CN201042339Y - Multi-layer stereoscopic graticule material with stereoscopic network space - Google Patents
Multi-layer stereoscopic graticule material with stereoscopic network space Download PDFInfo
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- CN201042339Y CN201042339Y CNU2007201476909U CN200720147690U CN201042339Y CN 201042339 Y CN201042339 Y CN 201042339Y CN U2007201476909 U CNU2007201476909 U CN U2007201476909U CN 200720147690 U CN200720147690 U CN 200720147690U CN 201042339 Y CN201042339 Y CN 201042339Y
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- multiple layer
- stereoscopic graticule
- woven net
- layer stereoscopic
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Abstract
A multi-layered three-dimensional mesh material is provided, which has a three-dimensional network space. The non-woven mesh material is laminated by more than two layers of non-woven mesh material made of thermal-plastic plastic or rubber material. The mesh material has moisture-proof and mould-proof effects to solve the moisture-absorption problem in the prior art. Additionally, the multiply layers of non-woven mesh materials combine to form a three-dimensional network space inside the multi-layered three-dimensional mesh material, so that the multi-layered three-dimensional mesh material has high overhead property, light weight, and good air permeability and elasticity.
Description
Technical field
The utility model relates to the multiple layer stereoscopic graticule material that a kind of enforcement applies to fields such as bedding, seat or shoes, particularly relates to a kind of multiple layer stereoscopic graticule material that utilizes multiple layer stereoscopic graticule material to form tool cubic network space.
Background technology
The existing pad structure that applies to bedding or seat, great majority are based on spring (as: independent tube mattress, sping mattress), foam (as: mattress of latex, silica gel, bolster), straw (as: tatami), coconut palm palm fibre (as: mattress, seat cushion, chair cushion), and, also have to adopt and make as materials such as eider down, wool, fiber, tealeaves, mung bean shell, vanilla, bamboo, rattan, wooden pearl, plastic beads at products such as bolster, seat cushion, chair cushions.These existing pad structures that utilize various different materials to constitute all respectively have it different functional, but all have and be afraid of moist common drawback and restriction, and have the gas permeability deficiency on the product partly, be difficult for problems such as arrangement maintenance and durability be relatively poor.
Again, for the foot that releives produces constraint and discomfort such as sultry, tend to produce ventilated usefulness to lay hole or mode such as waterproof ventilated membrane is set in footwear uppers or shoe-pad, but these existing modes the saturating usefulness of ventilation that can produce quite limited, can't reach quick effectively, be difficult to satisfy end user's demand efficiently with the effect of sweat and hot gas discharge; In addition, existing mode of making shoe-pad with artificial or natural braid, since shoe-pad all present the alternative form of dipping and heaving through weft yarn, the wire side height can be complementary and reduce ventilation space when stacked, and at the human body wear and weight knitmesh when organizing, the knitmesh tissue can be flattened and reduce ventilative usefulness.
Summary of the invention
For solving existing pad material relevant for the not enough and restriction of being afraid of humidity and permeability difference, creator's development and Design goes out the multiple layer stereoscopic graticule material in the tool cubic network space of a kind of high built on stilts, weight reduction, air ventilation space and favorable elasticity.
The technical problems to be solved in the utility model has provided the multiple layer stereoscopic graticule material in a kind of tool cubic network space, mainly be utilize more than two layers by thermoplasticity mould, elastomeric material, do foaming or multiple layer of stereoscopic graticule material of the stacked composition of the three-dimensional non-woven net of 2D material institute that do not foam through extrusion molding, allow multiple layer stereoscopic graticule material can utilize the interlaced storehouse of netting twine of difformity or different thicknesses and form the cubic network space of solid shape in inside, allow multiple layer stereoscopic graticule material can possess usefulness such as elasticity, ventilative, protection against the tide, mildew-resistant simultaneously.
The technical solution of the utility model is:
Multiple layer stereoscopic graticule material according to the tool cubic network space that the utility model proposes, it includes the non-woven net material of storehouse combination in regular turn more than two layers, each non-woven net material all is by most spaced first netting twines and most spaced second netting twines, link the 2D solid shape that constitutes with folded by alternative form, be distributed with most meshes spaced apart in length and breadth in each non-woven net material.
