Novel highway separation fence mounting equipment
By designing automatic installation equipment and using the cooperation of support and mounting parts, the automatic installation of the isolation fence columns for highways is realized, solving the problems of manual support and installation risks, and improving installation efficiency and safety.
Patent Information
- Application Number
- CN202421490095.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-26
AI Technical Summary
When installing road isolation fences, the columns require manual support, which increases the burden on construction personnel and poses installation risks.
A new type of road isolation barrier installation equipment is designed to realize automatic installation of columns through the cooperation of support and mounting parts. The support can be rotated in vertical and horizontal directions, and the mounting member installs the column to the ground by reciprocating movement.
Automatic installation of columns is realized, which reduces the risks and burdens of manual operation, improves installation efficiency, and realizes continuous installation of columns through storage components.
Smart Images

Figure CN222908629U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of isolation fences, and particularly relates to a new installation device for highway isolation fences. Background Art
[0002] Highway isolation fences are mainly used as safety protection nets at the edges of roads, and have the characteristics of anti-corrosion, anti-aging, and anti-sun exposure; the main function of the isolation fence is to isolate the required protection area, and at the same time separate people, livestock, etc. that may affect traffic safety from the highway, so as to ensure driving safety, eliminate lateral interference, give full play to the highway function, and ensure the normal operation of the highway; when installing the isolation fence, it is necessary to first fix the columns in the isolation fence, and then connect the grid sheet network to the columns to form a coherent isolation fence. When installing the columns, manual methods are often used for fixation. Not only does it require manual support of the columns during installation to prevent the columns from tilting after installation, which increases the burden on construction workers, but also the construction workers will be around the columns during installation, and there is also a risk of touching the construction workers during column construction. Summary of the Utility Model
[0003] In view of the above deficiencies, the utility model provides a new installation device for highway isolation fences, which can realize the automatic installation of columns.
[0004] The utility model is realized through the following technical solutions:
[0005] A new type of installation device for highway isolation fences. The isolation fence includes columns and a grid mesh connected to the columns. The installation device includes a carrying component and an installation component disposed on the carrying component. The installation component includes a support member for supporting the column and an installation member disposed on the upper side of the support member. The column has an installation section exposed outside the support member. The support member has a first setting position arranged in the vertical direction and a second setting position arranged in the horizontal direction. When the support member is in the first setting position, the installation member can reciprocate towards the installation section to install the column to the ground. The installation device further includes a storage component disposed on the carrying component. A plurality of columns are sequentially stored horizontally in the storage component. When the support member is in the second setting position, the column located in the storage component can move into the support member. When installing the column, it is possible to achieve automatic installation of the column without manual support of the column, greatly reducing the installation risk. At the same time, through the reciprocating movement of the installation member, the column can be installed to the ground, and the installation efficiency of the column can also be improved. The storage component can store columns, so that the installation device can achieve continuous installation of columns. When the support member is in the first setting position, that is, the support member is in a vertical state, at this time, the support and limitation of the column can be realized, so that the column can be installed to the ground along the vertical direction. After the column installation is completed, the support member can be switched from the first setting position to the second setting position, that is, the support member is in a horizontal state, which is convenient for transferring the column in the storage component to the support member. At this time, the support member is rotated from the second setting position to the first setting position to achieve the reinstallation of the column.
[0006] Further, the storage component includes a box body for storing columns. The box body is formed with a through hole for the column to pass through. The extending direction of the through hole is parallel to the extending direction of the column located in the box body. The installation device further includes a pushing component disposed on the carrying component. The pushing component is located on one side of the through hole. By providing the box body, the storage of a plurality of columns is realized. And a through hole is formed in the box body, so the column can move out of the box body along the through hole and is finally installed at the support member. At the same time, a pushing component is also disposed on the carrying component. The column can be conveniently pushed out of the box body through the pushing component. It can be understood that since the pushing component is located on one side of the through hole, when the pushing component pushes out the column, the pushing component can extend into the box body from the through hole and completely push the column out of the box body, so that the support member can easily drive the column to rotate.
