Inclined retaining wall structure

By using a combination of support rods and limiting components in the inclined retaining wall structure, the problem of formwork displacement under concrete impact was solved, ensuring the support effect and structural stability of the retaining wall.

CN223853383UActive Publication Date: 2026-01-30QINHUANGDAO ROAD&BRIDGE CONSTRUCT DEV CO LTD +1
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Patent Information

Application Number
CN202520431915.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2026-01-30
Estimated Expiration
2035-03-12

AI Technical Summary

Technical Problem

The existing inclined retaining wall structure's support formwork is prone to outward displacement under the impact of concrete, resulting in changes in the formwork support angle and affecting the retaining wall's support effect.

Method used

The system employs a combination structure of bottom formwork, support rods, support seats, and limiting components. The stability of the bottom formwork is ensured by the contact between the support seats and support rods and the limiting effect of the limiting components, preventing it from shifting under the impact of concrete.

Benefits of technology

Effectively maintain the stability of the inclination angle and thickness of the bottom formwork to ensure that the structural integrity and support effect of the formed retaining wall meet the preset standards.

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Abstract

The utility model provides an inclined retaining wall structure, which belongs to the technical field of retaining structures for constructional engineering and comprises a bottom template, a support retaining rod, a support retaining seat and two groups of limiting components. One end of the bottom formwork abuts against the interior of a wall toe of a slope body, and the other end of the bottom formwork obliquely extends upwards. A first transverse support group for horizontally supporting is arranged between the top of the bottom template and the slope body; a first pouring area is defined by the bottom formwork, the wall toe, the first cross brace set and the slope body. The supporting stop lever is fixed to the side, away from the slope body, of the bottom formwork and extends in the length direction of the slope body. The supporting baffle seat is fixed on a wall toe; one side of the supporting stop seat extends towards the bottom template and abuts against the supporting stop rod. The two limiting assemblies are arranged at the two ends of the supporting stop lever correspondingly and connected with the supporting stop base. The limiting assembly is used for stopping inclination angle deviation of the bottom formwork. According to the inclined retaining wall structure, the lower end of the bottom formwork can be prevented from moving outwards, the supporting angle of the bottom formwork is prevented from changing, and the supporting effect of the retaining wall is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to retaining structure technical field for building engineering more specifically, it is related to a kind of inclined retaining wall structure. BACKGROUND

[0002] Retaining wall refers to the supporting embankment or the soil body of hillside, prevents the structural object of deformation instability of embankment or soil body. With inclined retaining wall structure, wall body is increased, section is increased, this structure is generally applied to the shoulder wall or embankment wall at wall toe relatively flat ground.

[0003] In prior art, bottom support retaining seat is often arranged at wall toe, and retaining seat is abutted on formwork bottom, but in the process of continuously pouring concrete, formwork bottom can slide outward or sink due to the weight and flow impact force of concrete, which leads to the change of formwork inclination angle, and further affects the thickness of upper pouring area, thereby affecting the support effect of actual retaining wall. UTILITY MODEL CONTENTS

[0004] The utility model aims at providing a kind of inclined retaining wall structure, to solve the technical problem that the lower end of the support formwork of the existing inclined retaining wall structure is easy to move outward under the impact of concrete, which leads to the change of formwork support angle and affects the support effect of actual retaining wall.

[0005] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of providing a kind of inclined retaining wall structure, comprising:

[0006] Bottom formwork, one end is used for abutting in the wall toe of slope body, and the other end is arranged and extended along the slope body and inclined upward;Horizontal support first cross brace group is arranged between the top of bottom formwork and the slope body;First pouring area is surrounded by bottom formwork, wall toe, first cross brace group and slope body;

[0007] Support retaining rod, fixed on the side of bottom formwork away from slope body, and horizontally extended along the length direction of slope body;

[0008] Support retaining seat, fixed on wall toe;One side of support retaining seat extends to bottom formwork, and abuts on support retaining rod;And

[0009] Two groups of limiting components are respectively arranged at both ends of support retaining rod, and are connected with support retaining seat;Limiting component is used for blocking the inclination deviation of bottom formwork.

[0010] In a possible implementation manner, the limiting component comprises:

[0011] First limiting disc, arranged at the end of support retaining rod, and first limiting part is arranged on the first limiting disc;

[0012] A second limiting disc is oppositely arranged with the first limiting disc and connected with the support stop seat; the second limiting disc is provided with a second limiting part corresponding to the first limiting part;

[0013] A fixing screw rod penetrates the second limiting disc along the radial direction of the support stop rod and is screwed in the first limiting disc.

