Reinforcing steel bar spacing structural member
By using the first link, the second link and the third link to connect the steel bars in the building, a stable triangular structure is formed, which solves the problem of insufficient fixation between the steel bars and significantly improves the tensile and compressive strength and seismic performance of the building.
Patent Information
- Application Number
- CN202520104215.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2035-01-16
AI Technical Summary
The lack of effective fixing methods between steel bars in existing buildings leads to insufficient tensile and compressive strength, which affects the seismic performance of the buildings.
The first connecting rod, the second connecting rod and the third connecting rod are used to connect the steel bars through the first circular ring and the second circular ring. The width of the connecting rod is equal to that of the circular ring. Rounded corners and reinforced bone positions are set to enhance the connection strength to form a stable triangular fixed structure.
It significantly enhances the tensile and compressive strength between steel bars, and the fixing effect is stronger than thin wire bundling and welding, thereby improving the overall seismic performance of the building.
Smart Images

Figure CN223386867U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of buildings, in particular to a steel bar spacing structural member. Background Art
[0002] The amount of steel in a building is crucial to its earthquake resistance and the safety of people's lives and property. Currently, steel bars in buildings are often tied together with thin wire. This wire is ineffective in resisting tension and compression, and only serves to hold the bars together during pouring. Often, the steel bars are not securely fastened together, compromising the building's earthquake resistance. Utility Model Content
[0003] The technical problem to be solved by the utility model is to provide a steel bar spacing structural member for reinforcing building concrete, and solve the problem of insufficient tensile and compressive strength between steel bars in buildings in the prior art.
[0004] The solution adopted by the utility model to solve its technical problems is: a steel bar spacing structure, including a first connecting rod, the first connecting rod including a first circular ring, a second circular ring, and a connecting rod, wherein the first circular ring is connected to the second circular ring through the connecting rod, the center line of the first circular ring is parallel to the center line of the second circular ring, the connecting rod is symmetrical with the plane formed by the center line of the first circular ring and the center line of the second circular ring, the inner hole of the first circular ring matches the outer diameter of the steel bar passed through, the inner hole of the second circular ring matches the outer diameter of the steel bar passed through, and the width of the first circular ring, the width of the second circular ring, and the width of the connecting rod are all equal.
[0005] In the above structure, the connection between the connecting rod and the first circular ring and the connection between the second circular ring are both provided with rounded corners to enhance the connection strength.
[0006] In the above structure, reinforcing bones are provided on both sides of the connecting rod to prevent the connecting rod from bending when subjected to force, and the reinforcing bones are perpendicular to the connecting rod.
[0007] The above structure also includes a second connecting rod, wherein the second connecting rod includes a first ring, a second ring, and a connecting rod, wherein the first ring of the second connecting rod is connected to the second ring of the second connecting rod through the connecting rod of the second connecting rod, the center line of the first ring of the second connecting rod is parallel to the center line of the second ring of the second connecting rod, the connecting rod of the second connecting rod is symmetrical with the plane formed by the center line of the first ring of the second connecting rod and the center line of the second ring of the second connecting rod, the inner hole of the first ring of the second connecting rod matches the outer diameter of the steel bar passed through, the inner hole of the second ring of the second connecting rod matches the outer diameter of the steel bar passed through, the width of the first ring of the second connecting rod, the width of the second ring of the second connecting rod, and the width of the connecting rod of the second connecting rod are all equal, the first ring on the second connecting rod coincides with the second ring on the first connecting rod, the connecting rod on the second connecting rod is perpendicular to the connecting rod on the first connecting rod, and the second connecting rod is coplanar with the first connecting rod.
