Linkage dust removal blowing and showering system and method
Through the linkage of dust removal and shower blowing system, the linkage between the identification unit and the bulk processing unit, combined with the design of fixed guide zone and variable guide zone, the problem of poor dust removal effect in the electronic manufacturing industry is solved, and a personalized clean treatment process is realized, which improves the cleanliness and resource utilization efficiency.
Patent Information
- Application Number
- CN202510594853.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-09
- Publication Date
- 2025-08-19
AI Technical Summary
The existing air shower chambers are difficult to effectively supervise the dust removal behavior of each employee in the electronic manufacturing industry, resulting in poor dust removal results and lack of personalized parameter settings, which affects the cleanliness control.
A linked dust removal and shower blowing system is designed, through the identification unit identifying identity information, the body processing unit collects collective parameters, and the central processing unit dynamically adjusts the processing flow, combining the segmented processing of the fixed guide area and the variable guide area, the step-by-step filtration from coarse dust removal to fine dust removal is achieved to ensure cleanliness.
It realizes a personalized dust removal process dynamically adjusted according to identity and body parameters, improves the compliance rate of the clean environment, reduces manual intervention, and improves the cleanliness control and resource conservation.
Smart Images

Figure CN120502545A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of clean technology, and in particular to a linked dust removal and showering system and method. Background Art
[0002] The electronics manufacturing industry has high requirements for the dust-free production environment. The existing solution uses air showers to deal with dust brought in by outsiders. However, due to personnel management difficulties in supervising each employee to follow standard procedures and self-clean through the air shower, the cleaning effect depends entirely on the employee's initiative. In addition, each employee has different body shapes, especially their appearance and volume after wearing clean-room suits, which corresponds to certain differences in air shower dust removal.
[0003] In terms of factory management, it is difficult to establish the dust removal situation of each employee. There is a lack of effective reference basis when setting air shower dust removal parameters (such as duration, channel length, etc.), and they can only be set according to industry standards, which often leads to poor dust removal effects. Summary of the Invention
[0004] In view of the shortcomings of the existing technology, a linked dust removal and blowing system and method are provided to solve the technical problems mentioned in the background technology.
[0005] A linked dust removal and blowing system comprises a first space and a second space arranged in sequence, the first space comprising a guide unit, an identification unit and a body processing unit arranged in sequence, the guide unit being used to guide a person to be dusted to move in sequence, the identification unit being used to identify the identity information of the person to be dusted, the body processing unit being used to dust-free clothing and collect body parameters, the body processing unit being connected to the second space at one end away from the identification unit, the second space comprising a closed passage and a fixed guide area and a variable guide area arranged in sequence in the closed passage, a plurality of blowing assemblies being provided on the top of the closed passage, a plurality of indication assemblies being provided at intervals in the variable guide area, a monitoring and calibration device and a central processing unit being respectively provided on the side of the variable guide area away from the fixed guide area, the monitoring and calibration device being used to monitor and calibrate the person to be dusted, and the central processing unit being communicatively connected with the identification unit, the body processing unit, the blowing assembly, the indication assembly and the monitoring and calibration device respectively.
[0006] Beneficial effects of the present invention:
[0007] Through the linkage of the identification unit, the body processing unit and the central processing unit, the system can dynamically adjust the processing flow (such as the intensity and duration of the shower) according to the personnel identity information (such as the authority level and job requirements) to avoid "one-size-fits-all" operation. The identification unit collects identity information and the body processing unit collects body parameters which are recorded by the central processing unit to form a traceable clean management file, which is convenient for subsequent quality analysis or problem backtracking. The body processing unit collects key body parameters (such as personnel volume and maximum contact area) while removing dust. Combined with the real-time feedback of the monitoring and calibration device, the central processing unit can automatically give the indication component. The travel path within the variable guide area reduces manual intervention. The body processing unit in the first space pre-dusts the cleanroom clothing. The second space realizes step-by-step filtration from coarse dust removal to fine dust removal through segmented processing in the fixed guide area (basic air shower) and the variable guide area (dynamic enhanced air shower), ensuring the compliance rate of personnel entering high-clean areas. Through modular linkage design, dynamic parameter optimization and intelligent decision-making mechanism, the system realizes efficient coordination of the entire process from personnel identification to clean processing, taking into account cleanliness control, resource conservation and operational safety, so as to be suitable for the electronics manufacturing industry with increasingly stringent requirements for clean environment.
