Building template

文档序号:1684279 发布日期:2020-01-03 浏览:20次 中文

阅读说明:本技术 一种建筑模板 (Building template ) 是由 何畏 于 2019-09-29 设计创作,主要内容包括:本发明涉及建筑领域,具体涉及一种建筑模板,包括若干模板本体和若干组连接机构,模板本体的正面形状和反面形状不同,相邻两块模板本体通过一组连接机构连接。采用本技术方案时,方便安装且能浇筑不同形状的建筑支撑体。(The invention relates to the field of buildings, in particular to a building template which comprises a plurality of template bodies and a plurality of groups of connecting mechanisms, wherein the front side shapes and the back side shapes of the template bodies are different, and two adjacent template bodies are connected through one group of connecting mechanisms. When the technical scheme is adopted, the building support body is convenient to install and can be poured into different shapes.)

1. A building template, characterized in that: the template comprises a plurality of template bodies and a plurality of groups of connecting mechanisms, wherein the front side shape and the back side shape of the template bodies are different, and two adjacent template bodies are connected through one group of connecting mechanisms.

2. A building panel as claimed in claim 1, wherein: each group of connecting mechanisms comprises two groups of connecting units which are respectively positioned at two ends of the template body; each group of connecting units comprises two connecting pieces, one ends of the two connecting pieces are hinged, and the other ends of the two connecting pieces are hinged with the template body respectively.

3. A building panel as claimed in claim 2, wherein: each connecting piece comprises an outer sleeve piece and an inner sliding piece, the inner sliding piece is connected with the outer sleeve piece in a sliding mode, and the outer sleeve piece is hinged with the template body.

4. A building panel as claimed in claim 3, wherein: the inner sliding pieces are provided with notches, and the notches on the two inner sliding pieces between two adjacent template bodies face opposite directions.

5. A building panel as claimed in any one of claims 2 or 4, wherein: the connecting mechanism further comprises a square strip, pin rods are integrally formed at two ends of the square strip, and the two inner sliders are hinged through the pin rods.

6. A building panel as claimed in claim 5, wherein: the lateral wall of template body is equipped with the holding tank that holds square strip.

7. The building panel as claimed in claim 6, wherein: the length of the pin rod at the upper end of the square strip is larger than that of the pin rod at the lower end of the square strip.

8. The building panel as claimed in claim 7, wherein: and a rubber sheet is arranged on the square strip.

9. A building panel as claimed in any one of claims 2 or 8, wherein: a limiting piece is fixed at one end of the outer sleeve piece, and a clamping piece is fixed at one end, far away from the gap, of the inner sliding piece.

10. A building panel as claimed in claim 9, wherein: the other end of the outer sleeve member is open.

Technical Field

The invention relates to the field of buildings, in particular to a building template.

Background

During construction, building supports, such as walls, are often formed using building forms. During construction, the building templates are moved to a construction area, then the building templates are assembled to form a hollow area in a specific shape, the side walls of the building templates are supported by the support columns, concrete is poured into the hollow area, and the building templates can be detached after the concrete is formed, so that the required building support body is formed.

However, the building templates need to be repeatedly carried in the process of assembling the building templates, which is time-consuming and labor-consuming, and when building supports of different shapes need to be poured, the building templates of different shapes are needed, which not only leads to the increase of material cost, but also increases the transportation cost.

Disclosure of Invention

The invention aims to provide a building template which is convenient to install and can be used for pouring building supporting bodies in different shapes.

In order to achieve the purpose, the technical scheme of the invention provides a building template which comprises a plurality of template bodies and a plurality of groups of connecting mechanisms, wherein the front side shapes and the back side shapes of the template bodies are different, and two adjacent template bodies are connected through one group of connecting mechanisms.

The technical effect of the scheme is as follows: the template bodies with different shapes of the front surface and the back surface are connected through the connecting mechanism, the template bodies do not need to be repeatedly carried and installed in the assembling process, the installation of the template bodies can be completed at one time, and the template assembling machine is efficient and low in manual strength; and when building supports of different shapes need to be poured, only the splicing mode of the template body needs to be changed, other template bodies do not need to be replaced again, and the cost is controlled greatly.

