A health quarantine channel inspection device

CN224717466UActive Publication Date: 2026-09-04HAIKE INTELLIGENT INSPECTION (BEIJING) TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522213248.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-20
Publication Date
2026-09-04
Estimated Expiration
2035-10-20

AI Technical Summary

Technical Problem

[0005]本实用新型要解决的技术问题是现有卫生检疫通道宽度不可调、无电环境下无法实现体温初筛、查验物品摆放分散导致流程混乱的问题,实现通道宽度灵活适配人流、无电状态下快速体温初筛、查验物品集中收纳整合,进而提高检疫通关效率、保障无电场景下的检疫连续性、改善检疫操作便捷性

Benefits of technology

[0015] 1. This utility model achieves flexible adaptation of pedestrian flow through the channel width adjustment frame. The combination of multiple sets of equidistant bolt holes and positioning bolts can quickly adjust the spacing between the uprights, solving the problem of pedestrian congestion or space waste caused by the traditional fixed channel width, and adapting to the quarantine needs in different scenarios.

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Abstract

The utility model relates to health quarantine equipment technical field discloses a health quarantine passageway checking device, including passageway width adjusting frame, passageway width adjusting frame is composed of both sides' riser and bottom support plate, and riser is fixedly connected with bottom support plate, and is equipped with the positioning structure for adjusting interval on the riser, and one side riser of passageway width adjusting frame is installed with the preliminary screening temperature measurement subassembly. Compared with prior art, the advantage lies in: through passageway width adjusting frame, flexible adaptation of people flow is realized, and the cooperation of multiple sets of equidistance bolt holes and positioning bolts can quickly adjust the interval of riser, solve the problem of people flow congestion or space waste caused by the fixed width of traditional passageway, and adapt to the quarantine demand under different scenes, through the preliminary screening temperature measurement subassembly of 'colored expansion liquid + sealed glass tube', realize the non-electricity body temperature preliminary screening, and do not need to rely on electricity, still can use under the scene such as power failure, outdoor temporary site.
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Description

Technical Field

[0001] This utility model relates to the field of sanitary quarantine equipment technology, specifically to a sanitary quarantine channel inspection device. Background Technology

[0002] In health quarantine work at densely populated places such as airports, ports, and train stations, it is necessary to simultaneously achieve three core functions: orderly control of passenger flow, rapid initial screening of passenger body temperature, and verification of documents / health information. The efficiency of the coordination of these three functions directly affects the speed of quarantine clearance. If the channel design is unreasonable, it can easily lead to congestion, missed initial temperature screening, or chaotic inspection procedures, increasing quarantine risks and passenger waiting time.

[0003] The existing health quarantine channels have the following key problems: most channels are integrated structures, which cannot flexibly adjust their width according to peak / off-peak traffic, leading to congestion during peak hours and wasted space during off-peak hours; mainstream temperature measurement equipment (such as infrared thermometers) requires continuous power supply, making them unusable in power outages or temporary quarantine scenarios (such as temporary outdoor stations), resulting in blind spots in initial screening; there are no fixed places for documents, health declaration cards, and other items, which quarantine personnel must hold or place haphazardly, making them easy to get confused or lost; at the same time, there is no storage space for tools such as disinfectant wipes and pens, making them inconvenient to use and reducing inspection efficiency.

[0004] The aforementioned shortcomings of traditional quarantine channels make it difficult to meet the modern health quarantine requirements of "flexible adaptation to passenger flow, availability in power-free environments, and efficient process integration," thus necessitating a simple, functionally integrated, and highly adaptable inspection device. Utility Model Content

[0005] The technical problem this utility model aims to solve is that the width of existing health quarantine channels is not adjustable, body temperature screening cannot be carried out in the absence of electricity, and the scattered placement of inspection items leads to a chaotic process. The solution is to achieve flexible channel width to adapt to the flow of people, rapid body temperature screening in the absence of electricity, and centralized storage and integration of inspection items, thereby improving quarantine clearance efficiency, ensuring quarantine continuity in the absence of electricity, and improving the convenience of quarantine operations.

[0006] To solve the above-mentioned technical problems, the technical solution provided by this utility model is as follows:

[0007] A sanitary quarantine channel inspection device includes a channel width adjustment frame, which is composed of two upright plates on both sides and a bottom support plate. The upright plates are fixedly connected to the bottom support plate, and the bottom of the upright plates is provided with a positioning structure for adjusting the spacing.

[0008] A primary screening temperature measurement component is installed on one side of the channel width adjustment frame. The installation height of the primary screening temperature measurement component is adapted to the forehead of an adult. The primary screening temperature measurement component includes a sealed glass tube filled with colored expansion liquid. Temperature scale lines are marked on the wall of the sealed glass tube. The colored expansion liquid rises along the sealed glass tube as the temperature increases.

