Pull rod assembly for supporting tower body
By designing a foldable tower body support tie rod assembly, the problem of difficulty in storage of the existing tie rod structure is solved, and the maximum length when supporting the tower body and the minimum length when storing is achieved, which is convenient for effective assembly, disassembly and transport.
Patent Information
- Application Number
- CN202421671490.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-07-15
AI Technical Summary
The tie rod structure in the existing tower body support device is difficult to store, which makes it difficult to effectively store and transport before assembly and after disassembly.
A tie rod assembly for tower body support is designed, including at least two tie rod singles, which can be switched between the extended and folded state by the flip connection structure to ensure that it can be folded and folded for storage when needed.
The flexible switching between the stretcher assembly between the unfolded and folded states is realized, ensuring that the length can be maximized when needed and the length can be minimized during storage, making it easier to effectively store and transport before assembly and after disassembly.
Smart Images

Figure CN222877521U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of lifting machinery, and in particular relates to a pull rod assembly for tower body support. Background Art
[0002] When the operating height of a tower crane exceeds the independent height, it is generally necessary to use an attachment device to connect the tower body to the building to ensure the stability of the tower crane. However, there are no buildings near the installation location of some tower cranes (for example, wind power jib tower cranes), and it is impossible to attach and install them. At this time, in order to ensure that the tower crane has a higher independent height, a tower support device can be added to the upper part of the tower body. The tie rod structure in the tower support device can be tensioned and supported between the upper part of the tower body and the tower crane base frame / fixed foundation. However, the existing tie rod structure generally uses cables, which are difficult to store before and after assembly. Utility Model Content
[0003] In view of the above-mentioned defects or shortcomings, the utility model provides a tie rod assembly for tower body support, aiming to solve the technical problem that the tie rod structure in the existing tower body support device is difficult to store.
[0004] To achieve the above-mentioned purpose, the utility model provides a tie rod assembly for tower body support, wherein the tie rod assembly for tower body support includes tie rod monomers, the number of tie rod monomers is at least two, at least two tie rod monomers are arranged in sequence along the length direction, and any two adjacent tie rod monomers are connected by a flip connection structure, so that at least two tie rod monomers can be folded and flipped in sequence and can be switched between an unfolded and extended state and a folded and retracted state, and at least two tie rod monomers are used to be arranged horizontally when in the folded and retracted state.
[0005] In an embodiment of the utility model, the flip connection structure is configured as a connection unit, and a first hinge part and a second hinge part are respectively provided at both ends of the connection unit. Two adjacent pull rod units are respectively and one by one movably hinged with the first hinge part and the second hinge part, and at least two pull rod units can be horizontally arranged in sequence along the height direction when in a folded and retracted state.
[0006] In an embodiment of the utility model, the connecting unit includes a first connecting plate body and a second connecting plate body, the first connecting plate body and the second connecting plate body are relatively spaced and connected to each other, the first ends of the first connecting plate body and the second connecting plate body are set as a first hinge part and form a first clamping space, the second ends of the first connecting plate body and the second connecting plate body are set as a second hinge part and form a second clamping space, and the first clamping space and the second clamping space can both be used for the pull rod unit to extend into, so that the pull rod unit and the connecting unit are connected in series and movably hinged through the hinge shaft.
[0007] In an embodiment of the utility model, the pull rod monomer includes two first pull rod plate bodies, which are relatively spaced and connected to each other, and the connecting monomer also includes a third connecting plate body. The first connecting plate body, the second connecting plate body and the third connecting plate body are sequentially relatively spaced and connected to each other, and the first ends of the first connecting plate body, the second connecting plate body and the third connecting plate body are set as first hinge parts and form two first clamping spaces, and the second ends of the first connecting plate body, the second connecting plate body and the third connecting plate body are set as second hinge parts and form two second clamping spaces, and the two first clamping spaces and the two second clamping spaces can be provided for the two first pull rod plate bodies to extend into one by one.
