CN114607077B - Steel plate rib curtain wall system - Google Patents

Steel plate rib curtain wall system Download PDF

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Publication number
CN114607077B
CN114607077B CN202210372470.5A CN202210372470A CN114607077B CN 114607077 B CN114607077 B CN 114607077B CN 202210372470 A CN202210372470 A CN 202210372470A CN 114607077 B CN114607077 B CN 114607077B
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China
Prior art keywords
stainless steel
steel
thick
pull rod
curtain wall
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CN202210372470.5A
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CN114607077A (en
Inventor
刘祥
刘肖敏
苏卫国
穆彦停
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Shandong Jinshan Curtain Wall Co ltd
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Shandong Jinshan Curtain Wall Co ltd
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Priority to CN202210372470.5A priority Critical patent/CN114607077B/en
Publication of CN114607077A publication Critical patent/CN114607077A/en
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • E04B2/885Curtain walls comprising a supporting structure for flush mounted glazing panels
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/70Drying or keeping dry, e.g. by air vents
    • E04B1/7038Evacuating water from cavity walls, e.g. by using weep holes
    • E04B1/7046Evacuating water from cavity walls, e.g. by using weep holes using trays
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/02Wings made completely of glass

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Load-Bearing And Curtain Walls (AREA)

Abstract

The invention discloses a steel plate rib curtain wall system which comprises a round pipe, a first stainless steel plate, a first stainless steel pull rod and tempered hollow glass, wherein the round pipe is arranged on the first stainless steel plate; the round tube, the first stainless steel plate and the first stainless steel pull rod are all arranged at the top of the toughened hollow glass; further comprises: the bottom of the stainless steel connecting claw is fixed with the top of the bottom of the toughened hollow glass through a stainless steel connecting piece, and an aluminum net connecting piece is arranged at one end of the silver gray aluminum net, which is close to the inner side of the second stainless steel pull rod. This steel sheet rib curtain system is provided with stainless steel and refutes the joint spare, and hot-galvanize steel sheet buries the spare and stably carries out fixed mounting through the floor spring to be provided with aluminum alloy auxiliary frame, thick aluminium veneer, thick stainless steel rain groove and thick stainless steel rain groove, the relative temperature displacement between two materials is still considered to the bonding face, through above setting, more conveniently stabilizes this curtain through it and use.

Description

Steel plate rib curtain wall system
Technical Field
The invention relates to the technical field of curtain walls, in particular to a steel plate rib curtain wall system.
Background
The glass rib point support glass curtain wall is one form of point support glass separation curtain wall type, and is an important expression technique of a peripheral protection structure in building design. Architects often use the characteristics of the curtain wall form, such as no frame, simplicity, permeability, large span and wide visual field, to display the charm of the building work. The transparent wall surface is used to make the indoor and outdoor mutually correspond, the space is communicated, and the indoor static object and the outdoor nature are integrated. The glass curtain wall supported by the connection glass rib points has the outstanding advantages, so that the glass curtain wall is widely applied to new buildings;
the publication No. CN111395615A discloses a fragment type space folded honeycomb modeling curtain wall system, which is formed by splicing independent curtain wall units produced in a unitized mode on site, curtain wall keels are not required to be erected on site, and only a supporting frame is required to be erected on site, so that the on-site construction quality is high, the construction efficiency is high, and the construction cost is low. Because each curtain wall unit is manufactured in a factory workshop, the processing precision of each curtain wall unit is high, the quality control is guaranteed, the quality of a single product is high, and the quality of a finally assembled curtain wall system is high, and the effect is good; the curtain wall system is formed by assembling curtain wall units which are mutually independent, after the curtain wall system is built, only the broken curtain wall units are required to be replaced in later maintenance, so that the maintenance is convenient, the high-altitude construction process is reduced, the construction risk is low, and the defects of mutual interference dependence and complex maintenance of the traditional special-shaped curtain wall unit system are overcome;
in order to adapt to large-span building modeling, the glass ribs can be integrated through splicing, the bending moment born by the glass ribs is in direct proportion to the square of the span of the ribs, and the larger the span is, the larger the bending moment and shearing force at the splicing position are; in addition to the requirement for shear strength, the binder must also have a certain deflection capability to counteract or reduce the effects of glass surface temperature stresses.
We have therefore proposed a steel sheet ribbed curtain wall system in order to solve the problems set out above.
Disclosure of Invention
The invention aims to provide a steel plate rib curtain wall system, which aims to solve the problems that the curtain wall system in the market is suitable for large-span building modeling and glass ribs can be integrated through splicing, the bending moment born by the glass ribs is in direct proportion to the square of the span of the ribs, and the larger the span is, the larger the bending moment and the shearing force at the splicing position are; in addition to the requirement of shear strength, the binder must also have a certain ability to shift in order to solve or reduce the problem of the influence of the glass surface temperature stress.
In order to achieve the above purpose, the present invention provides the following technical solutions: a steel plate rib curtain wall system comprises a round pipe, a first stainless steel plate, a first stainless steel pull rod and tempered hollow glass;
the round tube, the first stainless steel plate and the first stainless steel pull rod are all arranged at the top of the toughened hollow glass;
further comprises:
the left and right sides of pipe sets up the inboard at the thick steel plate rib, the inboard at the thick steel plate rib is fixed at first corrosion resistant plate, and two sets of first corrosion resistant plate are fixed mutually through the stainless steel rib articulated elements, the outside of stainless steel rib articulated elements is provided with first stainless steel pull rod, the outside of thick steel plate rib lower extreme is provided with stainless steel rib splint, the bottom outside symmetry of stainless steel rib splint is provided with two sets of stainless steel and refutes the claw, the fixed silver gray aluminum net that is provided with in the other end bottom outside of claw is refuted to the stainless steel, simultaneously the inner of silver gray aluminum net is connected with the thick steel plate rib through the second stainless steel pull rod, the bottom of claw is refuted through the stainless steel and is fixed mutually with the top of tempering cavity glass bottom, the silver gray aluminum net is close to the inboard one end of second stainless steel and refutes the claw and be provided with aluminum net connecting piece.
Preferably, the first stainless steel pull rod is formed by combining a matched lock head and a matched lug plate, the matched lock head is arranged in the first stainless steel pull rod, and the matched lug plate is arranged on the outer side of the stainless steel pull rod, so that the first stainless pull rod is convenient to use stably.
Preferably, the stainless steel connector is provided with a stainless steel connector on the outer side, and the other end of the stainless steel connector extends out of the outer side of the first stainless steel pull rod, so that the stainless steel connector is convenient to use.
Preferably, one side of first stainless steel pull rod top is provided with the steel cushion, the one end installation that first stainless steel pull rod stretched into the ground is provided with hot dip galvanizing channel-section steel, just hot dip galvanizing channel-section steel is close to the below of ground and is filled with hot dip galvanizing steel sheet embedded part, one side below of hot dip galvanizing steel sheet embedded part is provided with the stainless steel lock bolt, just corresponding setting between stainless steel lock bolt and the stainless steel lock nut to the problem of relative temperature displacement between two materials has been solved.
Preferably, the bottom of hot dip galvanized steel sheet buries the spare and passes through chemical anchor bolt to be fixed at the bottom, just the outside of first stainless steel pull rod sets up in the inside of thick steel plate rib to make things convenient for hot dip galvanized steel sheet buries the stable fixation at the bottom.
Preferably, one end in the steel plate rib outside is provided with tempering doubling glass, tempering doubling glass's below outside is provided with toughened glass door, just toughened glass door's middle part position is provided with stainless steel door and presss from both sides, toughened glass door's bottom is fixed mutually with ground through the floor spring to conveniently adapt to large-span architectural modeling.
Preferably, the middle end position of the toughened glass door and the toughened glass door are integrally arranged, and the toughened glass door is arranged on the outer side of the thick steel plate rib, so that the toughened glass door is convenient to install.
Preferably, stainless steel glass guardrail is arranged at the upper position of the hot dip galvanized steel sheet embedded part, an aluminum alloy auxiliary frame is fixed at the top end position, close to the hot dip galvanized steel sheet embedded part, of the lower side of the stainless steel glass guardrail, thick transparent toughened glass is arranged on the outer surface of the bottom end of the aluminum alloy auxiliary frame, meanwhile, a thick aluminum veneer is fixed on the other side of the thick transparent toughened glass, a thick stainless steel rain flume is arranged at the lower position of the thick transparent toughened glass, and a hot dip galvanized steel connecting part is arranged at the lower side of the hot dip galvanized steel sheet embedded part, so that the problem that a main structure or a structural member has enough rigidity is solved.
Preferably, the hot dip galvanized steel connecting piece is fixed through a stainless steel locking bolt, and the thick transparent toughened glass and the thick aluminum veneer are arranged below the stainless steel glass guardrail, so that the hot dip galvanized steel connecting piece is stably fixed.
Compared with the prior art, the invention has the beneficial effects that: the steel plate rib curtain wall system is provided with the following structure:
1. the steel plate rib curtain wall system is provided with a stainless steel connector piece, a hot dip galvanized steel plate embedded piece is stably and fixedly installed through a ground spring, an aluminum alloy auxiliary frame, a thick aluminum veneer, a thick stainless steel rain tank and a thick stainless steel rain tank are arranged, the steel plate rib curtain wall system is suitable for large-span building modeling in the use process, glass ribs can be integrated through splicing, the bending moment born by the glass ribs is in direct proportion to the square of the span of the ribs, the larger the span is, the larger the bending moment and the shearing force at the splicing position are, and hot dip galvanized steel channels are arranged in the use process; the embedded part of the hot dip galvanized steel plate is stably fixed through the ground spring, so that the linear expansion coefficients of the stainless steel and the glass are different, the relative temperature displacement between two materials is considered in consideration of the transmission of internal force, and the curtain wall is more convenient to stably use through the arrangement;
2. the steel plate rib curtain wall system is provided with a hot dip galvanized steel plate embedded part, hot dip galvanized steel plate embedded part is provided with hot dip galvanized channel steel on one side, meanwhile, the hot dip galvanized steel plate embedded part is fixed with a ground spring, when the whole design is carried out, the fact that the main structure or the structural member should have enough rigidity is considered, and when a steel truss or a steel beam is adopted as a stressed member, the span of the steel truss or the steel beam is taken to be less than 1/250 of the span according to the specification. Because the stiffness of the top support structure directly affects the amount of deformation of the bottom node.
Drawings
FIG. 1 is a cross-sectional view of a ribbed spider glass curtain wall node 1 of the present invention: 5, a structural schematic diagram;
fig. 2 shows a longitudinal section node 1 of a rib-connected glass curtain wall according to the invention: 5, a structural schematic diagram;
fig. 3 shows a curtain wall longitudinal section node 1:8, a structural schematic diagram;
fig. 4 shows a longitudinal section node 1 of the ground spring door according to the invention: 8, a structural schematic diagram;
fig. 5 shows a rib-connected curtain wall system node 1 according to the present invention: 3, a structural schematic diagram;
FIG. 6 is a schematic cross-sectional view of the structure of FIG. 5 at A-A in accordance with the present invention;
fig. 7 shows a longitudinal section node 1 of a rib-connected glass curtain wall according to the invention: 10 a schematic structural diagram;
fig. 8 is a schematic diagram of a 1:10 structure of an aluminum veneer cornice longitudinal section node of the invention.