[0008] The above structure further includes a third connecting rod, wherein the third connecting rod includes a first ring, a second ring, and a connecting rod, wherein the first ring of the third connecting rod is connected to the second ring of the third connecting rod through the connecting rod of the third connecting rod, the center line of the first ring of the third connecting rod is parallel to the center line of the second ring of the third connecting rod, the connecting rod of the third connecting rod is symmetrical with the plane formed by the center line of the first ring of the third connecting rod and the center line of the second ring of the third connecting rod, the inner hole of the first ring of the third connecting rod matches the outer diameter of the steel bar passed through, and the third ring of the third connecting rod is symmetrical with the center line of the first ring of the third connecting rod and the center line of the second ring of the third connecting rod. The inner holes of the two circular rings match the outer diameter of the steel bars passing through them, the width of the first circular ring of the third connecting rod, the width of the second circular ring of the third connecting rod, and the width of the connecting rod of the third connecting rod are all equal, the first circular ring on the second connecting rod coincides with the second circular ring on the first connecting rod, the second circular ring on the second connecting rod coincides with the first circular ring on the third connecting rod, the connecting rod on the second connecting rod is perpendicular to the connecting rod on the first connecting rod and the connecting rod on the third connecting rod, the connecting rod on the first connecting rod is parallel to the connecting rod on the third connecting rod, and the second connecting rod is coplanar with the first connecting rod and the third connecting rod.
[0009] The above structure also includes a second connecting rod, wherein the second connecting rod includes a first ring, a second ring, and a connecting rod, wherein the first ring of the second connecting rod is connected to the second ring of the second connecting rod through the connecting rod of the second connecting rod, the center line of the first ring of the second connecting rod is parallel to the center line of the second ring of the second connecting rod, the connecting rod of the second connecting rod is symmetrical with the plane formed by the center line of the first ring of the second connecting rod and the center line of the second ring of the second connecting rod, the inner hole of the first ring of the second connecting rod matches the outer diameter of the steel bar passed through, the inner hole of the second ring of the second connecting rod matches the outer diameter of the steel bar passed through, the width of the first ring of the second connecting rod, the width of the second ring of the second connecting rod, and the width of the connecting rod of the second connecting rod are all equal, the first ring on the second connecting rod coincides with the second ring on the first connecting rod, the connecting rod on the second connecting rod is parallel to the connecting rod on the first connecting rod, and the second connecting rod is coplanar with the first connecting rod.
[0010] The above structure also includes a third connecting rod, wherein the third connecting rod includes a first ring, a second ring, and a connecting rod, wherein the first ring of the third connecting rod is connected to the second ring of the third connecting rod through the connecting rod of the third connecting rod, the center line of the first ring of the third connecting rod is parallel to the center line of the second ring of the third connecting rod, the connecting rod of the third connecting rod is symmetrical with the plane formed by the center line of the first ring of the third connecting rod and the center line of the second ring of the third connecting rod, the inner hole of the first ring of the third connecting rod matches the outer diameter of the steel bar passed through, the inner hole of the second ring of the third connecting rod matches the outer diameter of the steel bar passed through, the width of the first ring of the third connecting rod, the width of the second ring of the third connecting rod, and the width of the connecting rod of the third connecting rod are all equal, the first ring on the second connecting rod coincides with the second ring on the first connecting rod, the second ring on the second connecting rod coincides with the first ring on the third connecting rod, the connecting rod on the second connecting rod is parallel to the connecting rod on the first connecting rod and the connecting rod on the third connecting rod, and the second connecting rod is coplanar with the first connecting rod and the third connecting rod.
[0011] The technical effect of the utility model is: by arranging the first circular ring and the second circular ring connected by a connecting rod, the position of the steel bar passing through the first circular ring and the steel bar passing through the second circular ring is fixed, which is both tensile and compressive resistant, much stronger than binding with thin iron wire, and stronger than welding, which greatly enhances the tensile and compressive strength of the steel bars in the building.
[0012] The above description is only an overview of the technical solution of the present invention. In order to more clearly understand the technical means of the present invention, it can be implemented in accordance with the contents of the specification. In addition, in order to make the above and other purposes, features and advantages of the present invention more obvious and easy to understand, the following preferred embodiments are specifically cited and described in detail with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a three-dimensional diagram of the utility model;
[0014] Figure 2 This is a schematic diagram of the present invention when in use;
[0015] Figure 3 This is a three-dimensional diagram of a structure of the utility model;
[0016] Figure 4 This is a three-dimensional diagram of a structure of the utility model;
[0017] Figure 5 This is a three-dimensional diagram of a structure of the utility model;
[0018] Figure 6 This is a three-dimensional diagram of a structure of the utility model.
