Continuous beam outer mold and hanging basket

CN224606027UActive Publication Date: 2026-08-07HUNAN WUXIN INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN WUXIN INTELLIGENT TECHNOLOGY CO LTD
Filing Date
2025-09-17
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0002]连续梁的梁体翼缘有滴水槽,且梁体翼缘设有水平段、梁体腹板较高,脱模时连续梁外模与混凝土的粘接力过大,导致连续梁外模无法整体下降,若连续梁外模整体旋转将导致连续梁外模上的滴水槽模具与混凝土干涉,最终导致梁体崩角、损坏

Benefits of technology

[0020]通过将翼缘模分割成水平段和斜坡段,改为分开的可活动结构,水平段和斜坡段通过过渡面板连接,且过渡面板外侧无支撑结构,因而可通过设于翼缘背架上的第一伸缩驱动组件驱动水平段远离过渡面板的一端借助过渡面板的弹性形变沿梁体高度方向移动以调节翼缘模的水平段的倾斜角度,在不改变梁体尺寸和破坏已浇筑混凝土的情况下,进行翼缘位置的脱模,便于连续梁外模整体下降脱模,使梁体成型外观效果更佳,避免梁体崩角、损坏;

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Abstract

A continuous beam outer mold comprises a flange mold and a web mold connected with each other, the flange mold comprises a horizontal section, an inclined section and a flange back frame; a transition panel is arranged at the connection of the horizontal section and the inclined section; the flange back frame comprises a first flange back frame arranged at the bottom of the horizontal section and a second flange back frame arranged at the outer side of the inclined section; the first flange back frame and the second flange back frame form an avoiding space between the adjacent two sides close to the transition panel; a first telescopic driving assembly is arranged between the first flange back frame and the second flange back frame, and the first telescopic driving assembly is used to drive the end of the horizontal section away from the transition panel to move along the beam body height direction to adjust the inclination angle of the horizontal section. The application can drive the end of the horizontal section away from the transition panel to move along the beam body height direction by means of the elastic deformation of the transition panel to adjust the inclination angle of the flange mold through the first telescopic driving assembly arranged on the flange back frame. The application also provides a continuous beam outer mold and a hanging basket.
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Description

Technical Field

[0001] This utility model relates to the field of hanging basket construction technology, and in particular to a continuous beam external formwork. Background Technology

[0002] The continuous beam has drip grooves on its flanges, and the flanges also have horizontal sections. The web of the beam is relatively high. When demolding, the adhesion between the outer formwork of the continuous beam and the concrete is too great, which makes it impossible for the outer formwork of the continuous beam to be lowered as a whole. If the outer formwork of the continuous beam is rotated as a whole, the drip groove mold on the outer formwork of the continuous beam will interfere with the concrete, eventually leading to corner chipping and damage to the beam.

[0003] Existing flange formwork schemes for continuous beam external formwork, such as Figure 1 As shown, the flange back frame and the flange formwork body are a single unit, which can only be used for beam construction with a single angle formwork. When multiple beams are similar in shape but differ only in flange angle, it cannot be adapted to multiple beam structures, significantly increasing procurement costs.

[0004] Existing flange formwork schemes for continuous beam external formwork, such as Figure 1 As shown, the flange back frame and the flange formwork body are fixed structures with no adjustment space. If there are errors in the on-site installation, it is easy to cause the outer formwork of the continuous beam to not fit tightly with the beam body, which may lead to quality problems such as poor flatness and grout leakage after concrete pouring. Moreover, it is impossible to deal with the need for line adjustment during construction by fine-tuning the formwork angle, which increases the construction difficulty and cost. Utility Model Content

[0005] In view of this, the present invention provides a continuous beam outer formwork and hanging basket, which divides the flange formwork into a horizontal section and a sloping section. The horizontal section and the sloping section are connected by a transition panel, and there is no support structure on the outside of the transition panel. Therefore, the end of the horizontal section away from the transition panel can be driven by the first telescopic drive component set on the flange back frame to move along the beam height direction by means of the elastic deformation of the transition panel, so as to adjust the tilt angle of the horizontal section of the flange formwork. This facilitates the overall descent and demolding of the continuous beam outer formwork and avoids the beam from chipping or being damaged.