In the figure: 1. a round tube; 2. a stainless steel plate; 3. thick steel plate ribs; 4. stainless steel rib hinges; 5. a first stainless steel tie rod; 501. a matched lock head; 502. a matched ear plate; 6. stainless steel rib clamping plates; 7. stainless steel spider claws; 8. silver gray aluminum mesh; 9. a second stainless steel tie rod; 10. tempering hollow glass; 11. stainless steel connector; 1101. stainless steel spider; 12. an aluminum mesh connecting piece; 13. a steel cushion block; 14. hot galvanizing channel steel; 15. hot dip galvanized steel sheet embedded parts; 16. stainless steel locking bolts; 17. a stainless steel lock nut; 18. tempering the laminated glass; 19. tempered glass door; 20. stainless steel door clips; 21. a ground spring; 22. chemical anchor bolts; 23. hot dip galvanizing rectangular steel pipe; 24. stainless steel glass guard rail; 25. an aluminum alloy subframe; 26. thick transparent toughened glass; 27. a thick aluminum veneer; 28. a thick stainless steel rain gutter; 29. a hot dip galvanized steel connector.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1-8, the present invention provides a technical solution: a steel plate rib curtain wall system comprises a circular tube 1, a first stainless steel plate 2, a first stainless steel pull rod 5 and tempered hollow glass 10; the first stainless steel plate 2 is provided with a first stainless steel pull rod 5, and the round tube 1, the first stainless steel plate 2 and the first stainless steel pull rod 5 are all arranged at the top of the toughened hollow glass 10; further comprises: the left side and the right side of the round tube 1 are arranged on the inner side of a thick steel plate rib 3, the thick steel plate rib 3 is fixed on the inner side of a first stainless steel plate 2, two groups of first stainless steel plates 2 are fixed through stainless steel rib hinging pieces 4, a first stainless steel pull rod 5 is arranged on the outer side of the stainless steel rib hinging pieces 4, a stainless steel rib clamping plate 6 is arranged on the outer side of the lower end of the thick steel plate rib 3, two groups of stainless steel connection claws 7 are symmetrically arranged on the outer side of the bottom end of the stainless steel rib clamping plate 6, a silver gray aluminum net 8 is fixedly arranged on the outer side of the bottom end of the other end of the stainless steel connection claw 7, meanwhile, the inner end of the silver gray aluminum net 8 is connected with the thick steel plate rib 3 through a second stainless steel pull rod 9, the bottom end of the stainless steel connection claw 7 is fixed with the top of the bottom end of a tempered hollow glass 10 through a stainless steel connection piece 11, and one end, close to the inner side of the second stainless steel pull rod 9, of the silver gray aluminum net 8 is provided with an aluminum net connecting piece 12; the first stainless steel pull rod 5 is formed by combining a matched lock head 501 and a matched lug plate 502, wherein the matched lock head 501 is arranged in the first stainless steel pull rod 5, and the matched lug plate 502 is arranged on the outer side of the first stainless steel pull rod 5; the stainless steel connector 11 is provided with a stainless steel connector 1101 on the outer side, and the other end of the stainless steel connector 1101 extends out of the first stainless steel tie rod 5. In order to ensure the wind pressure deformation performance of the curtain wall (the normal use function of the building curtain wall is kept under the action of wind pressure perpendicular to the building curtain wall, the thick steel plate rib 3 is connected with the first stainless steel pull rod 5 through the stainless steel rib hinging piece 4, so that the device can be provided with a certain wind resistance; when the positive wind pressure acts to bend the glass ribs, the pressed part of the glass ribs is provided with a panel which is used as an out-of-plane support; when the reverse wind pressure acts, the pressed part is arranged on the free edge of the glass rib, so that out-of-plane buckling can be generated; therefore, the lateral stability requirement of the large-span glass rib is considered in the design process, the stability checking is carried out when necessary, and measures such as effective transverse support and the like are adopted; the linear expansion coefficients of stainless steel and glass are different, and besides the transmission of internal force, the relative temperature displacement between two materials is considered for the bonding surface; the connection mode without punching is preferably adopted when the top node of the glass rib is designed, so that the glass breakage phenomenon caused by hole edge stress is reduced; the connection mode without punching is preferably adopted when the top node of the glass rib is designed, so that the glass breakage phenomenon caused by hole edge stress is reduced; in the whole design, considering that the main structure or the structural member has enough rigidity, when a steel truss or a steel beam is adopted as a stress member, taking the span of the steel truss or the steel beam to be less than 1/250 of the span according to the specification; because the stiffness of the top support structure directly affects the amount of deformation of the bottom node.
