Rapid deicing device of wind measurement system based on mechanical vibration

By using mechanical vibration to prevent ice water retention, the problem of ice water refreezing in the de-icing device of the wind measurement system in low-temperature environments is solved, achieving a more efficient de-icing effect.

CN223847674UActive Publication Date: 2026-01-30GUOHUA (LINQU) WIND POWER CO LTD
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Patent Information

Application Number
CN202520764646.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2026-01-30
Estimated Expiration
2035-04-22

AI Technical Summary

Technical Problem

The existing rapid de-icing device for wind measurement systems is prone to refreezing of melted ice water in low-temperature environments, affecting the normal operation of the wind measurement system.

Method used

Mechanical vibration is used to drive the lifting slide to move via a drive motor, which in turn drives the heating rod to reciprocate to remove ice. The intermittent impact of rubber blocks on the rotating rod generates vibration to prevent ice water from accumulating.

Benefits of technology

It effectively prevents ice water from refreezing in low-temperature environments, keeps the surface of the wind measurement system dry, and improves the convenience and practicality of de-icing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a wind measuring system rapid deicing device based on mechanical vibration, and relates to the technical field of anemorumbometers. The upper part of the fixed sleeve is rotationally connected with a rotating rod; the upper part of the rotating rod is fixedly connected with a wind indicator; a wind speed wheel is arranged on the top end surface of the rotating rod; a fixed frame is arranged at the rear part of the fixed sleeve; a connecting frame is fixedly connected to the center of the rear end face of the fixing frame. A protection box is fixedly connected to the center of the top end face of the connecting frame. The control connecting rod can be driven to swing in the reciprocating movement process of the lifting sliding frame, then the rubber block intermittently impacts the rotating rod through a series of transmission, the rotating rod vibrates, and the problems that molten ice water usually drips or detents along the surface of the wind measuring system, and if the surrounding environment temperature is low, the temperature of the ice water is too high are solved. And dripping or detained ice water is easy to freeze again in a low-temperature environment.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of wind direction and speed instrument, especially relates to the quick deicing device of wind measurement system based on mechanical vibration. BACKGROUND

[0002] In the process of atmospheric meteorological monitoring, the wind direction and speed are often detected by using the wind measurement system, and in winter snow weather, in order to prevent the effect of wind measurement from being affected by the icing outside the wind measurement system, the ice on the wind measurement system is usually cleaned by using the quick deicing device of wind measurement system, and the existing quick deicing device of wind measurement system is usually composed of a fixing sleeve, a wind vane, a wind speed wheel and a heating rod.

[0003] For example: the utility model discloses a wind speed and direction instrument deicing device, and specifically the utility model relates to the technical field of wind speed and direction instrument deicing, in particular to a wind speed and direction instrument deicing device, which is convenient to install and remove, improves convenience, and is convenient for deicing wind speed and direction instruments of different diameters, and improves practicability;Including main body mechanism;Further including mounting mechanism, sliding mechanism, driving mechanism, two adjusting mechanisms and two deicing mechanisms, the mounting mechanism is installed on the outer wall of the main body mechanism, the sliding mechanism is installed at the top of the mounting mechanism, the driving mechanism is installed on the side wall of the mounting mechanism, the two adjusting mechanisms are installed on the sliding mechanism, and each deicing mechanism is installed on an adjusting mechanism, the wind speed and direction are detected through the main body mechanism, the mounting mechanism is convenient for installing the whole on the outer wall of the main body mechanism, and the sliding mechanism is convenient for the deicing mechanism to reciprocatingly heat the main body mechanism.

[0004] However, as for the current traditional quick deicing device of wind measurement system, the ice layer outside the wind measurement system is usually heated by the heating rod to make the ice layer melt and deice, but the melted ice water usually drips or stays along the surface of the wind measurement system, at this time, if the ambient temperature is low, the dripping or staying ice water is easy to freeze again under the low-temperature environment, forming secondary icing, affecting the normal use of the wind measurement system, and the use is inconvenient. UTILITY MODEL CONTENTS

[0005] Therefore, the utility model provides based on mechanical vibration's quick ice removing device of wind measurement system, it has the rubber block that can prevent ice water stagnation, through starting drive motor, makes drive motor drive lift double -end screw rod to rotate, with the rotation of lift double -end screw rod will drive two lift carriages to move simultaneously, through the positive and negative rotation of drive motor makes lift carriages move back and forth simultaneously, with the back and forth movement of lift carriages will make heating rod reciprocating ice removal to rotating rod, with the back and forth movement of lift carriages will drive control connecting rod to swing, with the swing of control connecting rod will drive connecting block to move, with the movement of connecting block will drive fixed seat to move, with the movement of fixed seat will make rubber block intermittent impact rotating rod, make rotating rod vibrate, through the setting of buffer spring can provide buffer for rubber block, also can guarantee the impact effect of rubber block to rotating rod.

[0006] The utility model provides based on mechanical vibration's quick ice removing device of wind measurement system, specifically includes: fixed sleeve, the upper portion rotation connection of fixed sleeve has a rotating rod, the upper portion fixed connection of rotating rod has a wind vane, the upper portion of rotating rod top surface is provided with the wind speed wheel, the rear portion of fixed sleeve is provided with the fixed frame, the rear end surface fixed connection of fixed frame has a connecting frame in the middle, the top surface fixed connection of connecting frame has a protection box in the middle, the connecting frame is inwards symmetrical sliding connection with two lift carriages, the front end surface all is fixedly connected with an auxiliary frame of two lift carriages, two auxiliary frames are all with the position of rotating rod.

[0007] Optionally, a first adjusting double -end screw rod is rotationally connected in the fixed frame; the thread rotation directions of the two ends of the first adjusting double -end screw rod are opposite; two mounting clamps are symmetrically slidingly connected in the fixed frame; the two mounting clamps are symmetrically screw-connected outside the first adjusting double -end screw rod.

[0008] Optionally, the ends of the two lift carriages are each fixedly connected with an auxiliary frame; a second adjusting double -end screw rod is rotationally connected in each of the two auxiliary frames; the thread rotation directions of the two ends of the two second adjusting double -end screw rods are opposite; a group of adjusting sliding blocks are screw-connected outside each of the two second adjusting double -end screw rods; the two groups of adjusting sliding blocks are slidingly connected in the two auxiliary frames respectively; the front end surfaces of the two groups of adjusting sliding blocks are each provided with a heating rod.

[0009] Optionally, a drive motor is bolt-fastened to the top surface of the connecting frame; the drive motor is arranged in the protection box; a lift double -end screw rod is coaxially fixedly connected to the lower portion of the rotating shaft of the drive motor; the thread rotation directions of the two ends of the lift double -end screw rod are opposite; the two lift carriages are symmetrically screw-connected outside the lift double -end screw rod.

[0010] Optionally, the outer part of each of the two lifting carriages is symmetrically hingedly connected with two control connecting rods; the two control connecting rods on the same side are hingedly connected with a connecting block; the front end face of each of the two connecting blocks is fixedly connected with a fixing seat; the inner side of each of the two fixing seats is slidably connected with a sliding seat; the outer part of each of the two sliding seats is fixedly connected with a buffer spring; the ends of the two buffer springs are fixedly connected in the two fixing seats respectively; each of the two sliding seats is provided with a rubber block.

[0011] Optionally, the outer part of each of the two rubber blocks is provided with a group of mounting slots; each of the two sliding seats is slidably connected with a group of connecting insertion frames; the two groups of connecting insertion frames are inserted in the two groups of mounting slots respectively; the upper part of each of the two groups of connecting insertion frames is fixedly connected with a group of return springs; the ends of the two groups of return springs are fixedly connected with the upper part of each of the two sliding seats respectively.

[0012] Beneficial effects

[0013] In the process of use, the second adjusting double-end screw rod is rotated, the heating rod is driven to move, the distance between the heating rod and the rotating rod is adjusted according to the ice layer thickness through the movement of the heating rod, the driving motor is started, the lifting double-end screw rod drives the two lifting carriages to move reciprocatingly at the same time, the heating rod moves reciprocatingly on the rotating rod along with the reciprocating movement of the lifting carriages, the ice layer is uniformly melted along the circumference, and the practicability of the wind measurement system quick ice removing device is effectively improved.

