Channel edging angle iron elevation and spacing control device

By designing the channel edge angle iron elevation and spacing control device, the problems of inconsistent elevation and difficult to control spacing during installation of edge angle iron are solved, rapid adjustment and fine adjustment are achieved, and construction accuracy and efficiency are improved.

CN223151688UActive Publication Date: 2025-07-25中铁建设集团西安工程有限公司 +1
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Patent Information

Application Number
CN202422275888.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-07-25
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

In the prior art, when installing channel edge angle iron, it is difficult to ensure that the elevation is consistent and the installation error is large, and the spacing and elevation of edge angle iron cannot be effectively controlled, resulting in low construction accuracy.

Method used

A channel edge angle iron elevation and spacing control device is designed, including a transverse adjustment structure, a first longitudinal adjustment structure and a second longitudinal adjustment structure. Through these structures, the spacing and height of edge angle iron are adjusted to achieve rapid adjustment and fine adjustment and ensure construction accuracy.

Benefits of technology

Effectively control the elevation and spacing of edged corner iron, reduce manual operation errors, improve construction efficiency and accuracy, and adapt to the installation needs of different channels.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223151688U_ABST
Patent Text Reader

Abstract

The utility model relates to a channel edging angle iron elevation and spacing control device, which comprises a transverse adjusting structure for supporting edging angle irons on two sides of a channel and adjusting the spacing between the edging angle irons; the first longitudinal adjusting structure is vertically supported at the bottom of one end of the transverse adjusting structure and is used for adjusting the height of the edge-embedded angle iron on one side of the channel; and the second longitudinal adjusting structure is vertically supported at the bottom of the other end of the transverse adjusting structure and is used for adjusting the height of the edge angle iron on the other side of the channel. According to the scheme provided by the utility model, the embedded angle iron is mounted through the embedded angle iron mounting device, the elevation of the embedded angle iron can be effectively controlled, the angle iron does not need to be stabilized manually, the angle iron does not need to be worried about deviation of the angle iron in a manual angle iron supporting process, only manual welding is needed, manpower is saved, and the production efficiency is improved. And meanwhile, the working efficiency and the construction precision are improved. And the tool can be adjusted to adapt to the installation of most channel edging angle irons.
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Description

Technical Field

[0001] The utility model relates to the technical field of channel edge angle iron adjustment, in particular to a device for controlling the elevation and spacing of channel edge angle iron. Background Technique

[0002] Determine the elevation at both ends of the channel, and then pull a straight line to install the edge angle iron. Since the length of the straight line is generally long and the number of support points is small, the wire rope will sag under its own gravity, especially the sag amount in the middle part is more prominent. At the same time, during installation, only the position of the wire rope can be observed by the naked eye to install the angle iron, and there is no effective rigid support below when installing the angle iron. Therefore, the installation error of this method is large, and the elevation of the whole edge angle iron cannot be guaranteed to be consistent. Content of the Utility Model

[0003] The purpose of the utility model is to solve at least one technical problem in the background technique, and provide a device for controlling the elevation and spacing of channel edge angle iron.

[0004] To achieve the above purpose, the utility model provides a device for controlling the elevation and spacing of channel edge angle iron, including:

[0005] A horizontal adjustment structure, which supports the edge angle irons on both sides of the channel and is used to adjust the spacing between the edge angle irons;

[0006] A first longitudinal adjustment structure, which is vertically supported at the bottom of one end of the horizontal adjustment structure and is used to adjust the height of the edge angle iron on one side of the channel;

[0007] A second longitudinal adjustment structure, which is vertically supported at the bottom of the other end of the horizontal adjustment structure and is used to adjust the height of the edge angle iron on the other side of the channel.

[0008] According to one aspect of the utility model, the horizontal adjustment structure includes: a first support rod, a second support rod, and a first adjustment rod;

[0009] The edge angle iron on one side of the channel is supported on the first support rod, and the edge angle iron on the other side of the channel is supported on the second support rod;

[0010] The first adjustment rod is arranged between the first support rod and the second support rod and is used to adjust the spacing between the first support rod and the second support rod.

