Beam column mounting assembly and sunlight room
By setting mating grooves on beams and columns and using limiting mating components, the problems of complex welding and material limitations in beam-column structures in existing technologies have been solved, achieving high-quality, low-cost beam-column connections and improving installation efficiency and aesthetics.
Patent Information
- Application Number
- CN202520261886.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-18
AI Technical Summary
In existing technologies, the connection of beam-column structures mainly relies on on-site welding, which leads to complex construction, difficulty in guaranteeing welding quality, high costs and unsatisfactory appearance. In addition, some materials cannot be welded, affecting installation efficiency and aesthetics.
By using beam-column mounting components, first and second mating grooves are set on the beam-column bodies, and mating components and connectors are used to achieve limiting fit between the beam-column bodies, avoiding welding and improving connection quality and assembly efficiency.
It improves the connection quality and assembly efficiency between beams and columns, reduces construction costs, expands the range of materials that can be used, enhances the overall aesthetics, and avoids the complexity and safety risks of welding.
Smart Images

Figure CN223723916U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a sunlight room structure field especially is related to a beam column installation subassembly and sunlight room. BACKGROUND
[0002] In the related art, the connection mode of the beam column structure is mostly through the on-site welding mode, however, the construction process of the on-site welding is relatively complex, the welding quality is difficult to guarantee, and the construction cost is high, and moreover, the appearance after welding is not ideal, affecting the overall aesthetic degree, in addition, part special material cannot carry out the welding operation, thereby seriously affecting the installation efficiency of the beam column structure. SUMMARY
[0003] The utility model discloses at least one of the technical problems in the prior art is solved, for this purpose, one purpose of the utility model is to provide a beam column installation subassembly, the connection quality between the beam column body of the beam column installation subassembly is high, and the assembly efficiency of the beam column installation subassembly is high.
[0004] The utility model discloses further provide a sunlight room.
[0005] The beam column installation subassembly according to the utility model includes: multiple beam column bodies, the beam column body has the first cooperation slot, the first cooperation slot extends along the length direction of the beam column body, in multiple beam column bodies, the extension direction of at least two mutually connected beam column bodies is different;Cooperation subassembly can be with the first cooperation slot of mutually connected beam column body all limit position cooperation, to make the part of cooperation subassembly along the depth direction of the first cooperation slot, the width direction of the first cooperation slot is limited in the first cooperation slot.
[0006] The beam column installation subassembly according to the utility model, by making the part of cooperation subassembly along the depth direction of the first cooperation slot, the width direction of the first cooperation slot is limited in the first cooperation slot, due to the extension direction of at least two beam column bodies is different, can connect multiple beam column bodies, can improve the connection quality between beam column bodies, and, assembly is simple, and the efficiency is high, and the construction cost is low, and moreover, is not limited by the material of beam column body, expands the material application range of beam column body, in addition, it is also favorable to improve the overall aesthetic degree of beam column installation subassembly.
[0007] In some examples of the utility model, the cooperation subassembly includes: cooperation plate and multiple connecting pieces, multiple connecting pieces are all worn in cooperation plate, multiple connecting pieces and the first cooperation slot of mutually connected beam column body limit position cooperation.
[0008] In some examples of the utility model, the first cooperation groove has first bottom wall, first top wall, two first side wall, first bottom wall, first top wall, first side wall all along the length direction of beam column body extension, first top wall, first bottom wall along the depth direction of first cooperation groove interval arrangement, two first side wall along the width direction of first cooperation groove interval arrangement, first top wall includes first sub top wall and second sub top wall, first sub top wall and second sub top wall along the width direction of first cooperation groove interval arrangement to define first gap, the connecting piece is passed in first gap and part structure is limited between first bottom wall, first top wall, first side wall.
[0009] In some examples of the utility model, the connecting piece includes head and rod, the head is located on the side of the cooperation plate away from the beam column body and is screwed with the rod, part of the rod is limited between the first bottom wall, the first top wall and the first side wall.
[0010] In some examples of the utility model, the rod includes: a first rod and a second rod, the first rod is connected with the second rod, the second rod is passed in the first gap, the first rod is limited between the first bottom wall, the first top wall and the first side wall, and along the extension direction of the first rod, the first rod and the second sub top wall The orthogonal projection of the second sub top wall all has coincident area.
[0011] In some examples of the utility model, the beam column body has a second cooperation groove, the second cooperation groove and the first cooperation groove of the same beam column body have the same extension direction and are located outside the first cooperation groove, the cooperation assembly can be limited with the second cooperation groove of the beam column body connected with each other, so that part of the cooperation assembly is limited in the second cooperation groove along the depth direction of the second cooperation groove and the width direction of the second cooperation groove.
[0012] In some examples of the utility model, the second cooperation groove has a second top wall, a second bottom wall, and two second side walls, the second bottom wall, the second top wall, and the second side wall all extend along the length direction of the beam column body, the second top wall and the second bottom wall are spaced apart along the depth direction of the second cooperation groove, and the two second side walls are spaced apart along the width direction of the second cooperation groove, the second top wall includes a third sub top wall and a fourth sub top wall, the third sub top wall and the fourth sub top wall are spaced apart along the width direction of the second cooperation groove to define a second gap, and the connecting piece is passed through the second gap and part of the structure is limited between the second top wall, the second bottom wall, and the second side wall.
