Connecting piece, support and new energy power station

By cooperating with the adjusting and abutting parts in the connector, the drilling problem during the assembly of the U-shaped steel bracket was solved, enabling rapid and stable connection of the rods and improving the assembly efficiency of the new energy power station.

CN223923508UActive Publication Date: 2026-02-17HEFEI SUNGROW RENEWABLE ENERGY SCI & TECH CO LTD
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Patent Information

Application Number
CN202520851394.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2026-02-17
Estimated Expiration
2035-04-29

AI Technical Summary

Technical Problem

When assembling existing U-shaped steel supports in new energy power plants, drilling is difficult, resulting in low assembly efficiency.

Method used

The connectors include a connecting seat, an adjusting component, a connecting frame, and an abutment component. The adjusting component drives the abutment component to move on the connecting frame, thereby achieving contact with the inner wall of the rod and avoiding drilling for connection.

Benefits of technology

It improves the assembly efficiency and stability between support members, simplifies the assembly process, and reduces construction difficulty.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a connecting piece, a support and a new energy power station, and relates to the technical field of supports, the connecting piece comprises a connecting base, an adjusting piece, a connecting frame and an abutting piece, and the connecting base is connected with a first rod piece; the connecting frame is connected with the connecting base, the connecting frame is fixed in an inner cavity of a second rod piece, the abutting piece is movably installed on the connecting frame, the adjusting piece is in driving connection with the abutting piece, and the abutting piece is configured to abut against the inner wall face of the inner cavity under driving of the adjusting piece. On the basis that the assembling efficiency between the rod pieces of the support is improved, the assembling stability between the rod pieces is ensured.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of supports, in particular, to a connecting piece, a support and a new energy power station. BACKGROUND

[0002] The profile commonly used in the support applied to the new energy power station is a U-shaped steel, the support comprises a plurality of rod pieces, each rod piece is a U-shaped steel rod piece, and the rod pieces are connected and fixed through a triangular adapter and a bolt cooperation; for example, during installation, bolt holes are first drilled on two side walls adjacent to the opening on one of the rod pieces, and then the bolt is fastened through the respective bolt holes on the rod piece and the triangular adapter to realize the assembly operation of the plurality of rod pieces in the support.

[0003] However, since the U-shaped steel is currently made of high-strength steel, the drilling operation of the rod piece by the worker is difficult during the on-site assembly of the support, thereby reducing the assembly efficiency of the support. CONTENT OF THE UTILITY MODEL

[0004] The problem solved by the present disclosure is how to effectively improve the assembly efficiency of the support.

[0005] To solve the above problems, the present disclosure provides a connecting piece, a support and a new energy power station.

[0006] In a first aspect, the present disclosure provides a connecting piece, comprising a connecting seat, an adjusting piece, a connecting frame and an abutting piece, the connecting seat is connected to a first rod piece;

[0007] The connecting frame is connected to the connecting seat, the connecting frame is fixed in the inner cavity of a second rod piece, the abutting piece is movably installed on the connecting frame, the adjusting piece is drivingly connected to the abutting piece, and the abutting piece is configured to abut against the inner wall surface of the inner cavity under the driving of the adjusting piece.

[0008] Optionally, the connecting frame is provided with a through-hole structure, the adjusting piece is provided with a connecting hole structure, and the abutting piece is inserted into the through-hole structure and the connecting hole structure; the abutting piece is provided with an external thread structure;

[0009] The external thread structure is matched with the connecting hole structure of the adjusting piece, and the abutting piece and the through-hole structure are movably connected in a first direction.

[0010] Optionally, the abutting piece is a rod-shaped structure, and the diameter of the abutting piece matches the inner diameter of the through-hole structure and the connecting hole structure.

[0011] Optionally, the two ends of the adjusting piece correspond to the abutting piece respectively.

[0012] Optionally, the connecting frame comprises a connecting rod and a bolt sleeve, one end of the connecting rod is connected to the connecting seat, the end of the connecting rod away from the connecting seat is connected to the bolt sleeve, and the through-hole structure is arranged in the bolt sleeve.

[0013] The abutting member comprises a bolt part, and the through hole structure of the bolt sleeve is fastened to the bolt part.

[0014] Optionally, the bolt part is arranged in the through hole structure of the bolt sleeve, and the bolt sleeve is threadedly connected to the bolt part, and the bolt part is linearly moved relative to the connecting frame under the rotary driving of the adjusting member.

[0015] Optionally, an outer wall of the bolt part is provided with a first limiting structure extending in the axial direction thereof, and an inner wall of the bolt sleeve is provided with a second limiting structure extending in the axial direction thereof, and the first limiting structure and the second limiting structure are matched and inserted.

[0016] Optionally, the first limiting structure is a groove structure, and the second limiting structure is a convex strip structure.

[0017] Optionally, the circumferential inner wall of the bolt sleeve is provided with a convex strip structure, and the convex strip structure extends in the axial direction of the bolt sleeve.

[0018] Optionally, the groove structure and the convex strip structure are matched in shape.

[0019] Optionally, the abutting member further comprises a body part, and the body part is arranged at an end of the bolt part away from the adjusting member.

[0020] Optionally, the body part is provided with a larger diameter at an end close to the bolt part than at an end away from the bolt part.

[0021] Optionally, the adjusting member comprises a nut structure and a limiting plate, the connecting hole structure is arranged on the nut structure, and the limiting plate is arranged inside the connecting hole structure and configured to divide the connecting hole structure of the nut structure into a plurality of chambers, and the bolt part is partially inserted into a corresponding chamber.