[0011] According to one aspect of the utility model, the first adjustment rod includes a fixed rod, a first telescopic rod, and a second telescopic rod;

[0012] The first telescopic rod and the second telescopic rod are respectively and telescopically arranged at both ends of the fixed rod in a spiral manner;

[0013] One end of the first telescopic rod and the second telescopic rod away from the fixed rod is respectively connected to the first support rod and the second support rod.

[0014] According to one aspect of the present invention, both the first longitudinal adjustment structure and the second longitudinal adjustment structure include: a third support rod, a fourth support rod, a third telescopic rod, and a fourth telescopic rod;

[0015] The top end of the third support rod supports the bottom of the end of the lateral adjustment structure;

[0016] The third telescopic rod and the fourth telescopic rod are telescopically arranged at both ends of the fourth support rod in a spiral manner;

[0017] The top end of the third telescopic rod is connected to the bottom end of the third support rod.

[0018] According to one aspect of the present invention, it further includes a first auxiliary support rod and a second auxiliary support rod;

[0019] The first auxiliary support rod and the second auxiliary support rod are respectively vertically supported on the first longitudinal adjustment structure and the second longitudinal adjustment structure;

[0020] The first auxiliary support rod and the second auxiliary support rod can respectively reciprocate in a direction perpendicular to the first longitudinal adjustment structure and the second longitudinal adjustment structure.

[0021] According to one solution of the present invention, a channel angle iron elevation and spacing control device includes: a lateral adjustment structure for supporting the angle irons on both sides of the channel and for adjusting the spacing between the angle irons; a first longitudinal adjustment structure vertically supported at the bottom of one end of the lateral adjustment structure for adjusting the height of the angle iron on one side of the channel; and a second longitudinal adjustment structure vertically supported at the bottom of the other end of the lateral adjustment structure for adjusting the height of the angle iron on the other side of the channel. With such a setting, the spacing between the angle irons supported on the lateral adjustment structure can be quickly adjusted and finely adjusted, ensuring that the spacing between the angle irons meets the requirements and conforms to the dimensional accuracy. The height of the angle irons on both sides of the channel can also be adjusted through the first longitudinal adjustment structure and the second longitudinal adjustment structure to quickly adjust the elevation of the angle iron to meet the requirements and achieve the construction dimensional accuracy.

[0022] According to a solution of the present utility model, the lateral adjustment structure includes: a first support rod, a second support rod, and a first adjustment rod; the angle iron on one side of the channel is supported on the first support rod, and the angle iron on the other side of the channel is supported on the second support rod; the first adjustment rod is arranged between the first support rod and the second support rod and is used to adjust the distance between the first support rod and the second support rod. With such a setting, the distance between the first support rod and the second support rod can be quickly adjusted through the first adjustment rod, so that the first support rod and the second support rod can reciprocally move at both ends of the first adjustment rod.

[0023] According to a solution of the present utility model, the first adjustment rod includes a fixed rod, a first telescopic rod, and a second telescopic rod; the first telescopic rod and the second telescopic rod are respectively arranged at both ends of the fixed rod in a screwable and telescopic manner; the ends of the first telescopic rod and the second telescopic rod away from the fixed rod are respectively connected to the first support rod and the second support rod. With such a setting, screw connection between the first telescopic rod and the second telescopic rod and the fixed rod can achieve screwable telescoping, thereby achieving quick adjustment of the distance between the first support rod and the second support rod.

[0024] According to a solution of the present utility model, both the first longitudinal adjustment structure and the second longitudinal adjustment structure include: a third support rod, a fourth support rod, a third telescopic rod, and a fourth telescopic rod; the top end of the third support rod supports the bottom of the end of the lateral adjustment structure; the third telescopic rod and the fourth telescopic rod are arranged at both ends of the fourth support rod in a screwable and telescopic manner; the top end of the third telescopic rod is connected to the bottom end of the third support rod. With such a setting, screw connection between the third telescopic rod and the fourth telescopic rod and the fourth support rod can achieve screwable telescoping, and quick adjustment of the heights of the first longitudinal adjustment structure and the second longitudinal adjustment structure can be achieved through the screwable telescoping of the third telescopic rod and the fourth telescopic rod, thereby achieving adjustment of the height of the lateral adjustment structure supported on the first longitudinal adjustment structure and the second longitudinal adjustment structure, and thus achieving adjustment of the elevation of the angle iron on the channel supported on the lateral adjustment structure, ensuring the construction accuracy of the elevation of the angle iron.