Furthermore, each group of connecting mechanisms comprises two groups of connecting units, and the two groups of connecting units are respectively positioned at two ends of the template body; each group of connecting units comprises two connecting pieces, one ends of the two connecting pieces are hinged, and the other ends of the two connecting pieces are hinged with the template body respectively. The technical effect of the scheme is as follows: the connecting units are arranged at the two ends of the template body, so that the firmness of the template body in the processes of carrying, mounting and using can be improved.

Further, each connecting piece comprises an outer sleeve piece and an inner sliding piece, the inner sliding piece is connected with the outer sleeve piece in a sliding mode, and the outer sleeve piece is hinged with the template body. The technical effect of the scheme is as follows: the connecting piece can stretch out and draw back, can make and form multiple angle of assembling between two adjacent template bodies, increases the pattern of assembling of template body, and outer cover spare can imbed ground in addition, improves the stability of template body.

Furthermore, the inner sliding pieces are provided with notches, and the notches on the two inner sliding pieces between two adjacent template bodies face opposite directions. The technical effect of the scheme is as follows: when installing the connecting piece on the template body, can install according to the orientation of the positive and negative of observing the template body and breach, avoid the installation mistake to influence the construction progress.

Furthermore, the connecting mechanism further comprises a square strip, pin rods are integrally formed at two ends of the square strip, and the two inner sliders are hinged through the pin rods. The technical effect of the scheme is as follows: after the template bodies are enclosed into a hollow area, the square strip is pushed to be in contact with the side walls of two adjacent template bodies, the outer sleeve piece and the inner sliding piece rotate in the process, and the inner sliding piece slides relative to the outer sleeve piece; because the side walls of the formwork bodies are supported by the support columns in the construction process, the square bars can enable the adjacent two formwork bodies to form self-locking, and the stability of the building formwork is improved; meanwhile, the gap between the two adjacent template bodies is sealed in the process that the square strip is in close contact with the two adjacent template bodies, so that the leakage resistance in the concrete pouring process is improved; and when a gap is reserved between two adjacent templates, the square strip can be inserted into the gap, so that the connecting position of the two adjacent surfaces of the finally-formed building support body directly forms a notch with a triangular top view, the notch cannot be formed when the existing building template is used for pouring and supporting, and the notch is formed after forming.

Further, the lateral wall of template body is equipped with the holding tank that holds square strip. The technical effect of the scheme is as follows: when two adjacent template bodies are arranged in a straight line, the square strip can enter the accommodating groove, so that the two adjacent template bodies are ensured to be in close contact with each other.

Further, the length of the pin rod at the upper end of the square strip is larger than that of the pin rod at the lower end of the square strip. The technical effect of the scheme is as follows: when in installation, the two inner sliders at the upper end are connected through the pin rod at the upper end of the square bar, and then the inner sliders at the lower end are connected through the pin rod at the lower end of the square bar, so that the operation is more convenient in the construction process,

furthermore, a rubber sheet is arranged on the square strip. The technical effect of the scheme is as follows: the leakage resistance between two adjacent template bodies is improved through the rubber sheets.

Furthermore, one end of the outer sleeve part is fixed with a limiting part, and one end of the inner sliding part, which is far away from the gap, is fixed with a clamping part. The technical effect of the scheme is as follows: the inner sliding piece is prevented from sliding out of the outer sleeve piece in the process of assembling the building template.

Further, the other end of the outer sleeve member is open. The technical effect of the scheme is as follows: the inner slide piece is directly inserted from the opening end of the outer sleeve piece in the process of assembling the connecting piece, and the assembling process is quicker and more convenient.

Drawings

FIG. 1 is a schematic view of the assembly of a formwork body according to an embodiment of the present invention;

FIG. 2 is an enlarged view of a portion of FIG. 1 at A;

FIG. 3 is an enlarged view of a portion of FIG. 2 at B;

FIG. 4 is another schematic illustration of the formwork body assembly;

FIG. 5 is another schematic view of the formwork body assembly;

fig. 6 is a cross-sectional view of the connector.

Detailed Description

The following is further detailed by way of specific embodiments:

reference numerals in the drawings of the specification include: the template comprises a template body 1, an outer sleeve part 2, an inner slide part 3, a limiting part 4, a clamping part 5, a pin hole 6, a notch 7, a square strip 8, a pin rod 9 and an accommodating groove 10.

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