[0014] In the process of reciprocating movement of the lifting carriages, the control connecting rod is swung, the connecting block is moved along with the swinging of the control connecting rod, the fixing seat is moved along with the movement of the connecting block, the rubber block intermittently hits the rotating rod along with the movement of the fixing seat, the rotating rod is vibrated, the ice is accelerated to fall off, the melted ice water is timely flowed away from the surface of the wind measurement system through vibration, the ice is avoided from being frozen again and attached to the wind measurement system in a low-temperature environment, the surface of the wind measurement system is kept relatively dry, the possibility of ice reformation is reduced, and the convenience of the wind measurement system quick ice removing device is effectively improved. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the drawings of the embodiments will be briefly introduced below.

[0016] In the drawings:

[0017] Figure 1 is the axonometric structure schematic view of the utility model.

[0018] Figure 2 is the axonometric structure schematic view of the right view of the utility model.

[0019] Figure 3Is the sectional view structure schematic diagram of the utility model.

[0020] Figure 4 Is the axial measurement structure schematic diagram of the second adjusting double-end screw rod of the utility model.

[0021] Figure 5 Is the axial measurement structure schematic diagram of the installation slot of the utility model.

[0022] Figure 6 Is the A place enlarged structure schematic diagram of the utility model Figure 5 .

[0023] Figure 7 Is the sectional view structure schematic diagram of the utility model fixed seat.

[0024] List of reference signs

[0025] 1, fixed sleeve;101, rotating rod;102, wind vane;103, wind speed wheel;104, fixed frame;105, installation clamping plate;106, first adjusting double-end screw rod;107, connecting frame;108, protection box;109, drive motor;110, lifting double-end screw rod;111, lifting sliding frame;112, auxiliary frame;113, adjusting sliding block;114, heating rod;115, control connecting rod;116, connecting block;117, fixed seat;118, sliding seat;119, rubber block;120, installation slot;121, connecting plug frame;122, reset spring;123, buffer spring;124, second adjusting double-end screw rod. Specific implementation

[0026] In order to make the purpose, scheme and advantage of the technical scheme of the utility model more clear, the technical scheme of the utility model embodiment will be clearly and completely described below in combination with the drawings of the specific embodiment of the utility model. Unless otherwise specified, the terms used in this paper have the usual meaning in the art. The same reference signs in the drawings represent the same parts.

[0027] Example one:

[0028] The utility model proposes a quick deicing device of wind measurement system based on mechanical vibration, please refer to Figures 1 to 7 , including: fixed sleeve 1;

[0029] The upper part of the fixed sleeve 1 is rotationally connected with a rotating rod 101; the upper part of the rotating rod 101 is fixedly connected with a wind vane 102; the top end surface of the rotating rod 101 is provided with a wind speed wheel 103; the rear part of the fixed sleeve 1 is provided with a fixed frame 104; the rear end surface of the fixed frame 104 is fixedly connected with a connecting frame 107 in the middle; the top end surface of the connecting frame 107 is fixedly connected with a protection box 108 in the middle; two lifting carriages 111 are symmetrically and slidingly connected in the connecting frame 107; each of the front end surfaces of the two lifting carriages 111 is fixedly connected with an auxiliary frame 112; the two auxiliary frames 112 are aligned with the position of the rotating rod 101.

[0030] A first adjusting double-headed screw rod 106 is rotationally connected in the fixed frame 104; the thread directions of the two ends of the first adjusting double-headed screw rod 106 are opposite; two mounting clamping plates 105 are symmetrically and slidingly connected in the fixed frame 104; the two mounting clamping plates 105 are symmetrically and threadedly connected outside the first adjusting double-headed screw rod 106.

[0031] Each of the ends of the two lifting carriages 111 is fixedly connected with an auxiliary frame 112; a second adjusting double-headed screw rod 124 is rotationally connected in each of the two auxiliary frames 112; the thread directions of the two ends of the two second adjusting double-headed screw rods 124 are opposite; a group of adjusting sliding blocks 113 are threadedly connected outside the two second adjusting double-headed screw rods 124; the two groups of adjusting sliding blocks 113 are slidingly connected in the two auxiliary frames 112 respectively; the front end surfaces of the two groups of adjusting sliding blocks 113 are provided with heating rods 114.