[0022] Optionally, the connecting seat comprises a connecting seat body and a connecting shaft, the connecting seat body is provided with a first connecting hole connected to the first rod member; and the connecting shaft is connected to the connecting seat body at an axial end thereof, and one end of the connecting rod is connected to the connecting shaft.

[0023] Optionally, the first rod member is provided with a second connecting hole, and the connecting seat further comprises a fastener arranged in the first connecting hole and the second connecting hole.

[0024] Optionally, the connecting seat body comprises an ear plate and a connecting plate, the ear plate is fixed to a side of the connecting plate away from the first rod member, and both ends of the connecting shaft are respectively connected to corresponding ear plates.

[0025] Optionally, the ear plate and the connecting plate are configured in an integral structure.

[0026] Optionally, one end of the connecting rod is provided with a through hole, the connecting shaft is arranged in the through hole of the connecting rod, and the connecting rod is configured to rotate around the axis of the connecting shaft.

[0027] In a second aspect, the present disclosure provides a support, comprising a first rod member, a second rod member, and a connecting member as described above, the connecting seat of the connecting member is connected to the first rod member, the connecting frame and the abutting member of the connecting member are embedded in the inner cavity of the second rod member, and the abutting member abuts against the inner wall surface of the second rod member.

[0028] Optionally, the second rod member comprises a first side plate, a second side plate, and a third side plate, the first side plate and the second side plate are arranged at intervals, the third side plate is arranged obliquely relative to the first side plate and the second side plate respectively, and the two side edges of the third side plate are connected to the first side plate and the second side plate respectively, and the opening is formed between the end portions of the first side plate and the second side plate away from the third side plate.

[0029] In a third aspect, the present disclosure provides a new energy power station, comprising a connecting member as described above, or comprising a support as described above.

[0030] The connecting member, the support, and the new energy power station of the present disclosure have the following advantages:

[0031] The connecting member can be applied to the support, and the support comprises the connecting member and a plurality of rod members, and the two rod members (which can be defined as a first rod member and a second rod member respectively) are connected and fixed by the connecting member, for example, the connecting seat of the connecting member can be connected to the first rod member by a fastener, so as to realize the quick assembly of the connecting seat and the first rod member.

[0032] The connecting frame is connected to the connecting seat, and the abutting member is movably installed on the connecting frame. The second rod member can be sleeved on the connecting frame of the connecting member, so that the connecting frame and the abutting member are in the inner cavity of the second rod member. Since the abutting member is movably installed on the connecting frame, the adjusting member is drivingly connected to the abutting member. By operating the adjusting member, the abutting member can be driven to move relative to the connecting frame along the extension direction of the abutting member, so that the abutting member abuts against the inner wall surface of the inner cavity of the second rod member under the driving of the adjusting member, thereby realizing the quick assembly of the connecting member and the second rod member.

[0033] In short, in the assembly process between the rod members, the quick assembly of the first rod member and the second rod member can be realized by the mutual cooperation of the adjusting member, the connecting frame, and the abutting member in the connecting member. In other words, it is not necessary to drill holes in the adjacent two side walls of the two rod members at the opening thereof in the related art, thereby ensuring the assembly stability between the rod members on the basis of improving the assembly efficiency between the rod members of the support. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 The structure schematic diagram of the first rod member before and after the assembly of the first rod member and the second rod member through the connecting member in the embodiment of the present disclosure.

[0035] Figure 2 The structure schematic diagram of the first rod member before and after the assembly of the first rod member and the second rod member through the connecting member in the embodiment of the present disclosure. Figure 1 The local enlarged structure schematic diagram of A in the embodiment of the present disclosure.

[0036] Figure 3 Figure 1 is a structural schematic diagram of a connecting piece in an embodiment of the present disclosure.

[0037] Figure 4 Figure 2 is an exploded structural schematic diagram of the connecting piece in the embodiment of the present disclosure and a magnified structural schematic diagram of the cooperation between the bolt sleeve and the abutting piece.

[0038] Figure 5 Figure 3 is an exploded structural schematic diagram of the adjusting piece and the abutting piece in the embodiment of the present disclosure.

[0039] Figure 6 Figure 4 is a sectional structural schematic diagram of the adjusting piece and the abutting piece along the axial direction thereof in the embodiment of the present disclosure.

[0040] Figure 7 Figure 5 is a structural schematic diagram of a second rod piece in the embodiment of the present disclosure. Figure 3 Figure 6 is a partial magnified structural schematic diagram at B in Figure 5.

[0041] Figure 8 Figure 7 is a structural schematic diagram of a first rod piece in the embodiment of the present disclosure.

[0042] Legend of reference signs:

[0043] 100-connecting piece; 110-connecting seat; 111-connecting seat body; 1110-first connecting hole; 1111-connecting plate; 1112-ear plate; 112-connecting shaft; 120-adjusting piece; 121-nut structure; 122-limiting plate; 123-connecting hole structure; 130-connecting frame; 131-connecting rod; 1310-perforation; 132-bolt sleeve; 1321-second limiting structure; 1322-via structure; 140-abutting piece; 141-bolt part; 1410-first limiting structure; 142-cone part; 200-first rod piece; 2000-second connecting hole; 300-second rod piece; 301-first side plate; 302-second side plate; 303-third side plate; 3001-opening. DETAILED DESCRIPTION

[0044] In order to make the above-mentioned purposes, features and advantages of the present disclosure more obvious and easy to understand, the specific embodiments of the present disclosure will be described in detail below with reference to the drawings. Although some embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure can be implemented in various forms, and should not be interpreted as being limited to the embodiments described herein, on the contrary, these embodiments are provided to make the present disclosure more thorough and complete. It should be understood that the drawings and embodiments of the present disclosure are only for exemplary purposes, and are not intended to limit the protection scope of the present disclosure.

