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Model Info
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More Information About 3D Model :
The article describes a specialized piece of logistics equipment identified generically as a Green Bottle Carrier Plastic Crate Box Container Storage Tray. This object is a standardized, rigid container engineered for the organized transportation, storage, and handling of multiple individual liquid-holding bottles, typically within the beverage industry supply chain.
### Nomenclature and Classification
Though commonly referred to by a variety of descriptive terms (crate, box, tray, carrier), the object is formally categorized as a reusable logistics container (RLC) or returnable transport packaging (RTP). The term “bottle carrier” denotes its specific compartmentalized structure tailored to secure fragile or heavy cylindrical vessels. The specific green coloration, while descriptive, often functions as a crucial logistical marker, indicating ownership by a particular distributor, type of beverage held (e.g., soft drinks, beer, mineral water), or integration into a specific recycling or deposit-return system (DRS).
### Material and Manufacturing
The container is manufactured almost exclusively via injection molding, utilizing high-density polyethylene (HDPE) or polypropylene (PP). These thermoplastic polymers are selected for their combination of stiffness, impact resistance, low moisture absorption, and chemical inertness, which is essential for repeated wash cycles and exposure to various environmental conditions, including refrigeration and outdoor storage. The plastic construction ensures a high strength-to-weight ratio, optimizing payload capacity while minimizing tare weight. Additives are frequently incorporated to provide UV stabilization and colorfastness.
### Design and Physical Characteristics
The design is fundamentally modular and load-bearing. Key features include:
1. Compartmentalization: The interior structure is cellular, featuring integrated dividers that create individual pockets for each bottle. This crucial design element prevents bottle-to-bottle contact, significantly reducing the risk of chipping, scratching, or breakage during transit, particularly when handling glass containers. The dimensions of these pockets are engineered to accommodate standard bottle sizes (e.g., 330ml, 500ml, 1L).
2. Stacking Features: The carrier incorporates reinforced corners and nesting capabilities—often utilizing a rim design that fits securely into the base of an identical unit—to enable safe, high-density vertical stacking both when full and sometimes when empty. This stability is critical for maximizing space utilization in warehouses and on transport pallets.
3. Footprint: The external dimensions are typically standardized to modular sizes compatible with conventional material handling systems, such as the ISO (1200×1000 mm) or Euro (1200×800 mm) pallet dimensions, ensuring efficient unit load formation and compatibility with automated conveyor systems.
4. Handling: Ergonomically designed handles, either open apertures or closed loops, are integrated into the side walls to facilitate manual lifting and maneuvering during loading and unloading operations.
5. Base and Drainage: The base is often ribbed or slatted to allow for drainage, prevent water pooling (critical in washing facilities), and improve airflow during cooling.
### Applications and Industrial Context
The green plastic bottle carrier is integral to closed-loop logistics systems, serving multiple roles throughout the beverage lifecycle:
* Primary Transport: Moving filled bottles from bottling plants to distribution centers and ultimately to retail points of sale.
* Retail Display: Functioning as a modular shelf unit, allowing for rapid merchandising and direct placement onto store floors.
* Return Logistics: Essential components in deposit-return systems, facilitating the collection, sorting, and efficient transport of empty bottles back to recycling facilities or bottling plants for refilling (in the case of returnable bottles).
The reusable nature and robust construction of these carriers contribute to the sustainability goals of the beverage industry by reducing reliance on single-use corrugated packaging and enhancing the efficiency of reverse logistics chains.-
KEYWORDS: Logistics, HDPE, Polyethylene, Bottle carrier, Beverage industry, Returnable transport packaging, RTP, Injection molding, Crate, Stacking container, Modular, Green, Compartmentalization, Supply chain, Warehouse storage, Deposit-return system, DRS, Glass bottle transport, Automated handling, Reusable, Palletizable, Unit load, Distribution, Soft drink, Beer crate, Heavy-duty, Industrial packaging, Material handling, Plastic container, Logistics tray.