A waterproof and moisture-proof transfer workstation for outdoor foreign object detection.
By designing a housing, desiccant assembly, and ejection assembly in the outdoor foreign object transfer station, and using a linear motor and guide rail to drive the ejection seat to move the desiccant, the problem of waterproofing and moisture-proofing of the outdoor transfer station is solved, achieving a moisture-proof and waterproof effect that requires no manual maintenance for a long time.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NANJING PIONEER AWARENESS INFORMATION TECH CO LTD
- Filing Date
- 2025-09-17
- Publication Date
- 2026-08-04
AI Technical Summary
Outdoor foreign object transfer stations need to be waterproof and moisture-proof to reduce the need for frequent maintenance by personnel. Existing technology makes it difficult to replace the desiccant without human intervention.
A transfer workstation comprising a housing, a desiccant assembly, and an ejection assembly is designed. The ejection seat is driven to move by a linear motor and guide rails to eject the desiccant in the desiccant chamber to prevent moisture. A shield and baffle prevent rainwater from entering, and the platform enhances waterproofing.
It achieves long-term moisture and water protection without manual operation, reducing maintenance frequency and ensuring the continued effectiveness of the desiccant and the reliability of the equipment.
Smart Images

Figure CN224596739U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic sentry workstation technology, specifically to a transfer workstation with waterproof and moisture-proof functions for outdoor foreign object sentry. Background Technology
[0002] The electronic sentinel system integrates foreign object detection technology based on lidar and foreign object recognition technology based on images. Through multi-sensor detection and big data analysis of areas such as tunnel entrances, slopes, and railway bridges, it achieves real-time monitoring of foreign object intrusion and encroachment behavior (such as falling rocks, landslides, mudslides, projectiles, and falling objects). Due to the use of multi-sensor fusion detection technology and the combination of big data multi-sample analysis, it can filter out the impact of severe weather such as rain, snow, and fog, resulting in high accuracy, low false alarm rate, and all-weather operation. Since some foreign object sentinels are installed in relatively remote locations, information relay work is required during practical use. Similarly, some relay workstations are usually located in relatively remote locations.
[0003] Since transfer stations are usually located in relatively remote locations and are typically outdoors, they need to have certain waterproof and moisture-proof functions to ensure that they can work for a relatively long period of time without frequent maintenance by personnel. Therefore, there is an urgent need to design an outdoor foreign object sentinel transfer station with waterproof and moisture-proof functions to solve the above problems. Utility Model Content
[0004] The technical problem to be solved by this invention is to achieve waterproof and moisture-proof functions without the need for frequent maintenance by replacing the desiccant, without the need for manual operation.
[0005] The technical solution adopted by this utility model to solve the technical problem is: an outdoor foreign object sentinel with waterproof and moisture-proof function transfer workstation, including: a box, a desiccant assembly and an ejection assembly;
[0006] The box wall has an insertion port, the top of the box has a cover plate, the bottom of the box has a base, the box wall has several heat dissipation slits, and the heat dissipation slits on the box are equipped with baffles.
[0007] The desiccant assembly includes an outer insertion box, an inner insertion box, and a film. The outer insertion box is detachably installed in the insertion port. An insertion groove is provided in the outer insertion box, and through openings are provided on the upper and lower walls of the insertion groove. The inner insertion box is inserted into the insertion groove. The inner insertion box has several through desiccant cavities corresponding to the through openings. Desiccant is placed in the desiccant cavities. The film is bonded to the two through openings of the desiccant cavities. When the outer insertion box is installed in the insertion port, the through openings are located inside the box.
[0008] The ejection assembly includes a mounting plate, a first horizontal moving mechanism, a second horizontal moving mechanism, and an ejection mechanism. The first horizontal moving mechanism is mounted on the mounting plate and is driven to a first base plate. The second horizontal moving mechanism is mounted on the first base plate and is driven to a second base plate. The movement direction of the first horizontal moving mechanism driving the first base plate is perpendicular to the movement direction of the second horizontal moving mechanism driving the second base plate. The ejection mechanism is mounted on the second base plate and is driven to an ejection seat. The size of the ejection seat corresponds to the size of the desiccant chamber opening. The mounting plate is mounted on the inner wall of the box and located below the insertion port.
