Safe somatosensory equipment and experimental method thereof

By introducing a combination design of beaker, hazardous chemical storage tank and solenoid valve into the safe somatosensory equipment, the liquid transmission is controlled, and the problem of insufficient safety of existing equipment is solved and the safety and authenticity of training is improved.

CN120279804APending Publication Date: 2025-07-08BEIJING SHOUGANG CO LTD
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Patent Information

Application Number
CN202510579462.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

The existing safe somatosensory equipment is poor in safety, making it difficult to effectively simulate the actual operation scenarios of hazardous chemicals, resulting in poor training results.

Method used

The combination design of multiple beakers, hazardous chemical storage tanks, corrosion-resistant pipelines and solenoid valves is adopted to control the liquid transmission between the hazardous chemical storage tanks and beakers through solenoid valves to avoid direct contact with hazardous chemicals.

Benefits of technology

It improves the safety of safe somatosensory equipment, reduces the probability of accidents, and enhances the authenticity and safety of training.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a safe somatosensory device and an experiment method thereof, and relates to the technical field of safety education training. The safety somatosensory device comprises: a device housing; the beakers are arranged in the equipment box body; the hazardous chemical substance storage tank is arranged in the equipment box body, and the hazardous chemical substance storage tank is used for storing acid liquor; the anti-corrosion pipeline is arranged in the equipment box body, and the first end of the anti-corrosion pipeline is arranged in the hazardous chemical substance storage tank; the first backflow electromagnetic valve, the second backflow electromagnetic valve and the liquid feeding electromagnetic valve are arranged on the anti-corrosion pipeline, and when the liquid feeding electromagnetic valve is opened and the first backflow electromagnetic valve and the second backflow electromagnetic valve are closed, the first backflow electromagnetic valve and the second backflow electromagnetic valve are closed. Acid liquor in the hazardous chemical substance storage tank flows into any beaker in the plurality of beakers through the anti-corrosion pipeline; when the liquid feeding electromagnetic valve is closed and the first backflow electromagnetic valve and the second backflow electromagnetic valve are opened, the acid liquid in any beaker flows back to the hazardous chemical substance storage tank through the anti-corrosion pipeline. According to the invention, the safety of the safe somatosensory equipment is improved, and the occurrence probability of accidents is reduced.
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Description

Technical Field

[0001] This application relates to the technical field of safety education and training, and particularly relates to a safety somatosensory device and an experimental method thereof. Background Art

[0002] Insufficient training in industrial enterprises is a major safety hazard. Moreover, safety education and training are separated from the dangerous environment and the production front line, making it difficult to reproduce the specific scenarios of accident near misses and safety emergency responses, resulting in poor learning and training conditions. Existing training somatosensory devices have technical problems such as poor safety. Summary of the Invention

[0003] Embodiments of this application provide a safety somatosensory device and an experimental method thereof to solve technical problems such as poor safety of safety somatosensory devices in the prior art.

[0004] In a first aspect of the embodiments of this application, a safety somatosensory device is provided, including:

[0005] A device box body;

[0006] A plurality of beakers, arranged in the device box body;

[0007] A hazardous chemical storage tank, arranged in the device box body, and the hazardous chemical storage tank is used for storing acid solution;

[0008] An anti-corrosion pipeline, arranged in the device box body, and a first end of the anti-corrosion pipeline is arranged in the hazardous chemical storage tank;

[0009] A first reflux solenoid valve, a second reflux solenoid valve, and a liquid supply solenoid valve, which are respectively arranged on the anti-corrosion pipeline;

[0010] When the liquid supply solenoid valve is opened and the first reflux solenoid valve and the second reflux solenoid valve are closed, the acid solution inside the hazardous chemical storage tank flows into any one of the plurality of beakers through the anti-corrosion pipeline;

[0011] When the liquid supply solenoid valve is closed and the first reflux solenoid valve and the second reflux solenoid valve are opened, the acid solution inside any one of the beakers flows back to the hazardous chemical storage tank through the anti-corrosion pipeline.

