Adjustable walkway plate structure of building machine

The design of the support frame and positioning blocks solved the problems of height adjustment and stability of the walkway slab in the building construction machine, achieving length extension and improved anti-slip performance, and reducing maintenance costs.

CN223937618UActive Publication Date: 2026-02-24SHANGHAI CHAOSHI CONSTR TECH CO LTD
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Patent Information

Application Number
CN202520555587.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-02-24
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

The existing walkway structure of building construction machines cannot be adjusted in height, is difficult to splice and extend, lacks effective reinforcement measures, and the anti-slip texture is easily worn down, resulting in high maintenance costs.

Method used

The walkway slabs are supported and fixed by a support frame. The extension length is fixed by adjusting the height and splicing holes and nuts. The stability is improved by using positioning blocks. The anti-slip pads can be replaced separately.

Benefits of technology

It enables height adjustment and length extension of the walkway slabs, improves stability and anti-slip performance, reduces maintenance and replacement costs, and avoids waste.

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Abstract

The utility model discloses an adjustable walkway plate structure of a building machine, which comprises a plurality of vertical rods, the top ends of the vertical rods are fixedly connected with a mounting seat, a plurality of supporting frames are arranged between each pair of vertical rods, the supporting frames are n-shaped, the two sides of each supporting frame are provided with adjusting holes, the surfaces of the vertical rods are provided with a plurality of adjusting grooves, and the adjusting grooves are communicated with the mounting seat. An adjusting groove is formed in the supporting frame, the adjusting groove is round, internal threads are arranged on the groove wall of the adjusting groove, a walkway plate is placed on the top of the supporting frame, a plurality of clamping grooves are formed in the upper top face of the walkway plate, an anti-skid pad is arranged in each clamping groove, and herringbone anti-skid grains are arranged on the surface of each anti-skid pad. The arrangement height of the walkway plate can be adjusted, the length of the walkway plate can be expanded, the walkway plate can be reinforced and positioned, the walkway plate is not prone to loosening or displacement after being installed, the anti-skid effect can be achieved through the anti-skid pad, the anti-skid pad can be replaced independently, and the whole walkway plate does not need to be replaced.
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Description

Technical Field

[0001] This utility model belongs to the field of building construction machine technology, and in particular relates to an adjustable walkway structure for a building construction machine. Background Technology

[0002] A building construction machine is an integrated equipment platform used in the field of building construction. It is mainly composed of a support power system, a steel platform system, a hanging frame, and a protection system. The walkway is an important component of the building construction machine's hanging frame structure. It not only serves as a passageway for construction workers but also bears multiple functions, including supporting equipment, ensuring safety, supporting multi-process operations, and improving construction efficiency.

[0003] Currently, most building construction machine brackets on the market are equipped with walkway panels. For example, a building construction machine bracket structure with the publication number CN221524198U is disclosed on the Chinese Patent Network. However, there are some defects and shortcomings that need to be improved: (1) Due to structural design reasons, the height of the walkway panels in some existing building construction machine brackets is often fixed and difficult to adjust at will. When the length of the walkway panel is short, it is difficult to splice multiple walkway panels together to extend the length as needed, thus failing to meet different construction needs; (2) After the existing walkway panels are installed on the bracket, there is a lack of effective reinforcement and stabilization measures. The walkway panels are prone to loosening or displacement, thus posing a safety hazard; (3) In order to improve the anti-slip performance, some existing building construction machine walkway panels usually have anti-slip textures on the surface to increase the friction between the soles of the construction workers' shoes and the walkway panels. However, the anti-slip textures will gradually be worn down as the walkway panels are used for a long time. At this time, the walkway panels can only be replaced as a whole, which increases the maintenance and replacement costs and causes waste. Therefore, the adjustable walkway structure for building construction machines provided by this utility model is of great significance in addressing the above problems. Utility Model Content