[0019] In the figure: 1. First connecting rod; 2. Second connecting rod; 3. Third connecting rod; 4. First ring; 5. Second ring; 6. Connecting rod; 7. Fillet; 8. Strengthening bone position. DETAILED DESCRIPTION
[0020] In order to make the content of the present invention more clearly understood, the present invention will be further described below based on specific embodiments in conjunction with the accompanying drawings.
[0021] It should be noted that the terms "center," "upper," "lower," "front," "back," "left," "right," "inner," and "outer" used herein to indicate positions or locations are based on the positions or locations shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Unless otherwise specified, "plurality" means two or more.
[0022] Unless otherwise specified or limited, the terms "mounted," "connected," and "connected" should be interpreted broadly. For example, they can refer to fixed, removable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; and internal communication between two components. Those skilled in the art will understand the specific meanings of these terms in this utility model based on specific circumstances.
[0023] Referring to the accompanying drawings, a steel bar spacing structure includes a first connecting rod 1, the first connecting rod 1 includes a first circular ring 4, a second circular ring 5, and a connecting rod 6, wherein the first circular ring 4 is connected to the second circular ring 5 through the connecting rod 6, the center line of the first circular ring 4 is parallel to the center line of the second circular ring 5, the connecting rod 6 is symmetrical with the plane formed by the center line of the first circular ring 4 and the center line of the second circular ring 5, the inner hole of the first circular ring 4 matches the outer diameter of the steel bar passed through, the inner hole of the second circular ring 5 matches the outer diameter of the steel bar passed through, the width of the first circular ring 4, the width of the second circular ring 5, and the width of the connecting rod 6 are all equal, as shown in FIG. Figure 1 、 Figure 3 .
[0024] Furthermore, the connection between the connecting rod 6 and the first ring 4 and the connection between the second ring 5 are both provided with fillets 7 to enhance the connection strength. Figure 1 .
[0025] Furthermore, reinforcing bones 8 are provided on both sides of the connecting rod 6 to prevent the connecting rod 6 from bending when subjected to force, and the reinforcing bones 8 are perpendicular to the connecting rod 6. Figure 3 .
[0026] Furthermore, it also includes a second connecting rod 2, wherein the second connecting rod 2 includes a first ring 4, a second ring 5, and a connecting rod 6, wherein the first ring 4 of the second connecting rod 2 is connected to the second ring 5 of the second connecting rod 2 through the connecting rod 6 of the second connecting rod 2, the center line of the first ring 4 of the second connecting rod 2 is parallel to the center line of the second ring 5 of the second connecting rod 2, and the connecting rod 6 of the second connecting rod 2 is symmetrical with the plane formed by the center line of the first ring 4 of the second connecting rod 2 and the center line of the second ring 5 of the second connecting rod 2, and the second connecting rod 2 is symmetrical with the plane formed by the center line of the first ring 4 of the second connecting rod 2 and the center line of the second ring 5 of the second connecting rod 2. The inner hole of the first ring 4 of the connecting rod 2 matches the outer diameter of the steel bar passed through, the inner hole of the second ring 5 of the second connecting rod 2 matches the outer diameter of the steel bar passed through, the width of the first ring 4 of the second connecting rod 2, the width of the second ring 5 of the second connecting rod 2, and the width of the connecting rod 6 of the second connecting rod 2 are all equal, the first ring 4 on the second connecting rod 2 coincides with the second ring 5 on the first connecting rod 1, the connecting rod 6 on the second connecting rod 2 is perpendicular to the connecting rod 6 on the first connecting rod 1, and the second connecting rod 2 is coplanar with the first connecting rod 1, as shown in FIG. Figure 5 .
[0027] Furthermore, it also includes a third connecting rod 3, wherein the third connecting rod 3 includes a first ring 4, a second ring 5, and a connecting rod 6, wherein the first ring 4 of the third connecting rod 3 is connected to the second ring 5 of the third connecting rod 3 through the connecting rod 6 of the third connecting rod 3, the center line of the first ring 4 of the third connecting rod 3 is parallel to the center line of the second ring 5 of the third connecting rod 3, the connecting rod 6 of the third connecting rod 3 is symmetrical with the plane formed by the center line of the first ring 4 of the third connecting rod 3 and the center line of the second ring 5 of the third connecting rod 3, the inner hole of the first ring 4 of the third connecting rod 3 matches the outer diameter of the steel bar passed through, and the second ring 4 of the third connecting rod 3 is parallel to the center line of the second ring 5 of the third connecting rod 3. The inner hole of 5 matches the outer diameter of the steel bar passed through, the width of the first ring 4 of the third link 3, the width of the second ring 5 of the third link 3, and the width of the link 6 of the third link 3 are all equal, the first ring 4 on the second link 2 coincides with the second ring 5 on the first link 1, the second ring 5 on the second link 2 coincides with the first ring 4 on the third link 3, the link 6 on the second link 2 is perpendicular to the link 6 on the first link 1 and the link 6 on the third link 3, the link 6 on the first link 1 is parallel to the link 6 on the third link 3, and the second link 2 is coplanar with the first link 1 and the third link 3, as shown Figure 6 .
[0028] Furthermore, it also includes a second connecting rod 2, wherein the second connecting rod 2 includes a first ring 4, a second ring 5, and a connecting rod 6, wherein the first ring 4 of the second connecting rod 2 is connected to the second ring 5 of the second connecting rod 2 through the connecting rod 6 of the second connecting rod 2, the center line of the first ring 4 of the second connecting rod 2 is parallel to the center line of the second ring 5 of the second connecting rod 2, and the connecting rod 6 of the second connecting rod 2 is symmetrical with the plane formed by the center line of the first ring 4 of the second connecting rod 2 and the center line of the second ring 5 of the second connecting rod 2, and the second connecting rod 2 is symmetrical with the plane formed by the center line of the first ring 4 of the second connecting rod 2 and the center line of the second ring 5 of the second connecting rod 2. The inner hole of the first ring 4 of the connecting rod 2 matches the outer diameter of the steel bar passed through, the inner hole of the second ring 5 of the second connecting rod 2 matches the outer diameter of the steel bar passed through, the width of the first ring 4 of the second connecting rod 2, the width of the second ring 5 of the second connecting rod 2, and the width of the connecting rod 6 of the second connecting rod 2 are all equal, the first ring 4 on the second connecting rod 2 coincides with the second ring 5 on the first connecting rod 1, the connecting rod 6 on the second connecting rod 2 is parallel to the connecting rod 6 on the first connecting rod 1, and the second connecting rod 2 is coplanar with the first connecting rod 1, as shown in FIG. Figure 6 .
[0029] Furthermore, it also includes a third connecting rod 3, wherein the third connecting rod 3 includes a first ring 4, a second ring 5, and a connecting rod 6, wherein the first ring 4 of the third connecting rod 3 is connected to the second ring 5 of the third connecting rod 3 through the connecting rod 6 of the third connecting rod 3, the center line of the first ring 4 of the third connecting rod 3 is parallel to the center line of the second ring 5 of the third connecting rod 3, the connecting rod 6 of the third connecting rod 3 is symmetrical with the plane formed by the center line of the first ring 4 of the third connecting rod 3 and the center line of the second ring 5 of the third connecting rod 3, and the inner hole of the first ring 4 of the third connecting rod 3 matches the outer diameter of the steel bar passed through The inner hole of the second ring 5 of the third connecting rod 3 matches the outer diameter of the steel bar passed through, the width of the first ring 4 of the third connecting rod 3, the width of the second ring 5 of the third connecting rod 3, and the width of the connecting rod 6 of the third connecting rod 3 are all equal, the first ring 4 on the second connecting rod 2 coincides with the second ring 5 on the first connecting rod 1, the second ring 5 on the second connecting rod 2 coincides with the first ring 4 on the third connecting rod 3, the connecting rod 6 on the second connecting rod 2 is parallel to the connecting rod 6 on the first connecting rod 1 and the connecting rod 6 on the third connecting rod 3, and the second connecting rod 2 is coplanar with the first connecting rod 1 and the third connecting rod 3. Figure 4 .
