A wireless bridge installation structure

By using rubber pads and pressing blocks in the wireless bridge mounting structure, combined with pipe clamps and barbed self-locking structures, the problem of the wireless bridge sliding or rotating on the overhead crane is solved, achieving a more stable connection and a simplified assembly process.

CN224684292UActive Publication Date: 2026-08-25广西华磊新材料有限公司
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Patent Information

Application Number
CN202521998396.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2026-08-25
Estimated Expiration
2035-09-17

AI Technical Summary

Technical Problem

The sliding or rotation of the wireless bridge device on the overhead crane due to its constant movement and stopping affects the stability of the connection.

Method used

The system employs a rubber pad and a pressing mechanism, which uses a pipe clamp to generate a clamping force, ensuring that the rubber pad fits tightly against the support rod. Combined with a barbed self-locking structure, this enhances the stability of the connection.

Benefits of technology

It effectively prevents the wireless bridge from rotating or sliding, improves connection stability and vibration resistance, and simplifies the assembly process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wireless network bridge ware mounting structure relates to communication equipment technical field. Including network bridge ware body and mounting support, the top of mounting support is located on network bridge ware body bottom wall, the bottom end of mounting support is provided with by left side board and right side board corner joint into the lap joint surface lap joint corner board, the bottom of mounting support is provided with the mounting hole of left and right through, is used for the pipe clamp spare of setting to press tightly fixed on the support pole with lap joint corner board, the bottom lap joint surface of lap joint corner board is provided with rubber pad, the rubber pad includes at least one pad strip of extending along left and right directions, pad strip arrangement on left side board and right side board. The utility model discloses utilize the rubber pad and cooperation's pressing mechanism under the pressure deformation of external force, through the pipe clamp spare tightness generated pressure tightness and the compact adhesion of support pole outer wall, thereby improve the connection stability, prevent the rotation or sliding effectively.
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Description

Technical Field

[0001] This utility model relates to the field of communication equipment technology, and in particular to a wireless bridge installation structure. Background Technology

[0002] In the aluminum electrolysis process, overhead cranes are one of the most important production equipment, and their working quality and efficiency have received widespread attention from technicians. Good stability and adaptability of the overhead cranes can undoubtedly better guarantee and promote the working efficiency of the aluminum electrolysis plant. Generally, multiple overhead cranes are arranged on a single track, each equipped with a wireless bridge device for data acquisition and transmission. Adjacent overhead cranes can also communicate and be positioned through their respective wireless bridge devices.

[0003] Currently, wireless bridge devices are equipped with mounting brackets, which are set on the bottom wall of the bridge device body. The bottom wall of the mounting bracket has a V-shaped clamp structure and an inner bottom arc design. During installation, the bottom wall of the mounting bracket is placed on the vertical rod of the overhead crane and secured with pipe clamps. However, the overhead crane moves back and forth, stops and loads and unloads materials with the bridge device, which can cause the wireless bridge device to slide axially or rotate circumferentially on the vertical rod. Utility Model Content

[0004] The purpose of this invention is to address the aforementioned problems by providing a wireless bridge mounting structure. This structure utilizes a rubber pad that can deform under external force and a matching pressing mechanism. The clamping force generated by the tightening of the pipe clamps achieves a tight fit with the outer wall of the support rod, thereby improving connection stability and effectively preventing rotation or slippage.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: A wireless bridge mounting structure includes a bridge body and a mounting bracket. The top of the mounting bracket is disposed on the bottom wall of the bridge body. The bottom end of the mounting bracket is provided with an overlapping corner plate formed by the corner joint of a left side plate and a right side plate. The bottom end of the mounting bracket is provided with a through mounting hole for inserting a pipe clamp to press and fix the overlapping corner plate to a support rod. A rubber pad is provided on the bottom overlapping surface of the overlapping corner plate. The rubber pad includes at least one pad strip extending in the left-right direction, and the pad strip is arranged on the left side plate and the right side plate.

[0006] Preferably, the rubber pad further includes plugs disposed at the top of both ends of the pad strip. The top of the plug has a flange that is radially outward and wider than the fixing hole. The plug is engaged with the fixing hole opened in the left side plate and the right side plate through the flange.

[0007] Preferably, it also includes a pressing block disposed in the middle of the top surface of the pad strip, and the mounting support is provided with a pressing hole that extends to the bottom overlapping surface of the overlapping corner plate, and the pressing block is slidably disposed in the pressing hole.

[0008] Preferably, the bottom surface of the pressing block is adapted to the extension surface of the bottom overlapping surface of the overlapping corner plate at the pressing hole, and the height of the pressing block should be greater than or equal to the vertical distance from the bottom wall of the mounting hole to the bottom overlapping surface.

[0009] Preferably, the height from the top surface to the bottom surface of the pressing block is less than the height from the top wall of the mounting hole to the bottom wall of the mounting support.

[0010] Preferably, the upper edge of the pressing hole is located below the bottom wall of the mounting hole.

[0011] Preferably, a limiting groove is provided in the middle of the top surface of the pressing block, and the limiting groove extends through the side wall of the pressing block in the left-right direction.

[0012] Preferably, the top of the mounting bracket is provided with an interface section, the top surface of the interface section is provided with a U-shaped groove, and the bottom surface of the U-shaped groove is provided with a barb; the bottom wall of the bridge device body is provided with a plug adapted to the interface section, and the bottom surface of the plug is provided with a U-shaped slide rail; the plug is inserted into the interface section through the slide rail, and the barb is hooked onto the side wall of the plug. The plug is inserted into the groove through the slide rail, and the barb is hooked onto the side wall of the plug.

[0013] By adopting the above technical solution, this utility model has the following beneficial effects: This invention features a rubber pad strip along the left-right direction on the overlapping surface at the bottom of the mounting bracket. During installation, cable ties or stainless steel pipe clamps are passed through the mounting hole and tightened onto the support rod. As the clamps tighten, the pad strip is compressed, creating a tight contact between the overlapping surface and the outer wall of the support rod, increasing friction, improving connection stability, and preventing rotation or slippage. A pressing hole with a sliding-fitting pressing block is provided. During installation, the clamps apply pressure to the pressing block, causing it to move downwards and its bottom surface to reliably fit against the outer wall of the support rod, further enhancing the pressing effect and anti-slip capability of the overlapping area. The end caps and radially expanding flanges of the rubber pad strip engage with the fixing holes, limiting and preventing detachment, ensuring the pad strip does not shift under pressure, facilitating assembly and maintenance. The interface section of the mounting bracket connects to the plug of the bridge device body via a guide rail / slide groove. The self-locking engagement between the hook and the plug sidewall makes the connection more reliable, improving assembly efficiency and vibration resistance. Attached Figure Description

[0014] Figure 1 This is a structural schematic diagram of Example 1 of the network bridge device of this utility model.

[0015] Figure 2 yes Figure 1 Another structural diagram of the bridge device.

[0016] Figure 3 yes Figure 1 Another structural diagram of the bridge device.

[0017] Figure 4 yes Figure 1 Another structural diagram of the rubber pad.

[0018] Figure 5 yes Figure 1 Another structural diagram of the rubber pad.

[0019] Figure 6 yes Figure 1 Side view of the connection between the rubber pad and the mounting bracket.

[0020] Figure 7 yes Figure 6 Right view.

[0021] Figure 8 This is a side view of the assembly state of the pressing block, rubber pad, and mounting bracket of Example 2 of the network bridge device of this utility model.

[0022] Figure 9 yes Figure 8 A schematic diagram of the pressing block in its depressed state.

[0023] Figure 10 yes Figure 8 Schematic diagram of the mounting support structure.

[0024] Figure 11 yes Figure 10 Another perspective structural diagram.

[0025] Figure 12 yes Figure 10 Another perspective structural diagram.

[0026] Figure 13 yes Figure 10 Internal structure diagram.

[0027] Figure 14 yes Figure 10 Another internal structure diagram.

[0028] Figure 15 yes Figure 8 Schematic diagram of the pressing block and rubber pad structure.

[0029] Figure 16 yes Figure 15 Another perspective structural diagram.

[0030] Figure 17 yes Figure 15 Internal structure diagram.

[0031] Figure 18 This is a schematic diagram of the pressing block and rubber pad structure of Example 3 of the network bridge device of this utility model.

[0032] In the attached diagram, 100 is the main body of the bridge device; 101 is the plug; 1 is the mounting bracket; 11 is the interface section; 12 is the overlapping corner plate; 121 is the fixing hole; 13 is the mounting hole; 131 is the pressing hole; 2 is the rubber pad; 21 is the plug; 22 is the pad strip; 3 is the pressing block; and 31 is the limiting groove. Detailed Implementation

[0033] Example 1 See Figures 1-7 This utility model discloses a wireless bridge installation structure, including a bridge body 100 and a mounting bracket 1, with the top of the mounting bracket 1 disposed on the bottom wall of the bridge body 100.

[0034] The bottom end of the mounting bracket 1 is provided with an overlapping corner plate 12, which is formed by the corner joint of the left and right side plates. The bottom end of the mounting bracket 1 has a through mounting hole 13 for inserting a pipe clamp to press and fix the overlapping corner plate 12 onto the support rod. A rubber pad 2 is provided on the bottom overlapping surface of the overlapping corner plate 12; the rubber pad 2 includes at least one pad strip 22 extending in the left-right direction, and the pad strip 22 is arranged on the bottom overlapping surface of the left and right side plates. The pad strip 22 can be connected to the overlapping corner plate 12 by means of adhesive, fasteners, etc.

[0035] During installation and use, pass the binding straps or stainless steel pipe clamps through the mounting hole 13 and tighten them on the support rod. As the pipe clamps tighten, the pads 22 are compressed, causing the overlapping surface to fit tightly against the outer wall of the support rod, increasing friction, improving connection stability, and preventing rotation or slippage.

[0036] Among them, the bridge device body 100 and its mounting bracket 1 are both existing technologies. The mounting bracket 1 can be fixedly connected to the bottom wall of the bridge device body 100 housing or can be detachably connected. In this embodiment 1, taking the fixed connection between the bridge device body 100 housing and the mounting bracket 1 as an example, the bottom wall abutment surface of the mounting bracket 1 is improved. The hard contact between the abutment surface and the outer wall of the support rod is improved to be buffered by the expansion and contraction of the rubber pad.

[0037] Example 2 like Figures 1-17 As shown, based on Embodiment 1, the rubber pad 2 also includes plugs 21 disposed at the top of both ends of the pad strip 22; fixing holes 121 for engaging the plugs 21 are respectively provided on the left side plate and the right side plate.

[0038] The top of the plug 21 is provided with a flange that is radially outward and wider than the fixing hole 121. The plug 21 is engaged in the fixing hole 121 through the flange to realize the positioning and anti-dislodgement of the pad strip 22, which facilitates quick placement and assembly.

[0039] For example, when the diameter of the fixing hole 121 is about 5mm, the plug 21 can be a cylindrical block with a diameter of about 6mm, and its top flange can be a frustum with a diameter of about 8mm or a strip with a size of about 4mm×8mm, so as to meet the snap-fit ​​requirement that the flange width is greater than the fixing hole.

[0040] Example 3 like Figures 8-18 As shown, based on Embodiment 1 or Embodiment 2, a structure is further provided: a pressing block 3. The pressing block 3 is disposed in the middle of the top surface of the pad strip 22, and the mounting support 1 is provided with a pressing hole 131 that extends to the bottom overlapping surface of the overlapping corner plate 12. The pressing block 3 is slidably disposed in the pressing hole 131.

[0041] The bottom surface of the pressing block 3 is adapted to the extension surface of the bottom overlapping surface of the overlapping corner plate 12 at the pressing hole 131. The height of the pressing block 3 (from top surface to bottom surface) should be greater than or equal to the vertical distance from the bottom wall of the mounting hole 13 to the bottom overlapping surface to ensure that the force can be effectively transmitted to the outer wall of the support rod during the pressing stroke; at the same time, the height of the pressing block 3 is less than the height from the top wall of the mounting hole 13 to the abutment surface of the bottom wall of the mounting support to ensure assembly space and pressing stroke.

[0042] The upper edge of the pressure hole 131 is located below the bottom wall of the mounting hole 13, so that when the pipe clamp is tightened through the mounting hole 13, a downward pressing force can be applied to the pressing block 3.

[0043] like Figure 18 As shown, a limiting groove 31 is provided in the center of the top surface of the pressing block 3. The limiting groove 31 extends through the side wall of the pressing block 3 in the left-right direction, providing a stable limiting position for narrower binding straps, etc., to prevent them from sliding on the top surface of the pressing block. The pipe clamp is made of stainless steel pipe clamps, binding straps, etc., and some are wider than others. If the width is smaller, it is easy to slide up and down on the top surface of the pressing block during installation. The limiting groove 31 serves as a fixing position for narrower binding straps, etc., to prevent them from sliding on the top surface of the pressing block, thus playing a limiting role.

[0044] Assembly and Operation Process: During initial assembly, the top surface of the pressing block 3 is higher than the upper edge of the pressing hole 131, and the pipe clamp crosses the mounting hole 13 and abuts against the top surface of the pressing block 3. After tightening the pipe clamp, the pressing block 3 slides downward along the pressing hole 131 under force, and its bottom surface is reliably attached to the outer wall of the support rod through the pad 22, enhancing the local clamping force and anti-slip capability. The following example illustrates this: When the mounting hole 13 is approximately 8mm × 30mm, the pressing hole 131 can be selected to be approximately 15mm × 30mm, and its upper edge is approximately 12mm lower than the bottom wall of the mounting hole 13; the pressing block 3 initially protrudes approximately 12mm-20mm relative to this upper edge to ensure sufficient clamping stroke.

[0045] Example 4 Based on any of embodiments 1-3, the top of the mounting bracket 1 is provided with an interface section 11, the top surface of the interface section 11 is provided with a convex-shaped groove, and the bottom surface of the convex-shaped groove is provided with a barb.

[0046] like Figures 1-17 As shown, the bottom wall of the bridge device body 100 is provided with a plug 101 that is compatible with the interface section 11, and the bottom surface of the plug 101 is provided with a U-shaped slide rail.

[0047] The plug 101 is inserted into the interface section 11 via a slide rail, and the barb is hooked onto the side wall of the plug 101; in other words, the plug 101 is inserted into the slide groove via a slide rail, and the barb is hooked onto the side wall of the plug 101. The material's resilience and the barb structure enable quick assembly and reliable self-locking.

[0048] It should be noted that the examples of the above embodiments can preferably be combined with one or more of each other according to actual needs, and the accompanying drawings of multiple examples adopt a set of combined technical features, which will not be described in detail here.

[0049] It should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation.

[0050] The above description is a detailed explanation and illustration of the preferred embodiments of the present utility model. However, these descriptions are not intended to limit the scope of protection claimed by the present utility model. All equivalent changes or modifications made under the technical teachings of the present utility model shall fall within the patent protection scope covered by the present utility model.

Claims

1. A wireless bridge mounting structure, comprising a bridge body and a mounting bracket, wherein the top end of the mounting bracket is disposed on the bottom wall of the bridge body; characterized in that: The bottom end of the mounting bracket is provided with an overlapping corner plate formed by the corner joint of the left and right side plates. The bottom end of the mounting bracket is provided with a through mounting hole for inserting a pipe clamp to press and fix the overlapping corner plate to the support rod. A rubber pad is provided on the bottom overlapping surface of the overlapping corner plate. The rubber pad includes at least one pad strip extending in the left-right direction, and the pad strip is arranged on the left and right side plates.

2. The wireless bridge mounting structure according to claim 1, characterized in that: The rubber pad also includes plugs at the top of both ends of the pad strip. The top of the plug has a flange that is radially outward and wider than the fixing hole. The plug is engaged with the fixing hole opened in the left side plate and the right side plate through the flange.

3. The wireless bridge mounting structure according to claim 1, characterized in that: It also includes a pressing block disposed in the middle of the top surface of the pad strip, and the mounting support is provided with a pressing hole that extends to the bottom overlapping surface of the overlapping corner plate, and the pressing block is slidably disposed in the pressing hole.

4. The wireless bridge mounting structure according to claim 3, characterized in that: The bottom surface of the pressing block is adapted to the extension surface of the bottom overlapping surface of the overlapping corner plate at the pressing hole, and the height of the pressing block should be greater than or equal to the vertical distance from the bottom wall of the mounting hole to the bottom overlapping surface.

5. The wireless bridge mounting structure according to claim 4, characterized in that: The height from the top surface to the bottom surface of the pressing block is less than the height from the top wall of the mounting hole to the bottom wall of the mounting support.

6. The wireless bridge mounting structure according to claim 4, characterized in that: The upper edge of the pressure hole is located below the bottom wall of the mounting hole.

7. The wireless bridge mounting structure according to claim 4, characterized in that: The pressing block has a limiting groove in the middle of its top surface, and the limiting groove extends through the side wall of the pressing block in the left-right direction.

8. The wireless bridge mounting structure according to claim 1, characterized in that: The top of the mounting bracket is provided with an interface section, the top surface of the interface section is provided with a U-shaped groove, and the bottom surface of the U-shaped groove is provided with a barb; the bottom wall of the bridge device body is provided with a plug that is compatible with the interface section, and the bottom surface of the plug is provided with a U-shaped slide rail; the plug is inserted into the interface section through the slide rail, and the barb is hooked on the side wall of the plug, the plug is inserted into the groove through the slide rail, and the barb is hooked on the side wall of the plug.