Non-contact distributed traveling wave distance measurement installation device

By using the fixing mechanism and connectors of the non-contact distributed traveling wave ranging installation device, the problem of high installation difficulty on angle iron towers was solved, achieving efficient and stable installation results.

CN223524796UActive Publication Date: 2025-11-07MAINTENANCE & TEST CENTRE CSG EHV POWER TRANSMISSION CO
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Patent Information

Application Number
CN202422768082.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-11-07
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

In the existing technology, when installing equipment on an angle iron tower, it is necessary to find angle irons that are compatible with the installation structure, which increases the installation difficulty for workers and reduces installation efficiency.

Method used

A non-contact distributed traveling wave ranging installation device is provided, including a fixing mechanism and connectors. Through detachable and sliding connections, it can adapt to angle irons with different orientations, forming different assembly spaces and simplifying the equipment installation process.

Benefits of technology

It improves the installation efficiency of the equipment on angle iron towers, reduces the installation difficulty, is highly adaptable, and can be installed stably and firmly on angle iron towers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a non-contact distributed traveling wave distance measurement installation device. A non-contact distributed traveling wave distance measurement mounting device is used for connecting to-be-mounted equipment and angle iron, and comprises a fixing mechanism, the fixing mechanism comprises a first fixing part and a second fixing part, and the first fixing part and the second fixing part are used for being arranged on the same side of the to-be-mounted equipment; the second connecting piece is used for being connected with the equipment to be installed and is detachably connected with the first fixing piece; the second connecting piece is detachably connected with the second fixing piece in a sliding mode, and the second fixing piece, the first fixing piece and the outer wall of the equipment to be installed are used for forming an assembling space used for installing the angle iron in a surrounding mode. The non-contact distributed traveling wave distance measurement mounting device provided by the utility model can be mounted with angle irons in different directions, is high in adaptability, is convenient for a worker to mount to-be-mounted equipment on an angle iron tower, and improves the mounting efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of equipment installation, in particular to a non-contact distributed traveling wave distance measurement installation device. BACKGROUND

[0002] A power transmission line tower is a structure for supporting conductors and ground wires of high-voltage or extra-high-voltage overhead power transmission lines. Since an angle iron tower has high structural strength, strong wind resistance and convenient construction, the power transmission line tower is generally an angle iron tower. Various types of equipment, such as monitoring equipment and communication equipment, are installed on the power transmission line tower to ensure the safe, stable and efficient operation of the power system.

[0003] At present, the equipment is installed on the angle iron tower through an installation structure. The installation structure generally adopts an L-shaped clamping plate, a hook structure or a special-shaped clamping plate, which has a simple structure and low cost. However, the angle iron on the angle iron tower has multiple different orientations. When the equipment needs to be installed on the angle iron tower, the worker needs to find an angle iron that matches the installation structure, which undoubtedly increases the difficulty of the worker in installing the equipment on the angle iron tower and reduces the installation efficiency. CONTENT OF THE UTILITY MODEL

[0004] Therefore, it is necessary to provide a non-contact distributed traveling wave distance measurement installation device in view of the above-mentioned need to find an angle iron that matches the installation structure before the equipment can be installed on the angle iron tower.

[0005] A non-contact distributed traveling wave distance measurement installation device is used to connect a to-be-installed equipment and an angle iron. The non-contact distributed traveling wave distance measurement installation device comprises:

[0006] A fixing mechanism, which comprises a first fixing member and a second fixing member, and is used to be arranged on the same side of the to-be-installed equipment; and

[0007] A second connecting member, which is used to be connected with the to-be-installed equipment and detachably connected with the first fixing member; the second connecting member is detachably and slidably connected with the second fixing member, and the second fixing member and the first fixing member are used to form an assembly space for assembling the angle iron between the outer wall of the to-be-installed equipment.

[0008] In one of the embodiments, the to-be-installed equipment is provided with a third through hole and a fourth through hole arranged at intervals; the second connecting member comprises a connecting body, a first plug-in member and a second plug-in member, the first plug-in member and the second plug-in member are respectively arranged at two ends of the connecting body and connected through the connecting body, when the connecting body is arranged on one side of the fixing mechanism, the first plug-in member is used to be inserted into the third through hole, and the second plug-in member is used to be inserted into the fourth through hole.

