CN210596861U - Composite multidirectional performance optimization grid - Google Patents

Composite multidirectional performance optimization grid Download PDF

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Publication number
CN210596861U
CN210596861U CN201920921249.4U CN201920921249U CN210596861U CN 210596861 U CN210596861 U CN 210596861U CN 201920921249 U CN201920921249 U CN 201920921249U CN 210596861 U CN210596861 U CN 210596861U
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shaped hole
triangle
part triangle
hole
shaped
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CN201920921249.4U
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袁洪波
周静
艾宪锋
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FEICHENG LIANYI ENGINEERING PLASTICS CO LTD
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FEICHENG LIANYI ENGINEERING PLASTICS CO LTD
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Abstract

The utility model relates to a compound multidirectional performance optimization grid, including the grid main part on even be provided with several rectangular hole unit, main junction, well node and little node, all rectangular hole unit form network structure, each wholly the rectangular hole unit include middle part triangle-shaped hole and lateral part triangle-shaped hole, middle part triangle-shaped hole set up in pairs, distribute along the horizontal direction, be provided with a pair of lateral part triangle-shaped hole respectively at the upside and the downside in the middle part triangle-shaped hole that set up in pairs. The utility model has the advantages that: the formation of multiple node can be with the load that the product any position bore, effectively transmit whole product, play dispersion and whole effect of bearing, simultaneously, through the multidirectional crisscross connection of rib, make the connection inseparabler between every unit of product, the wholeness is stronger, for the product is in the same performance of all directions, has provided the structural guarantee.

Description

Composite multidirectional performance optimization grid
Technical Field
The utility model relates to a grid field, specificly relate to a compound multidirectional performance optimization grid.
Background
The bidirectional stretching plastic geogrid in the shape of the square hole has through stretching ribs in both the longitudinal direction and the transverse direction, so that the bearing capacity of a product in the two directions has obvious advantages, but the bearing capacity in other directions is obviously reduced. Due to the structure of the rhombic grating, the load-bearing capacity in the longitudinal direction and the transverse direction is relatively low, and the advantage is obvious in other directions. According to the characteristics of the two geogrids, the scheme adopts a composite structure, and the two geogrid structures are compounded and superposed to form a new structure, so that the advantages are complemented, the advantages are gained, the shortcomings are compensated, and the performance of the geogrid product in multiple directions is optimized.
Disclosure of Invention
For overcoming the defects of the prior art, the utility model provides a compound multidirectional performance optimization grid, the technical scheme of the utility model is:
composite multidirectional performance optimization grid, including the grid main part on even be provided with several rectangular hole unit, main junction, well node and little node, all rectangular hole unit form network structure, each wholly the rectangular hole unit include middle part triangle-shaped hole and lateral part triangle-shaped hole, middle part triangle-shaped hole set up in pairs, distribute along the horizontal direction, be provided with a pair of lateral part triangle-shaped hole respectively at the upside and the downside in the middle part triangle-shaped hole that sets up in pairs, each the rectangular hole unit include four lateral part triangle-shaped holes and two middle part triangle-shaped holes, each lateral part triangle-shaped hole be right angle triangle-shaped hole, middle part triangle-shaped hole is equilateral triangle-shaped hole.
The main junction is formed by gathering eight ribs, and the vertexes of two adjacent middle triangular holes and the vertexes of four side triangular holes are arranged at the main junction.
The middle joint is formed by converging six ribs, and the top points of two middle triangular holes and the top points of four side triangular holes are arranged at the middle joint.
The small node is formed by gathering four ribs, and the vertex of the four side triangular holes is arranged at the small node.
The utility model has the advantages that: the performance advantages of the square-hole grating and the rhombic grating are combined, so that the performance of the product in the longitudinal direction, the transverse direction, the 45 degrees, the 60 degrees, the 120 degrees and other directions tends to be balanced, and the effective guarantee is obtained. The formation of multiple node can be with the load that the product any position bore, effectively transmit whole product, play dispersion and whole effect of bearing, simultaneously, through the multidirectional crisscross connection of rib, it is inseparabler to make the connection between every unit of product, and the wholeness is stronger, for the product is in same performance in all directions, provides the structural guarantee, makes the multidirectional performance of product obtain showing the optimization, to the comprehensive reinforcement effect of fully giving full play to the product, ensures the muscle effect and the life of adding of engineering, has created the advantage.
Drawings
Fig. 1 is a schematic view of the main structure of the present invention.
Detailed Description
The invention will be further described with reference to specific embodiments, the advantages and features of the invention will become more apparent as the description proceeds. These examples are merely illustrative and do not limit the scope of the invention in any way. It will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention, and that such changes and modifications are intended to be included within the scope of the invention.
Referring to fig. 1, the utility model relates to a compound multidirectional performance optimization grid, including the grid main part on even be provided with several rectangular hole unit, main junction 3, well nodal point 4 and little nodal point 5, all rectangular hole unit form network structure, each wholly the rectangular hole unit include middle part triangle-shaped hole 1 and lateral part triangle-shaped hole 2, middle part triangle-shaped hole 1 set up in pairs, distribute along the horizontal direction, be provided with a pair of lateral part triangle-shaped hole 2 respectively at the upside and the downside of middle part triangle-shaped hole 1 that set up in pairs, each the rectangular hole unit include four lateral part triangle-shaped holes 2 and two middle part triangle-shaped holes 1, each lateral part triangle-shaped hole be right angle triangle-shaped hole, middle part triangle-shaped hole is equilateral triangle-shaped hole.
The main junction through 3 converge and form through eight muscle strips, be provided with the summits of two adjacent middle part triangle-shaped holes and the summits of four lateral part triangle-shaped holes at this main junction.
The middle joint point 4 is formed by converging six ribs, and the top points of two middle triangular holes and the top points of four side triangular holes are arranged at the middle joint point.
The small node 5 is formed by gathering four ribs, and the vertex of four side triangular holes is arranged at the small node.
The utility model discloses a theory of operation is: the stable structure is formed by two kinds of triangular holes, and the structure naturally forms the basic structural unit of the product: the rectangular inner space is alternately filled with six triangles, and four corner points of each rectangular hole unit naturally form a main junction formed by intersecting eight ribs; at the center of each rectangular hole unit, a diagonal line and a longitudinal center line are crossed to form a middle joint point formed by intersecting six ribs; the longitudinal center lines of the rectangular units are intersected at the center positions of the long sides of the rectangular units to form small nodes.
At the position of the middle point, a longitudinal through rib is arranged and is connected with one vertex of the through rib in a penetrating way; the other two vertexes of all the triangular holes are crossly connected by longitudinal and transverse ribs. Viewed from the longitudinal direction of the product, the nodes of the product are distributed according to the following rule: one column is a main node, and the adjacent columns are middle nodes and small nodes which are arranged at intervals and are repeated in cycles; viewed from the transverse direction, the node distribution rule of the product is as follows: one row is formed by arranging the main nodes and the small nodes at intervals, and the adjacent row is formed by arranging the middle nodes in a circulating mode.