[0007] Furthermore, the through-hole includes a pushing hole adjacent to the pushing component and a pushing-out hole away from the pushing component. The diameter of the pushing hole is smaller than that of the column, and the diameter of the pushing-out hole is larger than that of the column. Making the diameter of the pushing hole smaller than that of the column can ensure that the column will not move out of the pushing hole. Moreover, after the pushing component extends into the pushing hole, it can ensure that the extended part of the pushing component can fully abut against the column, making the column more balanced when being pushed and the movement of the column more precise. The diameter of the pushing-out hole is larger than that of the column, ensuring that the column will not collide with the pushing-out hole when moving out of the pushing-out hole, avoiding the column from tilting and being unable to correspond to the support member.
[0008] Furthermore, the storage component further includes a support plate disposed in the cassette. Along the direction perpendicular to the extension direction of the through-hole, the support plate is inclined downward towards the through-hole. When the column at the through-hole is pushed out, the column on the support plate will not be hindered at this time, so it will roll under the action of gravity, enabling a new column to roll to the through-hole again and blocking the column on the support plate to limit the continuous rolling of the column on the support plate, thus facilitating the subsequent pushing out of the column.
[0009] Furthermore, the storage component further includes a limiting plate disposed in the cassette. The column is located between the limiting plate and the support plate, and the distance between the limiting plate and the support plate gradually decreases along the moving direction of the column on the support plate. When the column on the support plate rolls along the support plate, the distance between the limiting plate and the support plate will gradually decrease until only one column can pass through, ensuring that only one column can move to the through-hole, which is convenient for subsequent pushing and can also prevent the columns from stacking at the through-hole.
[0010] Furthermore, the mounting member includes a mounting plate on one side of the support member and a mounting block connected to the mounting plate. The mounting block is located above the mounting section. The mounting plate can support the mounting block, and the mounting block is located above the mounting section, facilitating the mounting block to continuously strike the mounting section.
[0011] Furthermore, the mounting plate includes a vertical plate disposed in the vertical direction and a horizontal plate disposed in the horizontal direction. The mounting block is connected to the horizontal plate, and the horizontal plate can slide along the extension direction of the vertical plate. By moving the horizontal plate, the movement of the mounting block can be realized, that is, the mounting block can strike the mounting section through reciprocating movement to fix the column to the ground.
[0012] Further, a plurality of clamping blocks abutting against the upright post are circumferentially convexly provided on the inner wall of the support member. By providing the clamping blocks, the upright post can be restricted to prevent the upright post from sliding along the support member. Thus, when the support member rotates, the upright post can be stabilized at the support member. And when installing the upright post, there will be a mounting member continuously knocking on the upright post. Therefore, when installing the upright post, the mounting member can be used to drive the upright post to move within the support member and finally separate from the support member.
[0013] Further, the clamping blocks are inclined from bottom to top. Since the upright post extends into the support member from the bottom end of the support member when being transferred from the cartridge to the support member, the clamping blocks are inclined from bottom to top, enabling the upright post to slide along the surface of the clamping blocks, reducing the obstruction of the clamping blocks to the upright post, and facilitating the pushing assembly to push the upright post into the support member.
[0014] Further, the support member is hingedly connected to the carrying assembly. Thus, the support member can rotate relative to the carrying assembly, facilitating the switching of the support member between the first setting state and the second setting state. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 The three-dimensional structure schematic diagram for illustrating a schematic embodiment of the installation device in the present utility model;
[0016] Figure 2 The three-dimensional structure schematic diagram of another perspective for illustrating the installation device in the present utility model;
[0017] Figure 3 The side view for illustrating a schematic embodiment of the installation device in the present utility model;
[0018] Figure 4 The structure schematic diagram for illustrating a schematic embodiment of the storage assembly in the present utility model.
[0019] REFERENCE NUMERALS:
[0020] 1. Carrying assembly;
[0021] 2. Installation assembly, 21. Support member, 22. Vertical plate, 23. Horizontal plate, 24. Mounting block;
[0022] 3. Storage assembly, 31. Cartridge, 32. Pushing port, 33. Pushing-out port, 34. Support plate, 35. Limiting plate;
[0023] 4. Pushing assembly. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts belong to the protection scope of the present utility model.
