Concrete pipe blockage treatment platform
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2026-08-14
AI Technical Summary
[0003]本实用新型的目的之一至少在于,针对如何克服上述现有技术存在的问题,提供一种混凝土堵管处理平台,不仅解决了直接站在待浇筑层施工位置无法处理输送管道堵塞的问题,还解决了施工现场不平整而存在倾倒的问题
该处理平台通过提高操作平台解决了直接站在待浇筑层施工位置无法处理输送管道堵塞的问题,其加强支撑组件作为一个可调节的活动支撑结构,采用支腿撑杆进行支撑,并依靠活动固定杆加固固定,支腿撑杆的可转动设计,解决了施工现场不平整的状态下,某一个支腿垫木方或方通时,平台不稳,导致存在倾倒的问题,支腿撑杆的条形孔二的设计,解决了施工现场障碍物较多,导致支腿撑杆不能转动进行固定时,通过条形孔二调整支腿撑杆与支腿的固定位置,从而使支腿撑杆避开障碍物进行固定。
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Figure CN224634274U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of concrete pipe blockage technology, and in particular to a concrete pipe blockage treatment platform. Background Technology
[0002] During concrete pumping, blockages often occur in the delivery pipeline due to improper operation, concrete quality issues, or pipeline connection problems, preventing normal delivery. Mobile concrete placing booms, with their flexibility, efficiency, and adaptability, significantly improve construction quality and efficiency, becoming indispensable equipment in modern construction projects. However, pipe blockages during concrete pumping directly impact construction progress and project quality, necessitating timely intervention. However, due to the high placement height (typically 3-6m) and large placement radius (typically 10-20m) of mobile concrete placing booms, direct standing at the pouring location is insufficient. Therefore, providing a mobile platform to facilitate handling blockages in the mobile concrete placing boom's delivery pipeline is essential. Utility Model Content
[0003] One of the objectives of this utility model is, at least, to provide a concrete pipe blockage treatment platform to overcome the problems existing in the prior art. This platform not only solves the problem of being unable to handle pipe blockages by standing directly at the construction site of the layer to be poured, but also solves the problem of tipping over due to uneven construction sites.
[0004] To achieve the above objectives, the technical solution adopted by this utility model includes the following aspects.
[0005] A concrete pipe blockage treatment platform includes an operating platform, a support system, a protective system, and a ladder. The operating platform has an overall L-shaped cross-section and includes a horizontal frame and a platform plate set on top of the horizontal frame. The support system is set at the bottom of the horizontal frame and includes outriggers, fixed connection components, and adjustable reinforcing support components. The protective system is set on top of the platform plate, and the ladder is set at the opening of the operating platform.
[0006] As a preferred embodiment of this utility model, the platform plate is dimensionally matched with the horizontal frame. The horizontal frame includes an outer frame and reinforcing rods disposed within the outer frame. The outer frame includes horizontal rod 1, horizontal rod 2, and horizontal rod 3 arranged side by side from top to bottom, and vertical rod 1, vertical rod 3, and vertical rod 2 arranged side by side from left to right. Horizontal rod 1 and horizontal rod 2 are disposed between vertical rod 1 and vertical rod 2, and horizontal rod 3 is disposed between vertical rod 3 and vertical rod 2. The reinforcing rods include reinforcing horizontal rod 1, reinforcing horizontal rod 2, and reinforcing vertical rods. Multiple reinforcing horizontal rods 1 are arranged side by side horizontally between horizontal rod 1 and horizontal rod 2. Multiple sets of reinforcing vertical rod assemblies are arranged side by side vertically between horizontal rod 1 and horizontal rod 2. Each set of reinforcing vertical rod assemblies includes multiple coaxial reinforcing vertical rods. Reinforcing horizontal rod 2 is disposed between vertical rod 2 and vertical rod 3.
[0007] As a preferred embodiment of this utility model, the cross-section of the support leg is rectangular. The first and second support legs are respectively disposed at the second end and the first end of the first longitudinal rod. The third support leg is disposed at the first end of the second longitudinal rod. The fourth support leg is disposed at the bottom of the second longitudinal rod and is located at the connection between the second cross rod and the second longitudinal rod. A strip-shaped hole is provided along the length direction of the support leg, and the strip-shaped hole is close to the second end of the support leg.
