CN101761767A - Energy-saving tri-dimensional screen - Google Patents

Energy-saving tri-dimensional screen Download PDF

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Publication number
CN101761767A
CN101761767A CN200810244183A CN200810244183A CN101761767A CN 101761767 A CN101761767 A CN 101761767A CN 200810244183 A CN200810244183 A CN 200810244183A CN 200810244183 A CN200810244183 A CN 200810244183A CN 101761767 A CN101761767 A CN 101761767A
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CN
China
Prior art keywords
tri
energy
saving
dimensional screen
screen according
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Pending
Application number
CN200810244183A
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Chinese (zh)
Inventor
李雪飞
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Individual
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Individual
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Publication date
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Priority to CN200810244183A priority Critical patent/CN101761767A/en
Publication of CN101761767A publication Critical patent/CN101761767A/en
Pending legal-status Critical Current

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Abstract

The invention provides an energy-saving tri-dimensional screen, relating to the technical field of boards. The invention adopts the characteristic of a network structure of die layout to lead the shape of the screen to be evenly distributed and arranged, and uses the principle that the obverse and the reverse of the board are in malposition counterblow, so that board material with the thickness of 2.5mm can be changed into the tri-dimensional screen with the thickness of 20-30mm by using the die network structure. On the premise of adding no material quality, the rigidity of the tri-dimensional screen is several times higher than that of the board with the thickness of 2.5mm, and the raw material is saved by 60% compared with the board with the same thickness. The net plane of the energy-saving tri-dimensional screens can cover the surface decorative material, can be used in high-rise buildings decoration, reduces weight, is used in rapid assembly of simple mobile homes, roof separation, decorative clapboard and floor, pallets in the aspect of logistics, and also is suitable for subdrainage systems of roof plantation and afforestation plantation.

Description

Energy-saving tri-dimensional screen
Technical field
The present invention relates to the sheet material technical field, relate to the field of building, furniture, decoration, logistics, plantation, greening, storage carriage and metal machinery sheet material, belong to a kind of energy-saving tri-dimensional screen.
Background technique
At present, the various sheet materials in domestic and international market, if increase the intensity of sheet material, generally must increase sheet metal thickness just can reach requirement of strength, so just means the materials cost that must increase material.Sheet material as equal quality increases its rigidity, and another kind of method is that the stiffening rib that increases this material achieves the goal, but the material of being saved is limited.Also have a kind of sheet material, increase the thickness of sheet material by filling the auxiliary material filler, thereby reach the requirement that increases timber intensity, compare with preceding two kinds of methods, slightly the cost of economical with materials.The sheet material of producing on the market now and using does not all really reach and is alleviating under the prerequisite of quality, has not only saved material cost in a large number simultaneously but also can reach the requirement of sheet material working strength.
Summary of the invention
The purpose of this invention is to provide a kind of sheet material, on the basis of economical with materials 60% quality, can increase sheet metal thickness, can reach the energy-saving tri-dimensional screen of working strength again.
For achieving the above object, the present invention takes following design proposal:
A kind of energy-saving tri-dimensional screen, it utilizes the cancellated characteristics of mold layout, makes the uniform arrangement of its shape, the principle of obverse and reverse dislocation to hitting of sheet material, can utilize the mould reticular structure to become the tri-dimensional screen of 20-30 millimeters thick the sheet material of 2.5 millimeters thick.Under the situation that does not increase quality of materials, this tri-dimensional screen improves several times of rigidity than the sheet material of 2.5 millimeters thick, compares the raw material material consumption of saving 60% with condition of equivalent thickness sheet material, is the product of at present domestic and international sheet material market efficient energy-saving.
Advantage of the present invention is:
1, this energy-saving tri-dimensional screen is a reticular structure.Its shape can be circle, square uniform arrangement is carried out two-sided to hitting formed reticular structure.
2, the reticular structure of this energy-saving tri-dimensional screen, under the situation that does not increase quality of materials, this tri-dimensional screen improves several times of rigidity than the sheet material of 2.5 millimeters thick, compares with condition of equivalent thickness sheet material and saves 60% raw material.
3, the reticular structure of this energy-saving tri-dimensional screen can be metal mold reticular structure, nonmetal type reticular structure.
4, the netted plane of this energy-saving tri-dimensional screen can the covering surfaces ornament material.
5, above the interior top of this energy-saving tri-dimensional screen intermediate ribs Vertical direction and followingly can increase stiffening rib, can increase the rigidity and the intensity of energy-conservation web plate.
6, this energy-saving tri-dimensional screen can be used for the tall building decoration, weight reduction, can apply to the assembling fast of simple and easy movable dwellings building, be used for roofing, isolate decorative partition board, floor, the supporting plate that can be used for the logistics aspect can be used for the fields such as underdrainage system of roof planting and planting technique.
Description of drawings
Fig. 1 is a schematic appearance of the present invention
Fig. 2 is front projection figure of the present invention
Fig. 3 is a reverse side projection drawing of the present invention
Fig. 4 is a side schematic view of the present invention
Fig. 5 is a sectional view of the present invention
Each label is represented successively among the figure: splicing surface A face, and splicing surface B face, the center in 1, two hole of front diameter is a radius 2
Embodiment
As shown in Figure 1, the mould once-through of this product, going up gusset and lower web plate after the once-through all be the plane, and the requirement of thickness can require customizedly according to actual, and centre is the last gusset of fulcrum support and the lower web plate of muscle.The diameter in the hole of obverse and reverse can be customized according to practical requirements.The A face is a splicing surface, on the A side muscle middle boss is arranged.The B side is a mesopore.Energy-saving tri-dimensional screen can position assembly unit according to the actual requirements, is combined into more large size and uses.
The middle diameter of energy-saving tri-dimensional screen shown in Figure 2 is equidistant the arrangement, and the degree of depth deducts the wall thickness (about 2.5 millimeters) of reverse side for the energy-saving tri-dimensional screen total thickness, and positive diametric hole size should be decided according to the use and the technical requirements of energy-saving tri-dimensional screen.Diameter is big equidistant big, and diameter is little equidistantly little.But guarantee that equidistant size subtracts the thickness that diameter dimension equals supporting rib, to guarantee to reach the strength and stiffness that energy-saving tri-dimensional screen uses.
Illustrated A face and B face four avris thickness are the 2-3 millimeter among Fig. 3, center according to two holes of front diameter 1 during radius 2 is radius 2 centers, its centre distance is arranged and is arranged consistent with front elevation 1 centre distance, be uniform arrangement, with the center of 4 diameters of Fig. 2 to hitting, form 3 little muscle fulcrums, gusset and lower web plate in the support, thereby forming energy-saving tri-dimensional screen.
The diameter boss of lateral plane and diameter shrinkage pool among Fig. 4 mainly are for assembly unit connects the location, and the muscle of side is to glued joint for assembly unit, has played the effect that increases splicing intensity.
Energy-saving tri-dimensional screen A plane and B plane (Fig. 4) translation 45 degree again become miter angle with side plane just as shown in Figure 5, and the centre is a supporting rib all, acts on to support top and following two planes, reaches energy-conservation supporting effect.