[0008] In an embodiment of the utility model, the pull rod unit also includes a first positioning block, a second positioning block and a block connector. The first positioning block and the second positioning block are both formed with two positioning slots arranged at intervals. The two positioning slots of the first positioning block can be correspondingly mounted on the first long sides of the two first pull rod plates of the pull rod unit, and the two positioning slots of the second positioning block can be correspondingly mounted on the second long sides of the two first pull rod plates of the pull rod unit, and the first positioning block and the second positioning block are detachably connected via the block connector.
[0009] In the embodiment of the utility model, the inner peripheral edge of the first pull rod plate body is formed with a chamfer.
[0010] In an embodiment of the utility model, the connecting unit also includes a connecting fastener and a sleeve member, the sleeve member is placed between the first connecting plate body and the second connecting plate body, and the connecting fastener is sequentially passed through the first connecting plate body, the sleeve member and the second connecting plate body for fastening connection.
[0011] In the embodiment of the utility model, the length ratio of the pull rod monomer to the connection monomer is 30-50.
[0012] In an embodiment of the utility model, the flip connection structure is configured as a pin structure, and at least two pull rod monomers are formed with a folding accommodating space. The end of the rear pull rod monomer can be extended into the folding accommodating space of the front pull rod monomer and can be movably hinged through the pin structure, and the rear pull rod monomer is horizontally placed in the folding accommodating space of the front pull rod monomer when in a folded and retracted state.
[0013] In an embodiment of the utility model, the tie rod unit includes a fixing plate and two second tie rod plate bodies. The two second tie rod plate bodies are arranged relatively spaced apart. The fixing plate connects the two second tie rod plate bodies to enclose a folding accommodating space, and the ends of the two second tie rod plate bodies are provided with pin holes for the pin structure to pass through.
[0014] Through the above technical solution, the tower support tie rod assembly provided by the embodiment of the utility model has the following beneficial effects:
[0015] When the above-mentioned tie rod assembly for tower support is used, since at least two tie rod monomers can be arranged in sequence along the length direction, and any two adjacent tie rod monomers are connected by a flip connection structure, at least two tie rod monomers can be folded and flipped in sequence, and can be switched between an expanded and extended state and a folded and retracted state. When tension support is required between the upper part of the tower body and the tower crane base frame / fixed foundation, the tie rod assembly can be switched to an expanded and extended state. The expanded and extended state means that each tie rod monomer in the tie rod assembly is folded and flipped to the rear side of the previous tie rod monomer. At this time, the length of the tie rod assembly is the largest. When the tie rod assembly needs to be stored, the tie rod assembly can be switched to a folded and retracted state. The folded and retracted state means that each tie rod monomer in the tie rod assembly is folded and flipped to be placed in parallel with the previous tie rod monomer. Specifically, each tie rod monomer can be arranged to be placed horizontally. At this time, the length of the tie rod assembly is the smallest, which makes it convenient to store and transport the tie rod assembly before and after assembly.
[0016] Other features and advantages of the present invention will be described in detail in the subsequent specific implementation section. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The accompanying drawings are used to provide a further understanding of the embodiments of the present utility model and constitute a part of the specification. Together with the following specific embodiments, they are used to explain the embodiments of the present utility model, but do not constitute a limitation on the embodiments of the present utility model. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without creative work. In the drawings:
[0018] Figure 1 It is a structural schematic diagram of the pull rod assembly in a folded and retracted state according to the first embodiment of the utility model;
[0019] Figure 2 It is a structural schematic diagram of a pull plate unit according to the first embodiment of the utility model;
[0020] Figure 3 yes Figure 2 A schematic diagram of the enlarged structure at A in the middle;
[0021] Figure 4 It is a schematic diagram of the structure of the connecting monomer according to the first embodiment of the utility model;
[0022] Figure 5 It is a structural schematic diagram of the pull rod assembly in a folded and retracted state according to the second embodiment of the utility model;
[0023] Figure 6A schematic structural diagram of a pull rod assembly in a second embodiment of the present utility model in an unfolded and extended state;
[0024] Figure 7 yes Figure 6 Schematic diagram of the local enlarged structure.
