Building engineering supporting equipment
The wall cast formwork is supported by the adjustable support protective structure, and the problem of the formwork being damaged due to excessive concrete pressure is solved, the construction quality and efficiency are improved, and the equipment is facilitated to move.
Patent Information
- Application Number
- CN202422523601.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-10-18
AI Technical Summary
In existing construction projects, the external formwork is easily damaged or leaked at the connection due to excessive internal concrete pressure during the wall casting, which affects the construction quality and efficiency.
The adjustable support protection structure is adopted, including connecting plates, combined grooves, folding support plates, rotary hinges, spiral support rods, telescopic rods, spiral sleeves, clamping rods and expansion support structures. The template is supported through an adjustable support method to enhance the support effect and reduce the volume of the equipment, making it easier to move.
It improves the safety and construction effect of wall casting, prevents formwork from being damaged, improves construction quality and efficiency, and the equipment can be adjusted and folded for easy movement and handling.
Smart Images

Figure CN223214940U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building construction equipment, in particular to a building engineering support equipment. Background Art
[0002] Wall casting in construction projects is one of the key links in building construction. The quality of the wall directly affects the stability and durability of the entire building. Correct wall casting technology can ensure that the wall is uniform, tight and firm, thereby improving the overall quality and service life of the building. During the construction and casting of existing walls, the external formwork is fixed by a combination of locking structures such as bolts. The wider wall only bears the pressure of the internal concrete through the formwork. However, due to the excessive pressure of the internal concrete, the formwork may be damaged or the joints may be damaged and leak, affecting the construction quality and efficiency. Utility Model Content
[0003] To achieve the above objectives, the present invention is implemented through the following technical solutions: A construction engineering support device, comprising: a device base, on which an adjustable support and protection structure is installed;
[0004] The adjustable support and protection structure includes: a connecting plate, three combination slots, a folding support plate, a pair of rotating hinges, a pair of spiral support rods, a telescopic rod, a pair of spiral sleeves, a clamping rod and a pair of unfolding support structures;
[0005] The connecting plate is installed on the upper wall of the equipment base, three combination grooves are opened on the connecting plate, the folding support plate is movably installed in the three combination grooves, a pair of rotating hinges are installed on the rear wall of the folding support plate, the upper ends of a pair of spiral support rods are movably installed on a pair of rotating hinges, a pair of spiral sleeves are movably installed on the top ends of a pair of telescopic rods, a pair of telescopic rods are installed on a pair of spiral support rods through a pair of spiral sleeves, the clamping rod is installed on the lower ends of the pair of telescopic rods, and a pair of unfolding support assemblies are installed on the folding support plate.
[0006] Preferably, a telescopic slot is provided inside the pair of telescopic rods.
[0007] Preferably, a support slot is provided on the base of the device.
[0008] Preferably, a pair of spiral support rods are mounted on a pair of rotary hinge seats via a pair of rotary pins.
[0009] Preferably, a pair of deployment support structures each comprises: a moving slot, a pair of first adjustment slots, a pair of limiting guide rods, a deployment support plate, a folding slot, a pair of second adjustment slots and a pair of support rods;
[0010] The movable groove is opened on the front wall surface of the folding support plate, a pair of first adjustment grooves are opened in the movable groove, a pair of limiting guide rods are installed on the upper and lower wall surfaces of the movable groove, the unfolding support plate is installed in the movable groove through a pair of limiting guide rods, the folding groove is opened on the unfolding support plate, a pair of second adjustment grooves are opened in the folding groove, and a pair of support rods are installed in the folding groove through a pair of second adjustment grooves.
[0011] Preferably, the unfolded support plate and the support rod are fixed to the folded support plate and the folding groove respectively by locking knobs.
[0012] Beneficial effects
[0013] The utility model provides a construction engineering support equipment with the following beneficial effects: this solution uses an adjustable support and protection structure, which can be adjusted and supported according to the construction conditions, and the wall casting formwork is supported by the adjustable support structure to ensure casting safety and casting effect. At the same time, the equipment can be adjusted and folded to reduce the volume of the equipment and facilitate movement and transportation. It solves the problem that during the existing wall casting construction, the external formwork is fixed by a combination of locking structures such as bolts, and the wider wall only bears the pressure of the internal concrete through the formwork. However, due to the excessive pressure of the internal concrete, the formwork may be damaged or the joints may be damaged and leak, affecting the construction quality and construction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of the main three-dimensional structure of a construction engineering support device described in the utility model.
[0015] Figure 2 This is a rear perspective structural diagram of a construction engineering support device described in the present invention.
[0016] Figure 3 This is a schematic diagram of the main structure of a construction engineering support equipment described in the present utility model.
[0017] In the figure: 1-equipment base; 2-connecting plate; 3-combination slot; 4-folding support plate; 5-rotating hinge; 6-spiral support rod; 7-telescopic rod; 8-spiral sleeve; 9-clamping rod; 10-telescopic slot; 11-support slot; 12-rotating pin; 13-moving slot; 14-first adjusting slot; 15-limiting guide rod; 16-unfolding support plate; 17-folding slot; 18-second adjusting slot; 19-support rod; 20-locking knob. DETAILED DESCRIPTION
[0018] Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative work shall fall within the scope of protection of the present invention.
[0019] Example: See Figure 1-3 The present invention provides a technical solution: a construction engineering support device. This solution takes into account that the existing wall is prone to formwork rupture due to internal pressure during pouring construction, resulting in poor support effect and affecting the wall pouring effect. Based on the above content, this case sets the following technical means;
[0020] Specifically, the device comprises at least an equipment base 1, a connecting plate 2, three combination slots 3, a folding support plate 4, a pair of rotating hinges 5, a pair of spiral support rods 6, a telescopic rod 7, a pair of spiral sleeves 8, a clamping rod 9 and a pair of deployment support structures;
[0021] A pair of unfolding support structures each includes: a combination slot 3, a pair of first adjustment slots 14, a pair of limiting guide rods 15, an unfolding support plate 16, a folding slot 17, a pair of second adjustment slots 18 and a pair of support rods 19;
[0022] The equipment base 1 installs and supports the entire equipment. When it is used for support, the equipment is moved to the wall that needs support, and the folding support plate 4 is supported by the combination groove 3. The spiral support rod 6 is driven by the rotating hinge seat 5 to adjust the angle and clamp the clamping rod 9 into the support slot 11, and the spiral sleeve 8 is adjusted to drive the telescopic rod 7 to extend downward on the spiral support rod 6 to expand it to support the folding support plate 4, thereby supporting the casting formwork. At the same time, according to the construction and use conditions, the locking knob 20 is loosened to move the expanded support plate 16 from the moving groove 13 to both sides, expand it, and then fix it. At the same time, the support rod 19 is moved up and down through the second adjustment groove 18 to expand, and the support area is increased in conjunction with the expanded support plate 16, thereby ensuring the support effect and preventing the casting formwork from being damaged due to excessive force.
[0023] More specifically, the connecting plate 2 is installed on the upper wall of the equipment base 1, three combination grooves 3 are opened on the connecting plate 2, the folding support plate 4 is movably installed in the three combination grooves 3, a pair of rotary hinge seats 5 are installed on the rear wall of the folding support plate 4, the upper ends of a pair of spiral support rods 6 are movably installed on the pair of rotary hinge seats 5, a pair of spiral sleeves 8 are movably installed on the top ends of a pair of telescopic rods 7, the pair of telescopic rods 7 are installed on the pair of spiral support rods 6 through a pair of spiral sleeves 8, a clamping rod 9 is installed at the lower ends of the pair of telescopic rods 7, and a pair of deployment support assemblies are installed on the folding support plate 4;
[0024] The combination groove 3 is opened on the front wall surface of the folding support plate 4, a pair of first adjustment grooves 14 are opened in the combination groove 3, a pair of limiting guide rods 15 are installed on the upper and lower wall surfaces of the combination groove 3, the unfolding support plate 16 is installed in the combination groove 3 through a pair of limiting guide rods 15, the folding groove 17 is opened on the unfolding support plate 16, a pair of second adjustment grooves 18 are opened in the folding groove 17, and a pair of support rods 19 are installed in the folding groove 17 through a pair of second adjustment grooves 18.
[0025] In the specific implementation process, further, a telescopic slot 10 is opened inside the pair of telescopic rods 7.
[0026] In the specific implementation process, further, a support slot 11 is opened on the device base 1.
[0027] In the specific implementation process, further, a pair of spiral support rods 6 are installed on a pair of rotary hinge seats 5 through a pair of rotary pins 12.
[0028] In the specific implementation process, further, the unfolded supporting plate 16 and the supporting rod 19 are fixed to the folding supporting plate 4 and the folding groove 17 respectively through the locking knob 20.
[0029] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A construction engineering support device comprising: The device base (1) is characterized in that an adjustable supporting and protective structure is installed on the device base (1); The adjustable support and protection structure comprises: a connecting plate (2), three combination slots (3), a folding support plate (4), a pair of rotating hinge seats (5), a pair of spiral support rods (6), a telescopic rod (7), a pair of spiral sleeves (8), a clamping rod (9), and a pair of unfolding support structures; The connecting plate (2) is mounted on the upper wall of the equipment base (1); three combination grooves (3) are provided on the connecting plate (2); a folding support plate (4) is movably mounted in the three combination grooves (3); a pair of rotary hinge seats (5) are mounted on the rear wall of the folding support plate (4); the upper ends of a pair of spiral support rods (6) are movably mounted on the pair of rotary hinge seats (5); a pair of spiral sleeves (8) are movably mounted on the top ends of a pair of telescopic rods (7); the pair of telescopic rods (7) are mounted on the pair of spiral support rods (6) through the pair of spiral sleeves (8); a clamping rod (9) is mounted on the lower ends of the pair of telescopic rods (7); and a pair of unfolding support assemblies are mounted on the folding support plate (4).
2. A construction engineering support equipment according to claim 1, characterized in that: A pair of telescopic rods (7) are provided with telescopic slots (10) inside.
3. A construction engineering support equipment according to claim 1, characterized in that: A supporting slot (11) is provided on the equipment base (1).
4. A construction engineering support equipment according to claim 1, characterized in that: A pair of spiral support rods (6) are mounted on a pair of rotary hinge seats (5) via a pair of rotary pins (12).
5. A construction engineering support equipment according to claim 1, characterized in that: A pair of unfolding support structures each comprises: a moving slot (13), a pair of first adjustment slots (14), a pair of limiting guide rods (15), an unfolding support plate (16), a folding slot (17), a pair of second adjustment slots (18) and a pair of support rods (19); A movable groove (13) is provided on the front wall surface of the folding support plate (4); a pair of first adjustment grooves (14) are provided in the movable groove (13); a pair of limiting guide rods (15) are installed on the upper and lower wall surfaces of the movable groove (13); an unfolding support plate (16) is installed in the movable groove (13) through the pair of limiting guide rods (15); a folding groove (17) is provided on the unfolding support plate (16); a pair of second adjustment grooves (18) are provided in the folding groove (17); and a pair of support rods (19) are installed in the folding groove (17) through the pair of second adjustment grooves (18).
6. A construction engineering support equipment according to claim 5, characterized in that: The unfolded support plate (16) and the support rod (19) are respectively fixed to the folded support plate (4) and the folding groove (17) via a locking knob (20).