manual blown glassware nesting process

manual blown glassware

manual blown glassware

We all know that see glass products on the market modelling diversity, even the color is colourful, some may be in the white glass surface after do simple processing, some of them are in the production process in alone used some special processing technology, production of finished products have special beautiful, to say the glass is one of the most can play out pattern material:

[Introduction to manual nesting Process]

Glass is covered makings it is to point to will two kinds of above glass, be like colorless glass and coloured glass or colorless glass, color glass and opalescent glass cover a kind of adornment molding method that is together mutually. In the operation of this method, it is necessary to consider whether the linear expansion coefficient of many different colors of glass matches with each other, otherwise the phenomenon of product cracking will occur, so the previous detection work is relatively important. The common glass packing method is divided into two methods: inner packing method and outer packing method.

[Inner sleeve method]

The method that sets the color glass of different color in the interior of the product, after general molding, it is finished product product no longer cuts a flower. First, blow the pigment glass material with a blow pipe, blow the bubble, then take the colorless transparent material, and then blow cut to shape, the glass product presents a gorgeous interior and a bright exterior feeling.

[Coat method]

The method of setting different colors of glass on the outside of the product usually requires grinding and carving to show the effect of color setting. Can be a single layer of color, can also be a multi-layer color, coat method is divided into the skin and blowing skin method.

[Differences in Different Methods]

Covering method is more suitable for forming larger covering glass products and car cutting blank, blowing skin method is more suitable for some small glass products, the production efficiency is relatively high.

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