[0008] Furthermore, the identification unit and the body processing unit are arranged in the channel fence, and the first one-way door and the second one-way door are respectively provided at the opposite ends of the channel fence. The first one-way door is located between the guide unit and the identification unit, and the second one-way door is adjacent to the entrance of the second space.
[0009] Furthermore, the recognition unit includes a first support rod and a facial recognition component and a magnetic card recognition component arranged on the first support rod from top to bottom.
[0010] Furthermore, the body processing unit includes a first support member, a first body dust removal member and a first body sensing member, the first body dust removal member includes a stacked first fan-shaped body and a first dust-sticking layer, the first support member is connected to the side of the first fan-shaped body facing away from the first dust-sticking layer, the first body sensing member is arranged on the top of the first fan-shaped body or between the first fan-shaped body and the first dust-sticking layer, and the first body sensing member is used to detect the body parameters of the person.
[0011] Furthermore, a bottom processing unit is provided between the second space and the body processing unit, and the bottom processing unit includes a sticky mat provided on the ground inside the channel fence.
[0012] Furthermore, a first airtight door and a second airtight door are respectively provided at opposite ends of the closed channel, the first airtight door is provided on the side of the fixed guide area away from the variable guide area, and the second airtight door is located on the side of the variable guide area component away from the fixed guide area component.
[0013] Furthermore, the fixed guide area includes a plurality of fixed plates arranged at intervals, and the adjacent fixed plates extend toward each other, and one end of the adjacent fixed plates facing away from the other fixed plate is connected to a side wall of the closed channel, and one end of the adjacent fixed plates facing toward the other fixed plate extends toward the other side wall of the closed channel, and a gap is formed.
[0014] Furthermore, the indicating assembly includes a first lighting device and a second lighting device that are correspondingly arranged, the first lighting device is arranged on the side wall of the enclosed passage, and the second lighting device is arranged on the ground of the enclosed passage.
[0015] The present invention also provides a linked dust removal and air shower method, which uses the linked dust removal and air shower system described above and includes the following steps:
[0016] A single person enters the first space through the guiding unit, and the identification unit collects the identity information of the person and uploads the identity information to the central processing unit;
[0017] The body processing unit removes dust from the clean clothes of the personnel and collects body parameters, and uploads the body parameters to the central processing unit;
[0018] The central processing unit obtains a preset number of showering times based on a preset algorithm and the body parameters, assigns a label to the identity information, the body parameters, and the preset number of showering times in a one-to-one correspondence, and stores the mapped labels;
[0019] When the person enters the enclosed passage of the second space, and when the person passes through the fixed guide area and reaches the variable guide area, a fixed shower is performed in the fixed guide area, and the fixed shower corresponds to a fixed number of showers, the central processing unit calibrates the person and the tag using the monitoring calibration device, and the central processing unit subtracts the preset number of showers from the fixed number of showers to obtain a remaining number of showers;
[0020] The central processing unit determines the remaining number of showers. If the remaining number of showers is 0, the central processing unit controls the indicator component adjacent to the person to emit a first color light, and the person moves along a first route. If the remaining number of showers is not 0, the central processing unit controls the indicator component adjacent to the person to emit a second color light, and the person moves along a second route.
[0021] Each time the person passes by an indicator component, the central processing unit decrements the remaining number of showers by 1 to obtain a final remaining number of showers. The central processing unit determines the final remaining number of showers. If the final remaining number of showers is 0, the central processing unit controls the adjacent indicator component to emit a first color light, and the person moves along a first route. If the final remaining number of showers is not 0, the central processing unit controls the adjacent indicator component to emit a second color light, and the person moves along a second route.
[0022] The central processing unit controls the monitoring and calibration device to perform image visual tracking on the person, and uploads the collected image to the central processing unit until the person leaves the second space. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 A schematic structural diagram of a linked dust removal and showering system according to a first embodiment of the present invention;
[0024] Figure 2 This is a schematic structural diagram of the second space according to the first embodiment of the present invention;
[0025] Figure 3 Schematic diagram of the structure of the recognition unit of the first embodiment of the present invention;
[0026] Figure 4 A schematic structural diagram of a volume processing unit according to a first embodiment of the present invention;
[0027] Figure 5 This is a flow chart of the linked dust removal and showering method according to the second embodiment of the present invention;
[0028] Figure 6 FIG. 4 is a structural diagram of a volume processing unit according to a third embodiment of the present invention.