[0004] This utility model provides an adjustable walkway structure for a building construction machine. A support frame supports and fixes the walkway, and the placement height of the walkway can be adjusted by changing the fixing height of the support frame to meet different construction needs. When the length of the walkway needs to be extended, the two walkway panels spliced ​​together are fixed by the cooperation of studs, splicing holes, and nuts to extend the length of the walkway. The walkway is positioned by the cooperation of positioning blocks and positioning grooves to improve its stability and prevent the walkway from becoming loose or displaced when workers walk on it, thus preventing safety hazards. Anti-slip pads in the slots on the top surface of the walkway increase the friction between the workers' shoes and the walkway, providing anti-slip protection. When the anti-slip texture on the surface of the anti-slip pads wears down over time, the corresponding anti-slip pads can be removed from the slots for individual replacement without replacing the entire walkway panel. This effectively reduces maintenance and replacement costs and avoids waste, thus solving the problems in the background technology.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0006] This utility model discloses an adjustable walkway structure for a building construction machine, comprising several pairs of uprights. Each upright has a rectangular cross-section and a mounting base fixedly connected to its top. Several support frames are provided between each pair of uprights. The support frames are n-shaped and have adjustment holes on both sides. Several adjustment grooves are provided on the surface of each upright. The adjustment grooves are circular and have internal threads on their walls. A walkway is placed on top of the support frames. Several slots are provided on the top surface of the walkway. Each slot contains an anti-slip pad. Both the anti-slip pad and the slot are elongated, with their length and width being equal. The surface of the anti-slip pad is provided with herringbone anti-slip patterns.

[0007] Furthermore, the adjustment grooves are linearly distributed at equal intervals along the height direction of the upright, and their diameters correspond to the diameters of the adjustment holes. The center of each adjustment groove corresponds one-to-one with the center of each adjustment hole.

[0008] Furthermore, a pair of studs are fixedly connected to both the front and rear faces of the walkway slab. The pair of studs are located at both ends of the walkway slab, and nuts that cooperate with them are threaded onto the studs. A pair of splicing blocks are provided at both ends of the walkway slab. A pair of splicing holes are opened on the surface of the splicing blocks. The diameter of the splicing holes corresponds to the diameter of the studs, and the center of each splicing hole corresponds one-to-one with the center of each stud.

[0009] Furthermore, reinforcing blocks are fixedly connected to the inner walls on both sides of the support frame. The reinforcing blocks are triangular, with their tops fixedly connected to the lower top surface of the support frame and symmetrically distributed.

[0010] Furthermore, a pair of positioning blocks are fixedly connected to the top surface of each support frame, and a pair of positioning grooves are opened on the bottom surface of each walkway plate. The positioning grooves and positioning blocks are both rectangular, with corresponding equal groove widths, and the center of each positioning groove corresponds one-to-one with the center of each positioning block.

[0011] Furthermore, the card slots are equidistantly linearly distributed along the width of the walkway plate, and each card slot has a take-out groove on its top surface at both ends. The take-out groove is semi-circular and its depth is less than the depth of the card slot.

[0012] Furthermore, the walkway slab has a weight-reducing cavity inside, and a number of reinforcing ribs are provided inside the weight-reducing cavity. The reinforcing ribs are X-shaped, and their top and bottom are fixedly connected to the top and bottom of the weight-reducing cavity, respectively. The reinforcing ribs are distributed linearly at equal intervals along the length of the weight-reducing cavity.

[0013] The present invention has the following advantages over the prior art:

[0014] (1) When using the adjustable walkway structure of the building construction machine in this utility model, the walkway can be supported and fixed by the support frame, and the placement height of the walkway can be adjusted as needed by changing the fixing height of the support frame to meet different construction needs. When it is necessary to extend the length of the walkway, the two walkway panels spliced ​​together can be fixed by the mutual cooperation between the studs, splicing holes and nuts in order to extend the length of the walkway.

[0015] (2) When the adjustable walkway structure of the building construction machine in this utility model is used, the walkway can be positioned by the cooperation between the positioning block and the positioning groove, so as to improve the stability of the walkway and prevent the walkway from becoming loose or displaced when construction workers walk on the walkway, thus causing safety hazards.

[0016] (3) When the adjustable walkway structure of the building construction machine in this utility model is used, the anti-slip pads in the slots on the top surface of the walkway can increase the friction between the soles of the construction workers' shoes and the walkway, so as to play an anti-slip role. When the anti-slip texture on the surface of the anti-slip pad is gradually worn down due to long-term use, the corresponding anti-slip pad can be removed from the slot for individual replacement, without having to replace the entire walkway. This not only effectively reduces maintenance and replacement costs, but also avoids waste.

