CN219100721U - Inclined template supporting device for cornice structure - Google Patents
Inclined template supporting device for cornice structure Download PDFInfo
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- CN219100721U CN219100721U CN202320041669.XU CN202320041669U CN219100721U CN 219100721 U CN219100721 U CN 219100721U CN 202320041669 U CN202320041669 U CN 202320041669U CN 219100721 U CN219100721 U CN 219100721U
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Abstract
The utility model relates to an inclined template supporting device for a cornice structure, which comprises an embedded part, a supporting pipe group and a wedge-shaped clamping part, wherein the embedded part is arranged on the supporting pipe group; the embedded part comprises a funnel-shaped embedded pipe, a fixed ring arranged at the outer edge of the lower opening of the embedded pipe and a water stop ring arranged in the middle of the periphery of the embedded pipe; the embedded pipe is embedded in the cornice structure, and the fixing ring is connected to the upper side surface of the inclined template of the cornice structure; the support pipe group passes through the embedded pipe, the lower end of the support pipe group is supported on the ground, and the upper end of the support pipe group is supported at the bottom of the upper inclined template. The utility model aims to provide an inclined template supporting device for a cornice structure, which is simple in structure and convenient to construct. The utility model has the advantages that: according to the utility model, the funnel-shaped embedded pipe is embedded in the lowest layer of cornice, and the supporting steel pipe of the pouring template of the upper layer of cornice can directly penetrate through the embedded pipe and is supported on the foundation of the bottom layer, so that the structure is more stable, and the construction is convenient.
Description
Technical Field
The utility model relates to the field of building construction, in particular to an inclined template supporting device for a cornice structure.
Background
In tourist cities or tourist areas, there are often more buildings appearing in archaized forms, the archaized buildings play an important role in the later urban development, and the complicated modeling of the archaized buildings is a problem which must be overcome in construction.
The cornice is an archaize building logo-like structure, the building outer facade is usually provided with multiple cornices, and the cornice structure is usually a sloping plate, so that the difficulty is increased for the support of the template frame body.
The construction method of the multiple sloping plate supporting system provides a more stable supporting structure for multiple cornices. The traditional method is that the steel pipe is directly erected on the inclined plate and is used as a supporting frame body of the upper inclined plate, and because the contact surface between the steel pipe and the inclined plate is small, the load cannot be well transferred to the inclined plate from the steel pipe, but the method has great potential safety hazard and the risk of integral sliding of the supporting frame body.
Disclosure of Invention
The utility model aims to provide an inclined template supporting device for a cornice structure, which has the advantages of simple structure, convenient construction and strong stability.
The aim of the utility model is realized by the following technical scheme: a diagonal form support device for a cornice structure comprises an embedded part, a support pipe group and a wedge-shaped clamping part; the embedded part comprises a funnel-shaped embedded pipe, a fixed ring arranged at the outer edge of the lower opening of the embedded pipe and a water stop ring arranged in the middle of the periphery of the embedded pipe; the embedded pipe is embedded in the cornice structure, and the fixing ring is connected to the upper side surface of the inclined template of the cornice structure; the support pipe group penetrates through the embedded pipe, the lower end of the support pipe group is supported on the ground, and the upper end of the support pipe group is supported at the bottom of the upper inclined template; the size of the upper opening of the embedded pipe is larger than that of the small opening, and the wedge-shaped clamping piece is clamped at the gap between the embedded pipe and the supporting pipe group.
Compared with the prior art, the utility model has the advantages that: according to the utility model, the funnel-shaped embedded pipe is embedded in the lowest cornice, and the supporting steel pipe of the pouring template of the upper cornice can directly penetrate through the embedded pipe and is supported on the foundation of the bottom layer. The embedded pipe is funnel-shaped, so that the position of the steel pipe can be adjusted conveniently, the embedded pipe can be suitable for cornice structures with different inclinations, and the water stop ring on the embedded pipe can effectively prevent hidden danger of water leakage at the embedded pipe.
Drawings
Fig. 1 is a schematic structural view of an embedded part.