[0009] As a preferred embodiment of the present invention, the first horizontal moving mechanism includes a first guide rail and a first linear motor. The first guide rail is disposed on the mounting plate, the first linear motor is driven and connected to the first guide rail, and the first base plate is disposed on the first linear motor.
[0010] By adopting the above technical solution, and by setting a first linear motor in conjunction with a first guide rail, the first linear motor can drive the first base plate to move horizontally along the first guide rail.
[0011] As a preferred embodiment of the present invention, the second horizontal moving mechanism includes a second guide rail and a second linear motor. The second guide rail is disposed on the first base plate, the second linear motor is driven and connected to the second guide rail, the second base plate is disposed on the second linear motor, and the extension direction of the first guide rail is perpendicular to the extension direction of the second guide rail.
[0012] By adopting the above technical solution, and by setting a second linear motor in conjunction with a second guide rail, the second linear motor can drive the second base plate to move horizontally along the second guide rail.
[0013] As a preferred embodiment of the present invention, the ejection mechanism includes an ejection cylinder, which is disposed on the second base plate. An ejection push rod is connected to the output end of the ejection cylinder, and the ejection push rod is connected to the ejection seat.
[0014] By adopting the above technical solution, the ejector cylinder provides power to drive the ejector push rod to move upward, thereby driving the ejector seat to move up and down.
[0015] As a preferred embodiment of the present invention, the desiccant assembly further includes a strip and an end cap. The strip is adhered between the insertion inner box and the film around several desiccant chambers, and the end cap is detachably installed at the opening of the insertion slot.
[0016] By adopting the above technical solution and setting the adhesive strip, the film can be better bonded to the inner box. By setting the end cap, the inner box can be limited after it is inserted into the insertion slot.
[0017] As a preferred technical solution of this utility model, the insert outer box is provided with a slot on the outer wall of the inner part of the box, a card holder is detachably installed on the slot, the card holder is connected to a desiccant basket, and the desiccant basket is detachably installed on the insert outer box through the card holder and the slot.
[0018] By adopting the above technical solution, a detachable desiccant basket is used to collect the desiccant pushed out of the desiccant chamber for drying.
[0019] The beneficial effects of this utility model are reflected in:
[0020] 1. By providing a desiccant chamber, the desiccant is contained. A film adhered to the opening of the desiccant chamber prevents the desiccant from falling out when not in use. When the inner box is inserted into the insertion slot and the outer box is installed in the insertion port, a push-out assembly, under the action of a first horizontal moving mechanism and a second horizontal moving mechanism, adjusts the position of the push-out mechanism. This moves the push-out seat to a specific desiccant chamber opening. The push-out mechanism then forces the push-out seat to pierce the film at the corresponding desiccant chamber opening, exposing the desiccant to the air and thus providing moisture protection. Because there are several desiccant chambers and the ejection mechanism can move to different positions, when the effectiveness of the ejected desiccant decreases, desiccant in other desiccant chambers is ejected to ensure that the moisture-proof function is maintained for a longer period of time. Since the desiccant in the desiccant chambers can be ejected sequentially, and the desiccant that is not ejected can be isolated from the air by the film in the corresponding desiccant chamber, the ejection time of each desiccant is determined based on historical experience or the moisture-proof effect of the desiccant, so as to maintain the moisture-proof function for a longer period of time. In this way, waterproof and moisture-proof functions can be achieved without manual operation and by replacing the desiccant.
[0021] 2. By setting up shields and baffles, rainwater is prevented from entering the container, thus achieving a waterproof effect. By setting up a platform, the overall height of the container is increased, preventing water from the ground from entering the container. Attached Figure Description
[0022] Figure 1 This is a frontal sectional view of the present invention;
[0023] Figure 2 This is a cross-sectional view of the front part of the desiccant basket of this utility model;
[0024] Figure 3 This is a side view of the present invention;
[0025] Figure 4 This is a top view of the desiccant assembly of this utility model;
[0026] Figure 5 This is a top view of the part of the utility model that is inserted into the outer box;
[0027] Figure 6 This is a top view of the part of the utility model that is inserted into the inner box;
[0028] Figure 7 This is a top view schematic diagram of the part of the present invention that is inserted into the inner box to remove the film, etc.;
[0029] Figure 8 This is a side sectional view of the part of the utility model that is inserted into the outer box;
[0030] Figure 9 This is a top view schematic diagram of the desiccant assembly of this utility model with the desiccant basket partially removed;
[0031] Figure 10 This is a side view of the desiccant basket part of this utility model;
[0032] Figure 11 This is a schematic diagram of the component part of this utility model.
