A solid-surface deployable tent structure with highly expandable assembly capabilities
By designing a solid-surface expandable tent structure with rotating splicing components and supporting unit groups, the problems of fixed height and poor maneuverability of rigid shelters are solved, and flexible adjustment of the tent height and rapid folding and storage are achieved, meeting the needs of emergency rescue and rapid deployment.
Patent Information
- Application Number
- CN202411567680.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2044-11-05
AI Technical Summary
Existing rigid shelters cannot be flexibly adjusted in height, which limits the versatility of the space, has poor maneuverability, and has high costs for rapid deployment and transportation, making it difficult to meet the needs of emergency rescue and rapid deployment scenarios.
It adopts a solid-surface expandable tent structure with a high degree of expansion and assembly capabilities. Through the design of rotating splicing components and support unit groups, the tent height can be flexibly adjusted and quickly folded and stored. The Yoshimura origami principle is used to improve the folding and storage rate, and the Bricard connecting rod mechanism is combined to enhance stability.
It enables flexible adjustment of the tent height, improves the versatility and maneuverability of the space, reduces transportation costs, and improves the efficiency of rapid deployment and emergency rescue.
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Figure CN119308423B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of tents, in particular to a solid-surface deployable tent structure with a high degree of expansion and assembly capabilities. Background Art
[0002] In recent years, the demand for temporary building structures has gradually increased, especially in the fields of outdoor activities, emergency rescue and field work. Therefore, the demand for tents is very high. Tents are sheds propped up on the ground to shelter from wind, rain and sun and for temporary living. Tents are divided into two categories: flexible shelters and rigid shelters. These tents are mainly made of soft materials. Their notable features are that they are easy to fold, light and easy to carry, suitable for outdoor activities such as hiking and camping. Rigid shelters usually refer to temporary or semi-permanent building structures built with hard materials. These tents are characterized by stable structure, high durability, and can provide better thermal insulation and protection.
[0003] At present, flexible shelters are mainly used at home and abroad. Deployability is the most prominent feature of flexible shelters. However, due to the limitations of the materials used, this type of tent has poor thermal insulation, low energy utilization efficiency, and weak protection capabilities.
[0004] Existing rigid shelters, such as modular containers or frame structures, have outstanding structural stability and thermal insulation performance, but their height is fixed and cannot be flexibly adjusted according to usage requirements, which limits the versatility and adaptability of the interior space. Specifically, there are the following problems: 1. The height is fixed and cannot be flexibly adjusted according to actual needs, such as the need to place higher items, which limits the multifunctional use of the space; 2. Due to the low folding storage ratio and relatively high transportation costs, it is extremely unfavorable for occasions that require rapid movement and deployment, and has poor maneuverability; 3. The lack of rapid deployment and height adjustment capabilities reduces the efficiency and practicality in emergency rescue and rapid deployment scenarios. Summary of the Invention
[0005] The purpose of the present invention is to provide a solid-surface expandable tent structure with a height expansion and assembly function, which can quickly fold and store the rigid shelter and increase the tent height according to usage requirements, thereby meeting usage requirements at different heights.
[0006] In order to solve the problems of the prior art, the present invention provides a solid-surface deployable tent structure with a highly expandable assembly function, comprising a tent, a plurality of rotating splicing components and a plurality of support unit groups;
[0007] The tent is formed by a plurality of rotating splicing assemblies assembled in a circular direction, and the plurality of rotating splicing assemblies are connected by a plurality of supporting unit groups, the plurality of rotating splicing assemblies include a basic unit group and an expansion unit group, the basic unit group includes a foldable folding top plate and a plurality of rotating connectors, and the inner surface of the folding top plate is provided with a plurality of rotating connectors for connecting with adjacent basic unit groups;
[0008] The basic unit group, the expansion unit group and the support unit group are rotatably connected to each other; one support unit group is arranged between every two expansion unit groups located at the bottom;
[0009] A plurality of the expansion unit groups can be spliced with each other in a vertical direction to expand the height of the tent, and every two expansion unit groups located at the bottom are connected by the support unit group.
[0010] Preferably, the expansion unit group includes a folding expansion plate and a folding connecting plate, the folding expansion plate is arranged at the bottom of the folding top plate, the folding connecting plate is arranged between the bottom side of the folding top plate and the side corresponding to the top of the folding expansion plate, and the folding expansion plate is connected to the folding top plate through the folding connecting plate.
[0011] Preferably, both side edges of the top inner surface of the folding expansion plate are provided with third connecting hinges connected to the adjacent folding connecting plate, and both side edges of the bottom inner surface of the folding top plate are provided with first connecting hinges connected to the adjacent folding connecting plate.
[0012] Preferably, the support unit group includes a folding support plate, which is arranged between two adjacent folding expansion plates at the bottom of the tent, and an outer surface of the folding support plate is provided with a mounting shaft for assisting folding.
[0013] Preferably, both side edges of the bottom of the inner surface of the folding expansion plate are provided with second connecting hinges for connecting with the corresponding folding support plates.
[0014] Preferably, the outer surface of the folding expansion plate is provided with a second connecting member for assisting folding, the outer surface of the folding top plate is provided with a first connecting member for assisting folding, and the outer surface of the folding connecting plate is provided with a third connecting member for assisting folding.
[0015] Preferably, the rotating connecting member includes a first hinge plate, a second hinge plate, two auxiliary triangular prisms for assisting rotation and an installation shaft; the first hinge plate and the second hinge plate are respectively connected to the inner surface of the corresponding folding top plate, and the two auxiliary triangular prisms are symmetrically arranged on the installation shaft and can rotate with the installation shaft as the center of the circle, and both auxiliary triangular prisms are provided with a connecting shaft hinged to the first hinge plate and the second hinge plate respectively.
[0016] Preferably, the folding top plate, the folding expansion plate, the folding connecting plate and the second connecting member are all made of lightweight, high-strength rigid materials.
[0017] Preferably, the thickness of the folding top plate, the folding expansion plate, the folding connecting plate and the folding support plate is 2 to 3 cm.
[0018] Compared with the prior art, the present invention has the following advantages: the solid-surface deployable tent structure with a high degree of expansion and assembly function is structurally reasonable and has the following advantages:
[0019] The present invention adopts a multi-layer composite structure. The present invention is mainly composed of the staggered arrangement of four-fold origami basic units and six-fold origami basic units, and the superposition of six-fold origami basic units along the height direction. It can flexibly adjust the height of the rigid shielding according to the height of the stored items. The four-fold origami basic unit is four folds formed by two mutually connected folding top plates and folding connecting plates connected to the two folding top plates. The six-fold origami basic unit is two mutually connected folding connecting plates, which are respectively located at the top and bottom of the folding connecting plates, and the folding top plate and the folding expansion plate connected to the folding connecting plates form six folds, thereby achieving the folding and unfolding effect of a common equivalent ideal origami, meeting the needs of storage and shielding at different heights, and by forming a plane-symmetrical Bricard connecting rod mechanism, the rigid shielding can be quickly folded and stored, and the folding storage ratio is high, meeting the subsequent transportation and transshipment needs. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of an unexpanded three-dimensional structure of a solid-surface deployable tent structure with a highly expandable and assembled function.
[0021] Figure 2 The present invention is a schematic diagram of the unexpanded upward structure of a solid-surface deployable tent structure with a high degree of expansion and assembly capabilities.
[0022] Figure 3 It is a three-dimensional schematic diagram of a solid-surface deployable tent structure with a highly expandable and assembled function.
[0023] Figure 4The present invention is a schematic diagram of the first connecting hinge and rotating connecting member structure of a solid-surface deployable tent structure with a highly expandable assembly function.