[0032] A driving motor 109 is bolted and fastened to the top end surface of the connecting frame 107; the driving motor 109 is arranged in the protection box 108; a lifting double-headed screw rod 110 is coaxially and fixedly connected to the lower part of the rotating shaft of the driving motor 109; the thread directions of the two ends of the lifting double-headed screw rod 110 are opposite; the two lifting carriages 111 are symmetrically and threadedly connected outside the lifting double-headed screw rod 110.

[0033] Two control connecting rods 115 are symmetrically and hingedly connected outside each of the two lifting carriages 111; a connecting block 116 is hingedly connected between the two control connecting rods 115 on the same side; a fixed seat 117 is fixedly connected to the front end surface of each of the two connecting blocks 116; a sliding seat 118 is slidingly connected to the inner side of each of the two fixed seats 117; a buffer spring 123 is fixedly connected to the outside of each of the two sliding seats 118; the ends of the two buffer springs 123 are fixedly connected in the two fixed seats 117 respectively; a rubber block 119 is arranged in each of the two sliding seats 118.

[0034] The specific use and role of the embodiment are as follows: when the wind blows through the wind speed wheel 103, the wind speed wheel 103 is driven to rotate, the wind speed is detected through the rotation of the wind speed wheel 103, and the wind direction is detected through the angle of rotation of the wind vane 102. When deicing the wind measuring system, the position of the mounting clamp plate 105 and the fixed sleeve 1 is aligned, then the first adjusting double-headed screw 106 is rotated, the first adjusting double-headed screw 106 drives the mounting clamp plate 105 to slide in the fixed frame 104, the sliding of the mounting clamp plate 105 makes the mounting clamp plate 105 abut against the fixed sleeve 1 to install the fixed frame 104, the fixed sleeve 1 and the rotating rod 101 are heated by starting the heating rod 114, the second adjusting double-headed screw 124 is rotated, the second adjusting double-headed screw 124 drives the adjusting sliding block 113 to move, the adjusting sliding block 113 is moved, the distance between the heating rod 114 and the rotating rod 101 can be adjusted according to the thickness of the ice layer by the movement of the heating rod 114, the driving motor 109 is started, the driving motor 109 drives the lifting double-headed screw 110 to rotate, the two lifting carriages 111 are simultaneously moved with the rotation of the lifting double-headed screw 110, the lifting carriages 111 are simultaneously reciprocated by the forward and reverse rotation of the driving motor 109, the heating rod 114 reciprocally deices the rotating rod 101 with the reciprocating movement of the lifting carriages 111, the control connecting rod 115 is swung in the reciprocating movement of the lifting carriages 111, the connecting block 116 is moved with the swinging of the control connecting rod 115, the fixed seat 117 is moved with the movement of the connecting block 116, the rubber block 119 intermittently impacts the rotating rod 101 with the movement of the fixed seat 117, the rotating rod 101 is vibrated, the rubber block 119 is buffered by the buffering spring 123, and the impact effect of the rubber block 119 on the rotating rod 101 is ensured.

[0035] Embodiment two:

[0036] On the basis of embodiment one, please refer to Figures 5 to 7 , including: the mounting slot 120, the connecting bracket 121 and the reset spring 122, a group of mounting slots 120 are formed on the outside of the two rubber blocks 119; a group of connecting brackets 121 are slidingly connected in the two sliding seats 118; the two groups of connecting brackets 121 are respectively inserted into the two groups of mounting slots 120; a group of reset springs 122 are fixedly connected to the upper portions of the two groups of connecting brackets 121; the ends of the two groups of reset springs 122 are respectively fixedly connected to the upper portions of the two sliding seats 118.

[0037] The specific use and role of the embodiment are as follows: by rotating the connecting holder 121, the connecting holder 121 is moved and the reset spring 122 is pressed, and with the movement of the connecting holder 121, the connecting holder 121 is separated from the mounting slot 120, at this time, the staff can take down the rubber block 119 for replacement.