[0045] The Z-axis in the drawings represents the vertical direction, that is, the up-down position, and the positive direction of the Z-axis represents the upward direction, and the negative direction of the Z-axis represents the downward direction; the X-axis in the drawings represents the horizontal direction and is designated as the front-rear position, and the positive direction of the X-axis represents the right side, and the negative direction of the X-axis represents the left side; and the Y-axis in the drawings represents the front-rear position, and the positive direction of the Y-axis represents the front side, and the negative direction of the Y-axis represents the rear side. It should be noted that the meanings of the aforementioned Z-axis, Y-axis and X-axis are only for the convenience of describing the present disclosure and simplifying the description, and are not intended to indicate or imply that the devices or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present disclosure.

[0046] The term "comprising" and variations thereof as used herein are open-ended, that is, "comprising but not limited to"; the term "based on" is "based at least in part on"; the term "one embodiment" means "at least one embodiment"; the term "another embodiment" means "at least one additional embodiment"; the term "some embodiments" means "at least some embodiments"; the term "optionally" means "optional embodiments". Related definitions of other terms will be given in the following description. It should be noted that the concepts of "first", "second", etc. mentioned in the present disclosure are only used to distinguish different devices, modules or units, and are not intended to limit the functions performed by these devices, modules or units or the mutual dependency relationship.

[0047] It should be noted that the modification of "one" or "multiple" mentioned in the present disclosure is illustrative and not limiting, and those skilled in the art should understand that unless the context clearly indicates otherwise, it should be understood as "one or more".

[0048] To solve the problems of the related art, the present embodiment provides a connecting piece, a support and a new energy power station.

[0049] As shown in Figures 1 to 3 The connecting piece provided by the present embodiment comprises a connecting seat 110, an adjusting piece 120, a connecting frame 130 and an abutting piece 140, the connecting seat 110 is connected to a first rod 200;

[0050] The connecting frame 130 is connected to the connecting seat 110, the connecting frame 130 is fixed in the inner cavity of a second rod 300, the abutting piece 140 is movably installed on the connecting frame 130, the adjusting piece 120 is drivingly connected to the abutting piece 140, and the abutting piece 140 is configured to abut against the inner wall surface of the inner cavity under the driving of the adjusting piece 120.

[0051] Specifically, the connecting seat 110 can be mounted on one of the first rods 200, for example, by means of a first connecting hole 1110 formed in the connecting seat 110, a second connecting hole 2000 formed in the first rod 200, and a fastener such as a bolt fastener passing through the first connecting hole 1110 of the connecting seat 110 and the second connecting hole 2000 of the first rod 200 to fix the connecting piece 100 to the first rod 200.

[0052] The connecting frame 130 can be fixed in the inner cavity of the second rod 300 by embedding, abutting, or the like. The fixing method is only an example and not a limitation, and the present embodiment does not make any limitation thereto.

[0053] The "driving connection" between the adjusting piece 120 and the abutting piece 140 can be understood as that the adjusting piece 120 rotates to drive the abutting piece 140 to move relative to the connecting frame 130 along the extension direction of the abutting piece 140 to abut against the inner wall surface of the inner cavity of the second rod 300.

[0054] In the present embodiment, the connecting piece 100 can be applied to a bracket, which includes the connecting piece 100 and a plurality of rods. Taking two rods (which can be defined as the first rod 200 and the second rod 300, respectively) connected and fixed by the connecting piece 100 as an example, the connecting seat 110 of the connecting piece 100 can be connected to the first rod 200 by a fastener to realize the quick assembly of the connecting seat 110 and the first rod 200.

[0055] The connecting frame 130 is connected to the connecting seat 110, and the abutting piece 140 is movably mounted on the connecting frame 130. The second rod 300 can be sleeved on the connecting frame 130 of the connecting piece 100, so that the connecting frame 130 and the abutting piece 140 are in the inner cavity of the second rod 300. Since the abutting piece 140 is movably mounted on the connecting frame 130, the adjusting piece 120 is drivingly connected to the abutting piece 140. By operating the adjusting piece 120, the abutting piece 140 can be driven to move relative to the connecting frame 130 along the extension direction of the abutting piece 140, so that the abutting piece 140 abuts against the inner wall surface of the inner cavity of the second rod 300 under the driving of the adjusting piece 120, thereby realizing the quick assembly of the connecting piece 100 and the second rod 300.

[0056] In short, in the assembly process between the rods, the quick assembly of the first rod 200 and the second rod 300 can be realized by the cooperation of the adjusting piece 120, the connecting frame 130, and the abutting piece 140 in the connecting piece 100. In other words, it is not necessary to drill holes in the adjacent two side walls of the two rods at the opening 3001 in the related art, thereby ensuring the assembly stability between the rods on the basis of improving the assembly efficiency between the rods of the bracket.

[0057] Optionally, in combination with Figure 4As shown, the connecting frame 130 is provided with a through-hole structure 1322, the adjusting member 120 is provided with a connecting hole structure 123, and the abutting member 140 is inserted into the through-hole structure 1322 and the connecting hole structure 123; the abutting member 140 is provided with an external thread structure.

