What are the categories of anti-static hollow board turnover boxes?
Author: Dongguan Jusheng New Material Technology Co., Ltd.issuing time:2018-08-17 15:24:04Pageviews:785【smallinBig】
The usual packaging materials are ordinary plastics, plastics are insulators, and the surface and volume resistivity is 10 to 16 ohms/cm 2 of 10 to 10 to 10, which is easy to generate static electrici...
The usual packaging materials are ordinary plastics, plastics are insulators, and the surface and volume resistivity is 10 to 16 ohms/cm 2 of 10 to 10 to 10, which is easy to generate static electricity due to non-conduction, but in the electronics industry. The static electricity of the packaging will have a great impact on the product. The anti-static hollow board turnover box is widely used due to its anti-static.
Anti-static turnover boxes can be divided into two categories: injection turnover boxes, hollow plate turnover boxes.
The anti-static injection molding turnover box is made of polypropylene (PP) as a base material, and carbon powder is added. The carbon powder can conduct electric current and has strong mechanical properties, and is formed by the conventional injection molding process using the composite material. When the surface and volume resistivity is 10 ninth ohms/cm 2 or less, the antistatic/conductive effect can be achieved.
The anti-static hollow board turnover box is made of hollow plate, divided into skeleton box, folding box and gland box.
The anti-static turnover box can effectively release the accumulated charge on the surface of the object, so that it does not generate charge accumulation and high potential difference; it has the functions of toughness, wear resistance, moisture resistance, corrosion resistance, heat insulation, etc., and is widely used in the production process of electronic devices and products. Turnover loading - packaging - storage and shipping.
The above is the introduction of the categories of anti-static hollow board turnover boxes for everyone to analyze, I hope you can give us a reference.
2018-08-17
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