[0025] It should be noted that the orientation terms such as left, right, up, down, front, and back in the embodiments of the present utility model are only relative concepts to each other or are referenced based on the normal use state of the product, that is, the traveling direction of the product, and should not be considered as restrictive.
[0026] In addition, it should also be noted that the dynamic terms such as "relative movement" mentioned in the embodiments of the present utility model not only include the change in position, but also include the movement in which the position does not change relatively but the state changes, such as rotation and rolling.
[0027] Finally, it should be noted that when a component is referred to as "being located" or "being provided on" another component, it may be on the other component or there may be an intermediate component at the same time. When a component is referred to as "being connected to" another component, it may be directly connected to the other component or there may be an intermediate component at the same time.
[0028] Such as Figures 1 to 4A novel installation device for highway isolation fences is shown. The isolation fence includes columns and a mesh connected to the columns. When installing the isolation fence, first fix the columns to the ground, and then install the mesh to the columns to form a continuous isolation fence. In this application, the installation device includes a carrying component 1 and an installation component 2 provided on the carrying component 1. The installation component 2 includes a support member 21 for supporting the column and an installation member provided on the upper side of the support member 21. The column has an installation section exposed outside the support member 21. The support member 21 has a first setting position arranged in the vertical direction and a second setting position arranged in the horizontal direction. When the support member 21 is in the first setting position, the installation member can reciprocate towards the installation section to install the column to the ground. When installing the column, first move the column to the support member 21, and the column has an installation section exposed outside the support member 21. Therefore, the installation member located on the upper side of the support member 21 can move towards the installation section and continuously knock on the installation section, so that the column can move along the support member 21. And the support member 21 is a hollow structure, so the column will move out from the bottom end of the support member 21 during the movement and move towards the ground. During the knocking process of the installation member, the column can gradually penetrate into the ground and be fixed to the ground, thus realizing the fixation of the column. And by setting the installation component 2, the column can be automatically installed without manual support during the installation of the column, greatly reducing the installation risk. At the same time, through the reciprocating movement of the installation member, the column can be installed to the ground, and the installation efficiency of the column can also be improved.
[0029] It can be understood that since the support member 21 is provided on the carrying component 1, the movement of the carrying component 1 drives the overall structure to move, so as to move to different positions to complete the installation of the column. Therefore, in order to enable the column to be installed to the ground when being knocked, the part of the carrying component 1 corresponding to the support member 21 is also provided with a through structure, so that the column can pass through smoothly.
[0030] Among them, since the carrying component 1 also has a through structure for the column to pass through, when positioning the installation position of the column, only by positioning the position of the through structure at the carrying component 1 can the accurate installation of the column be realized.
[0031] After the column at the support member 21 is fixed to the ground, the column can be separated from the installation device. In order to prevent the column from affecting the movement of the installation device, when knocking on the column with the installation member, since the column has been fixed to the ground, through continuous knocking, the top end of the column can be moved to the lower side of the carrying component 1, so that the installation device can be separated from the column smoothly.
[0032] Among them, the installation device further includes a storage component 3 disposed on the bearing component 1. A plurality of columns are sequentially stored in the storage component 3 in the horizontal direction. When the support member 21 is in the second setting position, the columns located in the storage component 3 can move into the support member 21; the storage component 3 can store the columns, so that the installation device can realize the continuous installation of the columns. When the support member 21 is in the first setting position, that is, the support member 21 is in the vertical state, at this time, the support and limit of the columns can be realized, so that the columns can be installed vertically to the ground. After the columns are installed, the support member 21 can be converted from the first setting position to the second setting position, that is, the support member 21 is in the horizontal state, which is convenient for transferring the columns in the storage component 3 to the support member 21. At this time, the support member 21 is rotated from the second setting position to the first setting position to realize the re-installation of the columns.
[0033] Preferably, the support member 21 is hinged to the bearing component 1; thus, the support member 21 can rotate relative to the bearing component 1, which is convenient for the support member 21 to switch between the first setting state and the second setting state.