[0058] The external thread structure is matched with the connecting hole structure 123 of the adjusting member 120, and the abutting member 140 is movably connected with the through-hole structure 1322 in the first direction, for example, the abutting member 140 is slidably connected with the through-hole structure 1322 in the first direction.

[0059] Specifically, the end of the connecting frame 130 away from the connecting seat 110 is provided with a through-hole structure 1322 penetrating along the axial direction of the connecting frame 130, and the adjusting member 120 is provided with a connecting hole structure 123 penetrating along the axial direction of the adjusting member 120, wherein the abutting member 140 can be a rod structure, and the diameter of the abutting member 140 can match the inner diameter of the through-hole structure 1322 and the connecting hole structure 123, so that the abutting member 140 can be inserted into the through-hole structure 1322 of the connecting frame 130 and the connecting hole structure 123 of the adjusting member 120.

[0060] The external thread structure matched with the connecting hole structure 123 of the adjusting member 120 means that the connecting hole structure 123 can be a threaded hole, the adjusting member 120 can be sleeved outside the abutting member 140, and the external thread structure of the abutting member 140 is connected with the connecting hole structure 123 of the adjusting member 120 in a threaded manner.

[0061] The first direction can be parallel to the X-axis direction of the coordinate system. Figure 4 The X-axis direction of the coordinate system. The abutting member 140 is slidably connected with the through-hole structure 1322, which can be understood as follows: since the connecting hole structure 123 of the adjusting member 120 is threadedly connected with the external thread structure of the abutting member 140, the connecting frame 130 can limit the abutting member 140 from rotating with the adjusting member 120 under the action of the rotation of the adjusting member 120, so that the abutting member 140 can linearly slide in the through-hole structure 1322 of the connecting frame 130 under the action of the rotation of the adjusting member 120, until the end of the abutting member 140 away from the adjusting member 120 abuts against the inner wall surface of the second rod member 300, thereby improving the assembly efficiency and stability of the connecting member 100 and the second rod member 300.

[0062] Optionally, in combination with the above description of the adjusting member 120, Figure 4 and Figure 5 As shown, the two ends of the adjusting member 120 correspond to the abutting member 140 respectively.

[0063] Specifically, the adjusting member 120 can be a cylindrical structure with a connecting hole structure 123, and the two ends of the adjusting member 120 refer to the two ends of the adjusting member 120 along the axial direction thereof.

[0064] In each connecting piece 100, if the number of connecting frames 130 is two, the two connecting frames 130 can be spaced apart in the first direction on the connecting seat 110, and the adjusting piece 120 can be located between the two connecting frames 130. Then, the abutting pieces 140 connected to the ends of the adjusting piece 120 can be arranged through the corresponding connecting frames 130, as shown in Figure 4 In each connecting piece 100, if the number of connecting frames 130 is one (not shown), the connecting frame 130 can be a U-shaped frame structure with an open end, and the adjusting piece 120 can be located at the open end of the connecting frame 130. Then, the two abutting pieces 140 connected to the ends of the adjusting piece 120 can be arranged through the edge parts of the open end of the connecting frame 130, respectively.

[0065] In this optional embodiment, the two ends of the adjusting piece 120 are connected to an abutting piece 140, respectively, so that during the rotation of the adjusting piece 120, the abutting pieces 140 connected to the two ends of the adjusting piece 120 can relatively move away or relatively move close in the first direction. For example, if the worker rotates the adjusting piece 120 in a positive direction (e.g., clockwise), the rotating force of the adjusting piece 120 is transmitted to the corresponding connecting frames 130 through the two abutting pieces 140, respectively. Since the two connecting frames 130 are spaced apart in the first direction on the connecting seat 110, the rotating movement of the adjusting piece 120 is converted into the back movement of the two abutting pieces 140 in the first direction through the two connecting frames 130, respectively. In this way, the two abutting pieces 140 can abut against the opposite two inner wall surfaces of the second rod piece 300 during the back movement (i.e., moving away from each other), so that the quick assembly of the first rod piece 200 and the second rod piece 300 through the connecting piece 100 can be achieved.

[0066] Alternatively, the connecting frame 130 can be connected to the abutting piece 140 in the following structure manner, in combination with Figure 4 As shown in the figure, the connecting frame 130 includes a connecting rod 131 and a bolt sleeve 132. One end of the connecting rod 131 is connected to the connecting seat 110, and the end of the connecting rod 131 away from the connecting seat 110 is connected to the bolt sleeve 132. The through-hole structure 1322 is arranged in the bolt sleeve 132.

[0067] The abutting piece 140 includes a bolt part 141, and the through-hole structure 1322 of the bolt sleeve 132 is tightly connected to the bolt part 141.

[0068] Specifically, the end of the connecting rod 131 away from the connecting seat 110 and the bolt sleeve 132 can be configured as an integral structure to ensure the mechanical strength of the connecting frame 130.

[0069] The bolt sleeve 132 and the bolt part 141 can be fixedly connected in a threaded sleeve manner, for example, the bolt part 141 is arranged through the through-hole structure 1322 of the bolt sleeve 132.

[0070] In the optional embodiment, the bolt part 141 has an external thread structure, the bolt part 141 is arranged in the through hole structure 1322 of the bolt sleeve 132, and the bolt sleeve 132 is threadedly connected with the bolt part 141 (for example, the two are connected in a threaded manner), so that the bolt part 141 can move linearly relative to the connecting frame 130 under the rotary driving of the adjusting member 120 to abut against the inner wall surface of the second rod member 300, thereby realizing the stable assembly of the bolt part 141 and the second rod member 300.