[0009] In one of the embodiments, the first connector comprises a first connector part and a first extension part, the first connector part is connected with the connecting body and is arranged to be inserted into the third through hole, and the first extension part is connected with the first connector part and is arranged on the side of the device to be installed close to the fixing mechanism; the second connector comprises a second connector part and a second extension part, the second connector part is connected with the connecting body and is arranged to be inserted into the fourth through hole, and the second extension part is connected with the second connector part and is arranged on the side of the device to be installed close to the fixing mechanism.

[0010] In one of the embodiments, the second fixing part comprises a fourth fixing part, a fifth fixing part and a sixth fixing part, the fourth fixing part is arranged opposite to the device to be installed, the fourth fixing part is provided with a second connector hole for inserting the first extension part, and the fourth fixing part is connected with the first extension part in a sliding mode; the fifth fixing part is connected with the fourth fixing part and is arranged at an angle with the fourth fixing part; the sixth fixing part is connected with the fifth fixing part at the end away from the fourth fixing part and is arranged opposite to the fourth fixing part; the fourth fixing part, the fifth fixing part and the sixth fixing part form a U-shaped frame structure.

[0011] In one of the embodiments, the first fixing part comprises a first fixing part, a second fixing part and a third fixing part, the first fixing part is arranged opposite to the device to be installed, the first fixing part is provided with a first connector hole for inserting the second extension part; the second fixing part is connected with the first fixing part and is arranged at an angle with the first fixing part; the third fixing part is connected with the second fixing part at the end away from the first fixing part, and the third fixing part is connected with the first fixing part on the two sides opposite to the second fixing part.

[0012] In one of the embodiments, the second fixing part and the fifth fixing part are arranged opposite and spaced apart, and the third fixing part and the sixth fixing part are arranged opposite.

[0013] In one of the embodiments, the second fixing part is provided with a first slot extending along the length direction of the second fixing part, the third fixing part is provided with a second slot extending along the length direction of the third fixing part, the fifth fixing part is provided with a third slot extending along the length direction of the fifth fixing part, the sixth fixing part is provided with a fourth slot extending along the length direction of the sixth fixing part, the first slot is aligned with the third slot, and the second slot is aligned with the fourth slot.

[0014] In one of the embodiments, the fixing mechanism further comprises a first sliding member and a second sliding member, the first sliding member is inserted into the first and third strip-shaped holes and can slide along the length direction of the second and fifth fixed parts relative to the second fixed part; the second sliding member is inserted into the second and fourth strip-shaped holes and can slide along the length direction of the third and sixth fixed parts relative to the third fixed part.

[0015] In one of the embodiments, a first transition part is arranged between the first and second fixed parts, the first transition part is a circular arc transition section, one end of the first transition part is connected with the first fixed part and the other end is connected with the second fixed part; a second transition part is arranged between the second and third fixed parts, the second transition part is a circular arc transition section, one end of the second transition part is connected with the second fixed part and the other end is connected with the third fixed part.

[0016] In one of the embodiments, a third transition part is arranged between the fourth and fifth fixed parts, the third transition part is a circular arc transition section, one end of the third transition part is connected with the fourth fixed part and the other end is connected with the fifth fixed part; a fourth transition part is arranged between the fifth and sixth fixed parts, the fourth transition part is a circular arc transition section, one end of the fourth transition part is connected with the fifth fixed part and the other end is connected with the sixth fixed part.

