Helmet suitable for being worn in delivery capacity

By using a non-contact assembly detection component with Hall sensors and magnets in the delivery helmet, combined with infrared sensors to detect the wearing status, the problem of inaccurate detection in existing helmets has been solved. This achieves efficient and reliable wearing monitoring and module replacement, reducing costs and false alarm rates.

CN223695033UActive Publication Date: 2025-12-23BEIJING SANKUAI ONLINE TECH CO LTD
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Patent Information

Application Number
CN202520550497.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-12-23
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

Existing delivery helmets lack effective detection devices, making it impossible to accurately monitor whether they are worn correctly. Furthermore, existing detection components are prone to reduced reliability due to improper installation or wear.

Method used

The system employs a non-contact assembly placement detection component, including a Hall sensor and a magnet. By cooperating with the helmet shell, the detection module enables a detachable connection between the control module and the helmet shell. Combined with an infrared sensor to detect the wearing status, it provides detection of proper assembly and wearing.

Benefits of technology

It achieves highly accurate and reliable assembly placement detection, supports the detachable replacement of modules, reduces maintenance costs, reduces delivery capacity burden, and improves safety and detection sensitivity.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a helmet suitable for being worn in delivery capacity, which comprises a helmet shell and a control module detachably connected to the helmet shell, and is characterized in that the control module and the helmet shell are provided with assembly in-place detection assemblies which are matched with each other; the in-place assembly detection assembly comprises a first detection part and a second detection part which are matched with each other in a non-contact mode, the first detection part is arranged on the control module, the second detection part is arranged on the helmet shell, and the in-place assembly detection assembly is used for detecting whether the control module and the helmet shell are installed in place or not.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to a helmet suitable for being worn by a delivery worker. BACKGROUND

[0002] In the take-out delivery industry, the delivery worker (such as a take-out rider) is required to wear a helmet correctly according to the requirements of road safety regulations. However, the existing ordinary helmets either do not have a detection device for monitoring whether the delivery worker wears the helmet correctly, or the fixed detection device inside the helmet can be fraudulently used by the delivery worker, for example, the helmet sensor is shielded to fraudulently pretend to have worn the helmet. In addition, the detection components are often tilted or fallen off due to not being installed correctly, making the detection result susceptible to interference, and some components are prone to contact wear due to long-term plug-in use, reducing the detection reliability. CONTENT OF THE UTILITY MODEL

[0003] One of the main purposes of the present disclosure is to overcome at least one of the defects of the prior art described above, and to provide a helmet suitable for being worn by a delivery worker, which has a higher accuracy and reliability of assembly-in-place detection function.

[0004] To achieve the above-mentioned purpose, the present disclosure adopts the following technical solutions:

[0005] According to one aspect of the present disclosure, a helmet suitable for being worn by a delivery worker is provided, which comprises a helmet shell and a control module detachably connected to the helmet shell, wherein the control module and the helmet shell are provided with a mutual matching assembly-in-place detection assembly, the assembly-in-place detection assembly comprises first and second detection components that match with each other in a non-contact manner, the first detection component is arranged on the control module, the second detection component is arranged on the helmet shell, and the assembly-in-place detection assembly is used to detect whether the control module and the helmet shell are installed in place.

[0006] According to one of the embodiments of the present disclosure, the first detection component is a Hall sensor arranged in the control module, and the second detection component is a magnet matched with the Hall sensor, the magnet is arranged on the helmet shell, wherein the control module is correspondingly assembled with the helmet shell, the Hall sensor is close to the magnet at the corresponding position of the helmet shell and senses a magnetic field signal, and then the control module is assembled in place.

[0007] According to one of the embodiments of the present disclosure, the outer side of the helmet shell is provided with a containing groove, and the magnet is contained in the containing groove.

[0008] According to one of the embodiments of the present disclosure, the helmet shell is provided with a mounting structure, and the control module is detachably connected to the mounting structure; and the accommodating groove is arranged on the outer side of the mounting structure.

[0009] According to one of the embodiments of the present disclosure, the magnet is arranged at a position corresponding to the ear part of the helmet shell, and the control module is arranged at a position corresponding to the ear part of the helmet shell when the helmet shell is assembled.

[0010] According to one of the embodiments of the present disclosure, the control module is provided with a helmet wearing sensor, which is used to detect whether the helmet is worn by the delivery personnel.

[0011] According to one of the embodiments of the present disclosure, the control module is provided with a communication component, which is used to send an assembly detection signal to a terminal or a system background.

[0012] Another main purpose of the present disclosure is to overcome at least one of the defects of the prior art, and to provide a helmet suitable for being worn by delivery personnel.

