CN105239490A - Anti-slide shock-absorption floor tile - Google Patents

Anti-slide shock-absorption floor tile Download PDF

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Publication number
CN105239490A
CN105239490A CN201510701219.9A CN201510701219A CN105239490A CN 105239490 A CN105239490 A CN 105239490A CN 201510701219 A CN201510701219 A CN 201510701219A CN 105239490 A CN105239490 A CN 105239490A
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China
Prior art keywords
shock
floor tile
layer
water guide
skidding
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Granted
Application number
CN201510701219.9A
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Chinese (zh)
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CN105239490B (en
Inventor
陈建昌
陆舒萍
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Ningxia Zhengde Source Technology Development Co ltd
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Huzhou Haocheng Environmental Engineering Co Ltd
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Priority to CN201510701219.9A priority Critical patent/CN105239490B/en
Publication of CN105239490A publication Critical patent/CN105239490A/en
Application granted granted Critical
Publication of CN105239490B publication Critical patent/CN105239490B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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  • Road Paving Structures (AREA)

Abstract

The invention relates to an anti-slide shock-absorption floor tile, and belongs to the technical field of building materials. The anti-slide shock-absorption floor tile comprises a water guide layer, a shock absorption layer, a water storage layer and a base layer which are sequentially arranged from top to bottom, wherein water guide holes penetrating through the water guide layer and water guide grooves on the surface of the water guide layer are formed on the water guide layer, and the water guide grooves are arrayed on the surface of the water guide layer in a herringbone shape; and the shock absorption layer is formed by gathering elastic granular substances, through pores are formed in the shock absorption layer, and the pores are communicated with the water storage layer. The floor tile has a shock-buffering function, and good water-drainage performance and anti-slide performance.

Description

A kind of anti-skidding shock-absorbing floor tile
Technical field
The present invention relates to building material technical field, be specifically related to a kind of anti-skidding shock-absorbing floor tile.
Background technology
The road surface be paved into floor tile often can be seen in the place such as park, residential block, often has resident to take a walk above, plays play or even run; Typically, the road surface that floor tile is paved into is comparatively hard, also can increase the ankle of pedestrian especially runner, the impact of knee; For handicapped people and runner, the non-skid property on road surface is also very important.
Also there is larger requirement on the road surface that floor tile is paved in addition to drainage performance, will drain surface gathered water rapidly time rainy.
Summary of the invention
Object of the present invention is to solve the problem, and provide a kind of floor tile with the slow function of shake, this floor tile also has good drainage performance and non-skid property simultaneously.
The technical scheme that the present invention solves the problem is as follows:
A kind of anti-skidding shock-absorbing floor tile, comprise the water guide layer, shock suction layer, reservoir bed and the basalis that arrange from top to bottom successively, described water guide layer offers the water-guiding hole of through described water guide layer and the guiding gutter on described water guide layer surface, described guiding gutter be herringbone at water guide layer surface alignment, the spacing between described lambdoid guiding gutter is less than 10cm and the upper edge of described guiding gutter is provided with reeding; Described shock suction layer forms by having the gathering of flexible particulate material, and there is through hole in described shock suction layer, described hole is connected with described reservoir bed.
Elastic granule shape material in shock suction layer is made up of rubber or plastics usually, itself has certain ductility, therefore makes floor tile possess certain shake property delayed simultaneously; Also possess certain elasticity owing to shaking slow layer, can to floor tile up walk or the people that runs feedback force is provided, make its comfortable labor-saving more of walking.
When raining, rainwater flows down from water-guiding hole, flows through the slow layer of shake, flows into reservoir bed, and the evaporating slowly when drying, can regulate the humidity of air; Owing to containing granular impurity in rainwater, easily block reservoir bed, the hole that the slow layer of shake itself has plays pre-filtered effect to rainwater, alleviates the stopping state of reservoir bed; Because the intensity of reservoir bed is not high, if the impact that the words be directly connected with water guide layer are subject to can be comparatively concentrated, reduce the application life of floor tile, centre arranges the impact that the slow layer of elasticity shake can weaken, disperse reservoir bed to receive, and extends the application life of floor tile; When the excessive reservoir bed of amount of precipitation overflows, the hole in the slow layer of shake also can share the function of some water storages.
The guiding gutter of circular array plays certain anti-skidding effect.
Preferred as technique scheme, is distributed with strip or rigid body on chip in described shock suction layer, described rigid body has flexible particulate material and mixes to assemble with described and form described shock suction layer.
Rigid body improves the intensity of the slow layer of shake, makes it not yielding.
Preferred as technique scheme, described water guide layer offers guiding gutter, and the upper end of described water-guiding hole is opened in the bottom of described guiding gutter.
Rainwater flows in water-guiding hole after guiding gutter guides.
Preferred as technique scheme, the bottom surface of described guiding gutter is arcwall face.
Preferred as technique scheme, described reservoir bed is the porous media of ceramic materials through sintering.
Preferred as technique scheme, is at least provided with two solid support columns in described reservoir bed.
Support column is for improving the support performance of reservoir bed.
Preferred as technique scheme, described basalis is provided with the through hole be connected with ground.
This through hole, except conducting outside current, can also conduct the temperature at earth's surface and the end, ground, and then regulates surface temperature.
Preferred as technique scheme, the bottom surface of described basalis is matsurface, described bottom surface is provided with zigzag lines.
Preferred as technique scheme, the bottom surface of described base layer is provided with taper fixed teeth.
Preferred as technique scheme, the thickness sum of described shock suction layer and described reservoir bed is less than 1/3 of floor tile thickness.
In sum, the present invention has following beneficial effect:
A kind of anti-skidding shock-absorbing floor tile of the present invention relaxes except feedback performance except having shake preferably, also has good drainage performance and suitable intensity.
Accompanying drawing explanation
Fig. 1 is a kind of anti-skidding shock-absorbing floor tile structure schematic diagram;
Fig. 2 is a kind of anti-skidding shock-absorbing tile surface structural representation;
In figure, 1-water guide layer, 11-guiding gutter, 111-reeding, 12-water-guiding hole, 2-shock suction layer, 21-rigid body, 3-reservoir bed, 31-support column, 4-basalis, 41-through hole, 42-taper fixed teeth.
Detailed description of the invention
Be clearly and completely described to the technical scheme in the embodiment of the present invention below, obviously, described embodiment is only the present invention's part embodiment, instead of whole embodiments.Embodiment in the present invention, those of ordinary skill in the art, not doing other embodiments all obtained under creative work prerequisite, belong to the scope of protection of the invention.
Below in conjunction with accompanying drawing, with embodiment, the present invention is described in detail.
Embodiment 1: a kind of anti-skidding shock-absorbing floor tile, comprise the water guide layer 1, shock suction layer 2, reservoir bed 3 and the basalis 4 that arrange from top to bottom successively, described water guide layer 1 offers guiding gutter 11, the upper end of water-guiding hole 12 is opened in the bottom of described guiding gutter 11, described guiding gutter 11 is in circular array on water guide layer 1 surface, and the spacing between described lambdoid guiding gutter 11 is less than 10cm and the upper edge of described guiding gutter 11 is provided with reeding 111; Described shock suction layer 2 is assembled form by being had flexible particulate material and rigid strip material 21, and there is through hole in described shock suction layer 2, described hole is connected with described reservoir bed 3; Described reservoir bed 3 is ceramic materials through the porous media of sintering, in the middle of be provided with two solid support columns 31; Described basalis 4 is provided with the through hole 41 be connected with ground, and the bottom surface of basalis 4 is matsurface, described bottom surface is provided with zigzag lines.
The bottom surface of described guiding gutter 11 is arcwall face.
The thickness sum of described shock suction layer 2 and described reservoir bed 3 is 1/4 of floor tile thickness.
Embodiment 2: a kind of anti-skidding shock-absorbing floor tile, comprise the water guide layer 1, shock suction layer 2, reservoir bed 3 and the basalis 4 that arrange from top to bottom successively, described water guide layer 1 offers guiding gutter 11, the upper end of water-guiding hole 12 is opened in the bottom of described guiding gutter 11, described guiding gutter 11 is in circular array on water guide layer 1 surface, and the spacing between described lambdoid guiding gutter 11 is less than 10cm and the upper edge of described guiding gutter 11 is provided with reeding 111; Described shock suction layer 2 forms by having the gathering of flexible particulate material, and there is through hole in described shock suction layer 2, described hole is connected with described reservoir bed 3; Described reservoir bed 3 is ceramic materials through the porous media of sintering, in the middle of be provided with two solid support columns 31; Described basalis 4 is provided with the through hole 41 be connected with ground, and the bottom surface of base layer 4 is provided with taper fixed teeth 42.
The thickness sum of described shock suction layer 2 and described reservoir bed 3 is 1/5 of floor tile thickness.

Claims (9)

1. an anti-skidding shock-absorbing floor tile, it is characterized in that: comprise the water guide layer (1), shock suction layer (2), reservoir bed (3) and the basalis (4) that arrange from top to bottom successively, described water guide layer (1) offers the water-guiding hole (12) of through described water guide layer (1) and the guiding gutter (11) on described water guide layer (1) surface, described guiding gutter (11) is in herringbone at water guide layer (1) surface alignment, and the spacing between described lambdoid guiding gutter (11) is less than 10cm and the upper edge of described guiding gutter (11) is provided with reeding (111); Described shock suction layer (2) forms by having the gathering of flexible particulate material, and described shock suction layer exists through hole in (2), and described hole is connected with described reservoir bed (3).
2. a kind of anti-skidding shock-absorbing floor tile according to claim 1, it is characterized in that: be distributed with strip or rigid body on chip (21) in described shock suction layer (2), described rigid body (21) has flexible particulate material and mixes to assemble with described and form described shock suction layer (2).
3. a kind of anti-skidding shock-absorbing floor tile according to claim 1, is characterized in that: the bottom surface of described guiding gutter (11) is arcwall face.
4. a kind of anti-skidding shock-absorbing floor tile according to claim 1, is characterized in that: described reservoir bed (3) is for ceramic materials is through the porous media of sintering.
5. a kind of anti-skidding shock-absorbing floor tile according to claim 4, is characterized in that: be at least provided with two solid support columns (31) in described reservoir bed (3).
6. a kind of anti-skidding shock-absorbing floor tile according to claim 1, is characterized in that: described basalis (4) is provided with the through hole (41) be connected with ground.
7. a kind of anti-skidding shock-absorbing floor tile according to claim 6, is characterized in that: the bottom surface of described basalis (4) is matsurface, described bottom surface is provided with zigzag lines.
8. a kind of anti-skidding shock-absorbing floor tile according to claim 6, is characterized in that: the bottom surface in described base layer (4) is provided with taper fixed teeth (42).
9. a kind of anti-skidding shock-absorbing floor tile according to claim 1, is characterized in that: the thickness sum of described shock suction layer (2) and described reservoir bed (3) is less than 1/3 of floor tile thickness.
CN201510701219.9A 2015-10-27 2015-10-27 A kind of anti-skidding shock-absorbing floor tile Expired - Fee Related CN105239490B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106676996A (en) * 2017-02-09 2017-05-17 泰州夏北新型绿色建材科技有限公司 Non-skid floor tile

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1125285A (en) * 1994-12-23 1996-06-26 许铨湖 Three-in-one composite and its use
KR20070040447A (en) * 2005-10-12 2007-04-17 이랜드건설산업 (주) Rice hulls water permeable elasticity pavement and manufacturing method and construction method thereof
JP2007262852A (en) * 2006-03-30 2007-10-11 Fukui Prefecture Paving material using wax-like resin and wood chip
CN202482732U (en) * 2011-12-21 2012-10-10 浙江中交科技有限公司 Fiber grid-enhanced water-permeable rubber sidewalk pavement
CN103397767A (en) * 2013-08-07 2013-11-20 江显异 Water permeating and anti-skidding floor tile and manufacturing method thereof
CN203905379U (en) * 2014-04-08 2014-10-29 安徽省亚欧陶瓷有限责任公司 Composite ground tile with good shock absorption effect
CN205259028U (en) * 2015-10-27 2016-05-25 湖州浩诚环境工程有限公司 Skid -proof shake ceramic tile of inhaling

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1125285A (en) * 1994-12-23 1996-06-26 许铨湖 Three-in-one composite and its use
KR20070040447A (en) * 2005-10-12 2007-04-17 이랜드건설산업 (주) Rice hulls water permeable elasticity pavement and manufacturing method and construction method thereof
JP2007262852A (en) * 2006-03-30 2007-10-11 Fukui Prefecture Paving material using wax-like resin and wood chip
CN202482732U (en) * 2011-12-21 2012-10-10 浙江中交科技有限公司 Fiber grid-enhanced water-permeable rubber sidewalk pavement
CN103397767A (en) * 2013-08-07 2013-11-20 江显异 Water permeating and anti-skidding floor tile and manufacturing method thereof
CN203905379U (en) * 2014-04-08 2014-10-29 安徽省亚欧陶瓷有限责任公司 Composite ground tile with good shock absorption effect
CN205259028U (en) * 2015-10-27 2016-05-25 湖州浩诚环境工程有限公司 Skid -proof shake ceramic tile of inhaling

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106676996A (en) * 2017-02-09 2017-05-17 泰州夏北新型绿色建材科技有限公司 Non-skid floor tile

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Effective date of registration: 20180710

Address after: 750100 Wang Yuan Road, Wang Yuan Industrial Park, Yongning County, Yinchuan, the Ningxia Hui Autonomous Region

Patentee after: NINGXIA ZHENGDE SOURCE TECHNOLOGY DEVELOPMENT CO.,LTD.

Address before: 313000 Zhejiang Huzhou city Wuxing District Huzhou Town, Huzhou Town, Hao Cheng Environmental Engineering Co., Ltd.

Patentee before: HUZHOU HAOCHENG ENVIRONMENTAL ENGINEERING Co.,Ltd.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20171110

Termination date: 20211027