[0029] In the figure: 1, first space; 11, guide unit; 12, identification unit; 121, first support rod; 122, facial recognition element; 123, magnetic card recognition element; 13, body processing unit; 131, first support member; 132, first body dust removal member; 1321, first fan-shaped body; 1322, first sticky layer; 133, first body sensing member; 134, second support member; 135, second body dust removal member; 1351, second fan-shaped body; 1352, second sticky layer; 136, second body Sensing element; 14. Channel fence; 141. First one-way door; 142. Second one-way door; 15. Bottom processing unit; 151. Sticky mat; 2. Second space; 21. Enclosed channel; 211. First airtight door; 212. Second airtight door; 22. Fixed guide area; 221. Fixed plate; 23. Variable guide area; 231. Indication component; 2311. First lighting device; 2312. Second lighting device; 24. Shower component; 25. Monitoring and calibration device; 26. Central processing unit. DETAILED DESCRIPTION
[0030] To facilitate understanding of the present invention, the present invention will be described more fully below with reference to the accompanying drawings. The drawings illustrate embodiments of the present invention. However, the present invention may be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention.
[0031] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only.
[0032] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which the present invention pertains. The terms used herein in the specification of the present invention are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The term "and / or" as used herein includes any and all combinations of one or more of the relevant listed items. Furthermore, the various embodiments of the present invention, features within the embodiments, and features between embodiments may be freely combined, provided there are no obvious conflicts or contradictions.
[0033] Example 1
[0034] like Figure 1-4As shown, a linkage dust removal and showering system includes a first space 1 and a second space 2 arranged in sequence. The first space 1 includes a guide unit 11, an identification unit 12 and a body processing unit 13 arranged in sequence. The guide unit 11 is used to guide the personnel to be dusted to move in sequence. The identification unit 12 is used to identify the identity information of the personnel to be dusted. The body processing unit 13 is used to remove dust from the clean clothes and collect body parameters. The end of the body processing unit 13 away from the identification unit 12 is connected to the second space 2. The second space 2 includes a closed passage 21 and a closed passage 21 according to the body parameters. Multiple fixed guide areas 22 and multiple variable guide areas 23 are provided. The top of the enclosed passage 21 is equipped with multiple shower assemblies 24. Multiple indicator assemblies 231 are spaced apart within the variable guide areas 23. A monitoring and calibration device 25 and a central processing unit 26 are provided on the side of the variable guide area 23 away from the fixed guide areas 22. The monitoring and calibration device 25 is used to monitor and calibrate the person to be dusted. The central processing unit 26 is in communication with the identification unit 12, the body processing unit 13, the shower assembly 24, the indicator assembly 231, and the monitoring and calibration device 25. The person to be dusted is guided by the guidance unit 11 into the first space 1 (pre-processing stage). The identification unit 12 is then triggered, and the central processing unit 26 verifies their identity. If the identity information is verified, the body processing unit 13 is triggered to prepare. If the identity information is not verified, an alarm or prompt may be issued using existing alarm or prompt devices to re-verify. The body processing unit 13 performs preliminary dust removal on the cleanroom suit and simultaneously collects the person's body parameters. The data is uploaded to the central processing unit 26 in real time for dynamic adjustment of the subsequent showering strategy. When entering the second space 2 (dynamic shower stage), the personnel pass through the entrance of the closed passage 21 and arrive at the variable guide area 23 through the fixed guide area 22. The central processing unit 26 predicts the shower demand in the variable guide area 23 based on the parameters collected by the body processing unit 13, and generates a personalized travel path through the indication component 231. The shower component 24 showers the personnel on the travel path, and the monitoring and calibration device 25 tracks the personnel position in real time.
[0035] Specifically, the identification unit 12 and the body processing unit 13 are located within the passage enclosure 14. A first one-way door 141 and a second one-way door 142 are respectively provided at opposite ends of the passage enclosure 14. The first one-way door 141 is located between the guide unit 11 and the identification unit 12, while the second one-way door 142 is located near the entrance to the second space 2. After passing through the guide unit 11, personnel enter the passage enclosure 14 through the first one-way door 141, ensuring that personnel travel in a one-way queue. They are then identified by the identification unit 12, and their cleanroom clothing is then dedused and body parameters collected by the body processing unit 13. At this point, personnel who need to leave the passage enclosure 14 without entering the second space 2 can exit through the second one-way door 142.