[0014] In some embodiments, the first limiting part comprises a plurality of first limiting teeth arranged along the circumference of the first limiting disc, the second limiting part comprises a plurality of second limiting teeth arranged along the circumference of the second limiting disc, and the plurality of second limiting teeth correspondingly engage with the plurality of first limiting teeth.

[0015] Exemplarily, the limiting assembly further comprises:

[0016] A fixing plate is arranged on the side of the support stop seat facing the bottom mold plate and close to the first limiting disc;

[0017] A mounting seat is detachably connected on one side of the fixing plate and extends towards the first limiting disc on the other side; the second limiting disc is fixed on the mounting seat.

[0018] In a possible implementation, a plurality of mounting plates are arranged on the support stop rod at intervals, and the support stop rod is fixed on the bottom mold plate through the mounting plates.

[0019] In some embodiments, a plurality of limiting blocks are arranged on the side of the support stop seat facing the support stop rod at intervals, and the plurality of limiting blocks correspond one-to-one with the plurality of mounting plates, and the mounting plates abut against the corresponding limiting blocks.

[0020] Exemplarily, the side of the mounting plate away from the bottom mold plate is arc-shaped, the limiting block is provided with a limiting groove matched with the arc-shaped surface of the mounting plate, and the mounting plate abuts in the limiting groove.

[0021] In a possible implementation, a plurality of first fixing rods are arranged on the bottom mold plate at intervals along the axial direction of the support stop rod, and each first fixing rod penetrates the first pouring area along the vertical direction downward and extends into the wall toe.

[0022] In a possible implementation, the inverted-slope type retaining wall structure further comprises:

[0023] A second mold plate covers one end of the first pouring area and extends upward along the slope body at an inclination on the other end; a second horizontal support cross-brace group is arranged between the top of the second mold plate and the slope body; a second pouring area is enclosed between the second mold plate, the first pouring area, the second horizontal support cross-brace group, and the slope body.

[0024] a second fixed rod, which passes through the second pouring area in a direction perpendicular to the second formwork and extends into the first pouring area; and

[0025] a third fixed rod, which passes through the second pouring area in a vertical direction downward and extends into the slope body.

[0026] In some embodiments, the second formwork is further provided with a fourth fixed rod, which passes through the second pouring area in a vertical direction downward and extends into the first pouring area.

[0027] Compared with the prior art, the scheme shown in the embodiments of the present application can support the lower end of the bottom formwork by means of the support stop seat, maintain the support stability of the lower end of the bottom formwork, and avoid deviation, by making the support stop rod and the support stop seat abut against each other; and by arranging two sets of limiting components, the two ends of the support stop rod can be further limited by the support stop seat, so that the two ends of the support stop rod cannot rotate, and thus the lower end of the bottom formwork cannot rotate or deviate under the impact of pouring concrete, so as to ensure that the formed retaining wall meets the preset standards in terms of inclination and thickness, and thus the support effect of the retaining wall is improved. BRIEF DESCRIPTION OF DRAWINGS

[0028] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0029] Figure 1 Cross-sectional structure diagram of the inclined retaining wall structure provided by the embodiments of the present application Figure 1 ;

[0030] Figure 2 Cross-sectional structure diagram of the inclined retaining wall structure provided by the embodiments of the present application Figure 2 ;

[0031] Figure 3 Part of the three-dimensional structure diagram of the inclined retaining wall structure provided by the embodiments of the present application Figure 1

[0032] Figure 4 Structure diagram of the limiting component provided by the embodiments of the present application

[0033] Figure 5 Connection structure diagram of the limiting block and the mounting block used by the embodiments of the present application.

[0034] ​In the figure: 1, bottom template; 2, first cross support group; 3, wall toe; 4, slope body; 5, first pouring area; 6, support stop lever; 61, mounting plate; 7, support stop seat; 71, limiting block; 711, limiting groove; 8, limiting assembly; 81, first limiting disc; 811, first limiting tooth; 82, second limiting disc; 821, second limiting tooth; 83, fixed screw; 84, fixed plate; 85, mounting seat; 9, first fixed rod; 10, second template; 12, second fixed rod; 13, third fixed rod; 14, fourth fixed rod; 15, second cross support group; 16, second pouring area. DETAILED DESCRIPTION

[0035] In order to make the technical problems, technical solutions and beneficial effects of the utility model to be solved more clearly, the utility model is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.

[0036] It should be noted that when an element is referred to as "provided on" another element, it can be directly on the other element or indirectly on the other element. It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the utility model and simplify the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.

[0037] The terms "first", "second" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the utility model, the meaning of "several" is two or more than two, unless otherwise explicitly and specifically limited.

[0038] Please refer to Figures 1 to 5The utility model provides an inclined retaining wall structure, which comprises a bottom formwork, a supporting retaining rod, a supporting retaining seat and two sets of limiting assemblies.

[0039] It should be understood that, when pouring concrete, the force generated by the concrete on the bottom formwork 1 can cause the bottom formwork 1 to rotate around the end of the supporting retaining rod 6, thereby changing the inclination angle of the bottom formwork 1. In the present application, the two sets of limiting assemblies 8 connect the supporting retaining rod 6 and the supporting retaining seat 7, which can limit the two ends of the supporting retaining rod 6, so that the two ends of the supporting retaining rod 6 cannot rotate. For example, when the concrete applies a lateral force to one side of the bottom formwork 1, the supporting retaining rod 6 will not rotate due to the presence of the limiting assemblies 8, thereby preventing the lower end of the bottom formwork 1 from rotating or deviating, thereby ensuring the stability of the inclination angle of the bottom formwork 1. This is very important for ensuring the structural integrity of the retaining wall, because the stability of the inclination angle of the bottom formwork 1 can ensure that the shape and size of the first pouring area 5 meet the design requirements, thereby ensuring the supporting effect of the entire retaining wall.

[0040] For example, the supporting retaining rod 6 is welded to the side of the bottom formwork 1 away from the slope body 4, and the supporting retaining rod 6 is used to cooperate with the supporting retaining seat 7 to limit the lower end of the bottom formwork 1, thereby preventing the bottom formwork 1 from sliding outward or deviating.

[0041] For example, the supporting retaining seat 7 is provided with a mounting groove in the wall toe 3, the supporting retaining seat 7 extends into the mounting groove for limiting, and the depth of the mounting groove can be set according to actual needs.

[0042] Further, for retaining walls of different predetermined sizes and inclination angles, the inclination angle of the bottom formwork 1 will also be different, in order to ensure that the height of the supporting retaining seat 7 is adapted to the height of the supporting retaining rod 6, a pad can be filled in the mounting groove to adjust the height of the supporting retaining seat 7, thereby matching the height requirement of the supporting retaining rod 6.

[0043] Compared with the prior art, the inclined retaining wall structure has the advantages that the lower end of the bottom formwork 1 is supported by the support stop seat 7, the support stability of the lower end of the bottom formwork 1 is maintained, and deviation is avoided; and the two ends of the support stop rod 6 are limited by the support stop seat 7, so that the two ends of the support stop rod 6 cannot rotate, and thus, under the impact of pouring concrete, the lower end of the bottom formwork 1 cannot rotate or deviate, so that the formed retaining wall meets the preset standards in terms of the inclination and thickness, and the support effect of the retaining wall is improved.

[0044] Please refer to Figure 4 In some possible embodiments, the limiting component 8 comprises a first limiting disc 81, a second limiting disc 82 and a fixing screw rod 83; the first limiting disc 81 is arranged at the end of the support stop rod 6, and the first limiting disc 81 is provided with a first limiting part; the second limiting disc 82 is arranged opposite to the first limiting disc 81 and is connected with the support stop seat 7; the second limiting disc 82 is provided with a second limiting part corresponding to the first limiting part; and the fixing screw rod 83 passes through the second limiting disc 82 along the radial direction of the support stop rod 6 and is screwed in the first limiting disc 81.

[0045] Specifically, the first limiting disc 81 and the second limiting disc 82 are used to limit the position between the support stop rod 6 and the support stop seat 7, and the fixing screw rod 83 is used to clamp the second limiting disc 82 on the first limiting disc 81 after the corresponding limiting of the first limiting disc 81 and the second limiting disc 82, so as to fix the position of the support stop rod 6 and the support stop seat 7.

[0046] For example, the first limiting part is a protrusion arranged away from the support stop rod 6, the second limiting part is a groove matched with the protrusion, and the protrusion extends into the corresponding groove.

