WO2014183607A1 - Structure de montage de cloison transparente anti-explosion et son procédé de montage - Google Patents

Structure de montage de cloison transparente anti-explosion et son procédé de montage Download PDF

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Publication number
WO2014183607A1
WO2014183607A1 PCT/CN2014/077235 CN2014077235W WO2014183607A1 WO 2014183607 A1 WO2014183607 A1 WO 2014183607A1 CN 2014077235 W CN2014077235 W CN 2014077235W WO 2014183607 A1 WO2014183607 A1 WO 2014183607A1
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WO
WIPO (PCT)
Prior art keywords
partition
fastening
riot
arm
force arm
Prior art date
Application number
PCT/CN2014/077235
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English (en)
Chinese (zh)
Inventor
谢晓斌
李震
Original Assignee
一禾科技发展(上海)有限公司
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Filing date
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Application filed by 一禾科技发展(上海)有限公司 filed Critical 一禾科技发展(上海)有限公司
Publication of WO2014183607A1 publication Critical patent/WO2014183607A1/fr

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Classifications

    • 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
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/7407Removable non-load-bearing partitions; Partitions with a free upper edge assembled using frames with infill panels or coverings only; made-up of panels and a support structure incorporating posts
    • E04B2/7453Removable non-load-bearing partitions; Partitions with a free upper edge assembled using frames with infill panels or coverings only; made-up of panels and a support structure incorporating posts with panels and support posts, extending from floor to ceiling
    • E04B2/7455Glazing details
    • 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
    • E04B2/96Curtain walls comprising panels attached to the structure through mullions or transoms
    • E04B2/962Curtain walls comprising panels attached to the structure through mullions or transoms with angles or corners in the curtain wall

Definitions

  • the invention relates to a fixed partition installation structure, in particular to a riot-proof transparent partition installation structure and a mounting method thereof. Background technique
  • the riot glass is improved on the basis of laminated glass, and it is made into glass with bulletproof and anti-riot characteristics. It is made of glass (or plexiglass) and high quality engineering plastic. A composite material that is processed, usually transparent.
  • the installation and load-bearing structure of the riot glass in the transparent partition has not yet made a big breakthrough.
  • the connection with the main structure is mostly based on the traditional technology, usually it is embedded in the U-shaped groove of the profile, and the periphery is supplemented with structural glue. Or sealant, the riot glass and the profile are not integrated.
  • the riot glass When the riot glass is subjected to an impact wave such as an explosion of air or violence, it will not be broken into granules like tempered glass, but will generate a direction of impact under the action of the impact and remain intact under the action of the internal colloid. Although the riot glass remains intact after being broken, it has been bent to one side, and the outer shape of the riot glass is smaller than the inner diameter of the frame of the profile. Therefore, the riot glass may be detached from the frame of the profile as a whole, but it does not have the protective effect it deserves, and even causes more serious secondary damage to the other side of the crowd. If the glass as a whole falls from a high altitude, the consequences are even more unimaginable. Its RET hold value (glass weight after explosion shock I is the weight of the glass before the impact) is larger than ordinary glass, but it is always less than 1 and cannot be equal to 1.
  • RET hold value glass weight after explosion shock I is the weight of the glass before the impact
  • the object of the present invention is to overcome the defects of the prior art, and to provide a riot-proof transparent partition mounting structure.
  • the transparent partition (or the partition body) of the present invention can be selected from bulletproof glass, explosion-proof glass, riot glass or engineering plastic, etc. according to requirements. , There are no restrictions.
  • the fastening system of the present invention is a dynamically generated fastening system having a stable pre-stressed structure.
  • Prestressing force is generally referred to as the tensile stress in the process of material formation or other object formation, and the compressive stress introduced by the corresponding technology and process, and the pre-induced compressive stress constitutes the material. Or the prestressed structure of the object.
  • Techniques and processes for introducing compressive stress into a material or article to form a stable prestressed structure are generally referred to collectively as prestressing techniques.
  • a material or article having a pre-stressed structure is generally referred to as a pre-stressed material or a pre-stressed article.
  • the prestressed structure of a material or article can improve the performance of the material or article.