[0009] An integrated inspection station is fixed in the middle of the bottom support plate of the channel width adjustment frame. The table surface of the integrated inspection station is equipped with a document placement area and an information card placement area. Through the combination of the channel width adjustment frame, the initial screening temperature measurement component and the integrated inspection station, the flow of people can be adapted and the process of non-electric body temperature screening and inspection can be integrated.

[0010] As an improvement, the sealing glass tube of the initial screening temperature measuring component is sealed at both ends, with one end being a planar temperature measuring end and the other end having a buffer cavity. The colored expanding liquid is a mixture of alcohol and dye, and the expansion coefficient of the colored expanding liquid is adapted to the human body temperature range. The inner sides of the upright plates on both sides of the channel width adjustment frame are provided with arc-shaped positioning protrusions, which surround the planar temperature measuring end of the sealing glass tube to guide the passenger's forehead to fit against the planar temperature measuring end, avoiding forehead deviation during temperature measurement and resulting in inaccurate readings. At the same time, the buffer cavity can prevent the liquid from expanding and cracking the glass tube when the temperature is too high. The mixture of alcohol and dye takes into account both high expansion coefficient and visibility.

[0011] As an improvement, the integrated inspection station also features a tool storage slot on its surface, adjacent to the document placement area and the information card placement area. The document placement area has at least two document card slots, which can simultaneously hold different documents such as ID cards and passports, avoiding confusion when stacked. The information card placement area has a slot for health declaration cards to prevent them from slipping out. The tool storage slot has a flip-top cover with a handle on its edge. The tool storage slot is used to store disinfectant wipes and pens. The flip-top design prevents dust and tools from falling out, and the handle facilitates quick opening and closing for easy access.

[0012] As an improvement, the positioning structure includes a pair of fixing plates on both sides of the bottom of the upright plate. The fixing plates are provided with bolt holes 1. The bottom support plate is provided with a fixing groove that is slidably connected to the fixing plates. The fixing groove is provided with multiple sets of bolt holes 2 corresponding to bolt holes 1. The positioning bolts are passed through bolt holes 1 and bolt holes 2 and then tightened to fix the distance between the upright plates on both sides. The multiple sets of equidistant bolt holes can provide a width adjustment range to adapt to different pedestrian flow scenarios such as single-person passage and two-person parallel passage. The matching structure of the positioning bolts and bolt holes is simple and can be adjusted without professional tools, making the operation convenient.

[0013] As an improvement, a transparent protective shell is fitted over the sealed glass tube of the primary screening temperature measuring component. The transparent protective shell is fixedly connected to the two side uprights. The surface of the transparent protective shell has a longitudinal opening, and the planar temperature measuring end of the sealed glass tube protrudes from the transparent protective shell. The transparent protective shell can prevent the sealed glass tube from being damaged by impact. The longitudinal opening does not obstruct the temperature scale lines, ensuring clear readings. At the same time, the protruding design of the planar temperature measuring end does not affect the fit to the forehead, taking into account both protection and ease of use.

[0014] The advantages of this utility model compared with the prior art are as follows:

[0015] 1. This utility model achieves flexible adaptation of pedestrian flow through the channel width adjustment frame. The combination of multiple sets of equidistant bolt holes and positioning bolts can quickly adjust the spacing between the uprights, solving the problem of pedestrian congestion or space waste caused by the traditional fixed channel width, and adapting to the quarantine needs in different scenarios.

[0016] 2. This utility model achieves non-electric body temperature screening through a primary screening temperature measurement component consisting of "colored expanding liquid + sealed glass tube". It does not rely on electricity and can still be used in scenarios such as power outages and temporary outdoor sites, filling the blind spots in the use of traditional electric temperature measurement equipment. At the same time, the arc-shaped positioning protrusion guides the forehead to fit precisely, ensuring the accuracy of temperature measurement.

[0017] 3. This utility model integrates the functions of document, information card and tool storage by integrating the inspection station. The document card slot and information card slot avoid confusion of items, and the tool storage slot realizes the centralized management of disinfectant wipes and pens, which solves the problems of scattered inspection process and inconvenient tool access, and greatly improves the efficiency of quarantine operation. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the appearance of this utility model.

[0019] Figure 2 This is an exploded schematic diagram of this utility model.

[0020] Figure 3 This is a utility model Figure 2 An enlarged schematic diagram of the structure at point A.

[0021] Figure 4 This is a utility model Figure 2 Enlarged schematic diagram of the structure at point B.

[0022] Figure 5 This is a utility model Figure 2 A magnified schematic diagram of the structure at point C.