[0034] As an implementation manner in the present application, the installation member includes an installation plate located on one side of the support member 21 and an installation block 24 connected to the installation plate. The installation block 24 is located above the installation section; the installation plate can support the installation block 24, and the installation block 24 is located above the installation section, so as to facilitate the installation block 24 to continuously strike the installation section.
[0035] In order to enable the installation block 24 to continuously strike, the installation block 24 can move relative to the installation plate. Preferably, the installation plate includes a vertical plate 22 arranged in the vertical direction and a horizontal plate 23 arranged in the horizontal direction. The installation block 24 is connected to the horizontal plate 23, and the horizontal plate 23 can slide along the extension direction of the vertical plate 22; by moving the horizontal plate 23, the movement of the installation block 24 can be realized, that is, the installation block 24 can reciprocate to strike the installation section, so as to fix the column to the ground.
[0036] As an implementation manner in the present application, the storage component 3 includes a casing 31 for storing the columns. The casing 31 is formed with a through hole for the columns to pass through. The extending direction of the through hole is parallel to the extending direction of the columns located inside the casing 31. The installation device further includes a pushing component 4 provided on the bearing component 1, and the pushing component 4 is located on one side of the through hole. By providing the casing 31, the storage of multiple columns is realized, and a through hole is formed at the casing 31. Therefore, the columns can move out of the casing 31 along the through hole and are finally installed at the support member 21. At the same time, a pushing component 4 is also provided at the bearing component 1. The pushing component 4 can conveniently push the columns out of the casing 31. It can be understood that since the pushing component 4 is located on one side of the through hole, when the pushing component 4 pushes out the columns, the pushing component 4 can extend into the casing 31 through the through hole and completely push the columns out of the casing 31, so that the support member 21 can drive the columns to rotate conveniently.
[0037] In the present application, the pushing component 4 can be a cylinder structure. The cylinder rod in the cylinder structure is located on one side of the through hole, and the cylinder rod can extend into the casing 31 through the through hole. The movement of the columns is realized by the movement of the cylinder rod.
[0038] Preferably, the through hole includes a pushing port 32 close to the pushing component 4 and a pushing-out port 33 far from the pushing component 4. The diameter of the pushing port 32 is smaller than the diameter of the columns, and the diameter of the pushing-out port 33 is larger than the diameter of the columns. The pushing port 32 is the part where the pushing component 4 extends in, that is, the area where the cylinder rod extends into the casing 31, and the pushing-out port 33 is the area where the columns move out of the casing 31. Therefore, making the diameter of the pushing port 32 smaller than the diameter of the columns can ensure that the columns will not move out of the pushing port 32, and after the pushing component 4 extends into the pushing port 32, it can ensure that the extended part of the pushing component 4 can completely abut against the columns. When pushing the columns, the columns are more balanced in force and the movement of the columns is more accurate. The diameter of the pushing-out port 33 is larger than the diameter of the columns, ensuring that the columns will not collide with the pushing-out port 33 when moving out of the pushing-out port 33, avoiding the columns from tilting and not corresponding to the support member 21.
[0039] As an implementation mode in the present application, the storage component 3 further includes a support plate 34 disposed in the cassette 31. The support plate 34 is inclined downward toward the through-port in a direction perpendicular to the extension direction of the through-port. Since a plurality of columns are all placed in the cassette 31, and when installing the columns, a single column is installed. When pushing out the column, the pushing component 4 extends into the through-port by making the column located at the through-port, so as to push out the column located at the through-port. Therefore, the support plate 34 is inclined downward toward the through-port. When the column at the through-port is pushed out, the columns on the support plate 34 will not be blocked at this time, so they will roll under the action of gravity, so that the new columns will roll to the through-port again and block the columns at the support plate 34 to limit the continuous rolling of the columns on the support plate 34, thus facilitating the subsequent pushing out of the columns.
[0040] Preferably, the storage component 3 further includes a limiting plate 35 disposed in the cassette 31. The column is located between the limiting plate 35 and the support plate 34. In the moving direction of the column along the support plate 34, the distance between the limiting plate 35 and the support plate 34 gradually decreases. When the column at the support plate 34 rolls along the support plate 34, the distance between the limiting plate 35 and the support plate 34 will gradually decrease until only one column can pass through, so as to ensure that only one column can move to the through-port, which is convenient for subsequent pushing out and can also prevent the columns from stacking at the through-port.
[0041] As an implementation mode in the present application, a plurality of clamping blocks that abut against the column are convexly provided on the inner wall of the support member 21 in the circumferential direction. By providing the clamping blocks, the column can be restricted to prevent the column from sliding along the support member 21. Thus, when the support member 21 rotates, the column can be stable at the support member 21. And when installing the column, there will be a mounting member continuously knocking on the column. Therefore, when installing the column, the mounting member can be used to drive the column to move in the support member 21 and finally break away from the support member 21.
[0042] Preferably, the clamping blocks are inclined upward from bottom to top. Since the column enters from the bottom end of the support member 21 when transferring from the cassette 31 to the support member 21, the clamping blocks are inclined upward from bottom to top, so that the column can slide along the surface of the clamping blocks, reducing the obstruction of the clamping blocks to the column and facilitating the pushing component 4 to push the column into the support member 21.
[0043] The above are only the embodiments of the present application and are not used to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included within the scope of the claims of the present application.
Claims
1. A new type of highway isolation fence installation equipment, the isolation fence includes a column and a grid mesh connected to the column, characterized in that: The mounting device comprises a bearing assembly and a mounting assembly arranged on the bearing assembly, the mounting assembly comprises a support member supporting a column and a mounting member arranged on the upper side of the support member, the column has a mounting section exposed from the support member, the support member has a first setting position arranged in a vertical direction and a second setting position arranged in a horizontal direction, when the support member is in the first setting position, the mounting member can reciprocate toward the mounting section to install the column to the ground; The installation device also includes a storage component arranged on the supporting component, and a plurality of columns are sequentially stored in the storage component along the horizontal direction. When the support member is in the second setting position, the columns located in the storage component can be moved into the support member.
2. A new type of highway isolation fence installation equipment according to claim 1, characterized in that: The storage component includes a box body for storing columns, the box body is penetrated by a through opening for the columns to pass through, the extension direction of the through opening is parallel to the extension direction of the columns located in the box body, and the installation device also includes a pushing component arranged on the supporting component, and the pushing component is located on one side of the through opening.
3. A new type of highway isolation fence installation equipment according to claim 2, characterized in that: The through opening includes a pushing opening adjacent to the pushing component and an ejecting opening away from the pushing component. The diameter of the pushing opening is smaller than the diameter of the column, and the diameter of the ejecting opening is larger than the diameter of the column.
4. A new type of highway isolation fence installation equipment according to claim 2, characterized in that: The storage assembly further comprises a support plate disposed in the box body, and the support plate is tilted downward toward the through-opening in a direction perpendicular to the extending direction of the through-opening.
5. A new type of highway isolation fence installation equipment according to claim 4, characterized in that: The storage assembly also includes a limit plate arranged in the box body, the column is located between the limit plate and the support plate, and in the moving direction of the column along the support plate, the distance between the limit plate and the support plate gradually decreases.
6. A new type of highway isolation fence installation equipment according to claim 1, characterized in that: The mounting member comprises a mounting plate located at one side of the supporting member and a mounting block connected to the mounting plate, wherein the mounting block is located at an upper side of the mounting section.
7. A new type of highway isolation fence installation equipment according to claim 6, characterized in that: The mounting plate includes a vertical plate arranged in a vertical direction and a horizontal plate arranged in a horizontal direction, the mounting block is connected to the horizontal plate, and the horizontal plate can slide along an extending direction of the vertical plate.
8. A new type of highway isolation fence installation equipment according to claim 1, characterized in that: The inner wall of the support member is provided with a plurality of clamping blocks protruding along the circumferential direction and abutting against the pillars.
9. A new type of highway isolation fence installation equipment according to claim 8, characterized in that: The clamping block is arranged to be inclined from bottom to top.
10. A new type of highway isolation fence installation equipment according to claim 1, characterized in that: The support member is hingedly connected to the bearing assembly.