[0025] Description of Reference Numerals
[0026] 100 tie rod monomer 110 first tie rod plate
[0027] 111 first positioning block 112 second positioning block
[0028] 113 block connector 114 first hinge hole
[0029] 120 Second tie rod plate
[0030] 121: connecting plate 122: folding accommodation space
[0031] 200 Flip connection structure 210 Connect monomer
[0032] 211 first connecting plate body 212 second connecting plate body
[0033] 213 third connecting plate 214 first clamping space
[0034] 215 second clamping space 216 second hinge hole
[0035] 217 Connecting fastener 218 Sleeve piece
[0036] 220 pin structure DETAILED DESCRIPTION
[0037] The specific embodiments of the present invention are described in detail below in conjunction with the accompanying drawings. It should be understood that the specific embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.
[0038] The tower body supporting tie rod assembly of the present invention will be described below with reference to the accompanying drawings.
[0039] like Figure 1 ,as well as Figure 5 and Figure 6 As shown, the utility model provides a tower body supporting tie rod assembly, wherein the tower body supporting tie rod assembly comprises:
[0040] The tie rod monomer 100, the number of the tie rod monomers 100 is at least two, at least two tie rod monomers 100 are arranged in sequence along the length direction, and any two adjacent tie rod monomers 100 are connected by a flip connection structure 200, so that at least two tie rod monomers 100 can be folded and flipped in sequence and can be switched between an unfolded and extended state and a folded and retracted state, and at least two tie rod monomers 100 are used to be arranged horizontally when in the folded and retracted state.
[0041] When the above-mentioned tie rod assembly for tower support is used, since at least two tie rod monomers 100 can be arranged in sequence along the length direction, and any two adjacent tie rod monomers 100 are connected by the flip connection structure 200, at least two tie rod monomers 100 can be folded and flipped in sequence, and can be switched between the unfolded and extended state and the folded and retracted state. When tension support is required between the upper part of the tower body and the tower crane base frame / fixed foundation, the tie rod assembly can be switched to the unfolded and extended state. The unfolded and extended state refers to the state in which the tie rod assembly is in the unfolded and extended state. Each tie rod monomer 100 is folded and flipped to be on the rear side of the previous tie rod monomer 100. At this time, the length of the tie rod assembly is the largest. When the tie rod assembly needs to be stored, the tie rod assembly can be switched to a folded and retracted state. The folded and retracted state means that each tie rod monomer 100 in the tie rod assembly is folded and flipped to be placed in parallel with the previous tie rod monomer 100. Specifically, each tie rod monomer 100 can be placed horizontally. At this time, the length of the tie rod assembly is the smallest, which makes it easier to store and transport the tie rod assembly before and after assembly.
[0042] Specifically, at least two tie rod monomers 100 can be placed horizontally when in a folded and retracted state, which can improve the stability of the tie rod assembly during transportation. In addition, there can be multiple tie rod monomers 100, and multiple tie rod monomers 100 are connected in sequence by flipping the connection structure 200. The number of tie rod monomers 100 can be set according to specific circumstances.
[0043] See also Figures 1 to 4In the first embodiment of the utility model, the flip connection structure 200 can be set as a connection monomer 210, and the two ends of the connection monomer 210 are respectively provided with a first hinge and a second hinge, and the two adjacent pull rod monomers 100 are respectively and one by one correspondingly movably hinged with the first hinge and the second hinge, and at least two pull rod monomers 100 can be arranged horizontally in sequence along the height direction in the folded and retracted state. Then, by setting the connection monomer 210, not only the folding and retracting of the pull rod assembly is realized, but also the flip hinges of the two adjacent pull rod monomers 100 can be set separately, so that the folding and flipping are smoother and more flexible. Specifically, the first hinge hole 114 can be opened at both ends of the pull rod monomer 100, and the second hinge hole 216 can be opened on the first hinge part and the second hinge part. The pull rod monomer 100 is movably hinged with the connection monomer 210 through the hinge shaft penetrating the first hinge hole 114 and the second hinge hole 216. In addition, when the tie rod assembly is in a folded and retracted state, the connecting unit 210 connecting two adjacent tie rod units 100 is arranged vertically.
