Paper Bubble Cushioning VS Paper Air Bubble Roll
In the ever-evolving realm of packaging solutions, PackBest Air Packaging stands at the forefront of innovation, dedicated to offering sustainable and versatile options tailored to diverse customer requirements. Our two signature products, paper air bubble roll and paper bubble cushioning, each possess distinctive features that excel across a range of applications. This comprehensive article delves deep into a detailed comparison of these materials, exploring their composition, structural design, application benefits, ideal usage scenarios, and compatible machinery. Material Paper air bubble roll: Made of kraft paperand PLA film, which is produced from chemical pulping processes using wood fiber. It has high fiber strength, excellent tensile properties, and strong resistance to tearing and bursting. It can withstand the weight of packaged items during transportation and handling, providing reliable protection for products. Paper bubble cushioning: Primarily made from virgin wood pulp, it can also utilize recycled paper fibers. After special processing, it forms a unique bubble structure, offering good cushioning and shock absorption properties while being environmentally friendly and recyclable. Structure Paper air bubble roll: Features a distinctive “gourd” shape design. Its structure includes interconnected air chambers that can effectively distribute pressure and absorb impact forces, reducing the risk of damage to products during transportation. The spiral structure of the airbag allows for flexibility and adaptability when wrapping items, providing comprehensive protection. Paper bubble cushioning: Exhibits a double-sided raised bubble structure with fine and uniform bubbles on the surface. These bubbles act like numerous miniature cushioning springs, effectively dispersing and cushioning external impacts to protect items. Additionally, its surface texture enhances grip and stability during packaging. Advantages Paper air bubble roll Excellent cushioning performance: The air chambers formed during inflation can effectively reduce shocks and vibrations, safeguarding products from damage caused by collisions and impacts during transportation. Good sealing and airtightness:…