The utility model can further adopt following technical measures to realize:
The multiple layer stereoscopic graticule material in aforesaid tool cubic network space, the cross sectional shape of wherein said first netting twine and second netting twine is made as circle, or is made as rectangle, or is made as and circularly with the rectangle space form is set.
The multiple layer stereoscopic graticule material in aforesaid tool cubic network space, the outside of wherein said multiple layer stereoscopic graticule material coat and are provided with a surperficial material that coats.
The multiple layer stereoscopic graticule material in aforesaid tool cubic network space, wherein said multiple layer stereoscopic graticule material further comprises a web materials that is incorporated into described non-woven net material, the circumferential profile of this web materials can be greater than non-woven net material, and is coated on the periphery of non-woven net material and forms the bound edge form with the outer peripheral edges bending.
The multiple layer stereoscopic graticule material in aforesaid tool cubic network space, the mesh of wherein said each non-woven net material is made as identical thickness form, or the alternate form of thickness, or the form of changing from small to big in regular turn.
The utility model compared with prior art has tangible advantage and beneficial effect, comprising:
1, multiple layer stereoscopic graticule material of the present utility model be with thermoplasticity mould, the integral type structure of elastomeric material institute extrusion molding, not only possess the effect of protection against the tide and mildew-resistant, good tolerance, and can possess usefulness such as elasticity, ventilative, protection against the tide, mildew-resistant simultaneously.
2, the utility model utilization use for bedding or seat cushion pad the time, utilize multiple layer stereoscopic graticule material with the formed cubic network of each non-woven net material storehouse space, can allow pad possess the elasticity usefulness of high built on stilts, weight reduction, air ventilation space and appropriateness, solve existing pad effectively relevant for being afraid of not enough and restriction such as humidity and gas permeability difference, improve the practical usefulness of pad.
When 3, the utility model utilization is for the upper of a shoe of footwear body or shoe-pad, utilize multiple layer stereoscopic graticule material with the formed cubic network of each non-woven net material storehouse space, good ventilated effect, high three-dimensional built on stilts and reduce usefulness such as foot and footwear contact level be long-pending can be provided, and process easily, cost is low.If collocation tool air-flow promotes the end in the big end of footwear of usefulness or the footwear, can reach ventilation and thermolysis with active form effectively again.
Description of drawings
Fig. 1 is the D structure schematic diagram of the utility model first preferred embodiment;
Fig. 2 is the composition component decomposition map of the utility model first preferred embodiment;
Fig. 3 is the D structure figure of the set non-woven net of the utility model first preferred embodiment material;
Fig. 4 is the D structure schematic diagram of the utility model second preferred embodiment;
Fig. 5 is the composition component decomposition map of the utility model second preferred embodiment;
Fig. 6 is the D structure figure of the set non-woven net of the utility model second preferred embodiment material;
Fig. 7 is the D structure schematic diagram of the utility model the 3rd preferred embodiment;
Fig. 8 is the D structure figure of the set non-woven net of the utility model the 3rd preferred embodiment material;
Fig. 9 is the D structure schematic diagram of the utility model the 4th preferred embodiment;
Figure 10 is the composition component decomposition map of the utility model the 4th preferred embodiment;
Figure 11 is the three-dimensional generalized section that the utility model applies to bedding and seat usefulness pad;
Figure 12 is the three-dimensional generalized section that the utility model applies to bedding and seat usefulness pad;
Figure 13 is the generalized section that the utility model applies to the footwear body;
Figure 14 is the composition component decomposition map of the utility model the 5th preferred embodiment;
Figure 15 is the D structure schematic diagram of the utility model the 5th preferred embodiment;
Figure 16 is the composition component decomposition map of the utility model the 6th preferred embodiment;
Figure 17 is the D structure schematic diagram of the utility model the 6th preferred embodiment.