[0008] As a preferred embodiment of this utility model, the fixed connection assembly includes a connecting rod and a diagonal brace. The connecting rod is disposed on the lower part of the outrigger and includes a connecting horizontal bar and a connecting vertical bar. Two connecting horizontal bars arranged side by side vertically form a group, and the two groups are arranged opposite each other front to back and located between two adjacent outriggers. Two connecting vertical bars arranged side by side vertically form a group, and the two groups are arranged opposite each other left to right and located between two adjacent outriggers. The diagonal brace is disposed on the upper part of the outrigger and above the connecting rod. The diagonal brace includes a first diagonal brace and two groups of second diagonal braces arranged opposite each other. The first diagonal brace is disposed between the second and third outriggers and includes a first long diagonal brace and a first short diagonal brace arranged diagonally. The two groups of second diagonal braces are respectively disposed between the first and second outriggers and between the third and fourth outriggers. The second diagonal brace includes a second long diagonal brace and a second short diagonal brace arranged diagonally.
[0009] As a preferred embodiment of this utility model, the reinforcing support assembly is disposed on the lower part of the outrigger and located on the side of the outrigger where no fixed connection assembly is provided. The reinforcing support assembly includes an outrigger support rod and a movable fixed rod. The movable fixed rod is rotatably connected to the outrigger support rod via a connector. The connector is near the first end of the movable fixed rod and also near or located in the middle of the outrigger support rod. The movable fixed rod and the outrigger support rod are provided with connecting holes for installing the connector. The outrigger support rod and the outrigger are rotatably connected via a hinge bolt. The hinge bolt is near the first end of the outrigger support rod and also located above the first slot. The outrigger support rod and the outrigger are provided with bolt holes for installing the hinge bolt. A fixing hole is provided near the second end of the movable fixed rod. The fixing member passes through the fixing hole and the first slot to detachably connect the movable fixed rod and the outrigger.
[0010] As a preferred embodiment of this utility model, when the disposal platform is not in use, the outrigger support rod and the movable fixing rod are placed by damping retraction and are flush with the outrigger.
[0011] As a preferred embodiment of this utility model, a second strip-shaped hole is provided along the length direction of the support rod. The hinge bolt passes through the second strip-shaped hole and the bolt hole of the support rod to rotatably connect the support rod and the support leg. The design of the second strip-shaped hole makes the connection position between the support rod and the support leg adjustable.
[0012] As a preferred embodiment of this utility model, the reinforcing support assembly is set on three or four of the support legs, and all support leg struts are individually fixed by adjusting the strip hole two or directly by rotating, or a combination of the two fixing methods are adopted.
[0013] As a preferred embodiment of this utility model, the protective system is arranged along the edge of the platform board and leaves an open area for ascending to the platform board via an escalator. The protective system includes protective vertical bars, protective horizontal bars, and reinforcement bars. The protective vertical bars are vertically arranged on the platform board, the protective horizontal bars are arranged on the top of the protective vertical bars, and multiple sets of reinforcement bars are arranged side by side along the length of the protective vertical bars between the protective horizontal bars and the platform board.
[0014] As a preferred embodiment of the present invention, the escalator includes steps, and a first escalator assembly and a second escalator assembly disposed on both sides of the steps. The first escalator assembly includes a first step frame, and a first handrail and a first guardrail disposed side by side with the first step frame. The second escalator assembly includes a second step frame, and a second handrail and a second guardrail disposed side by side with the second step frame. It also includes a fixing rod for fixing the second handrail and the second guardrail. The two ends of the plurality of steps are respectively fixedly connected to the first step frame and the second step frame.
[0015] In summary, by adopting the above technical solution, this utility model has at least the following beneficial effects: This processing platform solves the problem of blocked delivery pipes that cannot be handled by standing directly at the construction site of the layer to be poured by raising the operating platform. Its reinforced support component is an adjustable movable support structure, supported by outriggers and reinforced by movable fixing rods. The rotatable design of the outriggers solves the problem of platform instability and potential tipping when a wooden block or square tube is placed under a particular outrigger on an uneven construction site. The design of the second slot in the outriggers solves the problem of the outriggers not being able to rotate for fixing when there are many obstacles on the construction site. The fixing position of the outriggers and outriggers can be adjusted through the second slot, so that the outriggers can be fixed around obstacles. Attached Figure Description
[0016] Figure 1 This is a structural schematic diagram of a concrete pipe blockage treatment platform according to an exemplary embodiment of this utility model.
[0017] Figure 2 This is a structural schematic diagram from a second perspective of an exemplary embodiment of the concrete pipe blockage treatment platform of this utility model.
[0018] Figure 3 This is a third-view structural schematic diagram of the concrete pipe blockage treatment platform of an exemplary embodiment of this utility model.
[0019] Figure 4 yes Figure 3 AA sectional view.
[0020] Figure 5 yes Figure 3 BB cross-sectional view.
[0021] Figure 6 yes Figure 3 CC section view.
[0022] Figure 7 This is a schematic diagram of the operating platform.
[0023] Figure 8 This is another structural diagram of the reinforced support components.
[0024] In the diagram, the labels are: 1-Operating platform, 111-Horizontal frame, 101-Horizontal bar one, 102-Horizontal bar two, 103-Horizontal bar three, 104-Vertical bar one, 105-Vertical bar two, 106-Vertical bar three, 107-Reinforcing horizontal bar one, 108-Reinforcing horizontal bar two, 109-Reinforcing vertical bar, 112-Platform plate, 2-Support system, 21-Outrigger, 211-Strip hole one, 22-Fixed connection assembly, 221-Connecting horizontal bar, 222-Connecting vertical bar, 223-First long diagonal brace, 224-First short diagonal brace, 225-Second long diagonal brace, 226-Second short diagonal brace, 23-Reinforcing support assembly, 231-Outrigger support rod, 232-Modible fixed rod, 2 33-Connector, 234-Hinged Bolt, 235-Fixed Component, 236-Strip Hole II, 3-Protective System, 31-Protective Vertical Bar, 32-Protective Horizontal Bar, 321-Protective Horizontal Bar I, 322-Protective Horizontal Bar II, 323-Protective Horizontal Bar III, 324-Protective Horizontal Bar IV, 325-Protective Horizontal Bar V, 33-Reinforcement Bar, 331-Reinforcement Bar I, 332-Reinforcement Bar II, 333-Reinforcement Bar III, 334-Reinforcement Bar IV, 335-Reinforcement Bar V, 4-Escalator, 41-Step, 42-First Step Frame, 43-First Handrail, 44-First Guardrail, 45-Second Step Frame, 46-Second Handrail, 47-Second Guardrail, 48-Fixing Bar. Detailed Implementation
[0025] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments, so that the purpose, technical solution and advantages of the present invention will be clearer. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0026] In the description of this utility model, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the accompanying drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances. Example
[0027] This embodiment illustrates the structural form of a concrete pipe blockage treatment platform, for reference... Figures 1-6 The concrete blockage treatment platform includes an operating platform 1, a support system 2, a protection system 3, and a ladder 4. The operating platform 1 has an overall L-shaped cross-section. The support system 2 and the protection system 3 are respectively located at the bottom and top of the operating platform 1, and the ladder 4 is located at the opening of the operating platform 1.
[0028] reference Figure 7The operating platform 1 includes a horizontal frame 111 and a platform plate 112. The platform plate 112 is sized to match the horizontal frame 111 and is located on top of the horizontal frame 111. The horizontal frame 111 includes an outer frame and reinforcing bars disposed within the outer frame. The outer frame includes three horizontal bars 101, 102, and 103 arranged side by side from top to bottom, and three vertical bars 104, 106, and 107 arranged side by side from left to right. 105. The lengths of crossbar 101 and crossbar 202 are equal and greater than the length of crossbar 303. The length of vertical bar 104 is less than the length of vertical bar 205 but greater than the length of vertical bar 306. Crossbar 101 and crossbar 202 are positioned between vertical bar 104 and vertical bar 205. The first end of crossbar 101 is fixedly connected to the first end of vertical bar 104, and the first end of crossbar 202 is fixedly connected to the second end of vertical bar 104. Vertical bar 104... The first and second ends of the crossbar 101 are opposite each other. The second end of the crossbar 101 is fixedly connected to the first end of the vertical bar 105. The first and second ends of the crossbar 101 are opposite each other. The second end of the crossbar 102 is fixedly connected to the vertical bar 105 and is close to the second end of the vertical bar 105. The first and second ends of the crossbar 102 are opposite each other. The first and second ends of the vertical bar 105 are opposite each other. The crossbar 103 is disposed between the vertical bar 106 and the vertical bar 105. The first end of the crossbar 103 is fixedly connected to the first end of the vertical bar 106, and an L-shaped slot for installing the escalator 4 is formed at the connection. The second end of the crossbar 103 is fixedly connected to the second end of the vertical bar 105. The first end and the second end of the crossbar 103 are opposite to each other. The second end of the vertical bar 106 is fixedly connected to the crossbar 102 and is close to the second end of the crossbar 102 (the distance between the crossbar 102 and the second end is, for example, 50-60cm). The first end and the second end of the vertical bar 106 are opposite to each other.The reinforcing rod includes a first reinforcing crossbar 107, a second reinforcing crossbar 108, and a second reinforcing longitudinal bar 109. Multiple first reinforcing crossbars 107 are arranged horizontally side-by-side between first reinforcing crossbar 101 and second reinforcing crossbar 102. The two ends of each first reinforcing crossbar 107 are fixedly connected to first reinforcing crossbar 104 and second reinforcing crossbar 105, respectively. Multiple sets of second reinforcing longitudinal bar assemblies are arranged vertically side-by-side between first reinforcing crossbar 101 and second reinforcing crossbar 102. Each set of second reinforcing longitudinal bar assemblies consists of multiple coaxial second reinforcing longitudinal bars 109. These second reinforcing longitudinal bars 109 are located between two adjacent first reinforcing crossbars 107, between a first reinforcing crossbar 107 near first reinforcing crossbar 101 and a second reinforcing crossbar 107 near second reinforcing crossbar 102. The second reinforcing longitudinal bar 109 is located between two adjacent second reinforcing crossbars. When the reinforcing longitudinal bar 109 is between the first and second reinforcing crossbars 107, both ends of the reinforcing longitudinal bar 109 are fixedly connected to the two adjacent reinforcing crossbars 107 and 101, respectively. When the reinforcing longitudinal bar 109 is between the first and second reinforcing crossbars 107 and 101, respectively, both ends of the reinforcing longitudinal bar 109 are fixedly connected to the first and second reinforcing crossbars 107 and 101, respectively. When the reinforcing longitudinal bar 109 is between the first and second reinforcing crossbars 107 and 102, respectively, both ends of the reinforcing longitudinal bar 109 are fixedly connected to the first and second reinforcing crossbars 107 and 102, respectively. The second reinforcing crossbar 108 is disposed between the second and third longitudinal bars 105 and 106, and both ends of the second reinforcing crossbar 108 are fixedly connected to the second and third longitudinal bars 105 and 106, respectively.
[0029] The support system 2 is located at the bottom of the horizontal frame 111 of the operating platform 1. The support system 2 includes four support legs 21, a fixed connection assembly 22, and a reinforcing support assembly 23 (see reference). Figure 1 The support leg 21 has a rectangular cross-section. The first and second support legs 21 are respectively located at the second and first ends of the first longitudinal rod 104. The first ends of the first and second support legs 21 are fixedly connected to the bottom of the second and first ends of the first longitudinal rod 104, respectively. The third support leg 21 is located at the first end of the second longitudinal rod 105. The first end of the third support leg 21 is fixedly connected to the bottom of the first end of the second longitudinal rod 105. The fourth support leg 21 is located at the bottom of the second longitudinal rod 105 and at the connection between the second cross rod 102 and the second longitudinal rod 105. The first end of the fourth support leg 21 is fixedly connected to the bottom of the second longitudinal rod 105. A strip hole 211 is provided along the length of the support leg 21. The strip hole 211 is close to the second end of the support leg 21, and the first and second ends of the support leg 21 are opposite to each other.
[0030] The fixed connection assembly 22 includes a connecting rod and a diagonal brace. The connecting rod is located on the lower part of the support leg 21 and includes a connecting crossbar 221 and a connecting longitudinal bar 222 (see reference). Figure 1 and Figure 2 The two connecting crossbars 221 arranged side by side form a group, and the two groups are front and back ( Figure 1 The connecting crossbars 221 are arranged opposite each other in the front-back direction, and both ends of each connecting crossbar 221 are fixedly connected to the sides of the two adjacent legs 21 that are close to each other; two connecting longitudinal bars 222 arranged side by side form a group, and two groups are arranged left and right ( Figure 2 The connecting rods 222 are arranged facing each other in the left-right direction. Both ends of each connecting rod 222 are fixedly connected to the adjacent sides of two supporting legs 21. The connecting crossbar 221 and connecting rod 222 connected to the same supporting leg 21 are located on adjacent sides of the supporting leg 21. The diagonal bracing is arranged on the upper part of the supporting leg 21 and above the connecting rod. The diagonal bracing includes a set of first diagonal bracing and two sets of opposing second diagonal bracing (see reference). Figure 2 , Figure 4 and Figure 5The first diagonal brace is disposed between the second and third support legs 21. The first diagonal brace includes a first long diagonal brace 223 and a first short diagonal brace 224 arranged diagonally across each other. The two ends of the first long diagonal brace 223 are fixedly connected to the sides of the second and third support legs 21 that are close to each other. The first end of the first long diagonal brace 223 is close to the first end of the third support leg 21, and the second end of the first long diagonal brace 223 is close to the connection between the second support leg 21 and the connecting crossbar 221. The first and second ends of the first long diagonal brace 223 are opposite to each other. The first short diagonal brace 224 is disposed opposite to the first long diagonal brace 223 and located in the middle of the first long diagonal brace 