  • the use of materials or articles generally refers to an increase in their own rigidity, an increase in their own anti-vibration properties, and an increase in their own elastic strength, thereby increasing the durability of the material or article and its safety during use.
  • the prestressing technology has been used in ancient times, and it is a process in which the ancient Chinese used to improve the performance of living utensils and to reinforce the compensation of labor tools.
  • Such as barrel ferrules introduction of pre-stress
  • barrel ferrules introduction of pre-stress
  • prestressed structures have been greatly used in construction and other fields, and prestressed materials have also broken through the constraints of high-strength steels, and gradually become high in strength and light in weight.
  • the process of introducing compressive stress into a material or object under the action of external force is generally referred to as the process of generating pre-stress in the material or object.
  • any elastic material, under the action of external force can generate built-in pre-stress, and the external force acts as a process of pre-stressing of the elastic material.
  • the dynamic process generated by the pre-stressing of the elastic material is controlled by the foreign object to form a built-in pre-stressed stable structure of the material or object.
  • the invention uses an elastic fastening component to introduce a compressive stress by generating an external force by pressing the component, and uses the partition body to control the dynamic process of the introduction of the compressive stress, and finally forms a stable prestressed structure in which the elastic material and the partition body are integrated, thereby completing the sum
  • the fastening effect of the partition body is achieved. Due to the integrated stable prestressed structure of the elastic material and the partition body, the overall physical properties are greatly enhanced, and the fastening, stability, safety and convenience of the fastening of the partition body are also greatly enhanced.
  • the object of the present invention is to solve the shortcomings of the current riot-proof transparent partition installation structure technology, and provide a method for exciting and controlling the dynamic generation process of the elastic material pre-stress, forming a stable pre-stress structure integrally formed by the elastic material and the partition body, thereby completing and achieving The fastening effect of the partition.
  • the present invention discloses a riot-proof transparent partition mounting structure, including a partition body fixed to a building body; a partition mounting body is coupled to the periphery of the partition body, and the partition body passes through the mounting frame
  • the body is fixed on the main body of the building or the adjacent partition body; the mounting frame comprises a pressing component and a fastening component, and the fastening component is pressed against the blocking body to generate prestressing and tightening
  • the partition is fixed.
  • the fastening assembly includes two arcuate arms symmetrically clamped on opposite sides of the partition body, and the two arcuate arms are interposed to form a surrounding space
  • the arcuate arm includes a first a force arm and a second force arm connected to the first force arm, wherein a connection between the first force arm and the second force arm forms a slip end, and the first force arm is away from the first One side of the two-force arm forms a pressure receiving end, and the second force arm forms a fastening end on a side away from the first force arm, and the pressure receiving end of the first force arm receives the pressing component Pressing and cooperating with the partition body drives the first force arm and the second force arm to generate prestress.
  • the compression assembly comprises a pressure strip and a rigid support frame, the side of the rigid support frame forming a notch;
  • a further improvement of the present invention is that the pressure bar is provided with a plurality of bolt holes; the rigid support frame forms a slot hole corresponding to the bolt hole;
  • the pressure strip performs a first direction position adjustment through the slotted hole; the partition body performs a second direction through the enclosure space Position adjustment in a third direction.
  • a further improvement of the present invention is that the outer periphery of the rigid support frame is covered with a first decorative component, and the first decorative component forms two limiting slots respectively matched with the two first force arms of the adjacent fastening components. And a side of the limiting slot extends toward the pressure receiving end to form a limiting portion; the first force arm is disposed in the limiting slot, and the limiting portion is disposed between the two pressure receiving ends.
  • a further improvement of the present invention is that at least one second decorative component is coupled to the rigid decorative frame between the two adjacent partition bodies in cooperation with the first decorative component; the two ends of the second decorative component are opposite to the rigidity
  • the support frame is bent and formed into a "" buckle portion, and the inner sides of the two buckle portions respectively form a pushing end; the two ends of the first decorative component form a card slot that cooperates with the buckle portion; The outer side of the card slot extends to form an abutting portion; the latching portion is engaged in the card slot.
  • the building body is embedded with an embedded part at a mounting position corresponding to the mounting frame; and an outer side of the mounting frame is fixed to the building body by the embedded part.
  • a spacer is disposed between the partition body and the pressure bar.
  • the sliding end of the arcuate arm has a circular arc surface or a sloped surface.
  • a further improvement of the invention is that the thickness of the second force arm forms a thick to thin gradient from the slip end to the fastening end.
  • the fastening component is pressed to form a pre-stress by the cooperation of the pressing component and the partition body, and the partition body becomes a main control member for generating the pre-stress, and the fastening component is made of an elastic material.
  • a stable pre-stress is formed inside the material and stored, and together with the partition body and the compression component, a stable prestressing and prestressing fastening system is formed, and the beneficial effects include, but are not limited to:
  • the partition body is combined with a mounting frame by a prestressed structure, and the mounting frame is tightly connected with the main body of the building through the embedded part, so that the partition body can not be detached from the mounting frame after being impacted by an explosion or the like, and can be effectively operated.
  • the function of riot prevention provides maximum protection for indoor personnel.
  • the buffering effect of its sensitivity is also quite obvious.
  • the uneven internal stress is generated due to the poor thermal shock resistance of the material itself; during the installation and during use, the distribution may occur due to the impact of external force that may be received.
  • the entire prestressing system can adjust the corresponding prestressing amount by the deformation of the elastic material, so that it is possible
  • the unbalanced internal stress occurs to be buffered, so that it can well protect the partition body and even the entire riot-proof transparent partition structure system.
  • the present invention does not cause irregular compression and surface deformation due to fastening to the partition body during the entire pre-stress fastening implementation, and may avoid the error of each component and the error of the partition body itself.
  • the partitioning body has both flatness and self-balanced internal stress damage, which greatly enhances the safety of the entire riot-proof transparent partition structure system and the ability to resist external forces.
  • the three-dimensional adjustment of the partition body during the installation of the present invention is a free-placement adjustment in an unfastened state, without any limitation at all; and the setting of the three-dimensional adjustment space can completely cover the manufacturing error of the usual standard workpiece and The component error usually formed by standard construction.
  • the anti-riot transparent partition structure is more capable of withstanding impact loads such as explosions and has better safety performance.
  • the prestressed fastening process of the present invention is to pre-stress the fastening component by tightening the relevant bolts.
  • the selection and geometry of the raw materials of each component are passed through the previous design module.
  • the design of the late workers only needs to tighten the relevant bolts in place to obtain the preset tightening force, without being affected by uncertain factors such as the operating force, which greatly reduces the operating conditions and technical requirements.
  • the invention has the technical improvement of the safety of the prior art, the operating technical conditions can be greatly reduced and the whole process can be controlled, the rework and the scrapping of materials are effectively avoided, and the time is shortened and the labor cost is saved. Significant contribution. DRAWINGS
  • FIG. 1 is a schematic view showing the overall structure of a riot-proof transparent partition mounting structure of the present invention
  • Figure 2 is a cross-sectional view taken along line A-A of Figure 1;
  • Figure 3 is a cross-sectional view taken along line B-B of Figure 1;
  • FIG. 4 is a schematic view showing a connection structure between a partition body and a mounting frame of the riot-proof transparent partition mounting structure of the present invention
  • Figure 5 is an exploded view of Figure 4.
  • Figure 6 is a schematic view showing the connection structure between the partition body and the building main body of the riot-proof transparent partition mounting structure of the present invention
  • Figure 7 is a plan view showing the fastening assembly of Figure 6;
  • Figure 8 is a schematic view showing the principle of fastening the mounting frame and the partition body in the riot-proof transparent partition mounting structure of the present invention
  • Figure 9 is a perspective view of the pressure bar of Figure 5;
  • Figure 10 is a perspective view of the rigid support frame of Figure 5;
  • Figure 11 is a schematic view showing the connection structure of the first decorative component and the second decorative component connected to the periphery of the rigid support frame between the two partitions located in the same plane;
  • Figure 12 is an exploded view of Figure 11;
  • Figure 13 is a first decorative component and a second decoration attached to the periphery of a rigid support frame between two vertically disposed partitions
  • FIG. 14 is a schematic view showing the connection structure of the first decorative component and the second decorative component connected to the periphery of the rigid support frame between the two partitions disposed at a fixed angle.