[0025] According to a solution of the present utility model, the present utility model further includes a first auxiliary support rod and a second auxiliary support rod; the first auxiliary support rod and the second auxiliary support rod are respectively vertically supported on the first longitudinal adjustment structure and the second longitudinal adjustment structure;

[0026] The first auxiliary support rod and the second auxiliary support rod can reciprocate in the direction perpendicular to the first longitudinal adjustment structure and the second longitudinal adjustment structure respectively. With such a setting, after adjusting the elevation and spacing of the angle iron for edge inlay through the transverse adjustment structure, the first longitudinal adjustment structure and the second longitudinal adjustment structure, the two side walls of the channel can be tightened by the first auxiliary support rod and the second auxiliary support rod. In this way, the spacing between the first longitudinal adjustment structure and the second longitudinal adjustment structure can be fixed, preventing displacement changes, ensuring the spacing accuracy between the angle irons for edge inlay, and ensuring that the stability requirements and accuracy requirements for subsequent construction are met.

[0027] According to the solution of the present utility model, when installing the angle iron for edge inlay through the present utility model, its elevation can be effectively controlled, and there is no need for manual fixation of the angle iron. At the same time, there is no need to worry about deviation of the angle iron during the process of manual support. Only manual welding is required, which saves manpower and improves work efficiency and construction accuracy. And by adjusting this tool, it can adapt to the installation of angle iron for edge inlay in most channels. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 Schematically shows the structural layout diagram of the device for controlling the elevation and spacing of the angle iron for edge inlay in a channel according to an embodiment of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0029] Now the content of the present utility model will be described with reference to exemplary embodiments. It should be understood that the described embodiments are only for enabling those of ordinary skill in the art to better understand and thus implement the content of the present utility model, rather than implying any limitation to the scope of the present utility model.

[0030] As used herein, the term "comprising" and its variants are to be construed as open-ended terms meaning "including but not limited to". The term "based on" is to be construed as "at least partially based on". The terms "an embodiment" and "one embodiment" are to be construed as "at least one embodiment".

[0031] Figure 1 Schematically shows the structural layout diagram of the device for controlling the elevation and spacing of the angle iron for edge inlay in a channel according to an embodiment of the present utility model. As Figure 1 shown, in this embodiment, the device for controlling the elevation and spacing of the angle iron for edge inlay in a channel includes:

[0032] A transverse adjustment structure 1, which supports the angle irons for edge inlay on both sides of the channel and is used to adjust the spacing between the angle irons for edge inlay;

[0033] A first longitudinal adjustment structure 2, which is vertically supported at the bottom of one end of the transverse adjustment structure 1 and is used to adjust the height of the angle iron for edge inlay on one side of the channel;

[0034] The second longitudinal adjustment structure 3 is vertically supported at the bottom of the other end of the transverse adjustment structure 1 and is used to adjust the height of the angle iron on the other side of the channel. With such a setting, the distance between the angle irons on both sides supported on it can be quickly adjusted and finely adjusted through the transverse adjustment structure 1, ensuring that the distance between the angle irons meets the requirements and conforms to the dimensional accuracy. The height of the angle irons on both sides of the channel can also be adjusted through the first longitudinal adjustment structure 2 and the second longitudinal adjustment structure 3 to quickly adjust the elevation of the angle irons to meet the requirements and achieve the construction dimensional accuracy.

[0035] Further, according to an embodiment of the present invention, as Figure 1 shown, the transverse adjustment structure 1 includes: a first support rod 4, a second support rod 5, and a first adjustment rod 6;

[0036] The angle iron on one side of the channel is supported on the first support rod 4, and the angle iron on the other side of the channel is supported on the second support rod 4;

[0037] The first adjustment rod 6 is arranged between the first support rod 4 and the second support rod 5 and is used to adjust the distance between the first support rod 4 and the second support rod 5. With such a setting, the distance between the first support rod 4 and the second support rod 5 can be quickly adjusted through the first adjustment rod 6, enabling the first support rod 4 and the second support rod 5 to reciprocally move at both ends of the first adjustment rod 6.

