Anti-leakage structure for water pool of chemical plant
Technical Field
The utility model relates to a chemical plant technical field, more specifically relates to a chemical plant is with pond anti-seepage leak structure.
Background
In the prior art, a chemical production workshop generally performs anticorrosion and anti-seepage treatment on the ground, and the main functions are to prevent materials from leaking and prevent leaked chemicals from permeating into the ground and entering surface water. The method is particularly suitable for the anti-seepage treatment of the chemical plant water pool, and is especially important for the anti-seepage treatment of the chemical plant water pool because various sewage pools in chemical engineering projects have great pollution risks to peripheral underground water, and the treatment difficulty is great, the treatment time is long and the cost is high after the underground water is polluted.
In the prior art, the pool usually adopts reinforced concrete pool walls and a pool bottom, and then the pool walls and the pool bottom are coated with anticorrosive paint, glass fiber reinforced plastic cloth is pasted, tiles are laid, epoxy resin floors are laid and the like, so that the groundwater is prevented from being polluted by sewage. Although the requirements of seepage prevention and corrosion prevention of the chemical plant water pool can be met to a certain extent and within a certain period, the long-term and effective requirements of the special industrial building ground cannot be fully met due to the reasons of unsatisfactory material or insufficient strength of the adhesive, short period of validity and the like. Particularly, a good anti-seepage structure needs to be ensured for the pool body of the pool, and the anti-seepage requirement of the pool bottom of the pool is higher than that of the ground and the like.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the problem in the background, thereby providing a water tank leakage prevention structure for a chemical plant.
In order to achieve the above object, the utility model provides a following technical scheme: including piling up the frame, pile up the inboard of frame and lay the tiling layer, fixed connection enclosed plate between the tiling layer, the inboard from the top down of piling up the frame has only laid pea gravel concreten in proper order, isolation layer, first waterproof layer, second waterproof layer, screed-coat, concrete-base and plain soil filling layer, plain soil filling layer and concrete-base are the setting of pond basic unit, and the board is inlayed to the outer end fixed connection on tiling layer, and the both ends on tiling layer are all fixed to be laid and are smeared husky closed bed.
Preferably, the tiling layer is laid adjacently, a fine sand cement layer is laid on the surface of the tiling layer in a covering mode, and the outer end of the tiling layer is connected with the inner side of the stacking outer frame in a seamless mode.
Preferably, the sealing plate is an anti-corrosion plate and is embedded and connected between the tiles forming the tile layer.
Preferably, arc-shaped guide angles are arranged between the fine aggregate concrete and the isolation layer.
Preferably, the outer end of the isolation layer is embedded into the stacking outer frame, the embedded part is made of rigid plastic, and the isolation layer is made of plastic isolation layer.
Preferably, the first waterproof layer and the second waterproof layer are respectively arranged as a polyurethane waterproof layer and an asphalt waterproof roll layer.
Preferably, the embedded plate is embedded into the inner side of the stacking outer frame, and the connecting position of the embedded plate and the tile sticking layer is used for stacking the plastering sealing layer.
The utility model provides a chemical plant pond seepage prevention structure has following beneficial effect:
1. this kind of chemical plant uses pond antiseep structure, through the closure plate that the tiling layer is connected with the embedding, the tiling layer is as the skin, and the closure plate that the cooperation embedding set up has good sealed effect.
2. This kind of chemical plant uses pond antiseep structure, through the arc lead angle setting between pea gravel concrete and the isolation layer, the produced contained angle of effectual contact of avoiding between soft material and the rigid material avoids having the space between the two-layer structure, leads to the pond to produce the seepage in life cycle length, reaches the effect of antiseep.
3. This kind of chemical plant uses pond antiseep structure through the isolation layer for pond layer body structure divide into dual isolation, the effectual effect that reaches the antiseep.
4. This kind of chemical plant water pond antiseep structure through first waterproof layer and second waterproof layer, reaches the effect of antiseep.