[0036] Specifically, the identification unit 12 includes a first support rod 121 and a facial recognition element 122 and a magnetic card recognition element 123 disposed on the first support rod 121 from top to bottom. The person to be dusted is identified by the facial recognition element 122 or the magnetic card recognition element 123. For internal employees, the magnetic card recognition element 123 can be used for identification, while for external personnel, the facial recognition element 122 can be used for identification. Of course, for personnel whose faces are obscured by dust-proof clothing, the magnetic card recognition element 123 can be used for identification.
[0037] Specifically, the body processing unit 13 includes a first support member 131, a first body dust removal member 132, and a first body sensor 133. The first body dust removal member 132 includes a stacked first fan-shaped body 1321 and a first dust-sticking layer 1322. The first support member 131 is connected to the side of the first fan-shaped body 1321 facing away from the first dust-sticking layer 1322. The first body sensor 133 is provided on the top of the first fan-shaped body 1321. The first body sensor 133 is used to detect the volume of the person. It should be noted that the person wearing the cleanroom suit turns around and presses each side of the body against the first dust-sticking layer 1322. For example, the person can rotate in the order of back - left side - front - right side. By pressing and peeling, the first dust-sticking layer 1322 can evenly contact each side of the body. The first body sensor 133 detects the volume of the person when the person performs the above-mentioned actions. The first body sensor 133 is a width sensor (infrared or laser sensor). The width of each face of the person is collected to calculate the person's volume. It should be noted that the person's volume refers to the appearance volume, that is, the overall volume of the person after wearing the cleanroom suit (taking into account that the cleanroom suit itself has an expansion effect, and the purpose of dust removal is to remove dust on the cleanroom suit). For example, the values collected in the order of back-left-front-right are 750mm, 350mm, 700mm, and 360mm respectively. Then the body parameter (personnel volume) T = W1max*W2max*H = 750*360*H is calculated, where H is the standard height parameter, which can be 1700mm. A height sensor can also be used for collection. W1max is the largest value of the width values collected from the front and back, and W2max is the largest value of the width values collected from the left and right sides.
[0038] Specifically, a bottom treatment unit 15 is provided between the second space 2 and the body treatment unit 13. The bottom treatment unit 15 includes a sticky mat 151 provided on the ground inside the passage fence 14. The person to be dusted removes dust from the soles of the shoes by stepping on the sticky mat 151.
[0039] Specifically, a first airtight door 211 and a second airtight door 212 are respectively provided at opposite ends of the closed passage 21. The first airtight door 211 is provided on the side of the fixed guide area 22 away from the variable guide area 23, and the second airtight door 212 is provided on the side of the variable guide area 23 away from the fixed guide area 22. By providing the first airtight door 211 and the second airtight door 212, the airtight door of an air shower room in the prior art can be adopted, which opens in a sliding or fan-shaped manner and is sealed with rubber strips on all sides, thereby forming a closed space in the second space 2.
[0040] Specifically, the fixed guide area 22 includes a plurality of spaced apart fixed plates 221. Adjacent fixed plates 221 extend toward each other. The ends of adjacent fixed plates 221 facing away from the other fixed plate 221 are connected to a side wall of the enclosed passage 21, while the ends of adjacent fixed plates 221 facing the other fixed plate 221 extend toward the other side wall of the enclosed passage 21, forming a gap. In this embodiment, the length of the fixed plates 221 is less than the width of the enclosed passage 21. The difference between their length and the passage space is sufficient to accommodate a person passing through, for example, the difference can be 60-80 cm. The height of the fixed plates 221 is sufficient to block a person from traveling in the guide direction and prevent people from climbing over or under, and therefore the height can be between 30-70 cm. The fixed plates 221 extend toward each other, dividing the enclosed channel 21 into a return channel. When passing through, people are restricted by the fixed guide area 22 and move in an S-shaped manner. At least one air outlet (not shown) is provided on both side walls of the enclosed channel 21 of the S-shaped travel passage. The air outlet is connected to the shower assembly 24 through a pipe to shower the people.