[0013] To achieve the above-mentioned purpose, the present disclosure adopts the following technical solutions:

[0014] According to another aspect of the present disclosure, a helmet suitable for being worn by delivery personnel is provided, which comprises a helmet shell and a control module; the helmet shell is provided with a mounting structure, and the control module is detachably connected to the mounting structure; the control module is provided with a helmet wearing sensor, which is used to detect whether the helmet is worn by the delivery personnel.

[0015] According to one of the embodiments of the present disclosure, the control module is provided with a communication component, which is used to send a helmet wearing detection signal to a terminal or a system background; and / or the helmet wearing sensor comprises an infrared sensor arranged in the control module, which is used to detect the distance between the control module and the head of the delivery personnel to determine whether the helmet is worn by the delivery personnel.

[0016] According to one of the embodiments of the present disclosure, the control module is provided with a voice component, which comprises a sound receiving component and a sound playing component, and is used to receive or play a voice related to a delivery order.

[0017] According to one of the embodiments of the present disclosure, the control module is provided with a communication component for information interaction between the control module and a terminal or a system background, and the information interaction at least includes that the communication component receives signals of the sound component and sends them to the terminal or the system background, and the communication component receives signals of the terminal or the system background and sends them to the sound component for playing.

[0018] From the above technical solution, the helmet suitable for being worn by a delivery driver provided by the present disclosure has the following advantages and positive effects:

[0019] The helmet suitable for being worn by a delivery driver provided by the present disclosure comprises a helmet shell and a control module, the control module is detachably connected to the helmet shell, the control module and the helmet shell are provided with a mutual cooperation assembly-to-position detection assembly, the assembly-to-position detection assembly comprises a first detection component and a second detection component which cooperate with each other in a non-contact manner, the first detection component is arranged on the control module, and the second detection component is arranged on the helmet shell. The assembly-to-position detection assembly is used for detecting whether the control module and the helmet shell are installed in place. Through the above structural design, the detachable assembly of the control module and the helmet shell can be realized. Accordingly, the control module can be directly detached when the season changes, for example, the summer helmet is directly detached and replaced with the winter helmet, thereby greatly saving the cost and avoiding waste. In addition, the helmet shell or the control module can be individually repaired or replaced, thereby reducing the maintenance cost. In addition, for a new delivery driver, the helmet and the control module can be operated separately, the new delivery driver only needs to pay for the helmet, and the control module is installed, so that the new smart helmet can be worn, thereby reducing the burden of the delivery driver. On this basis, the assembly-to-position detection assembly is used to realize the assembly-to-position detection between the control module and the helmet shell. Since the first detection component and the second detection component cooperate with each other in a non-contact manner to realize the detection function, the contact wear of the detection structure can be avoided, and high accuracy and reliability can be ensured. BRIEF DESCRIPTION OF DRAWINGS

[0020] The various objects, features and advantages of the present disclosure will become more apparent from the following detailed description of preferred embodiments of the present disclosure, taken in conjunction with the accompanying drawings. The drawings are merely exemplary illustrations of the present disclosure and are not necessarily drawn to scale. In the drawings, like reference numerals always designate the same or similar components. Among them:

[0021] Figure 1 is a structural schematic diagram of a control module of a helmet suitable for being worn by a delivery driver according to an exemplary embodiment;

[0022] Figure 2 is Figure 1 is a perspective exploded schematic diagram of the control module;

[0023] Figure 3 is Figure 2 a plan view of a part of the structure shown;

[0024] Figure 4 is a structural schematic view of the helmet for delivery personnel to wear from one perspective;

[0025] Figure 5 is Figure 4 a structural schematic view of the helmet shell shown;

[0026] Figure 6 is Figure 5 an enlarged schematic view of part A in

[0027] Figure 7 is a structural schematic view of the helmet for delivery personnel to wear from another perspective;

[0028] Figure 8 is Figure 7 an enlarged schematic view of part B in

[0029] Figure 9 is a schematic view of the helmet for delivery personnel to wear shown according to an exemplary embodiment.

[0030] Reference signs are explained as follows:

[0031] 100. helmet shell;

[0032] 200. mounting structure;

[0033] 210. clamping groove;

[0034] 230. accommodating groove;

[0035] 231. second detection component;

[0036] 300. control module;

[0037] 301. assembly-in-place detection assembly;

[0038] 302. voice component;

[0039] 3021. sound receiving component;

[0040] 3022. sound emitting component;

[0041] 303. communication component;

[0042] 310. clasp;

[0043] 321. front shell;

[0044] 322. rear shell;

[0045] 3301. First detection component;

[0046] 3304. Helmet wearing sensor;

[0047] 3305. Infrared light-transmitting shell;

[0048] 3306. Infrared small plate;

[0049] 3307. Infrared silica gel sleeve;

[0050] 3314. Charging plug;

[0051] 3317. Antenna;

[0052] 3318. Type-C female socket;

[0053] 3319. Battery connector;

[0054] 3322. Battery;

[0055] 500. Cable. DETAILED DESCRIPTION

[0056] The exemplary embodiments embodying the features and advantages of the present disclosure will be described in detail hereinafter. It should be understood that the present disclosure can have various changes on different embodiments, which all do not deviate from the scope of the present disclosure, and the description and drawings in the present disclosure are essentially for illustration, not to limit the present disclosure.

[0057] In the following description of different exemplary embodiments of the present disclosure, reference is made to the accompanying drawings, which form a part hereof, and in which are shown by way of illustration various exemplary structures, systems, and steps that can implement aspects of the present disclosure. It is to be understood that other specific arrangements can be utilized and structural and functional modifications can be made without departing from the scope of the present disclosure. Also, while the terms "over," "between," "among," and the like can be used in the description herein to relate to the relative positioning of various exemplary features and elements of the present disclosure, these terms are used herein solely to facilitate illustration by, for example, the examples depicted in the drawings. Nothing in this specification should be construed that a particular three-dimensional orientation of structures is required to fall within the scope of the present disclosure.

[0058] Reference is made to Figure 1The illustration represents a schematic diagram of the control module 300 for a helmet suitable for delivery personnel, as proposed in this disclosure. In this exemplary embodiment, the helmet for delivery personnel is described using a smart helmet as an example. It will be readily understood by those skilled in the art that various modifications, additions, substitutions, deletions, or other changes may be made to the specific embodiments described below to apply the relevant designs of this disclosure to other types of helmets, and these changes remain within the scope of the principles of the helmet for delivery personnel proposed in this disclosure.

[0059] like Figure 1 As shown, in one embodiment of this disclosure, the helmet suitable for delivery personnel includes a helmet shell 100 and a control module 300. The control module 300 is detachably connected to the helmet shell 100. (See also...) Figures 2 to 8 , Figure 2 The diagram shows a representative three-dimensional exploded view of the control module 300; Figure 3 China representatively shows Figure 2 A plan view of a portion of the structure is shown; Figure 4 The diagram above represents a structural schematic of the helmet proposed in this disclosure from one viewpoint. Figure 5 A schematic diagram of the structure of the helmet shell 100 is shown in the figure. Figure 6 China representatively shows Figure 5 An enlarged schematic diagram of part A in the diagram shows the structure when the magnet is removed from the receiving groove 230; Figure 7 The diagram shows a representative structural schematic of the helmet from another perspective;

[0060] Figure 8 China representatively shows Figure 7 An enlarged schematic diagram of part B in the figure. The following will, in conjunction with the above figures, provide a detailed description of the structure, connection methods, and functional relationships of the main components of the helmet proposed in this disclosure for use in delivery personnel.

[0061] like Figures 1 to 6 , Figure 9As shown in the embodiments of the present disclosure, the control module 300 and the helmet shell 100 are provided with a mutual cooperation assembly-to-position detection assembly 301, which includes a first detection component 3301 provided on the control module 300 and a second detection component 231 provided on the helmet shell 100, and the first detection component 3301 and the second detection component 231 are in non-contact cooperation with each other, and the assembly-to-position detection assembly 301 is used to detect whether the control module 300 and the helmet shell 100 are installed in position. Through the above structural design, the control module 300 and the helmet shell 100 can be detachably assembled. Accordingly, the control module 300 can be directly disassembled when the season changes, for example, the summer helmet is directly disassembled and replaced with the winter helmet, thereby greatly saving the cost and avoiding waste. Moreover, the control module 300 and the helmet shell 100 can be separately maintained or replaced, thereby reducing the maintenance cost. In addition, for new employees of the delivery force, the control module 300 and the helmet shell 100 can be operated separately, and the new employees of the delivery force only need to pay for the helmet shell, and the new smart helmet can be worn by installing the control module 300, thereby reducing the burden of the delivery force. On this basis, the assembly-to-position detection assembly 301 is used to detect whether the control module 300 and the helmet shell 100 are assembled in position. Since the first detection component 3301 and the second detection component 231 are in non-contact cooperation to achieve the detection function, the contact wear of the detection structure can be avoided, and high accuracy and reliability can be ensured.

