CN218029229U - Platform single body with outer side decoration component of independent space frame system - Google Patents

Platform single body with outer side decoration component of independent space frame system Download PDF

Info

Publication number
CN218029229U
CN218029229U CN202121052876.2U CN202121052876U CN218029229U CN 218029229 U CN218029229 U CN 218029229U CN 202121052876 U CN202121052876 U CN 202121052876U CN 218029229 U CN218029229 U CN 218029229U
Authority
CN
China
Prior art keywords
platform
building
shaped
space
unit
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202121052876.2U
Other languages
Chinese (zh)
Inventor
刘颖刚
侯建群
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhongqingda Technology Co ltd
Original Assignee
Zhongqingda Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zhongqingda Technology Co ltd filed Critical Zhongqingda Technology Co ltd
Priority to CN202121052876.2U priority Critical patent/CN218029229U/en
Application granted granted Critical
Publication of CN218029229U publication Critical patent/CN218029229U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Fencing (AREA)

Abstract

The utility model provides a platform monomer with an outer decorative component of an independent space frame system, wherein, the components of the platform monomer comprise a bottom part, a side surface, a corner, a near end part and a far end part, the platform monomer is used for the independent space frame system, is assembled by a supporting structure comprising a plurality of upright post components, is combined with a building and is matched with the window and balcony space of a building unit; the outer side decoration component is provided with a coating, veneering or hollowed-out material and a structure which cover at least partial outer side surface of the independent space, and is designed to embody the figure and the color which are adaptive to the regional environmental characteristics of the building. The outer side decoration design is flexible, can meet the requirements of diversified living spaces, individuation, sentiment and the like, and can take the integral structure and the individual characteristics of units into consideration.