[0012] In the safety somatosensory device of this embodiment, by controlling the liquid transfer between the hazardous chemical storage tank and the beakers through the first reflux solenoid valve, the second reflux solenoid valve, and the liquid supply solenoid valve, the safety of the safety somatosensory device is improved, and the probability of accidents is reduced.

[0013] In a second aspect of the embodiments of this application, an experimental method of a safety somatosensory device is provided. The safety somatosensory device is the safety somatosensory device defined in the first aspect above. The experimental method of the safety somatosensory device includes:

[0014] When an experimental object is placed in any one of a plurality of beakers, in response to a first instruction, the acid solution in the hazardous chemical storage tank is controlled to flow into any one of the beakers through an anti-corrosion pipeline, so as to perform corrosion treatment on the experimental object with sulfuric acid in any one of the beakers.

[0015] The experimental method of the safety experience device in this embodiment improves the safety of the safety experience device and reduces the probability of accidents. Description of the Drawings

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0017] Figure 1 It is a schematic structural diagram of the safety experience device provided by the embodiment of the present application;

[0018] Figure 2 It is a schematic power distribution diagram of the safety experience device provided by the embodiment of the present application;

[0019] Among them, Figure 1 The corresponding relationship between the reference numerals and the component names in the drawings is as follows:

[0020] 100 safety experience device, 101 device box, 102 beaker, 103 hazardous chemical storage tank, 104 anti-corrosion pipeline, 105 first reflux solenoid valve, 106 second reflux solenoid valve, 107 liquid supply solenoid valve, 108 lighting lamp, 109 ventilation fan, 110 magnetic stirrer heating rod, 111 magnetic stirrer heater, 112 electric diaphragm pump, 113 filter, 114 distribution solenoid valve. Detailed Embodiments

[0021] In order to better understand the technical solutions provided by the embodiments of this specification, the following will make a detailed description of the technical solutions of the embodiments of this specification through the drawings and specific embodiments. It should be understood that the specific features in the embodiments of this specification and the embodiments are detailed descriptions of the technical solutions of the embodiments of this specification, rather than limitations on the technical solutions of this specification. Without conflict, the technical features in the embodiments of this specification and the embodiments can be combined with each other.

[0022] In this document, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or device comprising the element. The term "more than two" includes two or more than two cases.

[0023] In some embodiments, as Figure 1 shown, in an embodiment of the present application, a safety somatosensory device 100 is provided, including:

[0024] A device box body 101;

[0025] A plurality of beakers 102, arranged in the device box body 101;

[0026] A hazardous chemical storage tank 103, arranged in the device box body 101, and the hazardous chemical storage tank 103 is used for storing acid solution;

[0027] An anti-corrosion pipeline 104, arranged in the device box body 101, and a first end of the anti-corrosion pipeline 104 is arranged in the hazardous chemical storage tank 103;

[0028] A first return solenoid valve 105, a second return solenoid valve 106 and a liquid supply solenoid valve 107, and the first return solenoid valve 105, the second return solenoid valve 106 and the liquid supply solenoid valve 107 are respectively arranged on the anti-corrosion pipeline 104;

[0029] When the liquid supply solenoid valve 107 is opened and the first return solenoid valve 105 and the second return solenoid valve 106 are closed, the acid solution inside the hazardous chemical storage tank 103 flows into any one of the plurality of beakers 102 through the anti-corrosion pipeline 104;

[0030] When the liquid supply solenoid valve 107 is closed and the first return solenoid valve 105 and the second return solenoid valve 106 are opened, the acid solution inside any one of the beakers 102 flows back into the hazardous chemical storage tank 103 through the anti-corrosion pipeline 104.

[0031] In this embodiment, a safety somatosensory device 100 is proposed, and the safety somatosensory device 100 is a device for employee safety training.

[0032] Exemplarily, the safety somatosensory device 100 may be a somatosensory device for hazardous chemicals.

