CN210105166U - Glass railing with stable structure - Google Patents

Glass railing with stable structure Download PDF

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Publication number
CN210105166U
CN210105166U CN201920277003.8U CN201920277003U CN210105166U CN 210105166 U CN210105166 U CN 210105166U CN 201920277003 U CN201920277003 U CN 201920277003U CN 210105166 U CN210105166 U CN 210105166U
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China
Prior art keywords
glass
rod
cross rod
groove
lower cross
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CN201920277003.8U
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Chinese (zh)
Inventor
陈远伟
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Guangdong Xinweixin Industrial Co Ltd
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Guangdong Xinweixin Industrial Co Ltd
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Priority to CN201920277003.8U priority Critical patent/CN210105166U/en
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Abstract

The utility model discloses a glass railing with stable structure, which comprises a surface rod, a plurality of vertical rods parallel to each other, an upper cross rod, a lower cross rod and glass, wherein the surface rod is horizontally arranged, the upper end of each vertical rod is inserted into the upper groove of the surface rod and is vertically welded on the surface rod, and the lower end of each vertical rod is vertically arranged on a building wall body; the upper cross rod and the lower cross rod respectively penetrate through the vertical rod and are welded on the vertical rod and are parallel to the surface rod; the lower part of the upper cross rod and the upper part of the lower cross rod are respectively provided with a glass groove, a bearing plate is also arranged inside the lower cross rod, and glass is arranged between the upper cross rod and the lower cross rod through the glass groove; the surface rod is of a hollow structure with an elliptic arc outer surface, a reinforcing plate is arranged in the surface rod, and the vertical rod is a hollow rectangular tube. The horizontal pipe insertion hole penetrates through the vertical pipe and is fixedly welded, and the surface rod and the vertical rod are fixedly embedded and welded in a connecting mode, so that the whole structure is firmer, more stressed and safer.