[0047] Optionally, the protrusion is arranged in a plurality of forms, and the plurality of protrusions can be arranged in an array on the first limiting disc 81 or be arranged at intervals around the axis of the first limiting disc 81.

[0048] Please refer to Figure 4 In some embodiments, the first limiting part comprises a plurality of first limiting teeth 811 arranged at intervals in the circumferential direction of the first limiting disc 81, the second limiting part comprises a plurality of second limiting teeth 821 arranged at intervals in the circumferential direction of the second limiting disc 82, and the plurality of second limiting teeth 821 are engaged with the plurality of first limiting teeth 811.

[0049] By arranging the first limiting part and the second limiting part as the first limiting teeth 811 and the second limiting teeth 821 engaged with each other, the connection force between the first limiting disc 81 and the second limiting disc 82 is uniform, and the connection stability between the first limiting disc 81 and the second limiting disc 82 is improved.

[0050] In addition, it should be noted that the second limiting disc 82 is provided with a through hole suitable for fixing the threaded rod 83, and the first limiting disc 81 is provided with a threaded hole for threadedly connecting with the threaded rod 83.

[0051] Referring to Figure 4 , for example, the limiting assembly 8 further comprises a fixing plate 84 and a mounting seat 85; the fixing plate 84 is arranged on the side of the support stopper 7 facing the bottom mold plate 1, and is arranged close to the first limiting disc 81; one side of the mounting seat 85 is detachably connected to the fixing plate 84, and the other side extends towards the first limiting disc 81; and the second limiting disc 82 is fixed on the mounting seat 85.

[0052] The fixing plate 84 is used for fixing on the side of the support stopper 7 facing the bottom mold plate 1, and the second limiting disc 82 is fixed on the mounting seat 85, and the connection between the second limiting disc 82 and the support stopper 7 is realized through the detachable connection between the mounting seat 85 and the fixing plate 84.

[0053] Specifically, the mounting seat 85 is a T-shaped seat, one side of the T-shaped seat is used for mutually abutting with the fixing plate 84 and is fixed through connecting bolts, and the other side of the T-shaped seat is used for arranging the second limiting disc 82 and is convenient for connecting with the first limiting disc 81.

[0054] Referring to Figure 3 In some possible embodiments, a plurality of mounting plates 61 are arranged on the support stopper 6 at intervals, and the support stopper 6 is fixed on the bottom mold plate 1 through the mounting plates 61.

[0055] It should be understood that when the cross section of the support stopper 6 is circular, if the support stopper 6 is welded on the bottom mold plate 1, in order to avoid the interference between the first limiting disc 81 and the bottom mold plate 1, the sizes of the first limiting disc 81 and the second limiting disc 82 arranged at the two ends of the support stopper 6 need to be smaller than the size of the support stopper 6; and through the arrangement of the mounting plates 61, the sizes of the first limiting disc 81 and the second limiting disc 82 can be appropriately increased, the supporting and limiting strength of the first limiting disc 81 and the second limiting disc 82 is improved, and meanwhile, the support stopper 6 can be conveniently fixed on the bottom mold plate 1 by means of the mounting plates 61.

[0056] In addition, the support stopper 6 is fixed on the bottom mold plate 1 through the plurality of mounting plates 61, which can increase the firmness of the connection between the support stopper 6 and the bottom mold plate 1, so that the support stopper 6 can better bear the force from the bottom mold plate 1 during pouring.

[0057] Referring to Figure 5 In some embodiments, a plurality of limiting blocks 71 are arranged on the side of the support stopper 7 facing the support stopper 6 at intervals, the plurality of limiting blocks 71 correspond to the plurality of mounting plates 61 one by one, and the mounting plate 61 abuts against the corresponding limiting block 71.

[0058] By setting multiple limiting blocks 71, the limiting blocks 71 and the corresponding mounting plates 61 are in abutment with each other, thereby achieving the abutment between the support stop bar 6 and the support stop seat 7, and further improving the support stability of the support stop seat 7 to the bottom mold plate 1. In addition, the limiting blocks 71 can precisely position the support stop bar 6, ensuring that the support stop bar 6 is in the correct position during installation and preventing it from shifting in the horizontal direction.

[0059] Please refer to Figure 5 For example, the side of the mounting plate 61 away from the bottom mold plate 1 is arc-shaped, and the limiting block 71 is provided with a limiting groove 711 adapted to the arc-shaped surface of the mounting plate 61, and the mounting plate 61 abuts in the limiting groove 711.