Description

Platform single body with outer side decoration component of independent space frame system
Technical Field
The utility model belongs to the technical field of building construction, relate to building element, especially relate to a platform monomer that has outside decoration component of independent space frame system.
Background
As the urbanization process is gradually accelerated, the urban population is increasing. The fourth generation houses come by the way of solving the problems of green development of land and cities in the future. However, the disadvantages of the existing fourth generation houses are quite obvious: the supporting structure of the overhanging part is built by using reinforced concrete and is directly designed on the main structure of the building, so that the distance of the overhanging scale is limited and is not suitable to exceed 3 meters; the size of the overhanging section and the height of the beam are too large, so that lighting is affected; the structure is heavy, and the weight is 8-10 times larger than that of a new product; the whole design is rigid, the change is less, the aesthetic property is poor, and the space utilization rate is low. In addition, the existing urban three-dimensional greening only aims at the vertical face of a building, and the living space problem of residents is not solved.
Accordingly, the present inventors have provided a novel independent space frame system, which includes a platform unit having an external decorative structure.
Disclosure of Invention
The utility model provides a platform monomer with outside decoration component of independent space frame system, its characterized in that, the part of platform monomer includes bottom, side, corner, near-end portion, distal end portion, the platform monomer is used for independent space frame system, assembles through the bearing structure who includes many stand components, combines with the building and matches with building unit's window and balcony space; when assembled, the platform cell has a proximal end portion adjacent a building facade and a distal end portion extending outwardly, wherein:
the outer side decoration component is provided with a coating, veneering or hollow material and a structure which cover at least partial outer side surface of the independent space, and is designed to embody the figure and the color which are adaptive to the regional environment characteristics of the building.
In one embodiment, the platform single body is provided with an outer decorative member, wherein the outer decorative member is also provided with a light and projection element in a matching way.
In one embodiment, the platform unit with the outer trim member, wherein the lateral, corner, and distal portions include a containment structure that is fixedly attached using steel pipe or steel sections to form a unitary construction.
In one embodiment, the platform unit with the outer decoration member is configured such that, when assembled, the platform unit is supported and fixed at the proximal end portion and the distal end portion thereof by a plurality of pillar members, respectively.
In one embodiment, the platform unit with the outer trim member includes a beam member, a panel member and a floor member and a support element for forming a fixed connection with a column member.
In one embodiment, the platform cell with the exterior trim member, wherein the configuration of the proximal end portion matches the window and balcony space of the building unit.
In one embodiment, the platform single body with the outer decoration components is connected with the side face, the corner, the near end part and the far end part in a splicing or fixing mode, and the platform single body is supported by a basic structure, and the material of the components of the platform single body comprises wood, bamboo, stone, glass, steel, light aluminum, rubber, plastic, composite materials or the combination of the wood, the bamboo, the stone, the glass, the steel, the light aluminum, the rubber, the plastic and the composite materials.
In one embodiment, the platform unit with the outer decoration members can be used to constitute an outdoor space matched with a window and a balcony space of a building unit, thereby extending an indoor space to form an outdoor independent green activity space.
In one embodiment, the flat surface of the platform unit with the outer decoration member is triangular, L-shaped, square, circular, oval, polygonal, C-shaped, D-shaped, U-shaped, B-shaped, leaf-shaped, corner-shaped, or a combination of two or more thereof, and the corner of the above shapes may have a circular arc or a corner.
In one embodiment, the side surface and the distal end portion of the platform single body with the outer decoration member are processed by a step slope or a cambered surface in the vertical direction, so that the influence on the lighting of the building can be reduced as much as possible.
The invention relates to an independent space frame system, which comprises a plurality of platform single bodies and a supporting structure comprising upright post members, wherein the platform single bodies can be provided with planting modules.
The framework system has a completely independent structure, is mainly applied to the window and balcony parts of the outer vertical surface of the building, is combined with the building, and can meet the lifting requirements of increasing outdoor green activity space, improving the vertical surface effect of the building, supplementing city three-dimensional green space landscape, adjusting local microclimate and the like of various buildings such as residential buildings, public buildings, industrial buildings, newly built buildings, reconstruction and extension buildings, old buildings and the like.
The invention provides a brand new independent support system, which has the following characteristics and advantages that:
(1) The independent space frame system is not rigidly connected with the building main body, so that the independent space frame system has advantages in structural stability and earthquake resistance.
(2) The independent space frame system can be suitable for existing buildings, is convenient for upgrading and transforming old buildings, increases outdoor independent green activity space, prolongs indoor space, increases comfort level of users, and improves vitality of old buildings.
(3) The independent space frame system can be suitable for new buildings, can participate in building design, replaces the traditional balcony design, reduces investment, reduces the calculation area in the sleeve and increases the volume ratio.
(4) The independent space frame system can be designed into light building materials with light metal structures as much as possible, the dead weight of the structure is effectively reduced, the steel content is low, compared with the traditional brick-concrete structure and concrete structure buildings, the dead weight is reduced by 80-90%, and the section size of a beam column is reduced by 30-50%.
(5) The independent space frame system adopts a split-level design, each level has a space with two level heights, the space utilization rate is high, the daylighting rate is increased by 50-70% compared with that of the existing fourth generation building, and the appearance is more attractive and fashionable.
(6) The independent space frame system is built by adopting a modularized design, can be of a full-assembly structure according to design requirements, can enable the building to be commercialized, prefabricated in factories and assembled on site, can be combined at will, and is high in flexibility.
(7) The independent space frame system can adopt various plane combination structures flexibly aiming at buildings with different functions, and the requirements of users are fully met.
(8) The components of the functional space of the independent space frame system can be made of different materials according to building purposes, styles and environmental characteristics, including but not limited to steel, aluminum, bamboo, wood, stone, glass, leather and other materials, and can meet the requirements of users on materials, colors and other aspects of the functional space.
(9) The periphery of the platform of the functional space of the independent space frame system can be processed by adopting a step inclined surface or a cambered surface, so that the influence on the lighting of the building is reduced as much as possible, and compared with the lighting of a flat balcony, the lighting quantity is increased by 50-70%.
(10) The functional space of the independent space frame system can be provided with a planting area which comprises plants and a water body and is used for increasing the oxygen content of air, adjusting the temperature and the humidity and further playing a role in adjusting microclimate, and a building vertical face can be full of green living machines, so that the defect of a city green system in three-dimensional dimension is overcome, and in addition, greening of the space can be combined with colored drawing of the upright posts and the upright plates to add bright colors to the building vertical face and the city outline.
(11) The platform monomer of the independent space frame system is designed flexibly on the plane form, mainly comprises a triangle, an L shape, a diamond shape, a square, a circle, an ellipse, a polygon (such as a trapezoid), a C shape, a D shape, a U shape, a B shape, a leaf shape, a corner shape or the combination or the deformation of two or more of the triangle, the L shape, the diamond shape, the square, the circle, the ellipse, the polygon (such as the trapezoid), the C shape, the D shape, the U shape, the B shape, the leaf shape and the corner shape, wherein the corner shape can also have the plane configuration (the ear shape, the spoon shape and the like) or the combination thereof, and can meet most of the existing facade types.
(12) The base structure of the independent space frame system can be a metal material such as steel or other suitable non-metal materials or composite materials, and depending on the base structure, economic, practical and beautiful building decoration materials can be adopted according to local conditions and combined with local environmental characteristics and economic conditions, and on the materials of the outer vertical surface and the bottom of the platform unit, materials including wood, bamboo, stone, glass, steel (such as steel plates and perforated plates), light aluminum materials, rubber, plastic, composite materials or combinations thereof can be adopted.
(13) The independent space frame system utilizes components such as columns, beams, plates and supports of the supporting structure, can adopt technologies such as spray painting, light and projection, and presents plant appearances in the form of moving pictures and static pictures on the frame appearance, thereby creating green plant appearances with local characteristics in different regions and generating green visual impressions on the appearance.