[0013] In some examples of the utility model, the connecting piece includes a head and a rod, the head is located on the side of the matching plate away from the beam column body and is screwed with the rod, the rod includes a first rod, a second rod, a third rod and a fourth rod connected in sequence, the second rod is arranged in the first notch, the first rod is limited between the first bottom wall, the first top wall and the first side wall, the fourth rod is arranged in the second notch, and the third rod is limited between the second bottom wall, the second top wall and the second side wall.
[0014] In some examples of the utility model, the first top wall is configured as the second bottom wall.
[0015] In some examples of the utility model, the beam column body has a plurality of first matching grooves, and the first matching grooves of the same beam column body are arranged at intervals.
[0016] In some examples of the utility model, the extension directions of the at least two interconnected beam column bodies are perpendicular.
[0017] In some examples of the utility model, the matching plate includes a first plate body and a second plate body, the connecting end of the first plate body is connected with the connecting end of the second plate body, and the connecting end of the first plate body and the connecting end of the second plate body are equal or not equal in side length, and the first plate body and the second plate body are respectively matched and assembled with the two interconnected beam column bodies.
[0018] According to the sunlight room of the utility model, the beam column mounting assembly is used.
[0019] Additional aspects and advantages of the utility model will be in part apparent and in part pointed out hereinafter in the description of the utility model. BRIEF DESCRIPTION OF DRAWINGS
[0020] The above and / or additional aspects and advantages of the utility model will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the following drawings of which:
[0021] Figure 1 It is a schematic view of the beam column mounting assembly according to the utility model embodiment (the connecting end of the first plate body and the connecting end of the second plate body are equal in side length);
[0022] Figure 2 It is Figure 1 It is an enlarged view of A in Fig.
[0023] Figure 3 It is a schematic view of the connecting piece according to the utility model embodiment;
[0024] Figure 4 It isFigure 2 Enlarged view at B;
[0025] Figure 5 is a schematic view of a beam column mounting assembly according to an embodiment of the present application (the connecting end of the first plate body and the connecting end of the second plate body are not equal in length);
[0026] Figure 6 is a perspective view of a sunlight room according to an embodiment of the present application.
[0027] Reference signs:
[0028] Beam column mounting assembly 100; sunlight room 99;
[0029] Beam column body 10;
[0030] First matching groove 11; first bottom wall 111; first top wall 112; first sub-top wall 1121; second sub-top wall 1122; first notch 113; first side wall 114;
[0031] Second matching groove 12; second top wall 121; second bottom wall 122; third sub-top wall 1221; fourth sub-top wall 1222; second notch 123; second side wall 124;
[0032] Matching assembly 20; matching plate 21; first plate body 211; second plate body 212; connecting piece 22; head 221; rod 222; first rod 2221; second rod 2222; connecting piece group 23. DETAILED DESCRIPTION
[0033] The embodiments of the present application are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application.
[0034] Reference is made below Figures 1-6 to describe a beam column mounting assembly 100 according to an embodiment of the present application.
[0035] As Figures 1-6 shown, the beam column mounting assembly 100 according to an embodiment of the present application comprises: a plurality of beam column bodies 10 and a matching assembly 20.
[0036] The beam column body 10 has a first matching groove 11, and the first matching groove 11 is along the length direction of the beam column body 10 (i.e. Figure 2the Y direction shown), of the plurality of beam column bodies 10, the extension directions of at least two beam column bodies 10 connected to each other are different; the matching assembly 20 can be limitedly matched with the first matching groove 11 of the beam column body 10 connected to each other, so that part of the matching assembly 20 is limited in the depth direction (i.e. the X direction shown), the width direction (i.e. the Z direction shown) of the first matching groove 11. Figure 2 the Y direction shown), of the plurality of beam column bodies 10, the extension directions of at least two beam column bodies 10 connected to each other are different; the matching assembly 20 can be limitedly matched with the first matching groove 11 of the beam column body 10 connected to each other, so that part of the matching assembly 20 is limited in the depth direction (i.e. the X direction shown), the width direction (i.e. the Z direction shown) of the first matching groove 11. Figure 2 the Y direction shown), of the plurality of beam column bodies 10, the extension directions of at least two beam column bodies 10 connected to each other are different; the matching assembly 20 can be limitedly matched with the first matching groove 11 of the beam column body 10 connected to each other, so that part of the matching assembly 20 is limited in the depth direction (i.e. the X direction shown), the width direction (i.e. the Z direction shown) of the first matching groove 11.
[0037] It should be noted that, as shown in the figure, the length direction of the beam column body 10, the depth direction of the first matching groove 11, and the width direction of the first matching groove 11 are described by taking the length direction of one of the two beam column bodies 10, the depth direction of the first matching groove 11, and the width direction of the first matching groove 11 of the beam column body 10 as an example (the beam column body 10 located at the top), which will not be described below. Figure 1
[0038] Among them, the beam column body 10 has the first matching groove 11, the number of the first matching groove 11 of the beam column body 10 can be one, or the number of the first matching groove 11 of the beam column body 10 can be multiple. The number of beam column bodies 10 can be multiple, the number of beam column bodies 10 can be but not limited to two, three, four, etc., as some embodiments of the present application, the number of beam column bodies 10 is two, the extension directions of the two beam column bodies 10 are different, and the first matching grooves 11 of the two beam column bodies 10 all extend along the length direction of the beam column body 10 respectively. As some embodiments of the present application, the number of beam column bodies 10 is three, among them, the extension directions of two beam column bodies 10 are different, and the first matching grooves 11 of the three beam column bodies 10 all extend along the length direction of the beam column body 10 respectively.
[0039] As some embodiments of the present application, as shown in the figure, the matching assembly 20 is limitedly matched with the first matching groove 11 of the two beam column bodies 10, so that part of the matching assembly 20 is limited in the depth direction (i.e. the X direction shown), the width direction (i.e. the Z direction shown) of the first matching groove 11. Among them, the depth direction (i.e. the X direction shown), the width direction (i.e. the Z direction shown), and the length direction (i.e. the Y direction shown) of the first matching groove 11 are perpendicular to each other. Figure 1 Figure 2 Figure 2 Figure 2 Figure 2 Figure 2
[0040] It should be noted that, due to the different extension directions of the at least two beam column bodies, and the part of the matching assembly 20 is limited in the depth direction (i.e. the X direction shown), the width direction (i.e. the Z direction shown) of the first matching groove 11. Figure 2 The X direction shown), the width direction of the first mating groove 11 (i.e. Figure 2 The Z-direction shown is limited to the first mating groove 11, thereby enabling the connection of multiple beams and columns 10. Compared with the technical solution of connecting by on-site welding, it can improve the connection quality between beams and columns 10. Moreover, it does not require hot work, effectively reducing safety risks such as fire. Furthermore, the assembly of multiple beams and columns 10 by mating components 20 results in higher installation efficiency. In addition, it is applicable to beams and columns 10 made of any material, expanding the material range of beams and columns 10.
[0041] The first mating groove 11 can serve as a reinforcing structure to improve the structural strength of the beam-column 10. By giving the beam-column 10 the first mating groove 11, it is beneficial to improve the reliability of the beam-column mounting assembly 100. In addition, by assembling multiple beam-column 10s through the mating assembly 20, the probability of appearance defects can be reduced and the overall aesthetics of the beam-column mounting assembly 100 can be improved.
[0042] Thus, by making a portion of the mating assembly 20 along the depth direction of the first mating groove 11 (i.e., Figure 2 The X direction shown), the width direction of the first mating groove 11 (i.e. Figure 2 The Z direction shown is limited to the first mating groove 11. Since the extension directions of at least two beam-column bodies 10 are different, multiple beam-column bodies 10 can be connected, which can improve the connection quality between beam-column bodies 10. Furthermore, it is easy to assemble, efficient, and has low construction cost. Moreover, it is not limited by the material of the beam-column body 10, which expands the material application range of the beam-column body 10. In addition, it is also conducive to improving the overall aesthetics of the beam-column installation assembly 100.
[0043] As some embodiments of this application, such as Figure 1 As shown, along the depth direction of the first mating groove 11 (i.e. Figure 2 (as shown in the X direction), both sides of the beam-column 10 can have a first mating groove 11.
[0044] In some embodiments of this utility model, such as Figure 1 As shown, the mating assembly 20 includes a mating plate 21 and multiple connectors 22. The multiple connectors 22 are all inserted through the mating plate 21, and the multiple connectors 22 are limited to the first mating groove 11 of the interconnected beam and column 10.
[0045] The number of the connecting pieces 22 can be multiple, and the number of the connecting pieces 22 can be, but is not limited to, two, three, four, etc., as some embodiments of the present application, the number of the beam column bodies 10 is two, and the matching plate 21 has multiple avoiding holes, the number of the avoiding holes is the same as and one-to-one corresponds to the number of the connecting pieces 22, for example, the number of the avoiding holes is two, and the number of the connecting pieces 22 is two, the two connecting pieces 22 are respectively arranged in the two avoiding holes of the matching plate 21 and are respectively limitedly matched with the first matching grooves 11 of the two beam column bodies 10, so that the two beam column bodies 10 are connected. Alternatively, the number of the avoiding holes is eight, and the number of the connecting pieces 22 is eight, the eight connecting pieces 22 are respectively arranged in the eight avoiding holes of the matching plate 21 and are respectively limitedly matched with the first matching grooves 11 of the two beam column bodies 10, so that the two beam column bodies 10 are connected.
[0046] In this way, the multiple beam column bodies 10 can be stably connected by the matching assembly 20, and the multiple beam column bodies 10 can be connected only by matching the matching assembly 20 with the multiple first matching grooves 11 without welding on site, which is beneficial to improve the installation efficiency of the beam column installation assembly 100.
[0047] In some embodiments of the present application, as shown in Figure 1 The multiple connecting pieces 22 are constructed as multiple groups of connecting piece groups 23, each group of connecting piece groups 23 includes at least one connecting piece 22, and the multiple groups of connecting piece groups 23 one-to-one correspond to the first matching grooves 11 of the multiple beam column bodies 10.
[0048] As some embodiments of the present application, the four connecting pieces 22 are constructed as two groups of connecting piece groups 23, each group of connecting piece groups 23 includes two connecting pieces 22, the two beam column bodies 10 each have one first matching groove 11, and the two groups of connecting piece groups 23 one-to-one correspond to the two first matching grooves 11.
[0049] As some embodiments of the present application, the eight connecting pieces 22 are constructed as two groups of connecting piece groups 23, each group of connecting piece groups 23 includes four connecting pieces 22, the two beam column bodies 10 each have two first matching grooves 11, and the two groups of connecting piece groups 23 one-to-one correspond to the first matching grooves 11 of the two beam column bodies 10. Specifically, in each group of connecting piece groups 23, two connecting pieces 22 correspond to one first matching groove 11 of the corresponding beam column body 10, and the other two connecting pieces 22 correspond to the other first matching groove 11 of the corresponding beam column body 10.
[0050] In this way, the multiple beam column bodies 10 can be stably connected by the matching assembly 20, and when each group of connecting piece groups 23 includes at least multiple connecting pieces 22, the stability of the beam column installation assembly 100 can be significantly improved.
[0051] In some embodiments of the present application, as shown in Figure 1 ,Figure 2 and Figure 4 As shown in FIG. 1, the first fitting groove 11 has a first bottom wall 111, a first top wall 112, and two first side walls 114, the first bottom wall 111, the first top wall 112, and the first side walls 114 all extend along the length direction of the beam column body 10 (i.e., the Y direction as shown in FIG. 1), the first top wall 112 and the first bottom wall 111 are spaced apart along the depth direction of the first fitting groove 11 (i.e., the X direction as shown in FIG. 1), and the two first side walls 114 are spaced apart along the width direction of the first fitting groove 11 (i.e., the Z direction as shown in FIG. 1). Figure 2 As shown in FIG. 1, the first fitting groove 11 has a first bottom wall 111, a first top wall 112, and two first side walls 114, the first bottom wall 111, the first top wall 112, and the first side walls 114 all extend along the length direction of the beam column body 10 (i.e., the Y direction as shown in FIG. 1), the first top wall 112 and the first bottom wall 111 are spaced apart along the depth direction of the first fitting groove 11 (i.e., the X direction as shown in FIG. 1), and the two first side walls 114 are spaced apart along the width direction of the first fitting groove 11 (i.e., the Z direction as shown in FIG. 1). Figure 2 As shown in FIG. 1, the first fitting groove 11 has a first bottom wall 111, a first top wall 112, and two first side walls 114, the first bottom wall 111, the first top wall 112, and the first side walls 114 all extend along the length direction of the beam column body 10 (i.e., the Y direction as shown in FIG. 1), the first top wall 112 and the first bottom wall 111 are spaced apart along the depth direction of the first fitting groove 11 (i.e., the X direction as shown in FIG. 1), and the two first side walls 114 are spaced apart along the width direction of the first fitting groove 11 (i.e., the Z direction as shown in FIG. 1). Figure 2 As shown in FIG. 1, the first fitting groove 11 has a first bottom wall 111, a first top wall 112, and two first side walls 114, the first bottom wall 111, the first top wall 112, and the first side walls 114 all extend along the length direction of the beam column body 10 (i.e., the Y direction as shown in FIG. 1), the first top wall 112 and the first bottom wall 111 are spaced apart along the depth direction of the first fitting groove 11 (i.e., the X direction as shown in FIG. 1), and the two first side walls 114 are spaced apart along the width direction of the first fitting groove 11 (i.e., the Z direction as shown in FIG. 1). Figure 2 As shown in FIG. 1, the first fitting groove 11 has a first bottom wall 111, a first top wall 112, and two first side walls 114, the first bottom wall 111, the first top wall 112, and the first side walls 114 all extend along the length direction of the beam column body 10 (i.e., the Y direction as shown in FIG. 1), the first top wall 112 and the first bottom wall 111 are spaced apart along the depth direction of the first fitting groove 11 (i.e., the X direction as shown in FIG. 1), and the two first side walls 114 are spaced apart along the width direction of the first fitting groove 11 (i.e., the Z direction as shown in FIG. 1).
[0052] As shown in FIG. 1, the first fitting groove 11 has a first bottom wall 111, a first top wall 112, and two first side walls 114, the first bottom wall 111, the first top wall 112, and the first side walls 114 all extend along the length direction of the beam column body 10 (i.e., the Y direction as shown in FIG. 1), the first top wall 112 and the first bottom wall 111 are spaced apart along the depth direction of the first fitting groove 11 (i.e., the X direction as shown in FIG. 1), and the two first side walls 114 are spaced apart along the width direction of the first fitting groove 11 (i.e., the Z direction as shown in FIG. 1). Figure 2 As shown in FIG. 1, the first fitting groove 11 has a first bottom wall 111, a first top wall 112, and two first side walls 114, the first bottom wall 111, the first top wall 112, and the first side walls 114 all extend along the length direction of the beam column body 10 (i.e., the Y direction as shown in FIG. 1), the first top wall 112 and the first bottom wall 111 are spaced apart along the depth direction of the first fitting groove 11 (i.e., the X direction as shown in FIG. 1), and the two first side walls 114 are spaced apart along the width direction of the first fitting groove 11 (i.e., the Z direction as shown in FIG. 1). Figure 2 As shown in FIG. 1, the first fitting groove 11 has a first bottom wall 111, a first top wall 112, and two first side walls 114, the first bottom wall 111, the first top wall 112, and the first side walls 114 all extend along the length direction of the beam column body 10 (i.e., the Y direction as shown in FIG. 1), the first top wall 112 and the first bottom wall 111 are spaced apart along the depth direction of the first fitting groove 11 (i.e., the X direction as shown in FIG. 1), and the two first side walls 114 are spaced apart along the width direction of the first fitting groove 11 (i.e., the Z direction as shown in FIG. 1). Figure 2 As shown in FIG. 1, the first fitting groove 11 has a first bottom wall 111, a first top wall 112, and two first side walls 114, the first bottom wall 111, the first top wall 112, and the first side walls 114 all extend along the length direction of the beam column body 10 (i.e., the Y direction as shown in FIG. 1), the first top wall 112 and the first bottom wall 111 are spaced apart along the depth direction of the first fitting groove 11 (i.e., the X direction as shown in FIG. 1), and the two first side walls 114 are spaced apart along the width direction of the first fitting groove 11 (i.e., the Z direction as shown in FIG. 1). Figure 3 As shown in FIG. 1, the first fitting groove 11 has a first bottom wall 111, a first top wall 112, and two first side walls 114, the first bottom wall 111, the first top wall 112, and the first side walls 114 all extend along the length direction of the beam column body 10 (i.e., the Y direction as shown in FIG. 1), the first top wall 112 and the first bottom wall 111 are spaced apart along the depth direction of the first fitting groove 11 (i.e., the X direction as shown in FIG. 1), and the two first side walls 114 are spaced apart along the width direction of the first fitting groove 11 (i.e., the Z direction as shown in FIG. 1).
[0053] The first matching groove 11 is reasonably structured, and the connecting piece 22 is effectively limited, so that the connecting piece 22 can only slide along the extension direction of the corresponding first matching groove 11, and when the plurality of connecting pieces 22 are limited and matched with the first matching grooves 11 of the plurality of beam column bodies 10, the plurality of connecting pieces 22 cannot move in any direction due to the different extension directions of the first matching grooves 11 of the at least two beam column bodies 10, so that the beam column bodies 10 can be firmly and reliably connected, and the connection stability between the beam column bodies 10 is improved. In addition, the design does not need a complex welding process, can reduce the installation difficulty, and is favorable for improving the installation efficiency.
[0054] In some embodiments of the utility model, as shown in Figure 4 and Figure 3 The connecting piece 22 comprises a head 221 and a rod 222, the head 221 is located on the side of the matching plate 21 away from the beam column body 10 and is screwed with the rod 222, and part of the rod 222 is limited between the first bottom wall 111, the first top wall 112 and the first side wall 114.
[0055] The head 221 is located on the side of the matching plate 21 away from the beam column body 10, and the head 221 is connected with the rod 222 in a screwing mode, as some embodiments of the utility model, during assembly, the rod 222 can be first slid into the corresponding first matching groove 11 along the extension direction of the first matching groove 11 from the opening of the corresponding first matching groove 11, and part of the rod 222 is limited between the first bottom wall 111, the first top wall 112 and the first side wall 114, then the matching plate 21 is installed in place so that the plurality of connecting pieces 22 are all arranged in the matching plate 21, then the head 211 is installed, the head 221 is located on the side of the matching plate 21 away from the beam column body 10 and is screwed with the rod 222, and the end of the head 221 towards the rod 222 abuts against the matching plate 21, so that the plurality of beam column bodies 10 are stably connected through the connecting piece 22 and the matching plate 21.
[0056] The structure of the connecting piece 22 is reasonably designed, the connecting piece 22 can be quickly installed and disassembled, and on-site installation and disassembly are facilitated, meanwhile, the rod 222 is limited between the first bottom wall 111, the first top wall 112 and the first side wall 114, so that the risk that the connecting piece 22 is loosened or falls off under stress is effectively reduced, the stability of the connecting piece 22 is improved, and the connection between the plurality of beam column bodies 10 is stable.
[0057] In some embodiments of the utility model, as shown in Figure 4 and Figure 2As shown, the rod part 222 comprises a first rod part 2221 and a second rod part 2222, the first rod part 2221 is connected with the second rod part 2222, the second rod part 2222 is arranged in the first gap 113, the first rod part 2221 is limited between the first bottom wall 111, the first top wall 112 and the first side wall 114, and along the extension direction of the first rod part 2221 (i.e. Figure 1 The orthogonal projection of the first rod part 2221 has an overlapping area with the orthogonal projection of the first sub-top wall 1121 and the orthogonal projection of the second sub-top wall 1122.
[0058] The connection mode of the first rod part 2221 and the second rod part 2222 can be, but is not limited to, screwing, clamping and the like, as some embodiments of the present application, the first rod part 2221 and the second rod part 2222 are connected by screwing, as some embodiments of the present application, the first rod part 2221 and the second rod part 2222 are integrally formed.
[0059] The orthogonal projection of the first rod part 2221 has an overlapping area with the orthogonal projection of the first sub-top wall 1121 and the orthogonal projection of the second sub-top wall 1122.
[0060] As some embodiments of the present application, the thickness of the first rod part 2221 can be adjusted according to the distance between the first bottom wall 111 and the first top wall 112, to ensure that the first rod part 2221 can be stably limited between the first bottom wall 111 and the first top wall 112.
[0061] Such arrangement can reliably limit the first rod part 2221, reduce the risk of loosening or falling off of the connecting piece 22 when stressed, to make the connection between the plurality of beam column bodies 10 stable.
[0062] In some embodiments of the present application, as shown in Figure 2As shown, the beam-column 10 has a second mating groove 12. The second mating groove 12 of the same beam-column 10 extends in the same direction as the first mating groove 11 and is located outside the first mating groove 11. The mating assembly 20 can be limited to fit with the second mating grooves 12 of the interconnected beam-column 10, so that part of the mating assembly 20 extends along the depth direction of the second mating groove 12 (i.e., Figure 2 The X direction shown), the width direction of the second mating groove 12 (i.e. Figure 2 The Z-direction shown is limited to the second mating groove 12.
[0063] In this case, the second mating groove 12 of the same beam column 10 extends in the same direction as the first mating groove 11, and the second mating groove 12 is located outside the first mating groove 11.
