Discharge rod with discharge indication function

By integrating an electrostatic indicator device and other functional designs on the discharge rod body, the problem of the discharge rod being unable to provide a clear discharge signal is solved, instant feedback of the discharge status is achieved, and the safety and efficiency of power operations are improved.

CN223321506UActive Publication Date: 2025-09-09GUANGZHOU POWER SUPPLY BUREAU GUANGDONG POWER GRID CO LTD
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Patent Information

Application Number
CN202422354127.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-09-09
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

Existing discharge rods cannot provide clear discharge sound signals during 10kV voltage-level power operations, making it difficult for operators to determine whether the discharge operation has been completed thoroughly, posing safety risks and low efficiency.

Method used

An electrostatic indication device is integrated on the discharge rod body, including an electrostatic indicator light and a detection module. It indicates the charged state of the discharge rod in real time through changes in current or magnetic field. It is also equipped with a switch button, voice prompter and visual observation window to enhance the safety and intuitiveness of the operator.

Benefits of technology

It achieves instant and accurate feedback on the discharge status, reduces the risk of safety accidents caused by misjudgment, improves the safety and efficiency of power operations, and provides a solid guarantee for the stable operation of the power system.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of discharge auxiliary equipment, and discloses a discharge rod with a discharge indication function, which comprises a discharge rod body and an electrostatic indication device, the static indicating device is arranged on the discharging rod body and used for indicating whether the discharging rod body is in an electrified state or a non-electrified state. According to the discharge rod with the discharge indication function provided by the utility model, the electrostatic indication device is arranged on the discharge rod body and can indicate whether the discharge rod body is electrified or not, so that the discharge state can be fed back immediately and accurately in the discharge process, visual and clear operation guidance is provided for operators, and the discharge rod is convenient to use. The safety accident risk caused by misjudgment can be effectively reduced, the safety and efficiency of electric power operation can be remarkably improved, and a solid guarantee is provided for stable operation of an electric power system.
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Description

Technical Field

[0001] The utility model relates to the technical field of discharge auxiliary equipment, in particular to a discharge rod with a discharge indication function. Background Art

[0002] In current power operations, operators facing 10kV discharge operations face a pressing challenge: the design of existing discharge rods is outdated, and their performance falls short of current safety standards. Specifically, if the rods fail to produce a clear, audible sound signaling discharge completion, operators struggle to accurately determine whether the discharge has been completed. This can have serious consequences, as undischarged charge may remain in the equipment. If an operator accidentally touches the residual charge, they could suffer burns from the residual energy, threatening their safety and compromising the overall efficiency and stability of power operations.

[0003] In view of this, it is particularly urgent and important to carry out comprehensive and in-depth improvement and upgrading of current discharge technology.

[0004] The above information is presented as background information only to assist with an understanding of the present disclosure and is not a determination or admission that any of the above may be applicable as prior art with respect to the present disclosure. Utility Model Content

[0005] The utility model provides a discharge rod with a discharge indication function to solve the problems existing in the prior art.

[0006] To achieve the above objectives, the present invention provides the following technical solutions:

[0007] A discharge rod with a discharge indication function, comprising a discharge rod body and an electrostatic indication device; wherein,

[0008] The static electricity indicating device is arranged on the discharge rod body and is used to indicate whether the discharge rod body is in a charged state or a de-charged state.

[0009] Furthermore, in the discharge rod with discharge indication function, the static electricity indication device includes a static electricity indicator light;

[0010] The static indicator light is energized when the discharge rod body is charged to indicate that the discharge rod body is in a charged state, or is electrically connected to the discharge rod body during discharge and loses power when the discharge rod body is not charged to indicate that the discharge rod body is in a non-charged state.

[0011] Furthermore, in the discharge rod with discharge indication function, the static electricity indication device includes a static electricity detection module and a static electricity indicator light;

[0012] The static electricity detection module is mounted on the discharge rod body and is used to output voltage when current flows through the discharge rod body;

[0013] The static electricity indicator light is arranged on the discharge rod body and is connected to the output end of the static electricity detection module. It is used to indicate that the discharge rod body is in a charged state when receiving the output voltage from the static electricity detection module, or to indicate that the discharge rod body is in a de-charged state when not receiving the output voltage from the static electricity detection module.

[0014] Furthermore, in the discharge rod with a discharge indication function, the static electricity detection module is a Hall sensor.

[0015] Furthermore, in the discharge rod with a discharge indication function, the electrostatic indicator light is a ring-shaped indicator light surrounding the discharge rod body in the axial direction.

[0016] Furthermore, the discharge rod with a discharge indication function further includes a switch button;

[0017] The switch button is provided on the discharge rod body and is used to switch the discharge rod body to a direct grounding discharge mode or a grounding discharge mode through a current limiting resistor.

[0018] Furthermore, the discharge rod with discharge indication function also includes a voice prompter;

[0019] The voice prompter is arranged on the discharge rod body and connected to the switching button, and is used to issue corresponding human voice prompts when switching the discharge mode.

[0020] Furthermore, in the discharge rod with a discharge indication function, a visual observation window is provided on the discharge rod body for observing whether the current-limiting resistor is connected.

[0021] Furthermore, the discharge stick with discharge indication function also includes a wearable monitoring device;

[0022] The wearing monitoring device is arranged on the discharge rod body and is used to detect whether the operator is wearing insulating gloves.

[0023] Furthermore, in the discharge rod with discharge indication function, the discharge rod body includes a discharge head, a connecting rod, an operating rod and a discharge wire;

[0024] The discharge head is connected to the operating rod via the connecting rod; the discharge head and the connecting rod are detachably connected;

[0025] One end of the discharge wire is electrically connected to the connecting rod, and the other end is electrically connected to the grounding clamp.

[0026] Compared with the prior art, the present invention has the following beneficial effects:

[0027] The utility model provides a discharge rod with a discharge indication function. By arranging an electrostatic indication device on the discharge rod body, the electrostatic indication device can indicate whether the discharge rod body is charged, thereby ensuring that the discharge status can be fed back immediately and accurately during the discharge process, providing intuitive and clear operation guidance for operators, not only effectively reducing the risk of safety accidents caused by misjudgment, but also significantly improving the safety and efficiency of power operations, providing a solid guarantee for the stable operation of the power system.

[0028] The present invention has other features and advantages, which will be apparent from the accompanying drawings and subsequent detailed descriptions incorporated herein, or will be described in detail in the accompanying drawings and subsequent detailed descriptions incorporated herein, which together serve to explain the specific principles of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0030] Figure 1 This is a schematic diagram of the assembly structure (stereoscopic) of a discharge rod with a discharge indication function provided by an embodiment of the present utility model;

[0031] Figure 2 This is a schematic diagram of the exploded structure (stereoscopic) of a discharge rod with a discharge indication function provided by an embodiment of the present utility model;

[0032] Figure 3 This is a structural (stereoscopic) schematic diagram of a discharge rod with a discharge indication function provided by an embodiment of the utility model;

[0033] Figure 4 This is a schematic diagram of the structure (front view) of the discharge head and the connecting rod provided in an embodiment of the present utility model;

[0034] Figure 5 This is a schematic diagram of the structure (front view) of the operating lever provided in an embodiment of the present utility model;

[0035] Figure 6 It is a structural schematic diagram of the wire clamp provided by an embodiment of the utility model.

[0036] Reference numerals:

[0037] Discharge rod body 1, static electricity indicator 2, switch button 3, voice prompter 4, visual observation window 5, wire clamp 6, power switch 7, charging port 8;

[0038] Discharge head 11, connecting rod 12, operating rod 13, discharge wire 14;

[0039] Telescopic rod 131 and handle 132 . DETAILED DESCRIPTION

[0040] In order to explain in detail the possible application scenarios, technical principles, specific solutions that can be implemented, and the purpose and effects of this application, the following is a detailed description of the specific embodiments listed in conjunction with the accompanying drawings. The embodiments described herein are only used to more clearly illustrate the technical solutions of this application and are therefore only examples and are not intended to limit the scope of protection of this application.

[0041] References to "embodiments" herein mean that the specific features, structures, or characteristics described in conjunction with the embodiments may be included in at least one embodiment of the present application. The appearance of the word "embodiment" in various places in the specification does not necessarily refer to the same embodiment, nor does it particularly limit its independence or relevance to other embodiments. In principle, in this application, as long as there are no technical contradictions or conflicts, the various technical features mentioned in the embodiments can be combined in any manner to form a corresponding implementable technical solution.

[0042] Unless otherwise defined, the technical terms used herein have the same meanings as those generally understood by those skilled in the art to which this application belongs; the use of relevant terms herein is only for describing specific embodiments and is not intended to limit this application.

[0043] In the description of this application, the term "and / or" is used to describe a logical relationship between objects, indicating that three relationships can exist. For example, A and / or B means: A exists, B exists, and both A and B exist. In addition, the character " / " in this document generally indicates that the objects before and after are in a logical "or" relationship.

[0044] In this application, terms such as "first" and "second" are merely used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual quantity, priority or sequence relationship between these entities or operations.

[0045] Without further limitations, in this application, the words "include", "comprise", "have" or other similar expressions used in the sentences are intended to cover non-exclusive inclusion. These expressions do not exclude the presence of additional elements in the process, method or product including the elements, so that the process, method or product including a series of elements may include not only those defined elements, but also other elements not explicitly listed, or elements inherent to such process, method or product.

[0046] In this application, expressions such as "greater than," "less than," and "exceed" are understood to exclude the number itself; expressions such as "above," "below," and "within" are understood to include the number itself. In addition, in the description of the embodiments of this application, "multiple" means two or more (including two), and similar expressions related to "multiple" are also understood in this way, such as "multiple groups" and "multiple times," unless otherwise specifically limited.

[0047] In the description of the embodiments of the present application, the space-related expressions used, such as "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "vertical", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicate the orientation or position relationship based on the orientation or position relationship shown in the specific embodiments or drawings, and are only for the convenience of describing the specific embodiments of the present application or facilitating the reader's understanding, and do not indicate or imply that the device or component referred to must have a specific position, a specific orientation, or be constructed or operated in a specific orientation. Therefore, it should not be understood as a limitation on the embodiments of the present application.

[0048] Unless otherwise expressly specified or limited, in the description of the embodiments of the present application, the terms "installed", "connected", "connected", "fixed", "set", etc. used should be understood in a broad sense. For example, the "connection" can be a fixed connection, a detachable connection, or an integrated setting; it can be a mechanical connection, an electrical connection, or a communication connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal connection of two elements or the interaction relationship between two elements. For those skilled in the art of the present application, the specific meanings of the above terms in the embodiments of the present application can be understood according to the specific circumstances.

[0049] In view of the aforementioned deficiencies in the prior art, the applicant, drawing upon years of extensive practical experience and expertise in this field, combined with the application of scientific knowledge, has actively engaged in research and innovation, hoping to create a technology that can address these deficiencies. Through continuous research and design, and through repeated trial production and improvements, the applicant has finally created the present utility model, which possesses truly practical value.

[0050] Please refer to Figure 1-6 The embodiment of the utility model is a discharge rod with a discharge indication function. The discharge rod is composed of two parts: a discharge rod body 1 and an electrostatic state indicator device 2. Specifically,

[0051] The static status indicator 2 is cleverly embedded within the discharge rod body 1. Its design aims to accurately and intuitively indicate the current charge or de-charge status of the discharge rod body 1. This innovative design not only represents a significant upgrade to the functionality of traditional discharge rods, but also represents a profound consideration and enhancement of electrical operation safety.

[0052] The discharge rod with a discharge indication function of the present utility model realizes instant and accurate monitoring and feedback of the charged state of the insulating rod during the discharge process by integrating an electrostatic state indicator device 2 on the discharge rod body 1 with excellent insulation performance. This mechanism ensures that the operator can obtain clear information about the discharge state at the first time, thereby providing him with intuitive and accurate operating guidance. This move not only greatly reduces the risk of safety accidents that may be caused by human misjudgment, but also fundamentally improves the overall safety and operating efficiency of power operations, and builds an indestructible safety line for the continuous, stable and efficient operation of the power system. In summary, the embodiments of the present utility model not only represent an important advancement in the field of power tool design, but also a powerful improvement in the safety standards of the power industry.

[0053] When further refining the two specific implementations of the present utility model embodiment, the design of the static electricity indicator device 2 can be described in more detail:

[0054] On the one hand, for the first implementation method:

[0055] In this embodiment, the static electricity indicator device 2 innovatively includes an static electricity indicator light as its core component. This static electricity indicator light establishes an electrical connection with the discharge rod body 1, a design that cleverly utilizes the principle of current conduction. Specifically, when the discharge rod body 1 is charged, the static electricity indicator light receives current from the body, becoming activated and illuminating, intuitively indicating to the operator that the discharge rod body 1 is currently charged. Conversely, when the discharge operation is completed and the discharge rod body 1 is no longer charged, the static electricity indicator light goes out due to a loss of current supply, clearly informing the operator that the discharge rod body 1 is no longer charged. This direct and immediate feedback mechanism greatly improves the safety and efficiency of the discharge operation.

[0056] On the other hand, for the second implementation:

[0057] To further enhance the accuracy and reliability of static electricity indication, this embodiment utilizes a more complex solution combining an static electricity detection module with a static electricity indicator light. The static electricity detection module is cleverly mounted on the discharge rod body 1. Its design principle is to sensitively detect the current flowing through the discharge rod body 1 and generate a corresponding output voltage based on this current. This output voltage is then transmitted to the static electricity indicator light, which serves as a basis for determining its operating status. When the static electricity detection module detects current flowing through the discharge rod body 1, it indicates that the discharge rod body 1 is charged. At this time, the static electricity indicator light receives the output voltage from the detection module and illuminates, clearly indicating the current status. Conversely, if the static electricity detection module detects no current, indicating that the discharge operation is complete and the discharge rod body 1 is no longer charged, the static electricity indicator light receives no output voltage and remains off, signaling to the operator that there is no power. This current-detection-based indication method not only improves indication accuracy but also enhances the system's anti-interference capabilities, providing more reliable safety for electrical operations.

[0058] In one implementation of this embodiment, a Hall effect sensor is used as the static electricity detection module. A Hall effect sensor is a magnetic sensor based on the Hall effect. However, in this application, it does not directly detect magnetic fields. Instead, it cleverly utilizes the magnetic field effect generated by current flowing through a conductor. When current flows through the discharge rod body 1, it generates a magnetic field surrounding the conductor. The Hall effect sensor indirectly determines whether the discharge rod body 1 is charged by detecting changes in this magnetic field.

[0059] Specifically, the Hall effect sensor is mounted on the discharge rod body 1. Its sensitive element senses the changes in the magnetic field generated by the current and outputs a voltage signal proportional to the magnetic field strength. When the discharge rod body 1 is charged and the current is flowing normally, the Hall effect sensor receives a strong magnetic field signal and outputs a relatively high voltage value. This voltage value is then transmitted to the static indicator light, causing it to illuminate to indicate the charged state. Conversely, when the discharge rod body 1 is de-charged or the current is interrupted, the magnetic field disappears or weakens, the voltage output by the Hall effect sensor decreases or reaches zero, and the static indicator light turns off, indicating a de-charged state.

[0060] The advantages of using a Hall effect sensor as an electrostatic detection module lie in its high sensitivity, fast response, and excellent anti-interference capabilities. It can accurately and reliably detect the charge status of the discharge rod body 1, providing timely and accurate feedback to the operator, effectively avoiding misjudgments and safety accidents. Hall effect sensors also offer advantages such as small size, light weight, and easy installation, making them suitable for integration into power tools such as discharge rods.

[0061] In another carefully designed implementation of this embodiment, an annular reflector-shaped indicator light surrounding the discharge rod body 1 in the axial direction is used as the static electricity indicator light. This design not only improves the visual intuitiveness, but also enhances the comprehensiveness of the indication effect.

[0062] The arrangement of the ring-shaped indicator lights allows the operator to clearly see the status of the indicator lights no matter from which angle the operator views the discharge rod. This all-round visibility ensures that even in complex and changing working environments, the operator can quickly and accurately obtain the charging information of the discharge rod body 1.

[0063] Furthermore, the ring indicator's unique shape further enhances its effectiveness. When illuminated, the entire ring glows brightly. This intense visual stimulation quickly captures the operator's attention, reducing the risk of misjudgment due to inattention or distraction.

[0064] The material and color of the ring indicator are also carefully selected to ensure good visibility in all lighting conditions. Typically, high-brightness, high-contrast LEDs are chosen as the light source, paired with eye-catching colors (such as red or yellow) to ensure clear identification even at long distances or in poor visibility.

[0065] In summary, the ring indicator light design in this embodiment not only improves the practicality and reliability of the static electricity indicator device 2, but also provides a strong guarantee for the safety and efficiency of power operations through its unique visual effects.

[0066] In another innovative implementation of this embodiment, a key component is added to the discharge rod with discharge indication function, namely, a switch button 3. This design is intended to give the discharge rod more flexible functionality to meet discharge needs in different scenarios.

[0067] The switch button 3 is cleverly positioned on the discharge rod body 1, its position carefully considered to ensure easy access and operation by the operator. This button's primary function is to switch the discharge rod's operating mode, specifically between direct ground discharge mode and ground discharge mode through a current-limiting resistor.

[0068] In direct-ground discharge mode, the discharge rod body 1 is directly grounded, forming a low-impedance discharge path. This mode provides a rapid and efficient discharge process, making it suitable for scenarios requiring rapid discharge of large amounts of charge. However, due to the high current, it may pose certain safety risks to surrounding equipment and personnel.

[0069] In the grounded discharge mode, the discharge rod body 1 is grounded via a current-limiting resistor. This resistor effectively limits the discharge current, reducing safety risks during the discharge process. While the discharge speed is relatively slow, it is safer and more reliable, making it suitable for scenarios with high safety requirements during the discharge process.

[0070] By using the switch button 3, the operator can flexibly select the appropriate discharge mode based on actual needs and the operating environment. This design not only improves the practicality and flexibility of the discharge rod, but also further enhances the safety and controllability of power operations. Furthermore, the inclusion of the switch button 3 demonstrates the utility model's high regard and consideration for the operator's user experience.

[0071] It is understandable that hardware circuits for switching different paths using the switch button 3 have been implemented in many existing technologies, such as a current-limiting resistor connected in series with a normally open switch and then connected in parallel in the main circuit. Since this is not the focus of this design, it will not be elaborated in detail here.

[0072] In the further optimization of this embodiment, the innovative element of the voice prompter 4 is introduced to further enhance the user experience and safety of the discharge rod with the discharge indication function.

[0073] The voice prompter 4 is cleverly integrated into the discharge rod body 1 and tightly connected to the switch button 3. This design ensures that whenever the operator presses the switch button 3 to change the discharge mode, the voice prompter 4 instantly responds with clear, accurate human voice prompts. Of course, when the discharge rod body 1 is hooked onto a live cable, not only will the static indicator 2 activate, but the voice prompter 4 will also provide a voice reminder, such as "The cable is live. Please complete the discharge operation before continuing normal operations."

[0074] This voice prompt feature is extremely important for power operations. First, it effectively prevents operator errors caused by obstructed vision or distracted attention. When switching discharge modes, the voice prompt 4 clearly informs the operator of the currently selected mode, ensuring a clear understanding of the discharge status, rather than a buzzer.

[0075] Secondly, the voice prompter 4 can also enhance the safety awareness of the operator. In power operations, any slight negligence may lead to serious consequences. The voice prompter 4 can constantly remind the operator to pay attention to safety by issuing human voice prompts, reducing the risk of accidents.

[0076] In addition, the addition of the voice prompter 4 also makes the operation of the discharge rod more convenient and efficient. The operator does not need to frequently check the indicator light or display screen, but only needs to operate according to the voice prompt, thereby improving work efficiency and operation quality.

[0077] In summary, the introduction of the voice prompter 4 is a highlight of this embodiment. It not only improves the functionality and practicality of the discharge rod, but also enhances the user experience and safety through humanized design.

[0078] In another thoughtful design of this embodiment, a visual observation window 5 is added to the discharge rod body 1. This innovative move is intended to allow the operator to intuitively observe whether the current limiting resistor is connected to the circuit.

[0079] The visual observation window 5 has been carefully positioned to facilitate observation without compromising the overall structural strength of the discharge rod. Made of highly transparent, wear-resistant material, it ensures the operator can clearly see what is happening inside the window.

[0080] When the discharge rod is in grounded discharge mode via a current-limiting resistor, the resistor is connected to the circuit. At this point, through the visual observation window 5, the operator can visually verify that the resistor is in place and correctly connected to the circuit. This intuitive observation method not only simplifies the operation process and improves work efficiency, but also significantly reduces the safety risks caused by the resistor not being connected or being improperly connected.

[0081] The visual observation window 5 also facilitates maintenance and repair of the device. When the current limiting resistor needs to be checked or replaced, the operator can quickly understand the connection status of the resistor through the observation window without having to disassemble the entire discharge rod, so as to take appropriate measures.

[0082] In summary, the introduction of the visual observation window 5 is an important improvement in this embodiment. It not only improves the safety and reliability of the discharge rod, but also improves the operator's work efficiency and satisfaction through an intuitive and convenient observation method.

[0083] In the in-depth optimization of this embodiment, the innovative design of a wearable monitoring device is introduced to further improve the safety and standardization of power operations.

[0084] The wear monitoring device is cleverly integrated into the discharge rod body 1. Its working principle is based on advanced sensor technology. The device can detect in real time whether the operator is wearing insulating gloves and transmit the detection results to the system in the form of a signal.

[0085] When an operator is working with a discharge rod without wearing insulating gloves, the wear monitoring device will immediately sound an alarm, reminding the operator to put on gloves immediately, such as "Not wearing insulating gloves! Do not use." This design effectively avoids the risk of electric shock caused by negligence or forgetfulness, providing a stronger safety guarantee for operators.

[0086] The wearable monitoring device also features data recording and analysis. It records the operator's wearable status during each operation, providing data support for subsequent safety management and training. Through data analysis, potential safety hazards can be promptly identified and resolved, improving the safety awareness and standardized operation of the entire power operation team.

[0087] Furthermore, the wearable monitoring device can be linked to other safety equipment. For example, it can work in conjunction with static electricity indicators, voice prompts, and other devices to form a complete safety protection system. If it detects that an operator is not wearing insulating gloves, it will not only issue an alarm signal but also issue a more explicit warning message through a voice prompt, ensuring that the operator can quickly take appropriate countermeasures.

[0088] It is understandable that the specific circuit design in the wearable monitoring device, such as sensors and processors, has the specific function of ensuring the normal monitoring function of the wearable monitoring device. Since these circuit designs have been widely implemented in the prior art and are not the focus of the design of this solution, they will not be elaborated in depth here.

[0089] In summary, the introduction of the wearable monitoring device is an important innovation in this embodiment. It not only improves the safety and standardization of power operations, but also provides operators with more comprehensive and detailed safety protection through intelligent monitoring methods.

[0090] The specific components of the discharge rod body 1 and their interrelationships are discussed in depth. As the core part of the entire discharge rod, the design of the discharge rod body 1 is not only related to discharge efficiency and safety, but also directly affects the user experience of the operator.

[0091] Specifically, the discharge rod body 1 comprises a discharge head 11, a connecting rod 12, an operating rod 13, and a discharge wire 14. The discharge head 11, a key component at the front end of the discharge rod, is responsible for contacting the target charged object and directing the current flow. It is connected to the connecting rod 12 via a detachable connection, such as a threaded connection. This design allows for replacement of different types of discharge heads 11, such as hook-type and needle-type heads, as needed, and allows for easy removal for maintenance, enhancing the device's flexibility and maintainability.

[0092] The connecting rod 12 serves as a bridge connecting the discharge head 11 and the operating rod 13. It not only serves as a channel for current transmission but also withstands the mechanical stresses that may be generated during the discharge process. Therefore, the material and structural design of the connecting rod 12 must meet the requirements of high strength, high conductivity, and corrosion resistance. The static electricity indicator 2 and the switching button 3 are specifically located on the connecting rod 12, allowing the operator to conveniently control the operating status of the discharge rod and obtain real-time feedback.

[0093] The operating rod 13 is the primary component for the operator to grip the discharge rod. Its material must possess excellent insulation properties and an ergonomic design to ensure safety and comfort during use. The operating rod 13 is also detachably connected to the connecting rod 12. The operating rod 13 is further subdivided into a telescopic rod 131 (for example, three 1-meter sections) and a handle 132. As an effective insulating component, the telescopic rod is free of modules or wires, both internally and externally, to ensure sufficient insulation length. Furthermore, the operating rod 13, specifically the handle 132, integrates various functions, including a power switch 7, a voice prompter 4, a power source for the voice prompter 4, and a charging port 8. When the discharge mode is switched using the toggle button 3, the changed discharge mode is wirelessly transmitted to the voice prompter 4, which then plays the current mode. The power switch 7 activates the power supply to the voice prompter 4. When the operator presses the power switch 7, the voice prompter 4 is powered and automatically plays the current discharge mode. The power switch 7 can be selected as a touch switch, so that when the operator holds the handle 132, it will inevitably touch the power switch 7, thereby triggering the voice prompter 4 to be powered, and when the operator lets go, the power will be turned off synchronously, which is very convenient to operate.

[0094] For example, the overall structure can be simplified by integrating the button of the power switch 7 with the touch sensor of the wearable monitoring device.

[0095] The discharge wire 14, a key path for current transmission, is electrically connected to the connecting rod 12 at one end and to the ground clamp at the other. During the discharge process, the discharge wire 14 is responsible for conducting the charge accumulated on the discharge head 11 to the ground through the ground clamp, thereby achieving the desired discharge. To ensure discharge efficiency and safety, the material, cross-sectional area, and length of the discharge wire 14 must be carefully designed and selected based on the specific application scenario.

[0096] In summary, the various components of the discharge rod body 1 cooperate with each other and are closely connected, forming an efficient, safe, and easy-to-use discharge tool. Its design not only reflects the high attention paid to the safety of power operations, but also fully considers the actual needs and user experience of operators.

[0097] In a further refinement of this embodiment, a practical accessory, a wire clip, is added to the discharge rod with a discharge indicator function. This small design improvement not only improves the convenience of using the discharge rod, but also enhances its stability and safety in actual operation.

[0098] The primary function of the wire clamp is to clamp and secure the discharge wire 14, maintaining a tight connection with the discharge rod body 1. During electrical operations, the discharge wire 14 often withstands high currents and mechanical stresses. If it's not securely fixed or connected tightly, it can lead to safety issues such as poor contact, current leakage, and even equipment damage. The wire clamp effectively addresses these issues.

[0099] The wire clamp secures the discharge wire 14 to the discharge rod body 1, maintaining a good connection even in complex and changing operating environments. This not only improves discharge efficiency but also reduces safety risks caused by loose connections.

[0100] Furthermore, the design of the wire clamp fully considers the actual needs of the operator. It is generally designed with a shape and material that is easy to grip and operate, allowing the operator to easily clamp the discharge wire 14 to the discharge rod body 1 and adjust it as needed. This user-friendly design undoubtedly enhances the overall user experience of the discharge rod.

[0101] Although this application frequently uses terms such as discharge rod body, static electricity indicator device, and switch button, the use of other terms is not excluded. These terms are used only to more conveniently describe and explain the essence of this utility model; interpreting them as any additional limitations is contrary to the spirit of this utility model.