[0071] Optionally, in combination with Figure 4 As shown, the outer wall of the bolt part 141 is provided with a first limiting structure 1410 extending in the axial direction thereof, and the inner wall of the bolt sleeve 132 is provided with a second limiting structure 1321 extending in the axial direction thereof, and the first limiting structure 1410 and the second limiting structure 1321 are matched and inserted.

[0072] Specifically, the extension direction of the first limiting structure 1410 is parallel to the extension direction of the bolt part 141, and the second limiting structure 1321 is parallel to the extension direction of the bolt sleeve 132.

[0073] The first limiting structure 1410 and the second limiting structure 1321 are matched in shape and size.

[0074] In the optional embodiment, when the nut structure 121 rotates, the second limiting structure 1321 arranged on the inner wall of the bolt sleeve 132 is matched and inserted with the first limiting structure 1410 arranged on the outer wall of the bolt part 141, so as to realize the cooperation of the second limiting structure 1321 and the first limiting structure 1410. In other words, the second limiting structure 1321 on the inner wall of the bolt sleeve 132 can limit the rotation of the bolt part 141 caused by the rotary motion of the adjusting member 120, so that the bolt sleeve 132 can effectively convert the rotary motion of the adjusting member 120 into the opposite linear motion or the opposite linear motion of the two bolt parts 141 in the first direction, thereby realizing the disassembly and assembly of the two bolt parts 141 and the second rod member 300.

[0075] Optionally, in combination with Figure 4 As shown, the first limiting structure 1410 is a groove structure, and the second limiting structure 1321 is a convex strip structure.

[0076] Specifically, a groove structure can be arranged on the circumferential outer wall of the bolt part 141, and the groove structure extends in the axial direction of the bolt part 141. A convex strip structure can be arranged on the circumferential inner wall of the bolt sleeve 132, and the convex strip structure extends in the axial direction of the bolt sleeve 132. The convex structure can be in the form of a whole convex, or can be in the form of a plurality of convexs distributed in the axial direction of the bolt sleeve 132.

[0077] The groove structure and the convex strip structure are matched in shape, for example, if the axial end of the groove structure is V-shaped, the axial end of the convex strip structure is V-shaped; if the axial end of the groove structure is U-shaped, the axial end of the convex strip structure is U-shaped; as shown in Figure 4 if the axial end of the groove structure is fan-shaped or arc-shaped, the axial end of the convex strip structure is fan-shaped or arc-shaped.

[0078] Optionally, in combination with Figure 5 and Figure 6 As shown, the abutting piece 140 further comprises a cone body 142, which is arranged at the end of the bolt part 141 away from the adjusting piece 120.

[0079] Specifically, the arrangement of the cone body 142 at the end of the bolt part 141 away from the adjusting piece 120 means that the cone body 142 is arranged at the end of the bolt part 141 of each abutting piece 140 away from the adjusting piece 120. The cone body 142 can be in the shape of a cone, a pyramid, etc. Specifically, the diameter of the end of the cone body 142 close to the bolt part 141 is greater than the diameter of the end of the cone body 142 away from the bolt part 141. Such a structure of the cone body 142 can make the stress area of the end of the cone body 142 away from the bolt part 141 smaller and the abutting pressure of the cone body 142 to the inner cavity of the second rod piece 300 greater under the condition that the abutting force of the cone body 142 to the inner cavity of the second rod piece 300 is constant, thereby improving the abutting stability of the cone body 142 to the inner cavity of the second rod piece 300.

[0080] The connecting piece 100 can be assembled in the following manner, for example, two abutting pieces 140 are respectively inserted into the bolt sleeves 132 from the outer sides of the two sides, and the first limiting structure 1410 of the bolt part 141 is positioned corresponding to the second limiting structure 1321 of the bolt sleeve 132 during the insertion. Then, the adjusting piece 120 is placed between the two bolt sleeves 132, and the opposite ends of the bolt parts 141 of the two abutting pieces 140 respectively contact the two ends of the adjusting piece 120. Then, the adjusting piece 120 is screwed forward or backward, so that the bolt part 141 of the abutting piece 140 can be arranged in the connecting hole structure 123 of the adjusting piece 120 in a straight line motion manner.

[0081] In this optional embodiment, when the worker rotates the adjusting member 120, the bolt sleeve 132 can convert the rotating movement of the adjusting member 120 into the opposite linear movement of the two abutting members 140 (since the first limiting structure 1410 of the bolt part 141 matches and inserts the second limiting structure 1321 of the bolt sleeve 132, the abutting member 140 only translates and does not rotate) until the cone part 142 of the abutting member 140 abuts (or inserts) the inner side wall of the second rod member 300 (the cone part 142 can provide greater friction to prevent the connecting member 100 from being separated from the second rod member 300), at which time the smaller area at the end of the cone part 142 can be used to increase the connection stability of the abutting member 140 and the second rod member 300.

[0082] Figure 6 The cross-sectional structure diagram of the adjusting member 120 and the two abutting members 140 is cut along the first direction, respectively.

[0083] Optionally, in combination with the Figure 5 and Figure 6 It is shown that the adjusting member 120 includes a nut structure 121 and a limiting plate 122, the connecting hole structure 123 is arranged on the nut structure 121, and the limiting plate 122 is arranged inside the connecting hole structure 123. The limiting plate 122 is configured to separate the connecting hole structure 123 of the nut structure 121 into multiple cavities, and the part of the bolt part 141 is inserted into the corresponding cavity.