[0062] As shown in the embodiments of the present disclosure, Figure 3 , Figure 5 and Figure 6 , in an embodiment of the present disclosure, the first detection component 3301 can be a Hall sensor provided in the control module 300. The second detection component 231 can be a magnet cooperating with the Hall sensor, and the magnet is provided in the helmet shell 100. On this basis, the control module 300 and the helmet shell 100 are correspondingly assembled, the Hall sensor is close to the magnet at the corresponding position of the helmet shell 100 and senses the magnetic field signal, and then the control module 300 is assembled in position. Through the above structural design, the Hall sensor and the magnet are used to achieve non-contact assembly-to-position detection, which has high accuracy and sensitivity. In some other embodiments of the present disclosure, the assembly-to-position detection assembly 301 can also use other types of non-contact detection schemes, for example, the first detection component 3301 and the second detection component 231 can be optical coupling light emitting components and light receiving components (or light reflecting components), and are not limited to the present embodiment.

[0063] As shown in the embodiments of the present disclosure, Figure 6As shown, based on the structure design that the second detection component 231 is a magnet, in an embodiment of the present disclosure, the outer side of the helmet shell 100 (for example, the outer side of the mounting structure 200 described above) can be provided with a containing groove 230, and the magnet is contained in the containing groove 230. Through the above structure design, the present disclosure can contain the magnet by using the containing groove 230, thereby ensuring that the magnet does not protrude from the outer side of the helmet shell 100, ensuring the non-contact arrangement form of the magnet and the Hall sensor, and at the same time, the mounting strength of the magnet on the helmet shell 100 can be improved, and the stability and reliability of the assembly detection function can be ensured.

[0064] As shown in Figure 5 and Figure 6 , based on the structure design that the magnet is contained in the containing groove 230, in an embodiment of the present disclosure, the helmet shell 100 can be provided with a mounting structure 200, and the control module 300 is detachably connected to the mounting structure 200. On this basis, the containing groove 230 can be arranged on the outer side of the mounting structure 200.

[0065] As shown in Figure 1 , Figure 5 and Figure 6 , in an embodiment of the present disclosure, the outer side of the helmet shell 100 (for example, the outer side of the mounting structure 200 described above) can be provided with a first connecting structure, and the so-called outer side refers to the side surface of the helmet shell 100 away from the helmet cavity. The control module 300 is provided with a second connecting structure facing the side of the helmet shell 100. Accordingly, the helmet suitable for being worn by the delivery personnel and the control module 300 are detachably connected through the first connecting structure and the second connecting structure. On this basis, the connection mode of the helmet suitable for being worn by the delivery personnel and the control module 300, for example, the connection mode of the first connecting structure and the second connecting structure can be clamping, insertion or magnetic attraction, or the connection mode of the first connecting structure and the second connecting structure can also be a combination of at least two of clamping, insertion and magnetic attraction. Through the above structure design, the present disclosure selects a special connection mode to realize the above detachable function, that is, clamping, insertion and magnetic attraction, thereby avoiding the connecting member such as a screw connecting the helmet shell 100 and the control module 300 from injuring the delivery personnel when a collision occurs, reducing secondary injury, and improving the safety of the helmet suitable for being worn by the delivery personnel.

[0066] As shown in Figure 1 and Figure 6 , in an embodiment of the present disclosure, taking at least clamping as an example of the connection mode of the first connecting structure and the second connecting structure, the first connecting structure can be a clamping groove 210, and the second connecting structure can be a clamping buckle 310, and the clamping groove 210 and the clamping buckle 310 are clamped and matched.

[0067] In an embodiment of the present disclosure, the magnet can be arranged at the region of the corresponding ear part of the helmet shell 100, and the control module 300 can be arranged at the region of the corresponding ear part when the helmet shell 100 is assembled. Through the above structure design, the present disclosure can facilitate the distribution of the sound emitted by the sound playing component 3022 arranged in the control module 300, and facilitate the operation of the control module 300. In an embodiment of the present disclosure, the control module 300 can be provided with a communication component 303. The communication component 303 is used to send the assembly detection signal of the control module 300 to the terminal (for example, the APP installed in the mobile phone of the delivery personnel) or the system background. In addition, the communication component 303 can also send other interactive information to the terminal or the system background, such as order information, delivery status information, physical state information (position, speed, etc.) of the delivery personnel, other safety monitoring information, etc. For example, through the information interaction of the above-mentioned communication component 303, when the terminal obtains or does not obtain the assembly detection information, the system background can mark the delivery personnel in the APP on the terminal of the delivery personnel according to the assembly detection information (for example, the assembly detection information includes the assembly mark and the non-assembly mark, etc.). For another example, when the terminal does not obtain the assembly detection information, the system background can mark the delivery personnel as an unorderable state in the APP on the terminal of the delivery personnel according to the assembly detection information, so as to supervise the standard operation of the delivery personnel.