[0044] In the first embodiment of the utility model, the connecting monomer 210 includes a first connecting plate body 211 and a second connecting plate body 212, which are arranged in a relative spacing and connected, and the first ends of the first connecting plate body 211 and the second connecting plate body 212 are set as a first hinge part and form a first clamping space 214, and the second ends of the first connecting plate body 211 and the second connecting plate body 212 are set as a second hinge part and form a second clamping space 215, and the first clamping space 214 and the second clamping space 215 can be inserted into the rod monomer 100, so that the rod monomer 100 and the connecting monomer 210 are connected in series and movable hinged through the hinge axis. That is, the connecting monomer 210 can clamp and connect the rod monomer 100, which plays a role in improving the connection strength and stability, and resisting lateral loads. Furthermore, the first connecting plate body 211 and the second connecting plate body 212 are fixedly connected in the middle area (that is, the area between the first hinge part and the second hinge part), and the first ends of the first connecting plate body 211 and the second connecting plate body 212, as well as the second ends of the first connecting plate body 211 and the second connecting plate body 212 can be provided with second hinge holes 216. After the end of the pull rod monomer 100 extends into the clamping space, the first hinge hole 114 on the pull rod monomer 100 can be connected with the second hinge hole 216 on the first connecting plate body and the second connecting plate body 212, and the hinge axis is sequentially penetrated through all the connected first hinge holes 114 and second hinge holes 216 to connect the pull rod monomer 100 and the connecting monomer 210 in series and realize movable hinge.
[0045] In the first embodiment of the utility model, the tie rod monomer 100 includes two first tie rod plate bodies 110, and the two first tie rod plate bodies 110 are arranged relatively spaced apart and connected. The connecting monomer 210 also includes a third connecting plate body 213. The first connecting plate body 211, the second connecting plate body 212 and the third connecting plate body 213 are arranged relatively spaced apart and connected in sequence, and the first ends of the first connecting plate body 211, the second connecting plate body 212 and the third connecting plate body 213 are set as first hinge parts and form two first clamping spaces 214, and the second ends of the first connecting plate body 211, the second connecting plate body 212 and the third connecting plate body 213 are set as second hinge parts and form two second clamping spaces 215. The two first clamping spaces 214 and the two second clamping spaces 215 can be inserted into by the two first tie rod plate bodies 110 one by one. That is, the rod monomer 100 can be set as a double-plate structure, and the double-plate structure obviously plays a role in strengthening the rod monomer 100. In addition, in order to continue to realize the clamping of the rod monomer 100 with a double-plate structure, the connecting monomer 210 can also be set as a three-plate structure. The two first rod plates 110 in the rod monomer 100 are respectively clamped in different clamping spaces one by one, thereby improving the stability of the folding and flipping movement.
[0046] Specifically, a first hinge hole 114 is provided at the first end of the two first tie rod plate bodies 110 and a second end of the two first tie rod plate bodies 110, and a second hinge hole 216 is provided at the first end of the first connecting plate body 211, the second connecting plate body 212 and the third connecting plate body 213, respectively. After the ends of the two first tie rod plate bodies 110 of the tie rod monomer 100 extend one by one into the two clamping spaces set at the same end, the first hinge holes 114 on the two first tie rod plate bodies 110 can be connected with the second hinge holes 216 on the first connecting plate body, the second connecting plate body 212 and the third connecting plate body 213, and the hinge axis passes through all the connected first hinge holes 114 and the second hinge holes 216 in sequence to connect the tie rod monomer 100 and the connecting monomer 210 in series and realize active hinge.
[0047] In the first embodiment of the utility model, the rod unit 100 further includes a first positioning block 111, a second positioning block 112 and a block connector 113. The first positioning block 111 and the second positioning block 112 are both formed with two positioning slots arranged at intervals. The two positioning slots of the first positioning block 111 can be correspondingly mounted on the first long sides of the two first rod plates 110 of the rod unit 100, and the two positioning slots of the second positioning block 112 can be correspondingly mounted on the second long sides of the two first rod plates 110 of the rod unit 100, and the first positioning block 111 and the second positioning block 112 are detachably connected via the block connector 113. That is, the two first rod plates 110 of the rod unit 100 are detachably connected to facilitate disassembly and replacement. The arrangement of the first positioning block 111 and the second positioning block 112 not only facilitates the positioning of the two first tie rod plates 110 before the detachable connection, but also facilitates the adjustment of the position of the first tie rod plates 110. It should be particularly noted that the first long sides and the second long sides of the two first tie rod plates 110 refer to the two sides of the two first tie rod plates 110 that are arranged opposite to each other along the length direction.
[0048] Specifically, the width of the entity part between the two positioning slots of the first positioning block 111 and the two positioning slots of the second positioning block 112 can be equal to the spacing between the two first tie rod plates 110, so that the two first tie rod plates 110 can achieve stable clamping of the positioning blocks, and the entity part between the two positioning slots can be provided with a connection hole for the block connector 113 to pass through. More specifically, the block connector 113 can be set as a threaded fastener, such as a bolt plus a locking nut. Of course, the utility model is not limited to this, and can also be set as a rivet or a pin or other suitable fastener. In addition, the positioning block group on a tie rod monomer 100 includes but is not limited to one, and can be set to at least two.
[0049] In the first embodiment of the utility model, a chamfer is formed on the inner peripheral edge of the first tie rod plate body 110. The addition of the chamfer structure facilitates the installation of the positioning block and the connecting monomer 210. It should be particularly noted that the inner side of the tie rod plate body is relative to the gap between the two tie rod plate bodies, the side facing the gap is the inner side, and the side facing away from the gap is the outer side.
[0050] In the first embodiment of the utility model, the connection monomer 210 also includes a connection fastener 217 and a sleeve member 218. The sleeve member 218 is placed between the first connection plate body 211 and the second connection plate body 212. The connection fastener 217 is sequentially inserted through the first connection plate body 211, the sleeve member 218 and the second connection plate body 212 for fastening connection. That is, the connection monomer 210 is set to be detachably connected, and the addition of the sleeve member 218 can ensure the distance between the two adjacent connection plates to achieve the clamping of the first tie rod plate body 110. Specifically, when the connection unit 210 is set as a three-plate structure, the first connection plate body 211, the second connection plate body 212 and the third connection plate body 213 are all provided with mounting holes that are set in parallel, and a sleeve member 218 that is in parallel with the mounting holes is provided between the first connection plate body 211 and the second connection plate body 212, and a sleeve member 218 that is in parallel with the mounting holes is provided between the second connection plate body 212 and the third connection plate body 213, and the connection fastener 217 passes through all the mounting holes and the sleeve member 218 in sequence and is fastened. More specifically, the connection fastener 217 can be set as a threaded fastener, such as a bolt plus a locking nut, of course, the utility model is not limited thereto, and can also be set as a rivet or a pin or other suitable fastener.
[0051] In the first embodiment of the present invention, the length ratio of the pull rod unit 100 to the connection unit 210 can be set to 30-50, so as to minimize the number of connection units 210 and reduce the manufacturing cost. Preferably, the length ratio can be 40.
[0052] See also Figures 5 to 7 In the second embodiment of the utility model, the flip connection structure 200 can also be set as a pin structure 220, at least two tie rod monomers 100 are formed with a folding accommodating space 122, the end of the rear tie rod monomer 100 can be extended into the folding accommodating space 122 of the front tie rod monomer 100 and movably hinged through the pin structure 220, and the rear tie rod monomer 100 is horizontally placed in the folding accommodating space 122 of the front tie rod monomer 100 when it is in a folded and retracted state. It should be particularly noted that in this embodiment, all tie rod monomers 100 have the same structure, but the frame size needs to be set to decrease in sequence, so that the rear tie rod monomer 100 can always be flipped and folded and stored in the folding accommodating space 122 of the front tie rod monomer 100. After all tie rod monomers 100 are flipped and folded and stored, the outer contour size of the entire tie rod assembly is consistent with the outer contour size of the first tie rod monomer 100, so that the storage size of the tie rod assembly can be further reduced.