[0033] The safety somatosensory device 100 includes a device box body 101, where the device box body 101 is the box shell of the safety somatosensory device 100.

[0034] The safety somatosensory device 100 further includes a plurality of beakers 102, and the plurality of beakers 102 are arranged in the device box body 101.

[0035] Exemplarily, the plurality of beakers 102 are arranged in the upper half of the device box body 101.

[0036] The safety somatosensory device 100 further includes a hazardous chemical storage tank 103, and the hazardous chemical storage tank 103 is arranged in the device box body 101 for storing acid solution.

[0037] Exemplarily, the hazardous chemical storage tank 103 is placed in the lower half of the device box body 101.

[0038] Exemplarily, the hazardous chemical storage tank 103 is placed below the device box body 101 and fixedly connected using anchor bolts.

[0039] The safety somatosensory device 100 further includes a corrosion-resistant pipeline 104, and the corrosion-resistant pipeline 104 is distributed inside the device box body 101, where the first end of the corrosion-resistant pipeline 104 is arranged in the hazardous chemical storage tank 103.

[0040] Exemplarily, the corrosion-resistant pipeline 104 can resist the corrosion of strong acids or strong alkalis.

[0041] The safety somatosensory device 100 further includes a first return solenoid valve 105, a second return solenoid valve 106, and a liquid supply solenoid valve 107. The first return solenoid valve 105, the second return solenoid valve 106, and the liquid supply solenoid valve 107 are respectively arranged on the corrosion-resistant pipeline 104.

[0042] Exemplarily, the liquid supply solenoid valve 107 is used to drain the liquid in the hazardous chemical storage tank 103 into the beaker 102.

[0043] Exemplarily, the first return solenoid valve 105 and the second return solenoid valve 106 are used to return the liquid to the hazardous chemical storage tank 103.

[0044] Exemplarily, mark the installation positions of the solenoid valves, lay the corrosion-resistant pipeline 104, and then install and fix the solenoid valves.

[0045] Exemplarily, the opening and closing states of the first return solenoid valve 105, the second return solenoid valve 106, and the liquid supply solenoid valve 107 can be infinitely controlled.

[0046] When the liquid filling solenoid valve 107 is opened and the first reflux solenoid valve 105 and the second reflux solenoid valve 106 are closed, the acid liquid inside the hazardous chemical storage tank 103 flows into any one of the plurality of beakers 102 through the corrosion-resistant pipeline 104.

[0047] When the liquid filling solenoid valve 107 is closed and the first reflux solenoid valve 105 and the second reflux solenoid valve 106 are opened, the acid liquid inside any one of the beakers 102 flows back to the hazardous chemical storage tank 103 through the corrosion-resistant pipeline 104.

[0048] Exemplarily, the liquid filling solenoid valve 107, the first reflux solenoid valve 105, and the second reflux solenoid valve 106 can be three-way solenoid valves.

[0049] It should be noted that through independent valves such as the first reflux solenoid valve 105, the second reflux solenoid valve 106, and the liquid filling solenoid valve 107, the liquid transfer between the hazardous chemical storage tank 103 and the beaker 102 is controlled, avoiding employees' direct contact with dangerous chemicals, improving the safety of the safety experience device 100, and preventing dangerous accidents from occurring to employees.

[0050] In the safety experience device 100 of this embodiment, through the first reflux solenoid valve 105, the second reflux solenoid valve 106, and the liquid filling solenoid valve 107, the liquid transfer between the hazardous chemical storage tank 103 and the beaker 102 is controlled, improving the safety of the safety experience device 100 and reducing the probability of accidents.

[0051] In some embodiments, in the embodiments of the present application, a safety experience device 100 is provided.

[0052] The plurality of beakers 102 include a first beaker and a second beaker;

[0053] The corrosion-resistant pipeline 104 includes a first branch and a second branch;

[0054] The first end of the first branch is disposed in the first beaker, and the first end of the second branch is disposed in the second beaker.