Wherein: 1,1A, 1B, 1C, 1D, 1E: multiple layer stereoscopic graticule material; 10,10A, 10B: non-woven net material; 11,11A: first netting twine; 12,12A: second netting twine; 13: web materials; 20: the surface coats material; 30: auxiliary pad; 40: the footwear body; 41: vamp structure material; 42: upper of a shoe; 43: the big end of footwear; 44: the end in the footwear; 45: shoe-pad.
The specific embodiment
Above-mentioned explanation only is the general introduction of technical solutions of the utility model, for can clearer understanding technological means of the present utility model, and can be implemented according to the content of specification, below with preferred embodiment of the present utility model and conjunction with figs. describe in detail as after.
The specific embodiment of the present utility model is provided in detail by following examples and accompanying drawing thereof.
The utility model provides a kind of multiple layer of stereoscopic graticule material that has the cubic network space and can possess functions such as elasticity, ventilative, protection against the tide, mildew-resistant of establishing.Be first preferred embodiment of the present utility model as shown in Figure 1 to Figure 3, the pad of this embodiment is to be provided with a multiple layer stereoscopic graticule material 1, layer stereoscopic graticule material 1 includes the non-woven net material 10 of storehouse combination in regular turn more than two layers again, each non-woven net material 10 is by as PE (polyethylene, Polyethylene), EVA (vinyl-vinyl acetate copolymer, ethylene-vinyl acetate copolymer), TPE (Hot plasticity Bomb Body, Thermoplastic Elastomer) and TP R (Hot Su Xiang Rubber, ThermalPlastic Ru bber) ... wait thermoplasticity to mould, elastomeric material, construct through the non-woven dictyosome that extrusion molding is done to foam or do not foam, and each non-woven net material 10 all is to link the 2D solid shape that constituted with folded by alternative form by most spaced first netting twines 11 and most spaced second netting twines 12, uses in each non-woven net material 10 and is distributed with most meshes spaced apart in length and breadth.The utility model can be according to the demand of function, the mesh of each non-woven net material 10 is made as similar and different thickness form, or be made as the alternate form of thickness, or be made as with the form of changing from small to big in regular turn ... or the like form, and after storehouse arrives required thickness in regular turn with most layer non-woven net materials 10, in split mode or with hot melt adhesive mode or the lamination form that each non-woven net material 10 is combined into one in modes such as electrical knife, ultrasonic, high frequencies, group constitutes the multiple layer stereoscopic graticule material in tool cubic network space as shown in Figure 1 of seam.
First preferred embodiment as shown in Figure 1 to Figure 3, in conjunction with forming, and set first netting twine 11 of each non-woven net material 10 and the cross sectional shape of second netting twine 12 all are to be made as circle to the whole multiple layer stereoscopic graticule material 1 of this embodiment by six non-woven net material 10 storehouses.
As extremely second preferred embodiment shown in Figure 6 of Fig. 4, in conjunction with forming, and set first netting twine 11 of each non-woven net material 10A and the cross sectional shape of second netting twine 12 all are to be made as rectangle to the whole multiple layer stereoscopic graticule material 1A of this embodiment by four non-woven net material 10A storehouses.
As extremely the 3rd preferred embodiment shown in Figure 8 of Fig. 7, the whole multiple layer stereoscopic graticule material 1B of this embodiment by four non-woven net material 10B storehouses in conjunction with forming, each non-woven net material 10B is spaced and cross sectional shape is made as rectangle and the first circular alternate netting twine 11/11A by most, and most be spaced and cross sectional shape is rectangle and the second circular alternate netting twine 12/12A, with the folded 2D solid shape that is constituted that links by alternative form.
As extremely the 4th preferred embodiment shown in Figure 10 of Fig. 9, in conjunction with forming, wherein be positioned at the first set netting twine 11 of two non-woven net materials 10 of top and the cross sectional shape of second netting twine 12 is to be made as circle to the whole multiple layer stereoscopic graticule material 1C of this preferred embodiment by six non-woven net material 10/10A/10B storehouses; First netting twine 11 that two non-woven net material 10A in the middle of being positioned at are set and the cross sectional shape of second netting twine 12 are to be made as rectangle; Two non-woven net material 10B that are positioned at the below are spaced and cross sectional shape is rectangle and the first circular alternate netting twine 11/11A by most, and most be spaced and cross sectional shape is rectangle and the second circular alternate netting twine 12/12A, with the folded 2D solid shape that is constituted that links by alternative form.
Implement to apply to the example that bedding and seat are used pad for multiple layer stereoscopic graticule material 1 of the present utility model as shown in figure 11, this embodiment is that the multiple layer stereoscopic graticule material 1 with tool cubic network space is a core, and coat in the outside and to be provided with a surface and to coat material 20, can constitute pad structure as purposes such as bedding and seats.
Implement to apply to use the example of pad as shown in figure 12 into bedding and seat for multiple layer stereoscopic graticule material 1 of the present utility model, this embodiment is to be core in conjunction with one with the auxiliary pad 30 made as materials such as foams with the multiple layer stereoscopic graticule material 1 of tool cubic network, coat in the outside again and be provided with a surface coating material 20, can constitute pad structure as purposes such as bedding and seats.
Implement the example of footwear body 40 as shown in figure 13 for the utility model, this footwear body 40 includes one and is arranged in the big end 43, one of footwear that upper of a shoe 42, that outside vamp structure material 41, is incorporated into vamp structure material 41 medial surfaces is incorporated into footwear body 40 bottoms to be positioned at footwear body 40 inner and be incorporated at the bottom of the footwear of top side, the big ends 43 of footwear 44, and one to be arranged in footwear body 40 inner and be located at the shoe-pad 45 of 44 top sides at the bottom of the footwear.Upper of a shoe 42 wherein and shoe-pad 45 are constituted with multiple layer stereoscopic graticule material 1D/1E provided by the utility model.
Extremely shown in Figure 15 as Figure 13, aforementionedly include non-woven stratum reticulare 10 and 13 superimposed compositions of a web materials more than two layers in order to multiple layer stereoscopic graticule material 1D as upper of a shoe 42, the multiple layer stereoscopic graticule material 1D of the 5th preferred embodiment includes the web materials 13 that three layers of non-woven stratum reticulare 10 and one deck are positioned at the bottom side as shown in the figure, each non-woven stratum reticulare 10 all is made up of 12 staggered bindings of second netting twine of first netting twine 11 of warp-wise and broadwise, and will be more thin more near the mesh of the non-woven stratum reticulare 10 of web materials 13; This web materials 13 is made by natural or synthetic fibers (as cotton, fiber crops, nylon etc.), and the line of netting twine footpath directly is the best with the line less than each non-woven stratum reticulare 10, uses the comfortableness of raising footwear body 40 wears.
Shown in Figure 13 and Figure 16,17, aforementionedly include 13 superimposed compositions of web materials that non-woven stratum reticulare 10 and more than two layers is located at each non-woven net material 10 top in order to multiple layer stereoscopic graticule material 1E as shoe-pad 45, the multiple layer stereoscopic graticule material 1E of the 6th preferred embodiment includes the web materials 13 that three layers of non-woven stratum reticulare 10 and one deck are positioned at the bottom side as shown in the figure, each non-woven stratum reticulare 10 all is made up of 12 staggered bindings of second netting twine of first netting twine 11 of warp-wise and broadwise, and will be more thin more near the mesh of the non-woven stratum reticulare 10 of web materials 13; The circumferential profile of this web materials 13 is slightly larger than each non-woven net material 10 and the outer peripheral edges of web materials 13 can be bent the periphery that is coated on each non-woven net material 10 and form the bound edge form.
Shown in each accompanying drawing, each layer non-woven net material 10/10A/10B of multiple layer stereoscopic graticule material 1 provided by the utility model all be with thermoplasticity mould, the elastomeric material extrusion molding constituted, can possess good protection against the tide and mildew-resistant effect, and utilize the formed cubic network of each layer non-woven net material 10/10A/10B storehouse space, can allow multiple layer stereoscopic graticule material 1/1A/1B/1C/1D/1E possess usefulness such as high built on stilts, weight reduction and air ventilation space.The non-woven net material 10/10A/10B that the utility model utilizes thermoplasticity to mould, elastomeric material is made has suitable pliability, can allow whole multiple layer stereoscopic graticule material 1/1A/1B/1C produce neither too hard, nor too soft favorable elasticity and comfort usefulness.
The above, it only is preferred embodiment of the present utility model, be not that the utility model is done any pro forma restriction, have common knowledge personnel in the technical field under any, if in the scope that does not break away from technical scheme that the utility model is put forward, utilize technology contents that the utility model discloses to do the local equivalent embodiment that changes or modify, and do not break away from the technical solution of the utility model content, all still belong in the scope of technical solutions of the utility model.
Claims (10)
1. the multiple layer stereoscopic graticule material in a tool cubic network space, it is characterized in that: the non-woven net material that includes storehouse combination in regular turn more than two layers, each non-woven net material all is by most spaced first netting twines and most spaced second netting twines, repeatedly to link the 2D solid shape that constitutes, be distributed with most meshes spaced apart in length and breadth in each non-woven net material by alternative form.
2. the multiple layer stereoscopic graticule material in tool cubic network according to claim 1 space, it is characterized in that: the cross sectional shape of described first netting twine and second netting twine is made as circle.
3. the multiple layer stereoscopic graticule material in tool cubic network according to claim 1 space, it is characterized in that: the cross sectional shape of described first netting twine and second netting twine is made as rectangle.
4. the multiple layer stereoscopic graticule material in tool cubic network according to claim 1 space, it is characterized in that: the cross sectional shape of described first netting twine and second netting twine is made as circular and the rectangle space is provided with form.
5. according to the multiple layer stereoscopic graticule material in each described tool cubic network space of claim 1-4, it is characterized in that: coat in the outside of described multiple layer stereoscopic graticule material and be provided with a surperficial material that coats.
6. according to the multiple layer stereoscopic graticule material in each described tool cubic network space of claim 1-4, it is characterized in that: described multiple layer stereoscopic graticule material further comprises a web materials that is incorporated into described non-woven net material.
7. the multiple layer stereoscopic graticule material in tool cubic network according to claim 6 space is characterized in that: the circumferential profile of described web materials is greater than described non-woven net material, and is coated on the periphery of non-woven net material and forms the bound edge form with the outer peripheral edges bending.
8. according to the multiple layer stereoscopic graticule material in each described tool cubic network space of claim 1-4, it is characterized in that: the mesh of described each non-woven net material is made as identical thickness form.
9. according to the multiple layer stereoscopic graticule material in each described tool cubic network space of claim 1-4, it is characterized in that: the mesh of described each non-woven net material is made as the alternate form of thickness.
10. according to the multiple layer stereoscopic graticule material in each described tool cubic network space of claim 1-4, it is characterized in that: the mesh of described each non-woven net material is made as the form of changing from small to big in regular turn.
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CNU2007201476909U CN201042339Y (en) | 2007-04-26 | 2007-04-26 | Multi-layer stereoscopic graticule material with stereoscopic network space |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101991341A (en) * | 2010-10-29 | 2011-03-30 | 常熟市豪毅纺织厂 | Ventilated non-slip mat and processing method thereof |
CN103757796A (en) * | 2014-01-28 | 2014-04-30 | 常州悦诚新材料有限公司 | Three-dimensional grid core material woven fabric |
-
2007
- 2007-04-26 CN CNU2007201476909U patent/CN201042339Y/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101991341A (en) * | 2010-10-29 | 2011-03-30 | 常熟市豪毅纺织厂 | Ventilated non-slip mat and processing method thereof |
CN101991341B (en) * | 2010-10-29 | 2012-11-14 | 常熟市豪毅纺织厂 | Ventilated non-slip mat and processing method thereof |
CN103757796A (en) * | 2014-01-28 | 2014-04-30 | 常州悦诚新材料有限公司 | Three-dimensional grid core material woven fabric |
CN103757796B (en) * | 2014-01-28 | 2015-07-08 | 江苏泰瑞斯特新材料科技有限公司 | Three-dimensional grid core material woven fabric |
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C14 | Grant of patent or utility model | ||
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20080402 Termination date: 20120426 |