[0006] A continuous beam external formwork includes interconnected flange formwork and web formwork, wherein the flange formwork includes a horizontal section, a sloping section, and a flange back frame; wherein...

[0007] A transition panel is provided at the connection between the horizontal section and the ramp section;

[0008] The flange back frame includes a first flange back frame and a second flange back frame. The first flange back frame is located at the bottom of the horizontal section, and the second flange back frame is located on the outside of the slope section. A clearance space is formed between the first flange back frame and the second flange back frame on adjacent sides near the transition panel.

[0009] A first telescopic drive assembly is provided between the first flange back frame and the second flange back frame. The first telescopic drive assembly is used to drive the end of the horizontal section away from the transition panel to move along the beam height direction to adjust the tilt angle of the horizontal section.

[0010] In one embodiment, no reinforcing structure is provided on the outer side of the transition panel.

[0011] In one embodiment, the transition panel includes a horizontal panel and a ramp panel, wherein the horizontal panel and the ramp panel are integrally formed, or the horizontal panel and the ramp panel are hinged to each other.

[0012] In one embodiment, an adjustable support assembly is provided between the first flange back frame and the second flange back frame, the adjustable support assembly being used to support the horizontal segment along the height direction of the beam.

[0013] In one embodiment, the continuous beam outer formwork further includes a baffle formwork disposed on the top of the flange formwork. The outer side of the baffle formwork is provided with a baffle back frame. The first flange back frame includes a first support portion and a connecting plate. The first support portion abuts against the bottom of the horizontal section. The connecting plate is disposed at the bottom of the first support portion. One end of the first telescopic drive assembly is hinged to the connecting plate. The first support portion is provided with a first extension portion extending outward along the transverse direction of the beam body. The baffle back frame is disposed on the first extension portion.

[0014] In one embodiment, the ramp section and the web mold are integrally formed.

[0015] In one embodiment, the second flange back frame includes a second support portion and a support frame. The second support portion abuts against the outside of the ramp section and part of the web mold, and the support frame abuts against the outside of the second support portion. The support frame includes a support base and a plurality of support rods respectively connecting the support base and the outside of the second support portion. The outside of the support base is provided with a second extension portion, and one end of the first telescopic drive assembly is hinged to the second extension portion.

[0016] In one embodiment, the continuous beam outer formwork further includes a hanging basket member for connecting the hanging basket. The hanging basket member is connected to the bottom of the supporting base frame. A second telescopic drive assembly connected to the web formwork is provided on the inner side of the bottom of the hanging basket member. A third telescopic drive assembly and a fourth telescopic drive assembly are respectively provided between the top of the hanging basket member and the supporting base frame. The second telescopic drive assembly is used to support the web formwork and drive the web formwork to move along the transverse direction of the beam. The third telescopic drive assembly is used to support the second flange back frame along the height direction of the beam. The fourth telescopic drive assembly is used to drive the flange formwork to move along the transverse direction of the beam.

[0017] In one embodiment, the first telescopic drive assembly, the second telescopic drive assembly, the third telescopic drive assembly, and the fourth telescopic drive assembly are all any one of a telescopic hydraulic cylinder, a pneumatic cylinder, an electric cylinder, and an electric telescopic rod.

[0018] Based on the same inventive concept as the foregoing embodiments, this application also provides a hanging basket, which is provided with the continuous beam outer formwork as described above.

