Concrete pouring body supporting system
By setting up a concrete cast body support system with card parts and feeding grooves between the formwork, the slurry outflow problem caused by the external support structure is solved, the collection and recycling of slurry is realized, and the stability and cleaning efficiency of the support system are improved.
Patent Information
- Application Number
- CN202510795945.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-16
- Publication Date
- 2025-07-29
AI Technical Summary
In the prior art, when the external support structure provides stable support, concrete slurry is prone to large amounts of outflow, resulting in waste and difficulty in cleaning.
A right-angle triangle support structure consisting of the first template, the second template, the third template and the oblique strut are adopted, and a card piece and a feeding groove are provided between the templates. The card piece is abutted at the gap to reduce the slurry leakage, and the feeding groove collects the leaking slurry.
Effectively reduce the leakage of slurry, facilitate recycling, avoid slurry adhering to the template, and simplify the cleaning process.
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Figure CN120384632A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of auxiliary equipment for concrete construction, and particularly to a support system for a concrete casting body. Background Art
[0002] During the concrete construction process, a support system is generally used to ensure stability during the construction process and the subsequent curing process. The general support system is a mold. Usually, multiple spliced templates are arranged on one side or both sides of the concrete casting body to enclose the mold. Then, a steel bar framework is placed in the mold, and then concrete is poured. After a period of curing, a concrete casting body is finally formed. When setting the mold, in order to improve stability, a pull rod can generally be used to penetrate the mold and insert into the interior, and then be pulled out after pouring is completed (an isolation sleeve, such as a rubber hose, can be sleeved outside the pull rod). However, this will leave holes on the casting body, which need to be filled later and will cause a certain degree of adverse impact on the overall structure. At the same time, there will also be gaps at the connection between the pull rod and the template, and a large amount of concrete slurry will leak outwards during the pouring process and finally fall to the ground, resulting in waste. Moreover, during the downward flow process, it will adhere to the template, making it more laborious to clean up later. Therefore, there are also some that provide stable support to the mold through an external support structure, which can avoid a large amount of slurry outflow caused by the setting of the pull rod and play a certain role in saving slurry. However, in the actual operation process, there will be spliced horizontal gaps between the upper and lower templates, and a large amount of slurry may flow out at the horizontal gaps (especially during the process of vibrating the concrete with a vibrating rod), resulting in slurry waste and also adhering to the template, making it more laborious to clean up the template later. Summary of the Invention
[0003] Aiming at the deficiencies in the prior art, the present invention provides a support system for a concrete casting body, which solves the problem of a relatively large amount of slurry outflow still existing when using an external support structure to provide stable support in the prior art.
[0004] According to an embodiment of the present invention, a support system for a concrete casting body includes a first formwork, a plurality of second formworks, and a third formwork that are stacked from bottom to top. Clamping members are respectively provided between the first formwork and the adjacent second formwork, between adjacent second formworks, and between the third formwork and the adjacent second formwork. The first formwork is fixedly connected to a first cross plate. The support system further includes a diagonal brace. The diagonal brace, the first formwork, the second formworks, the third formwork, and the first cross plate enclose a right triangle. Tightening members are respectively provided between the diagonal brace and each clamping member. A corresponding material receiving groove is provided below each clamping member. Similar to the prior art, in this solution, slurry may leak between the upper and lower formworks (i.e., between the second formwork and the first formwork, or between the second formworks, or between the third formwork and the second formwork). However, in this solution, clamping members are respectively provided between the upper and lower formworks (i.e., between the second formwork and the first formwork, or between the second formworks, or between the third formwork and the second formwork). The clamping members abut against the corresponding horizontal gaps, which can reduce the leakage amount of the slurry. At the same time, a material receiving groove is provided below the clamping member to receive the possibly leaked slurry. The received slurry can be conveniently recycled, and at the same time, it is also avoided that the slurry flows directly downward and adheres to the formwork, that is, the problem that a large amount of slurry still flows out exists when an external support structure is used to provide stable support in the prior art is solved.
