prevent children from touching the handle 3 and getting injured when they fall, thereby avoiding safety hazards;
[0052] By means of the setting of the limiting assembly, the limiting assembly can release the limit on the revolving door 15, and then the personnel can rotate the revolving door 15 to open it, and can pull out the battery 14 from the groove 13, and replace it with a new battery 14, and rotate the revolving door 15 again. When the revolving door 15 completely seals the groove 13, the limiting assembly can limit the revolving door 15, ensuring that the personnel can easily replace the dead battery 14. The operation is simple and does not require the use of tools, which is quite convenient.
[0053] Embodiment 2:
[0054] This embodiment provides an inductive door handle, which, in addition to the technical solutions of the above embodiments, also has the following technical features, and the power assembly includes:
[0055] A rectangular groove 7 is provided in the door body 1 and is located on one side of the placement groove 2. A rectangular plate 8 is fixedly installed on one side of the handle 3 and located in the rectangular groove 7. A mounting groove 10 is provided in the door body 1 and is located on one side of the rectangular groove 7. A micro motor 11 is fixedly installed in the mounting groove 10. The output end of the micro motor 11 passes through one side of the mounting groove 10 and extends into the rectangular groove 7 and is fixedly installed with a threaded rod 9. One end of the threaded rod 9 passes through the rectangular plate 8.
[0056] Among them, the micro motor 11 is started, and the output shaft of the micro motor 11 will drive the threaded rod 9 to rotate. Under the action of the thread, the rotation of the threaded rod 9 will drive the rectangular plate 8 to move in the rectangular groove 7. The movement of the rectangular plate 8 will drive the handle 3 to move, so that the handle 3 moves outward in the placement groove 2. At the same time, the outward movement of the handle 3 will squeeze the sealing plate 4, causing the sealing plate 4 to rotate. The sealing plate 4 will rotate outward. At the same time, the rotation of the sealing plate 4 will also drive the two torsion springs 6 to twist until one side of the handle 3 extends from the placement groove 2 to the outside. At this time, the person can pull the handle 3 and open the door body 1.
[0057] Embodiment 3:
[0058] The present embodiment provides an induction-type door handle, which, in addition to the technical solutions of the above-mentioned embodiments, also has the following technical features: the rectangular plate 8 is slidingly connected to the rectangular groove 7, the output shaft of the micro motor 11 is rotationally connected to the door body 1 and the rectangular groove 7, the threaded rod 9 is rotationally connected to the rectangular groove 7, and the threaded rod 9 is threadedly connected to the rectangular plate 8.
[0059] Among them, it is ensured that the rectangular plate 8 can slide normally in the rectangular groove 7, that the output shaft of the micro motor 11 can rotate normally in the door body 1 and the rectangular groove 7, that the threaded rod 9 can rotate normally in the rectangular groove 7, and that the rotation of the threaded rod 9 can drive the threaded rod 9 to move.
[0060] Embodiment 4:
[0061] This embodiment provides an inductive door handle, which, in addition to the technical solutions of the above embodiments, also has the following technical features, and the limit assembly includes:
[0062] A sliding groove 16 is provided in the revolving door 15, and a limit block 17 is slidably installed in the sliding groove 16. One end of the limit block 17 passes through one side of the sliding groove 16 and extends into the door body 1, and one side of the limit block 17 extends to the outside. A spring 18 fixed to the limit block 17 is fixedly installed on the inner wall of the sliding groove 16.
[0063] When used for a long time, the battery 14 may run out of power. At this time, the operator can move the limit block 17, which moves in the sliding groove 16 and squeezes the spring 18 to shrink until one end of the limit block 17 moves out of the door body 1. At this time, the limit block 17 can release the limit on the revolving door 15, and then the operator can rotate the revolving door 15 to open it. At this time, under the action of the rebound force of the spring 18, the spring 18 will squeeze the limit block 17 to reset, and the battery 14 can be pulled out of the groove 13, and a new battery 14 can be replaced, and the revolving door 15 can be rotated again. One end of the limit block 17 will be pressed on the door body 1, so that the limit block 17 moves in the sliding groove 16 and squeezes the spring 18 to shrink until one end of the limit block 17 completely enters the sliding groove 16. When the revolving door 15 completely seals the groove 13, under the action of the rebound force of the spring 18, the spring 18 will squeeze the limit block 17 to move until one end of the limit block 17 is inserted into the door body 1. At this time, the limit block 17 can limit the revolving door 15, ensuring that it is easy for personnel to replace the dead battery 14. The operation is simple and does not require the use of tools, which is relatively convenient.