[0017] The above non-contact distributed line wave ranging installation device is used for connecting the equipment to be installed and the angle iron, comprising a fixing mechanism and a second connecting piece, the fixing mechanism comprises a first fixed part and a second fixed part, both of which are arranged on the same side of the equipment to be installed; the second connecting piece is used for connecting with the equipment to be installed and is detachably connected with the first fixed part; the second connecting piece is detachably and slidably connected with the second fixed part, and the second fixed part and the first fixed part are used for surrounding the outer wall of the equipment to be installed to form an assembly space for installing the angle iron; by detaching the first fixed part and the second connecting piece, adjusting the position of the first fixed part and connecting it with the second connecting piece again, detaching the second fixed part and the second connecting piece, adjusting the position of the second fixed part and connecting it with the second connecting piece again, and moving the second fixed part to make it close to or away from the equipment to be installed, the second fixed part and the first fixed part can be used for surrounding the outer wall of the equipment to be installed to form different assembly spaces, so as to be suitable for angle irons with different orientations. The non-contact distributed line wave ranging installation device provided in the application can be installed with angle irons with different orientations, has strong adaptability, is convenient for workers to install the equipment to be installed on the angle iron tower, and thus improves the installation efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 An exploded schematic view of a non-contact distributed traveling wave distance measurement installation device according to an embodiment of the present application.

[0019] Figure 2 A structural schematic view of a connecting mechanism in a non-contact distributed traveling wave distance measurement installation device according to an embodiment of the present application.

[0020] Figure 3 A structural schematic view of a fixing mechanism in a non-contact distributed traveling wave distance measurement installation device according to an embodiment of the present application.

[0021] Figure 4 A structural schematic view of a device to be installed in a non-contact distributed traveling wave distance measurement installation device according to an embodiment of the present application.

[0022] Figure 5 A structural schematic view of a non-contact distributed traveling wave distance measurement installation device provided with an angle iron of a second orientation according to an embodiment of the present application.

[0023] Figure 6 A structural schematic view of a non-contact distributed traveling wave distance measurement installation device provided with an angle iron of a third orientation according to an embodiment of the present application.

[0024] Figure 7 A structural schematic view of a non-contact distributed traveling wave distance measurement installation device provided with an angle iron of a fourth orientation according to an embodiment of the present application.

[0025] Reference signs: 1, fixing mechanism; 11, first fixing piece; 111, first fixing part; 1111, first plug-in hole; 112, second fixing part; 1121, first slot; 113, third fixing part; 1131, second slot; 114, first transition part; 115, second transition part; 12, second fixing piece; 121, fourth fixing part; 1211, second plug-in hole; 122, fifth fixing part; 1221, third slot; 123, sixth fixing part; 124, third transition part; 125, fourth transition part; 13, first sliding piece; 14, second sliding piece; 2, connecting mechanism; 21, first connecting piece; 211, first through hole; 212, second through hole; 22, second connecting piece; 221, connecting main body; 222, first plug-in piece; 2221, first plug-in part; 2223, first extension part; 223, second plug-in piece; 2231, second plug-in part; 2233, second extension part; 4, device to be installed; 41, device body; 42, installation support; 421, third through hole; 422, fourth through hole; 5, angle iron; 51, horizontal part; 52, vertical part. DETAILED DESCRIPTION

[0026] In order to make the above objectives, features and advantages of the present application more clear and comprehensible, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced in a number of different ways beyond the specific embodiments described herein and with modifications thereof, without departing from the scope of the present application, and it is understood that these specific embodiments are given for purposes of example and exemplary description only and are not presented in a way of limitation to the present application.

[0027] In the description of the present application, it should be understood that, if there are terms such as "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and are not intended to indicate or imply 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 a limitation to the present application.

[0028] In addition, if the terms "first", "second" appear, these terms are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features referred to. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, if the term "a plurality of" appears, the meaning of "a plurality of" is at least two, for example, two, three, etc., unless otherwise specifically limited.

[0029] In the present application, unless otherwise specifically defined and limited, if the terms "mounting", "connecting", "connecting", "fixing" and the like appear, these terms should be understood in a broad sense. For example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise specifically limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0030] In the present application, unless specifically defined otherwise, if there is a description of a first feature on or above or below a second feature, it can mean that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature can be above or above or above the second feature, or it can only mean that the first feature is higher in horizontal height than the second feature. The first feature can be below or below or below the second feature, or it can only mean that the first feature is lower in horizontal height than the second feature.

[0031] It should be noted that if an element is referred to as being "fixed" or "disposed" on another element, it can be directly on the other element or there can be an intermediate element. If an element is considered to be "connected" to another element, it can be directly connected to the other element or there can be an intermediate element. If present, the terms "vertical", "horizontal", "up", "down", "left", "right" and similar expressions used in the present application are only for illustrative purposes and do not represent the only implementation.