[0030] The utility model provides a first ring 4 and a second ring 5 connected by a connecting rod 6, so that the position of the steel bars passing through the first ring 4 and the steel bars passing through the second ring 5 is fixed, which is both tensile and compressive resistant. It is much stronger than binding with thin wire and more secure than welding, greatly enhancing the tensile and compressive strength of the steel bars in the building. Specifically, it has the following beneficial effects:
[0031] 1. The utility model sets a first ring 4 and a second ring 5 connected by a connecting rod 6, so that the position of the steel bar passing through the first ring 4 and the steel bar passing through the second ring 5 is fixed, which is both tensile and compressive. The width of the first ring 4, the width of the second ring 5, and the width of the connecting rod 6 are all equal, which makes it have high strength when pulled or squeezed from any direction;
[0032] 2. The utility model can be formed into a triangle to form a stable fixed structure, which is both tensile and compressive. Figure 2 , and currently most of the steel bars used for connecting parts in buildings are quadrilaterals, which can be deformed;
[0033] 3. The utility model restricts the movement of the steel bars through the first ring 4 and the second ring 5, which is much stronger than welding and bundling;
[0034] 4. The present invention provides reinforcement bones 8 on both sides of the connecting rod 6 to prevent the connecting rod 6 from bending when stressed. The reinforcement bones 8 and the width direction of the connecting rod 6 jointly prevent the connecting rod 6 from bending;
[0035] 5. The present invention provides a composite structure composed of the first connecting rod 1, the second connecting rod 2, and the third connecting rod 3, which can fix multiple steel bars together, and is more conducive to enhancing the strength of columns and beams in buildings.
[0036] The embodiments described above are only preferred implementation methods of the present invention and cannot be used to limit the scope of protection of the present invention. Any non-substantial changes and modifications made by technicians in this field on the basis of the utility model shall fall within the scope of protection of the present invention.
Claims
1. A steel bar spacing structure, characterized in that: It includes a first connecting rod, which includes a first circular ring, a second circular ring, and a connecting rod, wherein the first circular ring is connected to the second circular ring through the connecting rod, the center line of the first circular ring is parallel to the center line of the second circular ring, the connecting rod is symmetrical with the plane formed by the center line of the first circular ring and the center line of the second circular ring, the inner hole of the first circular ring matches the outer diameter of the steel bar passed through, the inner hole of the second circular ring matches the outer diameter of the steel bar passed through, and the width of the first circular ring, the width of the second circular ring, and the width of the connecting rod are all equal.
2. The steel bar spacer structure according to claim 1, characterized in that: It also includes a second connecting rod, which includes a first ring, a second ring, and a connecting rod, wherein the first ring of the second connecting rod is connected to the second ring of the second connecting rod through the connecting rod of the second connecting rod, the center line of the first ring of the second connecting rod is parallel to the center line of the second ring of the second connecting rod, the connecting rod of the second connecting rod is symmetrical with the plane formed by the center line of the first ring of the second connecting rod and the center line of the second ring of the second connecting rod, the inner hole of the first ring of the second connecting rod matches the outer diameter of the steel bar passed through, the inner hole of the second ring of the second connecting rod matches the outer diameter of the steel bar passed through, the width of the first ring of the second connecting rod, the width of the second ring of the second connecting rod, and the width of the connecting rod of the second connecting rod are all equal, the first ring on the second connecting rod coincides with the second ring on the first connecting rod, the connecting rod on the second connecting rod is perpendicular to the connecting rod on the first connecting rod, and the second connecting rod is coplanar with the first connecting rod.