(14) The independent space frame system has flexible design of functional space and upright post structure, can meet the requirements of people on diversified living spaces, individuation, sentiment and the like, and can give consideration to the characteristics of integral construction and unit individuation of the building.
Drawings
The foregoing summary, as well as the following detailed description of the invention, will be better understood when read in conjunction with the appended drawings.
FIGS. 1A-1E are overall schematic diagrams of an independent space frame system according to an embodiment of the present invention, wherein FIGS. 1A,1B,1C,1D and 1E are respectively a partial perspective view, a top view, a bottom view, a front view and a right side view of the independent space frame system; where the substantially planar configuration of the platform cells of the independent space frame system is illustratively shown as triangular, the substantially planar configuration of the platform cells may take on any of the shapes or combinations described herein or otherwise suitable in various embodiments.
FIGS. 2A-2G are schematic diagrams of a platform cell assembly of an independent space frame system according to an embodiment of the present invention, showing a top view, a bottom view, a front view, a rear view, a left side view, a right side view and a right side view of the assembly, respectively; the combination comprises a platform single body with a triangular basic plane configuration and an L-shaped corner platform single body, and is suitable for a one-ladder three-family building.
FIGS. 3A-3F through 15A-15F are schematic diagrams of exemplary 8-configuration platform cells and corresponding column member connections for an independent space frame system, according to various embodiments of the present invention, including top, bottom, front, rear, left and right views, respectively, of the respective configuration platform cells; wherein the platform body has a substantially planar configuration of a triangle (FIGS. 3A-3F), a circle L (FIGS. 4A-4F), a straight L (FIGS. 5A-5F), a diamond (FIGS. 6A-6F), a circle (FIGS. 7A-7F), an ellipse (FIGS. 8A-8F), a square (FIGS. 9A-9F), a D (FIGS. 10A-10F), a U (FIGS. 11A-11F), a C (FIGS. 12A-12F), a circle B (FIGS. 13A-13F), a square B (FIGS. 14A-14F), and a polygon (FIGS. 15A-15F).
FIGS. 16A-16F through 19A-19F are schematic diagrams of corner platform monomers of independent space frame systems according to various embodiments of the present invention, wherein the corner platform monomers have substantially planar configurations of a rounded L-shape (FIGS. 16A-16F), a straight L-shape (FIGS. 17A-17F), an ear shape (FIGS. 18A-18F), and a scoop shape (FIGS. 19A-19F).
FIGS. 20A-20C through 22A-22C are schematic diagrams of exemplary 3 configurations of platform-single-ladder-two-family combinations of independent space frame architectures, respectively including top, bottom, and front views of the corresponding combinations, according to various embodiments of the present invention; wherein the platform cells in the combination have a substantially planar configuration of a triangle (fig. 20A-20C), a rounded L-shape (fig. 21A-21C), and a circle (fig. 22A-22C).
FIGS. 23A-23C-28A-28C are schematic diagrams of exemplary 5 configurations of platform cell top and bottom assemblies, respectively comprising top, bottom and front views, respectively, of independent space frame architectures according to various embodiments of the present invention, wherein the platform cells in the top and bottom assemblies have substantially planar configurations of triangular (FIGS. 23A-23C), square L (FIGS. 24A-24C), diamond (FIGS. 25A-25C), round B (FIGS. 26A-26C), square B (FIGS. 27A-27C) and D (FIGS. 28A-28C).
FIGS. 29A-29F are schematic diagrams of a platform cell assembly of an independent spaceframe system in accordance with an embodiment of the invention in top, bottom, front, back, left and right side elevational views, respectively; the combination comprises a platform single body with a triangular basic plane configuration and a corner platform single body in an L shape, and is suitable for one-ladder four-family buildings.
FIGS. 30A-30F are perspective views of a support structure including stud members for an independent space frame system (FIGS. 30A-30B), front and right side views of a combination of platform cells (illustratively triangular platform cells) and stud members (FIGS. 30C-30D), respectively, and a decorative fascia showing the stud members (FIGS. 30E-30F), according to one embodiment of the invention. The support structure includes upright members and support elements for forming a fixed connection between the platform cells of the truss system and the upright members, which may take the form of diagonal strut members, ribs, hoops or combinations thereof. The pillar member illustratively includes, from the inside to the outside, a core (e.g., concrete), a substrate (e.g., metal), a protective layer (e.g., a foamed fire concrete layer), and a facing (e.g., a metal profiled decking sheet or other facing material, including steel, aluminum, bamboo, wood, stone, glass, leather, etc., or combinations thereof).
Fig. 31A-31C are schematic views of a platform unit with planting modules of an independent space frame system according to various embodiments of the present invention, in which fig. 31A and 31B show two earthing schemes, the planting modules of the former are both earthing modules, the planting modules of the latter include an earthing module (platform side part) and a water basin module (platform corner part), and fig. 31C is a partial explosion diagram illustrating the construction of the planting modules.
FIGS. 32A-32C are schematic illustrations of the construction ofbase:Sub>A platform cell of an independent spaceframe system according to one embodiment of the invention, wherein the substantially planar configuration of the platform cell is an exemplary rounded L-shape, FIGS. 32B and 32C are enlarged cross-sectional views A-A and B-B, respectively, as shown in FIG. 32A.
FIGS. 33A-33B are schematic top plan views and corresponding cross-sectional F-F views of a platform cell depicting the construction and materials of a base plate for an independent space frame system according to one embodiment of the present invention.
Fig. 34A-34D are schematic views of the telescopic connection structure of the platform unit of the independent space frame system between the proximal end portion and the building facade according to an embodiment of the present invention, which includes a perspective view (fig. 34A), a top view (fig. 34B), a side view (fig. 34C) and a bottom view (fig. 34D), wherein the telescopic connection structure includes an expansion joint member (in the illustrated embodiment, a telescopic sleeve member), and a plate (preferably a transparent plate) can be horizontally disposed above the expansion joint member.
FIGS. 35A-35D are schematic views of a fastening connection configuration of a platform cell of an independent space frame system between its proximal end and a building facade, including a perspective view (FIG. 35A), a top view (FIG. 35B), a side view (FIG. 35C) and a bottom view (FIG. 35D), according to one embodiment of the invention, wherein the fastening connection configuration includes a fastening connection member (in the illustrated embodiment, a tubular member with a bolt).
FIGS. 36A-36C are schematic illustrations of a platform cell with lighting strips of an independent spaceframe system according to an embodiment of the invention, including a top view (FIG. 36A), a side view (FIG. 36B) and a bottom view (FIG. 36C).
FIGS. 37A-37F are schematic views of a top-bottom assembly of a platform unit with a modular independent space frame system having sunlight rooms according to one embodiment of the present invention, including a top view (FIG. 37A), a bottom view (FIG. 37B), a front view (FIG. 37C), a rear view (FIG. 37D), a left side view (FIG. 37E), and a right side view (FIG. 37F), wherein the platform unit has a substantially planar configuration of U-shape and D-shape, and the sunlight rooms are disposed in the top-bottom assembly in overlapping square space.
FIGS. 38A-38F are schematic views of the top and bottom assembly of a platform unit with a modular independent spaceframe in accordance with an embodiment of the invention, including a top view (FIG. 38A), a bottom view (FIG. 38B), a front view (FIG. 38C), a rear view (FIG. 38D), a left view (FIG. 38E), and a right view (FIG. 38F), wherein the platform unit has a substantially planar configuration of rounded B-shaped and scoop-shaped corners and the modular independent spaceframe is positioned in the upper and lower assembly at a semicircular overlapping spatial location.
39A-39B are front and left side views of a platform cell with an exterior trim component of an independent space frame system according to one embodiment of the present invention. 40A-40B illustrate a platform cell with an alternative outer trim member.
Detailed Description
In order that the technical solution, novel features, objectives and effects of the invention will be readily understood, the invention will be further illustrated and described in the following detailed description, taken in conjunction with the accompanying drawings.
Embodiment mode 1: independent space frame system
According to one embodiment of the present invention (as shown in fig. 1A-1E to 2A-2G, and 20A-20C to 29A-29F), the present invention provides an independent space frame system having independent structures that can be combined with a building and matched with window and balcony spaces of a building unit, wherein the frame system includes a plurality of platform units 100 and a support structure including column members 200; wherein the platform unit 100 has a bottom, a side, a proximal end portion near the facade of the building 300, and a distal end portion extending outward, and the platform unit 100 is supported and fixed at the proximal end portion and the distal end portion by the pillar member 200, respectively.
In one embodiment, the platform unit 100 constitutes an outdoor space matching a window and a balcony space of a construction unit, thereby extending an indoor space to form an outdoor independent green activity space.
In a specific embodiment, the platform unit 100 forms an outdoor space matched with the window and balcony space of the building unit, and the platform unit 100 and the platform units 100 adjacent to each other up and down adopt a spatial staggered design, so that the platform unit 100 has a distance between one and two layers of building units in the vertical direction (for example, a part of the headroom above the platform is one layer, and a part of the headroom is two layers), and functionally includes increasing the overhead space possessed by each layer of the platform unit 100 and optimizing the lighting effect of the platform unit 100.
