
STRUCTURAL PLASTICS
Guides & Resources
Frequently asked questions
Common questions about STRUCTURAL PLASTICS from 3G Electric.
What sizes are available for Structural Plastics dunnage racks?
Structural Plastics dunnage racks are available in several standard sizes, including 12 in x 24 in x 36 in, 12 in x 24 in x 48 in, 12 in x 24 in x 66 in, 12 in x 24 in x 96 in, and 12 in x 36 in x 96 in. These dimensions refer to depth, width, and height, respectively. Each rack includes one shelf and is supplied fully assembled. The snap-together construction allows for easy assembly and disassembly without tools. Custom sizes may be available upon request. For specific dimensional requirements, consult the product specifications or contact 3G Electric for assistance.
What material are Structural Plastics dunnage racks made from?
Structural Plastics dunnage racks are constructed from black polyethylene. Polyethylene is a thermoplastic known for its resistance to moisture, chemicals, and impact. This material is suitable for industrial environments, including wash-down areas and outdoor applications. The racks are rotationally molded, which produces a seamless, stress-free structure. The polyethylene construction does not rust, corrode, or splinter, and it is easy to clean. The black color is standard, but other colors may be available. For specific material properties, refer to the product data sheet or contact 3G Electric.
How are Structural Plastics dunnage racks assembled?
Structural Plastics dunnage racks feature a snap-together assembly method. The components are designed to interlock without the need for tools, fasteners, or adhesives. This allows for quick assembly and disassembly, which can be useful for reconfiguration or relocation. The racks are shipped fully assembled, but they can be taken apart for storage or transport if needed. The snap-together design also allows for replacement of individual components if damaged. Assembly instructions are typically included with each unit. For detailed assembly guidance, consult the product documentation or contact 3G Electric.
What are typical applications for Structural Plastics dunnage racks?
Structural Plastics dunnage racks are commonly used in industrial storage and material handling to organize and protect parts, tools, and materials. They are suitable for manufacturing plants, warehouses, and workshops. The polyethylene construction makes them appropriate for environments where moisture, chemicals, or impact are concerns. They can be used for staging, work-in-progress storage, and shipping. The open design allows for visibility and access, while the shelf provides a surface for items. They are also used in food processing and pharmaceutical facilities where cleanability is important. For specific application suitability, evaluate the load requirements and environmental conditions.
Does 3G Electric supply Structural Plastics spill trays?
Yes, 3G Electric supplies Structural Plastics spill trays in addition to dunnage racks. Spill trays are used for containment of leaks, drips, and spills from drums, containers, and equipment. They are typically made from polyethylene and are available in various sizes and configurations. These trays help meet environmental and safety regulations by containing hazardous liquids. For specific spill tray models and specifications, refer to the product listings or contact 3G Electric for assistance. Availability may vary, so confirm current stock and lead times.
What is the load capacity of Structural Plastics dunnage racks?
Load capacity varies by model and size. Structural Plastics dunnage racks are designed to support distributed loads, but the exact capacity depends on the specific dimensions and configuration. For precise load ratings, refer to the product specifications or contact 3G Electric. Factors such as shelf size, support structure, and material thickness affect capacity. It is important not to exceed the recommended load to prevent damage or failure. For critical applications, consider consulting an engineer to verify suitability.
