CN214615051U - Resistant root thorn waterproofing membrane structure of roofing plants - Google Patents
Resistant root thorn waterproofing membrane structure of roofing plants Download PDFInfo
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- CN214615051U CN214615051U CN202022286935.4U CN202022286935U CN214615051U CN 214615051 U CN214615051 U CN 214615051U CN 202022286935 U CN202022286935 U CN 202022286935U CN 214615051 U CN214615051 U CN 214615051U
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Abstract
The utility model discloses a waterproof material technical field, specifically a resistant root thorn waterproofing membrane structure of planting roofing, including the coiled material, the coiled material from top to bottom is equipped with isolation layer, first modified pitch layer, copper child basic unit, second modified pitch layer and adhesive linkage in proper order, and the symmetry is equipped with a plurality of negative pressure chambeies in proper order in the adhesive linkage, and the lower extreme in negative pressure chamber is equipped with the boss, and all cup joints on the boss and be equipped with the negative pressure ball, boss grafting negative pressure ball one side upper end in is equipped with the shell fragment, and the central lower extreme level of shell fragment is equipped with the diaphragm, and the device carries out quick equipment use through the form of laying then pressing common under the prior art, and the lower part top layer of adhesive linkage is reserved simultaneously to have enough thickness to be suitable for multiple bonding mode, makes the film splitting and the shell fragment breaks away from the pull rod through pressing the negative pressure ball to reach and inhale coating through the adhesive linkage hole, accomplish and strengthen the bonding, the structure that should not break away from improves life.
Description
Technical Field
The utility model relates to a waterproof material technical field specifically is a resistant root thorn waterproofing membrane structure of planting roofing.
Background
One of the root-resistant waterproof coiled materials is a polyvinyl chloride double-sided composite root-resistant waterproof coiled material which uses a copper matrix as a waterproof material used in engineering waterproof construction of a root-resistant waterproof layer, a planted roof is a greening form that is supplemented with planting soil and plants are planted in a container or a planting template to cover a building roof or an underground building roof, when the waterproof coiled material is laid, the ground needs to be leveled and the ground is polished, asphalt waterproof paint is firstly coated, then a square coiled material is laid in a place where the paint is coated for use, the two sides of the waterproof coiled material in the prior art are smooth, even after the waterproof coiled material is installed for a long time through hot-melt paint, the phenomenon of water leakage is caused because the waterproof coiled material is still easy to come unstuck and leave a gap.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a resistant root thorn waterproofing membrane structure of planting roofing to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: including the coiled material, the coiled material is from top to bottom be equipped with isolation layer, first modified pitch layer, copper child basic unit, the modified pitch layer of second and adhesive linkage in proper order, and the symmetry is equipped with a plurality of negative pressure chambeies in the adhesive linkage in proper order, and the lower extreme in negative pressure chamber is equipped with the boss, and all cup joints on the boss and be equipped with the negative pressure ball, one side upper end is equipped with the shell fragment in the boss grafting negative pressure ball, and the central lower extreme level of shell fragment is equipped with the diaphragm, and the central lower extreme of diaphragm is vertical to be equipped with the contact pin, and the lower extreme of contact pin runs through the upper end centre bore grafting of boss and arranges the air channel in, square groove has been seted up to the upper end bilateral symmetry of boss, and the equal level of central lower extreme of boss is equipped with the seal membrane, and four inlet ports have been seted up to the lower extreme of contact pin and the side circumference is global equal symmetry, and two inlet ports in one side are connected through the inlet duct respectively.
Preferably, the central upper end of diaphragm is equipped with the sleeve pipe, and sheathed tube upper end symmetry is equipped with four colluding poles, and the bushing interpolation is equipped with the pull rod, and the upper end of pull rod is through connecting ball and the integrative setting of shell fragment, and the crosspiece of four colluding poles lock joint respectively in the triangle piece one side upper end of pull rod.
Preferably, the upper end and the lower end of the contact pin inserting center hole are respectively provided with a first limiting block and a second limiting block, and the diameter of the first limiting block is smaller than that of the second limiting block.