[0019] The continuous beam external formwork and hanging basket provided in this application have at least the following advantages compared with the prior art:

[0020] By dividing the flange mold into horizontal and sloping sections and changing it into a separate movable structure, the horizontal and sloping sections are connected by a transition panel. Since there is no support structure on the outside of the transition panel, the end of the horizontal section away from the transition panel can be driven by the first telescopic drive component on the flange back frame. The elastic deformation of the transition panel can be used to move the horizontal section of the flange mold along the height direction of the beam to adjust the tilt angle of the horizontal section of the flange mold. Without changing the beam size and damaging the poured concrete, the flange position can be demolded, which facilitates the overall descent and demolding of the continuous beam outer mold, resulting in a better appearance of the beam and avoiding corner chipping and damage to the beam.

[0021] By increasing the angle variation of the horizontal section of the flange mold, it can be adapted to beam structures with different flange angles, eliminating the need to replace the entire flange mold and reducing the cost of template customization and replacement time.

[0022] The horizontal and sloping sections of the flange formwork are connected as a whole only by transition panels. When changes occur, there is no need to disassemble the formwork. The formwork can be quickly adjusted by the telescopic drive component, which improves construction efficiency, reduces processing and construction errors, and makes the outer formwork fit the design line of the beam more closely.

[0023] If a deviation from the predicted value is found during construction, the cross-sectional dimensions of the next beam end can be adjusted by finely adjusting the angle of the flange mold as an auxiliary means of correction. Attached Figure Description

[0024] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0025] Figure 1 The illustration shows the construction status of the existing continuous beam external formwork;

[0026] Figure 2The illustration shows the casting state of the continuous beam outer formwork according to an embodiment of this application;

[0027] Figure 3 Schematic representation Figure 2 A locally magnified structure;

[0028] Figure 4 The schematic diagram illustrates the demolding state of the continuous beam outer formwork according to an embodiment of this application;

[0029] Figure 5 Schematic representation Figure 4 A locally magnified structure.

[0030] Explanation of reference numerals in the attached figures:

[0031] 1. Flange mold; 12. Horizontal section; 13. Sloping section; 14. Flange back frame; 141. First flange back frame; 1411. First support part; 1412. Connecting plate; 1413. First extension part; 142. Second flange back frame; 1421. Second support part; 1422. Support frame; 1423. Support base frame; 1424. Support rod; 1425. Second extension part; 15. Transition panel; 151. Horizontal panel; 152. Sloping panel; 16. Clearance space; 17. First telescopic drive assembly; 18. Adjustable support assembly; 2. Web mold; 21. Web back frame; 3. Top mold; 31. Baffle back frame; 4. Basket hanging rod; 5. Second telescopic drive assembly; 6. Third telescopic drive assembly; 7. Fourth telescopic drive assembly. Detailed Implementation

[0032] The specific embodiments of this utility model will now be described in detail with reference to the accompanying drawings. Obviously, the described embodiments are merely some, not all, of the embodiments of this utility model. Based on the description of this utility model, all other embodiments obtained by those skilled in the art without inventive effort are within the scope of protection of this utility model.

[0033] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "set up," "equipped with," "located in," "installed," and "connected," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms according to the specific circumstances.

[0034] The terms “outer side,” “upper,” “top surface,” “end,” “bottom,” etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship in which the product of this utility model is usually placed when in use. They are only for the convenience of description and simplification, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0035] In the description of this utility model, unless otherwise expressly specified and limited, the terms "first", "second", "third", "fourth", etc. are used only to distinguish elements with similar properties, and not to indicate or imply relative importance or a specific order.

[0036] The term “include” or any other variation thereof is intended to cover non-exclusive inclusion, which includes not only those elements listed, but also other elements not expressly listed.

