A wall body concrete pouring construction device and construction method
By using support bases, steel frame and formwork splicing components in the concrete pouring of the wall, the height of the formwork was gradually increased, which solved the problems of formwork deformation and cracking caused by pouring at height, and achieved efficient and stable construction results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZHONGTIAN NORTHWEST CONSTR INVESTMENT GRP CO LTD
- Filing Date
- 2024-04-08
- Publication Date
- 2026-07-21
AI Technical Summary
In existing wall concrete pouring construction, pouring concrete at heights can easily lead to formwork deformation, air bubbles and cracks, and the pouring efficiency is low.
The system employs a support base, steel frame, formwork splicing components, and lifting components. Concrete is poured by gradually increasing the height of the formwork. Transfer components and release agent tanks are used to prevent formwork from falling off and cracking, thereby improving construction efficiency.
It achieves efficient and stable concrete pouring for walls, avoids formwork deformation and cracks, and improves construction efficiency and wall quality.
Smart Images

Figure CN118087850B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of building construction technology, and specifically relates to a concrete pouring construction device and construction method for walls. Background Technology
[0002] Concrete pouring is an important process in civil and building engineering, involving pouring mixed concrete into prefabricated molds or formwork to form the desired structural shape. Wall concrete pouring refers to the process of pouring concrete into wall formwork according to design requirements within a building structure.
[0003] In the construction method of concrete pouring for walls, the wall formwork is usually erected first, and then concrete is poured on top of the formwork. After the concrete has solidified, the formwork is removed. However, since wall formwork is generally quite tall, pouring concrete on top of the formwork not only results in a large impact force on the concrete, which can easily cause impact deformation of the formwork, but also easily generates air bubbles, affecting the quality of the wall.
[0004] Patent application number 202111341353.4 provides a method for constructing a wall. This method involves pouring concrete slurry into a receiving groove; after the concrete slurry has initially formed, a rolling component separates from the wall; after the rolling component stops moving, more concrete slurry is poured to increase the wall's height; after the concrete slurry has initially set, the rolling component moves upwards, gradually separating from the wall; the end of the receiving groove furthest from the wall forms a filling space with the wall; then, more concrete slurry is poured into the receiving groove; the concrete slurry connects with the initially formed wall, thus continuously increasing the wall's height. However, this method requires the lower layer of concrete to be initially formed before pouring the upper layer of wall, resulting in low pouring efficiency. Furthermore, pouring again on top of the already formed concrete can easily cause cracks, affecting the wall's quality. Summary of the Invention
[0005] To address the aforementioned problems, the purpose of this invention is to provide a concrete pouring device and method for walls. During the concrete pouring process, the height of the formwork is gradually increased, which avoids the problems caused by excessive pouring height, allows for continuous pouring without cracking, and results in high construction efficiency.
[0006] The technical solution of this invention is: a wall concrete pouring construction device, comprising:
[0007] Two support bases are fixedly installed at intervals on a horizontal surface;
[0008] A steel reinforcement frame is set between the two support bases, and the inner sides of the two support bases are fitted and fixed to the lower side of the steel reinforcement frame;
[0009] Two template splicing components are symmetrically arranged on both sides of the steel frame. Each template splicing component includes a template storage box and a transfer component disposed inside the template storage box. The template storage box contains multiple templates, and the end face of the template storage box near the steel frame is open. The transfer component is used to transfer the templates sequentially to the opening of the template storage box and splice them on the side of the steel frame.
[0010] A lifting assembly is provided on each of the support bases. The template storage box is slidably disposed on the lifting assembly. The lifting assembly is used to drive the template storage box to rise and fall. Each of the lifting assemblies is also provided with a support assembly for supporting the template.
[0011] The sliding grouting assembly includes slide rail assemblies respectively disposed on the top of the two template storage boxes, a sliding plate slidably connected between the two slide rail assemblies, and a fixing member disposed on the sliding plate. The two slide rail assemblies are used to drive the sliding plate to slide back and forth on a horizontal plane, and the fixing member is used to fix the grouting pipe.
[0012] The template storage box also includes:
[0013] A telescopic rod is installed on the inner wall of the template storage box away from the opening. The distal end of the telescopic rod contacts the template and is used to push the template out.
[0014] Multiple limiting cards are arranged around the inner sidewall of the middle part of the template storage box, and the limiting cards are used to restrict the position of the template.
[0015] A mold release agent tank is located at the inner bottom of the template storage box near the opening, and the mold release agent tank is filled with mold release agent.
[0016] A spraying component is disposed on the mold release agent tank, and the spraying component is used to spray the mold release agent in the mold release agent tank onto the surface of the template;
[0017] The transfer component includes:
[0018] The support arm is fixedly installed on the inner top of the template storage box near the opening;
[0019] A rotating base is located at the lower end of the support arm;
[0020] A telescopic arm is connected to the rotating base, and the rotating base is used to drive the telescopic arm to rotate.
[0021] An electric suction cup is located at the far end of the telescopic arm, and the electric suction cup is used to adsorb and grab the template in the template storage box.
[0022] Furthermore, the support base includes:
[0023] A horizontal fixing plate is fixed to a horizontal surface using fixing bolts;
[0024] A vertical fixing plate is fixed to the side of the horizontal fixing plate.
[0025] The second support rod is fixedly connected at both ends to the upper surface of the horizontal fixed plate and the side of the vertical fixed plate, respectively.
[0026] Furthermore, the steel reinforcement frame includes:
[0027] Two vertical frames are respectively disposed on both sides between the two support bases;
[0028] The gusset plate is fixedly installed on the outside of the vertical frame.
[0029] Furthermore, the upper and lower ends of the template are respectively provided with grooves, the openings of the two grooves face opposite directions, and when the template is spliced on the side of the steel frame, the groove opening at the upper end of the template faces the outside of the steel frame, and the outer surface of the template is provided with a snap-fit groove.
[0030] Furthermore, the lifting assembly includes:
[0031] Two lifting rods are respectively set on both sides of the support base. Each lifting rod has a sliding groove on its inner side. The outer side of the template storage box is correspondingly slidably engaged in the sliding groove.
[0032] A crossbar is fixedly connected between the upper ends of the two lifting bars;
[0033] The lifting motor is installed inside each end of the crossbar. The lifting motor is connected to the upper surface of the template storage box through the slide groove via a cable, and is used to lift the template storage box.
[0034] Furthermore, the support component includes:
[0035] The first support rod is fixedly mounted on the support base, and is located parallel to the two lifting rods;
[0036] Multiple storage slots are evenly arranged on the inner side of the first support rod;
[0037] Multiple telescopic support rods are provided, with one telescopic support rod in each of the storage slots, and the lower end of the telescopic support rod is connected to the bottom of the storage slot via an electric rotating shaft;
[0038] A snap-fit connector is provided at the upper end of the telescopic support rod, and the snap-fit connector is used to snap and fix it with the snap-fit groove.
[0039] Furthermore, the slide rail assembly includes:
[0040] A lead screw is mounted on the top of the template storage box via bearings at both ends. One end of the lead screw extends out of the bearing, and the sliding plate has a lead screw groove threaded onto the lead screw at both ends.
[0041] A drive motor is located on the top of the template storage box. The output shaft of the drive motor is fixedly connected to one end of the lead screw, which is used to drive the lead screw to rotate, thereby moving the sliding plate.
[0042] Furthermore, the sliding plate is also equipped with a vibrating rod.
[0043] The construction method of the above-mentioned wall concrete pouring construction device involves fixing two support bases on both sides of the wall to be poured, then fixing the steel frame between the two support bases, installing gusset plates on both sides of the steel frame, clamping and fixing the grouting pipe to the fixing part of the sliding plate, and adjusting the length of the grouting pipe below the sliding plate.
[0044] The slide rail assembly is activated, and the screw is driven to rotate by the drive motor, thereby causing the sliding plate to move back and forth. During the reciprocating movement of the sliding plate, the grouting pipe pours concrete between the two support bases.