[0041] Specifically, the indicator assembly 231 includes a first lighting device 2311 and a second lighting device 2312, respectively. The first lighting device 2311 is mounted on the sidewall of the enclosed passage 21, while the second lighting device 2312 is mounted on the floor of the enclosed passage 21. In this embodiment, both the first lighting device 2311 and the second lighting device 2312 comprise a light source and a housing. The difference is that the second lighting device 2312 further includes a column bracket below the housing. The light source is disposed within the housing, which can be transparent or partially transparent to allow light to pass through. The light source can include at least a color-changing function, such as by using dual-color or multi-color lamp beads or color-changing LED lamp beads. The housing can also be provided with a light outlet, such as a narrow, elongated light outlet, to allow light from the light source to exit unobstructed. The light source can be highly penetrating, such as laser lamp beads or high-intensity lamp beads. If conditions permit, a surface-like light surface visible at the light outlet provides a more effective effect. The second lighting device 2312 is set on the ground of the enclosed passage 21 and has a certain gap from the side wall of the enclosed passage 21, which can only allow one person to pass through, for example, the gap is 60-80 cm.
[0042] It should be noted that if Figure 2 As shown, a dotted line and a solid line are provided in the variable guide area 23, corresponding to the first route and the second route respectively. When a single person arrives at the variable guide area 23 through the fixed guide area 22, the central processing unit 26 subtracts the preset number of showers from the fixed number of showers to obtain the remaining number of showers, and judges the remaining number of showers. If the remaining number of showers is zero, the first lighting device 2311 and the second lighting device 2312 adjacent to the person simultaneously emit a first color light, and the person passes through the variable guide area 23 along the first route and walks out of the second space 2; if the remaining number of showers is not zero, the first lighting device 2311 and the second lighting device 2312 adjacent to the person simultaneously emit a second color light, and the person passes through the variable guide area 23 along the first route and walks out of the second space 2. The person travels along the second route. Each time after the person passes through the indicator component 231, the central processing unit 26 will subtract 1 from the remaining number of showers to obtain the final number of showers. The central processing unit 26 determines the final number of showers. If the final number of showers is zero, the first lighting device 2311 and the second lighting device 2312 adjacent to the person simultaneously emit light of the first color. The person passes through the variable guide area 23 along the first route and walks out of the second space 2. If the final number of showers is not zero, the first lighting device 2311 and the second lighting device 2312 adjacent to the person simultaneously emit light of the second color. The person continues to travel along the second route. The subsequent travel route is carried out with reference to the above description.
[0043] The present invention, through the linkage of the identification unit 12, the body processing unit 13 and the central processing unit 26, the system can dynamically adjust the processing flow (such as the intensity and duration of the shower) according to the identity information of the personnel (such as the authority level and the job requirements), avoiding the "one size fits all" operation. The identification unit 12 collects the identity information and the body processing unit 13 collects the body parameters which are recorded by the central processing unit 26 to form a traceable clean management file, which is convenient for subsequent quality analysis or problem backtracking. The body processing unit 13 collects key body parameters (such as the volume of the personnel and the maximum area of contact) while removing dust. Combined with the real-time feedback of the monitoring and calibration device 25, the central processing unit 26 can automatically give the travel route in the variable guide area 23 through the indication component 231, reducing manual work. Intervention, the body processing unit 13 of the first space 1 pre-dusts the cleanroom clothing, and the second space 2 uses segmented processing of the fixed guide area 22 (basic blowing) and the variable guide area 23 (dynamic enhanced blowing). Through the combination of physical dust removal and dynamic blowing, as well as real-time data-driven route adjustment, the efficiency and coverage of personnel purification in the dust-free environment are significantly improved, and step-by-step filtration from coarse dust removal to fine dust removal is achieved, ensuring the compliance rate of personnel entering high-clean areas. Through modular linkage design, dynamic parameter optimization and intelligent decision-making mechanism, the system realizes efficient coordination of the entire process from personnel identification to clean processing, taking into account cleanliness control, resource conservation and operational safety, so as to be suitable for the electronics manufacturing industry with increasingly stringent requirements for clean environment.