[0023] As shown in the figure: 1. Channel width adjustment frame; 11. Vertical plate; 111. Arc-shaped positioning protrusion; 12. Bottom support plate; 13. Positioning structure; 131. Fixing plate; 132. Bolt hole one; 133. Fixing groove; 134. Bolt hole two; 135. Positioning bolt; 2. Primary screening temperature measurement component; 21. Sealed glass tube; 211. Planar temperature measuring end; 212. Buffer cavity; 213. Transparent protective shell; 3. Integrated inspection table; 31. Document placement area; 311. Document card slot; 32. Information card placement area; 321. Slot; 33. Tool storage slot; 331. Flip-top slot cover; 3311. Lifting handle. Detailed Implementation

[0024] The present invention will now be described in further detail with reference to the accompanying drawings.

[0025] Please see the appendix Figure 1 Appendix Figure 2 and attached Figure 5 As shown, a health quarantine channel inspection device includes a channel width adjustment frame 1 (both the upright plate 11 and the bottom support plate 12 are made of stainless steel, which has rust resistance and rigidity). The distance between the upright plates 11 on both sides of the channel width adjustment frame 1 is adjusted by the positioning structure 13. The bottom support plate 12 is fixed to the upright plate 11 by welding. A primary screening temperature measurement component 2 (the installation height is adapted to the height of an adult's forehead) is fixed on the inner wall of one upright plate 11. An integrated inspection table 3 (the table surface is made of wear-resistant plastic material with anti-slip treatment) is also fixed.

[0026] In the positioning structure 13, a pair of fixing plates 131 are provided on both sides of the bottom of the upright plate 11. The fixing plates 131 are provided with bolt holes 132. The bottom support plate 12 is provided with a fixing groove 133 that is slidably connected to the fixing plates 131. The fixing groove 133 is provided with multiple sets of bolt holes 134 corresponding to the bolt holes 132. The positioning bolts 135 pass through the bolt holes 132 and the bolt holes 134 to fix the distance between the upright plates 11 on both sides. The inner side of the upright plates 11 on both sides is welded with arc-shaped positioning protrusions 111 (made of soft rubber to avoid scratching the forehead). The arc-shaped positioning protrusions 111 surround the plane temperature measuring end 211 of the primary screening temperature measuring component 2.

[0027] See appendix Figure 2 Appendix Figure 3 and attached Figure 4 As shown, the sealing glass tube 21 of the initial screening temperature measuring component 2 is sealed at both ends. One end is a planar temperature measuring end 211, and the other end is a buffer cavity 212, which is filled with a mixture of alcohol and red dye. The tube wall is engraved with temperature scale lines (range 35℃-42℃, graduation value 0.1℃). A transparent protective shell 213 made of transparent acrylic material is fitted on the outside of the sealing glass tube 21. The surface of the transparent protective shell 213 has a longitudinal opening, and the planar temperature measuring end 211 protrudes from the transparent protective shell 213.

[0028] The left side of the integrated inspection table 3 is a document placement area 31 with two document card slots 311 (adapted to the size of ID cards and passports respectively); the right side of the table is an information card placement area 32 with a slot 321 adapted to health declaration cards; the rear side of the integrated inspection table 3 is a tool storage slot 33, with a flip-top cover 331 connected to the slot opening by a hinge. The edge of the flip-top cover 331 has an integrally formed lifting handle 3311. Disinfecting wipes and pens are placed in the tool storage slot 33.

[0029] In specific implementation of this utility model: the width of the passage is adjusted according to the flow of people in the quarantine scenario. If it is a peak period, a two-person parallel passage is required. The distance between the two side uprights 11 is adjusted to 100cm to 140cm. The positioning bolts 135 are passed through bolt holes 132 and 134 and then tightened to fix the distance between the two side uprights 11. If it is a low-peak period, a single-person passage is required. The distance is adjusted to 60cm to 100cm, and the above fixing steps are repeated.

[0030] During the initial temperature screening stage, after passengers enter the passage, quarantine personnel guide them to place their foreheads against the flat temperature measuring end 211 of the initial screening temperature measuring component 2 (the arc-shaped positioning protrusion 111 assists in positioning to ensure that the forehead is in complete contact with the flat temperature measuring end 211). After holding this position for 1 to 2 seconds, observe the temperature scale line corresponding to the rise of the colored expanding liquid inside the sealed glass tube 21: if the reading is ≤37.3℃, the body temperature is normal, and proceed to the next step of inspection; if the reading is >37.3℃, it is marked as an abnormal body temperature, and the passenger is guided to the re-examination area for further testing.