Claims (8)

1. energy-saving tri-dimensional screen, it is characterized in that: utilize the cancellated characteristics of mold layout, make the uniform arrangement of its shape, the principle of obverse and reverse dislocation to hitting of sheet material, can utilize the mould reticular structure to become the tri-dimensional screen of 20-30 millimeters thick the sheet material of 2.5 millimeters thick.
2. energy-saving tri-dimensional screen according to claim 1, it is characterized in that: utilize the mould structure moulding, as Fig. 1 energy-conservation basis being arranged is prerequisite, and this reticular structure should be able to reach saves 60% raw material, should reach the index technical requirements of certain intensity and rigidity on the basis that saves material.
3. energy-saving tri-dimensional screen according to claim 1 is characterized in that: the uniform equidistant arrangement of shape, the positive and structural principle of Fig. 3 reverse side dislocation to hitting as Fig. 2.
4. energy-saving tri-dimensional screen according to claim 1 is characterized in that: the web plate size can assembling combination.Above the sheet material and following be the plane, can utilize the gluing ornament material in plane, not only attractive in appearance but also gain in strength.
5. energy-saving tri-dimensional screen according to claim 1 is characterized in that: the shape in this its hole of reticular structure can be circle, square, hexagon, leg-of-mutton arrangement.
6. energy-saving tri-dimensional screen according to claim 1 is characterized in that: this reticular structure relates to metal mold reticular structure and nonmetal type reticular structure application area.
7. energy-saving tri-dimensional screen according to claim 1 is characterized in that: the front reverse side circular hole of energy-saving tri-dimensional screen becomes 90 degree, two-sided once-through with the web plate plane.
8. energy-saving tri-dimensional screen according to claim 1 is characterized in that: can increase stiffening rib with following above the interior top of energy-saving tri-dimensional screen intermediate ribs Vertical direction, can increase the rigidity and the intensity of energy-conservation web plate.
CN200810244183A 2008-12-25 2008-12-25 Energy-saving tri-dimensional screen Pending CN101761767A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN200810244183A CN101761767A (en) 2008-12-25 2008-12-25 Energy-saving tri-dimensional screen

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN200810244183A CN101761767A (en) 2008-12-25 2008-12-25 Energy-saving tri-dimensional screen

Publications (1)

Publication Number Publication Date
CN101761767A true CN101761767A (en) 2010-06-30

Family

ID=42493099

Family Applications (1)

Application Number Title Priority Date Filing Date
CN200810244183A Pending CN101761767A (en) 2008-12-25 2008-12-25 Energy-saving tri-dimensional screen

Country Status (1)

Country Link
CN (1) CN101761767A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103256474A (en) * 2013-05-24 2013-08-21 李雪飞 Energy-saving strengthened three-dimensional mesh board and assembling method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103256474A (en) * 2013-05-24 2013-08-21 李雪飞 Energy-saving strengthened three-dimensional mesh board and assembling method thereof

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Application publication date: 20100630