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The influence of glass size and processing difficulty on glass double-sided machine manufacturing technology

by:Enkong     2021-04-04
Here, for the time being, engineering architectural glass represents large-size glass, and electronic appliance glass represents small-size glass as an example. Except in special circumstances. In terms of usage requirements, large-scale glass such as Cheng Architectural Glass does not require high edging, such as polishing and diagonal lines.

Small-size glass such as electronic and electrical glass has relatively higher requirements for edging, such as clear and bright cut, uniform chamfer size, sharp edges and corners, and the diagonal should be within 0.2mm.

Therefore, we can see that since the processing requirements for small-size glass are higher than that for large-size glass, the processing difficulty of small-size glass is also more difficult than that of large-size glass. In terms of processing technology, small-size glass is also more difficult than large-size glass. The reasons are as follows: The double-side edging machine for processing large-size glass can be equipped with a large glass double-side machine synchronous belt; while the double-side edging machine for processing small-size glass must be equipped with a small double-side edging machine synchronous belt, and the smaller the glass , The smaller the timing belt. This results in the difference in the stability of glass conveyance between the two specifications of glass during edging. Due to the self-weight of large-size glass, the large glass and the large timing belt make the contact area between the large-size glass and the timing belt large, so the transmission stability of the large-size glass edging is good, thereby reducing the technical difficulty of manufacturing the double-sided edging machine. . The small size glass is light in weight, and the small size of the glass and the small timing belt make the contact area between the small size glass and the timing belt small, so the transmission stability of the small size glass edging is poor, which increases the technical difficulty of manufacturing the double-sided edging machine. That is: other means must be used to improve the transmission stability of small-size glass edging. In this way, large-size glass requires low use and processing technology requirements; while small-size glass requires high use and processing technology requirements are also difficult, which can be said to be a high degree of difficulty. If the technology of the ordinary double-sided machine is adopted, it will not meet the requirements for the use of small-size glass at all. Above all: The manufacturing technology of precision small glass double-sided edging machine is very difficult. If a glass edging machine manufacturer has mastered the technology of precision small glass double edging machine, you should not think that it has problems with ordinary double edging opportunities.
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