[0064] Embodiment 5:
[0065] This embodiment provides an induction door handle, which, in addition to the technical solutions of the above embodiments, also has the following technical features: one end of the limit block 17 is plugged into the door body 1, and one end of the limit block 17 is in an inclined structure.
[0066] Among them, it is ensured that one end of the limiting block 17 can be inserted into the door body 1, and it is ensured that one end of the limiting block 17 will move when squeezing the door body 1.
[0067] Embodiment 6:
[0068] This embodiment provides an induction door handle, which, in addition to the technical solutions of the above-mentioned embodiments, also has the following technical features: the two ends of the torsion spring 6 are tightly welded to the sealing plate 4 and the inner wall of the circular groove 5, respectively, and the sealing plate 4 is rotatably connected to the placement groove 2.
[0069] The structure of the torsion spring 6 is ensured to be stable, so that the sealing plate 4 can rotate normally in the placement groove 2 .
[0070] Embodiment 7:
[0071] This embodiment provides an inductive door handle, which, in addition to the technical solutions of the above embodiments, also has the following technical features: the sensor 12 is electrically connected to the battery 14, the micro motor 11 is electrically connected to the battery 14, and the sensor 12 is electrically connected to the micro motor 11.
[0072] The storage battery 14 is ensured to supply power to the sensor 12 and the micro motor 11 , thereby ensuring that the sensor 12 can transmit signals to the micro motor 11 .
[0073] It is worth noting that the distance between the bottom of the sensor 12 and the ground is 1.2-1.3 m, which ensures that children can be prevented from accidentally touching the sensor 12.
[0074] Working principle: during use, when a person needs to use the handle 3 to open the door body 1, he can touch the sensor 12 with his hand, and the sensor 12 will transmit a signal to the micro motor 11, which will start the micro motor 11, and the output shaft of the micro motor 11 will drive the threaded rod 9 to rotate. Under the action of the thread, the rotation of the threaded rod 9 will drive the rectangular plate 8 to move in the rectangular groove 7, and the movement of the rectangular plate 8 will drive the handle 3 to move, so that the handle 3 moves outward in the placement groove 2. At the same time, the outward movement of the handle 3 will squeeze the sealing plate 4, so that the sealing plate 4 rotates, and the sealing plate 4 rotates outward. At the same time, the rotation of the sealing plate 4 will also drive the two torsion springs 6 to twist until one side of the handle 3 extends from the placement groove 2 to the outside. At this time, the person can pull the handle 3 to open the door body 1. When the person closes the door body 1, he can use his hand again When the sensor 12 is touched, the sensor 12 transmits a signal to the micro motor 11, the micro motor 11 starts, and the output shaft of the micro motor 11 drives the threaded rod 9 to rotate. Under the action of the thread, the rotation of the threaded rod 9 drives the rectangular plate 8 to move in the rectangular groove 7. The movement of the rectangular plate 8 drives the handle 3 to move, so that the handle 3 moves inward in the placement groove 2 until the handle 3 completely enters the placement groove 2. At the same time, under the action of the rebound force of the two torsion springs 6, the two torsion springs 6 also drive the sealing plate 4 to rotate inward until the sealing plate 4 completely seals the placement groove 2, ensuring that when the door body 1 is closed, the handle 3 can be automatically retracted into the placement groove 2, thereby preventing children from mischievously opening the door body 1. At the same time, the handle 3 is retracted into the placement groove 2, which can also prevent children from touching the handle 3 and getting injured when they fall, thereby avoiding safety hazards;
[0075] When used for a long time, the battery 14 will be out of power. At this time, the person can move the limit block 17, which moves in the sliding groove 16 and squeezes the spring 18 to shrink until one end of the limit block 17 moves out of the door body 1. At this time, the limit block 17 can release the limit on the revolving door 15, and then the person can rotate the revolving door 15 to open it. At this time, under the action of the rebound force of the spring 18, the spring 18 will squeeze the limit block 17 to reset, and the battery 14 can be pulled out of the groove 13, and a new battery 14 can be replaced, and the revolving door 15 can be rotated again. One end of the limit block 17 will be pressed on the door body 1, so that the limit block 17 moves in the sliding groove 16 and squeezes the spring 18 to shrink until one end of the limit block 17 completely enters the sliding groove 16. When the revolving door 15 completely seals the groove 13, under the action of the rebound force of the spring 18, the spring 18 will squeeze the limit block 17 to move until one end of the limit block 17 is inserted into the door body 1. At this time, the limit block 17 can limit the revolving door 15, ensuring that it is easy for personnel to replace the dead battery 14. The operation is simple and does not require the use of tools, which is relatively convenient.