[0068] In addition, the present disclosure can provide a prompt function for the delivery personnel by using the detection function of the assembly detection assembly 301. For example, when the control module 300 is assembled with the helmet shell 100, once the assembly is in place, the assembly detection assembly 301 can prompt the assembly in place state through the indicator light or the prompt sound, or when the delivery personnel applies for an order, if the control module 300 is not assembled in place, the assembly detection assembly 301 can prompt the non-assembly in place state through the indicator light or the prompt sound.

[0069] In an embodiment of the present disclosure, the control module 300 provided by the present disclosure can also be provided with a helmet wearing sensor 3304, which is used to detect whether the helmet provided by the present disclosure is worn in place by the delivery personnel.

[0070] Based on the structural design of the control module 300 being provided with the helmet wearing sensor 3304, in an embodiment of the present disclosure, the control module 300 can be provided with a communication component 303. In addition to the above-mentioned assembly-in-place detection signal or other interaction information, the communication component 303 is also used for the control module 300 to send a helmet wearing detection signal to the terminal or system background. For example, using the information interaction of the above-mentioned communication component 303, when the terminal obtains or does not obtain the wearing-in-place information, the system background can mark the delivery capacity in the APP on the terminal of the delivery capacity accordingly (for example, helmet wearing mark and helmet not wearing mark, etc.). For another example, when the terminal does not obtain the wearing-in-place information, the system background marks the delivery capacity in the APP on the terminal of the delivery capacity as an unorderable state, so as to improve the safety.

[0071] In addition, the present disclosure can use the detection function of the helmet wearing sensor 3304 to provide a prompt function for the delivery capacity. For example, when the delivery capacity correctly wears the helmet, once wearing-in-place, the helmet wearing sensor 3304 can prompt the wearing-in-place state through the indicator light or prompt sound, or when the delivery capacity incorrectly wears the helmet, the helmet wearing sensor 3304 can prompt the not wearing-in-place state through the indicator light or prompt sound.

[0072] As shown in Figure 1 and Figure 8 Based on the structural design of the control module 300 being provided with the helmet wearing sensor 3304, in an embodiment of the present disclosure, the helmet wearing sensor 3304 can include an infrared sensor. Specifically, the infrared sensor can detect the distance between the control module 300 and the head of the delivery capacity to determine whether the delivery capacity wears the helmet in place. For example, when the measured current distance is greater than a preset distance threshold (for example, 1cm-3cm), it is judged that the wearing is in place. In addition, in order to cooperate with the setting of the infrared sensor, the control module 300 can also be provided with an infrared light-transmitting shell 3305, an infrared small plate 3306, an infrared silica gel sleeve 3307 and the like. Through the above structural design, the present disclosure can improve the accuracy and sensitivity of the helmet wearing-in-place detection, and because the infrared sensor is a non-contact detection scheme with the human body, the present disclosure can prolong the hardware life through non-contact detection.

[0073] In an embodiment of the present disclosure, the present disclosure can be provided with the assembly-in-place detection assembly 301 and the helmet wearing sensor 3304 at the same time, so as to simultaneously achieve the assembly-in-place detection of the control module 300 and the intelligent helmet wearing-in-place detection. On this basis, the terminal will only be marked as available for order in the APP of the delivery capacity end when the assembly-in-place information and the wearing-in-place information are obtained at the same time, otherwise it will be marked as unavailable for order, so as to supervise the standard operation of the delivery capacity and improve the safety. In addition, since the assembly-in-place detection assembly 301 and the helmet wearing sensor 3304 are used at the same time, the present disclosure can distinguish the detection functions as "control module assembly-in-place detection" and "intelligent helmet wearing-in-place detection", thereby reducing the false positive rate.

[0074] As mentioned above, when the assembly-in-place detection assembly 301 and the helmet wearing sensor 3304 are used at the same time, the technical process related to the above-mentioned assembly-in-place detection and wearing-in-place detection of the present disclosure includes:

[0075] Module installation detection: when the control module 300 is installed into the helmet shell 100, the Hall sensor triggers the magnetic field signal due to the proximity of the pre-embedded magnet, and the control chip determines that the control module 300 has been correctly installed. If there is no signal of the Hall sensor, it is determined that the control module 300 is not installed or is misinstalled, and then the system disables the helmet wearing detection function and alarms.

[0076] Helmet wearing state determination: after the control module 300 is successfully installed, the infrared sensor continuously monitors the distance between the helmet and the head; when the infrared sensor detects that the above-mentioned distance is less than or equal to the preset distance threshold and the Hall sensor signal is continuously valid, it is determined that the helmet has been worn, and if the Hall sensor signal is valid but the infrared sensor detects that the above-mentioned distance is greater than the preset distance threshold, it is determined that the helmet has not been worn.

