What are the reasons for the relatively slow development of the conductive bulk bag industry?


Release date:

2021-10-17

Conductive bulk bags are primarily made from polypropylene, with a small amount of stabilizing additives uniformly blended in. The plastic film is melted and extruded through an extruder, cut into fine filaments, then stretched and heat‑set to produce a high‑strength, low‑elongation polypropylene material. This filament‑based, woven and coated fabric serves as the base material for manufacturing plastic woven fabrics, which are sewn together with slings and other fittings to form conductive bulk bags. The fabric used in these bags has a basis weight of 170–200 grams per square meter. Conductive bulk bags function as intermediate bulk containers and unit load carriers, typically handled by cranes or forklifts, enabling efficient unitized container transport and convenient handling of bulk powdered materials. They possess…

Conductive bulk bags are primarily made from polypropylene, with a small amount of stabilizing additives uniformly blended in. The plastic film is melted and extruded through an extruder, cut into fine filaments, then stretched and heat‑set to produce a high‑strength, low‑elongation polypropylene material. Silk‑like, woven coated films are used as the base fabric for manufacturing plastic woven fabrics, which are sewn together with slings and other fittings to form conductive bulk bags; the thickness of the woven material used in these bags is per square meter. 170–200 grams.

Conductive bulk bags are intermediate bulk containers and unit load devices. Typically handled with cranes or forklifts, they enable unitized container transport and facilitate the efficient handling of bulk powdered materials. They are characterized by large volume, light weight, and ease of loading and unloading, making them one of the most commonly used packaging materials. Additionally, they feature a simple structure, lightweight design, foldability, minimal space occupation when stored, and cost-effectiveness.

 Conductive bulk bag

Based on the foregoing, we trust that everyone now has a solid understanding of the production and application of conductive bulk bags. In recent years, we have all witnessed the remarkable progress our large-scale bag‑manufacturing industry has achieved. The variety of conductive bulk bags available around us continues to grow, and their functionalities have become increasingly diverse, bringing significant convenience to cargo transportation.

However, the development of the conductive bulk‑bag industry has been remarkably slow. Next, let us examine the reasons behind this sluggish growth. The sector remains relatively underdeveloped in terms of management and technological equipment, with most advancements still relying on foreign expertise. In the mid‑1980s, product packaging was predominantly carried out using small bags, while products packaged in standard conductive bulk bags were comparatively scarce.

The domestic market is dominated by packaging bags for non‑ferrous metals. Export products are primarily targeted at the Japanese market, including bags for cement, mineral products, sand, and similar materials. Customers generally require that the bags meet safety standards in terms of strength, while placing relatively modest demands on appearance and other performance characteristics. The production of xenon gas bags remains a labor‑intensive industry.

Due to the fact that the conductive bulk bag packaging industry developed approximately … later than in developed countries, In 2020, its technological level remained backward and it lacked independent technology. At present, most large, technologically advanced conductive FIBC manufacturers are joint ventures or foreign-invested enterprises. They employ overseas designs and technologies, resulting in high product quality and significant economic benefits.



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