Description

Glass railing with stable structure
Technical Field
The utility model relates to a building guardrail, concretely relates to glass railing that structure is firm.
Background
The glass handrail is popular due to permeability, good daylighting and beautiful appearance, and the glass handrail is widely used in various occasions such as residential districts, markets, office buildings and the like due to the fact that the existing toughened glass technology is mature day by day. However, the glass in the existing glass handrail is mainly fixed in a four-corner claw mode, holes need to be formed in advance, and the structure has safety risks. Meanwhile, the main handrail body frame must ensure enough safety in structure to be popularized and used, and especially, the structural stability and safety are the primary factors to be considered when the glass handrail is installed in a public place with dense personnel.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming the shortcoming of above-mentioned prior art, providing a novel glass railing that the steadiness is high, the security is good.
The utility model discloses a realize through following technical scheme:
a glass railing with a stable structure comprises a surface rod, vertical rods, an upper cross rod, a lower cross rod and glass, wherein the surface rod is horizontally installed, two ends of the surface rod are fixed on a building wall, and the lower part of the surface rod is provided with a groove with a downward opening, wherein the width of the groove is matched with the cross section of the vertical rods; the vertical rods are parallel to each other, the upper ends of the vertical rods are inserted into the grooves in the surface rods and are vertically welded on the surface rods, and the lower ends of the vertical rods are vertically arranged on a building wall; the upper part and the lower part of the upright stanchion are respectively provided with a through hole for the upper cross bar and the lower cross bar to pass through, and the upper cross bar and the lower cross bar respectively pass through the through hole on the upright stanchion and are welded on the upright stanchion and are parallel to the surface bar; the glass supporting device is characterized in that the lower portion of the upper cross rod and the upper portion of the lower cross rod are respectively provided with a glass groove, a supporting plate is further arranged inside the lower cross rod, the upper end of the glass is installed on the glass groove of the upper cross rod, the lower end of the glass is installed on the glass groove of the lower cross rod, and the lower side edge of the glass is supported on the supporting plate of the lower cross rod. The support plate can also play a role in reinforcing the structure of the lower cross bar. The gap between the glass groove position and the glass can be filled with weather-proof glass cement, and the effects of isolation and fixation can be achieved.
The technical scheme of further improvement is that the upper cross rod and the lower cross rod are hollow rectangular tubes with openings on one side, wherein the openings on the upper cross rod face downwards, the openings on the lower cross rod face upwards, the glass groove positions are in the openings, and the bearing plates on the lower cross rod are parallel to the openings on the lower cross rod.
The technical scheme of further improvement is that the surface rod is of a hollow structure, and the upper surface and the side surface of the surface rod are integrally connected into an elliptic arc shape.
The technical scheme of further improvement is that a reinforcing plate is arranged in the hollow structure of the surface rod.
The further improved technical scheme is that the vertical rod is a hollow rectangular tube. A plurality of reinforcing ribs can be arranged in the hollow rectangular vertical rod to strengthen the stress of the structure.
The further improved technical scheme is that four corners of the hollow rectangular vertical rod slightly protrude outwards relative to the central positions of the four sides.
The technical scheme of further improvement is that the both ends of face pole still vertical welding have first mounting panel, first mounting panel passes through the screw fixation on building wall.
The technical scheme of further improvement is that the lower extreme vertical welding of pole setting has the second mounting panel, the second mounting panel passes through the screw fixation on building wall.
The technical scheme of further improvement is that the depth of the glass groove position on the upper cross rod is greater than that of the glass groove position on the lower cross rod. The glass groove position of the upper horizontal pipe is deep, so that the glass can be conveniently installed and fixed, and the groove position of the lower horizontal pipe is shallow, so that the bearing stress is convenient.
The glass railing structure can adopt a linear structure according to the field condition, and also can be L-shaped or [ -shaped, and the surface rods at the corners can be connected into a whole by adopting external connecting rods, so that the appearance is attractive; two vertical rods can be adopted at the corners to further ensure the safety. The distance between two adjacent upright rods is not more than 1200 mm.
The beneficial effects of the utility model reside in that: the glass is fixedly installed through the upper cross rod and the glass groove positions in the upper cross rod, compared with a point type fixing mode, the glass fixing device is large in contact area and safer, and stress concentration points do not exist, so that the glass is more durable; the surface rod and the upright rod are connected in an embedded, fixed and welded mode, so that the surface rod level can be adjusted in the installation process of the handrail, and the integral stress load is better; compared with the traditional welding mode, the mode that the horizontal pipe insertion hole penetrates through the vertical pipe and is welded and fixed has higher stress; the junction of whole railing adopts the full weld mode of mill, and batch production has improved overall structure's steadiness, has guaranteed the security.
Drawings
Fig. 1 is a schematic front structural diagram of an embodiment of the present invention.
Fig. 2 is a side sectional view of a noodle rod in an embodiment of the present invention.
Fig. 3 is a top view of the vertical rod in the embodiment of the present invention.
Fig. 4 is a side sectional view of the upper cross bar in the embodiment of the present invention.
Fig. 5 is a side cross-sectional view of a bottom rail in an embodiment of the present invention.
Fig. 6 is a schematic top view of the embodiment of the present invention.
Fig. 7 is an installation schematic diagram of the surface rod in the embodiment of the present invention.
Fig. 8 is a top view of a mounting structure of the vertical rod and the upper cross rod or the lower cross rod in the embodiment of the present invention.
Fig. 9 is a top view of a mounting structure of the vertical rod in the embodiment of the present invention.
Reference numerals: 1-noodle rod; 2-upper cross bar; 3-a lower cross bar; 4-glass; 5-erecting a rod; 6-groove; 7-a reinforcing plate; 8-opening; 9-glass groove position; 10-a support plate; 11-a first mounting plate; 12-a first galvanized expansion screw; 13-external extension rod; 14-a second mounting plate; 15-second galvanized expansion screw; 16-rectangular angle.
Detailed Description
As shown in fig. 1 to 9, a stable glass 4 handrail comprises a surface bar 1, a plurality of parallel vertical bars 5, an upper cross bar 2, a lower cross bar 3 and glass 4, which are integrally enclosed into a [ -shape (for the sake of clarity, fig. 1 shows the side handrail and the front handrail on the same plane). The widest position of the surface rod 1 is 90mm, the distance between every two adjacent upright rods 5 is not more than 1200mm, and two upright rods 5 are arranged at corners to ensure firm and safe structure. The surface rods 1 at the corners are connected into a whole by adopting external connecting rods 13.
As shown in fig. 1 and 7, the surface bar 1 is horizontally installed, first installation plates 11 are welded to two ends of the surface bar, and the first installation plates 11 are fixed on a building wall through first galvanized expansion screws 12.
As shown in FIG. 2, the noodle stick 1 is a hollow structure, and the upper surface and the side surface are integrally connected into an elliptic arc shape. And a reinforcing plate 7 is arranged in the hollow structure of the noodle rod 1. The lower part of the surface rod 1 is provided with a groove 6 which is matched with the cross section width of the upright rod 5 and has a downward opening.
As shown in fig. 3, the upright 5 is a hollow rectangular tube, a plurality of reinforcing ribs may be disposed in the hollow rectangular upright 5 to reinforce the structural stress, and four rectangular corners 16 of the rectangular upright 5 are slightly protruded outward relative to the central positions of the four sides. As shown in fig. 8 and 9, the upper end of the vertical rod 5 is inserted into the groove 6 on the surface rod 1 and welded on the surface rod 1, the lower end of the vertical rod 5 is vertically welded with a second mounting plate 14, and the second mounting plate 14 is fixed on the building wall through a second galvanized expansion screw 15.
As shown in fig. 6, the upper part and the lower part of the upright 5 are further provided with through holes for allowing the upper cross bar 2 and the lower cross bar 3 to pass through, respectively, and the upper cross bar 2 and the lower cross bar 3 respectively pass through the through holes on the upright 5 and are welded on the upright 5, and are parallel to the surface bar 1.
As shown in fig. 4 and 5, the upper cross bar 2 and the lower cross bar 3 are hollow rectangular tubes with an opening 8 on one side, and four corners of the rectangular upright 5 slightly protrude outward relative to the center positions of four sides. An opening 8 on the upper cross rod 2 faces downwards, an opening 8 on the lower cross rod 3 faces upwards, the glass groove 9 is positioned in the opening 8, and the supporting plate 10 on the lower cross rod 3 is parallel to the opening 8 of the lower cross rod 3. The upper end of the glass 4 is arranged on the glass groove position 9 of the upper cross rod 2, the lower end of the glass 4 is arranged on the glass groove position 9 of the lower cross rod 3, and the lower side edge of the glass 4 is supported on the supporting plate 10 of the lower cross rod 3. The support plate 10 may also serve to stiffen the structure of the bottom rail 3. The gap between the glass groove position 9 and the glass 4 can be filled with weather-proof glass cement, and the effects of isolation and fixation can be achieved. The depth of the glass groove 9 on the upper cross rod 2 is greater than that of the glass groove 9 on the lower cross rod 3. The glass groove position 9 of the upper horizontal pipe is deep, so that the glass can be conveniently installed and fixed, and the groove position of the lower horizontal pipe is shallow, so that the bearing stress is convenient.
The above detailed description is specific to possible embodiments of the present invention, and the embodiments are not intended to limit the scope of the present invention, and all equivalent implementations or modifications that do not depart from the scope of the present invention should be included within the scope of the present invention.