[0032] Please refer to Figure 1 , Figure 1 An explosion diagram of a non-contact distributed traveling wave ranging installation device according to an embodiment of the present application is shown. The non-contact distributed traveling wave ranging installation device according to an embodiment of the present application is used to connect a device to be installed 4 and an angle iron 5. The non-contact distributed traveling wave ranging installation device includes a fixing mechanism 1 and a connecting mechanism 2. The fixing mechanism 1 includes a first fixing member 11 and a second fixing member 12. The first fixing member 11 and the second fixing member 12 are used to be arranged on the same side of the device to be installed 4. The connecting mechanism 2 includes a first connecting member 21 and a second connecting member 22. The first connecting member 21 is used to be arranged on the device to be installed 4. The second connecting member 22 passes through the first connecting member 21 and is used to be connected with the device to be installed 4. The second connecting member 22 is detachably connected with the first fixing member 11. The second connecting member 22 is detachably and slidably connected with the second fixing member 12. The second fixing member 12 and the first fixing member 11 are used to form an assembly space for assembling the angle iron 5 between the outer wall of the device to be installed 4. In this embodiment, the device to be installed 4 is a non-contact distributed traveling wave ranging device. In other embodiments, the device to be installed 4 can also be other monitoring devices or measuring devices, etc. Therefore, it is not limited thereto.

[0033] It can be understood that the non-contact distributed traveling wave distance measurement mounting device can be flexibly assembled. By disassembling the first fixing member 11 and the second connecting member 22, adjusting the position of the first fixing member 11 and re-connecting the second connecting member 22, disassembling the second fixing member 12 and the second connecting member 22, adjusting the position of the second fixing member 12 and re-connecting the second connecting member 22, and moving the second fixing member 12 towards or away from the direction of the device to be installed 4, different assembly spaces can be formed between the second fixing member 12, the first fixing member 11 and the outer wall of the device to be installed 4, so that the non-contact distributed traveling wave distance measurement mounting device is suitable for angle irons 5 of different orientations and can be installed with angle irons 5 of different orientations. When the staff uses the non-contact distributed traveling wave distance measurement mounting device provided in the application to install the device to be installed 4 on the angle iron tower, there is no need to spend extra time to find the angle iron 5 suitable for the non-contact distributed traveling wave distance measurement mounting device, which greatly reduces the difficulty of installing the device to be installed 4 on the angle iron tower and improves the installation efficiency.

[0034] Please refer to Figure 2 , Figure 2 The structure of the connecting mechanism 2 in the non-contact distributed traveling wave distance measurement mounting device of an embodiment of the application is shown. In some embodiments, the first connecting member 21 is provided with a first through hole 211 and a second through hole 212, and the first through hole 211 and the second through hole 212 are arranged at intervals. In this embodiment, the first through hole 211 and the second through hole 212 are both circular holes.

[0035] Please refer to Figure 4 , Figure 4 The structure of the device to be installed 4 in the non-contact distributed traveling wave distance measurement mounting device of an embodiment of the application is shown. In some embodiments, the device to be installed 4 includes a device body 41 and at least one mounting bracket 42, the mounting bracket 42 is arranged on one side of the device body 41, the mounting bracket 42 is provided with a third through hole 421 and a fourth through hole 422, and the third through hole 421 and the fourth through hole 422 are arranged at intervals. In this embodiment, the third through hole 421 is a circular hole, and the fourth through hole 422 is a strip-shaped hole extending along the length direction of the mounting bracket 42. The first connecting member 21 is arranged on the mounting bracket 42, the first through hole 211 of the first connecting member 21 is coaxially arranged with the third through hole 421 of the mounting bracket 42, and the second through hole 212 of the first connecting member 21 is arranged opposite to the fourth through hole 422 of the mounting bracket 42.

