FIELD OF THE INVENTION
[0001] The present invention relates to the field of construction materials technology,
especially to an assembly column-beam connection component.
BACKGROUND OF THE INVENTION
[0002] With the maturation of technology, prefabricated construction has begun to emerge
and has garnered widespread attention in the construction industry. Prefabricated
construction refers to buildings assembled on-site using prefabricated components.
The advantages of this type of construction include rapid construction, minimal susceptibility
to weather conditions, labor savings, and improved construction quality.
[0003] The inventor disclosed a patent in a previously filed Chinese patent application,
published as
CN114250860A, for an invention patent that reveals a connection unit for prefabricated construction.
This unit comprises a first tubular body, a second tubular body, and a connector for
joining the first and second tubular bodies. The connector has multiple installation
through-holes at both ends, and the first and second tubular bodies each feature multiple
corresponding connecting apertures. The connector's ends are embedded within the first
and second tubular bodies, aligning the installation through-holes with the connecting
apertures. A bolt assembly sequentially passes through the connecting apertures on
the first and second tubular bodies and the installation through-holes on the connector,
thereby connecting the connector to the first and second tubular bodies.
[0004] However, the aforementioned patent has the following shortcomings: firstly, it can
only achieve vertical component connections, and secondly, it exhibits relatively
poor structural stability at the connection points.
SUMMARY OF THE INVENTION
[0005] The object of the present invention is to provide an assembly column-beam connection
component. This assembly column-beam connection component enhances the structural
strength and stability of the vertical connection between the overall vertical structure
and the external vertical components when connecting to the front and right sidewalls
and horizontal components externally.
[0006] To achieve the above object, the technical solution employed in the present invention
is as follows: an assembly column-beam connection component includes a vertically-oriented
connecting body for connecting to columns and a horizontally-oriented connecting body
for connecting to beams. One end of the horizontally-oriented connecting body is connected
to the vertically-oriented connecting body. The vertically-oriented connecting body
includes a front sidewall, a left sidewall, a rear sidewall, and a right sidewall
arranged in sequence. The left sidewall and rear sidewall have the same width, while
the front sidewall and right sidewall have the same width, which is smaller than that
of the left and rear sidewalls. The front sidewall connected to the left sidewall
and the right sidewall connected to the rear sidewall are joined by a right-angled
wall plate which is bent inward. Two horizontally-oriented connecting bodies are individually
connected to the front sidewall or the right sidewall.
[0007] Each of the sidewalls is equipped with an inward concave portion extending along
the length of the vertically-oriented connecting body in the vertical direction. The
inward concave portions on the left and rear sidewalls are located near the junction
of the left sidewall and rear sidewall, while the inward concave portions on the front
and right sidewalls are positioned in their respective centers. Multiple installation
through-holes for connecting to columns are provided on the various sidewalls of at
least one end of the vertically-oriented connecting body, and they are located within
the inward concave portions.
[0008] The improved aspects of the above technical solution are as follows:
[0009] In some embodiments, the inward concave portions are distributed along the length
of the vertically-oriented connecting body.
[0010] In some embodiments, the horizontally-oriented connecting body is connected to the
front sidewall or right sidewall of the vertically-oriented connecting body by welding.
[0011] In some embodiments, the horizontally-oriented connecting body can be any one of
a steel pipe connector, an I-beam connector, or a C-channel connector.
[0012] In some embodiments, the installation through-holes are located at one end of the
vertically-oriented connecting body, and the other end of the vertically-oriented
connecting body has a horizontally-oriented connecting body connected to its front
sidewall and right sidewall.
[0013] In some embodiments, two horizontally-oriented connecting bodies are connected in
the middle region of the front sidewall and right sidewall of the vertically-oriented
connecting body, and installation through-holes are provided at both ends of the vertically-oriented
connecting body.
[0014] In some embodiments, the vertically-oriented connecting body with front sidewall,
left sidewall, rear sidewall, and right sidewall is obtained through integral molding.
[0015] Through the application of the aforementioned technical solution, the present invention
exhibits the following advantages when compared to existing technology:
[0016] The assembly column-beam connection component of the present invention achieves simultaneous
connection of horizontal and vertical components. The vertically-oriented connecting
body used for column connection includes sequentially arranged front sidewall, left
sidewall, rear sidewall, and right sidewall. The connected left sidewall and rear
sidewall have the same width, while the front sidewall and right sidewall have the
same width, which is smaller than that of the left and rear sidewalls. The front sidewall
connected to the left sidewall and the right sidewall connected to the rear sidewall
are joined by an inwardly bent right-angled wall plate. Two horizontally-oriented
connecting bodies are each connected to the front sidewall or right sidewall. Each
sidewall features a concave portion extending along the length of the vertically-oriented
connecting body in the vertical direction. The concave portions on the left and rear
sidewalls are located near the junction of the left sidewall and rear sidewall. This
design enhances the structural strength of the vertically-oriented connecting body
itself and prevents positional misalignment between interconnected components when
connecting to external vertical components with installation through-holes. This,
in turn, improves stability and structural strength. Furthermore, when connecting
to external vertical components, the concave portions provide an embedded region for
the bolt heads, ensuring the flatness and smoothness of the external facade of the
connection structure. This facilitates subsequent decorative construction. When connecting
to external horizontal components on the front and right sidewalls, it further enhances
the structural strength and stability of the overall connection between the vertically-oriented
connecting body and the external vertical components.
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
FIG. 1 shows a schematic diagram of the assembly column-beam connection component
according to one embodiment in the present invention.
FIG. 2 shows a top view of the assembly column-beam connection component according
to one embodiment in the present invention.
FIG. 3 shows a partially-enlarged view of the assembly column-beam connection component
of FIG. 2.
FIG. 4 shows a cross-sectional view of the assembly column-beam connection component
in its operational state according to one embodiment in the present invention.
[0018] In the drawings: 100, vertically-oriented connecting body; 200, horizontally-oriented
connecting body; 11, front sidewall; 12, left sidewall; 13, rear sidewall; 14, right
sidewall; 2, installation through-holes; 3, inward concave portion; 4, right-angled
wall plate.
DETAILED DESCRIPTION OF THE INVENTION
EMBODIMENT 1
[0019] As shown in FIGS. 1-4, an assembly column-beam connection component, includes a vertically-oriented
connecting body 100 for connecting to columns and a horizontally-oriented connecting
body 200 for connecting to beams. One end of the horizontally-oriented connecting
body 200 is connected to the vertically-oriented connecting body 100. The vertically-oriented
connecting body 100 further includes sequentially arranged front sidewall 11, left
sidewall 12, rear sidewall 13, and right sidewall 14. The connected left sidewall
12 and rear sidewall 13 have the same width, while the front sidewall 11 and right
sidewall 14 have the same width, which is smaller than that of the left sidewall 12
and rear sidewall 13. The front sidewall 11 connected to the left sidewall 12 and
the right sidewall 14 connected to the rear sidewall 13 are joined by an inwardly
bent right-angled wall plate 4. Two horizontally-oriented connecting bodies 200 are
each connected to the front sidewall 11 or right sidewall 14.
[0020] Each of the sidewalls is equipped with a concave portion 3 extending along the length
of the vertically-oriented connecting body 100 in the vertical direction. The concave
portions 3 on the left sidewall 12 and rear sidewall 13 are positioned near the junction
of the left sidewall 12 and rear sidewall 13. The concave portions 3 on the front
sidewall 11 and right sidewall 14 are situated at their respective centers. Multiple
installation through-holes 2 for connecting to columns are provided on the various
sidewalls of at least one end of the vertically-oriented connecting body 100 and are
located within the concave portions 3.
[0021] The concave portions 3 are distributed along the entire length of the vertically-oriented
connecting body 100.
[0022] The horizontally-oriented connecting body 200 is welded to the front sidewall 11
or right sidewall 14 of the vertically-oriented connecting body 100. The horizontally-oriented
connecting body 200 is a C-channel connector.
[0023] The installation through-holes 2 are located at one end of the vertically-oriented
connecting body 100, and the other end of the vertically-oriented connecting body
100 has a horizontally-oriented connecting body 200 connected to its front sidewall
11 and right sidewall 14.
EMBODIMENT 2
[0024] As shown in FIGS. 1-4, an assembly column-beam connection component, comprising a
vertically-oriented connecting body 100 for connecting to columns and a horizontally-oriented
connecting body 200 for connecting to beams. One end of the horizontally-oriented
connecting body 200 is connected to the vertically-oriented connecting body 100. The
vertically-oriented connecting body 100 further includes sequentially arranged front
sidewall 11, left sidewall 12, rear sidewall 13, and right sidewall 14. The connected
left sidewall 12 and rear sidewall 13 have the same width, while the front sidewall
11 and right sidewall 14 have the same width, which is smaller than that of the left
sidewall 12 and rear sidewall 13. The front sidewall 11 connected to the left sidewall
12 and the right sidewall 14 connected to the rear sidewall 13 are joined by an inwardly
bent right-angled wall plate 4. Two horizontally-oriented connecting bodies 200 are
each connected to the front sidewall 11 or right sidewall 14.
[0025] Each of the sidewalls is equipped with a concave portion 3 extending along the length
of the vertically-oriented connecting body 100 in the vertical direction. The concave
portions 3 on the left sidewall 12 and rear sidewall 13 are positioned near the junction
of the left sidewall 12 and rear sidewall 13. The concave portions 3 on the front
sidewall 11 and right sidewall 14 are situated at their respective centers. Multiple
installation through-holes 2 for connecting to columns are provided on the various
sidewalls of at least one end of the vertically-oriented connecting body 100 and are
located within the concave portions 3.
[0026] The horizontally-oriented connecting body 200 is a steel pipe connecting body, and
the vertically-oriented connecting body 100 with front sidewall 11, left sidewall
12, rear sidewall 13, and right sidewall 14 is obtained through integral molding.
[0027] Two of the horizontally-oriented connecting bodies 200 are each connected in the
middle region of the front sidewall 11 and right sidewall 14 of the vertically-oriented
connecting body 100, and installation through-holes 2 are provided at both ends of
the vertically-oriented connecting body 100.
[0028] As shown in FIG. 4, when the vertically-oriented connecting body 100 is connected
to the corresponding external vertical components using bolts or expansion screws
passing through the installation through-holes, the concave portion precisely provides
an embeddable area for the bolt head, avoiding protrusion that may affect aesthetics.
This also facilitates subsequent decorative and finishing work.
[0029] By using the above assembly column-beam connection component, it achieves simultaneous
connection of horizontal and vertical components and provides structural strength
and stability. The vertically-oriented connecting body for column connection comprises
sequentially arranged front sidewall, left sidewall, rear sidewall, and right sidewall.
The left sidewall and rear sidewall have the same width, and the front sidewall and
right sidewall have the same width, which is smaller than that of the left sidewall
and rear sidewall. The front sidewall connected to the left sidewall and the right
sidewall connected to the rear sidewall are joined by an inwardly bent right-angled
wall plate. Two horizontally-oriented connecting bodies are each connected to the
front sidewall or right sidewall. Each sidewall features a concave portion extending
along the length of the vertically-oriented connecting body in the vertical direction.
The concave portions enhance the structural strength of the vertically-oriented connecting
body itself, prevent positional misalignment between interconnected components when
connecting to external vertical components with installation through-holes, and improve
stability and structural strength. Furthermore, when connecting to external vertical
components, the concave portion provides an embedded area for the bolt heads, ensuring
the flatness and smoothness of the external facade of the connection structure, facilitating
subsequent decorative construction on the front and right sidewalls with external
horizontal components.
[0030] The above examples are provided solely to illustrate the technical concept and characteristics
of the present invention, with the intention to enable those skilled in this art to
understand the content of the present invention and implement it. These examples should
not be construed as limiting the scope of protection of the present invention. Any
equivalent changes or modifications made in accordance with the essence of the present
invention are encompassed within the scope of protection of the present invention.
1. An assembly column-beam connection component, comprising a vertically-oriented connecting
body (100) for connecting to columns and a horizontally-oriented connecting body (200)
for connecting to beams; one end of the horizontally-oriented connecting body (200)
is connected to the vertically-oriented connecting body (100);
the vertically-oriented connecting body (100) comprises sequentially arranged front
sidewall (11), left sidewall (12), rear sidewall (13), and right sidewall (14);
characterized in that
the left sidewall (12) and rear sidewall (13) have the same width, while the front
sidewall (11) and right sidewall (14) have the same width, which is smaller than that
of the left sidewall (12) and rear sidewall (13);
the front sidewall (11) connected to the left sidewall (12) and the right sidewall
(14) connected to the rear sidewall (13) are joined by an inwardly bent right-angled
wall plate (4);
two horizontally-oriented connecting bodies (200) are each connected to the front
sidewall (11) or right sidewall (14); each of the sidewalls is equipped with inward
concave portions (3) extending along the length of the vertically-oriented connecting
body (100) in the vertical direction; the concave portions (3) on the left sidewall
(12) and rear sidewall (13) are positioned near the junction of the left sidewall
(12) and rear sidewall (13); the concave portions (3) on the front sidewall (11) and
right sidewall (14) are situated at their respective centers; a plurality of installation
through-holes (2) for connecting to columns are provided on the sidewalls of at least
one end of the vertically-oriented connecting body (100).
2. The assembly column-beam connection component according to claim 1, characterized in that the concave portions (3) are distributed along the entire length of the vertically-oriented
connecting body (100).
3. The assembly column-beam connection component according to claim 1, characterized in that the horizontally-oriented connecting body (200) is connected to the front sidewall
(11) or right sidewall (14) of the vertically-oriented connecting body (100) through
welding.
4. The assembly column-beam connection component according to claim 1, characterized in that the horizontally-oriented connecting body (200) is selected from a group consisting
of a steel pipe connector, a I-beam connector, and a C-channel connector.
5. The assembly column-beam connection component according to claim 1, characterized in that the installation through-holes (2) are located at one end of the vertically-oriented
connecting body (100), and the other end of the vertically-oriented connecting body
(100) has a horizontally-oriented connecting body (200) connected to its front sidewall
(11) and right sidewall (14).
6. The assembly column-beam connection component according to claim 1, characterized in that two of the horizontally-oriented connecting bodies (200) are each connected in the
middle region of the front sidewall (11) and right sidewall (14) of the vertically-oriented
connecting body (100), and installation through-holes (2) are provided at both ends
of the vertically-oriented connecting body (100).
7. The assembly column-beam connection component according to claim 1, characterized in that the vertically-oriented connecting body (100) with front sidewall (11), left sidewall
(12), rear sidewall (13), and right sidewall (14) is obtained through integral molding.