Claims (9)

1. A glass railing with a stable structure is characterized by comprising a surface rod, upright rods, an upper cross rod, a lower cross rod and glass, wherein the surface rod is horizontally installed, two ends of the surface rod are fixed on a building wall, and the lower part of the surface rod is provided with a groove with a downward opening, wherein the width of the groove is matched with the cross section of the upright rods; the vertical rods are parallel to each other, the upper ends of the vertical rods are inserted into the grooves in the surface rods and are vertically welded on the surface rods, and the lower ends of the vertical rods are installed on a building wall; the upper part and the lower part of the upright stanchion are respectively provided with a through hole for the upper cross bar and the lower cross bar to pass through, and the upper cross bar and the lower cross bar respectively pass through the through hole on the upright stanchion and are welded on the upright stanchion and are parallel to the surface bar; the glass supporting device is characterized in that the lower portion of the upper cross rod and the upper portion of the lower cross rod are respectively provided with a glass groove, a supporting plate is further arranged inside the lower cross rod, the upper end of the glass is installed on the glass groove of the upper cross rod, the lower end of the glass is installed on the glass groove of the lower cross rod, and the lower side edge of the glass is supported on the supporting plate of the lower cross rod.
2. The glass balustrade of claim 1, wherein the upper rail and the lower rail are hollow rectangular tubes with openings on one side, wherein the openings on the upper rail face downward and the openings on the lower rail face upward, the glass grooves are located in the openings, and the support plates on the lower rail are parallel to the openings on the lower rail.
3. A structurally sound glass balustrade as claimed in claim 1, wherein the face bars are hollow, and the upper surface and the side surfaces thereof are integrally connected to form an elliptical shape.
4. A structurally sound glass balustrade of claim 3, wherein the face bars are provided with reinforcing panels within the hollow structure.
5. A structurally sound glass balustrade according to claim 1, wherein the uprights are hollow rectangular tubes.
6. A structurally sound glass balustrade according to claim 5, wherein the four corners of the rectangular tube are convex outward relative to the central position of the four sides.
7. A structurally sound glass balustrade according to any one of claims 1 to 4, wherein the two ends of the surface bar are also vertically welded with first mounting plates, and the first mounting plates are fixed on the building wall through screws.
8. A structurally sound glass balustrade according to any one of claims 1 to 4, wherein the lower end of the upright is welded vertically with a second mounting plate which is fixed to a building wall by screws.
9. A structurally sound glass balustrade according to any one of claims 1 to 4, wherein the depth of the upper glass groove in the upper rail is greater than the depth of the lower glass groove in the lower rail.
CN201920277003.8U 2019-03-05 2019-03-05 Glass railing with stable structure Active CN210105166U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920277003.8U CN210105166U (en) 2019-03-05 2019-03-05 Glass railing with stable structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920277003.8U CN210105166U (en) 2019-03-05 2019-03-05 Glass railing with stable structure

Publications (1)

Publication Number Publication Date
CN210105166U true CN210105166U (en) 2020-02-21

Family

ID=69533760

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920277003.8U Active CN210105166U (en) 2019-03-05 2019-03-05 Glass railing with stable structure

Country Status (1)

Country Link
CN (1) CN210105166U (en)

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: A structurally stable glass railing

Effective date of registration: 20231114

Granted publication date: 20200221

Pledgee: Guangdong Suixi Rural Commercial Bank Co.,Ltd. Lingbei Branch

Pledgor: Guangdong Xinweixin Industrial Co.,Ltd.

Registration number: Y2023980064803

PE01 Entry into force of the registration of the contract for pledge of patent right