[0033] In the diagram: 1. Box body; 2. Insertion port; 3. Desiccant assembly; 31. Insertion outer box; 32. Insertion slot; 33. Through port; 34. Insertion inner box; 35. Desiccant chamber; 36. Film; 37. Adhesive strip; 38. End cap; 39. Card slot; 310. Desiccant basket; 311. Card holder; 4. Push-out assembly; 41. Mounting plate; 42. First guide rail; 43. First linear motor; 44. First base plate; 45. Second guide rail; 46. Second linear motor; 47. Second base plate; 48. Push-out cylinder; 49. Push-out rod; 410. Push-out seat; 5. Cover plate; 6. Heat dissipation seam; 7. Baffle plate; 8. Platform. Detailed Implementation
[0034] The present invention will now be described in further detail with reference to the accompanying drawings.
[0035] Combined with appendix Figure 1-11As shown, an outdoor foreign object transfer station with waterproof and moisture-proof functions includes a housing 1, an insertion port 2, a desiccant assembly 3, an insertion outer box 31, an insertion slot 32, a through opening 33, an insertion inner box 34, a desiccant chamber 35, a film 36, a sticker 37, an end cap 38, a card slot 39, a desiccant basket 310, a card holder 311, an ejection assembly 4, a mounting plate 41, a first guide rail 42, a first linear motor 43, a first base plate 44, a second guide rail 45, a second linear motor 46, a second base plate 47, an ejection cylinder 48, an ejection push rod 49, an ejection seat 410, a cover plate 5, a heat dissipation seam 6, a baffle plate 7, and a platform 8.
[0036] Combined with appendix Figure 1-11As shown, an outdoor foreign object reconnaissance station with waterproof and moisture-proof functions includes: a housing 1, a desiccant assembly 3, and an ejection assembly 4. The housing 1 has an insertion port 2 on its wall, a cover plate 5 on its top, and a base 8 on its bottom. Several heat dissipation slits 6 are provided on the housing wall, and baffles 7 are provided at the locations of the heat dissipation slits 6. The desiccant assembly 3 includes an outer insertion box 31, an inner insertion box 34, and a film 36. The outer insertion box 31 is detachably installed in the insertion port 2. An insertion groove 32 is provided in the outer insertion box 31, and through openings 33 are provided on the upper and lower walls of the insertion groove 32. The inner insertion box 34 is inserted into the insertion groove 32, and has a [missing information - likely a design feature]. A plurality of through-holes 33 correspond to several through-holes 35, each containing a desiccant. A film 36 is bonded to the two through-holes of each desiccant cavity 35. When the insert outer casing 31 is installed in the insert port 2, the through-hole 33 is located inside the casing 1. The ejection assembly 4 includes a mounting plate 41, a first horizontal moving mechanism, a second horizontal moving mechanism, and an ejection mechanism. The first horizontal moving mechanism is mounted on the mounting plate 41 and is driven by a first base plate 44. The second horizontal moving mechanism is mounted on the first base plate 44 and is driven by a second base plate 47. The first horizontal moving mechanism drives the first base plate. The moving direction of 44 is perpendicular to the moving direction of the second horizontal moving mechanism driving the second base plate 47. The ejection mechanism is set on the second base plate 47, and the ejection mechanism is driven and connected to the ejection seat 410. The size of the ejection seat 410 corresponds to the size of the opening of the desiccant chamber 35. The mounting plate 41 is installed on the inner wall of the box body 1 and located below the insertion port 2. By setting the desiccant chamber 35, it is used to hold the desiccant. With the film 36 bonded at the opening of the desiccant chamber 35, the desiccant is prevented from falling out of the desiccant chamber 35 when not in use. When the inner box 34 is inserted into the insertion slot 32 and the outer box 31 is installed in the insertion port 2, the ejection assembly 4 is set to move in the first horizontal direction. Under the action of the directional moving mechanism and the second horizontal moving mechanism, the position of the ejection mechanism is adjusted so that the ejection seat 410 moves to the opening position of a certain desiccant chamber 35. With the push of the ejection mechanism, the ejection seat 410 breaks through the film 36 at the opening of the corresponding desiccant chamber 35, pushing the desiccant inside the corresponding desiccant chamber 35, exposing the desiccant to the air, thereby achieving a moisture-proof function. Since there are several desiccant chambers 35, and the ejection mechanism can move to different positions, when the effectiveness of the ejected desiccant decreases, desiccant in other desiccant chambers 35 is ejected to ensure a longer period of moisture-proof function. Because the desiccant in the desiccant chambers 35 can be ejected sequentially...Furthermore, any unexploded desiccant is isolated from the air by the film 36 in the corresponding desiccant chamber 35. Based on historical experience or the desiccant's moisture-proof effect, the timing of each desiccant's expulsion is determined, thus maintaining a longer moisture-proof effect. Through this method, waterproof and moisture-proof functions are achieved without manual operation or frequent maintenance by simply replacing the desiccant. The installation of the shield 5 and baffle 7 prevents rainwater from entering the chamber 1, thus providing a waterproof function. The installation of the platform 8 increases the overall height of the chamber 1, preventing water from the ground from entering the chamber 1.
[0037] Combined with appendix Figure 1-11As shown, the first horizontal moving mechanism includes a first guide rail 42 and a first linear motor 43. The first guide rail 42 is mounted on the mounting plate 41, and the first linear motor 43 is driven and connected to the first guide rail 42. The first base plate 44 is mounted on the first linear motor 43. The second horizontal moving mechanism includes a second guide rail 45 and a second linear motor 46. The second guide rail 45 is mounted on the first base plate 44, and the second linear motor 46 is driven and connected to the second guide rail 45. The second base plate 47 is mounted on the second linear motor 46. 6. The extension direction of the first guide rail 42 is perpendicular to the extension direction of the second guide rail 45. The ejection mechanism includes an ejection cylinder 48, which is disposed on the second base plate 47. The output end of the ejection cylinder 48 is connected to an ejection push rod 49, which is connected to an ejection seat 410. The desiccant assembly 3 also includes a strip 37 and an end cap 38. The strip 37 is adhered between the inner insertion box 34 and the film 36 around several desiccant chambers 35. The end cap 38 is detachably installed at the opening of the insertion slot 32. The outer insertion box 31... A slot 39 is provided on the outer wall of the inner part of the housing 1. A bracket 311 is detachably installed on the slot 39. The bracket 311 is connected to a desiccant basket 310. The desiccant basket 310 is detachably installed on the outer housing 31 via the bracket 311 and the slot 39. By setting a first linear motor 43 in conjunction with a first guide rail 42, the first linear motor 43 can drive the first base plate 44 to move horizontally along the first guide rail 42. By setting a second linear motor 46 in conjunction with a second guide rail 45, the second linear motor 46 can move horizontally. The second base plate 47 can move horizontally along the second guide rail 45. The ejection cylinder 48 provides power to drive the ejection push rod 49 to move upward, thereby driving the ejection seat 410 to move up and down. The adhesive strip 37 ensures that the film 36 can better adhere to the inner box 34. The end cap 38 limits the inner box 34 after it is inserted into the insertion slot 32. The desiccant basket 310, which can be detachably installed, collects the desiccant pushed out from the desiccant chamber 35 for drying.
[0038] Working principle: In use, the desiccant is first encapsulated in several desiccant chambers 35 by a film 36. Then, the inner insert 34 is inserted into the insert slot 32, the end cap 38 is installed, and the outer insert 31 is installed into the insert port 2. The installation method is bolt installation. Based on the continuous effect of the desiccant or historical experience, the working timing of the first linear motor 43 and the second linear motor 46 is adjusted. Based on the position of the several desiccant chambers 35, the working stroke mode of the first linear motor 43 and the second linear motor 46 is adjusted. In conjunction with the working stroke mode of the first linear motor 43 and the second linear motor 46, the working stroke of the ejector cylinder 48 is adjusted. In this process, the desiccant in several desiccant chambers 35 is pushed out by the cooperation of the first linear motor 43, the second linear motor 46, and the push-out cylinder 48. The pushed-out desiccant plays a role in preventing moisture, while the unpushed desiccant is isolated from the air by the presence of the film 36, thus maintaining the drying effect. The pushed-out desiccant is collected by the desiccant basket 310 to prevent the desiccant from scattering and to ensure the moisture-proof effect of the desiccant. The shield 5 and the baffle 7 prevent rainwater from entering the box 1, thus achieving a waterproof effect. The box 1 is raised by the platform 8 to prevent water from the ground from entering the box 1.
[0039] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A waterproof and moisture-proof transfer workstation for outdoor foreign object interception, comprising: The housing (1), desiccant assembly (3), and ejection assembly (4) are characterized in that: The box (1) has an insertion port (2) on its wall, a cover plate (5) on its top, a base (8) on its bottom, a number of heat dissipation seams (6) on its wall, and a baffle plate (7) at the location of the heat dissipation seams (6) on its wall. The desiccant assembly (3) includes an outer insertion box (31), an inner insertion box (34), and a film (36). The outer insertion box (31) is detachably installed in the insertion port (2). An insertion groove (32) is provided in the outer insertion box (31). Through openings (33) are provided on the upper and lower groove walls of the insertion groove (32). The inner insertion box (34) is inserted into the insertion groove (32). A plurality of through desiccant cavities (35) corresponding to the through openings (33) are provided on the inner insertion box (34). Desiccant is placed in the desiccant cavities (35). The film (36) is bonded to the two through openings of the desiccant cavities (35). When the outer insertion box (31) is installed in the insertion port (2), the through openings (33) are located inside the box body (1). The ejection assembly (4) includes a mounting plate (41), a first horizontal moving mechanism, a second horizontal moving mechanism, and an ejection mechanism. The first horizontal moving mechanism is mounted on the mounting plate (41) and is driven to connect to a first base plate (44). The second horizontal moving mechanism is mounted on the first base plate (44) and is driven to connect to a second base plate (47). The direction of movement of the first base plate (44) driven by the first horizontal moving mechanism is perpendicular to the direction of movement of the second base plate (47) driven by the second horizontal moving mechanism. The ejection mechanism is mounted on the second base plate (47) and is driven to connect to an ejection seat (410). The size of the ejection seat (410) corresponds to the size of the opening of the desiccant chamber (35). The mounting plate (41) is mounted on the inner wall of the box body (1) and is located below the insertion port (2).
2. The outdoor foreign object sentry relay station with waterproof and moisture-proof functions according to claim 1, characterized in that: The first horizontal moving mechanism includes a first guide rail (42) and a first linear motor (43). The first guide rail (42) is mounted on the mounting plate (41), the first linear motor (43) is driven and connected to the first guide rail (42), and the first base plate (44) is mounted on the first linear motor (43).
3. The outdoor foreign object sentry relay station with waterproof and moisture-proof functions according to claim 2, characterized in that: The second horizontal moving mechanism includes a second guide rail (45) and a second linear motor (46). The second guide rail (45) is disposed on the first base plate (44), and the second linear motor (46) is driven and connected to the second guide rail (45). The second base plate (47) is disposed on the second linear motor (46). The extension direction of the first guide rail (42) is perpendicular to the extension direction of the second guide rail (45).
4. A waterproof and moisture-proof transfer workstation for outdoor foreign object interception as described in claim 3, characterized in that: The ejection mechanism includes an ejection cylinder (48), which is mounted on the second base plate (47). The output end of the ejection cylinder (48) is connected to an ejection push rod (49), which is connected to an ejection seat (410).
5. A waterproof and moisture-proof transfer workstation for outdoor foreign object interception as described in claim 1, characterized in that: The desiccant assembly (3) also includes a strip (37) and an end cap (38). The strip (37) is attached between the insert inner box (34) and the film (36) around the desiccant chambers (35). The end cap (38) is detachably installed at the opening of the insert slot (32).
6. A waterproof and moisture-proof transfer workstation for outdoor foreign object interception as described in claim 1, characterized in that: The insertion outer box (31) is located on the outer side wall of the inner part of the box body (1) and a card slot (39) is provided. A card holder (311) is detachably installed on the card slot (39). A desiccant basket (310) is connected to the card holder (311). The desiccant basket (310) is detachably installed on the insertion outer box (31) through the card holder (311) and the card slot (39).