The present invention relates to multiple-layer composite board of discrete materials and plastic, such as wood-plastic composite (WPC) and production method thereof.
The known WPC comprises a compatible proportion of wood and thermoplastic (such as polypropylen, polyethylen or PVC, etc.). Both components of wood and plastic can be resulted from recycled resources. WPC can be manufactured in multiple ways. Currently, the most common technique is extrusion, wherein components of wood (granulated to fine grains), thermoplastic and additives are blended into a mixture that can be in melting state under high temperature and pressure, and can be formed in an extrusion die. WPC is good at waterproofing and sparing with warping or cracking. Additionally, they are durable thanks to their immunity from termites, woodworms and other natural factors. The most crucial shortcoming of WPC is low loadcapacity because of their equal allocation in material of wood and plastic. Another shortcoming of WPC is high density due to the wood being pressed under high temperature and pressure in the extrusion process using plastic such as polypropylene or polyethylene because they are difficult in generating foam as PVC.
The object of the invention is to overcome the drawbacks of the prior art described above; more specifically, to create multiple-layer composite board of discrete materials and plastic with high load-capacity and low density, improved integration between discrete materials and plastic.
In order to serve the aforementioned purposes and others, the present invention proposes a multiple-layer WPC board. Unlike normal WPC wherein the wood (granulated to fine grains), thermoplastic and additives are blended into a mixture in melting state before being formed in an extrusion die, the multiple-layer WPC board of discrete materials and plastic is created from independently stratified plastic layers and discrete material layers, pressed in the melting state of alternate layers of plastic and discrete materials, and cooled. In the pressing process, layers of discrete materials blending with melting plastic from adjacent plastic layers forms plastic-discrete material layers with high proportion of discrete materials. These plastic-discrete material layers integrate with adjacent plastic layers to form the composite board. Due to this stratification, centralized plastic layers constitute high loadcapacity and discrete material layers pressed with pressure lower than normal extrusion process constitute low density for the multiple-layer composite board of discrete materials and plastic.
The present invention will now be described based on accompanying drawings. For the purpose of illustrating the invention, there is shown in the drawings several forms, which are presently preferred, it being understood, however, that the invention is not limited to the precise arrangements and instrumentalities shown, in which:
The present invention will now be described based on preferred embodiments with reference to the accompanying drawings. In the drawings, like reference characters generally refer to the same parts throughout the different views.
As illustrated in
As illustrated in
According to another embodiment illustrated in
The composite board 1 is formed by providing independently stratified initial plastic layers and discrete material layers, which are pressed in the melting state of the provided plastic layers and discrete material layers placed alternately along the interface of the plastic layers, and cooled. In this pressing process, discrete material layers blending with melting plastic from adjacent plastic layers forms plastic-discrete material layers with high proportion of discrete materials. These plastic-discrete material layers integrate with adjacent plastic layers to form the composite board. Due to the stratification, centralized plastic layers constitute high load capacity for the composite board according to the present invention, centralized discrete material layers being pressed with pressure lower than normal WPC extrusion process constitutes low density for the multiple-layer composite board according to the present invention.
The term “discrete materials” in this specification implies the material under the forms of board or piece, wherein there will be interstices when they are bedded. According to the present invention, the discrete materials, used to form interstices which are large enough for the plastic to flow in, are not integrated on the surface or deeper but deeply integrated as a part of the formed layer, thanks to which forming a composite board 1 comprising solidly integrated layers with not-too-high density.
According to various embodiments, discrete materials can be different. The discrete materials 31 can be granules or planks of wood, splinters, vegetal fibers, glass fibers, fabric fibers, husks, rags or the like. Additionally, a plastic-discrete material layer can comprise two or more types of discrete materials. For composite board 1 comprising multiple plastic-discrete material layers, e.g. two layers as illustrated in
Discrete materials can have various sizes depending on the material sources.
According to a preferred embodiment of the present invention, discrete materials 31 are granules of wood with the size of 0.5-15 mm.
According to another preferred embodiment, discrete materials 31 are granules prefabricated by granulating extrusion technology, wherein discrete materials such as granules or planks of wood, splinters, vegetal fibers, glass fibers, fabric fibers, husks, rags or the like are ground to granules with size of 0.5-15 mm,thermoplastic and additives are blended to mixture in melting state before forming string shape with size of 1-5 mm in a extrusion die, then cooled and cut into granules with size of 1-15 mm.
Composition of the plastic layers are multifarious, which can be any of the plastic types such as PP, PE, PS, ABS, PA, PET, PVC, etc.
According to another aspect, the present invention proposes the production method of the multiple-layer composite board of discrete materials and plastic. The production method of the multiple-layer composite board of discrete materials and plastic is as follows:
Step 1: there is provided at lease two plastic layers;
Step 2: spread at least one layer of discrete material alternately and along surfaces of the plastic layers;
Step 3: press plastic layers into melting state with discrete materials and cool them down so that two plastic layers adjacent to the discrete material layer are integrated with the discrete materials.
Plastic layers may have been in melting state before the spread of discrete material layer or plastic layers can be in cooling state when spreading the discrete material layer.
Referring to
Referring to
Referring to
According to another preferred embodiment, as illustrated in
The roller calender for pressing and cooling in the production process of the composite board can be replaced with equivalent structures.
Referring to
While the invention has been shown and described with respect to the preferred embodiments, it will be understood by those skilled in the art that various changes and modifications may be made without departing from the spirit and scope of the invention as defined in the following claims.
1 Composite board
2 Plastic layer
3 Discrete material layer
31 Discrete materials
32 Plastic
4 Extrusion die
5 Spreader
6 Plastic sheet
7 Heater
8 Clamp
9 Roller calender
A Zoomed area
10 Extruder
11 Extrusion channel
12 Heating plate
13 Cooled plate
Number | Date | Country | Kind |
---|---|---|---|
1-2019-02614 | May 2019 | VN | national |