[0053] In the second embodiment of the utility model, the arrangement of the pin structure 220 can be that two mutually connected tie rod monomers 100 are each provided with a pin hole that can be arranged in communication with each other, and a pin connecting member is passed through all the communicating pin holes for series connection, thereby realizing a movable hinge, or one of the two mutually connected tie rod monomers 100 can be formed with a shaft mounting portion, and the other tie rod monomer 100 can be formed with a pin hole that can be fitted onto the shaft mounting portion.
[0054] In the second embodiment of the utility model, the tie rod unit 100 includes a fixing plate 121 and two second tie rod plate bodies 120. The two second tie rod plate bodies 120 are arranged relatively spaced apart. The fixing plate 121 connects the two second tie rod plate bodies 120 to enclose a folding accommodating space 122, and the ends of the two second tie rod plate bodies 120 are provided with pin holes for the pin shaft structure 220 to pass through. Specifically, the fixing plate 121 is located on one side of the two second tie rod plate bodies 120 to become the bottom side of the folding accommodating space 122. Then, the rear tie rod monomer 100 is flipped and folded to be stored in the folding accommodating space 122 of the front tie rod monomer 100. The fixing plate 121 can play a bottom side supporting role for the rear tie rod monomer 100. Since the fixing plate 121 will limit the flipping, folding and storage direction of the rear tie rod monomer 100, the rear tie rod monomer 100 can only be folded, flipped and stored from the side where the fixing plate 121 is not provided. It is not limited to that all tie rod monomers 100 have the fixing plate 121. Preferably, the first tie rod monomer 100 has the fixing plate 121, and the number of fixing plates 121 on one tie rod monomer 100 includes but is not limited to one.
[0055] Specifically, the lower end of the pull rod assembly provided by the utility model can be connected to the upwardly arranged telescopic end of the tensioning oil cylinder, and the upper end can be connected to the support arm installed on the upper part of the tower body to support the tower body. The tensioning oil cylinder can be arranged on the tower crane base frame or fixed foundation.
[0056] In summary, the pull rod assembly provided by the utility model is designed as a foldable structure, and has the advantages of simple assembly and manufacturing, and high transportation and transfer efficiency. In addition, the pull rod monomer 100 in the first embodiment adopts a double-plate structure, and the connecting monomer 210 adopts a three-plate structure, which can play a role in resisting lateral loads.
[0057] In the description of the present invention, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of the features. In the description of the present invention, "plurality" means at least two, such as two, three, etc., unless otherwise clearly and specifically defined.
[0058] In the present invention, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral one; it can be a mechanical connection, an electrical connection, or communication with each other; it can be a direct connection, or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly defined. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0059] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art may combine and combine the different embodiments or examples described in this specification and the features of the different embodiments or examples, without contradiction.
[0060] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limitations of the present invention. Ordinary technicians in the field can change, modify, replace and modify the above embodiments within the scope of the present invention.
Claims
1. A tower support tie rod assembly, characterized in that: The tower body supporting tie rod assembly comprises: A pull rod monomer (100), wherein the number of the pull rod monomers (100) is at least two, and at least two of the pull rod monomers (100) are arranged in sequence along the length direction, and any two adjacently arranged pull rod monomers (100) are connected via a flip connection structure (200), so that at least two of the pull rod monomers (100) can be folded and flipped in sequence and can be switched between an unfolded and extended state and a folded and collapsed state, and at least two of the pull rod monomers (100) are used to be arranged horizontally when in the folded and collapsed state.
2. The tower support tie rod assembly according to claim 1, characterized in that: The flip connection structure (200) is configured as a connection unit (210), and the two ends of the connection unit (210) are respectively provided with a first hinge part and a second hinge part, and the two adjacent pull rod units (100) are respectively and one-to-one correspondingly movably hinged with the first hinge part and the second hinge part, and at least two pull rod units (100) can be horizontally arranged in sequence along the height direction when in a folded and retracted state.