[0055] In this embodiment, the plurality of beakers 102 include a first beaker and a second beaker, and the corrosion-resistant pipeline 104 includes a first branch and a second branch.

[0056] Among them, the first end of the first branch is disposed in the first beaker, and the first end of the second branch is disposed in the second beaker.

[0057] In some embodiments, in the embodiments of the present application, a safety experience device 100 is provided, and the safety experience device 100 further includes:

[0058] The distribution solenoid valve 114 is arranged on the anti-corrosion pipeline 104, and the second ends of the first branch and the second branch are connected to the distribution solenoid valve 114;

[0059] When the distribution solenoid valve 114 is closed, the acid solution flows between the hazardous chemical storage tank 103 and the first beaker through the first branch;

[0060] When the distribution solenoid valve 114 is open, the acid solution flows between the hazardous chemical storage tank 103 and the second beaker through the second branch.

[0061] In this embodiment, the safety experience device 100 further includes a distribution solenoid valve 114, which is arranged on the anti-corrosion pipeline 104. At the same time, the second ends of the first branch and the second branch are connected to the distribution solenoid valve 114.

[0062] When the distribution solenoid valve 114 is closed, the first branch is connected to the hazardous chemical storage tank 103, and the acid solution flows between the hazardous chemical storage tank 103 and the first beaker through the first branch.

[0063] When the distribution solenoid valve 114 is open, the second branch is connected to the hazardous chemical storage tank 103, and the acid solution flows between the hazardous chemical storage tank 103 and the second beaker through the second branch.

[0064] In some embodiments, an embodiment of the present application provides a safety experience device 100, and the safety experience device 100 further includes:

[0065] In some embodiments, an embodiment of the present application provides a safety experience device 100, and the safety experience device 100 further includes:

[0066] A lighting lamp 108 and a ventilation fan 109, and the lighting lamp 108 and the ventilation fan 109 are respectively arranged in the equipment box body 101;

[0067] The ventilation fan 109 is used to evacuate the smoke inside the equipment box body 101;

[0068] The lighting lamp 108 is used to illuminate the internal space of the equipment box body 101.

[0069] In this embodiment, the safety experience device 100 further includes a lighting lamp 108 and a ventilation fan 109, and the lighting lamp 108 and the ventilation fan 109 are respectively installed inside the equipment box body 101.

[0070] Exemplarily, the lighting lamp 108 can be an LED magnetic adsorption lamp.

[0071] Exemplarily, the ventilation fan 109 is installed at the pre-drilled position and fixed with bolts. The LED magnetic adsorption lamp is installed. The LED magnetic adsorption lamp has its own magnet and can be adsorbed on the equipment box body 101.

[0072] Detect whether there is smoke inside the equipment box body 101. When it is detected that there is smoke inside the equipment box body 101, start the ventilation fan 109.

[0073] Detect the brightness inside the equipment box body 101. When it is detected that the brightness inside the equipment box body 101 is less than the brightness threshold, start the lighting lamp 108.

[0074] Exemplarily, the brightness threshold can be a preset brightness value.

[0075] In some embodiments, in the embodiments of the present application, a safety somatosensory device 100 is provided. The safety somatosensory device 100 further includes:

[0076] Multiple groups of heating devices. Each group of heating devices includes a magnetic stirring heating rod 110 and a magnetic stirring heater 111. The multiple groups of heating devices correspond to multiple beakers 102 one by one;

[0077] For each group of heating devices, the magnetic stirring heating rod 110 in this group of heating devices is arranged inside the corresponding beaker, and the magnetic stirring heater 111 in this group of heating devices is arranged below the corresponding beaker 102 for heating the beaker 102.

[0078] In this embodiment, the safety somatosensory device 100 further includes multiple groups of heating devices. Each group of heating devices includes a magnetic stirring heating rod 110 and a magnetic stirring heater 111. The multiple groups of heating devices correspond to multiple beakers 102 one by one. The magnetic stirring heating rod 110 is used to stir the substances in the beaker 102, and the magnetic stirring heater 111 is used to heat the substances in the beaker 102.