[0024] Figure 5 The present invention is a schematic diagram of a structure in which multiple rotating splicing components of a solid-surface deployable tent structure with a highly expandable assembly function are spliced together.
[0025] Figure 6 The diagram is a schematic diagram of the outer surface of the rotating splicing component structure of a solid-surface deployable tent structure with a highly expandable assembly function.
[0026] Figure 7 The diagram is a schematic diagram of the inner surface of the rotating splicing component structure of a solid-surface deployable tent structure with a highly expandable assembly function.
[0027] Figure 8 The present invention is a schematic diagram of the inner surface of a folding top plate, two folding connecting plates and a folding expansion plate structure of a solid-surface deployable tent structure with a high degree of expansion and assembly capabilities.
[0028] Figure 9 yes Figure 4 A magnified schematic diagram of the structure at point A.
[0029] Figure 10 The present invention is a folding schematic diagram of two folding expansion panels and a folding support panel structure of a solid-surface deployable tent structure with a high degree of expansion and assembly capabilities.
[0030] Figure 11 The present invention is a schematic diagram of a four-fold structure of two folding top plates and folding connecting plates of a solid-surface deployable tent structure with a highly expandable assembly function.
[0031] Figure 12 A schematic diagram of the folding structure of a six-fold structure of a folding top plate, two folding connecting plates and a folding expansion plate of a solid surface deployable tent structure with a high degree of expansion and assembly capabilities.
[0032] Figure 13 The present invention is a schematic diagram of the inner surface structure of a folding connecting plate and two folding top plates of a solid-surface deployable tent structure with a highly expandable assembly function.
[0033] The numbers in the figure are: 1. tent; 2. folding top plate; 3. folding expansion plate; 4. folding connecting plate; 5. folding support plate; 6. first connecting hinge; 7. second connecting hinge; 8. third connecting hinge; 9. rotating connector; 10. first connector; 11. second connector; 12. third connector; 13. mounting shaft; 14. first hinge plate; 15. connecting shaft; 16. auxiliary triangular prism; 17. second hinge plate. DETAILED DESCRIPTION
[0034] In order to further understand the features, technical means, specific objectives and functions achieved by the present invention, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.
[0035] Reference Figures 1-13 As shown, the present invention provides: a solid-surface expandable tent structure with a highly expandable assembly function, comprising a circular tent 1, a plurality of rotating splicing components and a plurality of support unit groups, wherein the specific number of rotating splicing components and support unit groups is not limited. The present application is based on the Yoshimura origami principle by mutually splicing a plurality of rotating components and a plurality of support unit groups, thereby improving the folding and storage rate, and through the support unit components, a larger contact area with the ground can be achieved, thereby improving the stability of the tent.
[0036] The tent 1 is formed by the vertices of several rotating splicing components that are in contact with each other and spliced together in a circular direction, and the several rotating splicing components are connected by several supporting unit groups. The several rotating splicing components include a basic unit group and an expansion unit group. The basic unit group includes a folding top panel 2 that can rotate and fold both sides toward the middle and several rotating connectors 9. The inner surface of the folding top panel 2 is provided with several rotating connectors 9 for connecting with adjacent basic unit groups.
[0037] The basic unit group, the expansion unit group and the support unit group are rotatably connected to each other; one support unit group is arranged between every two expansion unit groups located at the bottom;
[0038] Several expansion unit groups can be spliced with each other in the vertical direction to expand the height of the tent 1. By expanding in the height direction, it can adapt to the need to place taller items in the tent. The top of the expansion unit group expanded in the vertical direction is connected to the bottom of the corresponding expansion unit located above, and every two expansion unit groups located at the bottom are connected through a support unit group. The support unit assembly achieves the effect of increasing the contact area with the ground and improving stability.
[0039] In this embodiment, the expansion unit group includes a folding expansion plate 3 and a folding connecting plate 4. The folding expansion plate 3 is arranged at the bottom of the folding top plate 2, and the folding connecting plate 4 is arranged between the bottom side of the folding top plate 2 and the side corresponding to the top of the folding expansion plate 3. The folding expansion plate 3 is connected to the folding top plate 2 through the folding connecting plate 4.