In one embodiment, the proximal and distal portions of the platform unit 100 are supported and fixed by at least two and at least one of the column members 200.
In one embodiment, the proximal end of the platform monomer 100 may be in mating connection with a window and balcony structure of a building unit.
In one embodiment, the platform cell 100 includes a beam member, a plate member, and a floor member, and the platform cell 100 is fixedly connected to the column member 200 by a support element.
In one embodiment, the planar shape of the platform unit 100 is triangular, L-shaped, diamond-shaped, square, circular, oval, polygonal (e.g., trapezoidal), C-shaped, D-shaped, U-shaped, B-shaped, leaf-shaped, corner-shaped, or a combination or variation of two or more thereof, wherein the corner-shaped itself may also have the above-mentioned planar configuration (as well as ear-shaped and scoop-shaped, etc.) or a combination thereof, and the corners of the above-mentioned shapes may have circular arcs or corners.
In one embodiment, the lateral and distal portions of the platform unit 100 are processed by a step slope or a cambered surface in the vertical direction, so as to minimize the influence on the lighting of the building.
In one embodiment, the platform unit 100 is provided with planting modules and/or water pool modules at the sides and corners thereof, and a light irradiation unit.
In one embodiment, the planting module and/or the pool module includes a plurality of modular members that can be assembled and disassembled.
Embodiment mode 2: platform monomer for independent space frame system
According to another embodiment of the present invention (as shown in fig. 3A-3F to 19A-19F), the present invention provides a platform unit 100 for an independent space frame system, wherein the components of the platform unit 100 include a bottom portion, a side portion, a corner, a proximal end portion, and a distal end portion, the platform unit 100 is used for an independent space frame system, assembled by a support structure including a plurality of column members 200, combined with a building and matched with window and balcony spaces of a building unit; when assembled, the platform cell 100 has a proximal end portion adjacent to the building facade and a distal end portion extending outwardly.
In one embodiment, the side, corner, and distal portions include a containment structure.
In one embodiment, the side, corner, distal end enclosure is formed in a unitary configuration by fixedly attaching steel pipes or sections.
In one embodiment, when assembled, the platform unit 100 is supported and fixed at its proximal end and distal end by a plurality of column members 200.
In one embodiment, the platform cell 100 includes a beam member 110, a plate member 120, a floor member 133, and a support element 115 for forming a fixed connection with a column member 200.
In one embodiment, the proximal end of the platform monomer 100 is configured to match the window and balcony space of a building unit.
In one embodiment, the bottom and the side, corner, proximal end, and distal end of the platform unit 100 are connected by splicing or fixing, and the platform unit 100 is supported by a basic structure and the material of the components thereof includes wood, bamboo, stone, glass, steel, light aluminum, rubber, plastic, composite material, or a combination thereof.
In one embodiment, the platform unit 100 can be used to form an outdoor space that matches the window and balcony space of a building unit, thereby extending the indoor space to form an outdoor stand-alone green playing space.
In one embodiment, the planar shape of the platform unit 100 is triangular, L-shaped, diamond-shaped, square, circular, oval, polygonal (e.g., trapezoidal), C-shaped, D-shaped, U-shaped, B-shaped, leaf-shaped, corner-shaped, or combinations or variations of two or more thereof, wherein the corner-shaped itself may also have the above-mentioned planar configuration (as well as ear-shaped and spoon-shaped, etc.) or combinations thereof, and the corners of the above-mentioned shapes may have rounded or curved corners.
In one embodiment, the lateral and distal portions of the platform unit 100 are processed by a step slope or a curved surface in the vertical direction, so as to minimize the influence on the lighting of the building.
Embodiment 3: platform planting module combination for independent space frame system
According to another embodiment of the present invention (as shown in fig. 31A-31C), the present invention provides a platform planting module combination for an independent space frame system, wherein the components of the platform cell, including a bottom, sides, corners, proximal end portions, distal end portions, are used in an independent space frame system, assembled by a support structure comprising a plurality of stud members, integrated with a building and matched with window and balcony spaces of a building unit; when assembled, the proximal end part of the platform single body is close to the building facade, and the distal end part extends outwards; the platform unit is further provided with planting modules 142, a water pool module 143 and/or a light irradiation unit at the side edges and the corner positions thereof.
In one embodiment, the sides, corners, and distal portions of the platform assembly include enclosures and structures for housing planting modules 140, pool modules 150, and/or lighting units.
In one embodiment, the planting module and/or the pool module in the platform unit comprises a plurality of modular members that can be assembled and disassembled.
In one embodiment, the platform cell is supported and secured at its proximal and distal ends by a plurality of post members, respectively, during assembly.
In one embodiment, the platform cell comprises beam members, plate members and floor members and support elements for forming a fixed connection with the column members.
In one embodiment, the proximal end portion of the platform cell is configured to mate with a window and balcony space of a building unit.
In one embodiment, the bottom and the side, the corner, the proximal end and the distal end of the platform unit are connected by splicing or fixing, and the platform unit is supported by a basic structure and the material of the component of the platform unit comprises wood, bamboo, stone, glass, steel, light aluminum, rubber, plastic, composite material or the combination of the wood, the bamboo, the stone, the glass, the steel, the light aluminum, the rubber, the plastic and the composite material.
In one embodiment, the platform unit can be used to form an outdoor space that matches the window and balcony spaces of the building unit, thereby extending the indoor space to form an outdoor independent green activity space.
In one embodiment, the planar shape of the platform body is triangular, L-shaped, diamond-shaped, square, circular, oval, polygonal (e.g., trapezoidal), C-shaped, D-shaped, U-shaped, B-shaped, leaf-shaped, corner-shaped, or a combination or variation of two or more thereof, wherein the corner-shaped itself may also have the above-mentioned planar configuration (as well as ear-shaped, scoop-shaped, etc.) or a combination thereof, and the corners of the above-mentioned shapes may have arcs or corners.
In a specific embodiment, the side surface and the distal end part of the platform single body are processed by a step inclined surface or a cambered surface in the vertical direction, so that the influence on the building lighting can be reduced as much as possible.
Embodiment 4: upright post supporting structure for independent space frame system
According to another embodiment of the present invention (as shown in fig. 1A to 1E and fig. 30A to 30F), the present invention provides a column support structure for an independent space frame system, wherein the column support structure comprises a column member 200 and a support member 220, wherein the support member 220 is used for forming a fixed connection between the platform unit 100 and the column member 200 of the frame system, and the proximal end portion and the distal end portion of the platform unit 100 are respectively supported and fixed by at least two and at least one column member 200.
In one embodiment, the proximal and distal portions of the platform unit 100 in the column support structure are supported and fixed by 2-3 column members 200 and 1-2 column members 200, respectively.
In one embodiment, the support member 220 of the column support structure forms a fixed connection between the column member 200 and the bottom of the platform cell 100.
In one embodiment, the support member 220 of the post support structure is in the form of a diagonal strut member, a rib member, a hoop or a combination thereof.
In one embodiment, the diagonal strut members in the column support structure may be arranged in a dendritic configuration.
In one embodiment, the support member 220 of the post support structure comprises two or three rods, two or three rod ribs, or a combination thereof.
In one embodiment, the proximal end of the platform unit 100 in the column support structure is supported and fixed by two column members 200.
In a specific embodiment, two of the column members 200 in the column support structure for supporting the proximal end portions of the platform units 100 are respectively and sequentially fixedly connected with the vertically adjacent and horizontally staggered platform units 100 in the vertical direction, and at least one of the column members 200 for supporting the distal end portions of the platform units 100 is and sequentially fixedly connected with the vertically adjacent and horizontally staggered platform units 100 in the vertical direction, so as to form a structurally stable and reasonably lighting space system formed by the combination of the platform units 100 and the column members 200.
In one embodiment, the platform cell 100 of the column support structure optionally forms a reinforced connection with the column member 200 at an upper portion thereof by a cross member.
In one embodiment (illustrated in fig. 30E and 30F), the column member 200 is constructed of concrete 200a, a metal (e.g., steel) structural column 200b, foamed fire-resistant concrete 200c, a metal profiled decking sheet 200d, or other facing material (e.g., steel, aluminum, bamboo, wood, stone, glass, leather, or combinations thereof).
Embodiment 5: building with independent space frame system