[0079] The multiple magnetic stirring heating rods 110 and the multiple magnetic stirring heaters 111 are supporting components. The multiple magnetic stirring heating rods 110 correspond to the multiple beakers 102 one by one, and the multiple magnetic stirring heaters 111 correspond to the multiple beakers 102 one by one.

[0080] Exemplarily, place 2 sets of magnetic stirring heaters 111 on the upper part of the equipment box body 101, then fix the pre-laid anti-corrosion pipeline 104, and place the beaker 102 on the trays of the 2 sets of magnetic stirring heaters 111.

[0081] For each set of heating devices, the magnetic stirring heating rod 110 in the set of heating devices is disposed inside the corresponding beaker, and the magnetic stirring heater 111 in the set of heating devices is disposed below the corresponding beaker 102 for heating the beaker 102.

[0082] Exemplarily, the magnetic stirring heating rod 110 is provided with a motor, and the motor drives the magnetic stirring heating rod 110 to perform a stirring operation.

[0083] In some embodiments, an embodiment of the present application provides a safety somatosensory device 100, and the safety somatosensory device 100 further includes:

[0084] An electric diaphragm pump 112, which is disposed on the anti-corrosion pipeline 104;

[0085] When the liquid filling solenoid valve 107 is opened and the first return solenoid valve 105 and the second return solenoid valve 106 are closed, the electric diaphragm pump 112 is used to transport the acid liquid inside the hazardous chemical storage tank 103 to any one of the plurality of beakers 102 through the anti-corrosion pipeline.

[0086] When the liquid filling solenoid valve 107 is closed and the first return solenoid valve 105 and the second return solenoid valve 106 are opened, the electric diaphragm pump 112 is used to transport the acid liquid inside any one of the beakers 102 to the hazardous chemical storage tank 103 through the anti-corrosion pipeline 104.

[0087] In this embodiment, the safety somatosensory device 100 further includes an electric diaphragm pump 112, and the electric diaphragm pump 112 is a power pump in the safety somatosensory device 100.

[0088] Exemplarily, the electric diaphragm pump 112 is installed above the hazardous chemical storage tank 103 and fixed to the back iron plate inside the box using bolts and lock nuts.

[0089] When the liquid filling solenoid valve 107 is opened and the first return solenoid valve 105 and the second return solenoid valve 106 are closed, the electric diaphragm pump 112 is used to transport the acid liquid inside the hazardous chemical storage tank 103 to any one of the plurality of beakers 102 through the anti-corrosion pipeline.

[0090] When the liquid filling solenoid valve 107 is closed and the first return solenoid valve 105 and the second return solenoid valve 106 are opened, the electric diaphragm pump 112 is used to transport the acid liquid inside any one of the beakers 102 to the hazardous chemical storage tank 103 through the anti-corrosion pipeline 104.

[0091] In some embodiments, an embodiment of the present application provides a safety somatosensory device 100, and the safety somatosensory device 100 further includes:

[0092] Filter 113 is disposed at the first end of the corrosion-resistant pipeline 104.

[0093] In this embodiment, the safety perception device 100 further includes a filter 113, which is placed inside the hazardous chemical storage tank 103 and installed at the first end of the corrosion-resistant pipeline 104.

[0094] Exemplarily, the filter 113 is installed at a fixed position and fixed using a clamp.

[0095] In some embodiments, an experimental method for a safety perception device provided in the embodiments of the present application includes:

[0096] Step S201, when an experimental object is placed in any one of a plurality of beakers, in response to a first instruction, controlling the acid solution in the hazardous chemical storage tank to flow into any one of the beakers through the corrosion-resistant pipeline, so as to perform a corrosion treatment on the experimental object with sulfuric acid in any one of the beakers.

[0097] In this embodiment, an experimental method for a safety perception device is proposed, and the safety perception device is the safety perception device in any of the above embodiments.