[0044] Example 2
[0045] like Figure 5 As shown, the present invention also provides a linked dust removal and air shower method, the method adopts the linked dust removal and air shower system as described above, and the method includes the following steps:
[0046] S1: A single person enters the first space 1 through the guiding unit 11, and the identification unit 12 collects the identity information of the person in turn, and uploads the identity information to the central processing unit 26;
[0047] S2: The body processing unit 13 removes dust from the clean clothes of the personnel and collects body parameters, and uploads the body parameters to the central processing unit 26;
[0048] S3: The central processing unit 26 obtains a preset number of shower times based on a preset algorithm and the body parameters, and assigns a label to the identity information, the body parameters, and the preset number of shower times in a one-to-one correspondence, and stores the mapping;
[0049] S4: When the person enters the enclosed passage 21 of the second space 2, and passes through the fixed guide area 22 and reaches the variable guide area 23, a fixed shower is performed in the fixed guide area, and the fixed shower corresponds to a fixed number of showers. The central processing unit 26 calibrates the person and the tag using the monitoring calibration device 25, and subtracts the preset number of showers from the fixed number of showers to obtain a remaining number of showers.
[0050] S5: The central processing unit 26 determines the remaining number of showers. If the remaining number of showers is zero, the central processing unit 26 controls the indicator component 231 adjacent to the person to emit a first color light, and the person moves along the first route 21. If the remaining number of showers is not zero, the central processing unit 26 controls the indicator component 231 adjacent to the person to emit a second color light, and the person moves along the second route 21.
[0051] S6: Each time the person passes by an indicator component 231, the central processing unit 26 decrements the remaining number of showers by 1 to obtain a final number of showers. The central processing unit 26 determines the final number of showers. If the final number of showers is zero, the central processing unit 26 controls the indicator component 231 adjacent to the person to emit a first color light, and the person moves along the first route 21. If the final number of showers is not zero, the central processing unit 26 controls the indicator component 231 adjacent to the person to emit a second color light, and the person moves along the second route 21.
[0052] S7: The central processing unit 26 controls the monitoring and calibration device 25 to perform image visual tracking on the n persons, and uploads the collected images to the central processing unit 26 until the persons leave the second space 2.
[0053] Example 3
[0054] The difference from Example 1 is that:
[0055] Specifically, such as Figure 5 As shown, the body processing unit 13 includes a second support member 134, a second body dust removal member 135 and a second body sensing member 136. The second body dust removal member 135 includes a stacked second fan-shaped body 1351 and a second dust-sticking layer 1352. The second body sensing member 136 is arranged between the second fan-shaped body 1351 and the second dust-sticking layer 1352. The second support member 134 is connected to the side of the second fan-shaped body 1351 facing away from the second body sensing member 136. The second body sensing member 136 is used to detect the contact area of the person.
[0056] It should be noted that, in this embodiment, the body parameter is the maximum contact area, the second body sensing element 136 is a pressure sensor, and several pressure sensor arrays are arranged on the back of the second fan-shaped body 1351. The maximum contact area is determined by collecting the pressure parameters of each pressure sensor. The principle is: when a person performs the above-mentioned action, the body including the dust-free suit is pressed onto the second sticky dust layer 1352. The pressure sensor in contact with the pressed part will collect a value different from the value collected by the pressure sensor of the part that is not pressed. The values collected by the pressure sensor are then used for screening, and a batch of values that meet the conditions can be screened out. Then, by reverse positioning the device that uploads these values (the position coordinates of each sensing unit of the pressure sensor set in the array are known), the maximum contact area can be calculated. Preferably, a more accurate contact area can be obtained by measuring the pressure sensor value when the person peels off the clothes. Because the pressure sensor mostly uses elastic force to measure the pressure, when the elastic force is stretched, the measured data is negative. The maximum contact area can be determined by screening the stretching values that meet the conditions. This solution is more accurate because the second sticky layer 1352 can stick to the outermost edge of the dust-free clothes, so the pulling caused by the sticky force can better reflect the maximum contact area.
[0057] Throughout this specification, reference to terms such as "one embodiment," "some embodiments," "examples," "specific examples," or "some examples" means that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0058] The above-described embodiments merely illustrate the implementation methods of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. A linked dust removal and shower system, characterized by: It includes a first space and a second space arranged in sequence, the first space includes a guiding unit, an identification unit and a body processing unit arranged in sequence, the guiding unit is used to guide the personnel to be dusted to move in sequence, the identification unit is used to identify the identity information of the personnel to be dusted, the body processing unit is used to dust the dust-free clothes and collect body parameters, the end of the body processing unit away from the identification unit is connected to the second space, the second space includes a closed channel and a fixed guide area and a variable guide area arranged in sequence in the closed channel, a plurality of blowing components are provided on the top of the closed channel, a plurality of indication components are provided at intervals in the variable guide area, a monitoring and calibration device and a central processing unit are respectively provided on the side of the variable guide area away from the fixed guide area, the monitoring and calibration device is used to monitor and calibrate the personnel to be dusted, and the central processing unit is respectively communicated with the identification unit, the body processing unit, the blowing component, the indication component and the monitoring and calibration device.