  • a riot-proof transparent partition mounting structure of the present invention includes a partition body 2 fixed to the building main body 5; a partition mounting body 1 is coupled to the periphery of the partition body 2, and the outer side of the mounting frame body 1 is fastened.
  • the embedded part 7 is fixed to the building main body 5 by the embedded part 7.
  • the partition body 2 is fixed to the building main body 5 or the adjacent partition body 2 through the mounting frame 1; the mounting frame 1 includes a pressing assembly 31 and a fastening assembly 32, and the pressing assembly 31 cooperates with the partition body 2 to press the fastening assembly 32.
  • a pre-stress is generated to tighten the partition body 2.
  • the partition body 2 may be selected from bulletproof glass, explosion-proof glass, riot glass, engineering plastic, etc. as needed, without any limitation.
  • the fastening component 32 includes two arcuate arms 321 symmetrically clamped on both sides of the partition body 2, and the material thereof should be selected from materials having considerable strength and elasticity and toughness, such as metal and engineering. Plastic, polymer material, etc.; the two arcuate arms 321 are interposed to form a surrounding space 320, and the arcuate arm 321 includes a first force arm 3211 and a second force arm 3212 connecting the first force arm 3211, the first force The joint of the arm 3211 and the second force arm 3212 forms a sliding end 3213, and the sliding end 3213 has a circular arc surface or a sloped surface to ensure less resistance during the sliding process; the first force arm 3211 is far away One end of the second force arm 3212 defines a pressure receiving end 3214.
  • the pressure receiving end 3214 extends downward to form a rotating positioning edge 3217.
  • the second force arm 3212 forms a fastening end on a side away from the first force arm 3211.
  • a pressing plate 3216 is coupled to the fastening end 3215, and a connecting portion of the pressing plate 3216 and the second force arm 3212 is inwardly recessed to form a pressing plate position adjusting portion 3218, and the pressing plate position adjusting portion 3218 can realize the pressing plate during the fastening process.
  • the pressure receiving end 3214 of the first force arm 3211 receives the pressure of the pressure bar 311 and cooperates with the partition body 2 to drive the first force arm 3211 and the second force arm 3212 to generate stress.
  • the first force arm 3211 is a short straight arm
  • the second force arm 3212 is an arcuate arm
  • the thickness of the second force arm 3212 forms a thickness from the sliding end 3213 to the fastening end 3215. With a thin gradient, this structure ensures that the entire curved arm is fully and evenly deformed and is not easily broken.
  • a plurality of bolt holes are formed in the groove type hole 111 between the two pressure receiving ends 3214 of the fastening member 32.
  • a pressure pad may be disposed between the pressure plate 3216 and the partition body 2 or bonded by a shadowless glue.
  • the present embodiment is defined as follows: the direction in which the length of the partition body 2 extends in FIG. 5 is taken as the Y-axis direction, the thickness direction of the partition body 2 is taken as the X-axis direction, and the height direction of the partition body 2 is taken as Z.
  • the axis direction, and the X axis is perpendicular to the Y axis, and the Z axis is perpendicular to the plane formed by the X axis and the Y axis.
  • the compression assembly 31 includes a pressure bar 311 and a rigid support frame 11, and the side of the rigid support frame 11 forms a notch 112; the use of the notch 112 facilitates the pressure bar 311 and the rigid support The fastening operation of the frame 11.
  • the outer periphery of the rigid support frame 11 is covered with a first decorative component 6.
  • the surface of the pressure bar 311 is provided with two long-length rotary positioning grooves 3111, and the radius of the rotary positioning groove 3111 is equal to or slightly larger than the radius of the rotary positioning edge 3217, so that when the entire partition structure is respectively pre-tightened In the solid state and the fastening state, the rotary positioning ribs 3217 can be effectively positioned and rotated in the rotary positioning groove 3111, and the two sliding ends 3213 are only displaced in the direction away from each other on the surface of the first decorative component 6 (if not installed) First decoration group The two sliding ends 3213 are only displaced in the direction away from each other on the surface of the mounting frame 1; and the pressure bar 311 is provided with a plurality of bolt holes.
