Ridge connecting piece
By designing a detachable adapter to adapt the angle of the inclined beam, the construction complexity and cost problems caused by the angle changes of the inclined beam in the prior art are solved, and the stability and simplicity are improved.
Patent Information
- Application Number
- CN202422501220.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-10-15
AI Technical Summary
The angle changes of inclined beams in the existing "Photovoltaic Xiaoyang Building" require "V" shaped connecting plates of multiple angles, which increases construction complexity and cost.
A roof connection member is designed, including a first connection part, a second connection part and a detachable adapter part. By replacing the bending angle of the adapter part, supporting and fixing is achieved to avoid replacing the entire connection member.
It reduces the processing complexity and cost of roof joints, improves the stability of connection and the convenience of disassembly and assembly.
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Figure CN223214744U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of photovoltaic buildings, in particular to a ridge connector. Background Art
[0002] A "photovoltaic small sun-house" is a building decoration component that uses solar energy to generate electricity, also known as a "distributed rooftop power station." Specifically, a photovoltaic small sun-house utilizes the perfect combination of photovoltaic modules and rooftop components, transforming a reinforced concrete roof into one that not only generates energy and generates profits, but also provides practical protection from the elements.
[0003] The ridge of the existing "photovoltaic small sun building" is composed of two inclined beams arranged at intervals and arranged in a "human" shape. The two inclined beams are connected and fixed by setting a "V"-shaped ridge connecting plate. Among them, one side of the ridge connecting plate is connected and fixed to the bottom of one inclined beam, and the other side of the ridge connecting plate is connected and fixed to the bottom of the other inclined beam to improve the stability of the relative position between the two inclined beams. When the angle of the two inclined beams changes, the ridge connecting plate of the corresponding angle needs to be replaced, resulting in the need to process "V"-shaped connecting plates at various angles, which increases the complexity of the construction of the "photovoltaic small sun building" and increases the construction cost. Utility Model Content
[0004] In view of this, the utility model provides a ridge connector to solve the problem that in order to adapt to the different placement angles of the two inclined beams in the existing "photovoltaic small sun building", the processing of "V"-shaped connecting plates with multiple angles is required, which increases the complexity of the construction of the "photovoltaic small sun building" and increases the construction cost.
[0005] The utility model provides a ridge connector for fixing a ridge, wherein the ridge comprises a first oblique beam and a second oblique beam at an angle to each other, wherein the first oblique beam and the second oblique beam are arranged at intervals at their ends close to each other; the ridge connector comprises:
[0006] a first connecting portion, fixedly connected to at least one side of the first oblique beam;
[0007] a second connecting portion fixedly connected to at least one side of the second oblique beam, the second connecting portion and the first connecting portion being located on the same side;
[0008] The transition portion is detachably connected between the first connection portion and the second connection portion, and the transition portion includes a bending portion, and a bending angle of the bending portion is greater than or equal to an angle between the first oblique beam and the second oblique beam.
[0009] Beneficial Effects: The adapter can be detachably connected to the first and second connecting parts. Therefore, when supporting the first and second inclined beams placed at various angles is required, the adapter can be replaced to adapt its bending angle to the placement angle of the first and second inclined beams, thereby achieving support and fixation of the roof ridge without having to replace the entire ridge connector. Compared to related technologies, the present invention reduces the processing complexity of the ridge connector, thereby achieving the technical effect of reducing the processing cost of the ridge connector.
[0010] In an optional embodiment, the adapter portion and the first connecting portion, and / or the adapter portion and the second connecting portion are fixed by snap connection;
[0011] And / or, the first connecting portion is fixedly connected to at least two sides of the first oblique beam, the second connecting portion is fixedly connected to at least two sides of the second oblique beam, and the first connecting portion and the second connecting portion located on the same side are connected via the transition portion.
[0012] Beneficial effect: The adapter part and the first connection part, and / or the adapter part and the second connection part are fixed by snap connection, which not only realizes the detachable connection between the adapter part and the first connection part, and / or between the adapter part and the second connection part, so as to achieve the technical effect of improving the ease of assembly and disassembly between the adapter part and the first connection part, and / or between the adapter part and the second connection part. At the same time, it can also achieve the technical effect of improving the stability of the relative position between the adapter part and the first connection part, and / or between the adapter part and the second connection part. By fixing the first connection part to at least two sides of the first oblique beam, and fixing the second connection part to at least two sides of the second oblique beam, the support fixing points of the first oblique beam and the second oblique beam can be improved, thereby achieving the technical effect of improving the stability of the connection and fixation between the first oblique beam and the second oblique beam.
[0013] In an optional embodiment, the ridge connector includes:
[0014] A fastener fixedly connects the first connection portion and the first oblique beam, and / or fixedly connects the second connection portion and the second oblique beam.
[0015] In an optional embodiment, the fastener includes:
[0016] a first fastening portion;
[0017] The second fastening portion passes through the first connecting portion and the first oblique beam, and / or passes through the second connecting portion and the second oblique beam, and is fixedly connected to the first fastening portion.
[0018] Beneficial effect: Through the connection and fixation between the first fastening part and the second fastening part, the position of the first connecting part and the first oblique beam, and / or the second connecting part and the second oblique beam can be fixed, thereby achieving the technical effect of improving the connection stability between the first connecting part and the first oblique beam, and / or the second connecting part and the second oblique beam.
[0019] In an optional embodiment, a first positioning member is provided at one end of the second fastening portion close to the first fastening portion, a second positioning member is provided on the first oblique beam and / or the second oblique beam, and the first positioning member is clamped with the second positioning member.
[0020] Beneficial Effect: The engagement of the first and second positioning members improves the stability of the second fastening portion, preventing the second fastening portion from falling off during the installation process of the first and second fastening portions, which could affect the processing progress. Furthermore, by improving the stability of the second fastening portion, the stability of the connection between the second fastening portion and the first fastening portion is further improved, thereby achieving the technical effect of improving the stability of the connection between the ridge connector and the first oblique beam, and / or the ridge connector and the second oblique beam.
[0021] In an optional embodiment, the first positioning member is a positioning column, and the second positioning member is a positioning groove.
[0022] Beneficial effect: By using the positioning column as the first positioning member and the positioning groove as the second positioning member, the first positioning member and the second positioning member have a simple structure and are easy to process, thereby achieving the technical effect of improving the convenience of positioning the second fastening part.
[0023] In an optional embodiment, the bottom size of the positioning groove is larger than the notch size of the positioning groove;
[0024] The first positioning member has at least a long side and a short side. The first positioning member has an installation state in which the short side enters the positioning groove from the notch, and a fixed state in which the long side blocks the notch.
[0025] Beneficial effect: The second fastening part is installed by passing the short side of the first positioning member through the notch of the positioning slot and contacting and connecting with the bottom of the positioning slot. The second fastening part is then rotated until the long side of the first positioning member can block the notch, making it impossible for the second fastening part to pass through the notch, thereby fixing the position of the second fastening part.
[0026] In an optional embodiment, the first fastening part is a nut, and the second fastening part is a bolt.
[0027] Beneficial effect: By setting the first fastening part as a nut and the second fastening part as a bolt, the first fastening part and the second fastening part are both standard parts and easy to obtain, thereby achieving the technical effect of reducing the difficulty of obtaining fasteners.
[0028] In an optional embodiment, the cross-section of the first connecting portion and / or the second connecting portion and / or the transition portion is U-shaped.
[0029] Beneficial effect: Through the "U"-shaped design, the first oblique beam and the second oblique beam can be placed in the "U"-shaped space, so that the ridge connector can support the first oblique beam and the second oblique beam and limit the degree of freedom, which can improve the impact resistance of the first oblique beam and the second oblique beam, thereby achieving the technical effect of improving the position stability of the first oblique beam and the second oblique beam.