2. The linked dust removal and showering system according to claim 1 is characterized in that: The identification unit and the body processing unit are arranged in the channel fence, and a first one-way door and a second one-way door are respectively provided at the opposite ends of the channel fence. The first one-way door is located between the guide unit and the identification unit, and the second one-way door is adjacent to the entrance of the second space.
3. The linked dust removal and showering system according to claim 2, characterized in that: The recognition unit includes a first support rod and a facial recognition component and a magnetic card recognition component arranged on the first support rod from top to bottom.
4. The linked dust removal and showering system according to claim 1 is characterized in that: The body processing unit includes a first support member, a first body dust removal member and a first body sensing member. The first body dust removal member includes a stacked first fan-shaped body and a first dust-sticking layer. The first support member is connected to the side of the first fan-shaped body facing away from the first dust-sticking layer. The first body sensing member is arranged on the top of the first fan-shaped body or between the first fan-shaped body and the first dust-sticking layer. The first body sensing member is used to detect the body parameters of a person.
5. The linked dust removal and showering system according to claim 1 is characterized in that: A bottom processing unit is provided between the second space and the body processing unit, and the bottom processing unit includes a sticky mat provided on the ground inside the channel fence.
6. The linked dust removal and showering system according to claim 5, characterized in that: A first airtight door and a second airtight door are respectively provided at the opposite ends of the closed channel. The first airtight door is provided on the side of the fixed guide area away from the variable guide area, and the second airtight door is located on the side of the variable guide area component away from the fixed guide area component.
7. The linked dust removal and showering system according to claim 1 is characterized in that: The fixed guide area includes a plurality of fixed plates arranged at intervals, and the adjacent fixed plates extend toward each other. One end of the adjacent fixed plates facing away from the other fixed plate is connected to a side wall of the closed channel, and one end of the adjacent fixed plates facing toward the other fixed plate extends toward the other side wall of the closed channel, and a gap is formed.
8. The linked dust removal and showering system according to claim 1, characterized in that: The indicating assembly includes a first lighting device and a second lighting device that are correspondingly arranged. The first lighting device is arranged on the side wall of the enclosed passage, and the second lighting device is arranged on the ground of the enclosed passage.
9. A linked dust removal and showering method, characterized by: The method adopts the linked dust removal and showering system according to any one of claims 1 to 8, and the method comprises the following steps: A single person enters the first space through the guiding unit, and the identification unit collects the identity information of the person, and uploads the identity information to the central processing unit; The body processing unit removes dust from the clean clothes of the personnel and collects body parameters, and uploads the body parameters to the central processing unit; The central processing unit obtains a preset number of showering times based on a preset algorithm and the body parameters, assigns a label to the identity information, the body parameters, and the preset number of showering times in a one-to-one correspondence, and stores the mapped labels; When the person enters the enclosed passage of the second space, and when the person passes through the fixed guide area and reaches the variable guide area, a fixed shower is performed in the fixed guide area, and the fixed shower corresponds to a fixed number of showers, the central processing unit calibrates the person and the tag using the monitoring calibration device, and the central processing unit subtracts the preset number of showers from the fixed number of showers to obtain a remaining number of showers; The central processing unit determines the remaining number of showers. If the remaining number of showers is 0, the central processing unit controls the indicator component adjacent to the person to emit a first color light, and the person moves along a first route. If the remaining number of showers is not 0, the central processing unit controls the indicator component adjacent to the person to emit a second color light, and the person moves along a second route. Each time the person passes by an indicator component, the central processing unit decrements the remaining number of showers by 1 to obtain a final remaining number of showers. The central processing unit determines the final remaining number of showers. If the final remaining number of showers is 0, the central processing unit controls the adjacent indicator component to emit a first color light, and the person moves along a first route. If the final remaining number of showers is not 0, the central processing unit controls the adjacent indicator component to emit a second color light, and the person moves along a second route. The central processing unit controls the monitoring and calibration device to perform image visual tracking on the person, and uploads the collected image to the central processing unit until the person leaves the second space.
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