[0037] like Figures 2 to 5 As shown, the continuous beam outer formwork of this application embodiment includes a flange formwork 1 and a web formwork 2 connected to each other. The flange formwork 1 includes a horizontal section 12, a ramp section 13, and a flange back frame 14. A transition panel 15 is provided at the connection between the horizontal section 12 and the ramp section 13. The flange back frame 14 includes a first flange back frame 141 and a second flange back frame 142. The first flange back frame 141 is located at the bottom of the horizontal section 12, and the second flange back frame 142 is located on the outside of the ramp section 13. A clearance space 16 is formed between the adjacent sides of the first flange back frame 141 and the second flange back frame 142 near the transition panel 15. A first telescopic drive assembly 17 is provided between the first flange back frame 141 and the second flange back frame 142. The first telescopic drive assembly 17 is used to drive the end of the horizontal section 12 away from the transition panel 15 to move along the beam height direction to adjust the tilt angle of the horizontal section 12.

[0038] According to the continuous beam outer formwork of this application embodiment, the flange formwork 1 is divided into a horizontal section 12 and a ramp section 13. The horizontal section 12 and the ramp section 13 are connected by a transition panel 15. The transition panel 15 has no support structure on its outer side. Therefore, the horizontal section 12 can be driven away from the transition panel 15 by the first telescopic drive assembly 17 provided on the flange back frame 14. The horizontal section 12 can be moved along the beam height direction by means of the elastic deformation of the transition panel 15 to adjust the tilt angle of the flange formwork 1.

[0039] In one embodiment, no reinforcing structure is provided on the outer side of the transition panel 15. The absence of a reinforcing structure on the outer side of the transition panel 15 facilitates the adjustment of the tilt angle of the horizontal segment 12 by the first telescopic drive assembly 17, simplifying the structure and saving costs as much as possible. In one embodiment, the transition panel 15 includes a horizontal panel 151 and a ramp panel 152, which are integrally formed, or hinged together. The transition panel 15 with the above structural forms can effectively and conveniently achieve the adjustment of the tilt angle of the horizontal segment 12 of the flange mold 1, and greatly simplify the structure and save costs.

[0040] As can be seen, the continuous beam external formwork provided in this application, by changing the flange formwork 1 to a separate movable structure, allows for demolding at the flange position without changing the beam size or damaging the poured concrete, resulting in a better appearance of the formed beam. The increased angle variation of the horizontal section 12 of the flange formwork 1 allows for adaptation to beam structures with different flange angles, eliminating the need to replace the entire flange formwork and reducing formwork customization costs and replacement time. The horizontal section 12 and the sloping section 13 of the flange formwork 1 are connected as a whole only by the transition panel 15, eliminating the need to disassemble the formwork during changes. Adjustment can be quickly achieved through the drive of the first telescopic drive component 17, improving construction efficiency and reducing processing and construction errors, making the continuous beam external formwork more closely match the beam design line. During construction, if a deviation from the predicted value is detected, the cross-sectional dimensions of the next beam end can be adjusted by finely adjusting the angle of the flange formwork 1, serving as an auxiliary means of correction.

[0041] In one embodiment, an adjustable support assembly 18 is provided between the first flange back frame 141 and the second flange back frame 142. The adjustable support assembly 18 is used to support the horizontal section along the height direction of the beam. Specifically, the adjustable support assembly 18 can be any of a hydraulic jack, an electric jack, and a screw jack, with a screw jack being particularly preferred. It can also be any of a telescopic cylinder, a pneumatic cylinder, an electric cylinder, and an electric telescopic rod. Obviously, by further providing an adjustable support assembly 18 between the first flange back frame 141 and the second flange back frame 142, the overall support strength of the flange back frame 14 can be effectively improved in the pouring state, ensuring the stability and reliability of the construction process. The screw jack is preferred as the adjustable support assembly because it has a simple and stable structure, is easy to assemble and disassemble, and is convenient for adjustment.