[0036] In some embodiments, the second connecting piece 22 comprises a connecting body 221, a first inserting piece 222 and a second inserting piece 223. The connecting body 221 is a rod-shaped structure, and has a first end and a second end arranged oppositely. The first inserting piece 222 is located at the first end of the connecting body 221, and the second inserting piece 223 is located at the second end of the connecting body 221. The first inserting piece 222 and the second inserting piece 223 are connected through the connecting body 221. When the connecting body 221 is arranged at one side of the fixing mechanism 1, the first inserting piece 222 is used to be sequentially inserted into the first through hole 211 and the third through hole 421, and the second inserting piece 223 is used to be sequentially inserted into the second through hole 212 and the fourth through hole 422.

[0037] In some embodiments, the first inserting piece 222 comprises a first inserting part 2221 and a first extending part 2223. The first inserting part 2221 is connected with the connecting body 221, and is used to be inserted into the first through hole 211 and the third through hole 421. The first extending part 2223 is connected with the first inserting part 2221, and is used to be arranged at the side of the device to be installed 4 close to the fixing mechanism 1. The second inserting piece 223 comprises a second inserting part 2231 and a second extending part 2233. The second inserting part 2231 is connected with the connecting body 221, and is used to be inserted into the second through hole 212 and the fourth through hole 422. The second extending part 2233 is connected with the second inserting part 2231, and is used to be arranged at the side of the device to be installed 4 close to the fixing mechanism 1.

[0038] Please refer to Figure 3 , Figure 3 The structure schematic diagram of the fixing mechanism 1 in the non-contact distributed traveling wave ranging installation device is shown. In some embodiments, the first fixing piece 11 comprises a first fixing part 111, a second fixing part 112 and a third fixing part 113. The first fixing part 111 is a flat plate structure, and is used to be arranged opposite to the device to be installed 4. The first fixing part 111 is provided with a first inserting hole 1111, which is used for the second extending part 2233 to be inserted. The second fixing part 112 is a flat plate structure, and is connected with the first fixing part 111 and forms an angle with the first fixing part 111. The third fixing part 113 is a flat plate structure, and is connected with the end of the second fixing part 112 away from the first fixing part 111, and the first fixing part 111 is connected to the two sides of the second fixing part 112 respectively.

[0039] In some embodiments, the second fixing member 12 comprises a fourth fixing part 121, a fifth fixing part 122 and a sixth fixing part 123. The fourth fixing part 121 is a flat plate structure and is arranged opposite to the device 4 to be installed. The fourth fixing part 121 is provided with a second insertion hole 1211 for inserting the first extension part 2223, and the fourth fixing part 121 is slidably connected with the first extension part 2223. The fifth fixing part 122 is a flat plate structure and is connected with the fourth fixing part 121 and forms an angle with the fourth fixing part 121. The sixth fixing part 123 is a flat plate structure and is connected with the fifth fixing part 122 away from the fourth fixing part 121 and is arranged opposite to the fourth fixing part 121. The fourth fixing part 121, the fifth fixing part 122 and the sixth fixing part 123 form a U-shaped frame structure.

[0040] In some embodiments, the second fixing part 112 of the first fixing member 11 is provided with a first slot 1121 extending along the length direction of the second fixing part 112. The third fixing part 113 of the first fixing member 11 is provided with a second slot 1131 extending along the length direction of the third fixing part 113. The fifth fixing part 122 of the second fixing member 12 is provided with a third slot 1221 extending along the length direction of the fifth fixing part 122. The sixth fixing part 123 of the second fixing member 12 is provided with a fourth slot extending along the length direction of the sixth fixing part 123. The first slot 1121 is aligned with the third slot 1221. The second slot 1131 is aligned with the fourth slot.

[0041] In some embodiments, the fixing mechanism 1 further comprises a first sliding member 13 and a second sliding member 14. The first sliding member 13 is inserted into the first slot 1121 and the third slot 1221 and can slide along the length direction of the second fixing part 112 and the fifth fixing part 122 relative to the second fixing part 112. The second sliding member 14 is inserted into the second slot 1131 and the fourth slot and can slide along the length direction of the third fixing part 113 and the sixth fixing part 123 relative to the third fixing part 113. Therefore, according to the size of the angle iron 5 to be installed, the first sliding member 13 can be moved along the long side of the second fixing part 112 and the fifth fixing part 122, and the second sliding member 14 can be moved along the long side of the third fixing part 113 and the sixth fixing part 123, so as to adapt to angle irons 5 of different sizes and improve the applicability of the non-contact distributed line wave distance measurement installation device.

[0042] In some embodiments, the first sliding piece 13 comprises a first bolt, a first nut and a first elastic gasket, the first bolt is sequentially inserted into the first strip-shaped hole 1121 and the third strip-shaped hole 1221, the first nut is used in cooperation with the first bolt to fixedly connect the first fixing piece 11 and the second fixing piece 12, and the first elastic gasket is arranged between the first nut and the second fixing part 112 or the fifth fixing part 122. The second sliding piece 14 comprises a second bolt, a second nut and a second elastic gasket, the second bolt is sequentially inserted into the second strip-shaped hole 1131 and the fourth strip-shaped hole, the second nut is used in cooperation with the second bolt to fixedly connect the third fixing piece and the sixth fixing piece, and the second elastic gasket is arranged between the second nut and the third fixing part 113 or the sixth fixing part 123.

[0043] In some embodiments, a first transition part 114 is arranged between the first fixing part 111 and the second fixing part 112, the first transition part 114 is a circular arc transition section, one end of the first transition part 114 is connected with the first fixing part 111 and the other end is connected with the second fixing part 112. A second transition part 115 is arranged between the second fixing part 112 and the third fixing part 113, the second transition part 115 is a circular arc transition section, one end of the second transition part 115 is connected with the second fixing part 112 and the other end is connected with the third fixing part 113. A third transition part 124 is arranged between the fourth fixing part 121 and the fifth fixing part 122, the third transition part 124 is a circular arc transition section, one end of the third transition part 124 is connected with the fourth fixing part 121 and the other end is connected with the fifth fixing part 122. A fourth transition part 125 is arranged between the fifth fixing part 122 and the sixth fixing part 123, the fourth transition part 125 is a circular arc transition section, one end of the fourth transition part 125 is connected with the fifth fixing part 122 and the other end is connected with the sixth fixing part 123. When the angle iron 5 is installed in the assembly space formed by the first fixing piece 11, the second fixing piece 12 and the outer wall of the to-be-installed equipment 4, the risk of surface wear or scratch of the angle iron 5 can be reduced.

[0044] The angle iron 5 comprises a horizontal part 51 and a vertical part 52, the horizontal part 51 is arranged horizontally relative to the to-be-installed equipment 4, the vertical part 52 is arranged vertically relative to the to-be-installed equipment 4, and the horizontal part 51 is connected with the vertical part 52. In some embodiments, the vertical part 52 of the angle iron 5 of the first type of orientation is located on the side close to the to-be-installed equipment 4 relative to the horizontal part 51, and the opening of the angle iron 5 is arranged downward. The second fixing part 112 and the fifth fixing part 122 are arranged in parallel and spaced apart from each other, and the second fixing part 112 and the fifth fixing part 122 form an assembly space for arranging the horizontal part 51; the fourth fixing part 121 and the outer wall of the to-be-installed equipment 4 form an assembly space for arranging the vertical part 52.

[0045] Please refer to Figure 5 , Figure 5The structure diagram of the non-contact distributed traveling wave ranging installation device of an embodiment of the application is shown, which is installed with the angle iron 5 of the third orientation. In some embodiments, the vertical part 52 of the angle iron 5 of the third orientation is located on the side close to the equipment to be installed 4 relative to the horizontal part 51, and the opening of the angle iron 5 is set upward. At this time, taking the non-contact distributed traveling wave ranging installation device suitable for the angle iron 5 of the first orientation, the fixing mechanism 1 of the non-contact distributed traveling wave ranging installation device is disassembled, inverted by 180°, and then the fixing mechanism 1 and the second connecting piece 22 are reconnected, so that the non-contact distributed traveling wave ranging installation device can be used. The assembly space for installing the horizontal part 51 is formed between the second fixing part 112 and the fifth fixing part 122, and the assembly space for installing the vertical part 52 is formed between the third fixing part 113 and the sixth fixing part 123.