[0084] Specifically, the limiting plate 122 can be a fan-shaped plate or a circular plate arranged inside the nut structure 121.

[0085] The limiting plate 122 can divide the inside of the entire sleeve structure into two cavities, and the part of each bolt part 141 is inserted into the corresponding cavity.

[0086] Among them, the limiting plate 122 can separate the connecting hole structure 123 of the nut structure 121 into two cavities, and each cavity is used to insert the bolt part 141 of the corresponding abutting member 140.

[0087] In this optional embodiment, when the two bolt parts 141 are inserted into the corresponding cavities of the nut structure 121, the insertion process of the bolt part 141 can be limited by the limiting plate 122 to avoid the overtravel of the two bolt parts 141 inserted into the inside of the nut structure 121, thereby increasing the movement time when assembling with the second rod member 300, and accordingly ensuring the assembly efficiency between the first rod member 200 and the second rod member 300.

[0088] Optionally, in combination with the Figure 2As shown, the connecting seat 110 includes a connecting seat body 111 and a connecting shaft 112. The connecting seat body 111 is provided with a first connecting hole 1110 for connecting to the first rod 200. The axial end of the connecting shaft 112 is connected to the connecting seat body 111, and one end of the connecting rod 131 is connected to the connecting shaft 112.

[0089] Specifically, one end of the connecting rod 131 can be sleeved on the connecting shaft 112, and the connecting shaft 112 can be inserted into the connecting seat body 111 to realize the assembly operation of the connecting rod 131 of the connecting frame 130 and the connecting seat 110.

[0090] The connector body 111 has a first connecting hole 1110, and the first rod 200 has a second connecting hole 2000. The connector 110 also includes fasteners, such as bolts, which are inserted through the first connecting hole 1110 and the second connecting hole 2000 to fix the connector 110 to the first rod 200.

[0091] The connector body 111 can be connected to the connector shaft 112 in the following structural manner, for example, by combining... Figure 3 and Figure 4 As shown, the connecting seat body 111 includes ear plates 1112 and connecting plates 1111. Multiple ear plates 1112, such as two, are fixedly arranged on the side of the connecting plate 1111 away from (or away from) the first rod 200 and spaced apart along the first direction. A connecting shaft 112 is installed between the two ear plates 1112, and the two ends of the connecting shaft 112 are respectively connected to the corresponding ear plates 1112. One end of the two connecting rods 131 can be installed on the connecting shaft 112 along the first direction.

[0092] The connecting plate 1111 can be a straight plate structure; specifically, the connecting plate 1111 can be a square plate or a strip plate. The ear plate 1112 and the connecting plate 1111 can be constructed as an integral structure to ensure the mechanical strength of both.

[0093] The connecting shaft 112 can be a cylindrical structure or a polygonal prism structure, without specific limitations.

[0094] In this optional embodiment, one end of each of the two connecting rods 131 arranged along the first direction is connected to the connecting shaft 112 to realize the assembly operation of the connecting frame 130 and the connecting shaft 112, and the two connecting frames 130 can be located between the two ear plates 1112 to prevent the connecting frame 130 from detaching from the connecting shaft 112.

[0095] The connecting plate 1111 is provided with a plurality of first connecting holes 1110 arranged at intervals along the second direction, and the plurality of first connecting holes 1110 are used to connect the first rod 200 by fasteners.

[0096] Specifically, the second direction can be related to Figure 3In the coordinate system, the Y-axis is parallel and can be used to represent the length direction of the first member 200, and is perpendicular to the first direction.

[0097] The first connecting hole 1110 can be a strip hole or a waist-shaped hole.

[0098] In this optional embodiment, since the connecting plate 1111 has a plurality of first connecting holes 1110 spaced apart along the second direction, at least two fasteners can be inserted through the corresponding first connecting holes 1110 and the second connecting holes 2000 of the first rod 200. This increases the connection point between the connecting seat 110 and the first rod 200, thereby improving the connection stability between the connecting member 100 and the first rod 200. Furthermore, since the first connecting holes 1110 can be strip-shaped or oblong, the connection position between the connecting plate 1111 and the first rod 200 can be flexibly adjusted, thereby improving the assembly flexibility of the connecting seat 110 and the first rod 200.

[0099] Optionally, combined Figure 7 As shown, one end of the connecting rod 131 is provided with a through hole 1310, the connecting shaft 112 passes through the through hole 1310 of the connecting rod 131, and the connecting rod 131 is configured to rotate about the axis of the connecting shaft 112.

[0100] Specifically, the size of the through hole 1310 is greater than or equal to the diameter of the connecting rod 131, so that the connecting shaft 112 can be smoothly inserted into the through hole 1310 of the connecting rod 131. One end of the connecting rod 131 can rotate relative to the connecting shaft 112 about the axis of the connecting shaft 112.

[0101] In an optional embodiment, since the connecting shaft 112 passes through the through holes 1310 at the ends of the two connecting rods 131, the connecting rods 131 can rotate around the axis of the connecting shaft 112, and the second rod 300 is sleeved on the outside of the entire connector 100, so that the second rod 300 can rotate relative to the axis of the connecting shaft 112 and the first rod 200 through the connecting frame 130 and the abutment 140, thereby making it applicable to the assembly operation between rods with different included angles, thereby expanding the applicability of the connector 100 and the assembly flexibility of the bracket.