[0030] In an optional embodiment, the ridge connector includes:
[0031] The guide structure is provided between the first connecting portion and the first oblique beam, and / or between the second connecting portion and the second oblique beam.
[0032] Beneficial effect: Through the design of the guiding structure, not only can the position between the first connecting part and the first oblique beam, and / or between the second connecting part and the second oblique beam be limited, so as to improve the stability of the relative position between the first connecting part and the first oblique beam, and / or between the second connecting part and the second oblique beam, but it can also guide the assembly between the first connecting part and the first oblique beam, and / or the second connecting part and the second oblique beam, so as to achieve the technical effect of enhancing the smoothness of the assembly. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0034] Figure 1 This is a partial structural diagram of the ridge connector and the ridge assembly in this embodiment;
[0035] Figure 2 Schematic diagram of the structure of the ridge connector in this embodiment;
[0036] Figure 3 for Figure 2 The main view;
[0037] Figure 4 for Figure 2Left view of;
[0038] Figure 5 Schematic diagram of the structure of the first oblique beam in this embodiment;
[0039] Figure 6 This is a schematic structural diagram of the connection between the first oblique beam and the ridge connector in this embodiment;
[0040] Figure 7 This is a structural diagram of the assembly of the clamping block and the adapter in this embodiment;
[0041] Figure 8 This is a schematic structural diagram of the first positioning member and the second positioning member in the installed state in this embodiment;
[0042] Figure 9 Schematic diagram of the structure of the first positioning member and the second positioning member in a fixed state in this embodiment.
[0043] Description of reference numerals:
[0044] 1. First oblique beam; 2. Second oblique beam;
[0045] 3. First connecting portion; 301. First through hole; 302. Block; 3021. Protrusion; 3022. Elastic buckle;
[0046] 4. Second connecting portion; 401. Second through hole;
[0047] 5. Adapter; 501. Second positioning member; 5011. Notch; 5012. Slot bottom; 502. Card slot;
[0048] 601, first fastening portion; 602, second fastening portion; 6021, first positioning member; 60211, short side; 60212, long side;
[0049] 7. Guidance structure. DETAILED DESCRIPTION
[0050] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without making creative efforts shall fall within the scope of protection of the present invention.
[0051] The following combination Figures 1 to 9 , describing the embodiments of the present utility model.
[0052] According to an embodiment of the present invention, a ridge connector is provided for fixing a ridge, wherein the ridge comprises a first oblique beam 1 and a second oblique beam 2 at an angle to each other, and the first oblique beam 1 and the second oblique beam 2 are arranged at intervals at their ends close to each other;
[0053] Ridge connectors include:
[0054] A first connecting portion 3 is fixedly connected to at least one side of the first oblique beam 1;
[0055] The second connecting portion 4 is fixedly connected to at least one side of the second oblique beam 2, and the second connecting portion 4 and the first connecting portion 3 are located on the same side;
[0056] The transition portion 5 is detachably connected between the first connection portion 3 and the second connection portion 4 . The transition portion 5 includes a bending portion, and a bending angle of the bending portion is greater than or equal to the angle between the first oblique beam 1 and the second oblique beam 2 .
[0057] The adapter 5 can be detachably connected to the first connecting portion 3 and the second connecting portion 4. Based on this, when it is necessary to support the first oblique beam 1 and the second oblique beam 2 placed at various angles, the adapter 5 can be replaced so that the bending angle of the adapter 5 can be adapted to the placement angle of the first oblique beam 1 and the second oblique beam 2. This can achieve support and fixation of the roof ridge without replacing the entire roof ridge connector. Compared with related technologies, the present invention reduces the processing complexity of the roof ridge connector, thereby achieving the technical effect of reducing the processing cost of the roof ridge connector.
[0058] Preferably, the bending angle of the bending portion is equal to the angle between the first oblique beam 1 and the second oblique beam 2. Based on this, the adapter 5 can support and fix the first oblique beam 1 and the second oblique beam 2, further increasing the stability of the fixed position of the first oblique beam 1 and the second oblique beam 2.
[0059] In addition, combined Figure 3 As shown, in this embodiment, the bent portion is in a V shape. Of course, in other embodiments, the shape of the bent portion can be adjusted according to the actual use of the ridge connector.
[0060] At the same time, in other embodiments, depending on the actual usage scenarios of the ridge connector, the bending angle of the bending portion can also be greater than the placement angle of the first oblique beam 1 and the second oblique beam 2.
[0061] Furthermore, in this embodiment, the adapter portion 5 and the first connecting portion 3, as well as the adapter portion 5 and the second connecting portion 4, are both secured by snap-fitting. This not only enables a detachable connection between the adapter portion 5 and the first connecting portion 3, and between the adapter portion 5 and the second connecting portion 4, thereby improving the ease of assembly and disassembly between the adapter portion 5 and the first connecting portion 3, and between the adapter portion 5 and the second connecting portion 4, but also improves the relative positional stability between the adapter portion 5 and the first connecting portion 3, and between the adapter portion 5 and the second connecting portion 4.
[0062] Specifically, combined Figure 7 As shown, taking the first connecting portion 3 as an example, the sides of the adapter 5 that can contact the first connecting portion 3 and the second connecting portion 4 are each provided with a slot 502. The sides of the first connecting portion 3 that contact the adapter 5 and the sides of the second connecting portion 4 that contact the adapter 5 are also provided with a latch 302. The latch 302 is inserted into the slot 502 to secure the adapter 5 to the first connecting portion 3. The detachable structures of the second connecting portion 4 and the adapter 5 are identical and will not be further described here.
[0063] Further, combined with Figure 7 As shown, taking the first connecting portion 3 as an example, an insertion groove is provided on at least one of the side surface of the slot 502 and the bottom surface of the slot 502; correspondingly, an elastic snap 3022 with an insertion protrusion 3021 is provided on the corresponding surface of the clamping block 302. By pressing the elastic snap 3022 toward the clamping block 302, the clamping block 302 can be inserted into the slot 502. When the pressing force is released, the insertion protrusion 3021 on the elastic snap 3022 will be engaged with the insertion groove, achieving a clamping and fixing connection between the adapter 5 and the first connecting portion 3.
[0064] Of course, in other embodiments, a card slot and an insertion slot may be provided on the first connecting portion 3 , and a card block and an elastic buckle may be provided on the adapter portion 5 , which can also achieve position limiting fixation of the first connecting portion 3 and the adapter portion 5 .
[0065] At the same time, in other embodiments, depending on the design and actual use of the ridge connector, only the adapter part 5 and the first connection part 3, or only the adapter part 5 and the second connection part 4 can be fixed by snapping, while other detachable methods can be used between the adapter part 5 and the other connection part.
[0066] In addition, in this embodiment, the ridge connector includes:
[0067] The fasteners fixedly connect the first connecting portion 3 and the first oblique beam 1 , and fixedly connect the second connecting portion 4 and the second oblique beam 2 .
[0068] Specifically, combined Figure 1 As shown, the fasteners include:
[0069] a first fastening portion 601;
[0070] The second fastening portion 602 passes through the first connecting portion 3 and the first oblique beam 1, passes through the second connecting portion 4 and the second oblique beam 2, and is fixedly connected to the first fastening portion 601. That is, the first connecting portion 3 and the first oblique beam 1 are fixedly connected to the first fastening portion 601 through the second fastening portion 602, and the second connecting portion 4 and the second oblique beam 2 are fixedly connected to the second fastening portion 602 through the first fastening portion 601.
[0071] Through the connection and fixation between the first fastening part 601 and the second fastening part 602, the positions of the first connecting part 3 and the first oblique beam 1 and the second connecting part 4 and the second oblique beam 2 can be fixed, thereby achieving the technical effect of improving the connection stability between the first connecting part 3 and the first oblique beam 1 and the second connecting part 4 and the second oblique beam 2.
[0072] Preferably, the first fastening portion 601 and the second fastening portion 602 are fixedly connected by threads. Based on this, not only can the stability of the connection between the first connecting portion 3 and the first oblique beam 1, and the second connecting portion 4 and the second oblique beam 2 be improved, but it can also facilitate the installation and removal of the first fastening portion 601 and the second fastening portion 602, achieving the technical effect of improving the ease of disassembly and maintenance of the first connecting portion 3 and the first oblique beam 1, and the second connecting portion 4 and the second oblique beam 2.
[0073] In this embodiment, the first fastening portion 601 is a nut, and the second fastening portion 602 is a bolt, preferably a bolt of M10*110. Based on this, since both the nut and the bolt are standard parts and easy to obtain, the technical effect of reducing the difficulty of obtaining fasteners is achieved.
[0074] Specifically, by providing a first through hole 301 on the first connecting portion 3 and a second through hole 401 on the second connecting portion 4, the second fastening portion 602 can pass through the first through hole 301 or the second through hole 401 to achieve connection and fixation with the first fastening portion 601. The first through hole 301 and the second through hole 401 are both elliptical vertical holes with a diameter of M12*23, which can reduce the difficulty of passing the second fastening portion 602 through, thereby achieving the technical effect of improving the installation convenience of the second fastening portion 602.
[0075] Preferably, at least six first fastening portions 601 and at least six second fastening portions 602 are provided. Correspondingly, three first through holes 301 and three second through holes 401 are provided respectively. The spacing between adjacent first through holes 301 and adjacent second through holes 401 is 40 mm. The center of the first through hole 301 and its edge closest to the first connecting portion 3 and the center of the second through hole 401 and its edge closest to the second connecting portion 4 are both 18 mm apart. Figure 1The center of the rightmost first through hole 301 and the rightmost edge of the first connecting part 3, as well as the center of the leftmost second through hole 401 and the leftmost edge of the second connecting part 4, are all 18 mm apart. The first connecting part 3 and the first oblique beam 1 are connected and fixed by three first fastening parts 601 and second fastening parts 602, and the second connecting part 4 and the second oblique beam 2 are connected and fixed by three first fastening parts 601 and second fastening parts 602, which can increase the number of connection points and thus improve the stability of the connection. As a convertible embodiment, the specific number of the first fastening parts 601 and the second fastening parts 602 can be limited according to actual needs, and no excessive restrictions are made here.
[0076] Furthermore, gaskets are provided between the first fastening part 601 and the first connecting part 3, between the first fastening part 601 and the second connecting part 4, between the second fastening part 602 and the first oblique beam 1, and between the second fastening part 602 and the second oblique beam 2, which can prevent the connection position from loosening, thereby achieving the technical effect of improving the connection stability.
[0077] Of course, in other embodiments, the first fastening portion 601 may be set as a nut and the second fastening portion 602 may be set as a countersunk screw, which are also easy to obtain, so as to achieve the technical effect of improving the ease of obtaining fasteners.
[0078] At the same time, in other embodiments, depending on the design and actual use of the ridge connector, fasteners may be provided only between the first fastening part 601 and the first connecting part 3, or only between the first fastening part 601 and the second connecting part 4, or only between the second fastening part 602 and the first oblique beam 1, or only between the second fastening part 602 and the second oblique beam 2.
[0079] In addition, combined Figure 8 and Figure 9 As shown, a first positioning member 6021 is provided at one end of the second fastening portion 602 close to the first fastening portion 601 , and a second positioning member 501 is provided on both the first oblique beam 1 and the second oblique beam 2 , and the first positioning member 6021 is engaged with the second positioning member 501 .
[0080] By engaging the first positioning member 6021 and the second positioning member 501, the position stability of the second fastening portion 602 can be improved, and the second fastening portion 602 can be prevented from falling off during the installation process of the first fastening portion 601 and the second fastening portion 602, which affects the processing progress. At the same time, by improving the position stability of the second fastening portion 602, the stability of the connection between the second fastening portion 602 and the first fastening portion 601 can be further improved, thereby achieving the technical effect of improving the stability of the connection between the ridge connector and the first oblique beam 1, and the ridge connector and the second oblique beam 2. As a convertible embodiment, the second positioning member 501 can also be provided only on the first oblique beam 1, or the second positioning member 501 can be provided only on the second oblique beam 2.
[0081] Among them, combined Figure 8 and Figure 9 As shown, the first positioning member 6021 is a positioning post, and the second positioning member 501 is a positioning groove. Based on this, by using the positioning post as the first positioning member 6021 and the positioning groove as the second positioning member 501, the first positioning member 6021 and the second positioning member 501 have a simple structure and are easy to process, thereby achieving the technical effect of improving the ease of positioning the second fastening portion 602.
[0082] Furthermore, the size of the bottom 5012 of the positioning groove is larger than the size of the notch 5011 of the positioning groove; the first positioning member 6021 has at least a long side 60212 and a short side 60211, and the first positioning member 6021 has an installation state in which its short side 60211 enters the positioning groove through the notch 5011, and a fixed state in which its long side 60212 blocks the notch 5011. The first positioning member 6021 can be a rectangular block. Figure 8 For example, the positioning groove marked 501, the length of the bottom 5012 of the positioning groove is along Figure 8 The maximum length in the vertical direction is 23 mm, and the width of the positioning groove is 23 mm. Figure 8 The length of the positioning groove along the horizontal direction is 5mm, and the length of the notch 5011 of the positioning groove, that is, along the Figure 8 The minimum length in the horizontal direction shown is 11 mm.
[0083] Specifically, when the positioning slot is in the installed state, the short side 60211 of the first positioning member 6021 is along Figure 8 The first positioning member 6021 is arranged in the vertical direction as shown, and the long side 60212 of the first positioning member 6021 is arranged in the front-to-back direction, and the size of the long side 60212 is smaller than the length of the groove bottom 5012. At this time, the shape of the first positioning member 6021 can enter the positioning groove along the groove opening 5011 of the positioning groove. When the first positioning member 6021 can form contact with the groove bottom 5012 of the positioning groove, the second fastening part 602 can be rotated so that the long side 60212 of the first positioning member 6021 is along the groove opening 5011. Figure 9 As shown in the vertical direction, the short side 60211 of the first positioning member 6021 is set in the front-to-back direction. At this time, since the long side 60212 of the first positioning member 6021 is larger than the size of the slot 5011 of the positioning groove, the long side 60212 of the first positioning member 6021 can block the slot 5011 and cannot leave the positioning groove through the slot 5011. At this time, the first positioning member 6021 is in a fixed state.
[0084] Based on this, the second fastening part 602 can be fixed by snapping, thereby improving the position stability of the second fastening part 602 and further achieving the technical effect of improving the connection stability between the second fastening part 602 and the first fastening part 601.
[0085] In one embodiment, the first connection part 3 is fixedly connected to at least two sides of the first oblique beam 1, and the second connection part 4 is fixedly connected to at least two sides of the second oblique beam 2. The first connection part 3 and the second connection part 4 on the same side are connected by a transition part 5.
[0086] Specifically, the first connection portion 3 in this embodiment is fixedly connected to three sides of the first oblique beam 1 , and the second connection portion 4 is fixedly connected to three sides of the second oblique beam 2 .
[0087] Combine Figure 4 As shown, the cross-sections of the first connecting portion 3, the second connecting portion 4, and the transition portion 5 are all U-shaped. Based on this, the first oblique beam 1 and the second oblique beam 2 can be placed in the U-shaped space, so that the ridge connector can support the first oblique beam 1 and the second oblique beam 2. At the same time, the degrees of freedom of the first oblique beam 1 and the second oblique beam 2 can be restricted, that is, the positions of the left and right sides of the first oblique beam 1 and the second oblique beam 2 can be restricted to improve the impact resistance of the first oblique beam 1 and the second oblique beam 2, thereby achieving the technical effect of improving the position stability of the first oblique beam 1 and the second oblique beam 2.
[0088] Specifically, the first connecting portion 3, the second connecting portion 4 and the transition portion 5 are integrally formed. As a variant embodiment, the first connecting portion 3, the second connecting portion 4 and the transition portion 5 on different sides may be separately fixed.
[0089] Of course, in other embodiments, depending on the design and actual use of the ridge connector, the first connection part 3 can be fixedly connected to one side of the first oblique beam 1, the second connection part 4 can be fixedly connected to one side of the second oblique beam 2, the first connection part 3 and the second connection part 4 can be located on the same side, and the first connection part 3 and the second connection part 4 can be connected via a transition part 5; or, the first connection part 3 can be fixedly connected to both sides of the first oblique beam 1, the second connection part 4 can be fixedly connected to both sides of the second oblique beam 2, and the first connection part 3 and the second connection part 4 on the same side can be connected via a transition part 5; or, the first connection part 3 can be fixedly connected to more sides of the first oblique beam 1, the second connection part 4 can be fixedly connected to more sides of the second oblique beam 2, and the first connection part 3 and the second connection part 4 on the same side can be connected via a transition part 5. No excessive restrictions are imposed here.
[0090] Combine Figure 6 As shown, the ridge connector includes:
[0091] The guide structure 7 is provided between the first connection part 3 and the first oblique beam 1, and between the second connection part 4 and the second oblique beam 2. The guide structure 7 is used to guide when the first oblique beam 1 is assembled to the first connection part 3 and when the second oblique beam 2 is assembled to the second connection part 4. Through the design of the guide structure 7, not only can the position between the first connection part 3 and the first oblique beam 1, and between the second connection part 4 and the second oblique beam 2 be limited to improve the stability of the relative position between the first connection part 3 and the first oblique beam 1, and between the second connection part 4 and the second oblique beam 2, but it can also guide the assembly between the first connection part 3 and the first oblique beam 1, and between the second connection part 4 and the second oblique beam 2, so as to achieve the technical effect of enhancing the smoothness of the assembly.
[0092] In this embodiment, the guide structure 7 includes:
[0093] Guide blocks are provided on the inner bottom surfaces of the first connecting portion 3 and the second connecting portion 4, as well as on the inner side surfaces of the first connecting portion 3 and the second connecting portion 4;
[0094] The guide groove is provided on the first oblique beam 1 and the second oblique beam 2, and the guide groove is slidably connected to the guide block.
[0095] Based on this, through the sliding connection between the guide groove and the guide block, not only can the smoothness of the connection between the first oblique beam 1 and the first connecting part 3, and the smoothness of the connection between the second oblique beam 2 and the second connecting part 4 be improved, but also the position between the first oblique beam 1 and the first connecting part 3, and the position of the connection between the second oblique beam 2 and the second connecting part 4 can be limited, thereby improving the accuracy of the relative positions between the first oblique beam 1 and the first connecting part 3, and between the second oblique beam 2 and the second connecting part 4. As a convertible embodiment, guide grooves can also be provided on the inner bottom surfaces of the first connecting part 3 and the second connecting part 4, and on the inner side surfaces of the first connecting part 3 and the second connecting part 4, and guide blocks can be provided on the first oblique beam 1 and the second oblique beam 2.
[0096] Of course, in other embodiments, the guide structure 7 can also be a structure of a slider and a slide rod, which can also achieve the technical effect of smooth assembly between the first connecting part 3 and the first oblique beam 1 and the second connecting part 4 and the second oblique beam 2 through the slider and the slide rod.
[0097] At the same time, in other embodiments, the guide structure 7 can be set only between the first connecting part 3 and the first inclined beam 1, or only between the second connecting part 4 and the second inclined beam 2, depending on the design and actual use of the ridge connector.
[0098] In addition, in this embodiment, the first oblique beam 1 and the second oblique beam 2 are square tubes, and the first oblique beam 1 and the second oblique beam 2 are both made of 6005-T5 aluminum alloy, with cross-sectional dimensions of 80mm*80mm*2mm, and each turning position is provided with a chamfer, for example, the radius of the chamfer is 20mm, and the length of the first oblique beam 1 and the second oblique beam 2 are both 6000mm.
[0099] The ridge connector is made of 6005-T5 aluminum alloy with a cross section of 86mm*67mm*2mm. Figure 6 The turning positions of the "U" shape shown are all chamfered, and the chamfer radius is 23 mm. The lengths of the first connecting portion 3 and the second connecting portion 4 are both 130 mm, and the total length of the ridge connector is 270 mm.
[0100] Of course, in other embodiments, the shape, material and size of the ridge connector, the first oblique beam 1 and the second oblique beam 2 may also be adjusted.
[0101] Although the embodiments of the present invention have been described with reference to the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations shall fall within the scope defined by the appended claims.
Claims
1. A ridge connector, characterized in that: Used for fixedly connecting a roof ridge, the roof ridge comprises a first oblique beam (1) and a second oblique beam (2) at an angle to each other, the first oblique beam (1) and the second oblique beam (2) being arranged at intervals at their ends close to each other; characterized in that it comprises: A first connecting portion (3) fixedly connected to at least one side of the first oblique beam (1); A second connecting portion (4) is fixedly connected to at least one side of the second oblique beam (2), and the second connecting portion (4) and the first connecting portion (3) are located on the same side; The transition portion (5) is detachably connected between the first connection portion (3) and the second connection portion (4), and the transition portion (5) includes a bending portion, wherein the bending angle of the bending portion is greater than or equal to the angle between the first oblique beam (1) and the second oblique beam (2).
2. The ridge connector according to claim 1, characterized in that: The adapter portion (5) and the first connecting portion (3), and / or the adapter portion (5) and the second connecting portion (4) are fixed by snap connection; And / or, the first connecting portion (3) is fixedly connected to at least two sides of the first oblique beam (1), the second connecting portion (4) is fixedly connected to at least two sides of the second oblique beam (2), and the first connecting portion (3) and the second connecting portion (4) located on the same side are connected via the transition portion (5).
3. The ridge connector according to claim 1 or 2, characterized in that: include: A fastener fixedly connects the first connecting portion (3) and the first oblique beam (1), and / or fixedly connects the second connecting portion (4) and the second oblique beam (2).
4. The ridge connector according to claim 3, characterized in that: The fastener comprises: a first fastening portion (601); The second fastening portion (602) passes through the first connecting portion (3) and the first oblique beam (1), and / or passes through the second connecting portion (4) and the second oblique beam (2), and is fixedly connected to the first fastening portion (601).
5. The ridge connector according to claim 4, characterized in that: A first positioning member (6021) is provided at one end of the second fastening portion (602) close to the first fastening portion (601), a second positioning member (501) is provided on the first oblique beam (1) and / or the second oblique beam (2), and the first positioning member (6021) is engaged with the second positioning member (501).
6. The ridge connector according to claim 5, characterized in that: The first positioning member (6021) is a positioning column, and the second positioning member (501) is a positioning groove.
7. The ridge connector according to claim 6, characterized in that: The size of the bottom (5012) of the positioning groove is larger than the size of the notch (5011) of the positioning groove; The first positioning member (6021) has at least a long side (60212) and a short side (60211), and the first positioning member (6021) has an installation state in which the short side (60211) enters the positioning groove from the notch (5011), and a fixed state in which the long side (60212) blocks the notch (5011).
8. The ridge connector according to claim 4, characterized in that: The first fastening portion (601) is a nut, and the second fastening portion (602) is a bolt.
9. The ridge connector according to claim 1 or 2, characterized in that: The cross section of the first connecting portion (3) and / or the second connecting portion (4) and / or the transition portion (5) is in a U-shape.
10. The ridge connector according to claim 1 or 2, characterized in that: include: The guide structure (7) is provided between the first connecting portion (3) and the first oblique beam (1), and / or between the second connecting portion (4) and the second oblique beam (2).