[0031] Passengers with normal body temperature should place their ID card / passport into the corresponding document card slot 311 in the document placement area 31, and insert their health declaration card into the slot 321 in the information card placement area 32. Quarantine personnel will verify the information on the documents and the declaration card. During the verification process, if disinfection or a passenger's signature is required, the quarantine personnel will open the flip-top cover 331 by pulling the handle 3311, and take out disinfectant wipes (to wipe the inspection table or the passenger's hands) or a pen (for the passenger to supplement information) from the tool storage slot 33. After use, the wipes will be returned to their original positions and the cover will be closed.

[0032] After each day's quarantine work is completed, wipe the transparent protective shell 213 and the flat temperature measuring end 211 of the primary screening temperature measuring component 2 with disinfectant wipes to prevent stains from affecting the accuracy of temperature measurement. Clean the surface of the integrated inspection table 3, empty the used wipes from the tool storage slot 33, and replenish with new disinfectant wipes and pens. If colored liquid leakage or blurred temperature scale lines are found inside the sealed glass tube 21, the primary screening temperature measuring component 2 needs to be replaced. If the positioning bolt 135 is worn, replace it with a bolt of the same specification in time. If the transparent protective shell 213 is damaged, replace it with a new transparent protective shell 213 to ensure that the sealed glass tube 21 is not impacted.

[0033] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.

Claims

1. A sanitary quarantine channel inspection device, characterized in that: include The channel width adjustment frame (1) is composed of two upright plates (11) and a bottom support plate (12). The upright plates (11) are fixedly connected to the bottom support plate (12). The bottom of the upright plates (11) is provided with a positioning structure (13) for adjusting the spacing. The initial screening temperature measurement component (2) is installed on one side of the upright plate (11) of the channel width adjustment frame (1). The installation height is adapted to the forehead of an adult. The initial screening temperature measurement component (2) includes a sealed glass tube (21) filled with colored expansion liquid. Temperature scale lines are marked on the wall of the sealed glass tube (21). The colored expansion liquid rises along the sealed glass tube (21) as the temperature rises. The integrated inspection station (3) is fixed in the middle of the bottom support plate (12) of the channel width adjustment frame (1). The table surface of the integrated inspection station (3) is provided with a document placement area (31) and an information card placement area (32). Through the combination of the channel width adjustment frame (1), the initial screening temperature measurement component (2) and the integrated inspection station (3), the flow of people is adapted and the integration of the non-electric body temperature initial screening and inspection process is realized.

2. The sanitary quarantine channel inspection device according to claim 1, characterized in that: The sealing glass tube (21) of the initial screening temperature measuring component (2) is sealed at both ends. One end is a plane temperature measuring end (211), and the other end is provided with a buffer cavity (212). The colored expanding liquid is a mixture of alcohol and dye. The expansion coefficient of the colored expanding liquid is adapted to the human body temperature range. The inner side of the two side uprights (11) of the channel width adjustment frame (1) is provided with arc-shaped positioning protrusions (111). The arc-shaped positioning protrusions (111) surround the plane temperature measuring end (211) of the sealing glass tube (21) and are used to guide the passenger's forehead to fit against the plane temperature measuring end (211).

3. The sanitary quarantine channel inspection device according to claim 1, characterized in that: The integrated inspection station (3) is also equipped with a tool storage slot (33). The tool storage slot (33) is adjacent to the document placement area (31) and the information card placement area (32). The document placement area (31) is equipped with at least two document card slots (311). The information card placement area (32) is equipped with a slot (321) for the health declaration card. The tool storage slot (33) is equipped with a flip-top cover (331). The edge of the flip-top cover (331) is equipped with a lifting handle (3311). The tool storage slot (33) is used to store disinfectant wipes and pens.

4. The sanitary quarantine channel inspection device according to claim 1, characterized in that: The positioning structure (13) includes a pair of fixing plates (131) set on both sides of the bottom of the upright plate (11). The fixing plate (131) is provided with bolt hole 1 (132). The bottom support plate (12) is reserved with fixing groove (133) that is slidably connected to the fixing plate (131). The fixing groove (133) is provided with multiple sets of bolt hole 2 (134) corresponding to bolt hole 1 (132). The positioning bolt (135) is passed through bolt hole 1 (132) and bolt hole 2 (134) and tightened to fix the distance between the two upright plates (11).

5. The sanitary quarantine channel inspection device according to claim 1, characterized in that: The sealing glass tube (21) of the primary screening temperature measuring component (2) is fitted with a transparent protective shell (213). The transparent protective shell (213) is fixedly connected to the two side uprights (11). The surface of the transparent protective shell (213) has a longitudinal opening. The planar temperature measuring end (211) of the sealing glass tube (21) protrudes from the transparent protective shell (213).