[0102] The present invention discloses a bracket including a first rod 200 and a second rod 300, and a connector 100 as described in the above embodiment. The connector 100 has a connecting seat 110 connected to the first rod 200. The connector 100 has a connecting frame 130 and an abutment 140 embedded in the inner cavity of the second rod 300, and the abutment 140 abuts against the inner wall surface of the second rod 300.

[0103] Optionally, two of the multiple members arranged at an angle (e.g., the first member 200 and the second member 300) can be assembled and fixed together by the aforementioned connector 100.

[0104] As exemplified, the connecting seat 110 can be fixedly connected to one of the first rod members 200 in the following ways: for example, a first connecting hole 1110 can be opened on the connecting seat 110, and a second connecting hole 2000 can be opened on the first rod member 200. Fasteners, such as bolts, can be passed through the first connecting hole 1110 of the connecting seat 110 and the second connecting hole 2000 of the first rod member 200 to fix the connecting member 100 to the first rod member 200. Alternatively, the connecting seat 110 can also be fixedly connected to the first rod member 200 by means of snap-fit ​​or welding, which will not be elaborated here.

[0105] The abutment 140 of the connector 100 can be detachably connected to the second rod 300 in the following manner: the opposite ends of the two abutment 140 are respectively fixedly connected to the ends of the adjusting member 120 (for example, by means of threaded connection). The two abutment 140 are inserted into the second rod 300. By rotating the adjusting member 120, the two abutment 140 can be operated to move towards each other (i.e., move closer to each other) or away from each other (i.e. move away from each other), so that the opposite ends of the two abutment 140 abut against or separate from the inner wall of the second rod 300. When the opposite ends of the two abutment 140 abut against the opposite inner wall of the second rod 300, the connector 100 and the second rod 300 are fixedly connected. When the opposite ends of the two abutment 140 separate from the opposite inner wall of the second rod 300, the connector 100 and the second rod 300 are disassembled.

[0106] This bracket can be used as a photovoltaic support for photovoltaic modules, and it can also be applied to other fields.

[0107] The beneficial effects of the bracket in this embodiment compared to the related technology are the same as those of the connector 100 described above, and will not be repeated here.

[0108] Optionally, combined Figure 8 As shown, the second rod 300 includes a first side plate 301, a second side plate 302 and a third side plate 303. The first side plate 301 and the second side plate 302 are spaced apart. The third side plate 303 is inclined relative to the first side plate 301 and the second side plate 302 respectively. The two sides of the third side plate 303 are respectively connected to the first side plate 301 and the second side plate 302. An opening 3001 is formed between the ends of the first side plate 301 and the second side plate 302 away from the third side plate 303.

[0109] Specifically, taking one of the members, such as the second member 300, as an example, the second member 300 includes a first side plate 301, a second side plate 302, and a third side plate 303. The first side plate 301 and the second side plate 302 can be extended along a first direction ( Figure 8The third side plate 303 is disposed between the first side plate 301 and the second side plate 302 in the X-axis direction of the coordinate system. The first side plate 301 and the second side plate 302 are respectively set at an angle to the third side plate 303. The two sides of the third side plate 303 along the first direction are respectively connected to the first side plate 301 and the second side plate 302, so that the first side plate 301, the second side plate 302 and the third side plate 303 can form a rod-shaped shell structure with an opening 3001.

[0110] After the second rod 300 is fitted onto the outside of the entire connector 100, the operator can operate the adjusting member 120 to rotate through the opening 3001 of the second rod 300 to realize the assembly operation of the connector 100 and the second rod 300. Therefore, the opening 3001 can facilitate the operator to operate the adjusting member 120, thereby improving the ease of disassembly and assembly of the first rod 200 and the second rod 300.

[0111] Furthermore, the structures of the first side plate 301 and the second side plate 302 can be the same or different; if the third side plate 303 is an arc-shaped plate structure, the axial end of the second rod 300 can be a C-shaped structure; if the third side plate 303 is a straight plate structure, the axial end of the second rod 300 can be a U-shaped structure; of course, the second rod 300 is not limited to the above-mentioned C-shaped steel rod or U-shaped steel rod, and no specific limitation is made here.

[0112] This disclosure provides a new energy power station, which includes the connector 100 as described in the above embodiment, or the bracket as described in the above embodiment.

[0113] Specifically, if the support structure is a photovoltaic support structure, then the new energy power station is a photovoltaic power station. A new energy power station also includes photovoltaic modules, which can be installed on the support structure. A new energy power station can also be a power station using other energy sources, without specific limitations here.

[0114] The beneficial effects of the new energy power station in this embodiment compared to related technologies are the same as those of the connectors or brackets described above, and will not be repeated here.

[0115] While the above disclosure is provided, the scope of protection of this disclosure is not limited thereto. Those skilled in the art can make various changes and modifications without departing from the spirit and scope of this disclosure, and all such changes and modifications will fall within the scope of protection of this disclosure.

Claims

1. A connector, characterized in that, It includes a connecting seat (110), an adjusting member (120), a connecting frame (130), and an abutment member (140), wherein the connecting seat (110) is connected to the first rod member (200); The connecting frame (130) is connected to the connecting seat (110). The connecting frame (130) is fixed in the inner cavity of the second rod (300). The abutment (140) is movably installed on the connecting frame (130). The adjusting member (120) is driven to connect with the abutment (140). The abutment (140) is configured to abut against the inner wall surface of the inner cavity under the drive of the adjusting member (120).