[0077] Fault-tolerant mechanism: when the Hall sensor signal is abnormal, the system switches to a separate helmet-wearing detection mode, and relies solely on the helmet-wearing sensor 3304 and is marked as a low-confidence state. In addition, for the assembly-in-place detection assembly 301, the present disclosure also supports remotely calibrating the matching parameters of the magnet and the Hall sensor to adapt to different helmet models. It should be noted that in the present embodiment, the "assembly-in-place detection signal and helmet-wearing detection signal of the control module 300 can be sent to the terminal or system background by the communication component 303" is taken as an example for description. It should be understood that when the control module 300 is provided with the communication component 303, the communication component 303 can also be used only to send the helmet-wearing detection signal and other interaction information, and the assembly-in-place detection signal can be collected by the master control chip provided in the control module 300 without being sent, at which time the master control chip can take the assembly-in-place detection signal as a basis for judging the helmet-wearing state, that is, the control module 300 needs to send at least the helmet-wearing state detection information through the communication component 303. For example, the master control chip can receive the detection signals of the Hall sensor and the infrared sensor to perform corresponding logical judgments (such as the logical judgments in the technical process described above) to judge the helmet-wearing state. In other words, the master control chip at least implements two functions, namely, voice communication and helmet-wearing detection.

[0078] As shown in Figure 3 In an embodiment of the present disclosure, the communication component 303 can include an antenna 3317 for realizing the information interaction function of the control module 300 and the terminal of the delivery force. For example, based on the information transmitted by the antenna 3317, the terminal can obtain the current position, travel speed, route trajectory, etc. of the delivery force, and can also obtain, for example, the helmet detection information, control module assembly-in-place information, etc. described below, so that the system background can perform order allocation, monitoring, marking, etc. according to the above information, or interact on the APP of the client. In addition, the terminal can also compare the information (i.e. the position information of the control module 300, etc.) sent via the antenna 3317 with the position information of the mobile device (such as a mobile phone) registered on the APP of the terminal of the delivery force to determine whether the delivery force is abnormal.

[0079] As shown in Figure 2 and Figure 3 In an embodiment of the present disclosure, the control module 300 proposed by the present disclosure can include a front shell 321 and a rear shell 322. The front shell 321 and the rear shell 322 are arranged along a third direction, and the rear shell 322 is arranged closer to the helmet shell 100 relative to the front shell 321, that is, the control module 300 is assembled to the helmet shell 100 (such as the mounting structure 200), and the second connecting structure is provided on the rear shell 322. The front shell 321 and the rear shell 322 are fitted to form a cavity for accommodating various components, such as the Hall sensor, the infrared sensor, etc. described above, which can be arranged in the cavity.

[0080] In an embodiment of the present disclosure, the control module 300 can be provided with a voice component 302. The voice component 302 is used to receive or play voice related to the delivery order, such as telephone voice communication, playing order information, voice control, etc., to perform voice instruction operation or transmit voice call information to the service platform or terminal. Specifically, the voice component 302 can include a sound receiving component 3021 and a sound playing component 3022. The sound receiving component 3021 is used to receive sound, for example, by selecting a built-in sound receiving device or an external sound receiving device. The sound playing component 3022 is used to play sound, for example, by selecting a loudspeaker.

[0081] In an embodiment of the present disclosure, the control module 300 is provided with a communication component 303, which is used to control the information interaction between the control module 300 and the terminal or system background. The information interaction at least includes: the communication component 303 receives the signal of the sound receiving component 3021 and sends it to the terminal or system background, and the communication component 303 receives the signal of the terminal or system background and sends it to the sound playing component 3022 for playing.

[0082] As shown in Figure 2 and Figure 3 In an embodiment of the present disclosure, the control module 300 provided by the present disclosure is provided with a battery 3322 and a charging interface. The battery 3322 is used to supply power to the functional components of the control module 300. The so-called functional components can be, for example, the assembly-in-place detection assembly 301, the helmet wearing sensor 3304, the voice component 302, the communication component 303, etc. described above. The charging interface can be plugged by the cable 500 to realize the charging of the battery 3322 by the external power supply or the data interaction function, and the charging interface is exposed on the surface of the control module 300. The charging interface can be a Type-C female socket 3318. In addition, a charging plug 3314 can be provided at the charging interface to realize the dustproof and waterproof function when the charging interface is not plugged by the cable.

[0083] As shown in Figure 3 In an embodiment of the present disclosure, the control module 300 can also be provided with a battery connector 3319. The charging interface is connected to the battery 3322 via the battery connector 3319, and other electronic components can also be connected to the battery 3322 via the battery connector 3319, for example, the circuit board and the infrared small plate 3306 can be connected to the battery connector 3319.