[0098] When an experimental object is placed in any one of a plurality of beakers, in response to a first instruction.

[0099] Exemplarily, the first instruction is an experimental start instruction input by the user.

[0100] In response to the first instruction, controlling the acid solution in the hazardous chemical storage tank to flow into any one of the beakers through the corrosion-resistant pipeline, so as to perform a corrosion treatment on the experimental object with sulfuric acid in any one of the beakers.

[0101] In some embodiments, after performing a corrosion treatment on the first type of object with sulfuric acid in the experimental method for a safety perception device provided in the embodiments of the present application, it further includes:

[0102] Step S301, in response to a second instruction, closing the liquid supply solenoid valve and opening the first reflux solenoid valve and the second reflux solenoid valve, so that the acid solution in any one of the beakers flows back into the hazardous chemical storage tank.

[0103] In this embodiment, a second instruction is received, and the second instruction is an experimental end instruction for the safety perception device. Exemplarily, the second instruction is an experimental end instruction input by the user.

[0104] In response to the second instruction, closing the liquid supply solenoid valve and opening the first reflux solenoid valve and the second reflux solenoid valve, so that the acid solution in any one of the beakers flows back into the hazardous chemical storage tank.

[0105] In response to the second instruction, close the liquid filling solenoid valve, and open the first reflux solenoid valve and the second reflux solenoid valve, so that the acid liquid in any beaker flows back into the hazardous chemical storage tank.

[0106] In some embodiments, an experimental method for a safety somatosensory device is provided in the embodiments of the present application. In response to the first instruction, control the acid liquid in the hazardous chemical storage tank to flow into any beaker through the corrosion-resistant pipeline, so as to perform corrosion treatment on the experimental object with sulfuric acid in any beaker, including:

[0107] Step S401, when a first type of object is placed in the first beaker, in response to the first instruction, open the liquid filling solenoid valve, so that the acid liquid in the hazardous chemical storage tank flows into the first beaker through the first branch, so as to perform corrosion treatment on the first type of object with sulfuric acid in the first beaker;

[0108] Step S402, when a second type of object is placed in the second beaker, in response to the first instruction, open the liquid filling solenoid valve and the distribution solenoid valve, so that the acid liquid in the hazardous chemical storage tank flows into the second beaker through the second branch, so as to perform corrosion treatment on the second type of object with sulfuric acid in the second beaker.

[0109] In this embodiment, when any beaker is the first beaker and the experimental object is the first type of object, it means that an experiment needs to be performed on the first type of object in the first beaker.

[0110] In response to the first instruction, open the liquid filling solenoid valve, so that the acid liquid in the hazardous chemical storage tank flows into the first beaker through the first branch, so as to perform corrosion treatment on the first type of object with sulfuric acid in the first beaker.

[0111] Exemplarily, the first type of object is a biological object such as a chicken claw or pigskin.

[0112] Exemplarily, as Figure 2 shown, the socket switch is the controller switch of the safety somatosensory device, the power indicator is used to indicate the switch state of the controller, the ventilation fan switch is the control switch of the ventilation fan in the safety somatosensory device, the acid pump switch is the control switch of the electric diaphragm pump in the safety somatosensory device, the changeover switch is the control switch of the distribution solenoid valve in the safety somatosensory device, the first liquid return valve and the first liquid return valve are respectively the control switches of the first reflux solenoid valve and the second reflux solenoid valve, and the liquid filling valve is the control switch of the liquid filling solenoid valve.

[0113] Exemplarily, place the first type of object (chicken claw or pigskin) in the No. 1 beaker, start the liquid filling switch, and then start the acid pump switch. The acid liquid will act through the No. 1 three-way liquid filling solenoid valve (A / C points are connected), and sulfuric acid will be filled into the No. 1 beaker through the pipeline, and directly observe the corrosion process of sulfuric acid on the experimental object to intuitively feel its harm degree.