[0076] The embodiments of the present application are described above in conjunction with the accompanying drawings. In the absence of conflict, the embodiments in the present application and the features in the embodiments can be combined with each other. The present application is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of the present application, ordinary technicians in this field can also make many forms without departing from the purpose of the present application and the scope of protection of the claims, all of which are within the protection of the present application.
Claims
1. An induction door handle, characterized in that: include: A door body (1), wherein a placement groove (2) is provided on the front side of the door body (1), a handle (3) is slidably installed in the placement groove (2), a circular groove (5) is provided on the top and bottom of the placement groove (2), and the two circular grooves (5) are both located on one side of the handle (3), a sealing plate (4) is rotatably installed between the two circular grooves (5) and located in the placement groove (2), and torsion springs (6) are sleeved on the upper and lower ends of the sealing plate (4) and are respectively located in the two circular grooves (5); A power assembly, the power assembly being located in the door body (1) and being used to drive the handle (3) to move; A sensor (12), the sensor (12) is fixedly mounted on the front side of the door body (1) and is located above the placement groove (2); a groove (13) is provided on the rear side of the door body (1), and the groove (13) is located on one side of the sensor (12); a battery (14) is inserted and installed in the groove (13); a revolving door (15) is rotatably installed in the groove (13) and located on one side of the battery (14); A position limiting component is located in the revolving door (15) and is used to limit the position of the revolving door (15).
2. The induction door handle according to claim 1, characterized in that: The power assembly comprises: A rectangular groove (7), the rectangular groove (7) is opened in the door body (1) and is located on one side of the placement groove (2), a rectangular plate (8) is fixedly installed on one side of the handle (3) and is located in the rectangular groove (7), a mounting groove (10) is opened in the door body (1) and is located on one side of the rectangular groove (7), a micro motor (11) is fixedly installed in the mounting groove (10), an output end of the micro motor (11) passes through one side of the mounting groove (10) and extends into the rectangular groove (7) and is fixedly installed with a threaded rod (9), one end of which passes through the rectangular plate (8).
3. The induction door handle according to claim 2, characterized in that: The rectangular plate (8) is slidably connected to the rectangular groove (7), the output shaft of the micro motor (11) is rotationally connected to the door body (1) and the rectangular groove (7), the threaded rod (9) is rotationally connected to the rectangular groove (7), and the threaded rod (9) is threadedly connected to the rectangular plate (8).
4. The induction door handle according to claim 1, characterized in that: The limiting component comprises: A sliding groove (16), wherein the sliding groove (16) is provided in the revolving door (15), a limit block (17) is slidably installed in the sliding groove (16), one end of the limit block (17) passes through one side of the sliding groove (16) and extends into the door body (1), one side of the limit block (17) extends to the outside, and a spring (18) fixed to the limit block (17) is fixedly installed on the inner wall of the sliding groove (16).
5. The induction door handle according to claim 4, characterized in that: One end of the limit block (17) is plugged into and matched with the door body (1), and one end of the limit block (17) is in an inclined structure.
6. The induction door handle according to claim 1, characterized in that: The two ends of the torsion spring (6) are tightly welded to the sealing plate (4) and the inner wall of the circular groove (5), respectively, and the sealing plate (4) is rotatably connected to the placement groove (2).
7. The induction door handle according to claim 2, characterized in that: The sensor (12) is electrically connected to the battery (14), the micro motor (11) is electrically connected to the battery (14), and the sensor (12) is electrically connected to the micro motor (11).