[0084] In an embodiment of the present disclosure, the control module 300 proposed by the present disclosure can be provided with a touchable button, which is used to realize the button interaction function related to the delivery order, such as starting and shutting down, answering and hanging up the phone, accepting and rejecting orders, etc., and the delivery capacity can use touch, press, twist, etc. Action to manipulate the touchable button to achieve different button interaction feelings. In addition, in order to cooperate with the setting of the touchable button, the control module 300 can also be provided with a button silica gel support, a button silica gel sleeve and other components.

[0085] As shown in Figure 2 and Figure 3 Figure 3 Figure 2 Figure 3 In an embodiment of the present disclosure, the control module 300 can be provided with a circuit board (which can be used as a control board of the control module 300) inside, and the circuit board can be provided with control chips, antennas 3317, TypeC female seats 3318, battery connectors 3319 and other electronic components, and the battery connector 3319 is used to connect the battery 3322. And the above-mentioned Hall sensor, built-in microphone, touchable button, etc. can also be arranged on the circuit board. In addition, the above-mentioned infrared small plate 3306 can also be arranged inside the cavity of the control module 300, and the infrared sensor, the 3.5mm audio female seat connected with the external microphone, etc. can be arranged on the infrared small plate 3306, and the infrared small plate 3306 and the circuit board can be electrically connected through the FPC.

[0086] In another embodiment of the present disclosure, the present disclosure proposes a helmet suitable for delivery capacity to wear, which comprises a helmet shell 100 and a control module 300. The helmet shell 100 is provided with a mounting structure 200, and the control module 300 is detachably connected to the mounting structure 200. The control module 300 is provided with a helmet wearing sensor 3304, which is used to detect whether the helmet is worn by the delivery capacity. In which, the helmet in the embodiment can not be provided with the assembly in place detection assembly 301 in the above-mentioned embodiment, that is, the control module 300 can not be provided with a Hall sensor and the helmet shell 100 (mounting structure 200) can not be provided with a magnet. Through the above-mentioned structure design, the present disclosure can realize the helmet wearing detection only by using the helmet wearing sensor 3304.

[0087] Based on the design of realizing the helmet wearing detection only by using the helmet wearing sensor 3304, in another embodiment of the present disclosure, the control module 300 can be provided with a communication component 303, which is used to send a helmet wearing detection signal to the terminal or system background by the control module 300. And

[0088] Based on the design of implementing the helmet-wearing-in-place detection by only using the helmet-wearing sensor 3304, in another embodiment of the present disclosure, the helmet-wearing sensor 3304 can include an infrared sensor arranged in the control module 300, and the infrared sensor is used to detect the distance between the control module 300 and the head of the delivery staff to determine whether the helmet is worn in place by the delivery staff.

[0089] It should be noted here that the helmets suitable for being worn by the delivery staff shown in the drawings and described in the present specification are only a few examples of many helmets that can employ the principles of the present disclosure. It should be clearly understood that the principles of the present disclosure are by no means limited to any details or any components of the helmets suitable for being worn by the delivery staff shown in the drawings or described in the present specification.

[0090] In summary, the present disclosure proposes a helmet suitable for being worn by the delivery staff, which includes a helmet shell 100 and a control module 300 detachably connected to the helmet shell 100, and the control module 300 and the helmet shell 100 are provided with a mutual matching assembly-in-place detection assembly 301, which includes a first detection component 3301 and a second detection component 231 that match with each other in a non-contact manner, the first detection component 3301 is arranged in the control module 300, and the second detection component 231 is arranged in the helmet shell 100, and the assembly-in-place detection assembly 301 is used to detect whether the control module 300 and the helmet shell 100 are installed in place. Through the above structural design, the present disclosure can realize the detachable assembly of the control module 300 and the helmet shell 100. Accordingly, the present disclosure can directly detach the control module 300 when changing seasons, for example, detach and replace from a summer helmet to a winter helmet, thereby greatly saving costs and avoiding waste. Moreover, the present disclosure can facilitate the separate repair or replacement of the helmet shell 100 or the control module 300, thereby reducing maintenance costs. In addition, for new delivery staff, the present disclosure can realize the separate operation of the helmet and the control module 300, and the new delivery staff only needs to pay for the helmet, and installs the control module 300 to wear a new smart helmet, thereby reducing the burden on the delivery staff. On this basis, the present disclosure can use the assembly-in-place detection assembly 301 to realize the assembly-in-place detection between the control module 300 and the helmet shell 100, and since the first detection component 3301 and the second detection component 231 match in a non-contact manner to realize this detection function, the present disclosure can avoid the contact wear of the detection structure, thereby ensuring high accuracy and reliability.