Claims (4)

1. Composite multidirectional performance optimization grid, including the grid main part, its characterized in that the grid main part on even be provided with several rectangular hole unit, main junction, well node and little node, all rectangular hole units form network structure, each wholly the rectangular hole unit include middle part triangle-shaped hole and lateral part triangle-shaped hole, middle part triangle-shaped hole set up in pairs, distribute along the horizontal direction, be provided with a pair of lateral part triangle-shaped hole respectively at the upside and the downside in the middle part triangle-shaped hole that set up in pairs, each the rectangular hole unit include four lateral part triangle-shaped holes and two middle part triangle-shaped holes, each lateral part triangle-shaped hole be right angle triangle-shaped hole, middle part triangle-shaped hole is equilateral triangle-shaped hole.
2. The composite multidirectional performance-optimizing grid according to claim 1, wherein the main junction is formed by eight ribs in a gathering mode, and the vertexes of two adjacent middle triangular holes and the vertexes of four side triangular holes are arranged at the main junction.
3. The composite multidirectional performance optimizing grid according to claim 1, wherein the middle joint is formed by six ribs in a converged manner, and two vertexes of the middle triangular hole and four vertexes of the side triangular hole are arranged at the middle joint.
4. The composite multidirectional performance optimizing grid according to claim 1, wherein the small nodes are formed by four ribs in a gathering mode, and the vertexes of the four side triangular holes are arranged at the small nodes.
CN201920921249.4U 2019-06-19 2019-06-19 Composite multidirectional performance optimization grid Active CN210596861U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920921249.4U CN210596861U (en) 2019-06-19 2019-06-19 Composite multidirectional performance optimization grid

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920921249.4U CN210596861U (en) 2019-06-19 2019-06-19 Composite multidirectional performance optimization grid

Publications (1)

Publication Number Publication Date
CN210596861U true CN210596861U (en) 2020-05-22

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920921249.4U Active CN210596861U (en) 2019-06-19 2019-06-19 Composite multidirectional performance optimization grid

Country Status (1)

Country Link
CN (1) CN210596861U (en)

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