Fig. 2 is a schematic view of the working state of the embedded part.
Fig. 3 is a schematic view of the structure of the support tube group.
Fig. 4 is a schematic structural view of the adjustment assembly.
Fig. 5 is a schematic view showing a construction state of an inclined formwork support device for a cornice structure according to the present utility model.
Description of the reference numerals: 1 embedded part, 1-1 embedded pipe, 1-2 fixed ring, 1-3 water stop ring, 2 support tube group, 2-1 steel pipe, 2-2 internal thread sleeve, 3 wedge-shaped clamping part, 4 adjusting component, 4-1 adjusting nut, 4-2 adjusting screw, 4-3U-shaped support head, 4-4 crosspiece, 5 inclined template, 6 cornice structure.
Detailed Description
The present utility model is described in detail below with reference to the drawings and examples of the specification:
fig. 1 to 5 show an embodiment of an inclined formwork support device for a cornice structure according to the present utility model.
A diagonal form support device for cornice structure comprises an embedded part 1, a support pipe group 2 and a wedge-shaped clamping part 3;
the embedded part 1 comprises a funnel-shaped embedded pipe 1-1, a fixed ring 1-2 arranged at the outer edge of the lower opening of the embedded pipe 1-1 and a water stop ring 1-3 arranged at the middle part of the periphery of the embedded pipe 1-1; the embedded pipe 1-1 is embedded in the cornice structure, and the fixing ring 1-2 is connected to the upper side surface of the inclined template of the cornice structure;
the support pipe group 2 passes through the embedded pipe 1-1, the lower end of the support pipe group is supported on the ground, and the upper end of the support pipe group is supported at the bottom of the upper inclined template;
the upper opening size of the embedded pipe 1-1 is larger than the small opening size, and the wedge-shaped clamping piece 3 is clamped at the gap between the embedded pipe 1-1 and the supporting pipe group 2.
The support pipe group 2 comprises a plurality of steel pipes 2-1 and an internal thread sleeve 2-2 connected between the two steel pipes 2-1, and external threads matched with the internal thread sleeve 2-2 are arranged at the butt joint of the steel pipes 2-1.
The upper end of the support tube group 2 is provided with an adjusting component 4;
the adjusting assembly 4 comprises an adjusting nut 4-1 pressed against the upper pipe orifice of the steel pipe 2-1, an adjusting screw 4-2 matched with the adjusting nut 4-1 and a U-shaped supporting head 4-3 fixed at the upper end of the adjusting screw 4-2. The groove of the U-shaped supporting head 4-3 is internally provided with a crosspiece 4-4.
The fixing ring 1-2 is provided with a plurality of nail holes. The fixing ring 1-2 is fixed on the inclined template through iron nails.
The fixing ring 1-2 is fixedly attached to the upper side face of the inclined template, the upper opening of the embedded pipe 1-1 is flush with the upper side face of the cornice structure, and a vertical space for the vertical passing of the supporting pipe group 2 is reserved between the upper opening and the lower opening of the installed embedded pipe 1-1.
The working principle of the utility model is as follows:
1. when the inclined template of the lowest layer cornice is installed, the foundation at the lower side of the inclined template is of a horizontal structure, so that the inclined template can be directly supported by adopting a traditional steel pipe, and after the inclined template is installed, the embedded part 1 is fixed on the upper side surface of the inclined template (by adjusting the inclination of the upper opening and the lower opening of the embedded pipe 1-1 to correspond to the angle of the inclined template).
2. And pouring concrete on the inclined template at the lowest layer, presetting the whole embedded pipe 1-1 in the cornice structure, wherein the upper pipe orifice and the lower pipe orifice of the embedded pipe 1-1 are communicated, and the upper pipe orifice is flush with the upper side surface of the cornice structure.
3. Then installing an inclined template of a layer of cornice, installing a supporting pipe group 2 according to the height of the inclined template, splicing and adjusting the length of the supporting pipe group 2 through a steel pipe 2-1, enabling the spliced supporting pipe group 2 to penetrate through an embedded pipe 1-1, supporting the lower end of the embedded pipe group on a foundation, supporting the lower side of the inclined template of the upper layer of cornice at the upper end of the embedded pipe group, and inserting a wedge-shaped clamping piece 3 at the gap between the embedded pipe 1-1 and the supporting pipe group 2 for fixing.
4. The height of the U-shaped supporting head 4-3 is adjusted through the adjusting screw 4-2, and a crosspiece is placed in the U-shaped supporting head 4-3 and used for supporting the lower side face of the inclined template; a plurality of embedded pipes 1-1 are arranged on the cornice at intervals along the length of the cornice, and a crosspiece is supported between the embedded pipes 1-1.
5. After all cornices are poured, the embedded pipe 1-1 is filled with concrete, and the water stop ring 1-3 on the embedded pipe 1-1 can effectively prevent hidden danger of water leakage at the embedded pipe.
Claims (5)
1. A diagonal form strutting arrangement for cornice structure, its characterized in that: the embedded pipe comprises an embedded part (1), a supporting pipe group (2) and a wedge-shaped clamping part (3);
the embedded part (1) comprises a funnel-shaped embedded pipe (1-1), a fixed ring (1-2) arranged at the outer edge of the lower opening of the embedded pipe (1-1) and a water stop ring (1-3) arranged at the middle part of the periphery of the embedded pipe (1-1); the embedded pipe (1-1) is embedded in the cornice structure, and the fixing ring (1-2) is connected to the upper side surface of the inclined template of the cornice structure;
the support pipe group (2) passes through the embedded pipe (1-1), the lower end of the support pipe group is supported on the ground, and the upper end of the support pipe group is supported at the bottom of the upper inclined template;
the upper opening size of the embedded pipe (1-1) is larger than the small opening size, and the wedge-shaped clamping piece (3) is clamped at the gap between the embedded pipe (1-1) and the supporting pipe group (2).
2. The diagonal form bracing device for a cornice structure according to claim 1, wherein: the support pipe group (2) comprises a plurality of steel pipes (2-1) and an internal thread sleeve (2-2) connected between the two steel pipes (2-1), and external threads matched with the internal thread sleeve (2-2) are arranged at the butt joint position of the steel pipes (2-1).
3. The diagonal form bracing device for a cornice structure according to claim 2, wherein: an adjusting component (4) is arranged at the upper end of the supporting tube group (2);
the adjusting assembly (4) comprises an adjusting nut (4-1) pressed against the upper pipe orifice of the steel pipe (2-1), an adjusting screw (4-2) matched with the adjusting nut (4-1) and a U-shaped supporting head (4-3) fixed at the upper end of the adjusting screw (4-2), and a crosspiece (4-4) is arranged in a groove of the U-shaped supporting head (4-3).
4. The diagonal form bracing device for a cornice structure according to claim 1, wherein: the fixing ring (1-2) is provided with a plurality of nail holes.
5. The diagonal form bracing device for a cornice structure according to claim 1, wherein: the fixing ring (1-2) is attached and fixed on the upper side face of the inclined template, the upper opening of the embedded pipe (1-1) is flush with the upper side face of the cornice structure, and a vertical space for the vertical passing of the supporting pipe group (2) is reserved between the upper opening and the lower opening of the embedded pipe (1-1) after installation.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202320041669.XU CN219100721U (en) | 2023-01-05 | 2023-01-05 | Inclined template supporting device for cornice structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202320041669.XU CN219100721U (en) | 2023-01-05 | 2023-01-05 | Inclined template supporting device for cornice structure |
Publications (1)
Publication Number | Publication Date |
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CN219100721U true CN219100721U (en) | 2023-05-30 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202320041669.XU Active CN219100721U (en) | 2023-01-05 | 2023-01-05 | Inclined template supporting device for cornice structure |
Country Status (1)
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CN (1) | CN219100721U (en) |
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2023
- 2023-01-05 CN CN202320041669.XU patent/CN219100721U/en active Active
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