According to another embodiment of the present invention (as shown in FIGS. 1E and 2G), the present invention provides a building 300 with an independent space frame system. The building 300 includes a structure with an independent space frame system having an independent structure, which is combined with the building 300 and matches with the window and balcony space of the building unit, wherein the frame system includes a plurality of platform units 100 and a support structure including column members 200; wherein the platform unit 100 has a bottom, a side, a proximal end portion near the facade of the building, and an outwardly extending distal end portion, and the platform unit 100 is supported and fixed at the proximal end portion and the distal end portion by the pillar member 200, respectively.
In one embodiment, the space frame system is connected to the building facade by a connecting member.
In one embodiment, the space frame system is connected to the building facade in a non-fastening manner through a connecting member, the connecting member is a horizontally telescopic connecting member, two ends of the connecting member are respectively fixed to the near end part of the space frame system platform unit 100 and the building facade, and a middle part of the connecting member is horizontally telescopic between the platform unit 100 and the building facade.
In one embodiment, the platform unit 100 constitutes an outdoor space matching a window and a balcony space of a construction unit, thereby extending an indoor space to form an outdoor independent green activity space.
In one embodiment, the platform unit 100 forms an outdoor space matched with a window and a balcony space of a building unit, and the platform units 100 and the platform units adjacent to each other up and down adopt a spatial staggered design, so that the platform units 100 have a space between one building unit and two building units in a vertical direction, and functionally include increasing an upper space possessed by each floor of the platform units and optimizing a lighting effect of the platform units 100.
In one embodiment, the proximal and distal portions of the platform cell 100 are supported and fixed by at least two and at least one of the column members, respectively.
In one embodiment, the proximal end of the platform monomer 100 may be in mating connection with a window and balcony structure of a building unit.
In one embodiment, the platform cell 100 includes a beam member, a plate member, and a floor member, and is fixedly connected to the column member 200 by a support element.
In one embodiment, the planar shape of the platform unit 100 is triangular, L-shaped, square, circular, oval, polygonal, C-shaped, D-shaped, U-shaped, B-shaped, leaf-shaped, corner-shaped, or a combination thereof, and the turning points of the above shapes may have circular arcs or corners.
In one embodiment, the lateral and distal portions of the platform unit 100 are processed by a step slope or a curved surface in the vertical direction, so as to minimize the influence on the lighting of the building 300.
Embodiment 6: floor construction for platform cell of independent space frame system
According to another embodiment of the present invention (as shown in fig. 33A-33B), the present invention provides a floor construction for a platform cell 100 of an independent space frame system, wherein the components of the platform cell include a bottom 102, sides 103, corners 104, proximal 105, distal 106, wherein:
the platform unit 100 is used for an independent space frame system, assembled by a support structure including a plurality of column members, combined with a building and matched with a window and a balcony space of a building unit; when assembled, the proximal end 105 of the platform cell 100 is adjacent to a building facade and the distal end extends outward;
the bottom part 102 includes a plurality of main beams 110a connected to the pillar members vertically at the periphery, a plurality of secondary beams 110b disposed between the main beams 110a, a plurality of keel purlins 110c perpendicular to the main beams 110a and the secondary beams 110b, and a bottom plate member 133; the bottom plate member 133 may be made of wood, bamboo, stone, glass, steel, light aluminum, rubber, plastic, composite material, or a combination thereof, and the upper surface of the bottom plate member 133 may have an anti-slip structure.
In one embodiment, the floor structure extension comprises the side 103, corner 104, distal portion 106 and forms a containment structure with the secondary beam members of the side 103, corner 104, distal portion 106.
In one embodiment, the enclosure of the sides 103, corners 104, and distal portion 106 is formed as a unitary structure using steel pipes or sections that are fixedly attached.
In one embodiment, during assembly, the platform cell 100 is supported and secured at its proximal end 105 and distal end 106 by a plurality of post members, respectively.
In one embodiment, the platform cell 100 includes beam members, plate and floor members, and support elements for forming a fixed connection with the column members.
In one embodiment, the proximal end of the platform monomer 100 is configured to match the window and balcony space of a building unit.
In one embodiment, the bottom 102 is connected to the sides 103, corners 104, proximal portion 105, and distal portion 106 by a splice or a solid connection.
In one embodiment, the platform unit 100 can be used to form an outdoor space that matches the window and balcony spaces of a building unit, thereby extending the indoor space to form an outdoor independent green activity space.
In one embodiment, the planar shape of the platform unit 100 is triangle, L-shaped, square, circle, ellipse, polygon, C-shaped, D-shaped, U-shaped, B-shaped, leaf-shaped, corner-shaped, or a combination of two or more thereof, and the corners of the shapes may have circular arcs or corners.
In one embodiment, the lateral surface 103 and the distal end portion of the platform unit 100 are processed by a step slope or a cambered surface in the vertical direction, so as to minimize the influence on the lighting of the building.
Embodiment 7: connecting structure of platform single body and building outer vertical face of independent space frame system
According to another embodiment of the present invention (as shown in fig. 34A-34D and fig. 35A-35C), the present invention provides a connection structure of a platform unit and a building facade of an independent space frame system, the frame system having an independent structure, combined with a building and matched with a window and a balcony space of a building unit, wherein:
the framework system includes a plurality of platform cells 100 and a support structure including column members 200; wherein the platform single body 100 has a bottom, a side, a proximal end portion near the building facade, and an outward-extending distal end portion, and the platform single body 100 is supported and fixed at the proximal end portion and the distal end portion by the pillar member 200 respectively;
wherein the space frame system and the building facade are connected by the connecting structure to form a non-fastening connection (fig. 34A-34D) or a fastening connection (fig. 35A-35D), and the connecting structure comprises a non-fastening connecting component 500a or a fastening connecting component 500b.
In the case of a non-secure connection, the connecting member is a horizontally extendable connecting member.
In one embodiment, the two ends of the connecting member are secured to the proximal end of the space frame system platform unit 100 and the building facade, respectively, in the case of a secure connection.
In one embodiment, in the case of a non-fastened connection, the connecting member is a horizontally extendable connecting member, both ends of which are fixed to the proximal end portion of the space frame system platform unit 100 and the building facade, respectively, and the middle portion of which is horizontally extendable between the platform unit 100 and the building facade. The telescoping member includes, but is not limited to, a sleeve member, a hinged member.
In one embodiment, the platform unit 100 constitutes an outdoor space matching a window and a balcony space of a construction unit, thereby extending an indoor space to form an outdoor independent green activity space.
In a specific embodiment, the platform unit 100 forms an outdoor space matched with a window and a balcony space of a building unit, and the platform unit 100 and the platform units 100 adjacent to each other up and down adopt a spatial staggered design, so that the platform unit 100 has a space between one building unit and two building units in a vertical direction, and functionally includes increasing an overhead space of each floor of the platform unit 100 and optimizing a lighting effect of the platform unit 100.
In one embodiment, the proximal and distal ends of the platform unit 100 are supported by at least two and at least one of the pillar members 200.
In one embodiment, the proximal end of the platform monomer 100 may be in mating connection with a window and balcony structure of a building unit.
In one embodiment, the platform unit 100 includes a beam member, a plate member, and a floor member, and the platform unit 100 is fixedly connected to the column member 200 by a support member.
In one embodiment, the planar shape of the platform unit 100 is triangle, L-shape, square, circle, ellipse, polygon, C-shape, D-shape, U-shape, B-shape, leaf shape, corner shape or a combination thereof, and the turning point of the above shapes may have a circular arc or a corner.
In one embodiment, the lateral and distal portions of the platform unit 100 are processed by a step slope or a curved surface in the vertical direction, so as to minimize the influence on the lighting of the building.
Embodiment 8: platform monomer with lighting band of independent space frame system
According to another embodiment of the present invention (see fig. 33A-33B and 36A-36C), the present invention provides a flat unit with lighting strip of a self-contained space frame system, wherein the frame system has a self-contained structure, integrated with a building and matching with window and balcony spaces of a building unit, wherein:
the framework system comprises a plurality of platform monomers and a support structure comprising upright column members; wherein the platform single body is provided with a bottom, a side face, a near end part close to the building facade and a far end part extending outwards, and the platform single body is supported and fixed by the upright post members at the near end part and the far end part respectively;
the space frame system and the building outer vertical surface form a fastening or non-fastening connection through the connecting construction, and the connecting construction comprises a connecting component forming the fastening or non-fastening connection;
the proximal end portion of the platform monomer and the bottom portion corresponding to the portion between the space frame system and the building outer vertical face are provided with lighting strips 600 which comprise light-transmitting lap joint components 610 made of light-transmitting materials.