223. The first ends of the two first short diagonal braces 224 are fixedly connected to the first long diagonal brace 223, and the second ends of the two first short diagonal braces 224 are far apart from each other and are fixedly connected to the sides of the second and third support legs 21 that are close to each other. The second end of one of the first short diagonal braces 224 is close to the connection part between the third support leg 21 and the connecting crossbar 221, and the second end of the other first short diagonal brace 224 is... Near the first end of the second support leg 21; two sets of the second diagonal braces are respectively disposed between the first and second support legs 21, and between the third and fourth support legs 21. The second diagonal brace includes a second long diagonal brace 225 and a second short diagonal brace 226 arranged diagonally. The two ends of the second long diagonal brace 225 are respectively fixedly connected to the sides of the two support legs 21 that are close to each other. The first end of the second long diagonal brace 225 is close to the first end of one support leg 21, and the second end of the second long diagonal brace 225 is close to the other support leg 21 and the connecting longitudinal rod. At the connection of 222, the first and second ends of the second long diagonal brace 225 are opposite to each other, and two second short diagonal braces 226 are arranged opposite to each other on the second long diagonal brace 225 and located in the middle of the second long diagonal brace 225. The second ends of the two second short diagonal braces 226 are far apart from each other and are fixedly connected to the side of the two legs 21 that are close to each other. The second end of one of the second short diagonal braces 226 is close to the connection between one leg 21 and the connecting rod 222, and the second end of the other second short diagonal brace 226 is close to the first end of the other leg 21.
[0031] The reinforcing support component 23 is disposed on the lower part of the support leg 21 (the reinforcing support component 23 can be disposed on any of the four support legs 21, or on three of the support legs 21; to avoid affecting access to the operating platform 1 via the escalator 4, it is preferred to dispose of the reinforcing support component 23 on the second, third, and fourth support legs 21), and is located on the side of the support leg 21 where the fixed connection component 22 is not disposed, for reference. Figure 1The reinforcing support assembly 23 includes a leg support rod 231 and a movable fixing rod 232. The movable fixing rod 232 is rotatably connected to the leg support rod 231 via a connector 233. The connector 233 is near the first end of the movable fixing rod 232 and also near or located near the middle of the leg support rod 231. The movable fixing rod 232 and the leg support rod 231 have connecting holes for installing the connector 233. The leg support rod 231 and the leg 21 are rotatably connected via a hinge bolt 234. The hinge bolt 234 is near the first end of the leg support rod 231 and also located above the strip hole 211. The leg support rod 231 and the leg 21 have bolt holes for installing the hinge bolt 234. The movable fixing rod 232 also has a fixing hole near the second end of the movable fixing rod 232. The first end of the movable fixing rod 232 and... The movable fixing rod 232 and the support leg 21 are detachably connected by a fixing member 235. The fixing member 235 passes through a fixing hole and a slotted hole 221, connecting the movable fixing rod 232 and the support leg 21. The design of the slotted hole 211 allows the connection position between the movable fixing rod 232 and the support leg 21 to be adjustable with the rotation angle of the support leg rod 231, thereby allowing the second end of the support leg rod 231 to be fixed. The reinforcing support component 23 is used to prevent the platform from becoming unstable and tipping over when a support leg 21 is supported by wooden blocks or square tubes on an uneven construction site. When the platform is not in use, the support leg rod 231 and the movable fixing rod 232 are placed by damping and retracting, and are flush with the support leg 21. As a preferred embodiment, a slotted hole 236 (see reference) is provided along the length of the support leg rod 231. Figure 8 The hinge bolt 234 passes through the second slot 236 and the bolt hole of the support leg 21 to rotatably connect the support rod 231 and the support leg 21. The design of the second slot 236 makes the connection position between the support rod 231 and the support leg 21 adjustable. There are usually many obstacles (such as structural steel bars) on the construction site. When the support rod 231 cannot be rotated for fixation, the position of the hinge bolt 234 installed on the support rod 231 can be adjusted through the second slot 236, so that the support rod 231 can be fixed to avoid obstacles. Alternatively, a combination of two fixing methods can be adopted (that is, part of the support rod 231 is fixed by adjusting the second slot 236, and the remaining support rod 231 is fixed by rotation).
[0032] The protective system 3 is installed on the top of the platform plate 112 of the operating platform 1. The protective system 3 is arranged along the edge of the platform plate 112 and leaves an open area for access to the platform plate 112 via the ladder 4. This open area is arranged at the vertical bar 106 of the horizontal frame 111 and at the connection between the vertical bar 106 and the horizontal bar 102. The protective system 3 includes protective vertical bars 31, protective horizontal bars 32, and reinforcement bars 33. Seven protective vertical bars 31 are vertically arranged on the platform plate 112 (in addition to the seven that are fixedly required, the number of protective vertical bars 31 can be increased according to the size of the platform plate 112). The first end of the protective vertical bar 31 is fixedly connected to the platform plate 112, and the second end of the protective vertical bar 31 is away from the platform plate 112. Extending in the direction of the vertical rods, the first and second ends of the protective vertical rods 31 are opposite each other. The first four protective vertical rods 31 are respectively positioned above the four support legs 21 in a clockwise direction (the first, second, third, and fourth protective vertical rods 31 are respectively located above the first, second, third, and fourth support legs 21). The fifth, sixth, and seventh protective vertical rods 31 are respectively positioned above the second end of the second vertical rod 105 and the first end of the third vertical rod 106, and above the second horizontal rod 102 and close to the second end of the second horizontal rod 102 (the distance from the second end of the second horizontal rod 102 is, for example, 60-70cm). The protective horizontal rod 32 is positioned on top of the protective vertical rods 31. The protective horizontal rod 32 includes a protective horizontal rod 321 and a protective horizontal rod 322. Protective crossbars 322, 323, 324, and 325 are defined as follows: The first end of protective crossbar 321 is fixedly connected to the second end of the seventh protective vertical bar 31; the second end of protective crossbar 321 is fixedly connected to the second end of the first protective vertical bar 31; the first and second ends of protective crossbar 321 are opposite to each other. The first end of protective crossbar 322 is fixedly connected to the second end of protective crossbar 321; the second end of protective crossbar 322 is fixedly connected to the second end of the second protective vertical bar 31; the first and second ends of protective crossbar 322 are opposite to each other. The first end of protective crossbar 323 is fixedly connected to the second end of protective crossbar 322. The second end of the third protective vertical rod 31 is fixedly connected to the second end of the third protective vertical rod 31. The first end and the second end of the third protective horizontal rod 323 are opposite to each other. The first end of the fourth protective horizontal rod 324 is fixedly connected to the second end of the third protective horizontal rod 323. The second end of the fourth protective horizontal rod 324 is fixedly connected to the second end of the fifth protective vertical rod 31. The first end and the second end of the fourth protective horizontal rod 324 are opposite to each other. The fourth protective horizontal rod 324 is also fixedly connected to the second end of the fourth protective vertical rod 31. The first end of the fifth protective horizontal rod 325 is fixedly connected to the second end of the fourth protective horizontal rod 324. The second end of the fifth protective horizontal rod 325 is fixedly connected to the second end of the sixth protective vertical rod 31. The first end and the second end of the fifth protective horizontal rod 325 are opposite to each other.Multiple sets of the encryption rods 33 are arranged side-by-side along the length of the protective vertical rods 31 between the protective horizontal rods 32 and the platform plate 112, and are located outside the edge of the platform plate 112 (or possibly inside the edge of the platform plate 112). Each set of encryption rods 33 includes encryption rod one 331, encryption rod two 332, encryption rod three 333, encryption rod four 334, and encryption rod five 335. The two ends of encryption rod one 331 are fixedly connected to the seventh and first protective vertical rods 31, respectively. The two ends of encryption rod two 332 are fixedly connected to the first and seventh protective vertical rods 31, respectively. The two ends of encryption rod three 333 are fixedly connected to the second and third protective vertical rods 31, respectively. The two ends of encryption rod four 334 are fixedly connected to the third and fifth protective vertical rods 31, respectively, and are also fixedly connected to the fourth protective vertical rod 31. The two ends of encryption rod five 335 are fixedly connected to the fifth and sixth protective vertical rods 31, respectively.
[0033] The escalator 4 includes steps 41, and a first escalator assembly and a second escalator assembly disposed on both sides of the steps 41. The first escalator assembly includes a first step frame 42, a first handrail 43, and a first guardrail 44 (see reference). Figure 6 The second escalator assembly includes a second step frame 45, a second handrail 46, a second guardrail 47, and a fixing rod 48 (see reference). Figure 1Multiple steps 41 are arranged side-by-side along the length of the first step frame 42. The two ends of each step 41 are fixedly connected to the first step frame 42 and the second step frame 45 arranged side-by-side. The first step frame 42 is divided into three sections. One end of the first section is fixedly connected to the bottom of the second crossbar 102 and located at the connection between the second crossbar 102 and the third vertical bar 106. The other end of the first section is fixedly connected to the top of the connecting crossbar 221 near the second crossbar 102. One end of the second section is fixedly connected to the bottom of the connecting crossbar 221 near the second crossbar 102. The other end of the second section is fixedly connected to the top of the connecting crossbar 221 away from the second crossbar 102. The two ends of the third section are... The first handrail 43 and the first guardrail 44 are arranged side by side with the first step frame 42, and the first guardrail 44 is located between the first handrail 43 and the first step frame 42. The first end of the first handrail 43 is fixedly connected to the bottom of the second step frame 2 and close to the first end of the second step frame 102. The second end of the first handrail 43 is fixedly connected to the side of the first support leg 21 near the fourth support leg 21 and is located above the connecting step 221 near the second step frame 102. Alternatively, the second end of the first handrail 43 is fixedly connected to the connecting step 221 near the second step frame 102. The top of 221 is fixedly connected, the first end and the second end of the first handrail 43 are opposite to each other, the first end of the first guardrail 44 is fixedly connected to the bottom of the second crossbar 2, and the second end of the first guardrail 44 is fixedly connected to the top of the connecting crossbar 221 near the second crossbar 102, with the first end and the second end of the first guardrail 44 opposite to each other; the first end of the second step frame 45 is located at the L-shaped groove formed by the connection of the third vertical bar 106 and the third crossbar 103, and is fixedly connected to the third vertical bar 106 and the third crossbar 103, the second end of the second step frame 45 extends towards the first support leg 21, with the first end and the second end of the second step frame 45 opposite to each other, and the fixed rod 48 is vertically arranged. The bottom of the fixed rod 48 is fixedly connected to the second step frame 45 and is close to the second end of the second step frame 45. The first end of the second handrail 46 is fixedly connected to the second end of the sixth protective vertical rod 31. The second end of the second handrail 46 is fixedly connected to the top of the fixed rod 48. The first end and the second end of the second handrail 46 are opposite each other. The second guardrail 47 is located between the second step frame 45 and the second handrail 46. The first end of the second guardrail 47 is fixedly connected to the sixth protective vertical rod 31 and is close to or located in the middle of the sixth protective vertical rod 31. The second end of the second guardrail 47 is fixedly connected to the fixed rod 48 and is close to or located in the middle of the fixed rod 48.
[0034] The above description is merely a detailed illustration of specific embodiments of this utility model, and not a limitation thereof. Various substitutions, modifications, and improvements made by those skilled in the art without departing from the principles and scope of this utility model should be included within the protection scope of this utility model.
Claims
1. A concrete pipe plugging treatment platform, characterized in that, include: The operating platform (1), support system (2), protection system (3), and escalator (4) are provided. The cross-section of the operating platform (1) is L-shaped. The operating platform (1) includes a horizontal frame (111) and a platform plate (112) set on the top of the horizontal frame (111). The support system (2) is set at the bottom of the horizontal frame (111). The support system (2) includes a support leg (21), a fixed connection component (22), and an adjustable reinforcing support component (23). The protection system (3) is set on the top of the platform plate (112). The escalator (4) is set at the opening of the operating platform (1).
2. The concrete pipe plugging platform of claim 1, wherein, The platform plate (112) is sized to match the horizontal frame (111). The horizontal frame (111) includes an outer frame and reinforcing bars disposed within the outer frame. The outer frame includes horizontal bars one (101), horizontal bars two (102), and horizontal bars three (103) arranged side by side from top to bottom, and vertical bars one (104), vertical bars three (106), and vertical bars two (105) arranged side by side from left to right. Horizontal bars one (101) and horizontal bars two (102) are disposed between vertical bars one (104) and vertical bars two (105), and horizontal bars three (103) are disposed between vertical bars one (104) and vertical bars two (105). Between the third longitudinal bar (106) and the second longitudinal bar (105); the reinforcing bar includes a first reinforcing crossbar (107), a second reinforcing crossbar (108) and a third reinforcing longitudinal bar (109). Multiple first reinforcing crossbars (107) are arranged horizontally side by side between first crossbar (101) and second crossbar (102). Multiple sets of reinforcing longitudinal bar assemblies are arranged vertically side by side between first crossbar (101) and second crossbar (102). Each set of reinforcing longitudinal bar assemblies includes multiple coaxial reinforcing longitudinal bars (109). The second reinforcing crossbar (108) is arranged between the second longitudinal bar (105) and the third longitudinal bar (106).
3. The concrete pipe plugging platform of claim 2, wherein, The cross section of the support leg (21) is rectangular. The first and second support legs (21) are respectively located at the second end and the first end of the first longitudinal rod (104). The third support leg (21) is located at the first end of the second longitudinal rod (105). The fourth support leg (21) is located at the bottom of the second longitudinal rod (105) and at the connection between the second horizontal rod (102) and the second longitudinal rod (105). A strip hole (211) is provided along the length direction of the support leg (21). The strip hole (211) is close to the second end of the support leg (21).
4. The concrete pipe blockage treatment platform according to claim 3, characterized in that, The fixed connection assembly (22) includes a connecting rod and a diagonal brace. The connecting rod is located on the lower part of the support leg (21). The connecting rod includes a connecting horizontal bar (221) and a connecting vertical bar (222). Two connecting horizontal bars (221) arranged side by side form a group, and the two groups are arranged opposite each other and located between two adjacent support legs (21). Two connecting vertical bars (222) arranged side by side form a group, and the two groups are arranged opposite each other and located between two adjacent support legs (21). The diagonal brace is located on the upper part of the support leg (21) and located on the connecting vertical bar (222). Above the connecting rod, the diagonal bracing rod includes a set of first diagonal bracing rods and two sets of second diagonal bracing rods arranged opposite each other. The first diagonal bracing rods are arranged between the second and third legs (21). The first diagonal bracing rods include a first long diagonal brace (223) and a first short diagonal brace (224) arranged diagonally. The two sets of second diagonal bracing rods are respectively arranged between the first and second legs (21) and between the third and fourth legs (21). The second diagonal bracing rods include a second long diagonal brace (225) and a second short diagonal brace (226) arranged diagonally.
5. The concrete pipe plugging platform of claim 4, wherein, The reinforcing support assembly (23) is located on the lower part of the outrigger (21) and on the side of the outrigger (21) where the fixed connection assembly (22) is not provided. The reinforcing support assembly (23) includes an outrigger support rod (231) and a movable fixing rod (232). The movable fixing rod (232) is rotatably connected to the outrigger support rod (231) through a connector (233). The connector (233) is close to the first end of the movable fixing rod (232) and also close to or located in the middle of the outrigger support rod (231). The movable fixing rod (232) and the outrigger support rod (231) are provided with mounting brackets for installation. The connecting hole of the connecting piece (233) is provided. The support rod (231) and the support leg (21) are rotatably connected by the hinge bolt (234). The hinge bolt (234) is located near the first end of the support rod (231) and above the first strip hole (211). The support rod (231) and the support leg (21) are provided with bolt holes for installing the hinge bolt (234). A fixing hole is provided near the second end of the movable fixing rod (232). The fixing piece (235) passes through the fixing hole and the first strip hole (211) to detachably connect the movable fixing rod (232) and the support leg (21).
6. The concrete pipe plugging platform of claim 5, wherein, When the disposal platform is not in use, the outrigger struts (231) and movable fixed rods (232) are placed by damping retraction and are flush with the outriggers (21).
7. The concrete pipe plugging platform of claim 5, wherein, A strip-shaped hole (236) is provided along the length of the support rod (231). The hinge bolt (234) passes through the strip-shaped hole (236) and the bolt hole of the support leg (21) to rotatably connect the support rod (231) and the support leg (21). The design of the strip-shaped hole (236) makes the connection position between the support rod (231) and the support leg (21) adjustable.
8. The concrete pipe plugging platform of claim 7, wherein, The reinforcing support component (23) is set on the four or three of the legs (21). All the leg struts (231) are individually fixed by adjusting the strip hole two (236) or directly by rotating, or by a combination of the two fixing methods.
9. The concrete pipe plugging platform of claim 1, wherein, The protective system (3) is set up along the edge of the platform plate (112) and an open area is provided for ascending to the platform plate (112) via the escalator (4). The protective system (3) includes a protective vertical bar (31), a protective horizontal bar (32) and a reinforcement bar (33). The protective vertical bar (31) is set vertically on the platform plate (112), the protective horizontal bar (32) is set on the top of the protective vertical bar (31), and multiple sets of the reinforcement bars (33) are arranged side by side along the length of the protective vertical bar (31) between the protective horizontal bar (32) and the platform plate (112).
10. The concrete pipe plugging platform of claim 1, wherein, The escalator (4) includes steps (41), and a first escalator assembly and a second escalator assembly disposed on both sides of the steps (41). The first escalator assembly includes a first step frame (42), and a first handrail (43) and a first guardrail (44) disposed side by side with the first step frame (42). The second escalator assembly includes a second step frame (45), and a second handrail (46) and a second guardrail (47) disposed side by side with the second step frame (45). It also includes a fixing rod (48) for fixing the second handrail (46) and the second guardrail (47). The two ends of the multiple steps (41) are respectively fixedly connected to the first step frame (42) and the second step frame (45).