[0114] When any beaker is the second beaker and the experimental object is a second type of object, it means that the experiment needs to be performed on the second type of object in the second beaker.

[0115] Exemplarily, the second category of objects is metal objects.

[0116] In response to the first instruction, the upper liquid solenoid valve and the distribution solenoid valve are opened to allow the acid in the hazardous chemical storage tank to flow into the second beaker through the second branch, so that the second type of object is corroded by sulfuric acid in the second beaker.

[0117] For example, place the second type of object (metal object) in the 2# beaker, turn on the liquid filling switch (the 1# three-way liquid filling solenoid valve is connected to the A / C point), turn on the distribution switch (the beaker distribution solenoid valve is connected to the A / C point), and then turn on the acid pump switch, and the 2# beaker will start to fill with sulfuric acid. The amount of sulfuric acid filling can be selected according to the needs. When the amount of liquid filling is reached, turn off the acid pump switch to stop the filling. Then turn on the magnetic stirring heater to heat and stir the sulfuric acid in the beaker. Turning on the magnetic stirring and heating function will make the corrosion of metal materials more intense and intuitive. For example, if smoke is produced during acid corrosion, the ventilation fan can be turned on by turning on the ventilation fan switch. If the indoor lighting is insufficient, the magnetic LED lamp can be turned on.

[0118] For example, after the physical test is over, close the liquid supply switch (at this time, the 1# three-way liquid supply solenoid valve is in motion and the A / B points are connected), open the reflux switch (at this time, the 2# and 3# reflux solenoid valves are working at the same time and the A / C points are connected), open the distribution switch (at this time, the distribution solenoid valves are working and the A / C points are connected), start the acid pump switch, and the acid in the beaker begins to flow back to the hazardous chemicals storage tank. The operation process ends here and all switches are closed. Note: The acid temperature should be less than or equal to 50°C during reflux. Acid reflux with excessively high temperature will damage the pump body. Operators must wear necessary protective equipment or close the protective door for operation, and the two sets of equipment cannot be operated at the same time and must be used separately.

[0119] It should be noted that in the above embodiments, the description of each embodiment has its own emphasis, and for parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0120] The above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present application.

[0121] Although the preferred embodiments of this specification have been described, additional changes and modifications can be made by those skilled in the art once they learn of the basic creative concept. Therefore, the appended claims are intended to be interpreted to include the preferred embodiments as well as all changes and modifications that fall within the scope of this specification.

[0122] Obviously, those skilled in the art can make various changes and modifications to this specification without departing from the spirit and scope of this specification. Thus, if these modifications and variations of this specification fall within the scope of the claims of this specification and their equivalent technologies, this specification is also intended to include these modifications and variations.

Claims

1. A safety somatosensory device, characterized in that, Comprising: Equipment cabinet; Multiple beakers, arranged in the equipment cabinet; Hazardous chemical storage tank, arranged in the equipment cabinet, and the hazardous chemical storage tank is used for storing acid solution; Anti-corrosion pipeline, arranged in the equipment cabinet, and the first end of the anti-corrosion pipeline is arranged in the hazardous chemical storage tank; First reflux solenoid valve, second reflux solenoid valve and liquid supply solenoid valve, and the first reflux solenoid valve, the second reflux solenoid valve and the liquid supply solenoid valve are respectively arranged on the anti-corrosion pipeline; When the liquid supply solenoid valve is opened and the first reflux solenoid valve and the second reflux solenoid valve are closed, the acid solution inside the hazardous chemical storage tank flows into any one of the multiple beakers through the anti-corrosion pipeline; When the liquid supply solenoid valve is closed and the first reflux solenoid valve and the second reflux solenoid valve are opened, the acid solution inside any one of the beakers flows back to the hazardous chemical storage tank through the anti-corrosion pipeline.

2. The safety perception device according to claim 1, wherein The multiple beakers include a first beaker and a second beaker; The anti-corrosion pipeline includes a first branch and a second branch; The first end of the first branch is arranged in the first beaker, and the first end of the second branch is arranged in the second beaker.