Preferably, the upper ends and the lower ends of the isolation layer and the bonding layer are respectively and symmetrically provided with a plurality of convex balls and bonding holes, the bonding holes are located under the sealing film, the pressing blocks are arranged right above the negative pressure ball, and the convex balls and the bonding holes are arranged in a one-to-one correspondence manner.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the device is used by rapid equipment in a common laying and pressing mode in the prior art, and meanwhile, the lower surface layer of the bonding layer is reserved with enough thickness to be suitable for various bonding modes;
2. the film is split by pressing the negative pressure ball, and the elastic sheet is separated from the pull rod, so that the coating is sucked into the hole through the adhesion hole, the reinforced adhesion is completed, the structure which is not easy to separate is realized, and the service life is prolonged.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the connection of the pull rod of the present invention;
FIG. 3 is a top view of the boss of the present invention;
fig. 4 is a schematic view of a portion a of fig. 1 according to the present invention.
In the figure: the novel asphalt base material comprises a coiled material 1, an isolation layer 2, a first modified asphalt layer 3, a copper base layer 4, a second modified asphalt layer 5, an adhesive layer 6, a boss 7, a negative pressure ball 8, an elastic sheet 9, a contact pin 10, a sealing film 11, an air inlet 12, a sleeve 13, a hook rod 14, a pull rod 15, a first limiting block 16, a second limiting block 17, a convex ball 18, an adhesive hole 19 and a pressing block 20.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: the coiled material comprises a coiled material 1, wherein an isolation layer 2, a first modified asphalt layer 3, a copper tire base layer 4, a second modified asphalt layer 5 and a bonding layer 6 are sequentially arranged in the coiled material 1 from top to bottom, a plurality of negative pressure cavities are sequentially and symmetrically arranged in the bonding layer 6, bosses 7 are arranged at the lower ends of the negative pressure cavities, negative pressure balls 8 are sleeved on the bosses 7, the bosses 7 are circular, the negative pressure balls 8 are hermetically sleeved on the outer circumferential surfaces of the bosses 7, elastic pieces 9 are arranged at the upper ends of the inner sides, inserted into the negative pressure balls 8, of the bosses 7, the elastic pieces 9 can be rubber elastic pieces mature in the prior art, a transverse plate is horizontally arranged at the lower end of the center of each elastic piece 9, a contact pin 10 is vertically arranged at the lower end of the transverse plate, the lower end of the contact pin 10 penetrates through a center hole in the upper end of the boss 7 and is inserted into a ventilation groove, a first limiting block 16 and a second limiting block 17 are respectively arranged at the upper end and the lower end of the inserted into the center hole of the contact pin 10, and the diameter of the first limiting block 16 is smaller than that of the second limiting block 17, the diameter of the first limiting block 16 is slightly larger than the diameter of the center hole, and is a rubber limiting block, square grooves are symmetrically formed in two sides of the upper end of the boss 7, a sealing film 11 is horizontally arranged at the lower end of the center of the boss 7, four air inlet holes 12 are symmetrically formed in the lower end of the contact pin 10 and the side circumferential surface, four air inlet grooves are symmetrically formed in the lower end of the contact pin 10, the two air inlet holes 12 in one side are respectively connected through the air inlet grooves, the lower end of the contact pin 10 is away from the sealing film 11 by a certain distance and does not influence normal transfer movement of a coiled material, in addition, the sealing film 11 cannot be broken in a natural thickness state, a plurality of convex balls 18 and adhesive holes 19 are symmetrically formed in the upper end and the lower end of the isolation layer 2 and the adhesive layer 6 respectively, the adhesive holes 19 are located under the sealing film 11, pressing blocks 20 are arranged right above the negative pressure ball 8, and the convex balls 18 and the adhesive holes 19 are arranged in a one-to-one correspondence manner, the center upper end of diaphragm is equipped with sleeve pipe 13, and the upper end symmetry of sleeve pipe 13 is equipped with four colluding poles 14, and the interpolation of sleeve pipe 13 is equipped with pull rod 15, and pull rod 15's upper end is through connecting ball and the integrative setting of shell fragment 9, and four colluding pole 14's crosspiece lock joint respectively is in the three hornblocks one side upper end of pull rod 15, and the upper end outside of three hornblocks and the crosspiece one side lower extreme of colluding pole 14 all are equipped with circular arc chamfer.