[0038] In this paper, the following points need attention:

[0039] 1. The drawings of the embodiment only involve the structures involved in the embodiment, and other structures can refer to the general design.

[0040] 2. In the case of no conflict, the features in the embodiment and the embodiment can be combined to obtain a new embodiment.

[0041] The above is only a specific embodiment of the embodiment, but the protection scope of the embodiment is not limited to this, any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the embodiment, which should be covered within the protection scope of the embodiment. Therefore, the protection scope of the embodiment should be subject to the protection scope of the claims.

Claims

1. A fast de-icing device for a wind measurement system based on mechanical vibrations, comprising: The utility model provides a kind of weather vane, including fixed sleeve (1), the upper portion of the fixed sleeve (1) is rotatably connected with a rotating rod (101), the upper portion of the rotating rod (101) is fixedly connected with a wind vane (102), the top end surface of the rotating rod (101) is provided with wind speed wheel (103), it is characterized by, the rear portion of the fixed sleeve (1) is provided with fixed frame (104), the rear end surface of the fixed frame (104) is fixedly connected with a connecting frame (107) in the middle, the top end surface of the connecting frame (107) is fixedly connected with a protection box (108) in the middle, the inside of the connecting frame (107) is symmetrically slidably connected with two lifting carriages (111), the front end surface of two the lifting carriages (111) is fixedly connected with an auxiliary frame (112), two the auxiliary frame (112) is aligned with the position of the rotating rod (101).

2. The device according to claim 1, characterized in that it comprises: The inside of the fixed frame (104) is rotatably connected with a first adjusting double-end screw rod (106), the thread rotation direction of the two ends of first adjusting double-end screw rod (106) is opposite, the inside of the fixed frame (104) is symmetrically slidably connected with two mounting clamping plates (105), two mounting clamping plates (105) are symmetrically screw-connected outside first adjusting double-end screw rod (106).

3. The device according to claim 1, characterized in that it comprises: The end of two the lifting carriages (111) is fixedly connected with an auxiliary frame (112), two the auxiliary frame (112) is rotatably connected with a second adjusting double-end screw rod (124) in, the thread rotation direction of two second adjusting double-end screw rods (124) is opposite, the outside of two second adjusting double-end screw rods (124) is screw-connected with a group of adjusting sliding blocks (113), two groups of adjusting sliding blocks (113) are slidably connected in two auxiliary frames (112) respectively, the front end surface of two groups of adjusting sliding blocks (113) is provided with heating rod (114).

4. The device according to claim 1, wherein the device is characterized by: The top end surface of the connecting frame (107) is bolted with a driving motor (109), the driving motor (109) is arranged in protection box (108), the lower portion of the driving motor (109) rotating shaft is coaxially fixedly connected with a lifting double-end screw rod (110), the thread rotation direction of the two ends of lifting double-end screw rod (110) is opposite, two lifting carriages (111) are symmetrically screw-connected outside lifting double-end screw rod (110).

5. The device according to claim 1, wherein the device is characterized by: The outside of two the lifting carriages (111) is symmetrically hingedly connected with two control connecting rods (115), the inside of two the control connecting rods (115) is hingedly connected with a connecting block (116), the front end surface of two connecting blocks (116) is fixedly connected with a fixed seat (117), the inside of two fixed seats (117) is slidably connected with a sliding seat (118), the outside of two sliding seats (118) is fixedly connected with a buffer spring (123), the end of two buffer springs (123) is fixedly connected in two fixed seats (117) respectively, two sliding seats (118) are provided with a rubber block (119) in.

6. The device according to claim 5, wherein the device is characterized by: The outer part of each of the two rubber blocks (119) is provided with a set of mounting slots (120); each of the two sliding seats (118) is slidably connected with a set of connecting insertion frames (121); the two sets of connecting insertion frames (121) are respectively inserted into the two sets of mounting slots (120); the upper part of each of the two sets of connecting insertion frames (121) is fixedly connected with a set of return springs (122); the terminal end of each of the two sets of return springs (122) is fixedly connected with the upper part of each of the two sliding seats (118).

Citation Information

Patent Citations

  • Deicing device of anemorumbometer

    CN221303329U