  • a sealant may be filled in the gap between the second force arm 3212, the partition body 2, and the pressure bar 311, thereby achieving more stable fastening; an overflow groove may be opened on the second force arm 3212, overflowing The use of the grooves prevents the effect of the expansion of the sealant during the drying process on the pre-stressing of the fastening assembly 32.
  • the first decorative component 6 forms two limiting slots 63 respectively engaged with the two first force arms 3211 of the adjacent fastening component 32, and the limiting slot 63—the lateral pressure receiving end 3214 extends to form a limiting portion 64; the first force arm 3211 is disposed in the limiting slot 63, and the limiting portion 64 is disposed between the two pressure receiving ends 3214.
  • the second decorative component 8 is further included, and the second decorative component 8 is covered with the first decorative component 6.
  • the rigid support frame 11 between the partition bodies 2 is provided.
  • the two ends of the second decorative component 8 are bent toward the rigid support frame 11 and respectively form a "" button portion 81.
  • the inner sides of the two latching portions 81 respectively form an abutting end 82;
  • a latching groove 61 is formed in the latching portion 81.
  • the outer side of the latching slot 61 extends to form an abutting portion 62.
  • the latching portion 81 is engaged with the latching slot 61.
  • the engagement of the latching portion 81 and the latching groove 61 achieves the snap-fastening of the first trim component 6 and the second trim component 8; and the engagement of the abutting end 82 with the abutting portion 62 is such that when the first trim component 6 is When the external force is applied in one direction and the outer force direction is deformed, the abutting portion 62 of the side can push the other end of the pushing end 82 against the pushing end 82 of the other side to push the first side of the other side.
  • the assembly 6 produces deformations in the same direction, thereby ensuring that the first decorative component 6 and the second decorative component 8 do not undergo asymmetric deformation due to the external force of one side and cause separation of the buckle portion 61 and the card slot 81, ensuring the first decoration.
  • the first decorative component 6 includes a first decorative panel 601 and a second decorative panel 602.
  • the first decorative panel 601 and the second decorative panel 602 respectively define a limiting slot 63.
  • the surface of the rigid support frame 11 is covered with a first decorative component 6, and the two sliding ends 3213 of the arcuate arm 321 abut against the surface of the first decorative component 6; the two compression ends of the arcuate arm 321 3214 is abutted against the surface of the pressure bar 311, the two fastening ends 3215 of the arcuate arm 321 abut against the two sides of the partition body 2; a spacer 4 is disposed between the partition body 2 and the pressure bar 311, which can simultaneously protect and beautifully The role.
  • the pressure strip 311 and the rigid support frame 11 are tightened by the bolt, and the pressure strip 311 presses the two pressure receiving ends 3214 of the bow arm 321 to the rigid support frame 11 .
  • the two sliding ends 3213 of the arcuate arm 321 are in the first decorative component 6 .
  • the surfaces are displaced from each other (if the first decorative component 6 is not installed, the two sliding ends 3213 are displaced in the direction away from each other only in the direction of the mounting frame 1), and the two fastening ends 3215 of the arcuate arms 321 are received by the partitioning body 2
  • the limit position drives the first force arm 3211 and the second force arm 3212 to generate the pre-stressed fastening partition body 2.
  • the pressure strip 311 is positionally adjusted in the X-axis direction by the slotted hole 111; the partitioning body 2 is adjusted in the direction of the x-axis direction and the direction of the x-axis by the enclosed space 320.
  • the rigid support frame 11 When assembling the riot-proof transparent partition of the present invention, the rigid support frame 11 is first fixed to the embedded member 7 of the building main body 5; then the pressure strip 311 provided with the spacer 4 is placed on the periphery of the partition body 2, and then self-interrupted.
  • the first force arm 3211 of the fastening component 32 is respectively disposed on the pressure bar 311 on both sides of the body 2, and the two fastening ends 3215 of the arcuate arm 321 abut against the two sides of the partition body 2; On the outer side of the fastening component 32, the first force arm 3211 of the fastening component 32 is disposed in the limiting slot 63, and the limiting portion 64 is disposed between the two pressure receiving ends 3214, and is inserted from the slot 112 of the rigid supporting frame 11.
  • the rows are pre-tightened by bolts that pass through the slot holes 111 of the rigid support frame 11, the first trim assembly 6, the fastening assembly 32, and the bolt holes of the pressure bar 311, and the partition body 2 passes through the enclosed space 320 in the Y-axis direction.
  • Position adjustment in the Z-axis direction after the position of the partition body 2 is adjusted into position, the pressure bar 311 and the rigid support frame 11 are fastened by bolts to complete the fastening; finally, the second decorative component 8 is engaged to the first decorative component 6
  • the rigid support frame 11 disposed between the two partitions 2 is completely covered in the first decorative component 6 and the second decorative component 8.
  • the operation principle of the entire fastening process is further described below with reference to FIG. 8.
  • the two compression ends 3214 of the arcuate arms 321 are displaced in the direction of the rigid support frame 11 under the compression of the pressure bar 311, and the rotary positioning holes 3217 and the rotary positioning grooves 3111 are rotated.
  • the cooperation ensures that the compression end 3214 does not shift in the X and Y directions during the movement, and the distance between the compression ends 3214 of the two arch arms is controllable (unchanged) during the fastening process.
  • the two sliding ends 3213 are displaced away from each other by the first decorative component 6 against the surface of the rigid support frame 11 in the X-axis direction, and the two fastening ends 3215 are displaced close to each other in the X-axis direction until they abut against The side of the partition body 2, so the distance between the pressing plates 3216 of the two fastening ends 3215 is also controllable, and the fastening point on the partition body 2 is also controllable; further pressing the two pressure receiving ends 3214 through the pressure bar 311 Displacement in the direction of the rigid support frame 11 further drives the two sliding ends 3213 to continue away from each other in the X-axis direction, and the two fastening ends 3215 are now abutted against the side of the partition body 2 and thereby being restrained.
  • the first force arm 3211 and the second force arm 3212 are thereby deformed and prestressed, and thus the partition body 2 having the stable prestressed structure and the fastening member 32 are brought into a fastening state, and the partition body 2 is tightened.
  • the pre-stress needs to be released, as long as the corresponding bolt is loosened, the deformation of the bow arm 321 will return to the previously unfastened state, and the pre-stress will disappear automatically, and the components of the entire riot-proof transparent partition mounting structure are lossless. And reusable, not only saves costs, but also is very environmentally friendly.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Securing Of Glass Panes Or The Like (AREA)

Abstract

Cette invention concerne une structure de montage de cloison transparente anti-explosion, comprenant un corps de cloison (2) fixé à un corps principal de bâtiment (5). Un corps de cadre de montage (1) est relié autour du corps de cloison (2). De plus, le corps de cloison (2) est fixé au corps principal de bâtiment (5) ou à un corps de cloison adjacent (2) par l'intermédiaire du corps de cadre de montage (1). Le corps de cadre de montage (1) comprend un élément de pression (31) et un élément de fixation (32). L'élément de pression (31) et le corps de cloison (2) coopèrent de façon à exercer une pression sur l'élément de fixation (32) afin de générer une précontrainte pour fixer le corps de cloison (2). L'utilisation du corps de cadre de montage (1) selon l'invention empêche le corps de cloison (2) de se séparer du corps de cadre de montage (1) quand il est soumis à un impact tel qu'une explosion, de façon à assurer un effet efficace de séparation anti-explosion et la protection du personnel situé à l'intérieur.
PCT/CN2014/077235 2013-05-16 2014-05-12 Structure de montage de cloison transparente anti-explosion et son procédé de montage WO2014183607A1 (fr)

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CN201310180806.9 2013-05-16
CN201310180806.9A CN103290954B (zh) 2013-05-16 2013-05-16 防暴透明隔断安装结构及其安装方法

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CN103290954B (zh) * 2013-05-16 2016-01-20 一禾科技发展(上海)有限公司 防暴透明隔断安装结构及其安装方法
CN103291195B (zh) * 2013-05-16 2016-06-01 一禾科技发展(上海)有限公司 镶玻门窗扇及其装配方法
CN105298324A (zh) * 2013-05-16 2016-02-03 一禾科技发展(上海)有限公司 一种用于铝合金门窗的安装限位结构
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