In a specific embodiment, the platform monomer with the lighting belt is made of tempered glass or light-operated glass, and the light-operated glass or the light-operated glass can be provided with an anti-skid and wear-resistant coating.
In one embodiment, the platform single body with the lighting belt 600 is provided, wherein, in the case of fastening connection, two ends of the connecting member are respectively fixed to the proximal end part of the space frame system platform single body and the building outer facade; in the case of non-fastening connection, the connecting member is a horizontally telescopic connecting member, two ends of the connecting member are respectively fixed to the proximal end part of the space frame system platform unit and the building facade, and the middle part of the connecting member can be horizontally telescopic between the platform unit and the building facade.
In one embodiment, the platform unit forms an outdoor space that matches the window and balcony spaces of the building unit, thereby extending the indoor space to form an outdoor independent green activity space.
In a specific embodiment, the platform single body forms an outdoor space matched with the window and balcony space of the building unit, and the platform single body and the platform single bodies adjacent up and down adopt a space staggered design, so that the platform single body has a space between one layer and two layers of building units in the vertical direction, and the functions of the platform single body include increasing the upper space owned by each layer of the platform single body and optimizing the lighting effect of the platform single body.
In one embodiment, the proximal and distal portions of the platform cell are supported and secured by at least two and at least one of the column members 200, respectively.
In one embodiment, the proximal end portion of the platform monomer may form a mating connection with a window and balcony structure of a building unit.
In one embodiment, the platform cell includes a beam member, a plate member, and a floor member, and the platform cell is fixedly connected to a column member by a support element.
In one embodiment, the planar shape of the platform unit is triangular, L-shaped, square, circular, oval, polygonal, C-shaped, D-shaped, U-shaped, B-shaped, leaf-shaped, corner-shaped, or a combination thereof, and the turning points of the above shapes may have circular arcs or corners.
In a specific embodiment, the side surface and the distal end part of the platform single body are processed by a step slope or a cambered surface in the vertical direction, so that the influence on the lighting of the building can be reduced as much as possible.
Embodiment 9: sunshine room with platform monomer of independent space frame system
According to another embodiment of the present invention (e.g., FIGS. 37A-37F and 38A-38F), the present invention provides a solar room 700 with a platform unit of an independent space frame system, wherein the components of the platform unit include a bottom, sides, corners, proximal end portions, and distal end portions, the platform unit being used in an independent space frame system, assembled by a support structure comprising a plurality of column members, integrated with a building and matched with window and balcony spaces of a building unit; when assembled, the proximal end part of the platform single body is close to the building facade, and the distal end part extends outwards; wherein:
the bottom surface and the top surface of the solar house 700 are respectively disposed in the space between the upper and lower adjacent platform units, the solar house 700 has at least two pillars using the pillar member, and the solar house 700 has a wall surface designed according to the planar shape of the platform units, and the bottom surface, the top surface, and the side surfaces of the solar house 700 may be respectively selected to be made of a light-transmitting material.
In one embodiment, the bottom and top of the solar house 700 are respectively disposed in the overlapping space between the upper and lower adjacent platform units.
In one embodiment, the sides, corners, and distal portions of the platform modules include a containment structure that is integrally formed with steel tubes or sections that are fixedly attached.
In one embodiment, the platform cell is supported and secured at its proximal and distal ends by a plurality of post members, respectively, during assembly.
In one embodiment, the platform cell includes beam members, plate members and floor members and support elements for forming a fixed connection with the column members.
In one embodiment, the proximal end portion of the platform cell is configured to match the window and balcony space of the building unit.
In one embodiment, the bottom and the side, the corner, the proximal end and the distal end of the platform single body are connected in a splicing or fixing manner, and the platform single body depends on a basic structure and the material of the components of the platform single body comprises wood, bamboo, stone, glass, steel, light aluminum, rubber, plastic, composite materials or the combination of the wood, the bamboo, the stone, the glass, the steel, the light aluminum, the rubber, the plastic and the composite materials.
In one embodiment, the platform unit can be used to form an outdoor space that matches the window and balcony spaces of the building unit, thereby extending the indoor space to form an outdoor independent green activity space.
In one embodiment, the planar shape of the platform unit is a triangle, an L-shape, a square, a circle, an ellipse, a polygon, a C-shape, a D-shape, a U-shape, a B-shape, a leaf shape, a corner shape, or a combination of two or more thereof, and the corner of the above shapes may have a circular arc or a corner.
In a specific embodiment, the side surface and the distal end part of the platform single body are processed by a step inclined surface or a cambered surface in the vertical direction, so that the influence on the building lighting can be reduced as much as possible.
Embodiment 10: platform monomer with outer side decoration structure of independent space frame system
According to another embodiment of the present invention (e.g., FIGS. 39A-39B and 40A-40B), the present invention provides a platform unit with an exterior trim member 800 for an independent space frame system, wherein the components of the platform unit include a bottom portion, side surfaces, corners, a proximal portion, and a distal portion, the platform unit being used in an independent space frame system, assembled by a support structure comprising a plurality of column members, integrated with a building and matched with window and balcony spaces of a building unit; when assembled, the platform cell has a proximal end portion adjacent a building facade and a distal end portion extending outwardly, wherein:
the outer decoration member 800 has a coating, facing or hollowed material and a structure covering at least a partial outer surface of the independent space, and the outer decoration member 800 is designed to embody a figure and a color adapted to the environmental characteristics of the region where the building is located.
In one embodiment, the platform body has an outer decorative member 800, wherein the outer decorative member is further provided with a light and a projection element.
In one embodiment, the platform monolith with the outboard trim member 800 wherein the side, corner, distal end portions comprise a containment structure that is fixedly attached using steel pipe or steel sections to form a unitary configuration.
In one embodiment, the platform unit with the outer trim member 800 is supported and fixed at its proximal and distal ends by a plurality of pillar members, respectively, when assembled.
In one embodiment, the platform cell with the outer trim member includes a beam member, a panel member and a floor member and a support element for forming a fixed connection with a column member.
In one embodiment, the platform cell with the exterior trim member, wherein the configuration of the proximal end portion matches the window and balcony space of the building unit.
In one embodiment, the platform cell with the outer decoration element 800, wherein the bottom is connected with the side, corner, near end part, far end part in a splicing or fixing way, and the platform cell is supported by the basic structure and the material of the component comprises wood, bamboo, stone, glass, steel, light aluminum, rubber, plastic, composite material, or the combination thereof.
In one embodiment, the platform unit with the exterior trim member 800 can be used to construct an outdoor space that matches the window and balcony space of a building unit, thereby extending the indoor space to form an outdoor independent green activity space.
In one embodiment, the flat surface of the platform unit with the outer decoration member 800 is triangular, L-shaped, square, circular, oval, polygonal, C-shaped, D-shaped, U-shaped, B-shaped, leaf-shaped, corner-shaped, or a combination of two or more thereof, and the corner of the above shape may have a circular arc or a corner.
In one embodiment, the side surface and the distal end of the platform single body having the outer decoration member 800 are processed by a step slope or a cambered surface in the vertical direction, so that the influence on the lighting of the building can be minimized.
The invention relates to an independent space frame system, which comprises a plurality of platform single bodies and a supporting structure comprising upright post members, wherein the platform single bodies can be provided with planting modules.
The framework system has a completely independent structure, is mainly applied to the window and balcony parts of the outer vertical surface of the building, is combined with the building, and can meet the lifting requirements of increasing outdoor green activity space, improving the vertical surface effect of the building, supplementing city three-dimensional green space landscape, adjusting local microclimate and the like of various buildings such as residential buildings, public buildings, industrial buildings, newly built buildings, reconstruction and extension buildings, old buildings and the like.
In the description herein, features of some embodiments of the invention relating to the structure, shape, materials, dimensions, process steps or sequence of steps, of products and methods are described in detail, as well as specific parameters provided for some specific examples. It is to be understood, however, that such detail description or specific parameters are not to be interpreted as limitations on the claims; that is, those skilled in the art should understand that the above features or parameters can be adjusted, changed or combined according to actual needs, and still fall into the protection scope of the present invention.