[0046] Please refer to Figure 6 , Figure 6 The structure diagram of the non-contact distributed traveling wave ranging installation device of an embodiment of the application is shown, which is installed with the angle iron 5 of the third orientation. In some embodiments, the vertical part 52 of the angle iron 5 of the third orientation is located on the side close to the equipment to be installed 4 relative to the horizontal part 51, and the opening of the angle iron 5 is set upward. At this time, taking the non-contact distributed traveling wave ranging installation device suitable for the angle iron 5 of the first orientation, the fixing mechanism 1 of the non-contact distributed traveling wave ranging installation device is disassembled, inverted by 180°, and then the fixing mechanism 1 and the second connecting piece 22 are reconnected, so that the non-contact distributed traveling wave ranging installation device can be used. The assembly space for installing the horizontal part 51 is formed between the second fixing part 112 and the fifth fixing part 122, and the assembly space for installing the vertical part 52 is formed between the third fixing part 113 and the sixth fixing part 123.

[0047] Please refer to Figure 7 , Figure 7 The structure diagram of the non-contact distributed traveling wave ranging installation device of an embodiment of the application is shown, which is installed with the angle iron 5 of the third orientation. In some embodiments, the vertical part 52 of the angle iron 5 of the third orientation is located on the side close to the equipment to be installed 4 relative to the horizontal part 51, and the opening of the angle iron 5 is set upward. At this time, taking the non-contact distributed traveling wave ranging installation device suitable for the angle iron 5 of the first orientation, the fixing mechanism 1 of the non-contact distributed traveling wave ranging installation device is disassembled, inverted by 180°, and then the fixing mechanism 1 and the second connecting piece 22 are reconnected, so that the non-contact distributed traveling wave ranging installation device can be used. The assembly space for installing the horizontal part 51 is formed between the second fixing part 112 and the fifth fixing part 122, and the assembly space for installing the vertical part 52 is formed between the third fixing part 113 and the sixth fixing part 123.

[0048] The non-contact distributed traveling wave distance measurement mounting device can be flexibly assembled, and when in use, according to different orientations of the angle iron 5, the second fixing piece 12 is moved towards or away from the direction of the device to be installed 4 by disassembling the fixing mechanism 1, adjusting the position of the fixing mechanism 1 and re-connecting with the second connecting piece 22, that is, different assembly spaces can be formed to adapt to angle irons 5 with different orientations. The non-contact distributed traveling wave distance measurement mounting device provided in the application can be installed with angle irons 5 with different orientations, has strong adaptability, is convenient for workers to install the device to be installed 4 on the angle iron tower, and thus improves the installation efficiency. Meanwhile, the non-contact distributed traveling wave distance measurement mounting device provided in the application also has the advantages of simple structure, being able to stably and firmly install the device to be installed 4 on the angle iron tower and the like.

[0049] The technical features of the above-described embodiments can be combined in any manner. To make the description concise, all possible combinations of the technical features in the above-described embodiments are not described, but as long as the combinations of the technical features do not exist contradictions, they should be considered as the scope of the present disclosure.

[0050] The above-described embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent scope of the present application. It should be pointed out that for ordinary skilled in the art, several modifications and improvements can be made without departing from the concept of the present application, and these all belong to the protection scope of the present application. Therefore, the patent protection scope of the present application should be subject to the appended claims.

Claims

1. A non-contact distributed wave distance measuring mounting device for connecting a device to be installed and an angle iron, characterized by, The non-contact distributed traveling wave distance measuring installation device comprises: a fixing mechanism comprising a first fixing member and a second fixing member arranged on the same side of the device to be installed; and a second connecting member for connecting with the device to be installed and detachably connected with the first fixing member; the second connecting member is detachably and slidably connected with the second fixing member, and the second fixing member and the first fixing member are arranged to form an assembly space for the angle iron with the outer wall of the device to be installed.

2. The non-contact distributed, traveling wave range finding mounting device of claim 1, wherein, The device to be installed is provided with a third through hole and a fourth through hole arranged at intervals; the second connecting member comprises a connecting body, a first plug-in member and a second plug-in member, the first plug-in member and the second plug-in member are arranged at two ends of the connecting body and connected through the connecting body, when the connecting body is arranged on one side of the fixing mechanism, the first plug-in member is arranged in the third through hole, and the second plug-in member is arranged in the fourth through hole.