[0042] In one embodiment, the continuous beam outer formwork also includes a baffle mold 3 disposed on the top of the flange mold 1. A baffle back frame 31 is provided on the outer side of the baffle mold 3. The first flange back frame 141 includes a first support part 1411 and a connecting plate 1412. The first support part 1411 abuts against the bottom of the horizontal section 12, and the connecting plate 1412 is disposed at the bottom of the first support part 1411. One end of the first telescopic drive assembly 17 is hinged to the connecting plate 1412. The first support part 1411 is provided with a first extension part 1413 extending outward along the transverse direction of the beam body, and the baffle back frame 31 is disposed on the first extension part 1413. By concentrating the baffle back frame 31 and the first flange back frame 141 together, by raising the baffle back frame 31, and then laying a walking board on top of the baffle back frame 31, the height between the walking board on the top surface of the beam body and the flange end is reduced, which can greatly reduce the safety risks of cross-platform operations and improve construction efficiency. In one embodiment, the ramp section 13 and the web mold 2 are integrally formed. Obviously, manufacturing the ramp section 13 and the web mold 2 as an integral unit can greatly simplify the structure of the outer mold, ensure the overall structural strength of the outer mold, and save construction costs.

[0043] In one embodiment, the second flange back frame 142 includes a second support portion 1421 and a support frame 1422. The second support portion 1421 abuts against the outer side of the slope section 13 and part of the web formwork 2, and the support frame 1422 abuts against the outer side of the second support portion 1421. The support frame 1422 includes a support base frame 1423 and a plurality of support rods 1424 respectively connecting the outer side of the support base frame 1423 and the second support portion 1421. A second extension portion 1425 is provided on the outer side of the support base frame 1423, and one end of the first telescopic drive assembly 17 is hinged to the second extension portion 1425. Specifically, the first telescopic drive assembly 17 is arranged along the height direction of the beam and its two ends are respectively hinged to the connecting plate 1412 and the second extension portion 1425. The adjustable support assembly 18 is arranged along the height direction of the beam and its two ends are respectively connected to the connecting plate 1412 and the second extension portion 1425. The adjustable support assembly 18 is located on the outer side of the first telescopic drive assembly 17, which makes it easier to install and disassemble the support assembly 18 according to construction needs.

[0044] In one embodiment, the continuous beam outer formwork further includes a hanging basket rod 4 for connecting the hanging basket. The hanging basket rod 4 is connected to the bottom of the support base 1423. The bottom inner side of the hanging basket rod 4 is provided with a second telescopic drive assembly 5 connected to the web back frame 21 on the outside of the web formwork 2. The top of the hanging basket rod 4 and the support base 1423 are respectively provided with a third telescopic drive assembly 6 and a fourth telescopic drive assembly 7. The second telescopic drive assembly 5 is used to support the web formwork 2 and drive the web formwork 2 to move along the transverse direction of the beam. The third telescopic drive assembly 6 is used to support the second flange back frame 142 along the height direction of the beam. The fourth telescopic drive assembly 7 is used to drive the flange formwork 1 to move along the transverse direction of the beam. Specifically, in this embodiment, for beams with small flange width and high beam height, the web formwork 2 is positioned at the center of gravity of the continuous beam outer formwork by setting a second telescopic drive assembly 5 to provide lateral jacking support for the web formwork 2. This avoids the risk of overturning when the continuous beam outer formwork is installed on the hanging basket, and allows for extremely convenient demolding of the web formwork 2. The flange back frame 14 and the baffle back frame 31 are directly set on the top of the hanging basket rod 4, which can greatly ensure the overall support strength of the continuous beam outer formwork and facilitate the demolding operation of the continuous beam outer formwork, saving the space occupied by the continuous beam outer formwork in the hanging basket construction.

[0045] In one embodiment, the first telescopic drive assembly 17, the second telescopic drive assembly 5, the third telescopic drive assembly 6, and the fourth telescopic drive assembly 7 are all selected from the following: a telescopic hydraulic cylinder, a pneumatic cylinder, an electric cylinder, and an electric telescopic rod. Clearly, all of the above-mentioned telescopic drive assemblies with various structures can stably and reliably achieve telescopic drive, ensuring a stable and reliable construction process, and their simple and compact structure facilitates installation and arrangement.

[0046] Specifically, the structure and working principle of the continuous beam external formwork provided in this application embodiment are as follows:

[0047] like Figures 2 to 5 As shown, by making the upper inflection point of the flange mold 1 open and changing it into a separate movable structure, the horizontal section 12 of the flange mold 1 can be flexibly rotated around the upper inflection point in the direction of the bridge cross section, that is, in the transverse direction of the beam, to achieve angle adjustment; the flange back frame 14 is divided into two parts and is connected by an electric telescopic rod. After the angle adjustment is completed, the angle is fixed by the electric telescopic rod, and then the screw jack is used to further bear the force. The flange mold 1 and the flange back frame 14 are fixed by a connector.

[0048] The flange back frame 14 and the fourth telescopic drive assembly 17, i.e. the lateral formwork cylinder, are connected by a hinge. The web back frame 21 of the web formwork 2 is connected and fixed to the second telescopic drive assembly 5, i.e. the lateral cylinder. It can be extended and retracted laterally in the direction of the bridge cross section through the cylinder, thereby realizing the rapid demolding and resetting of the outer formwork of the continuous beam laterally.

[0049] The flange back frame 14 contacts the third telescopic drive assembly 6, i.e., the vertical lifting cylinder, which can extend and retract vertically in the direction of the bridge cross section, thereby realizing the rapid vertical demolding and resetting of the template.

[0050] During the pouring process, refer to Figure 2 and Figure 3 The flange template 1, baffle template 3, baffle back frame 31, flange back frame 14, first telescopic drive assembly 17, web template 2, web back frame 21 and adjustable support assembly 18 (i.e., screw jack), third telescopic drive assembly 6 (i.e., vertical lifting cylinder), second telescopic drive assembly 5 (i.e., lateral lifting cylinder) and hanging basket rod 4 are used in sequence to cooperate with each other to finally complete the segment pouring;

[0051] After the pouring is completed, refer to Figure 4 and Figure 5 First, the first telescopic drive assembly 17 and the adjustable support assembly 18 are released, causing the upper ends of the baffle mold 3, the baffle back frame 31, and the flange template 1 to rotate and demold along the upper inflection point of the flange template 1. Then, the outer mold template descends with the help of the guide beams of the third telescopic drive assembly 6 and the hanging basket rod 4, achieving vertical demolding of the outer mold template. Finally, the second telescopic drive assembly 5 and the fourth telescopic drive assembly 7, i.e., the lateral hydraulic cylinder, are used to achieve lateral demolding.

[0052] Based on the same inventive concept as the foregoing embodiments, this application also provides a hanging basket, which is provided with a continuous beam outer formwork as in the foregoing embodiments. Obviously, since the hanging basket of this application is provided with a continuous beam outer formwork as in the foregoing embodiments, it possesses all the technical effects and advantages of the foregoing embodiments.

[0053] According to the above embodiments, it can be seen that the continuous beam outer formwork and hanging basket involved in this application divide the flange formwork into horizontal sections and sloping sections. The horizontal sections and sloping sections are connected by a transition panel, and there is no support structure on the outside of the transition panel. Therefore, the end of the horizontal section away from the transition panel can be driven by the first telescopic drive component on the flange back frame to move along the beam height direction by means of the elastic deformation of the transition panel to adjust the tilt angle of the flange formwork.

[0054] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily obtained by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the appended claims.