[0091] The exemplary embodiments of a helmet suitable for wear by a delivery driver presented by the present disclosure are described and / or illustrated above in detail. The embodiments of the present disclosure, however, are not limited to the specific embodiments described herein, but include any and all implementations of these embodiments with all modifications falling within the scope of the embodiments. Individual components and / or steps of each embodiment can be used in combination with other components and / or steps of that embodiment and / or other embodiments. Each component and / or step of one embodiment can also be used in combination with other components and / or steps of another embodiment. Where an element / component / etc. is introduced as being "one of," "at least one," and / or the like, there is a possibility that more than one of the element / component / etc. can be present. Further, the terms "first," "second," and the like, herein do not denote any order, quantity, or importance, but rather are used to denote one element from another. Use of the term "including" and / or "having" as well as use of "comprising" herein, and in the claims that follow, signifies the inclusion of the elements / components / etc. recited and any additional elements / components / etc. that can or might be present. Further, the terminology and phraseology employed herein are for descriptive purposes and should not be regarded as limiting.

[0092] While the helmet suitable for wear by a delivery driver presented by the present disclosure has been described in accordance with various specific embodiments, it is evident that modifications and alterations can occur to those skilled in the art upon reading and understanding the preceding detailed description.

Claims

1. A helmet suitable for delivery personnel, comprising a helmet shell (100) and a control module (300) detachably connected to said helmet shell (100), characterized in that, The control module (300) and the helmet shell (100) are provided with a matching assembly detection component (301). The assembly detection component (301) includes a first detection component (3301) and a second detection component (231) that cooperate with each other in a non-contact manner. The first detection component (3301) is disposed on the control module (300), and the second detection component (231) is disposed on the helmet shell (100). The assembly detection component (301) is used to detect whether the control module (300) and the helmet shell (100) are installed in place.

2. The helmet suitable for delivery personnel according to claim 1, characterized in that, The first detection component (3301) is a Hall sensor, which is disposed within the control module (300); the second detection component (231) is a magnet that cooperates with the Hall sensor, which is disposed on the helmet shell (100); wherein, the control module (300) is correspondingly assembled with the helmet shell (100), and when the Hall sensor approaches the magnet located at the corresponding position on the helmet shell (100) and senses the magnetic field signal, the control module (300) is assembled in place.

3. The helmet suitable for delivery personnel to wear according to claim 2, characterized in that, The outer side of the helmet shell (100) is provided with a receiving groove (230), and the magnet is received in the receiving groove (230).

4. The helmet suitable for delivery personnel to wear according to claim 3, characterized in that, The helmet shell (100) is provided with a mounting structure (200), and the control module (300) is detachably connected to the mounting structure (200); wherein the receiving groove (230) is provided on the outer side of the mounting structure (200).

5. The helmet suitable for delivery personnel to wear according to claim 2, characterized in that, The magnet is disposed in the area corresponding to the ear of the helmet shell (100), and the control module (300) assembled with the helmet shell (100) is located in the area corresponding to the ear.

6. The helmet suitable for delivery personnel to wear according to claim 1, characterized in that, The control module (300) is equipped with a helmet wearing sensor (3304), which is used to detect whether the helmet suitable for delivery personnel is worn properly by the delivery personnel.

7. The helmet suitable for delivery personnel to wear according to claim 1, characterized in that, The control module (300) is provided with a communication component (303), which is used by the control module (300) to send an assembly completion detection signal to the terminal or system backend.

8. A helmet suitable for delivery personnel, characterized in that, The device includes a helmet shell (100) and a control module (300); the helmet shell (100) is provided with a mounting structure (200), and the control module (300) is detachably connected to the mounting structure (200); the control module (300) is provided with a helmet wearing sensor (3304), which is used to detect whether the helmet is properly worn by the delivery personnel.

9. The helmet suitable for delivery personnel to wear according to claim 6 or 8, characterized in that: The control module (300) is provided with a communication component (303), which is used by the control module (300) to send a helmet wearing detection signal to a terminal or system backend; and / or The helmet wearing sensor (3304) includes an infrared sensor, which is disposed within the control module (300). The infrared sensor is used to detect the distance between the control module (300) and the head of the delivery personnel to determine whether the delivery personnel have worn the helmet properly.

10. The helmet suitable for delivery personnel to wear according to claim 1 or 8, characterized in that, The control module (300) is provided with a voice component (302), which includes a receiver (3021) and / or a playback component (3022) and is used to receive or play voice related to delivery orders.

11. The helmet suitable for delivery personnel to wear according to claim 10, characterized in that, The control module (300) is provided with a communication component (303). The communication component (303) is used for information interaction between the control module (300) and the terminal or system backend. The communication component (303) receives the signal from the radio component (3021) and sends it to the terminal or system backend, or the communication component (303) receives the signal from the terminal or system backend and sends it to the playback component (3022) for playback.