[0038] Further, according to an embodiment of the present invention, as Figure 1 shown, the first adjustment rod 4 includes a fixed rod 7, a first telescopic rod 8, and a second telescopic rod 9;

[0039] The first telescopic rod 8 and the second telescopic rod 9 are respectively telescopically arranged at both ends of the fixed rod 7 in a spiral manner;

[0040] The ends of the first telescopic rod 8 and the second telescopic rod 9 far from the fixed rod 7 are respectively connected to the first support rod 4 and the second support rod 5. With such a setting, the spiral telescoping can be achieved through the screw connection between the first telescopic rod 8 and the second telescopic rod 9 and the fixed rod 7, thereby realizing the quick adjustment of the distance between the first support rod 4 and the second support rod 5.

[0041] Further, according to an embodiment of the present invention, as Figure 1 shown, both the first longitudinal adjustment structure 2 and the second longitudinal adjustment structure 3 include: a third support rod 10, a fourth support rod 11, a third telescopic rod 12, and a fourth telescopic rod 13;

[0042] The top of the third support rod 10 supports the bottom of the end of the transverse adjustment structure 1;

[0043] The third telescopic rod 12 and the fourth telescopic rod 13 are telescopically arranged at both ends of the fourth support rod 11 in a spiral manner;

[0044] The top end of the third telescopic rod 12 is connected to the bottom end of the third support rod 10. With such a setting, spiral expansion and contraction can be achieved through the screw connection of the third telescopic rod 12 and the fourth telescopic rod 13 with the fourth support rod 11. Through the spiral expansion and contraction of the third telescopic rod 12 and the fourth telescopic rod 13, the height of the first longitudinal adjustment structure 2 and the second longitudinal adjustment structure 3 can be quickly adjusted, so as to adjust the height of the transverse adjustment structure 1 supported on the first longitudinal adjustment structure 2 and the second longitudinal adjustment structure 3, and then adjust the elevation of the channel angle iron supported on the transverse adjustment structure 1, ensuring the construction accuracy of the elevation of the angle iron.

[0045] Further, according to an embodiment of the present invention, as Figure 1 shown, the present invention further includes a first auxiliary support rod 14 and a second auxiliary support rod 15;

[0046] The first auxiliary support rod 14 and the second auxiliary support rod 15 are respectively vertically supported on the first longitudinal adjustment structure 2 and the second longitudinal adjustment structure 3;

[0047] The first auxiliary support rod 14 and the second auxiliary support rod 15 can respectively reciprocate in the direction perpendicular to the first longitudinal adjustment structure 2 and the second longitudinal adjustment structure 3. With such a setting, after the elevation and spacing of the angle iron are adjusted through the transverse adjustment structure 1, the first longitudinal adjustment structure 2 and the second longitudinal adjustment structure 3, the two side walls of the channel can be tightened by the first auxiliary support rod 14 and the second auxiliary support rod 15. In this way, the spacing between the first longitudinal adjustment structure 2 and the second longitudinal adjustment structure 3 can be fixed, preventing displacement changes, ensuring the spacing accuracy between the angle irons, and ensuring that the stability requirements and accuracy requirements for subsequent construction are met.

[0048] According to the above solution of the present invention, the present invention is mainly applicable to the installation of angle iron at the position under all channel covers. The main purpose is to control the elevation of the angle iron on both sides of the channel, ensure that the elevations of the angle irons on both sides are consistent, and reach the required accuracy, so as to control the elevation of the cover plate and ensure the flatness of the later laying surface of the cover plate.

[0049] The present invention can adjust the spacing through the transverse adjustment structure to adapt to different channel widths; adjust the first longitudinal adjustment structure and the second longitudinal adjustment structure to adapt to different channel heights.