[0064] As some embodiments of this application, the mating component 20 is limited to the second mating groove 12 of both beams and columns 10, so that a portion of the mating component 20 is aligned along the depth direction of the second mating groove 12 (i.e., Figure 2 The X direction shown), the width direction of the second mating groove 12 (i.e. Figure 2 The Z-direction shown is confined within the second mating groove 12. The depth direction of the second mating groove 12 (i.e.,...) Figure 2 The X direction shown), the width direction of the second mating groove 12 (i.e. Figure 2 The Z-direction shown), the extension direction of the second mating groove 12 (i.e. Figure 4 Any two directions in the Y direction shown are perpendicular to each other.
[0065] This configuration allows for the limiting of the mating components 20 via the second mating groove 12 and the first mating groove 11, thereby further improving the connection quality between beam and column bodies 10, reducing the risk of separation of multiple beam and column bodies 10, and improving the reliability of the beam and column installation components 100.
[0066] In some embodiments of this utility model, such as Figure 2 and Figure 2 As shown, the second mating groove 12 has a second top wall 121, a second bottom wall 122, and two second side walls 124. The second bottom wall 122, the second top wall 121, and the second side walls 124 are all along the length direction of the beam-column 10 (i.e., Figure 2 Extending in the Y direction (as shown), the second top wall 121 and the second bottom wall 122 are spaced apart along the depth direction of the second mating groove 12, and the two second side walls 124 extend along the width direction of the second mating groove 12 (i.e., along the Y direction). Figure 2 The second top wall 121 is spaced apart in the Z direction (as shown), and includes a third sub-top wall 1221 and a fourth sub-top wall 1222. The third sub-top wall 1221 and the fourth sub-top wall 1222 are spaced apart along the width direction of the second mating groove 12 (i.e., Figure 2The second top wall 121, the second bottom wall 122 and the second side wall 124 are arranged in the length direction of the beam column body 10 (i.e. the Y direction shown in the figure), and extend in the depth direction of the second matching groove 12 (i.e. the X direction shown in the figure).
[0067] The second top wall 121, the second bottom wall 122 and the second side wall 124 are arranged in the length direction of the beam column body 10 (i.e. the Y direction shown in the figure), and extend in the depth direction of the second matching groove 12 (i.e. the X direction shown in the figure). Figure 2 The second top wall 121, the second bottom wall 122 and the second side wall 124 are arranged in the length direction of the beam column body 10 (i.e. the Y direction shown in the figure), and extend in the depth direction of the second matching groove 12 (i.e. the X direction shown in the figure). Figure 2 The second top wall 121, the second bottom wall 122 and the second side wall 124 are arranged in the length direction of the beam column body 10 (i.e. the Y direction shown in the figure), and extend in the depth direction of the second matching groove 12 (i.e. the X direction shown in the figure). Figures 1-4 The second top wall 121, the second bottom wall 122 and the second side wall 124 are arranged in the length direction of the beam column body 10 (i.e. the Y direction shown in the figure), and extend in the depth direction of the second matching groove 12 (i.e. the X direction shown in the figure). Figure 2 The second top wall 121, the second bottom wall 122 and the second side wall 124 are arranged in the length direction of the beam column body 10 (i.e. the Y direction shown in the figure), and extend in the depth direction of the second matching groove 12 (i.e. the X direction shown in the figure).
[0068] The second top wall 121, the second bottom wall 122 and the second side wall 124 are arranged in the length direction of the beam column body 10 (i.e. the Y direction shown in the figure), and extend in the depth direction of the second matching groove 12 (i.e. the X direction shown in the figure).
[0069] By making the extension direction of the second matching groove 12 the same as that of the first matching groove 11 and locating the second matching groove 12 outside the first matching groove 11, the connecting piece 22 can be simultaneously limited in the second matching groove 12 and the first matching groove 11, and the fixing effect of the connecting piece 22 is enhanced by double limitation, which can significantly improve the structural strength of the beam-column mounting assembly 100.
[0070] In some embodiments of the utility model, as shown in Figure 4 The connecting piece 22 includes a head portion 221 and a rod portion 222, the head portion 221 is located on the side of the matching plate 21 away from the beam-column body 10 and is screwed with the rod portion 222, the rod portion 222 includes a first rod portion 2221, a second rod portion 2222, a third rod portion (not shown in the figure) and a fourth rod portion (not shown in the figure) connected in sequence, the second rod portion 2222 is arranged through the first notch 113, the first rod portion 2221 is limited between the first bottom wall 111, the first top wall 112 and the first side wall 114, and the fourth rod portion is arranged through the second notch 123, and the third rod portion is limited between the second bottom wall 122, the second top wall 121 and the second side wall 124.
[0071] The connecting mode of the first rod portion 2221, the second rod portion 2222, the third rod portion and the fourth rod portion can be, but is not limited to, threaded connection, clamping and the like, and as some embodiments of the application, the first rod portion 2221, the second rod portion 2222, the third rod portion and the fourth rod portion are integrally formed.
[0072] As some embodiments of the application, the third rod portion has a coincident area with the normal projection of the third sub-top wall 1221 and the normal projection of the fourth sub-top wall 1222, specifically, a plane is set, the plane is perpendicular to the extension direction of the third rod portion, that is, the normal of the plane is parallel to the extension direction of the third rod portion, along the extension direction of the third rod portion, the normal projection of the third rod portion on the plane has a coincident area with the normal projection of the third sub-top wall 1221 on the plane and the normal projection of the fourth sub-top wall 1222 on the plane, in other words, the third sub-top wall 1221 and the fourth sub-top wall 1222 can limit the third rod portion to limit the third rod portion between the second top wall 121 and the second bottom wall 122.
[0073] As some embodiments of the application, the thickness of the third rod portion can be adjusted according to the distance between the second top wall 121 and the second bottom wall 122 to ensure that the third rod portion can be stably limited between the second top wall 121 and the second bottom wall 122. Moreover, the diameter of the fourth rod portion can match the width of the second notch 123 to ensure that the fourth rod portion can be smoothly arranged in the second notch 123 and reduce the shaking amplitude of the fourth rod portion. In addition, the diameter of the third rod portion can match the spacing of the two second side walls 124 to enable the third rod portion to be stably limited between the two second side walls 124.
[0074] In this way, the first rod portion 2221 and the third rod portion can be reliably limited, the risk of loosening or falling off of the connecting piece 22 under stress can be effectively reduced, and the connection between the plurality of beam column bodies 10 is more stable.
[0075] In some embodiments of the utility model, as shown in Figure 1 and Figure 1 The first top wall 112 is configured as the second bottom wall 122, that is, the first top wall 112 of the first matching groove 11 can be configured as the second bottom wall 122 of the second matching groove 12. By configuring the first top wall 112 as the second bottom wall 122, the design of the beam column body 10 can be optimized, the structure of the beam column body 10 is reasonable, the manufacturing difficulty of the beam column body 10 can be reduced, and the production cost of the beam column body 10 can be reduced.
[0076] In some embodiments of the utility model, as shown in Figure 1 The beam column body 10 has a plurality of first matching grooves 11, and the plurality of first matching grooves 11 of the same beam column body 10 are arranged at intervals.
[0077] The number of the first matching grooves 11 can be multiple, and the number of the first matching grooves 11 can be, but is not limited to, two, three, four, etc. As some embodiments of the present application, the beam column body 10 has two first matching grooves 11, and the two first matching grooves 11 are arranged at intervals.
[0078] In this way, the mounting position of the connecting piece 22 and the beam column body 10 can be increased, the risk of local stress concentration of the beam column body 10 can be reduced, the connection strength and stability of the connecting piece 22 and the beam column body 10 can be improved, the firmness of the connection between the beam column bodies 10 can be improved, and the structural strength of the beam column mounting assembly 100 is improved.
[0079] In some embodiments of the utility model, as shown in Figure 5 The extension directions of at least two connected beam column bodies 10 are perpendicular.
[0080] As some embodiments of the present application, a plurality of beam column bodies 10 are connected, and the extension directions of two connected beam column bodies 10 are perpendicular. As some embodiments of the present application, a plurality of beam column bodies 10 are connected, and the extension directions of any two connected beam column bodies 10 are perpendicular.
[0081] As some embodiments of the present application, the two beam column bodies 10 with perpendicular extension directions can be configured as a "L" type structure, or the two beam column bodies 10 with perpendicular extension directions can be configured as a "T" type structure.
[0082] By making the extension directions of the at least two beam column bodies 10 perpendicular, the spatial stability and structural strength of the beam column mounting assembly 100 can be effectively improved, and the bending resistance and torsion resistance of the beam column mounting assembly 100 can be improved, thereby facilitating improvement of the use reliability of the beam column mounting assembly 100.
[0083] In some embodiments of the utility model, as shown in Figure 1 and Figure 5 , the matching plate 21 comprises a first plate body 211 and a second plate body 212, the connecting end of the first plate body 211 is connected with the connecting end of the second plate body 212, and the connecting end of the first plate body 211 and the connecting end of the second plate body 212 are equal or unequal in length, and the first plate body 211 and the second plate body 212 are respectively matched and assembled with the two beam column bodies 10 connected with each other.
[0084] The connecting mode of the connecting end of the first plate body 211 and the connecting end of the second plate body 212 can be welding, bolt connection and the like, but is not limited thereto, as some embodiments of the utility model, the connecting end of the first plate body 211 and the connecting end of the second plate body 212 are connected by welding, as some embodiments of the utility model, the first plate body 211 and the second plate body 212 are integrally formed.
[0085] As some embodiments of the utility model, as shown in Figure 2 , the connecting end of the first plate body 211 and the connecting end of the second plate body 212 are equal in length (i.e. the matching plate 21 is configured as a rectangular plate, and for the rectangular plate, it can be understood that the cross section of the matching plate 21 is rectangular), and the first plate body 211 and the second plate body 212 are respectively matched and assembled with the two beam column bodies 10 connected with each other after being connected.
[0086] As some embodiments of the utility model, as shown in Figure 2 , the connecting end of the first plate body 211 and the connecting end of the second plate body 212 are unequal in length (i.e. the matching plate 21 can be configured as a "T" shaped plate, and for the "T" shaped plate, it can be understood that the cross section of the matching plate 21 is similar to "T" shape), and the first plate body 211 and the second plate body 212 are respectively matched and assembled with the two beam column bodies 10 connected with each other after being connected.
[0087] In this way, the appropriate matching plate 21 can be selected to be matched and assembled with the two beam column bodies 10 connected with each other according to actual conditions, the risk of excessive local load is reduced, the stability and structural strength of the beam column mounting assembly 100 are improved, and the bending resistance and torsion resistance of the beam column mounting assembly 100 are improved, thereby facilitating improvement of the use reliability of the beam column mounting assembly 100.
[0088] According to the sunlight room 99 of the utility model, the beam column mounting assembly 100 of the above-mentioned embodiments is adopted, and part of the matching assembly 20 is arranged along the depth direction of the first matching groove 11 (i.e. The width direction of the first fitting groove 11 (i.e. The first fitting groove 11 is limited in the Z direction, and the extension directions of the at least two beam column bodies 10 are different, so that the plurality of beam column bodies 10 can be connected, the connection quality between the beam column bodies 10 can be improved, the assembly is simple, efficient, and low in construction cost, and is not limited by the material of the beam column body 10, thereby expanding the material application range of the beam column body 10, and further improving the overall aesthetics of the beam column mounting assembly 100.
