Disclosure of utility model
The present utility model aims to solve at least one of the technical problems existing in the prior art. Therefore, the utility model provides the integrated glass awning structure, which is firm in fixation, good in wind resistance effect and easy to install, maintain and replace.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
The utility model provides an integral type glass canopy structure, includes the stand, stand one side is fixed with integral type glass structure, integral type glass structure is in including doubling glass, setting U type fixed part on the fixed end of doubling glass and set up prevent wind the structure of both sides about the U type fixed part, doubling glass's stiff end inserts U type fixed part, doubling glass's outer end encorbelments in the sky, doubling glass with it has the structural adhesive to pour into between the adjacent face of U type fixed part.
According to some embodiments of the utility model, reinforcing plates are arranged on two sides of the U-shaped fixing portion in the width direction, and the reinforcing plates are connected with the upright posts.
According to some embodiments of the utility model, the laminated glass and the U-shaped fixing part are fastened together through fixing bolts.
According to some embodiments of the utility model, the fixing bolts are provided in two, and are respectively arranged at the inner quarter of the two ends of the laminated glass in the width direction.
According to some embodiments of the utility model, the wind-proof structure comprises a first ejector rod abutting on the upper side of the U-shaped fixing part and a second ejector rod abutting on the lower side of the U-shaped fixing part.
According to some embodiments of the utility model, the second ejector rod abuts against the lower side of the tail end of the U-shaped fixing portion, and the first ejector rod abuts against the upper side of the middle end of the U-shaped fixing portion.
According to some embodiments of the utility model, a plurality of wind-proof steel grooves are arranged on the outer sides of the end faces of the first ejector rod and the second ejector rod adjacent to the U-shaped fixing part at intervals.
According to some embodiments of the utility model, the arrangement pitch of each wind-proof steel groove is 350mm.
According to some embodiments of the utility model, an outer baffle structure is arranged outside the U-shaped fixing part and the windproof structure, and waterproof sealant is filled in a gap between the outer baffle structure and the laminated glass.
According to some embodiments of the utility model, the upper side of the outer baffle structure is fixed to the wind-resistant structure.
The utility model has at least the following beneficial effects:
The integrated glass structure is assembled integrally before being mounted, and can be mounted on the upright post directly, and in the same way, the whole integrated glass structure is only required to be dismounted on the upright post when being maintained and replaced, and the replacement can be completed by replacing a new integrated glass structure, so that the integrated glass structure is more convenient to mount and dismount. Structural adhesive is filled between the U-shaped fixing part and the laminated glass, the connection firmness is enhanced, falling is prevented, the windproof structures are arranged on the upper side and the lower side of the U-shaped fixing part and used for resisting bending moment generated by the laminated glass under the action of wind load, and the integral glass awning is firm in structure, good in wind resistance effect and easy to install, maintain and replace.
Detailed Description
The following description is provided with reference to the accompanying drawings to assist in a comprehensive understanding of various embodiments of the utility model as defined in the claims and their equivalents. The description includes various specific details to aid in understanding, but these details should be regarded as merely exemplary. Accordingly, those skilled in the art will recognize that various changes and modifications of the various embodiments described herein can be made without departing from the scope and spirit of the utility model.
In the description of the present utility model, references to orientation descriptions such as upper, lower, front, rear, left, right, etc. are based on the orientation or positional relationship shown in the drawings, only for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the apparatus or element in question must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
It will be understood that when an element (e.g., a first element) is "connected" to another element (e.g., a second element), the element can be directly connected to the other element or there can be intervening elements (e.g., a third element) between the element and the other element.
The embodiment of the utility model provides an integrated glass awning structure, as shown in fig. 1, comprising a stand column 1, wherein one side of the stand column 1 is fixed with an integrated glass structure 2, the integrated glass structure 2 comprises laminated glass 201, U-shaped fixing parts 202 arranged on the fixing ends of the laminated glass 201 and windproof structures 203 arranged on the upper side and the lower side of the U-shaped fixing parts 202, the fixing ends of the laminated glass 201 are inserted into the U-shaped fixing parts 202, the outer ends of the laminated glass 201 are overhanging in the air, and structural adhesive 204 is poured between the adjacent surfaces of the laminated glass 201 and the U-shaped fixing parts 202.
The integral glass structure 2 is assembled integrally before being mounted, the integral glass structure 2 can be mounted on the upright post 1 flexibly in a mounting mode such as welding and bolts in a mounting mode, and the integral glass structure 2 can be mounted quickly, and in the same way, the integral glass structure 2 can be replaced by directly disassembling the integral glass structure 2 on the upright post 1 and replacing the integral glass structure 2 again when being maintained and replaced, so that the integral glass structure is convenient to mount and disassemble. In order to better resist wind load, the upright posts 1 on two sides are reinforced by steel inserting cores, and in practice, the upright posts 1 are only used for fixing the integrated glass structure 2, and the integrated glass structure 2 can also be arranged on structures such as embedded parts of walls. The laminated glass 201 is not scattered even if broken due to the cement structure such as PVB film layer in the middle, and is attractive and safe. The fixed end of the laminated glass 201 is inserted into the U-shaped fixing part 202 and is adhered to the U-shaped fixing part 202 through the filling structural adhesive 204, compared with the traditional hole opening fixing mode, the hole opening is easy to cause glass breakage, compared with the traditional hole opening fixing mode, the rain fly clamping glass 201 is required to be drained through the clamping piece, the outer end of the laminated glass 201 is generally provided with a downward slope, the outer end is overhanging in the air, the clamping and fixing are only partially clamped, the glass is easy to be influenced by gravity to slide and smash passers by, the U-shaped fixing part 202 can be connected with the laminated glass 201 in a large area through the filling structural adhesive 204, the connection firmness is enhanced, and falling is prevented. Because the outward-overhanging laminated glass 201 is of a pure line structure, the laminated glass 201 can be influenced by wind force to swing when wind blows, wind-proof structures 203 are arranged on the upper side and the lower side of the U-shaped fixing part 202 and used for resisting bending moment generated under the action of wind load, the wind-proof structures 203 are abutted against the U-shaped fixing part 202 and are not directly abutted against the laminated glass 201 structure, and buffer of the structural adhesive 204 is further provided, the problem that the laminated glass 201 is directly abutted against to generate top breakage is avoided, and the wind-proof structures 203 reduce the direct action of wind force on the laminated glass 201 and increase stability. The integral glass awning is firm in structure fixation, good in wind resistance effect and easy to install, maintain and replace.
In some embodiments, the U-shaped fixing portion 202 is provided with reinforcing plates 205 on both sides in the width direction, and the reinforcing plates 205 are connected to the column 1. Because integral type glass canopy is the line formula, the mounting point is less when fixed, can increase through fixed mode such as welding in both sides has reinforcing plate 205, reinforcing plate 205 rethread fixed knot such as bolt constructs with stand 1 to be connected, reinforcing plate 205 also is in advance integral type assembled, a plurality of bolts can be installed from top to bottom to reinforcing plate 205 and be connected with stand 1, further improved the security performance, in fact, reinforcing plate 205's material joint strength and cost have selected for use 8 mm's thick steel sheet, have reached in intensity and cost and have balanced.
In some embodiments, the laminated glass 201 and the U-shaped fixing portion 202 are fastened together by a fixing bolt 206. In order to further avoid the risk that the laminated glass 201 falls off due to the ground vibration, the influence of gravity and the like, the fixing bolt 206 is additionally arranged to pass through the U-shaped fixing part 202 from bottom to top and the laminated glass 201 is clamped and fixed through the nut, and the structural adhesive 204 is filled between the laminated glass 201 and the U-shaped fixing part 202, so that the problem that the laminated glass 201 is easy to crack due to simple punching on the glass is avoided, and the fixing bolt 206 can further clamp and fix the laminated glass 201.
Further, two fixing bolts 206 are provided, respectively, at both ends in the width direction of the laminated glass 201 toward the inside quarter.
One fixing bolt 206 is respectively arranged at one quarter of the two ends of the laminated glass 201 in the width direction, and the two fixing bolts are symmetrically fastened, so that bolts can be used less, and the laminated glass 201 and the U-shaped fixing part 202 can be fastened to the greatest extent.
In some embodiments, the wind-break structure 203 includes a first ejector bar 207 that abuts an upper side of the U-shaped fixing portion 202 and a second ejector bar 208 that abuts a lower side of the U-shaped fixing portion 202. Because the laminated glass 201 is of a linear structure, the transverse wind load is negligible, and the upper side and the lower side of the first ejector rod 207 and the second ejector rod 208 are mutually matched and abutted, so that the wind load on the upper side and the lower side of the laminated glass 201 can be effectively resisted.
Further, the second jack 208 abuts against the lower side of the rear end of the U-shaped fixing portion 202, and the first jack 207 abuts against the upper side of the middle end of the U-shaped fixing portion 202. Since the laminated glass 201 has a drainage gradient of 2%, the first ejector rod 207 abuts against the upper side of the middle end, and the second ejector rod 208 abuts against the lower side of the tail end, so that the wind load resistance is better.
Further, a plurality of wind-proof steel grooves 209 are formed in the outer sides of the end faces of the first ejector rod 207 and the second ejector rod 208 adjacent to the U-shaped fixing portion 202 at intervals. The wind-proof steel groove 209 provides effective support for the integrated glass awning in the form of a framework so as to ensure the stability of the integrated glass awning structure and strengthen the stress of the integrated glass awning.
Further, the arrangement pitch of each of the wind-proof steel grooves 209 is 350mm. The distance fixing effect is good, and meanwhile, the cost is controlled.
In some embodiments, the outer baffle structure 3 is arranged outside the U-shaped fixing part 202 and the windproof structure 203, and a gap between the outer baffle structure 3 and the laminated glass 201 is filled with waterproof sealant 301. The outer baffle structure 3 can effectively shelter from the inside structure of integral type glass structure 2, improves the aesthetic property, can also play waterproof dirt-proof effect, and waterproof sealant 301 can further block the stiff end that the rainwater got into integral type glass canopy.
Further, the upper side of the outer shield structure 3 is fixed to the wind-proof structure 203. The outer baffle structure 3 is installed and fixed on the windproof structure 203 to facilitate disassembly and assembly, and meanwhile, the split installation can prevent the upper structure from being damaged due to swing.
The terms and words used in the above description and claims are not limited to literal meanings but are only used by the applicant to enable a clear and consistent understanding of the utility model. Accordingly, it will be apparent to those skilled in the art that the foregoing description of the various embodiments of the utility model has been provided for illustration only and not for the purpose of limiting the utility model as defined by the appended claims and their equivalents.