[0050] The present invention can achieve a fine adjustment effect through the fine adjustment screw rod (each telescopic rod), and can ensure that the error is within 1 mm.

[0051] During adjustment, it can be used in conjunction with an electronic level and a tape measure. Before adjustment, first adjust the present utility model to an approximate width and height, and then place it at the required position. Pull the tape measure in the width direction and adjust the transverse screw rod to achieve the required width; set up an electronic level beside it, place a leveling staff above the angle iron for edge trimming, and adjust the two vertical screw rods slightly to achieve the required height. During adjustment, this tool can be placed every 2 m for adjustment to ensure that the elevation of the angle iron for edge trimming of the entire channel meets the design requirements. After the adjustment of the spacing and elevation is completed, the first longitudinal adjustment structure and the second longitudinal adjustment structure in the middle can be tightened to be firmly fixed to the surrounding channel walls to prevent the tool from shifting.

[0052] According to the solution of the present utility model, when installing the angle iron for edge trimming by means of the present utility model, its elevation can be effectively controlled, and there is no need for manual fixation of the angle iron. At the same time, there is no need to worry that the angle iron will deviate during the process of manual support of the angle iron. Only manual welding is required, which saves manpower and improves work efficiency and construction accuracy. Moreover, by adjusting this tool, it can be adapted to the installation of the angle iron for edge trimming in most channels.

[0053] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solution of the present utility model and not to limit it. Although the present utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made to it in form and details without departing from the scope defined by the claims of the present utility model.

Claims

1. Channel edge angle iron elevation and spacing control device, characterized in that, Including: A lateral adjustment structure (1) that supports the angle irons on both sides of the channel and is used to adjust the distance between the angle irons. A first longitudinal adjustment structure (2) that vertically supports the bottom of one end of the lateral adjustment structure (1) and is used to adjust the height of the angle iron on one side of the channel. A second longitudinal adjustment structure (3) that vertically supports the bottom of the other end of the lateral adjustment structure (1) and is used to adjust the height of the angle iron on the other side of the channel.

2. The channel-inserted angle iron elevation and spacing control device according to claim 1, wherein The lateral adjustment structure (1) includes: a first support rod (4), a second support rod (5), and a first adjustment rod (6). The angle iron on one side of the channel is supported on the first support rod (4), and the angle iron on the other side of the channel is supported on the second support rod (5). The first adjustment rod (6) is arranged between the first support rod (4) and the second support rod (5) and is used to adjust the distance between the first support rod (4) and the second support rod (5).

3. The channel-inserted angle iron elevation and spacing control device according to claim 2, wherein, The first adjustment rod (6) includes a fixed rod (7), a first telescopic rod (8), and a second telescopic rod (9). The first telescopic rod (8) and the second telescopic rod (9) are respectively arranged at both ends of the fixed rod (7) in a helically telescopic manner. The ends of the first telescopic rod (8) and the second telescopic rod (9) far from the fixed rod (7) are respectively connected to the first support rod (4) and the second support rod (5).

4. The channel-inserted angle iron elevation and spacing control device according to claim 1, characterized in that Both the first longitudinal adjustment structure (2) and the second longitudinal adjustment structure (3) include: a third support rod (10), a fourth support rod (11), a third telescopic rod (12), and a fourth telescopic rod (13). The top of the third support rod (10) supports the bottom of the end of the lateral adjustment structure (1). The third telescopic rod (12) and the fourth telescopic rod (13) are arranged at both ends of the fourth support rod (11) in a helically telescopic manner. The top of the third telescopic rod (12) is connected to the bottom of the third support rod (10).

5. The channel embedded angle iron elevation and spacing control device according to any one of claims 1-4, characterized in that, It also includes a first auxiliary support rod (14) and a second auxiliary support rod (15). The first auxiliary support rod (14) and the second auxiliary support rod (15) respectively vertically support the first longitudinal adjustment structure (2) and the second longitudinal adjustment structure (3). The first auxiliary support rod (14) and the second auxiliary support rod (15) can respectively reciprocate in the direction perpendicular to the first longitudinal adjustment structure (2) and the second longitudinal adjustment structure (3).