[0017] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description

[0018] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a structural schematic diagram of an adjustable walkway structure for a building construction machine according to the present invention;

[0020] Figure 2 This is a schematic diagram of the support frame in this utility model;

[0021] Figure 3 This is a schematic diagram of the walkway slab in this utility model;

[0022] Figure 4 This is a top view of the walkway slab in this utility model;

[0023] Figure 5 This is a schematic diagram of the splicing block in this utility model;

[0024] Figure 6 This is a schematic diagram of the anti-slip mat in this utility model.

[0025] The attached diagram lists the components represented by each number as follows:

[0026] 1. Upright pole; 2. Mounting base; 3. Support frame; 4. Adjustment hole; 5. Adjustment groove; 6. Walkway plate; 7. Slot; 8. Anti-slip pad; 9. Stud; 10. Nut; 11. Splicing block; 12. Splicing hole; 13. Reinforcing block; 14. Positioning block; 15. Positioning groove; 16. Removal groove; 17. Weight reduction cavity; 18. Reinforcing rib. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0028] In the description of this utility model, it should be understood that the terms "relative", "one end", "inner", "lateral", "end", "both ends", "both sides", "front", "one end face", "the other end face", etc., which indicate orientation or positional relationship, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the components or elements referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0029] Please see Figure 1-6 As shown, this utility model discloses an adjustable walkway structure for a building construction machine, comprising several pairs of uprights 1. Each upright 1 has a rectangular cross-section, and a mounting base 2 is fixedly connected to its top. The mounting base 2 connects the uprights 1 to the main body of the building construction machine. Several support frames 3 are provided between each pair of uprights 1. The support frames 3 are n-shaped, with adjustment holes 4 on both sides. Several adjustment grooves 5 are provided on the surface of each upright 1. The adjustment grooves 5 are circular, and their walls are threaded. Screws or other fasteners can be inserted into the adjustment holes 4. The fasteners can be screwed into the adjustment grooves 5 to fix the support frames 3 to the uprights 1 via a threaded connection. A mounting bracket is placed on the top of each support frame 3. The walkway slab 6 is supported and fixed by the support frame 3. The walkway slab 6 can be used to provide a construction passage and can also be used to carry construction equipment and materials. The top surface of the walkway slab 6 has several slots 7, and each slot 7 is equipped with an anti-slip mat 8. The anti-slip mat 8 and the slot 7 are both long strips with equal length and width. The surface of the anti-slip mat 8 is decorated with herringbone anti-slip texture. When construction workers walk on the walkway slab 6, the anti-slip texture on the surface of the anti-slip mat 8 can increase the friction between the soles of the workers' shoes and the walkway slab 6, so as to prevent slipping and falling when there is water on the walkway slab 6.

[0030] Among them, the adjustment grooves 5 are linearly distributed at equal intervals along the height direction of the upright 1, and their diameters correspond to the diameters of the adjustment holes 4. The center of each adjustment groove 5 corresponds one-to-one with the center of each adjustment hole 4. When the fasteners inserted into the adjustment holes 4 are screwed into the adjustment grooves 5 at different heights, the support frame 3 can be fixed at the corresponding height. At this time, the placement height of the walkway slab 6 can be adjusted as needed to meet different construction requirements.

[0031] The walkway slab 6 has a pair of studs 9 fixedly connected to its front and rear ends. The studs 9 are located at both ends of the walkway slab 6, and nuts 10 are threaded onto the studs 9 to cooperate with them. A pair of splicing blocks 11 are provided at both ends of the walkway slab 6. A pair of splicing holes 12 are opened on the surface of the splicing blocks 11. The diameter of the splicing holes 12 is equal to the diameter of the studs 9, and the center of each splicing hole 12 corresponds one-to-one with the center of each stud 9. When it is necessary to extend the length of the walkway slab 6, the two walkway slabs 6 can be connected end to end. At this time, the splicing blocks 11 are respectively attached to the front and rear connection points of the two walkway slabs 6, and each stud 9 is aligned and passes through the corresponding splicing hole 12. Then, the nuts 10 are threaded onto each stud 9 and tightened. The two walkway slabs 6 after being spliced ​​end to end can be fixed by the cooperation between the studs 9, splicing holes 12, and nuts 10, so as to extend the length of the walkway slab 6.