2. The connector according to claim 1, characterized in that, The connecting frame (130) is provided with a through hole structure (1322), the adjusting member (120) is provided with a connecting hole structure (123), and the abutting member (140) is inserted into the through hole structure (1322) and the connecting hole structure (123); the abutting member (140) is provided with an external thread structure; The external thread structure is adapted to the connecting hole structure (123) of the adjusting member (120), and the abutting member (140) is movably connected to the through hole structure (1322) in the first direction.

3. The connector according to claim 2, characterized in that, The abutment (140) is a rod-shaped structure, and the diameter of the abutment (140) matches the inner diameter of the through hole structure (1322) and the connecting hole structure (123).

4. The connector according to claim 2, characterized in that, The two ends of the adjusting member (120) are respectively connected to the abutting member (140).

5. The connector according to claim 2, characterized in that, The connecting frame (130) includes a connecting rod (131) and a bolt sleeve (132). One end of the connecting rod (131) is connected to the connecting seat (110), and the end of the connecting rod (131) away from the connecting seat (110) is connected to the bolt sleeve (132). The through hole structure (1322) is provided in the bolt sleeve (132). The abutment (140) includes a bolt portion (141), and the through-hole structure (1322) of the bolt sleeve (132) is fastened to the bolt portion (141).

6. The connector according to claim 5, characterized in that, The bolt portion (141) passes through the through hole structure (1322) of the bolt sleeve (132), the bolt sleeve (132) is threadedly connected to the bolt portion (141), and the bolt portion (141) moves linearly relative to the connecting frame (130) under the rotational drive of the adjusting member (120).

7. The connector according to claim 5, characterized in that, The outer wall of the bolt portion (141) is provided with a first limiting structure (1410) extending along its axial direction, and the inner wall of the bolt sleeve (132) is provided with a second limiting structure (1321) extending along its axial direction. The first limiting structure (1410) and the second limiting structure (1321) are matched and inserted.

8. The connector according to claim 7, characterized in that, The first limiting structure (1410) is a groove structure, and the second limiting structure (1321) is a convex strip structure.

9. The connector according to claim 8, characterized in that, The circumferential inner wall of the bolt sleeve (132) is provided with the convex strip structure, which extends along the axial direction of the bolt sleeve (132).

10. The connector according to claim 8, characterized in that, The groove structure and the convex strip structure are matched in shape.

11. The connector according to claim 5, characterized in that, The abutment (140) further includes a cone portion (142) disposed at the end of the bolt portion (141) away from the adjusting member (120).

12. The connector according to claim 11, characterized in that, The diameter of the end of the vertebral body (142) near the bolt portion (141) is larger than the diameter of the end of the vertebral body (142) away from the bolt portion (141).

13. The connector according to claim 5, characterized in that, The adjusting member (120) includes a nut structure (121) and a limiting plate (122). The connecting hole structure (123) is disposed in the nut structure (121), and the limiting plate (122) is disposed inside the connecting hole structure (123). The limiting plate (122) is configured to divide the connecting hole structure (123) of the nut structure (121) into multiple chambers, and a portion of the bolt part (141) is inserted into the corresponding chamber.

14. The connector according to claim 5, characterized in that, The connecting seat (110) includes a connecting seat body (111) and a connecting shaft (112). The connecting seat body (111) is provided with a first connecting hole (1110) for connecting to the first rod (200). The axial end of the connecting shaft (112) is connected to the connecting seat body (111), and one end of the connecting rod (131) is connected to the connecting shaft (112).

15. The connector according to claim 14, characterized in that, The first rod (200) is provided with a second connecting hole (2000), and the connecting seat (110) further includes a fastener, which passes through the first connecting hole (1110) and the second connecting hole (2000).

16. The connector according to claim 14, characterized in that, The connecting seat body (111) includes an ear plate (1112) and a connecting plate (1111). The ear plate (1112) is fixed to the side of the connecting plate (1111) away from the first rod (200). The two ends of the connecting shaft (112) are respectively connected to the corresponding ear plate (1112).

17. The connector according to claim 16, characterized in that, The ear plate (1112) and the connecting plate (1111) are constructed as an integral structure.

18. The connector according to claim 14, characterized in that, One end of the connecting rod (131) is provided with a through hole (1310), the connecting shaft (112) passes through the through hole (1310) of the connecting rod (131), and the connecting rod (131) is configured to rotate about the axis of the connecting shaft (112).

19. A stent, characterized in that, It includes a first rod (200) and a second rod (300) and a connector as described in any one of claims 1 to 18, wherein the connector seat (110) of the connector is connected to the first rod (200), and the connector bracket (130) and the abutment (140) of the connector are embedded in the inner cavity of the second rod (300), and the abutment (140) abuts against the inner wall surface of the second rod (300).

20. The stent according to claim 19, characterized in that, The second rod (300) includes a first side plate (301), a second side plate (302), and a third side plate (303). The first side plate (301) and the second side plate (302) are spaced apart. The third side plate (303) is inclined relative to the first side plate (301) and the second side plate (302), and the two sides of the third side plate (303) are respectively connected to the first side plate (301) and the second side plate (302). An opening (3001) is formed between the ends of the first side plate (301) and the second side plate (302) away from the third side plate (303).

21. A new energy power station, characterized in that, Includes the connector as described in any one of claims 1 to 18, or includes the bracket as described in claim 19 or 20.