Claims (10)

1. A platform cell with exterior trim components for an independent space frame system, wherein the components of the platform cell include a bottom portion, side surfaces, corners, a proximal portion, and a distal portion, the platform cell for an independent space frame system assembled by a support structure comprising a plurality of column components, integrated with a building and mated with window and balcony spaces of a building unit; when assembled, the proximal end portions of the platform units are adjacent to a building facade and the distal end portions extend outwardly, wherein:
the outer side decoration component is provided with a coating, veneering or hollow material and a structure which cover at least partial outer side surface of the independent space, and is designed to embody the figure and the color which are adaptive to the regional environment characteristics of the building.
2. The platform unit with an exterior trim member of claim 1, wherein the exterior trim member is further cooperatively configured with a light, projection element.
3. The platform unit with the outboard trim member of claim 2, wherein the side, corner, and distal portions include a containment structure that is integrally formed with a steel tube or steel section fixed connection.
4. The platform cell with an outboard trim member of claim 1, wherein the platform cell is supported and secured at its proximal and distal ends by a plurality of stud members, respectively, when assembled.
5. The platform monoblock with outboard trim member of claim 1 including a beam member, a slab member and a floor member and a support element, wherein the support element is for forming a fixed connection with a column member and the support element is topologically designable to match the trim pattern of the outboard trim member.
6. The platform monoblock with outboard trim member of claim 1 wherein the configuration of the proximal end portion matches the window and balcony space of a building unit.
7. The platform cell with the outboard trim member of claim 1, wherein the base is connected with sides, corners, proximal end portions, distal end portions in a spliced or affixed manner, and the platform cell relies on a basic structure and its component materials include wood, bamboo, stone, glass, steel, lightweight aluminum, rubber, plastic, composite materials, or combinations thereof.
8. The platform unit with the exterior trim member according to claim 1, which can be used to constitute an outdoor space matched with a window and balcony space of a construction unit, thereby extending an indoor space to form an outdoor independent green activity space.
9. The platform unit with an outer decoration element according to claim 1, wherein the planar shape is triangular, L-shaped, square, circular, oval, polygonal, C-shaped, D-shaped, U-shaped, B-shaped, leaf-shaped, corner-shaped, or a combination of two or more thereof, and the corner of the shape may have a circular arc or a corner.
10. The single platform with the outer decorative member as claimed in claim 1, wherein the lateral and distal end portions are processed by a step slope or a curved surface in a vertical direction, so as to minimize the influence on the lighting of the building.
CN202121052876.2U 2021-05-17 2021-05-17 Platform single body with outer side decoration component of independent space frame system Active CN218029229U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121052876.2U CN218029229U (en) 2021-05-17 2021-05-17 Platform single body with outer side decoration component of independent space frame system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121052876.2U CN218029229U (en) 2021-05-17 2021-05-17 Platform single body with outer side decoration component of independent space frame system