[0005] Further, notches are respectively provided between the first formwork and the adjacent second formwork, between adjacent second formworks, and between the third formwork and the adjacent second formwork. The clamping member includes a first abutting plate and a clamping bar connected to the first abutting plate. The clamping bar is inserted into the corresponding notch, and the upper and lower parts of the first abutting plate respectively abut against the first formwork and the second formwork or the second formworks or the second formwork and the third formwork. The tightening member abuts against the first abutting plate, and the material receiving groove is located below the first abutting plate.
[0006] Further, the tightening member includes a second abutting plate that abuts against the first abutting plate, and a resisting rod that is detachably connected to the second abutting plate. A sleeve is horizontally penetrated through the diagonal brace, and the resisting rod penetrates through the sleeve. A clamping member is also detachably connected between the sleeve and the diagonal brace.
[0007] Further, the cross section of the diagonal brace is a square structure. The clamping member includes a clamping plate sleeved on the sleeve and abutting against the diagonal brace. A first connecting member is also detachably provided between the clamping plate and the diagonal brace.
[0008] Further, the material receiving groove includes a bonding plate that abuts against the first template or the second template, and a bottom plate, a front plate, and two side plates that enclose an upwardly open groove structure with the bonding plate. The top surface of the bonding plate is further fixedly connected with first supporting blocks located at both ends thereof and a plurality of second supporting blocks located between the two first supporting blocks. The first supporting blocks and the second supporting blocks respectively abut against the bottom surface of the first pressing plate. Flow guiding channels are respectively arranged at intervals between the first supporting block and the adjacent second supporting block and between adjacent second supporting blocks. The flow guiding channels have an upward inlet end and a downward outlet end. The outlet end is located above the material receiving groove, and the inlet end is connected to the notch above it.
[0009] Further, the second pressing plate is provided with an extending section extending downward, the lower end of the extending section abuts against one side of the upper end of the bonding plate close to the inside of the material receiving groove, and a through frame for exposing the flow guiding channel is arranged on the extending section.
[0010] Further, the lower end of the bonding plate extends beyond the bottom plate and is detachably connected to the first template or the second template through a second connecting member.
[0011] Further, the first template and the second template are respectively provided with connecting grooves connected to the corresponding notches. The first pressing plate partially covers the connecting grooves, and the connecting grooves are also connected to the flow guiding channels.
[0012] Further, at least one pair of first pressing holes is arranged on the second pressing plate, and a pressing rod is inserted into each first pressing hole.
[0013] Further, second pressing holes connected to the first pressing holes are also arranged on the first pressing plate, and a pressing head inserted into the second pressing holes is further fixedly connected to the pressing rod.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] The first template, the second template, and the third template, as well as the first cross plate and the diagonal strut, are combined to form a right triangle, forming an integral support structure on one side of the casting body, which can make the support system have better stability. At the same time, a clamping member is arranged between the first template, the second template, and the third template, which can reduce the amount of slurry leakage at the horizontal gap, solving the problem in the prior art that a large amount of slurry will still flow out when using an external support structure to provide stable support; further, even if some slurry leaks out at the horizontal gap, it can be collected through the corresponding material receiving groove, facilitating subsequent recovery, and at the same time avoiding slurry adhering to the lower template, making subsequent cleaning difficult. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a schematic diagram of the overall structure of an embodiment of the present invention;
[0017] Figure 2 is Figure 1Schematic enlarged view of the local structure at location A in [the figure];
[0018] Figure 3 is Figure 1 Schematic enlarged view of the local structure at location B in [the figure];
[0019] Figure 4 is Figure 2 Schematic enlarged view of the local structure at location C in [the figure];
[0020] Figure 5 Schematic view of the structures such as two adjacent material receiving grooves and two first abutting plates in the horizontal direction in an embodiment of the present invention;
[0021] In the above-mentioned drawings:
[0022] The first template 1, the second template 2, the third template 3, the casting body 4, the horizontal gap 5, the first cross plate 6, the diagonal strut 7, the second cross plate 8, the material receiving groove 9, the first abutting plate 10, the clamping strip 11, the second abutting plate 12, the abutting rod 13, the sleeve 14, the clamping plate 15, the first connecting member 16, the attaching plate 17, the bottom plate 18, the front plate 19, the side plate 20, the discharge pipe 21, the second connecting member 22, the first supporting block 23, the second supporting block 24, the diversion channel 25, the connecting groove 26, the first abutting hole 27, the second abutting hole 28, the abutting head 29, the extension section 30, the through frame 31, the first cross bar 32, the second cross bar 33, the third connecting member 34, the fourth connecting member 35. Detailed implementation manners
[0023] The technical solutions in the present invention will be further described below with reference to the drawings and embodiments.
[0024] In the description of the present invention, it should be understood that the orientation or positional relationships indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. are based on the orientation or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present invention.
[0025] In an exemplary embodiment, as Figures 1 - 5As shown in the figure, this embodiment provides a support system for a concrete casting body, which includes a first formwork 1, a plurality of second formworks 2, and a third formwork 3 arranged in a stacked manner from bottom to top. The first formwork 1, the second formwork 2, and the third formwork 3 are similar to the formworks in the prior art, mainly forming the main structure of the mold for concrete to be poured to finally form the casting body 4. The difference between this solution and the prior art is that this solution also has notches respectively provided between the first formwork 1 and the adjacent second formwork 2, between adjacent second formworks 2, and between the third formwork 3 and the adjacent second formwork 2. At the same time, a plurality of fasteners corresponding to each notch are also provided, and the fasteners are snapped into the corresponding notches, which can reduce the amount of slurry leakage at the transverse gap 5 (the transverse gap 5 is located within the notch), thus solving the problem of a large amount of slurry outflow still existing when using an external support structure to provide stable support in the prior art; furthermore, the first formwork 1 is fixedly connected with a first cross plate 6, and the first formwork 1 and the first cross plate 6 enclose an L shape, so that the first formwork 1 itself can stand more stably on the ground support surface when the mold is set up. It also includes a diagonal strut 7, and the diagonal strut 7 and the first formwork 1, the second formwork 2, and the third formwork 3 and the first cross plate 6 enclose a right triangle, that is, a support structure with an integral structure is formed on one side of the casting body 4, which can make the support system have better stability (compared with the separate setting of the formwork and the support structure in the prior art, such an integral structure is more stable). Even further, a pressing member is respectively provided between the diagonal strut 7 and each fastener, and the pressing member connects the fastener and the diagonal strut 7, which can further improve the stability of the integral structure. At the same time, a receiving groove 9 corresponding to each fastener is also provided below each fastener, and the receiving groove 9 is used to catch the slurry leaking from the transverse gap 5. In this way, even if some slurry leaks out at the transverse gap 5, it can be collected through the corresponding receiving groove 9, which is convenient for subsequent recovery and also avoids the slurry adhering to the lower formwork and making subsequent cleaning difficult;
[0026] Furthermore, the provided card member includes a first backing plate 10 and a card strip 11 connected to the first backing plate 10. The card strip 11 is snapped into the corresponding notch, and the upper and lower parts of the first backing plate 10 are respectively abutted against the first template 1 and the second template 2, or the second template 2 alone, or the second template 2 and the third template 3. The fastening member abuts against the first backing plate 10, and the material receiving groove 9 is located below the first backing plate 10. The card strip 11 and the first backing plate 10 can be of an integral structure, in which case steel material can be used, or they can be of a split structure, in which case the card strip 11 can be made of rubber material and the first backing plate 10 can be made of steel material. The first backing plate 10 is arranged in such a way that it can press on the card strip 11 to make the card strip 11 snap tightly into the notch in an elastic pressing manner (that is, the thickness dimension of the card strip 11 (the distance between the side facing away from the first backing plate 10 and the first backing plate 10) is slightly greater than the depth of the notch). In this way, compared with the integral structure, it can better prevent the leakage of slurry. During actual operation, especially during the process of vibrating the concrete with a vibrating rod, there will still be some slurry leaking outwards from the transverse gap 5 under the boost of pressure. However, the material receiving groove 9 provided in this solution can catch this part of the slurry for subsequent recovery and prevent the slurry from having an adverse impact on the lower template.
[0027] Furthermore, the fastening member includes a second backing plate 12 abutting against the first backing plate 10 and a rod 13 detachably connected to the second backing plate 12. A sleeve 14 is horizontally penetrated through the inclined strut 7 and the rod 13 penetrates through the sleeve 14. The sleeve 14 can move relative to the rod 13 so that it can be smoothly arranged at different positions on the rod 13 to adapt to the inclination of the inclined strut 7. A clamping member is also detachably connected between the sleeve 14 and the inclined strut 7. The clamping member includes a clamping plate 15 sleeved on the sleeve 14 and abutting against the inclined strut 7. The provided inclined strut 7 has a square cross-section, so the inclined strut 7 has opposite sides. The provided clamping plates 15 can be a pair, and the two clamping plates 15 can be clamped on the opposite sides of the inclined strut 7. Similarly, the sleeve 14 also passes through the opposite sides, and the clamping plate 15 and the inclined strut 7 are detachably connected by a first connecting member 16. The first connecting member 16 can be a double-headed bolt (that is, there are matching nuts at both ends of the screw rod) to lock the clamping plate 15 on the inclined strut 7. In this way, as long as the clamping plate 15 and the inclined strut 7 are relatively fixed, since the inclined strut 7 itself is inclined, the horizontally arranged sleeve 14 will form a certain angle with the first connecting member 16, making the sleeve 14 unable to move horizontally relative to the rod 13. Furthermore, the structures such as the rod 13, the inclined strut 7, and the second backing plate 12 are relatively fixed, thereby indirectly making the card member relatively fixed.
[0028] In a more detailed solution, the material receiving groove 9 includes a pasting plate 17 that abuts against the first template 1 or the second template 2, and a bottom plate 18, a front plate 19, and two side plates 20 that enclose an upwardly open groove structure with the pasting plate 17 (a discharge pipe 21 that extends downward and communicates with the inside of the material receiving groove 9 can be further connected to the bottom plate 18. At the same time, the discharge pipe 21 is blocked by a plug (not shown) inside the material receiving groove 9. When the plug is removed during recycling, the slurry in the material receiving groove 9 can be recycled more efficiently without disassembling the entire material receiving groove 9). The lower end of the provided pasting plate 17 extends beyond the bottom plate 18 and is detachably connected to the first template 1 or the second template 2 through a second connecting member 22. The second connecting member 22 can be a single-headed bolt (i.e., one end has a matching nut). The pasting plate 17 arranged in this way enables the material receiving groove 9 to be separately connected to the corresponding template (i.e., the first template 1 or the second template 2). Further, the top surface of the pasting plate 17 is also fixedly connected with first supporting blocks 23 located at both ends thereof, and a plurality of second supporting blocks 24 located between the two first supporting blocks 23. The first supporting blocks 23 and the second supporting blocks 24 respectively abut against the bottom surface of the first abutting plate 10. The pasting plate 17 provides upward support for the first abutting plate 10 through the first supporting blocks 23 and the second supporting blocks 24, assisting in stabilizing the first abutting plate 10 in the vertical direction. Even further, a diversion channel 25 is respectively arranged at intervals between the first supporting block 23 and the adjacent second supporting block 24 and between adjacent second supporting blocks 24. The diversion channel 25 has an upward inlet end and a downward outlet end. The outlet end is located above the material receiving groove 9, and the inlet end communicates with the notch above it. In this way, the slurry leaking from the transverse gap 5 first enters between the notch and the clamping strip 11, and then flows downward into the material receiving groove 9 through the diversion channel 25; in an even more detailed solution, connection grooves 26 that are connected to the corresponding notches are respectively arranged on the first template 1 and the second template 2, and the connection grooves 26 are also connected to the lower diversion channels 25. The provided first abutting plate 10 also partially covers the connection grooves 26, enabling the connection grooves 26 to form a channel structure that communicates the notch and the diversion channel 25. The lower end of the channel structure is open and located inside the upper end of the diversion channel 25, and the upper end of the channel structure is connected to the bottom surface of the notch. In this way, the slurry entering the notch will more preferentially enter the connection groove 26, then flow downward into the diversion channel 25, and smoothly reach the lower material receiving groove 9 without being squeezed out more from above the notch;In a more detailed solution, at least one pair of first abutting holes 27 are provided on the second abutting plate 12, and a abutting rod 13 is inserted into each first abutting hole 27 respectively. That is, at least two abutting rods 13 correspond to one second abutting plate 12. Furthermore, at least two stay rods 7 are provided, and the corresponding first cross plate 6 can be one. In this way, two right triangles are enclosed by two stay rods 7 on both sides of the first cross plate 6, the first template 1, the second template 2 and the third template 3 (the number of stay rods 7 and abutting rods 13 can be increased at the middle position according to the specific length of the template), so that the template is more stable. The first abutting holes 27 are provided for the ends of the abutting rods 13 to be inserted, so that the abutting rods 13 and the second abutting plate 12 are not likely to be misaligned, and the stability is better. Furthermore, second abutting holes 28 connected to the first abutting holes 27 are also provided on the first abutting plate 10, and a abutting head 29 that can pass through the first abutting holes 27 and abut against and be inserted into the second abutting holes 28 is fixedly connected to the end of the abutting rod 13. The abutting head 29 connects the first abutting plate 10 and the abutting rod 13, indirectly making the connection between the first abutting plate 10 and the second abutting plate 12 closer and not likely to be misaligned. Therefore, it can help improve the stability of the overall system. In particular, the second abutting holes 28 and the corresponding abutting heads 29 can also have a square cross section, so that the abutting rods 13 will not rotate relative to the first abutting plate 10, which helps improve the stability of the overall system. Furthermore, an extension section 30 extends downward at the lower end of the second abutting plate 12. The lower end of the extension section 30 abuts against the upper end of the attaching plate 17 on the side close to the material receiving groove 9. At the same time, a through frame 31 for exposing the diversion channel 25 is provided on the extension section 30. The provided extension section 30 also covers the space between the attaching plate 17 and the second abutting plate 12. In this way, the second abutting plate 12 also indirectly provides a pressing force to the lower attaching plate 17 (i.e., the material receiving groove 9), and together with the second connecting member 22, the setting of the material receiving groove 9 is more stable. The provided through frame 31 serves to connect the diversion channel 25 and the material receiving groove 9, ensuring that the slurry flows smoothly into the material receiving groove 9.;
[0029] As Figure 1 , 3 and 4, since the upper end of the stay rod 7 gets closer and closer to the third template 3, the distance between the clamping plate 15 and the material receiving groove 9 at the third template 3 is the smallest, which may cause the clamping plate 15 and the material receiving groove 9 to be in contact. In this case, only one clamping plate 15 can be provided and the clamping plate 15 can be provided on the side away from the material receiving groove 9, or two clamping plates 15 can be provided according to the situation, as long as it is ensured that they are not too close to the material receiving groove 9 for convenient installation and disassembly.
[0030] As Figure 1 and 5As shown, furthermore, the first bottom plate 10 is set to be the same length as the first template 1 (similarly for the corresponding second template 2 and third template 3), while the second bottom plate 12 can be equivalent to the first bottom plate 10 or can also be shorter than the first bottom plate 10 (when the first bottom plate 10 is very long, multiple shorter second bottom plates 12 can also be set). The through-frame 31 provided on the extension section 30 of the second bottom plate 12 can correspondingly completely cover or partially cover the diversion channel 25 without exceeding the material receiving groove 9, so that all the slurry passing through the diversion channel 25 enters the material receiving groove 9. More specifically, the diversion channel 25 can be structured with a wider upper end and a narrower lower end, so that the slurry converges when flowing downward and enters the lower material receiving groove 9 more smoothly; on the premise that the casting body 4 has a relatively large length, there may be splicing in the transverse direction, so there are vertical gaps. The first template 1, second template 2, and third template 3 in this solution can be set to be longer to reduce the number of splices in the transverse direction, thereby avoiding more slurry leaking out at the vertical gaps (in fact, this solution does not solve the problem of slurry leakage in the vertical direction, but even if there is leakage in the vertical direction, it will flow downward along the vertical gap and will not cause too much adverse impact on the template).
