An electrostatic experience device

By combining static electricity generation, constant temperature and humidity control and electrostatic detection technology in the electrostatic experience device, the problem that existing devices cannot simulate the electrostatic conduction in the paint storage and spraying places is solved, and the effect of intuitively experiencing and managing static electricity in different environments is achieved.

CN115267359BActive Publication Date: 2025-06-17GAC HONDA AUTOMOBILE CO LTD
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Patent Information

Application Number
CN202210819718.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-12
Publication Date
2025-06-17
Estimated Expiration
2042-07-12

AI Technical Summary

Technical Problem

The existing electrostatic experience device cannot simulate the electrostatic conduction in paint storage places and paint spraying places, and cannot allow users to intuitively experience the electrostatic conduction in these places.

Method used

An electrostatic experience device is designed, including an electrostatic generation module, a constant temperature and humidity module and an electrostatic detection module. The electrostatic generation module generates static electricity and conducts it into the chamber body. The constant temperature and humidity module regulates the temperature and humidity in the chamber body. The electrostatic detection module detects and feedbacks the environmental static electricity value and the human body static electricity value in the chamber body.

Benefits of technology

The device can simulate electrostatic conduction under different temperatures and humidity environments, helping users to intuitively experience and manage the electrostatic environment in the paint storage and spraying sites.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses an electrostatic experience device, which includes a chamber body, an electrostatic generation module, a constant temperature and humidity module, and an electrostatic detection module; the electrostatic generation module is arranged on the inner surface of the chamber body for generating static electricity inside the chamber body; the constant temperature and humidity module is arranged on one side of the chamber body for delivering air with a gas temperature of a preset temperature and a gas humidity of a preset humidity into the chamber body; the electrostatic detection module is used for detecting the environmental static electricity value inside the chamber body and the human body static electricity value of the experiencing user when the temperature inside the chamber body is the preset temperature and the humidity inside the chamber body is the preset humidity, comparing the environmental static electricity value and the human body static electricity value with a preset environmental static electricity threshold and a preset human body static electricity threshold respectively, generating an electrostatic detection result, and feeding back the electrostatic detection result to the experiencing user. The present invention can simulate the electrostatic conduction situation under environments with different temperatures and humidities, and can accurately feed back the environmental static electricity detection result inside the chamber body and the human body static electricity detection result of the experiencing user.
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Description

Technical Field

[0001] The present invention relates to the technical field of simulation devices, and more particularly to an electrostatic experience device. Background Art

[0002] The paint used for painting vehicles is usually a flammable and explosive hazardous chemical. In paint storage sites and paint spraying sites, strict management of the static electricity amount in the sites is required to avoid fire and explosion accidents in the sites. Therefore, simulating the static electricity conduction in paint storage sites and paint spraying sites will help painters manage the static electricity amount in the sites.

[0003] Existing electrostatic experience devices usually cannot simulate the static electricity conduction in paint storage sites and paint spraying sites, so that users cannot intuitively experience the static electricity conduction in paint storage sites and paint spraying sites. Summary of the Invention

[0004] The present invention provides an electrostatic experience device to solve the problem that existing electrostatic experience devices cannot simulate the static electricity conduction in paint storage sites and paint spraying sites. Static electricity is generated by an electrostatic generation module and conducted to the air inside the chamber. The constant temperature and humidity module conveys air with a preset temperature and a preset humidity to the inside of the chamber, enabling the static electricity conduction in environments with different temperatures and humidities, so that it can be applied to simulate the static electricity conduction in paint storage sites and paint spraying sites. And through the electrostatic detection module, the environmental static electricity detection result inside the chamber and the human body static electricity detection result of the experiencing user can be accurately fed back, enabling the experiencing user to intuitively experience the static electricity conduction in environments with different temperatures and humidities.

[0005] To solve the above technical problems, an embodiment of the present invention provides an electrostatic experience device, including a chamber, an electrostatic generation module, a constant temperature and humidity module, and an electrostatic detection module;

[0006] The electrostatic generation module is provided on the inner surface of the chamber for generating static electricity inside the chamber;

[0007] The constant temperature and humidity module is provided on one side of the chamber for conveying air with a preset temperature and a preset humidity to the inside of the chamber;

[0008] The electrostatic detection module is used to detect the environmental static electricity value and the human body static electricity value inside the chamber when the temperature inside the chamber is the preset temperature and the humidity inside the chamber is the preset humidity, compare the environmental static electricity value and the human body static electricity value with a preset environmental static electricity threshold and a preset human body static electricity threshold respectively to generate an electrostatic detection result, and feed back the electrostatic detection result to the experiencing user.

