1) Field of the Invention
This invention relates to a method to make vessel with heat insulation surface layer and its product, especially indicates compound paint mixing liquid adherence agent with heating foam particle powder, and coat colorful paint on external layer of target article, this surface layer may form one foaming layer and combined into one entity by heating, furthermore, cubic flower pattern is thereby formed on this surface layer with image model as coating cloth, so that it can provide multiple beauty, heat preservation, heat insulation and scald prevention effect.
2) Description of the Prior Art
Most of common vessels are made from paper or plastic material in order to control cost and popularize usage, such as paper or plastic material-made cup, bowl, disc or vessel made from this material, for example: packing vessel, heat-preserving vessel, snack box, etc.
1. Problem to Solve:
1. The paper-made vessel is single layer which can't provide heat preservation and insulation effect, if enfold in double layers or separate a spacing, it may result in high product cost if throw away after once use, therefore, it isn't economic.
2. This plastic vessel is single layer so that it can't preserve and insulate heat.
3. In order to beautify the surface layer of paper or plastic material-made vessel, the only method is to print flower pattern on its surface layer, which can't provide cubic flower pattern effect.
4. In order to get scald-proof effect, the current paper cup usually requires another plastic support cup to hold it, however, it is inconvenient to apply this kind of paper cup with plastic support sup, furthermore, this plastic support cup must be kept after this paper cup is thrown away, so, it may further weaken the convenience of paper cup.
II. Solutions:
1. This invention applies liquid adherence agent to mix with heated foam particle powder, then coat above said compound coating cloth in paper-defining zone or surface of all molded vessels, heat this paper or vessel so that one foaming layer is formed on this surface layer, then cut this coating cloth and make vessel accordingly, or apply to surface layer of this vessel, such as surface layer of paper or plastic vessel, which can provide heat insulation effect, so, when fill full of high temperature material, holder may not feel hot and scalding, therefore, it can provide heat preservation, heat insulation and scald-proof effect.
2. This invention is to spray the above said compound paint with pigment or roll with roller so that the former coated paint with flower pattern may be formed by heating, which may become protruding colorful and cubic flower pattern, or print in color after formed cubic flower pattern so as to present multiple beautiful vision effect, therefore, this protruding cubic flower pattern can provide holder heat insulation function, it features in beauty, heat preservation, heat insulation and scald-proof.
3. This invention is applicable to surface of all paper and plastic-made vessel, all types of cubic flower pattern can be made on basis of pattern model, it is not only beautiful, but also provide scald-proof to holder by this protruding flower pattern.
4. The protruding degree of above said cubic flower pattern is based on thickness of compound paint coated, heating temperature shall be controlled from 80 to 160° C. so as to obtain required protruding flower pattern.
The actualized examples are hereby specially to describe in the following so that the commissioner can further understand technical contents of this invention.
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Above said liquid adherence agent 1 can be water base or oily, meanwhile, it is adhesive in course of foaming.
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Above said protruding degree of cubic flower pattern indicates the protruding thickness obtained by heating 80 to 160° C.
Above said executive examples of this invention are only used for reference, which includes all types of paper or plastic-made vessel, such as cup, bowl, tray, snack box and packing containers, so as to provide heat insulation, heat preservation, scald-proof and strengthening effect.