A steel cushion block 13 is arranged on one side above the first stainless steel pull rod 5, a hot dip galvanizing channel steel 14 is arranged at one end of the first stainless steel pull rod 5 extending into the ground, a hot dip galvanizing steel plate embedded part 15 is paved below the hot dip galvanizing channel steel 14 close to the ground, a stainless steel locking bolt 16 is arranged below one side of the hot dip galvanizing steel plate embedded part 15, and a stainless steel locking bolt 16 and a stainless steel locking nut 17 are correspondingly arranged; the bottom end of the hot dip galvanized steel sheet embedded part 15 is fixed at the bottom through a chemical anchor bolt 22, and the outer side of the first stainless steel pull rod 5 is arranged in the thick steel sheet rib 3; a toughened laminated glass 18 is arranged at one end of the outer side of the thick steel plate rib 3, a toughened glass door 19 is arranged at the outer side below the toughened laminated glass 18, a stainless steel door clamp 20 is arranged in the middle of the toughened glass door 19, and the bottom end of the toughened glass door 19 is fixed with the ground through a floor spring 21; the middle end of the toughened glass door 19 is integrally arranged with the toughened glass door 19, and the toughened glass door 19 is arranged on the outer side of the thick steel plate rib 3; stainless steel glass guardrail 24 is arranged at the upper position of hot dip galvanized steel sheet embedded part 15, aluminum alloy auxiliary frame 25 is fixed at the top end position, close to hot dip galvanized steel sheet embedded part 15, of the lower side of stainless steel glass guardrail 24, thick transparent toughened glass 26 is arranged on the outer surface of the bottom end of aluminum alloy auxiliary frame 25, thick aluminum veneer 27 is fixed on the other side of thick transparent toughened glass 26, thick stainless steel rain gutter 28 is arranged at the lower position of thick transparent toughened glass 26, and hot dip galvanized steel connecting part 29 is arranged at the lower side of hot dip galvanized steel sheet embedded part 15. The hot dip galvanized steel connector 29 is fixed by the stainless steel locking bolt 16, and the thick transparent toughened glass 26 and the thick aluminum veneer 27 are arranged below the stainless steel glass guardrail 24. And the span of the use stress of the spider glass ribs has progressed from the first few meters to twenty meters, even approaching thirty meters. The glass rib point supporting glass curtain wall is truly colored for the outer facade of a modern building, enriches the expression technique of the outer facade of the building, simultaneously uses the silver gray aluminum net 8 to increase the three-dimensional effect of watching, and the device is provided with the toughened hollow glass 10, the hot galvanized steel plate embedded part 15, the toughened laminated glass 18 and the thick transparent toughened glass 26, thereby not only increasing the strength of the device, but also increasing a certain ornamental value of the device
Working principle: when the steel plate rib curtain wall system is used, the thick steel plate rib 3 is connected with the first stainless steel pull rod 5 through the stainless steel rib hinge piece 4, so that a certain wind resistance setting can be achieved for the device, the watertight performance of the device is 3-level when the device is used for guaranteeing the rainwater permeability, so that the phenomenon of water seepage inside the device is effectively prevented, the thick steel plate rib 3 is stably fixed with the stainless steel nut through the stainless steel bolt, and the device is fixedly installed under the conditions of earthquake and strong wind to prevent the device from being forcedly displaced; when the positive wind pressure acts to bend the glass ribs, the pressed part of the glass ribs is provided with a panel which is used as an out-of-plane support; when the reverse wind pressure acts, the pressed part is arranged on the free edge of the glass rib; the linear expansion coefficients of stainless steel and glass are different, and besides the transmission of internal force, the relative temperature displacement between two materials is considered for the bonding surface; the connection mode without punching is preferably adopted when the top node of the glass rib is designed, so that the glass breakage phenomenon caused by hole edge stress is reduced; in the whole design, considering that the main structure or the structural member has enough rigidity, when a steel truss or a steel beam is adopted as a stress member, taking the span of the steel truss or the steel beam to be less than 1/250 of the span according to the specification; because the stiffness of the top support structure directly affects the amount of deformation of the bottom node, it has progressed from the first few meters to twenty meters, even nearly thirty meters; the hot dip galvanized steel sheet embedded part 15, the toughened laminated glass 18 and the thick transparent toughened glass 26 not only increase the strength of the device, but also increase a certain ornamental value of the device.
Thereby completing a series of work
What has not been described in detail in this specification is prior art that is well known to those skilled in the art, and in the description of the present invention, unless otherwise specified, the meaning of "a plurality" is two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front," "rear," "head," "tail," and the like are used as an orientation or positional relationship based on that shown in the drawings, merely to facilitate description of the invention and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the invention. Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. In the description of the present invention, it should be noted that, unless explicitly specified and limited otherwise, the terms "connected," "connected," and "connected" are to be construed broadly, and may be either fixedly connected, detachably connected, or integrally connected, for example; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium. The specific meaning of the above terms in the present invention will be understood in specific cases by those of ordinary skill in the art.
Although the present invention has been described with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements and changes may be made without departing from the spirit and principles of the present invention.