[0089] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0090] In the description of the present application, "first feature", "second feature" can include one or more features.
[0091] In the description of the present application, "a plurality of" means two or more.
[0092] In the description of the present application, the first feature "above" or "below" the second feature can include direct contact between the first and second features, or indirect contact between the first and second features through another feature therebetween.
[0093] In the description of the present application, the first feature "above", "above" and "above" the second feature includes the first feature directly above and obliquely above the second feature, or only indicates that the first feature is higher than the second feature in horizontal height.
[0094] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the exemplary description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0095] Although the embodiments of the utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the utility model, and the scope of the utility model is defined by the claims and their equivalents.
Claims
1. A beam column mounting assembly, characterized by, The utility model relates to a kind of beam column body and its connecting structure, including: Multiple beam column bodies, the beam column body has first mating slot, the first mating slot extends along the length direction of the beam column body, in multiple the beam column body, the extension direction of at least two mutually connected beam column bodies is different; Matching assembly, the first mating slot of the beam column body can be matched with mutually connected and positioned, so that the part of the matching assembly is positioned in the first mating slot along the depth direction of the first mating slot, the width direction of the first mating slot.
2. The beam post mounting assembly of claim 1, wherein, The matching assembly includes: a plurality of connecting pieces are provided in the matching plate, and the connecting pieces are positioned with the first mating slot of the beam column body.
3. The beam post mounting assembly of claim 2, wherein, The first mating slot has a first bottom wall, a first top wall, two first side walls, the first bottom wall, the first top wall, the first side wall all extend along the length direction of the beam column body, the first top wall, the first bottom wall is spaced apart along the depth direction of the first mating slot, two the first side wall is spaced apart along the width direction of the first mating slot, the first top wall includes first sub-top wall and second sub-top wall, the first sub-top wall and the second sub-top wall are spaced apart along the width direction of the first mating slot to define a first gap, the connecting piece is provided in the first gap and part structure is positioned between the first bottom wall, the first top wall, the first side wall.
4. The beam post mounting assembly of claim 3, wherein, The connecting piece includes a head and a rod portion, the head is located on the side of the matching plate away from the beam column body and is screwed with the rod portion, part of the rod portion is positioned between the first bottom wall, the first top wall, the first side wall.
5. The beam post mounting assembly of claim 4, wherein, The rod portion includes: a first rod portion and a second rod portion, the first rod portion is connected with the second rod portion, the second rod portion is provided in the first gap, the first rod portion is positioned between the first bottom wall, the first top wall, the first side wall, and along the extension direction of the first rod portion, the first rod portion Orthogonal projection and the orthogonal projection of the second sub-top wall all have coincident area with the orthogonal projection of the first sub-top wall.
6. The beam post mounting assembly of claim 3, wherein, The beam column body has a second mating slot, the second mating slot of the same beam column body is the same as the extension direction of the first mating slot and is located outside the first mating slot, and the matching assembly can be positioned with the second mating slot of the beam column body connected with each other, so that part of the matching assembly is positioned in the second mating slot along the depth direction of the second mating slot, the width direction of the second mating slot.
7. The beam post mounting assembly of claim 6, wherein, The second fitting groove has a second top wall, a second bottom wall, and two second side walls, the second bottom wall, the second top wall, and the second side walls all extend along the length direction of the beam column body, the second top wall and the second bottom wall are spaced apart along the depth direction of the second fitting groove, and the two second side walls are spaced apart along the width direction of the second fitting groove, the second top wall comprises a third sub-top wall and a fourth sub-top wall, the third sub-top wall and the fourth sub-top wall are spaced apart along the width direction of the second fitting groove to define a second gap, and the connecting piece is arranged in the second gap and partially arranged between the second top wall, the second bottom wall, and the second side walls.
8. The beam post mounting assembly of claim 7, wherein, The connecting piece comprises a head portion and a rod portion, the head portion is arranged on the side of the fitting plate away from the beam column body and is screwed with the rod portion, the rod portion comprises a first rod portion, a second rod portion, a third rod portion, and a fourth rod portion connected in sequence, the second rod portion is arranged in the first gap, the first rod portion is arranged between the first bottom wall, the first top wall, and the first side wall, the fourth rod portion is arranged in the second gap, and the third rod portion is arranged between the second bottom wall, the second top wall, and the second side wall.
9. The beam post mounting assembly of claim 7, wherein, The first top wall is configured as the second bottom wall.
10. The beam post mounting assembly of any one of claims 1-9, wherein, The beam column body has a plurality of the first fitting grooves, and the plurality of the first fitting grooves of the same beam column body are arranged in a spaced apart manner. And / or, the extension directions of the at least two interconnected beam column bodies are perpendicular.
11. The beam post mounting assembly of any one of claims 2-9, wherein, The fitting plate comprises a first plate body and a second plate body, the connecting end of the first plate body is connected with the connecting end of the second plate body, and the connecting end of the first plate body and the connecting end of the second plate body have equal or unequal side lengths, and the first plate body and the second plate body are respectively fitted and assembled with the two interconnected beam column bodies.
12. A conservatory characterised in that The beam column mounting assembly comprises the beam column mounting assembly according to any one of claims 1-11.