[0045] During the concrete pouring process, the lifting motor drives the template storage box to rise. When the lower end of the template storage box is level with the upper end of the vertical fixing plate, the rotating seat of the transfer component drives the telescopic arm to rotate towards the template. Then the telescopic arm extends and uses an electric suction cup to pick up the template. Then the telescopic arm shortens, allowing the picked template to squeeze the limiting card and move the limiting card to the other side. Then the rotating seat is controlled to rotate in the opposite direction, rotating the picked template towards the steel frame. During the rotation, the spraying component sprays a release agent onto the template surface. Then the telescopic arm extends and presses the template against the side of the steel frame. Then the electric suction cup releases its suction and resets. The lifting motor drives the template storage box to continue rising. When the template storage box rises above the spliced template, it stops and repeats the above steps. At this time, the side of the first support rod and the telescopic support rod corresponding to the spliced template rotate under the drive of the electric rotating shaft, so that the snap joint of the telescopic support rod snaps into the snap groove on the outer surface of the template to support the template.
[0046] Repeat the above steps to splice and fix multiple templates on the side of the steel frame, and the grouting pipes rise with the lifting components to pour grout between the templates. After the concrete solidifies, the wall is formed.
[0047] Compared with existing technologies, the advantages of this invention are as follows: The wall concrete pouring construction device provided by this invention, by setting a steel frame between the support bases, can both build the wall prototype and improve the overall strength of the wall. Furthermore, it has adjustable template splicing components on both sides of the steel frame. During grouting, the templates are spliced and fixed from bottom to top on both sides of the steel frame, thereby supporting the concrete grout pouring and preventing the templates from falling off before the concrete hardens. Simultaneously, a release agent tank is provided in the template storage box, allowing the transfer component to apply release agent to the inner surface of the template while transferring it, facilitating later demolding. Moreover, the height of the grouting pipe increases with the height of the template, preventing concrete grout from splashing due to excessive height during concrete pouring. In summary, this invention has the advantages of novel structure, simple construction, stability, and high efficiency. Attached Figure Description
[0048] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0049] Figure 2 This is a schematic diagram of the template storage box structure of the present invention;
[0050] Figure 3 This is a schematic diagram of the state of the rotating seat inside the template storage box after rotation according to the present invention;
[0051] Figure 4 This is a schematic diagram of the template structure of the present invention;
[0052] Figure 5 This is a schematic diagram of the support component structure of the present invention.
[0053] Among them, 1-support base, 11-horizontal fixing plate, 12-vertical fixing plate, 13-second support rod, 2-steel frame, 21-vertical frame, 22-lacquer plate, 3-template splicing assembly, 31-template storage box, 311-template, 3111-groove, 3112-slot, 312-telescopic rod, 313-limiting card, 314-release agent tank, 315-spraying part, 32-transfer assembly, 321-support arm, 322-rotating seat, 3 23-Telescopic arm, 324-Electric suction cup, 4-Lifting assembly, 41-Support assembly, 410-First support rod, 411-Storage slot, 412-Telescopic support rod, 413-Electric rotating shaft, 414-Snap connector, 42-Lifting rod, 421-Slide groove, 43-Crossbar, 44-Lifting motor, 5-Sliding grouting assembly, 51-Slide rail assembly, 511-Screw screw, 512-Bearing, 513-Drive motor, 52-Sliding plate, 53-Fixing component. Detailed Implementation
[0054] The following is in conjunction with the appendix Figure 1 To the attached Figure 5The specific embodiments of the present invention will be described in detail below. In the description of the present invention, it should be understood that the terms "center," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are only for the convenience of describing the present invention and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.
[0055] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature; in the description of this invention, unless otherwise stated, "a plurality of" means two or more.
[0056] It should be noted that the circuit connections involved in this invention all adopt conventional circuit connection methods and do not involve any innovation.
[0057] Example: Figure 1 As shown, a concrete pouring construction device for walls includes a support base 1, a steel frame 2, a formwork splicing assembly 3, a lifting assembly 4, and a sliding grouting assembly 5. Wherein:
[0058] Two support bases 1 are fixedly installed at intervals on a horizontal ground. Each support base 1 includes a horizontal fixing plate 11, a vertical fixing plate 12, and a second support rod 13. The horizontal fixing plate 11 is fixed to the horizontal ground by fixing bolts. The vertical fixing plate 12 is vertically fixed to the side of the horizontal fixing plate 11. The two ends of the second support rod 13 are fixedly connected to the upper surface of the horizontal fixing plate 11 and the side of the vertical fixing plate 12, respectively.
[0059] The steel reinforcement frame 2 is set between two support bases 1, and the inner sides of the two support bases 1 are attached and fixed to the lower side of the steel reinforcement frame 2; the steel reinforcement frame 2 includes multiple vertical frames 21 and connecting plates 22; the two vertical frames 21 are respectively set on both sides between the two support bases 1; the connecting plates 22 are fixedly set on the outer side of the vertical frames 21.
[0060] Two template splicing components 3 are symmetrically arranged on both sides of the steel frame 2, such as... Figure 2As shown, each template splicing assembly 3 includes a template storage box 31 and a transfer assembly 32 disposed inside the template storage box 31. Multiple templates 311 are placed inside the template storage box 31, and the end face of the template storage box 31 near the reinforcing steel frame 2 is open. The transfer assembly 32 is used to transfer the templates 311 sequentially to the opening of the template storage box 31 and splice them on the side of the reinforcing steel frame 2. The template storage box 31 also includes a telescopic rod 312 and multiple limiting cards 313. The telescopic rod 312 is disposed on the inner wall of the template storage box 31 away from the opening, and the distal end of the telescopic rod 312 contacts the template 311 to push the template 311 out. Multiple limiting cards 313 are arranged around the inner wall of the middle part of the template storage box 31, and the limiting cards 313 are used to restrict the position of the template 311. The transfer assembly 32 includes a support arm 3. 21. A rotating base 322, a telescopic arm 323, and an electric suction cup 324; a support arm 321 is fixedly installed on the inner top of the template storage box 31 near the opening; the rotating base 322 is installed at the lower end of the support arm 321; the telescopic arm 323 is connected to the rotating base 322, and the rotating base 322 is used to drive the telescopic arm 323 to rotate; the electric suction cup 324 is installed at the far end of the telescopic arm 323, and the electric suction cup 324 is used to adsorb and grab the template 311 in the template storage box 31; the template storage box 31 also includes a release agent tank 314 and a spraying component 315; the release agent tank 314 is installed on the inner bottom of the template storage box 31 near the opening, and the release agent tank 314 is filled with release agent; the spraying component 315 is installed on the release agent tank 314, and the spraying component 315 is used to spray the release agent in the release agent tank 314 onto the surface of the template 311; for example Figure 4 As shown, the upper and lower ends of the template 311 are respectively provided with grooves 3111, the openings of the two grooves 3111 face opposite directions, and when the template 311 is spliced on the side of the steel frame 2, the opening of the groove 3111 at the upper end of the template 311 faces the outside of the steel frame 2, and the outer surface of the template 311 is provided with a snap-fit groove 3112.
[0061] Each support base 1 is fixedly equipped with a lifting component 4, and the template storage box 31 is slidably mounted on the lifting component 4. The lifting component 4 is used to drive the template storage box 31 to rise and fall. Each lifting component 4 is also equipped with a support component 41 for supporting the template 311. The lifting component 4 includes two lifting rods 42, a crossbar 43 and a lifting motor 44. The two lifting rods 42 are respectively located on both sides of the support base 1. The inner side of each lifting rod 42 is provided with a sliding groove 421, and the outer side of the template storage box 31 is correspondingly slidably engaged with the sliding groove 421. 21 Inside; the crossbar 43 is fixedly connected between the upper ends of the two lifting rods 42; a lifting motor 44 is respectively installed inside both ends of the crossbar 43, and the lifting motor 44 is connected to the upper surface of the template storage box 31 through the slide groove 421 via a cable, for lifting the template storage box 31; the support assembly 41 includes a first support rod 410, multiple storage slots 411, multiple telescopic support rods 412 and a snap connector 414; the first support rod 410 is fixedly installed on the support base 1, and the first support rod 410 is parallel between the two lifting rods 42; as Figure 5 As shown, multiple storage slots 411 are evenly arranged on the inner side of the first support rod 410; each storage slot 411 is provided with a telescopic support rod 412, the lower end of the telescopic support rod 412 is connected to the bottom of the storage slot 411 through an electric rotating shaft 413; a snap connector 414 is provided on the upper end of the telescopic support rod 412, and the snap connector 414 is used to snap and fix with the snap slot 3112.
[0062] The sliding grouting assembly 5 includes slide rail assemblies 51 respectively disposed on the top of two template storage boxes 31, a sliding plate 52 slidably connected between the two slide rail assemblies 51, and a fixing member 53 disposed on the sliding plate 52. The two slide rail assemblies 51 are used to drive the sliding plate 52 to slide back and forth on the horizontal plane, and the fixing member 53 is used to fix the grouting pipe. The slide rail assembly 51 includes a lead screw 511 and a drive motor 513. The two ends of the lead screw 511 are disposed on the top of the template storage box 31 through bearings 512, and one end of the lead screw 511 extends out of the bearing 512. The two ends of the sliding plate 52 are respectively provided with lead screw grooves threaded onto the lead screw 511. The drive motor 513 is disposed on the top of the template storage box 31, and the output shaft of the drive motor 513 is fixedly connected to the extended end of the lead screw 511 for driving the lead screw 511 to rotate, thereby driving the sliding plate 52 to move. A vibrator is also provided on the sliding plate 52.
[0063] The construction method of the above embodiment is as follows:
[0064] Two support bases 1 are fixed on both sides of the wall to be poured, and then the steel frame 2 is fixed between the two support bases 1. The gusset plates 22 are installed on both sides of the steel frame 2. The grouting pipe is clamped and fixed on the fixing part 53 of the sliding plate 52. The length of the grouting pipe below the sliding plate 52 is adjusted.
[0065] Start the slide rail assembly 51, drive the lead screw 511 to rotate through the drive motor 513, thereby driving the sliding plate 52 to move back and forth. During the reciprocating movement of the sliding plate 52, the grouting pipe pours concrete between the two support bases 1.
[0066] During concrete pouring, the lifting motor 44 drives the formwork storage box 31 to rise. When the lower end of the formwork storage box 31 is flush with the upper end of the vertical fixing plate 12, the rotating seat 322 of the transfer assembly 32 drives the telescopic arm 323 to rotate towards the formwork 311. Then, the telescopic arm 323 extends and uses the electric suction cup 324 to pick up the formwork 311. Then, the telescopic arm 323 shortens, allowing the picked-up formwork 311 to squeeze the limiting card 313 and move the limiting card 313 to the other side. Then, the rotating seat 322 is controlled to rotate in the opposite direction, rotating the picked-up formwork 311 towards the steel frame 2. During the rotation, the spraying component 315 sprays a release agent onto the surface of the formwork 311. Then, the telescopic arm 323 extends and moves the formwork 311 towards the steel frame 2. The plate 311 is pressed against the side of the steel frame 2, and then the electric suction cup 324 releases the suction and resets. The lifting motor 44 drives the template storage box 31 to continue to rise. When the template storage box 31 rises above the spliced template 311, it stops and repeats the above steps. At this time, the side of the first support rod 410 and the telescopic support rod 412 corresponding to the spliced template 311 rotate under the drive of the electric rotating shaft 413, so that the snap joint 414 of the telescopic support rod 412 snaps into the snap groove 3112 on the outer surface of the template 311, supporting the template 311. Repeat the above actions to splice and fix multiple templates 311 on the side of the steel frame 2, and the grouting pipe rises with it under the drive of the lifting component 4, pouring between the templates 311. After the concrete solidifies, it forms a wall.
[0067] The specific models of the above electronic components are not specifically specified; any commercially available ordinary products can be selected, as long as they can meet the usage requirements of this invention.
[0068] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of the present invention. It should be understood that the above descriptions are merely specific embodiments of the present invention and do not limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention are included within the protection scope of the present invention.
Claims
1. A concrete pouring construction device for walls, characterized in that, include: Two support bases (1) are fixedly installed at intervals on a horizontal ground; A steel frame (2) is set between two support bases (1), and the inner sides of the two support bases (1) are attached and fixed to the lower side of the steel frame (2); Two template splicing components (3) are symmetrically arranged on both sides of the steel frame (2). Each template splicing component (3) includes a template storage box (31) and a transfer component (32) arranged inside the template storage box (31). Multiple templates (311) are placed inside the template storage box (31), and the end face of the template storage box (31) near the steel frame (2) is open. The transfer component (32) is used to transfer the templates (311) to the opening of the template storage box (31) in sequence and splice them on the side of the steel frame (2). Lifting component (4), each of the support bases (1) is fixedly provided with a lifting component (4), the template storage box (31) is correspondingly slidably arranged on the lifting component (4), the lifting component (4) is used to drive the template storage box (31) to lift, and each of the lifting components (4) is also provided with a support component (41) for supporting the template (311). The sliding grouting assembly (5) includes a slide rail assembly (51) respectively disposed on the top of the two template storage boxes (31), a sliding plate (52) slidably connected between the two slide rail assemblies (51), and a fixing member (53) disposed on the sliding plate (52). The two slide rail assemblies (51) are used to drive the sliding plate (52) to slide back and forth on the horizontal plane, and the fixing member (53) is used to fix the grouting pipe. The template storage box (31) also includes: Telescopic rod (312) is provided on the inner side wall of the template storage box (31) away from the opening. The far end of the telescopic rod (312) contacts the template (311) and is used to push the template (311) out. Multiple limiting cards (313) are arranged around the inner side wall of the middle part of the template storage box (31), and the limiting cards (313) are used to limit the position of the template (311); A release agent tank (314) is provided at the inner bottom of the template storage box (31) near the opening, and the release agent tank (314) is filled with release agent; A spraying component (315) is disposed on the mold release agent tank (314), and the spraying component (315) is used to spray the mold release agent in the mold release agent tank (314) onto the surface of the template (311); The transfer component (32) includes: The support arm (321) is fixedly installed on the inner top of the template storage box (31) near the opening; A rotating base (322) is disposed at the lower end of the support arm (321); A telescopic arm (323) is connected to the rotating seat (322), and the rotating seat (322) is used to drive the telescopic arm (323) to rotate; An electric suction cup (324) is provided at the far end of the telescopic arm (323), and the electric suction cup (324) is used to adsorb and grab the template (311) in the template storage box (31).
2. The wall concrete pouring construction device as described in claim 1, characterized in that, The template (311) has grooves (3111) at its upper and lower ends respectively. The openings of the two grooves (3111) face opposite directions. When the template (311) is spliced on the side of the steel frame (2), the opening of the groove (3111) at the upper end of the template (311) faces the outside of the steel frame (2). The outer surface of the template (311) is provided with a snap-fit groove (3112).
3. The wall concrete pouring construction device as described in claim 2, characterized in that, The lifting assembly (4) includes: Two lifting rods (42) are respectively set on both sides of the support base (1). Each lifting rod (42) has a sliding groove (421) on its inner side. The outer side of the template storage box (31) is correspondingly slidably engaged in the sliding groove (421). A crossbar (43) is fixedly connected between the upper ends of the two lifting rods (42); Lifting motor (44): A lifting motor (44) is provided inside each of the two ends of the crossbar (43). The lifting motor (44) is connected to the upper surface of the template storage box (31) through the slide groove (421) via a cable, and is used to lift the template storage box (31).
4. The wall concrete pouring construction device as described in claim 3, characterized in that, The support component (41) includes: The first support rod (410) is fixedly mounted on the support base (1), and the first support rod (410) is located parallel between the two lifting rods (42); Multiple storage slots (411) are evenly arranged on the inner side of the first support rod (410); Multiple telescopic support rods (412), each of the storage slots (411) is provided with one of the telescopic support rods (412), and the lower end of the telescopic support rod (412) is connected to the bottom of the storage slot (411) via an electric rotating shaft (413); A snap-fit connector (414) is provided at the upper end of the telescopic support rod (412), and the snap-fit connector (414) is used to snap-fit and fix with the snap-fit groove (3112).
5. A wall concrete pouring construction device as described in claim 4, characterized in that, The slide rail assembly (51) includes: The lead screw (511) is mounted on the top of the template storage box (31) at both ends via bearings (512). One end of the lead screw (511) extends out of the bearing (512), and the sliding plate (52) has screw grooves threaded onto the lead screw (511) at both ends. A drive motor (513) is located on the top of the template storage box (31). The output shaft of the drive motor (513) is fixedly connected to one end of the lead screw (511) to drive the lead screw (511) to rotate, thereby driving the sliding plate (52) to move.
6. The wall concrete pouring construction device as described in claim 5, characterized in that, The support base (1) includes: A horizontal fixing plate (11) is fixed to a horizontal ground by fixing bolts; A vertical fixing plate (12) is vertically fixed to the side of the horizontal fixing plate (11); The second support rod (13) is fixedly connected at both ends to the upper surface of the horizontal fixing plate (11) and the side of the vertical fixing plate (12), respectively.
7. A wall concrete pouring construction device as described in claim 6, characterized in that, The steel reinforcement frame (2) includes: Two vertical frames (21) are respectively arranged on both sides between the two support bases (1); A gusset plate (22) is fixedly installed on the outside of the vertical frame (21).
8. The construction method of the wall concrete pouring construction device as described in claim 7, characterized in that, Fix the two support bases (1) on both sides of the wall to be poured, then fix the steel frame (2) between the two support bases (1), install the gusset plate (22) on both sides of the steel frame (2), clamp and fix the grouting pipe on the fixing part (53) of the sliding plate (52), and adjust the length of the grouting pipe below the sliding plate (52). Start the slide rail assembly (51), drive the lead screw (511) to rotate through the drive motor (513), thereby driving the sliding plate (52) to move back and forth. During the reciprocating movement of the sliding plate (52), the grouting pipe pours concrete between the two support bases (1). During the concrete pouring process, the lifting motor (44) drives the template storage box (31) to rise. When the lower end of the template storage box (31) is flush with the upper end of the vertical fixing plate (12), the rotating seat (322) of the transfer component (32) drives the telescopic arm (323) to rotate towards the template (311). Then the telescopic arm (323) extends and uses the electric suction cup (324) to pick up the template (311). Then the telescopic arm (323) shortens so that the picked-up template (311) can squeeze the limiting card (313) and move the limiting card (313) to the other side. Then the rotating seat (322) is controlled to rotate in the opposite direction to rotate the picked-up template (311) towards the steel frame (2). During the rotation process, The spraying part (315) sprays release agent onto the surface of the template (311), then the telescopic arm (323) extends and presses the template (311) against the side of the steel frame (2), then the electric suction cup (324) releases the suction and resets, and the lifting motor (44) drives the template storage box (31) to continue to rise. When the template storage box (31) rises above the spliced template (311), it stops and repeats the above steps. At this time, the telescopic support rod (412) corresponding to the side of the first support rod (410) and the spliced template (311) rotates under the drive of the electric rotating shaft (413), so that the snap joint (414) of the telescopic support rod (412) snaps into the snap groove (3112) on the outer surface of the template (311) to support the template (311). Repeat the above actions to splice and fix multiple templates (311) on the side of the steel frame (2), and the grouting pipe rises with the lifting component (4) to pour between the templates (311). After the concrete solidifies, it forms a wall.