[0031] As Figure 1 shown, a second cross plate 8 is also fixedly connected to the top end of the third template 3. The second cross plate 8 is located above the first cross plate 6, and both are respectively provided for the two ends of the diagonal brace 7 to be detachably connected. More specifically, a first cross bar 32 and a second cross bar 33 are respectively fixedly connected to the lower end and the upper end of the diagonal brace 7, and the second cross bar 33, the diagonal brace 7, and the second cross bar 33 enclose a Z-shaped structure. The first cross bar 32 faces the first template 1, the second cross bar 33 faces away from the third template 3, and the first cross bar 32 and the second cross plate 8 are respectively connected to the first cross plate 6 and the second cross plate 8 through a third connecting member 34 and a fourth connecting member 35 (the third connecting member 34 can be a single-headed bolt, and the fourth connecting member 35 can be a double-headed bolt). In this way, the enclosed Z-shaped structure abuts between the first cross plate 6 and the second cross plate 8, and the overall system can be more stable. When disassembling, remove the fourth connecting member 35, and after first disassembling the third template 3, the diagonal brace 7 can be smoothly disassembled.
[0032] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not restrictive. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the purpose and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.
Claims
1. A support system for a concrete placement body, characterized in that, It includes a first template, a plurality of second templates, and a third template that are stacked from bottom to top. Clamping members are respectively arranged between the first template and the adjacent second template, between adjacent second templates, and between the third template and the adjacent second template. The first template is fixedly connected with a first cross plate. It further includes a diagonal brace. The diagonal brace, the first template, the second templates, the third template, and the first cross plate enclose a right triangle. Tightening members are respectively arranged between the diagonal brace and each clamping member. A corresponding material receiving groove is arranged below each clamping member.
2. The concrete casting body support system according to claim 1, characterized in that, Notches are respectively arranged between the first template and the adjacent second template, between adjacent second templates, and between the third template and the adjacent second template. The clamping member includes a first abutting plate and a clamping bar connected to the first abutting plate. The clamping bar is inserted into the corresponding notch, and the upper and lower parts of the first abutting plate respectively abut on the first template and the second template or on the second template or on the second template and the third template. The tightening member abuts against the first abutting plate. The material receiving groove is located below the first abutting plate.
3. The concrete casting body support system according to claim 2, characterized in that, The tightening member includes a second abutting plate that abuts against the first abutting plate, and a resisting rod that is detachably connected to the second abutting plate. A sleeve is horizontally penetrated on the diagonal brace, and the resisting rod penetrates through the sleeve. A clamping member is also detachably connected between the sleeve and the diagonal brace.
4. The concrete casting body support system according to claim 3, wherein, The cross section of the diagonal brace is a square structure. The clamping member includes a clamping plate sleeved on the sleeve and abutting against the diagonal brace. A first connecting member is also detachably arranged between the clamping plate and the diagonal brace.
5. The concrete placement body support system according to claim 3, characterized in that, The material receiving groove includes a attaching plate that abuts against the first template or the second template, and a bottom plate, a front plate, and two side plates that enclose an upward-opening groove structure with the attaching plate. First supporting blocks are fixedly connected to the top surface of the attaching plate at both ends thereof, and a plurality of second supporting blocks are arranged between the two first supporting blocks. The first supporting blocks and the second supporting blocks respectively abut against the bottom surface of the first abutting plate. Flow guiding channels are respectively arranged at intervals between the first supporting block and the adjacent second supporting block and between adjacent second supporting blocks. The flow guiding channel has an upward inlet end and a downward outlet end. The outlet end is located above the material receiving groove, and the inlet end is connected to the notch above it.
6. The concrete casting body support system according to claim 5, wherein, The second abutting plate is provided with an extending section extending downward. The lower end of the extending section abuts against the upper end of the attaching plate near one side inside the material receiving groove, and a through frame for exposing the flow guiding channel is arranged on the extending section.
7. The concrete casting body support system according to claim 5, characterized in that, The lower end of the attaching plate extends beyond the bottom plate and is detachably connected to the first template or the second template through a second connecting member.
8. The concrete placement body support system according to claim 5, wherein, The first template and the second template are respectively provided with connecting grooves connected to the corresponding notches. The first abutting plate partially covers the connecting grooves, and the connecting grooves are also connected to the flow guiding channels.
9. The concrete casting body support system according to claim 3, characterized in that, At least one pair of first resisting holes are arranged on the second abutting plate, and a resisting rod is respectively inserted into each first resisting hole.
10. The concrete casting body support system according to claim 9, characterized in that, Second resisting holes connected to the first resisting holes are also arranged on the first abutting plate. The resisting rod is also fixedly connected with a resisting head inserted into the second resisting hole.