[0040] Both the folding expansion plate 3 and the folding connecting plate 4 are folded from the outside to the inside with the central axis as the rotation axis on both sides. The vertex formed by the two side edges of the top of the folding expansion plate 3 is in contact with the bottom point formed by the two side edges of the top of the folding top plate 2, and the folding expansion plate 3 is connected to the folding top plate 2 through the folding connecting plate 4. And because multiple groups of expansion unit groups are spliced with each other in a circular direction, one side edge of the folding expansion plate 3 is connected to one side edge of the folding top plate 2 through the folding connecting plate 4, and the other side edge of the folding expansion plate 3 is connected to the other side of the folding top plate 2 through the folding connecting plate 4 in another group of expansion unit groups.
[0041] In this embodiment, both sides of the top of the inner surface of the folding expansion panel 3 are provided with third connecting hinges 8 connected to the adjacent folding connecting panels 4. The adjacent folding connecting panels 4 refer to the folding connecting panels 4 in another group of expansion units, which are connected to the folding connecting panels 4 in the expansion unit group through the third connecting hinges 8 set on both sides of the top of the inner surface of the folding expansion panel 3. Both sides of the bottom of the inner surface of the folding top panel 2 are provided with first connecting hinges 6 connected to the adjacent folding connecting panels 4. Similarly, the two first connecting hinges 6 set at the bottom of the folding top panel 2 can be connected to the folding connecting panel 4 set on one side of the expansion unit. Because the two expansion units are spliced with each other, the folding connecting panel 4 in the other expansion unit is located on the other side of the expansion unit. Therefore, the two first connecting hinges 6 set on both sides of the bottom of the inner surface of the folding top panel 2 can be connected to the two folding connecting panels 4, thereby increasing the connection stability between the folding expansion panel 3 and the folding connecting panel 4.
[0042] In this embodiment, the support unit group includes a folding support plate 5, which is arranged between two adjacent folding expansion plates 3 at the bottom of the tent 1. The two adjacent folding expansion plates 3 are two expansion unit groups spliced together. The outer surface of the folding support plate 5 is provided with an installation shaft 13 for assisting folding. The two sides of the folding support plate 5 are folded from the outside to the inside through the installation shaft 13 with the central axis as the rotation axis.
[0043] In this embodiment, second connecting hinges 7 for connecting with the corresponding folding support plates 5 are provided on both sides of the bottom of the inner surface of the folding expansion plate 3 .
[0044] For the sake of clarity, we will take the example of three expansion unit groups connected together. Please refer to the attached figure in the manual. Figure 5 The expansion unit group located in the middle is referred to as the A expansion unit group, the one located on the left is referred to as the B expansion unit group, and the one located on the right is referred to as the C expansion unit group.
[0045] When the two expansion unit groups are spliced together, the folding top plate 2 of the A expansion unit group is not connected to the folding expansion plate 3 with its folding connecting plate 4 on the side thereof. The folding connecting plate 4 of the C expansion unit group makes the first connecting hinge 6 provided on the bottom inner surface of the folding top plate 2 in the A expansion unit group and the third connecting hinge 8 provided on the top inner surface of the folding expansion plate 3 connected to achieve mutual splicing to enhance rotational stability. Similarly, the folding connecting plate 4 in the A expansion unit group is connected to the first connecting hinge 6 through the third connecting hinge 8 in the B expansion unit group, achieving the effect of several rotating splicing components being spliced together in a ring to form a tent 1.