[0009] As a preferred solution, the static electricity detection module includes an environmental static electricity detection unit, a human body static electricity detection unit, and a result feedback unit;

[0010] The static electricity detection unit is configured to detect the environmental static electricity value in the chamber when the temperature in the chamber is the preset temperature and the humidity in the chamber is the preset humidity, compare the environmental static electricity value with the preset environmental static electricity threshold, generate a first feedback signal, and send the first feedback signal to the result feedback unit;

[0011] The human body static electricity detection unit is configured to detect the human body static electricity value of the experiencing user in the chamber when the temperature in the chamber is the preset temperature and the humidity in the chamber is the preset humidity, compare the human body static electricity value with the preset human body static electricity threshold, generate a second feedback signal, and send the second feedback signal to the result feedback unit;

[0012] The result feedback unit is configured to generate a first static electricity detection result and a second static electricity detection result respectively according to the first feedback signal and the second feedback signal, and feedback the first static electricity detection result and the second static electricity detection result to the experiencing user.

[0013] As a preferred solution, the environmental static electricity detection unit includes an environmental static electricity detection head and an environmental static electricity detector;

[0014] The environmental static electricity detection head is arranged on the inner surface of the chamber and is used to transmit the environmental static electricity in the chamber to the environmental static electricity detector;

[0015] The environmental static electricity detector is configured to receive the environmental static electricity transmitted by the environmental static electricity detection head, generate an environmental static electricity value, compare the environmental static electricity value with the preset environmental static electricity threshold, generate a first feedback signal, and send the first feedback signal to the result feedback unit.

[0016] As a preferred solution, the human body static electricity detection unit includes a human body static electricity detection ball and a human body static electricity detector;

[0017] The human body static electricity detection ball is arranged on the inner surface of the chamber and is used to transmit the human body static electricity value of the experiencing user in the chamber to the human body static electricity detector;

[0018] The human body static electricity detector is configured to receive the human body static electricity transmitted by the human body static electricity detection ball, generate a human body static electricity value, compare the human body static electricity value with the preset human body static electricity threshold, generate a second feedback signal, and send the second feedback signal to the result feedback unit.

[0019] As a preferred solution, the result feedback unit includes a controller, an environmental static electricity value indicator light, a human body static electricity value indicator light, and a speaker;

[0020] The controller is configured to generate a first control signal for controlling the environmental static electricity value indicator light to light up and a second control signal for controlling the speaker to announce the first static electricity detection result according to the first feedback signal, and send the first control signal and the second control signal to the environmental static electricity value indicator light and the speaker respectively; generate a third control signal for controlling the human body static electricity value indicator light to light up and a fourth control signal for controlling the speaker to announce the second static electricity detection result according to the second feedback signal, and send the third control signal and the fourth control signal to the human body static electricity value indicator light and the speaker respectively;

[0021] The environmental static electricity value indicator light is arranged on the inner surface of the chamber body and is configured to light up according to the first control signal;

[0022] The human body static electricity value indicator light is arranged on the inner surface of the chamber body and is configured to light up according to the third control signal;

[0023] The speaker is arranged on the inner surface of the chamber body and is configured to announce the first static electricity detection result according to the second control signal; announce the second static electricity detection result according to the fourth control signal.

[0024] As a preferred solution, it further includes a grounding pedal and an insulating pedal;

[0025] The grounding pedal and the insulating pedal are arranged on the bottom surface inside the chamber body.

[0026] As a preferred solution, an air inlet is provided at the top of the chamber body, and the constant temperature and humidity module is arranged above the air inlet;

[0027] An air return opening is provided on the bottom surface inside the chamber body.

[0028] As a preferred solution, it further includes an equipment control module, which is used for:

[0029] Controlling the start switches of the static electricity generation module, the constant temperature and humidity module, and the static electricity detection module;

[0030] Setting the gas temperature and the gas humidity of the air conveyed by the constant temperature and humidity module.

[0031] As a preferred solution, it further includes a display panel;

[0032] The display panel is arranged on the inner surface of the chamber body;

[0033] An assembly port for the ambient static electricity value indicator light, an assembly port for the human body static electricity value indicator light, and an assembly port for the speaker are provided on the display panel;

[0034] The display panel is configured with a first display for displaying the ambient static electricity value, a second display for displaying the temperature and humidity in the chamber body, and a third display for displaying the human body static electricity value.

[0035] As a preferred solution, it further includes an electrostatic eliminator for removing the static electricity of the experience user before the experience user enters the chamber body.

[0036] Compared with the prior art, the beneficial effect of the embodiment of the present invention is that static electricity is generated by the static electricity generation module and conducted to the air in the chamber body, and air with a preset temperature and a preset humidity is delivered into the chamber body by the constant temperature and humidity module, so as to be able to conduct static electricity in environments with different temperatures and humidities, and thus can be applied to simulate the static electricity conduction conditions in a paint storage place and a paint spraying place. Moreover, through the static electricity detection module, the ambient static electricity detection result in the chamber body and the human body static electricity detection result of the experience user can be accurately fed back, enabling the experience user to intuitively experience the static electricity conduction conditions in environments with different temperatures and humidities. Description of the Drawings

[0037] Figure 1 is the front view of the static electricity experience device provided by the embodiment of the present invention;

[0038] Figure 2 is the top view of the static electricity experience device provided by the embodiment of the present invention;

[0039] Wherein, 1, chamber body; 101, first chamber body; 102, second chamber body; 2, static electricity generation module; 3, human body static electricity detection ball; 4, constant temperature and humidity module; 5, grounding pedal; 6, insulating pedal; 7, display panel; 701, human body static electricity value indicator light; 702, speaker; 703, ambient static electricity value indicator light; 704, first display; 705, second display; 706, third display; 8, control module; 9, electrostatic eliminator. Detailed Embodiments

[0040] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without making creative efforts belong to the protection scope of the present invention.

[0041] See Figure 1 and Figure 2, an embodiment of the present invention provides an electrostatic experience device, including a chamber body 1, an electrostatic generation module 2, a constant temperature and humidity module 4, and an electrostatic detection module;

[0042] The electrostatic generation module 2 is disposed on the inner surface of the chamber body 1 for generating static electricity in the chamber body 1;

[0043] The constant temperature and humidity module 4 is disposed on one side of the chamber body 1 for delivering air with a preset gas temperature and a preset gas humidity into the chamber body 1;

[0044] The electrostatic detection module is configured to detect the ambient static electricity value in the chamber body 1 and the human body static electricity value of the experiencing user when the temperature in the chamber body 1 is the preset temperature and the humidity in the chamber body 1 is the preset humidity, compare the ambient static electricity value and the human body static electricity value with a preset ambient static electricity threshold and a preset human body static electricity threshold respectively, generate an electrostatic detection result, and feedback the electrostatic detection result to the experiencing user.

[0045] In this embodiment, the electrostatic generation module 2 is disposed on the inner surface of the chamber body 1, generates static electricity, and conducts it to the air in the chamber body 1. The constant temperature and humidity module 4 is disposed on one side of the chamber body 1 and delivers air with a preset gas temperature and a preset gas humidity into the chamber body 1. Since the temperature and humidity of the environment affect the static electricity conduction situation in the environment, it is possible to simulate the static electricity conduction situation in environments with different temperatures and humidities. For example, setting the gas temperature to 26 °C and the gas humidity to 75% RH can simulate the static electricity suppression environment in a paint storage place and a paint spraying place; setting the gas temperature to 20 °C and the gas humidity to 45% RH can simulate the high-static-electricity environment in a paint storage place and a paint spraying place.

[0046] To more intuitively reflect the static electricity conduction situation at different temperatures and humidities, in this embodiment, the electrostatic detection module detects the ambient static electricity value in the chamber body 1 and the human body static electricity value of the experiencing user, and compares the detected ambient static electricity value and human body static electricity value with a preset ambient static electricity threshold and a preset human body static electricity threshold respectively to generate an electrostatic detection result, which can feedback to the experiencing user whether the current ambient static electricity value and human body static electricity value meet the safety requirements. It can be understood that different places have different requirements for the ambient static electricity value in the environment. The ambient static electricity threshold and the human body static electricity threshold can be set in advance according to the requirements of different places, so that during the experience process, the experiencing user can know whether the current ambient static electricity value and human body static electricity value meet the requirements of the current simulated place for the ambient static electricity value in the environment.

[0047] As one of the optional embodiments, the static electricity generating module 2 includes an electrostatic field generator and an electrostatic field generating sphere. The electrostatic field generating sphere is disposed on the inner surface of the chamber body 1, and the electrostatic field generator can generate static electricity with a maximum of 15,000 V on the electrostatic field generating sphere.

[0048] As one of the optional embodiments, the chamber body 1 is an insulating toughened glass chamber body 1.

[0049] An electrostatic experience device provided by an embodiment of the present invention generates static electricity through a static electricity generating module and conducts it to the air inside the chamber body. The constant temperature and humidity module conveys air with a preset temperature and a preset humidity to the inside of the chamber body, enabling the static electricity conduction situation in environments with different temperatures and humidities. Thus, it can be applied to simulate the static electricity conduction situations in paint storage places and paint spraying places. Moreover, through the static electricity detection module, it can accurately feedback the environmental static electricity detection result inside the chamber body and the human static electricity detection result of the experiencing user, enabling the experiencing user to intuitively experience the static electricity conduction situation in environments with different temperatures and humidities.

[0050] As a preferred solution, the static electricity detection module includes an environmental static electricity detection unit, a human static electricity detection unit, and a result feedback unit;

[0051] The environmental static electricity detection unit is configured to detect the environmental static electricity value inside the chamber body 1 when the temperature inside the chamber body 1 is the preset temperature and the humidity inside the chamber body 1 is the preset humidity, compare the environmental static electricity value with the preset environmental static electricity threshold, generate a first feedback signal, and send the first feedback signal to the result feedback unit;

[0052] The human static electricity detection unit is configured to detect the human static electricity value of the experiencing user inside the chamber body 1 when the temperature inside the chamber body 1 is the preset temperature and the humidity inside the chamber body 1 is the preset humidity, compare the human static electricity value with the preset human static electricity threshold, generate a second feedback signal, and send the second feedback signal to the result feedback unit;

[0053] The result feedback unit is configured to generate a first static electricity detection result and a second static electricity detection result respectively according to the first feedback signal and the second feedback signal, and feedback the first static electricity detection result and the second static electricity detection result to the experiencing user.

[0054] As one of the optional embodiments, according to the safety static electricity requirements of the paint storage place and the paint spraying place, the preset environmental static electricity thresholds are 500V and 3000V, and the preset human body static electricity thresholds are 250V and 2000V. Then, when the environmental static electricity value is less than 500V, it indicates that the current environmental static electricity value is qualified and meets the safety static electricity requirements; when the environmental static electricity value is greater than or equal to 500V and less than 3000V, it indicates that the current environmental static electricity value is on the high side and there are certain potential safety hazards; when the environmental static electricity value is greater than or equal to 3000V, it indicates that the current environmental static electricity value exceeds the standard and there are serious potential safety hazards. When the human body static electricity value is less than 250V, it indicates that the current human body static electricity value is qualified and meets the safety static electricity requirements; when the human body static electricity value is greater than or equal to 250V and less than 2000V, it indicates that the current human body static electricity value is on the high side and there are certain potential safety hazards; when the human body static electricity value is greater than or equal to 2000V, it indicates that the current human body static electricity value exceeds the standard and there are serious potential safety hazards.

[0055] As a preferred solution, the environmental static electricity detection unit includes an environmental static electricity detection head and an environmental static electricity detector;

[0056] The environmental static electricity detection head is arranged on the inner surface of the chamber body 1 and is used for transmitting the environmental static electricity in the chamber body 1 to the environmental static electricity detector;

[0057] The environmental static electricity detector is used for receiving the environmental static electricity transmitted by the environmental static electricity detection head, generating an environmental static electricity value, comparing the environmental static electricity value with the preset environmental static electricity threshold, generating a first feedback signal, and sending the first feedback signal to the result feedback unit.

[0058] As a preferred solution, the human body static electricity detection unit includes a human body static electricity detection ball 3 and a human body static electricity detector;

[0059] The human body static electricity detection ball 3 is arranged on the inner surface of the chamber body 1 and is used for transmitting the human body static electricity value of the user experiencing in the chamber body 1 to the human body static electricity detector;

[0060] The human body static electricity detector is used for receiving the human body static electricity transmitted by the human body static electricity detection ball 3, generating a human body static electricity value, comparing the human body static electricity value with the preset human body static electricity threshold, generating a second feedback signal, and sending the second feedback signal to the result feedback unit.

[0061] As a preferred solution, the result feedback unit includes a controller, an environmental static electricity value indicator light 703, a human body static electricity value indicator light 701 and a speaker 702;

[0062] The controller is configured to generate a first control signal for controlling the ambient static electricity value indicator 703 to turn on and a second control signal for controlling the speaker 702 to announce the first static electricity detection result based on the first feedback signal, and send the first control signal and the second control signal to the ambient static electricity value indicator 703 and the speaker 702 respectively; generate a third control signal for controlling the human body static electricity value indicator 701 to turn on and a fourth control signal for controlling the speaker 702 to announce the second static electricity detection result based on the second feedback signal, and send the third control signal and the fourth control signal to the human body static electricity value indicator 701 and the speaker 702 respectively;

[0063] The ambient static electricity value indicator 703 is provided on the inner surface of the chamber body 1 and is configured to turn on according to the first control signal;

[0064] The human body static electricity value indicator 701 is provided on the inner surface of the chamber body 1 and is configured to turn on according to the third control signal;

[0065] The speaker 702 is provided on the inner surface of the chamber body 1 and is configured to announce the first static electricity detection result according to the second control signal; announce the second static electricity detection result according to the fourth control signal.

[0066] In this embodiment, the ambient static electricity value indicator 703, the human body static electricity value indicator 701 and the speaker 702 are used to feedback the static electricity result to the experience user, so that the experience user can more intuitively know whether the current ambient static electricity value and human body static electricity value meet the safety requirements of the current simulated environment.

[0067] As an optional embodiment, the ambient static electricity value indicator 703 includes a green indicator light, a yellow indicator light and a red indicator light. When the ambient static electricity value is a qualified value compared with the preset ambient static electricity threshold, the controller sends a first control signal for controlling the green indicator light to turn on to the ambient static electricity value indicator 703 based on the first feedback signal sent by the ambient static electricity detection unit; when the ambient static electricity value is on the high side compared with the preset ambient static electricity threshold, the controller sends a first control signal for controlling the yellow indicator light to turn on to the ambient static electricity value indicator 703 based on the first feedback signal sent by the ambient static electricity detection unit; when the ambient static electricity value exceeds the standard compared with the preset ambient static electricity threshold, the controller sends a first control signal for controlling the red indicator light to turn on to the ambient static electricity value indicator 703 based on the first feedback signal sent by the ambient static electricity detection unit.

[0068] As one of the optional embodiments, the human body static electricity value indicator light 701 includes a green indicator light, a yellow indicator light, and a red indicator light. When the human body static electricity value is a qualified value compared with the preset human body static electricity threshold, the controller sends a third control signal for controlling the green indicator light to light up to the human body static electricity value indicator light 701 according to the second feedback signal sent by the human body static electricity detection unit; when the human body static electricity value is on the high side compared with the preset human body static electricity threshold, the controller sends a third control signal for controlling the yellow indicator light to light up to the human body static electricity value indicator light 701 according to the second feedback signal sent by the human body static electricity detection unit; when the human body static electricity value exceeds the standard compared with the preset human body static electricity threshold, the controller sends a third control signal for controlling the red indicator light to light up to the human body static electricity value indicator light 701 according to the second feedback signal sent by the human body static electricity detection unit.

[0069] Exemplarily, when the environmental static electricity value or the human body static electricity value is a qualified value, the speaker 702 broadcasts "The environmental static electricity value is qualified" or "The human body static electricity value is qualified"; when the environmental static electricity value or the human body static electricity value is on the high side, the speaker 702 broadcasts "The environmental static electricity value is on the high side" or "The human body static electricity value is on the high side"; when the environmental static electricity value or the human body static electricity value exceeds the standard, the speaker 702 broadcasts "The environmental static electricity value exceeds the standard" or "The human body static electricity value exceeds the standard".

[0070] As a preferred solution, it further includes a grounding pedal 5 and an insulating pedal 6;

[0071] The grounding pedal 5 and the insulating pedal 6 are arranged on the bottom surface inside the chamber body 1.

[0072] It should be noted that when the experience user stands on the grounding pedal 5, it is equivalent to simulating that the experience user wears anti-static shoes to experience the human body's charged situation in the current simulated environment; when the experience user stands on the insulating pedal 6, it is equivalent to simulating that the experience user does not wear anti-static shoes to experience the human body's charged situation in the current simulated environment.

[0073] As one of the optional embodiments, the chamber body 1 includes a first chamber body 101 and a second chamber body 102. The first chamber body 101 and the second chamber body 102 are separated by insulating tempered glass. The grounding pedal 5 is arranged inside the first chamber body 101, the insulating pedal 6 is arranged inside the second chamber body 102, and both the first chamber body 101 and the second chamber body 102 are configured with a static electricity generation module 2, a constant temperature and humidity module 4, and a static electricity detection module.

[0074] As one of the optional embodiments, the bottom surface inside the chamber body 1 is an insulating composite wood board base, and the grounding pedal 5 and the insulating pedal 6 are arranged on the insulating composite wood board base.

[0075] As a preferred solution, an air inlet is provided at the top of the chamber body 1, and the constant temperature and humidity module 4 is arranged above the air inlet;

[0076] The bottom surface inside the chamber body 1 is provided with an air return opening.

[0077] As a preferred solution, it further includes an equipment control module 8 for:

[0078] Controlling the start switches of the electrostatic generation module 2, the constant temperature and humidity module 4, and the electrostatic detection module;

[0079] Setting the gas temperature and the gas humidity of the air delivered by the constant temperature and humidity module 4.

[0080] In this embodiment, the equipment control module 8 is used to set the gas temperature and the gas humidity of the air delivered by the constant temperature and humidity module 4. As an alternative embodiment, the gas temperature adjustment range of the constant temperature and humidity module 4 is 18°C to 30°C, and the gas humidity adjustment range is 40%RH to 75%RH.

[0081] As a preferred solution, it further includes a display panel 7;

[0082] The display panel 7 is arranged on the inner surface of the chamber body 1;

[0083] The display panel 7 is provided with an assembly port for the ambient static electricity value indicator light 703, an assembly port for the human body static electricity value indicator light 701, and an assembly port for the speaker 702;

[0084] The display panel 7 is configured with a first display 704 for displaying the ambient static electricity value, a second display 705 for displaying the temperature and humidity inside the chamber body 1, and a third display 706 for displaying the human body static electricity value.

[0085] As a preferred solution, it further includes an electrostatic eliminator 9 for removing the static electricity of the experience user before the experience user enters the chamber body 1.

[0086] It should be noted that, in order to more accurately detect the human body's charged condition of the experience user in the simulated environment, this embodiment is provided with an electrostatic eliminator 9 for removing the static electricity of the experience user before the experience user enters the chamber body 1.

[0087] The above is the preferred implementation manner of the present invention. It should be pointed out that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can still be made, and these improvements and refinements are also regarded as the protection scope of the present invention.

Claims

1. An electrostatic experience device, characterized in that, It includes a chamber body, an electrostatic generation module, a constant temperature and humidity module, and an electrostatic detection module; The electrostatic generation module is provided on the inner surface of the chamber body for generating static electricity in the chamber body and conducting it to the air in the chamber body; The constant temperature and humidity module is provided on one side of the chamber body for delivering air with a gas temperature of a preset temperature and a gas humidity of a preset humidity into the chamber body to simulate the electrostatic conduction situation under the environment of the preset temperature and the preset humidity; The electrostatic detection module is used to detect the environmental static electricity value in the chamber body and the human static electricity value of the experiencing user when the temperature in the chamber body is the preset temperature and the humidity in the chamber body is the preset humidity, compare the environmental static electricity value and the human static electricity value with a preset environmental static electricity threshold and a preset human static electricity threshold respectively, generate an electrostatic detection result, and feedback the electrostatic detection result to the experiencing user.

