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Kraft paper box internal buffer structure design and protection effect

Publish Time: 2024-11-28
In the field of modern packaging, the internal buffer structure design of kraft paper box plays a vital role in protecting the items contained.

First of all, there are many types of common internal buffer structures. For example, corrugated paper partitions are a widely used design that can separate items and prevent them from colliding with each other. By rationally designing the flute type, thickness and spacing of corrugated paper, the impact force can be effectively absorbed and dispersed. During transportation, when the kraft paper box is subjected to external vibration or extrusion, the corrugated paper partition can act like a spring to evenly disperse the force in all directions and reduce the direct impact on the product. For another example, the foam lining can be customized according to the shape of the product, closely fit the contour of the product, and provide all-round buffer protection for the product. For some fragile items, such as glass products or electronic products, the foam lining can fill the gap between the product and the paper box to prevent the product from shaking in the paper box and being damaged.

Secondly, the design of the internal buffer structure should be based on the characteristics of the product. For heavier items, the buffer structure needs to have sufficient load-bearing capacity and stability. Multiple layers of corrugated paperboard can be stacked or the density of the buffer material can be increased to ensure that it will not be deformed or damaged when subjected to heavy pressure. For precision instruments, in addition to buffering impact, it is also necessary to consider preventing static electricity from damaging the instrument. At this time, buffer materials with anti-static functions, such as anti-static foam or foam, can be used, which can both buffer and shield static electricity, protecting the electronic components of the instrument from static interference and malfunction.

Furthermore, the overall coordination of the internal buffer structure and the kraft paper box also affects the protection effect. The size of the buffer structure should be precisely matched with the internal space of the paper box. If it is too large, the items may shake in the paper box, and if it is too small, the buffering effect cannot be fully exerted. At the same time, the installation method of the buffer structure is also critical. A firm installation can ensure that it will not shift or fall off during transportation. For example, the buffer structure is closely connected to the paper box by glue or slot fixing to form an organic overall protection system.

The internal buffer structure design of the kraft paper box can significantly improve the protection effect of the product by reasonably selecting the buffer type, customizing according to product characteristics, and focusing on the overall coordination with the paper box. In packaging design, the internal buffer structure is carefully crafted to ensure that items are protected from damage during transportation, storage and handling, meet the diverse needs of different products for packaging protection, and improve the safety and integrity of products during circulation.
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