3. The steel bar spacing structure according to claim 2, characterized in that: It also includes a third connecting rod, the third connecting rod includes a first ring, a second ring, and a connecting rod, wherein the first ring of the third connecting rod is connected to the second ring of the third connecting rod through the connecting rod of the third connecting rod, the center line of the first ring of the third connecting rod is parallel to the center line of the second ring of the third connecting rod, the connecting rod of the third connecting rod is symmetrical with the plane formed by the center line of the first ring of the third connecting rod and the center line of the second ring of the third connecting rod, the inner hole of the first ring of the third connecting rod matches the outer diameter of the steel bar passed through, the inner hole of the second ring of the third connecting rod matches the outer diameter of the steel bar passed through The outer diameters of the steel bars passing through the third connecting rod are matched, the width of the first circular ring of the third connecting rod, the width of the second circular ring of the third connecting rod, and the width of the connecting rod of the third connecting rod are all equal, the first circular ring on the second connecting rod coincides with the second circular ring on the first connecting rod, the second circular ring on the second connecting rod coincides with the first circular ring on the third connecting rod, the connecting rod on the second connecting rod is perpendicular to the connecting rod on the first connecting rod and the connecting rod on the third connecting rod, the connecting rod on the first connecting rod is parallel to the connecting rod on the third connecting rod, and the second connecting rod is coplanar with the first connecting rod and the third connecting rod.
4. The steel bar spacer structure according to claim 1, characterized in that: It also includes a second connecting rod, which includes a first ring, a second ring, and a connecting rod, wherein the first ring of the second connecting rod is connected to the second ring of the second connecting rod through the connecting rod of the second connecting rod, the center line of the first ring of the second connecting rod is parallel to the center line of the second ring of the second connecting rod, the connecting rod of the second connecting rod is symmetrical with the plane formed by the center line of the first ring of the second connecting rod and the center line of the second ring of the second connecting rod, the inner hole of the first ring of the second connecting rod matches the outer diameter of the passed steel bar, the inner hole of the second ring of the second connecting rod matches the outer diameter of the passed steel bar, the width of the first ring of the second connecting rod, the width of the second ring of the second connecting rod, and the width of the connecting rod of the second connecting rod are all equal, the first ring on the second connecting rod coincides with the second ring on the first connecting rod, the connecting rod on the second connecting rod is parallel to the connecting rod on the first connecting rod, and the second connecting rod is coplanar with the first connecting rod.
5. The steel bar spacer structure according to claim 4, characterized in that: It also includes a third connecting rod, the third connecting rod includes a first ring, a second ring, and a connecting rod, wherein the first ring of the third connecting rod is connected to the second ring of the third connecting rod through the connecting rod of the third connecting rod, the center line of the first ring of the third connecting rod is parallel to the center line of the second ring of the third connecting rod, the connecting rod of the third connecting rod is symmetrical with the plane formed by the center line of the first ring of the third connecting rod and the center line of the second ring of the third connecting rod, the inner hole of the first ring of the third connecting rod matches the outer diameter of the steel bar passed through, and the third connecting rod The inner hole of the second circular ring matches the outer diameter of the steel bar passed through, the width of the first circular ring of the third connecting rod, the width of the second circular ring of the third connecting rod, and the width of the connecting rod of the third connecting rod are all equal, the first circular ring on the second connecting rod coincides with the second circular ring on the first connecting rod, the second circular ring on the second connecting rod coincides with the first circular ring on the third connecting rod, the connecting rod on the second connecting rod is parallel to the connecting rod on the first connecting rod and the connecting rod on the third connecting rod, and the second connecting rod is coplanar with the first connecting rod and the third connecting rod.
6. The steel bar spacer structure according to claim 1, characterized in that: The connection between the connecting rod and the first circular ring and the connection between the second circular ring are both provided with rounded corners to enhance the connection strength.
7. The steel bar spacer structure according to any one of claims 1 to 5, characterized in that: Reinforcement bones are provided on both sides of the connecting rod to prevent the connecting rod from bending when subjected to force, and the reinforcement bones are perpendicular to the connecting rod.