[0046] When the three expansion unit groups are spliced together, a folding support plate 5 is provided between the folding expansion plate 3 of the expansion unit group A and the folding expansion plate 3 of the expansion unit group B, and a folding support plate 5 is also provided between the folding expansion plate 3 in the expansion unit group A and the folding expansion plate 3 in the expansion unit group C. Therefore, the second connecting hinges 7 provided on both sides of the bottom inner surface of the folding expansion plate 3 of the expansion unit group A are respectively connected to the two sides of the two folding support plates 5, thereby achieving the effect of installing the folding support plate 5.
[0047] In this embodiment, a second connecting member 11 for assisting folding is provided at the central axis of the outer surface of the folding expansion plate 3, and the two sides of the folding expansion plate 3 are connected by two hinges of the second connecting member 11, so that it can be folded from the outside to the inside through the second connecting member 11 with the central axis as the rotation axis. A first connecting member 10 for assisting folding is provided at the central axis of the outer surface of the folding top plate 2, and the two sides of the folding top plate 2 are connected by two hinges of the first connecting member 10, so that it can be folded from the outside to the inside through the first connecting member 10 with the central axis as the rotation axis. A third connecting member 12 for assisting folding is provided at the central axis of the outer surface of the folding connecting plate 4, and the two sides of the folding connecting plate 4 are connected by two hinges of the third connecting member 12, so that it can be folded from the outside to the inside through the third connecting member 12 with the central axis as the rotation axis. The above-mentioned first connecting hinge 6, first connecting member 10, second connecting hinge 7, third connecting hinge 8, second connecting member 11, third connecting member 12 and mounting shaft 13 are all mature existing technologies and therefore will not be described in detail.
[0048] When the folding expansion plate 3 and the folding connecting plate 4 are expanded in the height direction in the expansion unit group, the Bricard connecting rod mechanism in which two expansion unit groups are expanded in the height direction and form a plane symmetry can be referred to as follows: Figure 8 , ( Figure 8That is, it is a schematic diagram of expansion of the expansion unit group along the height direction). During expansion, the vertices and bottom points of the two folding expansion plates 3 are in contact, and the two folding expansion plates 3 are connected by a folding connecting plate 4, wherein the second connecting hinges 7 arranged on both sides of the bottom of the upper folding expansion plate 3 and the third connecting hinges 8 located on both sides of the top of the lower folding expansion plate 3 are respectively connected to the folding connecting plates 4 located on both sides between the two folding expansion plates 3.
[0049] Please refer to the attached drawings in the instruction manual Figure 3 and the accompanying drawings Figure 8 , ( Figure 3 and Figure 8 (For different viewing angles, showing the outer surface and the inner surface respectively) There are two panels on one side of the two folding connecting plates 4 between the two folding expansion plates 3, of which Figure 3 and Figure 8 In E1 and E2, there are two folding expansion boards 3 with a total of four panels, which are Figure 3 and Figure 8 The six panels C1, C2, D1 and D2 are equivalent to six rods, which are equivalent to the connecting joints of the rods through the two second connecting members 11 located on the outer surfaces of the two folding expansion panels 3 and the two third connecting hinges 8 located on the lower folding expansion panel 3 and the two second connecting hinges 7 located on the upper folding expansion panel 3. Therefore, a plane-symmetrical Bricard linkage mechanism similar to the previous one can be directly formed. Compared with the four-fold origami vertex, there is no need to add auxiliary panels. Therefore, in the connecting device, only a hinge composed of an ordinary pin and a movable hinge is used.
[0050] In this embodiment, the rotating connecting member 9 includes a first hinge plate 14 connected to the folding top plate 2, a second hinge plate 17 connected to the folding top plate 2 in an adjacent group of expansion unit groups, two auxiliary triangular prisms 16 for assisting rotation and an installation shaft 13; the first hinge plate 14 and the second hinge plate 17 are respectively connected to the inner surfaces of the corresponding folding top plate 2, and the two auxiliary triangular prisms 16 are symmetrically arranged on the installation shaft 13, and can rotate with the installation shaft 13 as the center of the circle, and the two auxiliary triangular prisms 16 are both provided with a connecting shaft 15 hinged to the first hinge plate 14 and the second hinge plate 17 respectively.
[0051] The first hinge plate 14 in a rotating connector 9 is connected to one side plate of a group of folding top plates 2, and the second hinge plate 17 is connected to one side plate of another group of folding top plates 2. The first hinge plate 14 and the second hinge plate 17 are respectively connected to one side plate of the two groups of folding top plates 2, totaling two plate surfaces and two plate surfaces of the folding connecting plate 4 connected to their bottom, a total of four plate surfaces, forming a plane-symmetrical Bricard six-bar linkage mechanism requiring six plates to be equivalent to six rods. There are only four plates at the four fold vertices, so two plate surfaces of two auxiliary triangular prisms need to be added, a total of six plate surfaces, equivalent to six rods, connected by pins and hinges between each two, specifically two first connecting hinges 6, the third connecting member 12 on the outer surface of the folding connecting plate 4 and the mounting shaft 13 and two connecting shafts 15 in the rotating connector 9, to form a linkage mechanism, the above-mentioned plane-symmetrical Bricard linkage mechanism.
[0052] For the sake of clarity, further explanation is given. Since the six-fold unit can only form a circular tube-like structure and the top cannot be closed, the folding top plate 2 is extended to form a closed structure of four-fold origami basic units + six-fold origami basic units arranged in an alternating manner, achieving the folding and unfolding effect equivalent to ideal origami. No assembly is required, and the structure can be stored and unfolded by folding and unfolding, which greatly improves the construction speed and portability, and can better meet the needs of outdoor activities, emergency rescue and field work for temporary buildings.
[0053] The following describes the basic unit of four-fold origami:
[0054] Please refer to the attached drawings in the instruction manual Figure 11 The basic unit of four-fold origami is that when two folding top panels 2 are spliced together, the side connected to form an A edge. When the folding connecting plate 4 located between the two mutually spliced folding top panels 2 is connected to the two folding top panels 2 respectively, the two sides of its top form C edges and D edges respectively. The central axis part of the folding connecting plate 4 is the B edge, so there are four folds in total.
[0055] The six-fold origami basic units are arranged in a staggered manner: For easier understanding, please refer to the attached diagram of the manual. Figure 12 When the expansion unit group is spliced with the folding connecting plate 4 in another expansion unit group, one side edge of the top of the two folding connecting plates 4 is respectively spliced with the two side edges of the bottom of the folding top plate 2 (when arranged and stacked and expanded along the height direction, the folding top plate 2 is the two side edges of the bottom of the folding expansion plate 3 in the upper expansion unit group. The folding top plate 2 is used as an example here only for the convenience of expression and understanding) to form B1 side and B2 side and the central axis of the folding top plate 2 is A1 side. Similarly, one side edge of the bottom of the two folding connecting plates 4 is respectively spliced with the two side edges of the top of the folding expansion plate 3 to form B3 side and B4 side and the A2 side of the folding expansion plate 3. Therefore, there are six creases in total.
[0056] In this embodiment, the folding top plate 2, the folding expansion plate 3, the folding connecting plate 4 and the second connecting member 11 are all made of lightweight, high-strength rigid materials, specifically aluminum honeycomb panels.
[0057] In this embodiment, the thickness of the folding top panel 2, the folding expansion panel 3, the folding connecting panel 4 and the folding support panel 5 is 2 to 3 cm. The thickness of the folding top panel 2, the folding expansion panel 3, the folding connecting panel 4 and the folding support panel 5 includes 2 cm and 3 cm, as well as any value between 2 cm and 3 cm. In addition, the sizes of the first connecting hinge 6, the first connecting member 10, the second connecting hinge 7, the third connecting hinge 8, the second connecting member 11, the third connecting member 12, the rotating connecting member 9 and the mounting shaft 13 in the above content are not restricted. Similarly, as the thickness of the folding top panel 2, the folding expansion panel 3, the folding connecting panel 4 and the folding support panel 5 increases, the sizes are adjusted accordingly.
[0058] The above embodiments merely represent one or more embodiments of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art may make various modifications and improvements without departing from the scope of the present invention, and these modifications and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. A solid-surface deployable tent structure with a high degree of expansion and assembly capabilities, characterized by: It comprises a tent (1), a plurality of rotating splicing components and a plurality of supporting unit groups; The tent (1) is formed by a plurality of rotating splicing assemblies spliced together in a circular direction, and the plurality of rotating splicing assemblies are connected via a plurality of supporting unit groups, the plurality of rotating splicing assemblies comprising a basic unit group and an expansion unit group, the basic unit group comprising a foldable folding top plate (2) and a plurality of rotating connecting members (9), the inner surface of the folding top plate (2) being provided with a plurality of rotating connecting members (9) for connecting with adjacent basic unit groups; The basic unit group, the expansion unit group and the support unit group are rotatably connected to each other; one support unit group is arranged between every two expansion unit groups located at the bottom; A plurality of the expansion unit groups can be spliced with each other in a vertical direction to expand the height of the tent (1), and every two expansion unit groups located at the bottom are connected via the support unit group; The expansion unit group comprises a folding expansion plate (3) and a folding connection plate (4), wherein the folding expansion plate (3) is arranged at the bottom of the folding top plate (2), and the folding connection plate (4) is arranged between the bottom side of the folding top plate (2) and the side corresponding to the top of the folding expansion plate (3), and the folding expansion plate (3) is connected to the folding top plate (2) via the folding connection plate (4); Both sides of the top inner surface of the folding expansion plate (3) are provided with third connecting hinges (8) connected to the adjacent folding connecting plate (4), and both sides of the bottom inner surface of the folding top plate (2) are provided with first connecting hinges (6) connected to the adjacent folding connecting plate (4); The support unit group comprises a folding support plate (5) provided between the two folding expansion plates (3) at the bottom, and an outer surface of the folding support plate (5) is provided with a mounting shaft (13) for assisting folding; Second connecting hinges (7) for connecting to the corresponding folding support plates (5) are provided on both sides of the bottom of the inner surface of the folding expansion plate (3).
2. The solid-surface deployable tent structure with high-expandable assembly capabilities according to claim 1, characterized in that: The outer surface of the folding expansion plate (3) is provided with a second connecting member (11) for assisting folding, the outer surface of the folding top plate (2) is provided with a first connecting member (10) for assisting folding, and the outer surface of the folding connecting plate (4) is provided with a third connecting member (12) for assisting folding.
3. The solid-surface deployable tent structure with high-expandable assembly capabilities according to claim 1, characterized in that: The rotating connecting member (9) comprises a first hinge plate (14), a second hinge plate (17), two auxiliary triangular prisms (16) for assisting rotation, and a mounting shaft (13); the first hinge plate (14) and the second hinge plate (17) are respectively connected to the inner surface of the corresponding folding top plate (2), and the two auxiliary triangular prisms (16) are symmetrically arranged on the mounting shaft (13) and can rotate with the mounting shaft (13) as the center of a circle, and the two auxiliary triangular prisms (16) are both provided with a connecting shaft (15) hinged to the first hinge plate (14) and the second hinge plate (17).
4. The solid-surface deployable tent structure with high-expandable assembly capabilities according to claim 2, characterized in that: The folding top plate (2), the folding expansion plate (3), the folding connecting plate (4) and the second connecting member (11) are all made of lightweight, high-strength rigid materials.
5. The solid-surface deployable tent structure with high-expandable assembly capabilities according to claim 2, characterized in that: The thickness of the folding top plate (2), the folding expansion plate (3), the folding connection plate (4) and the folding support plate (5) is 2 to 3 cm.
Citation Information
Patent Citations
Foldable tent
CN108798201A
Storable vehicle-mounted house
CN113911019A