Claims

1. A continuous beam outer formwork, comprising a flange formwork (1) and a web formwork (2) connected to each other, characterized in that, The flange module (1) includes a horizontal section (12), a ramp section (13), and a flange back frame (14); wherein, A transition panel (15) is provided at the connection between the horizontal section (12) and the slope section (13); The flange back frame (14) includes a first flange back frame (141) and a second flange back frame (142). The first flange back frame (141) is located at the bottom of the horizontal section (12), and the second flange back frame (142) is located on the outside of the slope section (13). The first flange back frame (141) and the second flange back frame (142) form a clearance space (16) between adjacent sides of the transition panel (15) near the first flange back frame (141) and the second flange back frame (142). A first telescopic drive assembly (17) is provided between the first flange back frame (141) and the second flange back frame (142). The first telescopic drive assembly (17) is used to drive the end of the horizontal section (12) away from the transition panel (15) to move along the beam height direction to adjust the tilt angle of the horizontal section (12).

2. The continuous beam outer formwork according to claim 1, characterized in that, The outer side of the transition panel (15) is not reinforced.

3. The continuous beam outer formwork according to claim 1, characterized in that, The transition panel (15) includes a horizontal panel (151) and a ramp panel (152). The horizontal panel (151) and the ramp panel (152) are integrally formed, or the horizontal panel (151) and the ramp panel (152) are hinged to each other.

4. The continuous beam outer formwork according to any one of claims 1 to 3, characterized in that, An adjustable support assembly (18) is provided between the first flange back frame (141) and the second flange back frame (142), and the adjustable support assembly (18) is used to support the horizontal section (12) along the height direction of the beam.

5. The continuous beam outer formwork according to any one of claims 1 to 3, further comprising a baffle formwork (3) disposed on the top of the flange formwork (1), wherein a baffle back frame (31) is provided on the outer side of the baffle formwork (3), characterized in that, The first flange back frame (141) includes a first support part (1411) and a connecting plate (1412). The first support part (1411) abuts against the bottom of the horizontal section (12). The connecting plate (1412) is disposed at the bottom of the first support part (1411). One end of the first telescopic drive assembly (17) is hinged to the connecting plate (1412). The first support part (1411) is provided with a first extension part (1413) extending outward along the transverse direction of the beam body, and the baffle back frame (31) is provided on the first extension part (1413).

6. The continuous beam outer formwork according to any one of claims 1 to 3, characterized in that, The ramp section (13) and the web plate mold (2) are integrally formed.

7. The continuous beam outer formwork according to claim 6, characterized in that, The second flange back frame (142) includes a second support part (1421) and a support frame (1422). The second support part (1421) abuts against the outside of the ramp section (13) and part of the web plate mold (2), and the support frame (1422) abuts against the outside of the second support part (1421). The support frame (1422) includes a support base frame (1423) and a plurality of support rods (1424) that connect the support base frame (1423) and the outer side of the second support part (1421) respectively. The outer side of the support base frame (1423) is provided with a second extension part (1425), and one end of the first telescopic drive assembly (17) is hinged to the second extension part (1425).

8. The continuous beam outer formwork according to claim 7 further includes a hanging basket rod (4) for connecting the hanging basket, characterized in that, The hanging basket rod (4) is connected to the bottom of the support base frame (1423). The bottom inner side of the hanging basket rod (4) is provided with a second telescopic drive assembly (5) connected to the web plate mold (2). The top of the hanging basket rod (4) and the support base frame (1423) are respectively provided with a third telescopic drive assembly (6) and a fourth telescopic drive assembly (7). The second telescopic drive assembly (5) is used to support the web plate mold (2) and drive the web plate mold (2) to move along the transverse direction of the beam. The third telescopic drive assembly (6) is used to support the second flange back frame (142) along the height direction of the beam. The fourth telescopic drive assembly (7) is used to drive the flange mold (1) to move along the transverse direction of the beam.

9. The continuous beam outer formwork according to claim 8, characterized in that, The first telescopic drive assembly (17), the second telescopic drive assembly (5), the third telescopic drive assembly (6), and the fourth telescopic drive assembly (7) are all any one of a telescopic hydraulic cylinder, a pneumatic cylinder, an electric cylinder, and an electric telescopic rod.

10. A hanging basket, characterized in that, The hanging basket is provided with a continuous beam outer formwork as described in any one of claims 1 to 9.