[0032] The inner walls on both sides of the support frame 3 are fixedly connected with reinforcing blocks 13. The reinforcing blocks 13 are triangular, and their tops are fixedly connected to the bottom surface of the support frame 3 and are symmetrically distributed. The reinforcing blocks 13 can support and reinforce the support frame 3 to improve the structural strength of the support frame 3, thereby preventing it from bending and deforming under pressure and affecting the support effect on the walkway slab 6.

[0033] Each support frame 3 has a pair of positioning blocks 14 fixedly connected to its top surface, and each walkway slab 6 has a pair of positioning grooves 15 on its bottom surface. The positioning grooves 15 and the positioning blocks 14 are both rectangular, with equal groove widths. The center of each positioning groove 15 corresponds one-to-one with the center of each positioning block 14. When the walkway slab 6 is placed on the support frame 3, each positioning block 14 can be aligned and fitted into the corresponding positioning groove 15. At this time, the walkway slab 6 can be positioned by the mutual cooperation between the positioning blocks 14 and the positioning grooves 15, so as to improve the stability of the walkway slab 6 and prevent the walkway slab 6 from becoming loose or displaced when construction workers walk on it, thus preventing safety hazards.

[0034] The card slots 7 are equidistantly linearly distributed along the width of the walkway 6, and each card slot 7 has a take-out groove 16 on its top surface at both ends. The take-out groove 16 is semi-circular, and its depth is less than the depth of the card slot 7. The anti-slip pad 8 can be inserted and fitted into each card slot 7 to fix the anti-slip pad 8 by plugging it in. When the anti-slip texture on the surface of the anti-slip pad 8 is gradually worn down due to long-term use, you can insert your finger into the take-out groove 16 and pry the corresponding anti-slip pad 8 out of the card slot 7 to replace the anti-slip pad 8 individually without replacing the entire walkway 6. This not only effectively reduces maintenance and replacement costs but also avoids waste.

[0035] The walkway slab 6 has a weight-reducing cavity 17 inside, and several reinforcing ribs 18 are provided inside the weight-reducing cavity 17. The reinforcing ribs 18 are X-shaped, and their top and bottom are fixedly connected to the top and bottom of the weight-reducing cavity 17, respectively. The reinforcing ribs 18 are distributed linearly at equal intervals along the length of the weight-reducing cavity 17. The weight-reducing cavity 17 can reduce the material used in the walkway slab 6, so as to reduce the overall weight of the walkway slab 6. Furthermore, the reinforcing ribs 18 can strengthen the walkway slab 6, thereby improving its resistance to deformation and preventing it from bending and deforming after being subjected to stress for a long time.

[0036] All standard parts used in the application documents can be purchased from the market. All components in this application documents can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art.

[0037] The working principle of this utility model is as follows:

[0038] In use, the walkway 6 can be placed on the support frame 3. The walkway 6 can provide a construction passage and also support construction equipment and materials. Anti-slip mats 8 are installed in the slots 7 on the top surface of the walkway 6. When construction workers walk on the walkway 6, the anti-slip texture on the surface of the mats increases the friction between the workers' shoes and the walkway 6, thus preventing slipping when there is water accumulation on the walkway 6. When the anti-slip texture on the surface of the mats 8 wears down due to prolonged use, the mats 8 can be removed by inserting fingers into the removal slots 16 and prying them out of the slots 7, allowing for individual replacement without replacing the entire walkway 6. This effectively reduces maintenance and replacement costs and avoids waste. The positioning block 14 and the positioning slot 15 cooperate to position the walkway 6, improving its stability and preventing slippage when workers walk on it. If the walkway slab 6 becomes loose or shifts, causing a safety hazard, the support frame 3 can support and fix the walkway slab 6. Screws and other fasteners can be inserted into the adjustment holes 4 on both sides of the support frame 3. The fasteners can be screwed into the adjustment grooves 5 so that the support frame 3 can be fixed to the upright 1 by means of threaded connection. When the fasteners inserted into the adjustment holes 4 are screwed into the adjustment grooves 5 at different heights, the support frame 3 can be fixed at the corresponding height. At this time, the placement height of the walkway slab 6 can be adjusted as needed to meet different construction requirements. When it is necessary to extend the length of the walkway slab 6, two walkway slabs 6 can be connected end to end. At this time, the splicing blocks 11 are respectively attached to the front and rear connection points of the two walkway slabs 6, and the studs 9 are aligned and passed through the corresponding splicing holes 12. Then, the nuts 10 are threaded onto the studs 9 and tightened. The two walkway slabs 6 after being spliced ​​end to end can be fixed by the mutual cooperation between the studs 9, splicing holes 12, and nuts 10 so as to extend the length of the walkway slab 6.