3. The non-contact distributed, traveling wave range finding mounting device of claim 2, wherein, The first plug-in member comprises a first plug-in part and a first extension part, the first plug-in part is connected with the connecting body and arranged in the third through hole, and the first extension part is connected with the first plug-in part and arranged on the side of the device to be installed close to the fixing mechanism; the second plug-in member comprises a second plug-in part and a second extension part, the second plug-in part is connected with the connecting body and arranged in the fourth through hole, and the second extension part is connected with the second plug-in part and arranged on the side of the device to be installed close to the fixing mechanism.

4. The non-contact distributed, traveling wave range finding mounting device of claim 3, wherein, The second fixing member comprises a fourth fixing part, a fifth fixing part and a sixth fixing part, the fourth fixing part is arranged opposite to the device to be installed, the fourth fixing part is provided with a second plug-in hole for the first extension part, and the fourth fixing part is slidably connected with the first extension part; the fifth fixing part is connected with the fourth fixing part and forms an angle with the fourth fixing part; the sixth fixing part is connected with one end of the fifth fixing part away from the fourth fixing part and arranged opposite to the fourth fixing part; the fourth fixing part, the fifth fixing part and the sixth fixing part form a U-shaped frame structure.

5. The non-contact distributed, traveling wave range finding mounting device of claim 4, wherein, The first fixing member comprises a first fixing part, a second fixing part and a third fixing part, the first fixing part is arranged opposite to the device to be installed, the first fixing part is provided with a first plug-in hole for the second extension part; the second fixing part is connected with the first fixing part and forms an angle with the first fixing part; the third fixing part is connected with one end of the second fixing part away from the first fixing part, and the third fixing part is connected with the first fixing part on the opposite sides of the second fixing part.

6. The non-contact distributed, traveling wave range finding mounting device of claim 5, wherein, The second fixing part and the fifth fixing part are arranged opposite and at intervals, and the third fixing part and the sixth fixing part are arranged opposite.

7. The non-contact distributed, traveling wave range finding mounting device of claim 5, wherein, The second fixed part is provided with a first strip-shaped hole extending along the length direction of the second fixed part; the third fixed part is provided with a second strip-shaped hole extending along the length direction of the third fixed part; the fifth fixed part is provided with a third strip-shaped hole extending along the length direction of the fifth fixed part; the sixth fixed part is provided with a fourth strip-shaped hole extending along the length direction of the sixth fixed part; the first strip-shaped hole is aligned with the third strip-shaped hole; the second strip-shaped hole is aligned with the fourth strip-shaped hole.

8. The non-contact distributed, traveling wave range finding mounting device of claim 7, wherein, The fixing mechanism further comprises a first sliding member and a second sliding member, the first sliding member is inserted into the first strip-shaped hole and the third strip-shaped hole and can slide along the length direction of the second fixed part and the fifth fixed part relative to the second fixed part; the second sliding member is inserted into the second strip-shaped hole and the fourth strip-shaped hole and can slide along the length direction of the third fixed part and the sixth fixed part relative to the third fixed part.

9. The non-contact distributed, traveling wave range finding mounting device of claim 5, wherein, The first fixed part and the second fixed part are provided with a first transition part which is a circular arc transition section, one end of the first transition part is connected with the first fixed part and the other end is connected with the second fixed part; the second fixed part and the third fixed part are provided with a second transition part which is a circular arc transition section, one end of the second transition part is connected with the second fixed part and the other end is connected with the third fixed part.

10. The non-contact distributed, traveling wave range finding mounting device of claim 4, wherein, The fourth fixed part and the fifth fixed part are provided with a third transition part which is a circular arc transition section, one end of the third transition part is connected with the fourth fixed part and the other end is connected with the fifth fixed part; the fifth fixed part and the sixth fixed part are provided with a fourth transition part which is a circular arc transition section, one end of the fourth transition part is connected with the fifth fixed part and the other end is connected with the sixth fixed part.