Professional China Batch Inclusion FFS Film - EVA Packaging Film for Anti-aging Agent – Zonpak
Professional China Batch Inclusion FFS Film - EVA Packaging Film for Anti-aging Agent – Zonpak Detail:
ZonpakTM low melt EVA film is special plastic packaging film for rubber chemicals and additives. Anti-aging agent is an important chemical used in rubber and plastic compounding and mixing process, but only a little amount is needed for each batch. Rubber chemical suppliers can use this packaging film with automatic form-fill-seal machine to make little bags of anti-aging agent for the users’ convenience. Owing to the film’s specific low melting point and good compatibility with rubber, these uniform little bags can be direct put into a mixer in the rubber mixing process, the bags will melt and fully disperse into the compounds as a minor effective ingredient.
Films with different melting points (65-110 deg. C) and thickness are available for different using conditions. Please feel free to contact us for more information if you want to update your packaging of anti-aging agent.
Product detail pictures:
Related Product Guide:
We insist on offering premium quality manufacturing with superior business concept, honest product sales as well as finest and fast assistance. it will bring you not only the good quality product or service and huge profit, but the most significant is to occupy the endless market for Professional China Batch Inclusion FFS Film - EVA Packaging Film for Anti-aging Agent – Zonpak, The product will supply to all over the world, such as: Puerto Rico , Libya , Slovenia , We always insist on the principle of "Quality and service are the life of the product". Till now, our products have been exported to more than 20 countries under our strict quality control and high level service.
By Isabel from Cape Town - 2018.06.05 13:10
Good quality and fast delivery, it's very nice. Some products have a little bit problem, but the supplier replaced timely, overall, we are satisfied.
By Jerry from Southampton - 2018.10.09 19:07