[0060] This arc-shaped surface cooperates with the limiting groove 711 to make the contact between the mounting plate 61 and the limiting block 71 more intimate, which can reduce the gap between them compared to planar contact, thereby avoiding relative shaking when subjected to external force.

[0061] Please refer to Figure 1 In some possible embodiments, the bottom mold plate 1 is provided with multiple first fixing rods 9 spaced along the axial direction of the support stop bar 6, and each first fixing rod 9 passes through the first pouring area 5 in the vertical direction and extends into the wall toe 3.

[0062] By setting the first fixing rod 9, the upper end of the bottom mold plate 1 is limited and supported, which can firmly fix the bottom mold plate 1 on the wall toe 3, preventing the bottom mold plate 1 from moving in the vertical direction, especially when pouring concrete, which can prevent the bottom mold plate 1 from sinking due to the weight of the concrete, thereby ensuring the positional stability of the bottom mold plate 1,

[0063] Please refer to Figure 2 In some possible embodiments, the inverted slope retaining wall structure further comprises a second mold plate 10, a second fixing rod 12 and a third fixing rod 13; one end of the second mold plate 10 covers the first pouring area 5, and the other end extends upward along the slope body 4; the top of the second mold plate 10 and the slope body 4 are provided with a horizontally supported second cross brace group 15; the second mold plate 10, the first pouring area 5, the second cross brace group 15 and the slope body 4 surround the second pouring area 16; the second fixing rod 12 passes through the second pouring area 16 in a direction perpendicular to the second mold plate 10 and extends into the first pouring area 5; and the third fixing rod 13 passes through the second pouring area 16 in the vertical direction and extends into the slope body 4.

[0064] For structures with a large pouring area of the retaining wall, segmented pouring can be performed; after the first pouring area 5 is completed, the second mold plate 10 can be fixed by the second fixing rod 12 and the third fixing rod 13 to complete pouring in the second pouring area 16.

[0065] It needs to be understood that, since the first pouring area 5 has been completed, the inclination angle of the retaining wall body has been determined, at this time, the second formwork 10 is extended downwards to cover on the first pouring area 5, so that the inclination angle of the second pouring area 16 is consistent with that of the first pouring area 5.

[0066] Further, the second fixed rod 12 passes through the second pouring area 16 and extends into the first pouring area 5, so that the second formwork 10 is stably fixed on the formed wall body of the first pouring area 5; in addition, it needs to be understood that the horizontal pouring thickness of the second pouring area 16 is often less than the horizontal thickness of the first pouring area 5, therefore, the acting force generated during pouring is also relatively small, so that only the second fixed rod 12 and the third fixed rod 13 can realize the support of the second formwork 10.

[0067] Please refer to Figure 2 In some embodiments, the second formwork 10 is further provided with a fourth fixed rod 14, the fourth fixed rod 14 passes through the second pouring area 16 in the vertical direction downwards and extends into the first pouring area 5.

[0068] By further setting the fourth fixed rod 14, the stability of the support of the second formwork 10 can be further improved. In addition, the extension direction of the fourth fixed rod 14 is different from those of the second fixed rod 12 and the third fixed rod 13, which further enhances the connection between the second pouring area 16 and the first pouring area 5, so that the combination between the two pouring areas is more compact. When the retaining wall is subjected to external force, this compact connection can better coordinate the two pouring areas to resist external force, avoid relative displacement or separation between the two pouring areas, and protect the overall performance of the entire retaining wall structure.

[0069] Optionally, the fourth fixed rod 14 can be separately provided, or the first fixed rod 9 replaces the fourth fixed rod 14; specifically, after the first pouring area 5 is completed, the connecting piece between the first fixed rod 9 and the bottom formwork 1 is removed, the lower end cover of the second formwork 10 is arranged on the first pouring area 5 and covers on the first fixed rod 9, so that the upper end of the first fixed rod 9 is the second formwork 10, and then the first fixed rod 9 and the second formwork 10 are fixed through the threaded connecting piece, so that the first fixed rod 9 replaces the fourth fixed rod 14.