3. The tower support tie rod assembly according to claim 2, characterized in that: The connecting monomer (210) comprises a first connecting plate body (211) and a second connecting plate body (212), wherein the first connecting plate body (211) and the second connecting plate body (212) are arranged relatively spaced apart and connected to each other, wherein the first ends of the first connecting plate body (211) and the second connecting plate body (212) are set as the first hinge part and form a first clamping space (214), and the second ends of the first connecting plate body (211) and the second connecting plate body (212) are set as the second hinge part and form a second clamping space (215), and both the first clamping space (214) and the second clamping space (215) are accessible for the pull rod monomer (100) to extend therein, so that the pull rod monomer (100) and the connecting monomer (210) are connected in series and movably hinged via a hinge shaft.
4. The tower support tie rod assembly according to claim 3, characterized in that: The tie rod monomer (100) comprises two first tie rod plate bodies (110), and the two first tie rod plate bodies (110) are arranged relatively spaced apart and connected. The connecting monomer (210) further comprises a third connecting plate body (213), and the first connecting plate body (211), the second connecting plate body (212) and the third connecting plate body (213) are arranged relatively spaced apart and connected in sequence, and the first ends of the first connecting plate body (211), the second connecting plate body (212) and the third connecting plate body (213) are set as the first hinge parts and form two first clamping spaces (214), and the second ends of the first connecting plate body (211), the second connecting plate body (212) and the third connecting plate body (213) are set as the second hinge parts and form two second clamping spaces (215), and the two first clamping spaces (214) and the two second clamping spaces (215) can be inserted into by the two first tie rod plate bodies (110) in a one-to-one corresponding manner.
5. The tower support tie rod assembly according to claim 4, characterized in that: The rod unit (100) further comprises a first positioning block (111), a second positioning block (112) and a block connector (113); the first positioning block (111) and the second positioning block (112) are both formed with two positioning slots spaced apart from each other; the two positioning slots of the first positioning block (111) can be correspondingly mounted on the first long sides of the two first rod plates (110) of the rod unit (100); the two positioning slots of the second positioning block (112) can be correspondingly mounted on the second long sides of the two first rod plates (110) of the rod unit (100); and the first positioning block (111) and the second positioning block (112) are detachably connected via the block connector (113).
6. The tower support tie rod assembly according to claim 4, characterized in that: The inner peripheral edge of the first pull rod plate (110) is chamfered.
7. The tower support tie rod assembly according to claim 3, characterized in that: The connecting unit (210) further comprises a connecting fastener (217) and a sleeve member (218), wherein the sleeve member (218) is disposed between the first connecting plate body (211) and the second connecting plate body (212), and the connecting fastener (217) is sequentially passed through the first connecting plate body (211), the sleeve member (218) and the second connecting plate body (212) to perform a fastening connection.
8. The tower support tie rod assembly according to claim 2, characterized in that: The length ratio of the pull rod monomer (100) to the connection monomer (210) is 30-50.
9. The tower support tie rod assembly according to claim 1, characterized in that: The flip connection structure (200) is configured as a pin structure (220), and at least two of the pull rod monomers (100) are each formed with a folding accommodating space (122), and the end of the rear pull rod monomer (100) can be extended into the folding accommodating space (122) of the front pull rod monomer (100) and can be movably hinged through the pin structure (220), and the rear pull rod monomer (100) is horizontally placed in the folding accommodating space (122) of the front pull rod monomer (100) when in a folded and retracted state.
10. The tower support tie rod assembly according to claim 9, characterized in that: The tie rod unit (100) comprises a fixing plate (121) and two second tie rod plate bodies (120), the two second tie rod plate bodies (120) are arranged relatively spaced apart, the fixing plate (121) connects the two second tie rod plate bodies (120) to enclose and form the folding accommodating space (122), and the ends of the two second tie rod plate bodies (120) are provided with pin holes for the pin structure (220) to pass through.