Claims (9)

1. A steel plate rib curtain wall system comprises a round pipe (1), a first stainless steel plate (2), a first stainless steel pull rod (5) and tempered hollow glass (10);
the first stainless steel plate (2) is provided with a first stainless steel pull rod (5), and the round tube (1), the first stainless steel plate (2) and the first stainless steel pull rod (5) are all arranged at the top of the toughened hollow glass (10);
characterized by further comprising:
the left and right sides of pipe (1) set up the inboard at thick steel plate rib (3), the inboard at first corrosion resistant plate (2) is fixed in thick steel plate rib (3), and two sets of first corrosion resistant plate (2) are fixed mutually through corrosion resistant plate rib articulated elements (4), the outside of corrosion resistant plate rib articulated elements (4) is provided with first corrosion resistant plate pull rod (5), the outside of thick steel plate rib (3) lower extreme is provided with corrosion resistant plate rib splint (6), the bottom outside symmetry of corrosion resistant plate rib splint (6) is provided with two sets of corrosion resistant plate and refutes claw (7), the fixed in the other end bottom outside of corrosion resistant plate claw (7) is provided with silver gray aluminum net (8), simultaneously the inner of silver gray aluminum net (8) is connected with thick steel plate rib (3) through second corrosion resistant plate pull rod (9), the bottom of corrosion resistant plate rib (3) is provided with corrosion resistant plate rib splint (6), the silver gray aluminum net (8) are connected with the silver gray aluminum net (8) through corrosion resistant plate connecting piece (11) and tempering glass (10), the bottom of corrosion resistant plate rib (7) is close to the inside of steel net (8).
2. The steel ribbed curtain wall system of claim 1, wherein: the first stainless steel pull rod (5) is formed by combining a matched lock head (501) and a matched lug plate (502), the matched lock head (501) is arranged in the first stainless steel pull rod (5), and the matched lug plate (502) is arranged on the outer side of the stainless steel pull rod (5).
3. The steel ribbed curtain wall system of claim 1, wherein: the stainless steel connector (11) is provided with a stainless steel connector (1101) on the outer side, and the other end of the stainless steel connector (1101) extends out of the first stainless steel pull rod (5).
4. The steel ribbed curtain wall system of claim 1, wherein: one side of first stainless steel pull rod (5) top is provided with steel cushion (13), the one end installation that first stainless steel pull rod (5) stretched into the earth to the end is provided with hot dip galvanizing channel-section steel (14), just hot dip galvanizing channel-section steel (14) are close to the below of earth and are filled with hot dip galvanizing steel sheet embedded part (15), one side below of hot dip galvanizing steel sheet embedded part (15) is provided with stainless steel locking bolt (16), just corresponding setting between stainless steel locking bolt (16) and stainless steel lock nut (17).
5. The steel ribbed curtain wall system of claim 4, wherein: the bottom of hot dip galvanized steel sheet embedded part (15) is fixed at the bottom through chemical anchor bolt (22), just the outside of first stainless steel pull rod (5) sets up in the inside of thick steel plate rib (3).
6. The steel ribbed curtain wall system of claim 1, wherein: one end in thick steel plate rib (3) outside is provided with tempering doubling glass (18), the below outside of tempering doubling glass (18) is provided with toughened glass door (19), just the middle part position of toughened glass door (19) is provided with stainless steel door clamp (20), the bottom of toughened glass door (19) is fixed with ground through floor spring (21).
7. The steel ribbed curtain wall system of claim 6, wherein: the middle end of the toughened glass door (19) and the toughened glass door (19) are integrally arranged, and the toughened glass door (19) is arranged on the outer side of the thick steel plate rib (3).
8. The steel ribbed curtain wall system of claim 4, wherein: stainless steel glass guardrail (24) are arranged at the upper position of hot dip galvanized steel sheet embedded part (15), aluminum alloy auxiliary frames (25) are fixed at the top end positions, close to hot dip galvanized steel sheet embedded part (15), of the lower parts of stainless steel glass guardrail (24), thick transparent toughened glass (26) are arranged on the outer surfaces of the bottom ends of the aluminum alloy auxiliary frames (25), thick aluminum veneers (27) are fixed on the other sides of the thick transparent toughened glass (26), thick stainless steel rain gutters (28) are arranged at the lower positions of the thick transparent toughened glass (26), and hot dip galvanized steel connecting pieces (29) are arranged below the hot dip galvanized steel sheet embedded part (15).
9. The steel ribbed curtain wall system of claim 8, wherein: the hot dip galvanized steel connecting piece (29) is fixed through a stainless steel locking bolt (16), and the thick transparent toughened glass (26) and the thick aluminum veneer (27) are arranged below the stainless steel glass guardrail (24).
CN202210372470.5A 2022-04-11 2022-04-11 Steel plate rib curtain wall system Active CN114607077B (en)

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CN114607077B true CN114607077B (en) 2023-09-12

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