[0039] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.

Claims

1. An adjustable walkway structure for a building construction machine, characterized in that, It includes several pairs of uprights (1), each upright (1) having a rectangular cross-section and a mounting base (2) fixedly connected to its top. Several support frames (3) are provided between each pair of uprights (1). The support frames (3) are n-shaped and have adjustment holes (4) on both sides. Several adjustment grooves (5) are provided on the surface of the uprights (1). The adjustment grooves (5) are circular and have internal threads on their walls. A walkway plate (6) is placed on the top of the support frame (3). Several slots (7) are provided on the top surface of the walkway plate (6). Each slot (7) is provided with an anti-slip pad (8). The anti-slip pad (8) and the slot (7) are both long strips with equal length and width. The surface of the anti-slip pad (8) is provided with herringbone anti-slip texture.

2. The adjustable walkway structure for a building construction machine according to claim 1, characterized in that, The adjustment grooves (5) are linearly distributed at equal intervals along the height direction of the upright (1), and their diameters are equal to the diameters of the adjustment holes (4). The center of each adjustment groove (5) corresponds one-to-one with the center of each adjustment hole (4).

3. The adjustable walkway structure for a building construction machine according to claim 1, characterized in that, The front and rear faces of the walkway plate (6) are fixedly connected with a pair of studs (9). The pair of studs (9) are located at both ends of the walkway plate (6), and the studs (9) are threaded with nuts (10) that cooperate with them. Both ends of the walkway plate (6) are provided with a pair of splicing blocks (11). The surface of the splicing block (11) is provided with a pair of splicing holes (12). The diameter of the splicing hole (12) is equal to the diameter of the stud (9), and the center of each splicing hole (12) corresponds one-to-one with the center of each stud (9).

4. The adjustable walkway structure for a building construction machine according to claim 1, characterized in that, The inner walls on both sides of the support frame (3) are fixedly connected with reinforcing blocks (13). The reinforcing blocks (13) are triangular, and their tops are fixedly connected to the bottom surface of the support frame (3) and are symmetrically distributed.

5. The adjustable walkway structure for a building construction machine according to claim 1, characterized in that, Each of the support frames (3) has a pair of positioning blocks (14) fixedly connected to its top surface. Each of the walkway plates (6) has a pair of positioning grooves (15) on its bottom surface. The positioning grooves (15) and the positioning blocks (14) are both rectangular, with equal groove widths. The center of each positioning groove (15) corresponds one-to-one with the center of each positioning block (14).

6. The adjustable walkway structure for a building construction machine according to claim 1, characterized in that, The card slots (7) are distributed linearly at equal intervals along the width direction of the walkway plate (6), and each card slot (7) has a take-out groove (16) on its top surface at both ends. The take-out groove (16) is semi-circular and its depth is less than the depth of the card slot (7).

7. The adjustable walkway structure for a building construction machine according to claim 1, characterized in that, The walkway slab (6) has a weight-reducing cavity (17) inside, and a number of reinforcing ribs (18) are provided inside the weight-reducing cavity (17). The reinforcing ribs (18) are X-shaped, and their top and bottom are fixedly connected to the top and bottom of the weight-reducing cavity (17) respectively. The reinforcing ribs (18) are distributed linearly at equal intervals along the length of the weight-reducing cavity (17).

Citation Information

Patent Citations

  • Hanging frame structure of building machine

    CN221524198U