The working principle is as follows: when the coiled material is used, the paved ground is polished, then the coating after hot melting is coated, then the coiled material is paved on the coating, the coiled material is pressed to roll on the coiled material by a press roller, then the coiled material under the coiled material is driven to deform by a convex ball 18, then the coiled material is extruded to a pressing block 20, the pressing block 20 presses the upper end of a negative pressure ball 8, then a sleeve 13 and a transverse plate are pushed downwards by a pull rod 15 at the lower end of an elastic sheet 9, then a first limiting block 16 is inserted and fixed in a central hole, the lower end of a contact pin 10 penetrates through a sealing film 11 and passes through an air inlet 12 at the lower end, air enters a vent groove, then after the force of pressing the convex ball 18 is released, the pull rod 15 at the lower end of the elastic sheet 9 pushes four hook rods 14 to the periphery through an inclined angle by a triangular block, then the pull rod 16 is separated from the limit of the hook rods 14, and the elastic sheet 9 drives the negative pressure ball 8 to expand in the negative pressure cavity, an inward pressure difference adsorption force is generated at the bonding hole 19, a part of the coating in a sol state paved below the coiled material is adsorbed in the bonding hole 19, and a columnar bonding form is formed after the coating is dried, so that the reinforced installation is completed, and the service life is prolonged.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (4)
1. The utility model provides a resistant root thorn waterproofing membrane structure of roofing plants, includes coiled material (1), its characterized in that: the coiled material (1) is sequentially provided with an isolating layer (2), a first modified asphalt layer (3), a copper tire base layer (4), a second modified asphalt layer (5) and a bonding layer (6) from top to bottom, a plurality of negative pressure cavities are sequentially and symmetrically arranged in the bonding layer (6), bosses (7) are arranged at the lower ends of the negative pressure cavities, negative pressure balls (8) are sleeved on the bosses (7), elastic pieces (9) are arranged at the upper ends of the inner sides of the bosses (7) inserted with the negative pressure balls (8), transverse plates are horizontally arranged at the lower ends of the centers of the elastic pieces (9), contact pins (10) are vertically arranged at the lower ends of the centers of the transverse plates, the lower ends of the contact pins (10) penetrate through the center holes in the upper ends of the bosses (7) and are inserted in the ventilation grooves, square grooves are symmetrically formed in the two sides of the upper ends of the bosses (7), sealing films (11) are horizontally arranged at the lower ends of the bosses (7), and four air inlet holes (12) are symmetrically formed in the circumferential surfaces of the lower ends and the side circles of the contact pins (10), four air inlet grooves are symmetrically formed in the lower end of the contact pin (10), and two air inlet holes (12) in one side are respectively connected through the air inlet grooves.
2. The planted roof root-resistant waterproof coiled material structure according to claim 1, characterized in that: the improved structure of the automobile seat is characterized in that a sleeve (13) is arranged at the upper end of the center of the transverse plate, four hook rods (14) are symmetrically arranged at the upper end of the sleeve (13), pull rods (15) are inserted into the sleeve (13), the upper ends of the pull rods (15) are integrally arranged with the elastic sheet (9) through connecting balls, and transverse blocks of the four hook rods (14) are respectively buckled at the upper ends of one sides of the triangular blocks of the pull rods (15).
3. The planted roof root-resistant waterproof coiled material structure according to claim 1, characterized in that: the upper end and the lower end of the inserting center hole of the inserting pin (10) are respectively provided with a first limiting block (16) and a second limiting block (17), and the diameter of the first limiting block (16) is smaller than that of the second limiting block (17).
4. The planted roof root-resistant waterproof coiled material structure according to claim 1, characterized in that: the upper end and the lower extreme of isolation layer (2) and adhesive linkage (6) symmetry respectively are equipped with a plurality of protruding balls (18) and adhesion hole (19), and adhesion hole (19) are located seal membrane (11) under, are equipped with directly over negative pressure ball (8) and press briquetting (20), and protruding ball (18) and adhesion hole (19) one-to-one setting.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022286935.4U CN214615051U (en) | 2020-10-15 | 2020-10-15 | Resistant root thorn waterproofing membrane structure of roofing plants |
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CN202022286935.4U CN214615051U (en) | 2020-10-15 | 2020-10-15 | Resistant root thorn waterproofing membrane structure of roofing plants |
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CN214615051U true CN214615051U (en) | 2021-11-05 |
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CN202022286935.4U Active CN214615051U (en) | 2020-10-15 | 2020-10-15 | Resistant root thorn waterproofing membrane structure of roofing plants |
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