2. The electrostatic experience device according to claim 1, characterized in that, The electrostatic detection module includes an environmental static electricity detection unit, a human static electricity detection unit, and a result feedback unit; The environmental static electricity detection unit is used to detect the environmental static electricity value in the chamber body when the temperature in the chamber body is the preset temperature and the humidity in the chamber body is the preset humidity, compare the environmental static electricity value with the preset environmental static electricity threshold, generate a first feedback signal, and send the first feedback signal to the result feedback unit; The human static electricity detection unit is used to detect the human static electricity value of the experiencing user in the chamber body when the temperature in the chamber body is the preset temperature and the humidity in the chamber body is the preset humidity, compare the human static electricity value with the preset human static electricity threshold, generate a second feedback signal, and send the second feedback signal to the result feedback unit; The result feedback unit is used to generate a first electrostatic detection result and a second electrostatic detection result respectively according to the first feedback signal and the second feedback signal, and feedback the first electrostatic detection result and the second electrostatic detection result to the experiencing user.

3. The electrostatic experience device according to claim 2, characterized in that, The environmental static electricity detection unit includes an environmental static electricity detection head and an environmental static electricity detector; The environmental static electricity detection head is provided on the inner surface of the chamber body for transmitting the environmental static electricity in the chamber body to the environmental static electricity detector; The environmental static electricity detector is used to receive the environmental static electricity transmitted by the environmental static electricity detection head, generate an environmental static electricity value, compare the environmental static electricity value with the preset environmental static electricity threshold, generate a first feedback signal, and send the first feedback signal to the result feedback unit.

4. The electrostatic experience device according to claim 3, characterized in that, The human static electricity detection unit includes a human static electricity detection ball and a human static electricity detector; The human static electricity detection ball is provided on the inner surface of the chamber body for transmitting the human static electricity value of the experiencing user in the chamber body to the human static electricity detector; The human static electricity detector is used to receive the human static electricity transmitted by the human static electricity detection ball, generate a human static electricity value, compare the human static electricity value with the preset human static electricity threshold, generate a second feedback signal, and send the second feedback signal to the result feedback unit.

5. The electrostatic experience device according to claim 4, characterized in that, The result feedback unit includes a controller, an environmental static electricity value indicator light, a human body static electricity value indicator light, and a speaker; The controller is configured to generate a first control signal for controlling the lighting of the environmental static electricity value indicator light and a second control signal for controlling the speaker to announce the first static electricity detection result according to the first feedback signal, and send the first control signal and the second control signal to the environmental static electricity value indicator light and the speaker respectively; generate a third control signal for controlling the lighting of the human body static electricity value indicator light and a fourth control signal for controlling the speaker to announce the second static electricity detection result according to the second feedback signal, and send the third control signal and the fourth control signal to the human body static electricity value indicator light and the speaker respectively; The environmental static electricity value indicator light is arranged on the inner surface of the chamber body and is configured to light up according to the first control signal; The human body static electricity value indicator light is arranged on the inner surface of the chamber body and is configured to light up according to the third control signal; The speaker is arranged on the inner surface of the chamber body and is configured to announce the first static electricity detection result according to the second control signal; announce the second static electricity detection result according to the fourth control signal.

6. The electrostatic experience device according to claim 1, characterized in that, It further includes a grounding pedal and an insulating pedal; The grounding pedal and the insulating pedal are arranged on the bottom surface inside the chamber body.

7. The electrostatic experience device according to claim 1, characterized in that, An air inlet is provided at the top of the chamber body, and the constant temperature and humidity module is arranged above the air inlet; A return air outlet is provided on the bottom surface inside the chamber body.

8. The electrostatic experience device according to claim 1, characterized in that, It further includes a device control module, which is used for: Controlling the start switches of the static electricity generation module, the constant temperature and humidity module, and the static electricity detection module; Setting the gas temperature and the gas humidity of the air conveyed by the constant temperature and humidity module.

9. The electrostatic experience device according to claim 5, characterized in that, It further includes a display panel; The display panel is arranged on the inner surface of the chamber body; Assembly ports for the environmental static electricity value indicator light, the human body static electricity value indicator light, and the speaker are provided on the display panel; A first display for displaying the environmental static electricity value, a second display for displaying the temperature and humidity inside the chamber body, and a third display for displaying the human body static electricity value are configured on the display panel.

10. The electrostatic experience device according to claim 1, characterized in that, It further includes an electrostatic eliminator, which is used for removing the static electricity of the experience user before the experience user enters the chamber body.

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