5. This kind of chemical plant uses pond antiseep structure through embedding the board, seals the processing between the tiling layer and the pond frame of top layer, reaches the effect of antiseep.
Drawings
Fig. 1 is a top view of the overall structure of the present invention.
Fig. 2 is a cross-sectional view of the overall structure of the present invention.
Fig. 3 is a plan view of the overall top structure of the present invention.
In FIGS. 1-3: 1-building an outer frame, 2-sticking a brick layer, 3-sealing plates, 4-fine stone concrete, 5-isolating layers, 6-a first waterproof layer, 7-a second waterproof layer, 8-a leveling layer, 9-a concrete base layer, 10-a plain soil filling layer, 11-an embedded plate and 12-a plastering sealing layer.
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.
Please refer to fig. 1 to 3, in the embodiment of the present invention, a chemical plant pond anti-leakage structure, including piling frame 1, pile frame 1's inboard and lay tile layer 2, fixed connection closing plate 3 between tile layer 2, pile frame 1's inboard from last laid sequentially fine aggregate concrete 4, isolation layer 5, first waterproof layer 6, second waterproof layer 7, leveling blanket 8, concrete-based layer 9 and plain soil filling layer 10, plain soil filling layer 10 and concrete-based layer 9 are the setting of pond basic unit, tile layer 2's outer end fixed connection embedding plate 11, tile layer 2's both ends are all fixed and are laid and are wiped sand closing layer 12.
In this embodiment, the adjacent laying of tiling layer 2, and the surface covering on tiling layer 2 has laid the fine sand cement layer, tiling layer 2 outer end and the inboard seamless connection of piling up frame 1.
In this embodiment, the sealing plate 3 is an anti-corrosion plate, and is embedded between the tiles forming the tile sticking layer 2, and the tile sticking layer 2 serves as an outer layer through the sealing plate 3 connected with the tile sticking layer 2 and the embedded sealing plate 3, and is matched with the embedded sealing plate 3, so that a good sealing effect is achieved.
In this embodiment, be the arc lead angle setting between pea gravel concrete 4 and the isolation layer 5 simultaneously, through the arc lead angle setting between pea gravel concrete 4 and the isolation layer 5, effectually avoid the produced contained angle of contact between soft material and the rigid material, avoid having the space between the two-layer structure, lead to the pond to produce the seepage in life cycle length, reach the effect of antiseep.
In this embodiment, the outer end embedding of isolation layer 5 is in piling up frame 1, and the embedding part is rigid plastic setting, and isolation layer 5 is the plastic isolation layer, through isolation layer 5 for the pond layer body structure divide into dual isolation, the effectual effect that reaches the antiseep.
In this embodiment, the first waterproof layer 6 and the second waterproof layer 7 are respectively configured as a polyurethane waterproof layer and an asphalt waterproof roll layer, and an anti-seepage effect is achieved through the first waterproof layer 6 and the second waterproof layer 7.
In this embodiment, embedding board 11 imbeds simultaneously and is piling up frame 1 inboard, and imbeds board 11 and piles up simultaneously with the hookup location on tiling layer 2 and wipe the husky closed bed, through embedding board 11, seals the processing between tiling layer 2 on top layer and the pond frame, reaches the effect of antiseep.
Use the utility model relates to a water pond anti-seepage structure for chemical plant, at first, the user uses soil to form plain soil filling layer 10 as the basic unit in pond, later use the concrete on its surface, lay for concrete basic unit 9, later lay of screed-coat 8 in proper order in two-layer basic unit, after using instrument detection levelness, carry out double-deck waterproof setting on the surface, the waterproof aspect structure of pond bottom finishes at last, it finishes to lay the isolation layer and carries out the top layer isolation setting in pond again, top layer isolation aspect structure is pea gravel concrete 4 and closure plate 3, wipe on 4 both ends of pea gravel concrete position and wipe sand seal layer 12, make it be located between embedding plate 11 and tiling layer 2 simultaneously, accomplish the sealing treatment of last one deck.
The above is only the preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, without departing from the concept of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent.