Portable ice surface weather station fixing device

By designing telescopic and fixing components on the portable weather station, and using a drill bit and insertion teeth to fix it in the ice layer, the problem of the weather station's stability on the ice surface was solved, enabling normal data collection under severe weather conditions.

CN223677407UActive Publication Date: 2025-12-16NORTHWEST INST OF ECO ENVIRONMENT & RESOURCES CAS
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Patent Information

Application Number
CN202520114612.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-12-16
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Existing portable weather station mounting devices are not stable on ice and are prone to tipping over in severe weather, making it impossible to collect meteorological data normally.

Method used

A portable ice weather station fixing device was designed, which includes a telescopic component and a fixing component. The fixing component fixes the drill cylinder and the insertion teeth in the ice layer through the drilling component and the insertion component, ensuring that the weather station is stable on the ice surface.

Benefits of technology

It effectively prevents the weather station from becoming loose on the ice, ensuring normal collection of meteorological data under severe weather conditions and improving the stability of the fixed device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of weather station fixing devices, and particularly relates to a portable ice surface weather station fixing device which comprises a telescopic assembly, a monitoring head is fixed to the extending end of the telescopic assembly, and a plurality of supporting legs are arranged at the end, away from the monitoring head, of the telescopic assembly. The fixing assembly is arranged at the end, close to the ground, of the supporting leg, and the fixing assembly comprises a drilling assembly and an inserting assembly; the drilling-in assembly comprises a torsion head, the torsion head is hinged to the end, close to the ground, of the supporting leg, a rotating shaft is rotationally connected into the torsion head, a drilling-in cylinder is fixed to one end of the rotating shaft, an inserting assembly is arranged in the drilling-in cylinder and comprises a plurality of inserting teeth, and penetrating holes corresponding to the inserting teeth in number and position are formed in the drilling-in cylinder. The insertion teeth extend from the through holes and are inserted into the ice layer. The weather station can be effectively prevented from being loosened from the ice surface, the stability of the whole weather station fixed on the ice surface is enhanced, and the weather station is not affected by severe weather in the region and normally collects meteorological data.
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Description

TECHNICAL FIELD

[0001] The utility model relates to meteorological station fixing device technical field, especially, relate to a portable ice surface meteorological station fixing device. BACKGROUND

[0002] Portable meteorological station is a kind of portable, easy to use, high measurement accuracy, integrated movable observation system of multiple meteorological elements, the system adopts new integrated structure design, good workmanship, can collect temperature, humidity, wind direction, wind speed, solar radiation, rainfall, air pressure, illumination, soil temperature, soil humidity, dew point and other multiple information and make announcement and trend analysis.

[0003] The existing portable meteorological station is mostly equipped with three-leg folding support, and the three-leg folding support is used as the fixing device of the meteorological station to assist the fixing of the meteorological station at each measuring point.In northern China, a large number of frozen areas are generated in winter, and in reality, meteorological monitoring needs to be carried out in some ice surface areas.The existing three-leg folding support is insufficient to fix the meteorological station in these ice surface areas, and the meteorological station may even be separated from the ice surface due to the influence of severe weather in such areas, resulting in the overall meteorological station falling on the ice surface and thus failing to obtain normal meteorological data.Therefore, an ice surface fixing device needs to be designed to fix the meteorological station on some specific ice surface areas. UTILITARIAN CONTENT

[0004] The utility model aims at providing a portable ice surface meteorological station fixing device to solve the problems existing in the prior art.

[0005] To achieve the above-mentioned purpose, the utility model provides the following scheme: the utility model provides a portable ice surface meteorological station fixing device, which comprises:

[0006] The telescopic assembly is fixed with a monitoring head at the extending end, and a plurality of supporting legs are arranged at the end away from the monitoring head;

[0007] The fixing assembly is arranged at the end close to the ground on the supporting leg, and comprises a drilling assembly and an insertion assembly;

[0008] The drilling assembly comprises a torsion head, which is hinged at the end close to the ground on the supporting leg, and a rotating shaft is connected in the torsion head, one end of the rotating shaft is fixed with a drilling cylinder, the insertion assembly is arranged in the drilling cylinder, the insertion assembly comprises a plurality of insertion teeth, a plurality of perforations corresponding to the number and position of the insertion teeth are formed on the drilling cylinder, and the insertion teeth are inserted into the ice layer after the drilling cylinder is inserted into the ice layer.

[0009] Preferably, the drilling assembly further comprises:

[0010] A fixed plate is fixed on the rotating shaft near the ground end, and the drilling cylinder is fixed on the ground side of the fixed plate.

[0011] A bearing is sleeved on the rotating shaft and clamped in the torsion head, the rotating shaft is provided with a boss, the boss is arranged in the torsion head, and one side of the boss is in contact with the bearing.

[0012] Preferably, the insertion assembly further comprises:

[0013] A screw rod is provided with a threaded through hole in the rotating shaft, the screw rod is threadedly connected in the threaded through hole, and a snap ring is further fixed on the ground end of the screw rod.

[0014] A top plate is arranged on the ground end of the screw rod, a snap ring sleeve is fixed on the side of the top plate close to the screw rod, the top plate is clamped with the snap ring through the snap ring sleeve, and the insertion teeth are hingedly connected on the side, away from the screw rod, of the top plate.

[0015] Preferably, a guide plate is further fixed on the inner side wall of the drilling cylinder, the guide plate is arranged on the ground side of the perforation, and the insertion teeth are inserted into the corresponding perforation through the guide plate.

[0016] Preferably, an outer embedding hole is further arranged on the ground end of the rotating shaft, and the rotating shaft is drivingly connected with an external power source through the outer embedding hole.

[0017] Preferably, an inner embedding hole is further arranged on the ground end of the screw rod, and the screw rod is drivingly connected with an external power source through the inner embedding hole.

[0018] Preferably, a base is fixed on the end, away from the monitoring head, of the telescopic assembly, a plurality of support legs are hingedly connected on the side, away from the monitoring head, of the base, and the support legs are hingedly connected with the torsion head through a pair of hinge plates.

[0019] Preferably, a spiral tooth is further fixed on the outer side wall of the drilling cylinder.

[0020] The utility model discloses the following technical effects:

[0021] The utility model discloses the following technical effects: DRAWINGS

[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced as follows. Obviously, the drawings described in the following embodiments are only some of the embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0023] Figure 1 It is a schematic diagram of the overall structure of the present application.

[0024] Figure 2 It is a schematic diagram of the structure of the fixing assembly.

[0025] Figure 3 It is a schematic diagram of the structure of the fixing assembly after being partially cut.

[0026] Figure 4 It is a schematic diagram of the full section of the drilling cylinder in the positive direction.

[0027] Figure 5 It is a schematic diagram of the full section of the inserted tooth after passing through the drilling cylinder in the positive direction.

[0028] Figure 6 It is a schematic diagram of the structure of the telescopic assembly after being extended.

[0029] Among them, 1, monitoring head; 2, telescopic assembly; 21, first telescopic rod; 22, second telescopic rod; 23, third telescopic rod; 24, fourth telescopic rod; 25, upper button; 26, lower button; 3, base; 4, supporting leg; 41, hinged plate; 5, fixing assembly; 51, torsion head; 52, rotating shaft; 53, fixed plate; 54, drilling cylinder; 55, screw rod; 56, snap ring; 57, top plate; 58, inserted tooth; 59, perforation; 510, bearing; 511, helical tooth; 512, outer embedding hole; 513, inner embedding hole; 514, guide plate; 515, snap ring sleeve. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be described clearly and completely in the following with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, and not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0031] In order to make the above-mentioned purposes, features and advantages of the present application more obvious and easy to understand, the present application will be further described in detail with reference to the drawings and specific embodiments.

[0032] Reference Figures 1-6The utility model discloses a portable ice surface weather station fixing device, include: telescopic component 2, telescopic component 2 fixed monitoring head 1 of extension end, telescopic component 2 is provided with a plurality of support leg 4 away from monitoring head 1 one end, fixed component 5 is set up on the support leg 4 near ground one end, and fixed component 5 includes drilling into component and insert component, drilling into component includes torsion head 51, and torsion head 51 is hinged on the support leg 41 near ground one end, and the rotation is connected pivot 52 in torsion head 51, and one end of pivot 52 is fixed with drilling into cylinder 54, and insert component is set up in drilling into cylinder 54, and insert component includes a plurality of insert teeth 58, and the drilling into cylinder 54 is set up with the perforation 59 of the corresponding number and position of insert tooth 58 on, and after drilling into cylinder 54 inserts ice layer, insert tooth 58 extends from the perforation 59 and inserts ice layer.

[0033] The device is fixed on the ice surface by drilling the drilling into cylinder 54 into the specified ice layer area, and the plurality of insert teeth 58 in the drilling into cylinder 54 are inserted into the ice layer, so that the drilling into cylinder 54 is not easy to be pulled out of the ice layer, the stability of the weather station is further improved after being fixed on the ice surface, and the weather station is prevented from being loosened from the ice surface in this environment, so that the weather station is not affected by the severe weather in this region and can normally collect weather data.

[0034] In addition, the telescopic component 2 includes a first telescopic rod 21, a second telescopic rod 222, a third telescopic rod 23 and a fourth telescopic rod 24 which are sequentially sleeved from inside to outside, wherein a limiting hole is formed in each of the first telescopic rod 21, the second telescopic rod 22, the third telescopic rod 23 and the fourth telescopic rod 24, an upper button 25 is arranged on each of the first telescopic rod 21, the second telescopic rod 22 and the third telescopic rod 23, and a lower button 26 is arranged on each of the second telescopic rod 22 and the third telescopic rod 23, the overall length of the telescopic component 2 is changed by lengthening each telescopic rod and controlling the corresponding upper button 25, lower button 26 and limiting hole, so that the weather station can be set to a corresponding height according to actual conditions, and when the overall length of the telescopic component 2 is the shortest, the overall weather station is convenient to carry, in addition, a plurality of telescopic rods can be sleeved according to actual conditions to meet the height requirement during use.

[0035] In a further optimization scheme, the drilling into component further includes: a fixed plate 53 fixed to one end of the pivot 52 near the ground, and the drilling into cylinder 54 is fixed to one side of the fixed plate 53 near the ground; a bearing 510 is sleeved on the pivot 52 and clamped in the torsion head 51, the pivot 52 is provided with a boss, and the boss is arranged in the torsion head 51 and the side of the boss is in contact with the bearing 510.

[0036] When the drilling cylinder 54 drills into the ice layer, the drilling position of the drilling cylinder 54 is determined according to the actual ice surface, and after the drilling position is selected, a suitable hex wrench is inserted into the outer embedded hole 512, and a suitable power drill is fixedly connected with the hex wrench, the drill is started, the rotating shaft 52 is rotated, and the drilling cylinder 54 is drilled into the ice surface; wherein the bearing 510 is selected as a tapered roller bearing or an angular contact ball bearing, so that the rotating shaft 52 can overcome the radial and axial resistance at the same time.

[0037] Further optimization scheme, the insertion assembly further comprises: a screw rod 55, a threaded hole is formed in the rotating shaft 52, the screw rod 55 is threadedly connected in the threaded hole, and the screw rod 55 is further fixed with a snap ring 56 at the ground end; a top plate 57 is arranged at the ground end of the screw rod 55, the top plate 57 is fixed with a snap ring sleeve 515 at the side close to the screw rod 55, and the top plate 57 is clamped with the snap ring 56 through the snap ring sleeve 515; a plurality of insertion teeth 58 are hinged at the side of the top plate 57 away from the screw rod 55.

[0038] Further optimization scheme, the inside wall of the drilling cylinder 54 is further fixed with a guide plate 514, the guide plate 514 is arranged at the side close to the ground of the perforation 59, and the insertion tooth 58 is inserted into the corresponding perforation 59 through the guide plate 514.

[0039] When the drilling cylinder 54 is inserted into the ice layer, a hex wrench of a suitable type is inserted into the inner embedded hole 513, and an external power source is started to drive the screw rod 55 to rotate, at this time, the screw rod 55 moves downward, the top plate 57 is pushed downward, and the plurality of insertion teeth 58 gradually pass through the perforation 59 and are inserted into the ice layer under the guidance of the guide plate 514 and the pressing of the top plate 57, at this time, the drilling cylinder 54 is clamped in the ice layer under the restriction of the helical tooth 511 and the plurality of insertion teeth 58, so that the whole meteorological station is further fixed with the ice surface; when it is necessary to remove, the screw rod 55 is reversely rotated, the screw rod 55 moves upward, the top plate 57 is driven to move upward through the snap ring sleeve 515, so that the plurality of insertion teeth 58 are retracted from the ice layer into the drilling cylinder 54; then the rotating shaft 52 is reversely rotated to rotate out of the drilling cylinder 54, and the meteorological station can be removed; in addition, it should be noted that the top end of the insertion tooth 58 needs to be prevented from being in the space between the guide plate 514 and the inner side wall of the drilling cylinder 54, so as to prevent the insertion tooth 58 from being pulled out of the guide plate 514.

[0040] Further optimization scheme, the rotating shaft 52 is further provided with an outer embedded hole 512 at the ground end, and the rotating shaft 52 is drivingly connected with the external power source through the outer embedded hole 512.

[0041] Further optimization scheme, the screw rod 55 is away from the ground end is also provided with the embedded hole 513, the screw rod 55 is driven connection with external power source through the embedded hole 513, wherein, it needs to be noted that the embedded hole 513 size should be less than the embedded hole 512, to distinguish the rotating shaft 52 and the screw rod 55, prevent the external power from being connected with the screw rod 55 when the drilling cylinder 54 is inserted into the ice layer.

[0042] Further optimization scheme, the telescopic assembly 2 is fixed with the base 3 away from the monitoring head 1, and a plurality of support legs 4 are hinged to the side away from the monitoring head 1 of the base 3;The support leg 4 is hinged to the torsion head 51 through a pair of hinge plates 41.

[0043] Further optimization scheme, the outer side wall of the drilling cylinder 54 is also fixed with the spiral tooth 511, wherein the spiral tooth 511 assists the drilling cylinder 54 to drill into the ice layer, and simultaneously makes the drilling cylinder 54 drilling into the ice layer and the ice layer mutually clamped, thereby improving the stability of the fixing assembly 5.

[0044] Working process: a plurality of support legs 4 are expanded, and the drilling position of the drilling cylinder 54 is determined according to the actual ice surface condition;After selecting the drilling position, the appropriate hex wrench is inserted into the embedded hole 512, and the drilling machine with appropriate power is fixedly connected with the hex wrench, the drilling machine is started, and the drilling cylinder 54 is drilled into the ice surface;Then the hex wrench is removed, the small hex wrench is replaced and inserted into the embedded hole 513, the drilling machine is started, and the screw rod 55 is rotated, at this time, the screw rod 55 moves downward, the top plate 57 is pushed downward, the plurality of insertion teeth 58 gradually pass through the perforated hole 59 under the guidance of the guide plate 514 and the pressing of the top plate 57 and are inserted into the ice layer, at this time, the drilling cylinder 54 is clamped in the ice layer under the restriction of the spiral tooth 511 and the plurality of insertion teeth 58, so that the whole meteorological station is fixed with the ice surface under the fixation of the fixing assembly 5;When the meteorological station needs to be removed, the screw rod 55 and the rotating shaft 52 are reversely rotated, so that the plurality of insertion teeth 58 and the drilling cylinder 54 are sequentially pulled out of the ice layer.

[0045] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0046] The above-described embodiments are merely preferred modes of the present application, and are not intended to limit the scope of the present application, and various modifications and improvements to the technical solutions of the present application made by those of ordinary skill in the art without departing from the design spirit of the present application shall fall within the protection scope of the present application as defined by the claims.

Claims

1. A portable ice surface weather station fixture, characterized in that, The utility model relates to a monitoring head for ice layer, which comprises: a telescopic assembly (2) fixed with a monitoring head (1) at one end, and a plurality of supporting legs (4) arranged at the other end of the telescopic assembly (2) away from the monitoring head (1); a fixing assembly (5) arranged at the end of the supporting legs (4) close to the ground, which comprises a drilling assembly and an insertion assembly; the drilling assembly comprises a torsion head (51) hinged at the end of the supporting legs (4) close to the ground, and a rotating shaft (52) rotatably connected in the torsion head (51), wherein one end of the rotating shaft (52) is fixed with a drilling cylinder (54), the insertion assembly is arranged in the drilling cylinder (54), the insertion assembly comprises a plurality of insertion teeth (58), and a plurality of perforations (59) corresponding in number and position to the insertion teeth (58) are formed in the drilling cylinder (54), wherein the insertion teeth (58) are extended out of the perforations (59) and inserted into the ice layer after the drilling cylinder (54) is inserted into the ice layer.

2. A portable ice surface weather station fixation device according to claim 1, characterized in that the drilling assembly further comprises: a fixed plate (53) fixed at the end of the rotating shaft (52) close to the ground, and the drilling cylinder (54) is fixed at the side of the fixed plate (53) close to the ground; a bearing (510) sleeved on the rotating shaft (52) and clamped in the torsion head (51), wherein a boss is arranged on the rotating shaft (52), the boss is arranged in the torsion head (51), and one side of the boss is in contact with the bearing (510).

3. The portable ice surface weather station fixation device according to claim 1, characterized in that, the insertion assembly further comprises: a screw rod (55), a threaded through hole is formed in the rotating shaft (52), and the screw rod (55) is threadedly connected in the threaded through hole, wherein a snap ring (56) is further fixed at the end of the screw rod (55) close to the ground; a top plate (57) arranged at the end of the screw rod (55) close to the ground, wherein a snap ring sleeve (515) is fixed at the side of the top plate (57) close to the screw rod (55), the top plate (57) is clamped with the snap ring (56) through the snap ring sleeve (515), and a plurality of insertion teeth (58) are hinged at the side of the top plate (57) away from the screw rod (55).

4. The portable ice surface weather station fixation device according to claim 1, characterized in that a guide plate (514) further fixed on the inner side wall of the drilling cylinder (54), wherein the guide plate (514) is arranged at the side of the perforations (59) close to the ground, and the insertion teeth (58) are inserted into the corresponding perforations (59) through the guide plate (514).

5. The portable ice surface weather station fixation device according to claim 1, characterized in that an outer embedding hole (512) further formed at the end of the rotating shaft (52) away from the ground, and the rotating shaft (52) is drivingly connected with an external power source through the outer embedding hole (512).

6. The portable ice surface weather station fixation device according to claim 3, characterized in that an inner embedding hole (513) further formed at the end of the screw rod (55) away from the ground, and the screw rod (55) is drivingly connected with an external power source through the inner embedding hole (513).

7. The portable ice surface weather station fixation device according to claim 1, characterized in that a base (3) fixed at the end of the telescopic assembly (2) away from the monitoring head (1), wherein a plurality of supporting legs (4) are hinged at the side of the base (3) away from the monitoring head (1), and the supporting legs (4) are hinged with the torsion head (51) through a pair of hinge plates (41).

8. The portable ice surface weather station fixation device according to claim 1, characterized in that a helical tooth (511) further fixed on the outer side wall of the drilling cylinder (54).