[0070] The above only describes the preferred embodiments of the present application, and is not intended to limit the present application, any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A retaining wall structure of the batter type, characterised in that, The utility model relates to a slope body construction device, including: A bottom template (1) is used for abutting in the wall toe (3) of the slope body (4) at one end, and is arranged and extends along the slope body (4) and inclines upward at the other end;The top of the bottom template (1) is provided with the first cross support group (2) of horizontal support between the slope body (4);The bottom template (1), the wall toe (3), the first cross support group (2) and the slope body (4) are surrounded and set out the first pouring area (5); Supporting stop lever (6) is fixed in the side of the bottom template (1) away from the slope body (4), and extends horizontally along the length direction of the slope body (4); Supporting stop seat (7) is fixed on the wall toe (3);The side of the supporting stop seat (7) extends to the bottom template (1) and abuts on the supporting stop lever (6);And Two groups of limiting components (8) are arranged at both ends of the supporting stop lever (6) respectively, and are connected with the supporting stop seat (7);The limiting component (8) is used for blocking the inclination angle deviation of the bottom template (1).

2. The batter retaining wall structure of claim 1, wherein The limiting component (8) includes: First limiting disc (81) is arranged at the end of the supporting stop lever (6), and the first limiting disc (81) is provided with a first limiting part; Second limiting disc (82) is arranged opposite to the first limiting disc (81), and is connected with the supporting stop seat (7);The second limiting disc (82) is provided with a second limiting part corresponding to the first limiting part;And Fixed screw rod (83) passes through the second limiting disc (82) along the radial direction of the supporting stop lever (6), and is screwed in the first limiting disc (81).

3. The batter retaining wall structure of claim 2, wherein The first limiting part includes a plurality of first limiting teeth (811) arranged at the circumference of the first limiting disc (81), the second limiting part includes a plurality of second limiting teeth (821) arranged at the circumference of the second limiting disc (82), and a plurality of the second limiting teeth (821) are engaged with a plurality of the first limiting teeth (811).

4. The batter retaining wall structure according to claim 2 or 3, wherein The limiting component (8) further includes: Fixed plate (84) is arranged on the side of the supporting stop seat (7) towards the bottom template (1), and is arranged close to the first limiting disc (81); Mounting seat (85) is detachably connected on one side of the fixed plate (84), and extends towards the first limiting disc (81) on the other side;The mounting seat (85) is fixed with the second limiting disc (82).

5. The batter retaining wall structure of claim 1, wherein A plurality of mounting plates (61) are arranged at intervals on the supporting stop lever (6), and the supporting stop lever (6) is fixed on the bottom template (1) through the mounting plate (61).

6. The batter retaining wall structure of claim 5, wherein A plurality of limiting blocks (71) are arranged at intervals on the side of the supporting stop seat (7) towards the supporting stop lever (6), a plurality of the limiting blocks (71) correspond to a plurality of the mounting plates (61) one by one, and the mounting plate (61) abuts against the corresponding limiting block (71).

7. The batter retaining wall structure of claim 6, wherein The side of the mounting plate (61) away from the bottom template (1) is arc-shaped, the limiting block (71) is provided with a limiting groove (711) matched with the arc surface of the mounting plate (61), and the mounting plate (61) abuts in the limiting groove (711).

8. The batter retaining wall structure of claim 1, wherein The bottom formwork (1) is provided with a plurality of first fixing rods (9) arranged axially along the support stop rod (6) at intervals, each first fixing rod (9) penetrating the first pouring area (5) downward along the vertical direction and extending into the wall toe (3).

9. The batter retaining wall structure of claim 1, wherein The structure of the upwardly inclined retaining wall further comprises: a second formwork (10) covering one end of the first pouring area (5) and extending upward along the slope body (4) at an angle; a second horizontal support group (15) of cross braces is arranged between the top of the second formwork (10) and the slope body (4); a second pouring area (16) is enclosed by the second formwork (10), the first pouring area (5), the second horizontal support group (15) of cross braces and the slope body (4); a second fixing rod (12) penetrating the second pouring area (16) along a direction perpendicular to the second formwork (10) and extending into the first pouring area (5); and a third fixing rod (13) penetrating the second pouring area (16) downward along the vertical direction and extending into the slope body (4).

10. The batter retaining wall structure of claim 9, wherein The second formwork (10) is further provided with a fourth fixing rod (14) penetrating the second pouring area (16) downward along the vertical direction and extending into the first pouring area (5). The second formwork (10) is further provided with a fourth fixing rod (14) penetrating the second pouring area (16) downward along the vertical direction and extending into the first pouring area (5).