[0102] The utility model provides a discharge rod with a discharge indication function. By arranging an electrostatic indication device on the discharge rod body, the electrostatic indication device can indicate whether the discharge rod body is charged, thereby ensuring that the discharge status can be fed back immediately and accurately during the discharge process, providing intuitive and clear operation guidance for operators, not only effectively reducing the risk of safety accidents caused by misjudgment, but also significantly improving the safety and efficiency of power operations, providing a solid guarantee for the stable operation of the power system.

[0103] Finally, it should be noted that although the above embodiments have been described in the specification and drawings of this application, this does not limit the scope of patent protection of this application. All technical solutions generated by replacing or modifying equivalent structures or equivalent processes based on the essential concepts of this application using the contents recorded in the specification and drawings of this application, as well as directly or indirectly implementing the technical solutions of the above embodiments in other related technical fields, are included in the scope of patent protection of this application.

Claims

1. A discharge rod with a discharge indication function, characterized in that: It comprises a discharge rod body (1) and an electrostatic indicator device (2); wherein, The static electricity indicating device (2) is provided on the discharge rod body (1) and is used to indicate whether the discharge rod body (1) is in a charged state or a de-charged state; The static electricity indicating device (2) comprises a static electricity indicator light; The static electricity indicator light is electrically connected to the discharge rod body (1) and is used to be energized when the discharge rod body (1) is charged, thereby indicating that the discharge rod body (1) is in a charged state, or to be de-energized when the discharge rod body (1) is not charged, thereby indicating that the discharge rod body (1) is in a non-charged state.

2. The discharge rod with discharge indication function according to claim 1, characterized in that: The static electricity indicating device (2) comprises a static electricity detection module and a static electricity indicator light; The static electricity detection module is sleeved on the discharge rod body (1) and is used to output a voltage when current flows through the discharge rod body (1); The static electricity indicator light is arranged on the discharge rod body (1) and is connected to the output end of the static electricity detection module, and is used to indicate that the discharge rod body (1) is in a charged state when receiving the output voltage from the static electricity detection module, or to indicate that the discharge rod body (1) is in a de-charged state when not receiving the output voltage from the static electricity detection module.

3. The discharge rod with discharge indication function according to claim 2, characterized in that: The static electricity detection module is a Hall sensor.

4. The discharge rod with discharge indication function according to claim 1 or 2, characterized in that: The electrostatic indicator light is a ring-shaped indicator light surrounding the discharge rod body (1) in the axial direction.

5. The discharge rod with discharge indication function according to claim 1, characterized in that: Also includes a toggle button (3); The switching button (3) is provided on the discharge rod body (1) and is used to switch the discharge rod body (1) to a direct grounding discharge mode, or to switch the discharge rod body (1) to a grounding discharge mode via a current limiting resistor.

6. The discharge rod with discharge indication function according to claim 5, characterized in that: Also includes a voice prompter (4); The voice prompter (4) is arranged on the discharge rod body (1) and is connected to the switch button (3) and is used to issue a corresponding human voice prompt when switching the discharge mode.

7. The discharge rod with discharge indication function according to claim 5 or 6, characterized in that: The discharge rod body (1) is provided with a visual observation window (5) for observing whether the current-limiting resistor is connected.

8. The discharge rod with discharge indication function according to claim 1, characterized in that: Also included are wearable monitoring devices; The wearing monitoring device is arranged on the discharge rod body (1) and is used to detect whether the operator is wearing insulating gloves.

9. The discharge rod with discharge indication function according to claim 1, characterized in that: The discharge rod body (1) comprises a discharge head (11), a connecting rod (12), an operating rod (13) and a discharge wire (14); The discharge head (11) is connected to the operating rod (13) via the connecting rod (12); the discharge head (11) and the connecting rod (12) are detachably connected; One end of the discharge wire (14) is electrically connected to the connecting rod (12), and the other end is electrically connected to the grounding clamp.