3. The safety somatosensory device according to claim 2, wherein The safety perception device further includes: Distribution solenoid valve, the distribution solenoid valve is arranged on the anti-corrosion pipeline, and the second ends of the first branch and the second branch are connected to the distribution solenoid valve; When the distribution solenoid valve is closed, the acid solution flows between the hazardous chemical storage tank and the first beaker through the first branch; When the distribution solenoid valve is opened, the acid solution flows between the hazardous chemical storage tank and the second beaker through the second branch.

4. The safety somatosensory device according to claim 1, characterized in that The safety perception device further includes: Illuminating lamp and ventilation fan, the illuminating lamp and the ventilation fan are respectively arranged in the equipment cabinet; The ventilation fan is used for evacuating the smoke inside the equipment cabinet; The illuminating lamp is used for illuminating the internal space of the equipment cabinet.

5. The safety somatosensory device according to claim 1, wherein, The safety perception device further includes: Multiple groups of heating devices, wherein each group of heating devices includes a magnetic stirring heating rod and a magnetic stirring heater, and the multiple groups of heating devices correspond to the multiple beakers one by one; For each group of heating devices, the magnetic stirring heating rod in this group of heating devices is arranged inside the corresponding beaker, and the magnetic stirring heater in this group of heating devices is arranged below the corresponding beaker for heating the beaker.

6. The safety somatosensory device according to claim 1, wherein The safety perception device further includes: Electric diaphragm pump, the electric diaphragm pump is arranged on the anti-corrosion pipeline; When the liquid supply solenoid valve is opened and the first reflux solenoid valve and the second reflux solenoid valve are closed, the electric diaphragm pump is used for conveying the acid solution inside the hazardous chemical storage tank to any one of the multiple beakers through the anti-corrosion pipeline; When the liquid supply solenoid valve is closed and the first reflux solenoid valve and the second reflux solenoid valve are opened, the electric diaphragm pump is used to transport the acid liquid inside any one of the beakers to the hazardous chemical storage tank through the corrosion-resistant pipeline.

7. The safety somatosensory device according to any one of claims 1 to 6, characterized in that, The safety experience device further includes: A filter, and the filter is arranged at the first end of the corrosion-resistant pipeline.

8. An experimental method for a safe somatosensory device, characterized in that, The safety experience device is the safety experience device according to any one of claims 1 to 7, and the method includes: When an experimental object is placed in any one of a plurality of beakers, in response to a first instruction, controlling the acid liquid in the hazardous chemical storage tank to flow into any one of the beakers through the corrosion-resistant pipeline, so as to perform a corrosion treatment on the experimental object with sulfuric acid in any one of the beakers.

9. The method according to claim 8, characterized in that After controlling the acid liquid in the hazardous chemical storage tank to flow into any one of the beakers in response to the first instruction, the method further includes: In response to a second instruction, closing the liquid supply solenoid valve and opening the first reflux solenoid valve and the second reflux solenoid valve, so that the acid liquid in any one of the beakers flows back to the hazardous chemical storage tank.

10. The method according to claim 8 or 9, characterized in that, The plurality of beakers include a first beaker and a second beaker, and controlling the acid liquid in the hazardous chemical storage tank to flow into any one of the beakers through the corrosion-resistant pipeline in response to the first instruction includes: When a first type of object is placed in the first beaker, in response to the first instruction, opening the liquid supply solenoid valve, so that the acid liquid in the hazardous chemical storage tank flows into the first beaker through the first branch, so as to perform a corrosion treatment on the first type of object with sulfuric acid in the first beaker; and / or When a second type of object is placed in the second beaker, in response to the first instruction, opening the liquid supply solenoid valve and the distribution solenoid valve, so that the acid liquid in the hazardous chemical storage tank flows into the second beaker through the second branch, so as to perform a corrosion treatment on the second type of object with sulfuric acid in the second beaker.