Publications (1)

Publication Number Publication Date
CN218029229U true CN218029229U (en) 2022-12-13

Family

ID=84339970

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121052876.2U Active CN218029229U (en) 2021-05-17 2021-05-17 Platform single body with outer side decoration component of independent space frame system

Country Status (1)

Country Link
CN (1) CN218029229U (en)

Similar Documents

Publication Publication Date Title
CN114033082A (en) Transparent corridor pottery rod floodlight sunshade and glass curtain wall complex and construction method
CN218029229U (en) Platform single body with outer side decoration component of independent space frame system
CN111608069B (en) Concrete filled steel tube cable-stayed arched pedestrian landscape gallery bridge with saddle shell-shaped ceiling
CN218028142U (en) Independent space framework system
CN217999127U (en) Connecting structure of platform single body and building outer vertical face of independent space frame system
CN217999080U (en) Sunshine room with platform monomer of independent space frame system
CN218176109U (en) Platform monomer with lighting band of independent space frame system
CN218028140U (en) Building with independent space frame system
CN218029332U (en) Platform monomer for independent space frame system
CN218028141U (en) Floor construction for platform cell of independent space frame system
CN217999128U (en) Stand column supporting structure for independent space frame system
CN220654130U (en) Platform planting module combination for independent space frame system
CN114109076A (en) Platform single body with outer side decoration component of independent space frame system
CN113775037A (en) Building with independent space frame system
CN113700361A (en) Platform monomer for independent space frame system
CN113775229A (en) Stand column supporting structure for independent space frame system
CN113775228A (en) Connecting structure of platform single body and building outer vertical face of independent space frame system
CN113700132A (en) Independent space framework system
CN113775205A (en) Sunshine room with platform monomer of independent space frame system
CN113692874A (en) Platform planting module combination for independent space frame system
CN113502906A (en) Platform monomer with lighting band of independent space frame system
CN115369995A (en) Floor construction for platform cell of independent space frame system
CN205688583U (en) The support framework structure of building unit, basic architecture unit, building unit and apply its commercialization to build
CN202017292U (en) Connecting structure for wooden element and concrete element of pseudo-classic building eave
CN212078811U (en) Courtyard assembled molding pavilion

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant